Showing posts with label Cool. Show all posts
Showing posts with label Cool. Show all posts

Thursday, November 5, 2015

Cool Fast Prototyping Price pictures

Check out these rapid prototyping expense pictures:


Fortune Brainstorm Green 2013

Image by Fortune Live Media

Tuesday, April 30, 2013


Solar: How do we scale solar to be on 50% of the roofs in the US by 2018?

Presented by Panasonic

Plummeting panel and balance-of-program charges are generating solar electrical energy increasingly competitive with carbon-intensive options. Nonetheless, the all round pace of adoption in the U.S. is still slow. This functioning session will explore practical breakthroughs to installing solar on 50% of U.S. rooftops by 2015. Using fast prototyping in tiny groups, participants will function together to locate solutions and then participate in the identified actions to accelerate progress.


Contributors:

David Crane, President and CEO, NRG Energy

Ed Fenster, Co-founder, Sunrun

Andy Karsner, Executive Chairman and Founder, Manifest Energy

Danny Kennedy, Founder and President, Sungevity

Nat Kreamer, President and CEO, Clean Energy Finance

Paul Nahi, Chief Executive Officer, Enphase Power

Richard O’Day, Managing Director, Global Market Options Group, Credit Suisse

Billy Parish, Founder and President, Solar Mosaic

Naimish Patel, Chief Executive Officer, Gridco Systems

Laura Spanjian, Sustainability Director, City of Houston

Howard Wenger, President, Regions, SunPower Corp

Ray Wood, Managing Director, Head, U.S. Energy and Renewables Group, Bank of America Merrill Lynch


Facilitator: Jib Ellison, Founder and CEO, Blu Skye Consulting


Photograph by Stuart Isett/Fortune Brainstorm Green


Fortune Brainstorm Green 2013

Image by Fortune Live Media

Tuesday, April 30, 2013


Solar: How do we scale solar to be on 50% of the roofs in the US by 2018?

Presented by Panasonic

Plummeting panel and balance-of-system costs are making solar electrical energy increasingly competitive with carbon-intensive alternatives. Even so, the all round pace of adoption in the U.S. is nonetheless slow. This working session will discover practical breakthroughs to installing solar on 50% of U.S. rooftops by 2015. Using rapid prototyping in little groups, participants will perform with each other to locate solutions and then participate in the identified actions to accelerate progress.


Contributors:

David Crane, President and CEO, NRG Energy

Ed Fenster, Co-founder, Sunrun

Andy Karsner, Executive Chairman and Founder, Manifest Power

Danny Kennedy, Founder and President, Sungevity

Nat Kreamer, President and CEO, Clean Energy Finance

Paul Nahi, Chief Executive Officer, Enphase Energy

Richard O’Day, Managing Director, International Market Solutions Group, Credit Suisse

Billy Parish, Founder and President, Solar Mosaic

Naimish Patel, Chief Executive Officer, Gridco Systems

Laura Spanjian, Sustainability Director, City of Houston

Howard Wenger, President, Regions, SunPower Corp

Ray Wood, Managing Director, Head, U.S. Power and Renewables Group, Bank of America Merrill Lynch


Facilitator: Jib Ellison, Founder and CEO, Blu Skye Consulting


Photograph by Stuart Isett/Fortune Brainstorm Green


Fortune Brainstorm Green 2013

Image by Fortune Reside Media

Tuesday, April 30, 2013


Solar: How do we scale solar to be on 50% of the roofs in the US by 2018?

Presented by Panasonic

Plummeting panel and balance-of-technique costs are producing solar electricity increasingly competitive with carbon-intensive options. Nevertheless, the overall pace of adoption in the U.S. is nevertheless slow. This working session will explore sensible breakthroughs to installing solar on 50% of U.S. rooftops by 2015. Employing speedy prototyping in small groups, participants will work together to uncover solutions and then participate in the identified actions to accelerate progress.


Contributors:

David Crane, President and CEO, NRG Energy

Ed Fenster, Co-founder, Sunrun

Andy Karsner, Executive Chairman and Founder, Manifest Power

Danny Kennedy, Founder and President, Sungevity

Nat Kreamer, President and CEO, Clean Power Finance

Paul Nahi, Chief Executive Officer, Enphase Power

Richard O’Day, Managing Director, Global Marketplace Options Group, Credit Suisse

Billy Parish, Founder and President, Solar Mosaic

Naimish Patel, Chief Executive Officer, Gridco Systems

Laura Spanjian, Sustainability Director, City of Houston

Howard Wenger, President, Regions, SunPower Corp

Ray Wood, Managing Director, Head, U.S. Energy and Renewables Group, Bank of America Merrill Lynch


Facilitator: Jib Ellison, Founder and CEO, Blu Skye Consulting


Photograph by Stuart Isett/Fortune Brainstorm Green





(Source from rapid prototyping from China blog)

Monday, October 26, 2015

Cool Sheet Metal China images

Some cool sheet metal china pictures:


Image from web page 100 of “An American engineer in China” (1900)

Image by World wide web Archive Book Photos
Identifier: cu31924023226081
Title: An American engineer in China
Year: 1900 (1900s)
Authors: Parsons, William Barclay, 1859-1932
Subjects: Parsons, William Barclay, 1859-1932 Railroads
Publisher: New York, McClure, Phillips &amp co.
Contributing Library: Cornell University Library
Digitizing Sponsor: MSN


View Book Page: Book Viewer
About This Book: Catalog Entry
View All Pictures: All Photos From Book


Click here to view book on the web to see this illustration in context in a browseable online version of this book.


Text Appearing Ahead of Image:
set, I donot know, but the last we saw of that man he washugging his rind like a ti-easure. Before we hadseen the last of his horse, nonetheless, we felt that ifthe pumaloe rind had constituted the complete ofthe acquire-cost we still need to have been thelosers. It is surprising how closely the men and women in onesection of the country pattern after those else-where, when one particular remembers the lack, almostabsolute lack, of intercommunication. But inspite of the basic sameness, which perhapsappears higher than it is on account of the uni-formity in physiognomy of the men and women, with theMongolian coloring and jet-black hair, there weremany pecuHar customs which appeared to belocalized, as numerous of them were found only in Chapter III: Hu-nan, the Closed Province 95 tiny districts, and travelled Chinese who accom-panied me, stated that they had in no way prior to seensimilar things elsewhere in the empire. Of thesethe most singular was the carrying of tiny bam-boo baskets lined with sheet metal and filled with


Text Appearing Soon after Image:
A Peculiar Custom by Chinese Women of Wearing Heat-ing-Baskets hot wood-ashes. Such baskets the girls in onelocality suspend from a belt beneath their shortblouses. Occasionally the baskets are worn infront, often behind, and occasionally in bothplaces, according, apparently, to the fancy of thewearer. Youngsters also produced use of the heating 96 An American Engineer in China apparatus, but men only seldom. No matter howworn, the effect in all situations was both extraordi-nary and comical. To get a photograph of Chi-nese ladies is almost as hard as to photographa herd of wild deer. Girls are supposed tokeep away from any man, and of course a foreignman is specially terrible. The picture of thewomen and their baskets was obtained by cau-tious stalking behind some Chinese, even though theirattention was attracted by 1 of the members ofmy employees. The immediate after the shutter droppedthe group had scattered. In farming strategies the Chinaman in the inte-rior is, of course, centuries behind. His gra


Note About Images
Please note that these images are extracted from scanned page photos that may possibly have been digitally enhanced for readability – coloration and look of these illustrations may not completely resemble the original work.


Image from web page 142 of “The art of lead burning a practical treatise explaining the apparatus and processes” (1905)

Image by Internet Archive Book Images
Identifier: artofleadburning00fayc
Title: The art of lead burning a practical treatise explaining the apparatus and processes
Year: 1905 (1900s)
Authors: Fay, C. H
Subjects: Lead burning
Publisher: New York, D. Williams company
Contributing Library: The Library of Congress
Digitizing Sponsor: The Library of Congress


View Book Page: Book Viewer
About This Book: Catalog Entry
View All Pictures: All Photos From Book


Click right here to view book on the internet to see this illustration in context in a browseable on-line version of this book.


Text Appearing Ahead of Image:
d just as forlead. Britannia metal is fast becoming the favoritelining for splash and drip boards on butlers pan-attempt sinks, as also for lining the function benches insaloons. It is soft enough to enable the most deli-cate china to be laid on it with no danger of chip-ping, and is also quite straightforward to preserve clean. It takesa high polish and constantly looks well. The methodof cutting the metal for a butlers pantry sink isshown in Fig. 51, the dotted lines showing theactual dimensions of the write-up to be covered,although the complete lines show the laps required tocover the edges of the board. This metal isharder than lead, and will not dress smooth withthe dresser. Any uneven spots have to be presseddown with a hot flatiron. The approach of turn-ing the edges is shown at a. The bending iron isheated and rubbed over the edge, progressively turn- THE ART OF LEAD BURNING. 139 ing the edges till they are at their suitable posi-tion. The iron must be constantly heated to in-positive the ideal final results, and if appropriately carried out no


Text Appearing Soon after Image:
cq CQ 1 140 THE ART OF LEAD BURNING. wrinkles will seem. A lined perform bench isalso shown in Fig, 52, which shows the methodof placing in the bar washer. The sheet metalmust be cut and fitted to its place and all theseams feasible ought to be soldered before placingthe metal in position. The edges must be tackedon the beneath side of the function, when practicable,with copper tacks. Sooner or later the blow pipe solderer will becalled upon to make repairs on Britannia metal,and will be shocked to discover that it will be impos-sible to solder the metal, owing to the excess ofmoisture beneath it. The greatest way to overcomethis, which is practically the only difficulty thatoccurs, is to reduce out a little square patch. Theedge can be cleaned and a patch of new metalcarefully fitted into the hole. When prepared to be-gin soldering, a piece of blotting paper ought to beinserted amongst the patch and board. Thispaper will absorb all the moisture and let theseam to be neatly soldered. The man who makeshimself


Note About Images
Please note that these images are extracted from scanned web page pictures that might have been digitally enhanced for readability – coloration and appearance of these illustrations could not perfectly resemble the original work.


Image from web page 620 of “Mechanical Contracting & Plumbing January-December 1912” (1912)

Image by Net Archive Book Images
Identifier: mechcontract1912toro
Title: Mechanical Contracting &amp Plumbing January-December 1912
Year: 1912 (1910s)
Authors:
Subjects: Air conditioning Refrigeration and refrigerating machinery Heating Plumbing
Publisher: Toronto : Maclean-Hunter Pub. Co.
Contributing Library: Fisher – University of Toronto
Digitizing Sponsor: University of Toronto


View Book Page: Book Viewer
About This Book: Catalog Entry
View All Photos: All Pictures From Book


Click right here to view book on-line to see this illustration in context in a browseable on-line version of this book.


Text Appearing Just before Image:
-■•mum We Can FurnishYour Requirements in All PLUMBING GOODS We handle a total line of Enameled Baths Enameled LavatoriesSinks and Laundry Tubs


Text Appearing Soon after Image:
Write us about ourVictorian China Lavatories. The James Morrison Brass Mfg.Company, Ltd. Producers and dealers in a completeline of Plumbing and Heating Supplies 93-97 Adelaide Street West TORONTO 19 Complete Course in Sheet Metal Work In prob. 23, plate 21, fig. 1 representsa pail, of which A-B is a boss, or rein-forcement on the deal with. The pattern is just a circle havingthe identical curve as the deal with, and iscut out to shape shown by fig. two, thenformed to shape by fig. three, and solderedto deal with. In prob. 24, fig. 1, is a strainer pail,the brest B is developed the exact same as thebrest on the watering pail, prob. 18,plate 20. To develop the spout A, continue theline C- any distance, and parallel to By L. W. KOSER this carry a line from the point V, asV-7. Draw a cross section of the spout fig.2, then divide it into equal spaces andcarry lines from exact same till they cut thelines O-V and C-V. Lay out a stretchout at correct anglesto C-O, as fig. three, and carry lines fromthe distinct points o


Note About Photos
Please note that these photos are extracted from scanned web page photos that could have been digitally enhanced for readability – coloration and look of these illustrations may not perfectly resemble the original operate.





(Source from rapid prototyping from China blog)

Tuesday, October 13, 2015

Cool Prototype China photos

Check out these prototype china images:


Ubco Assembly

Image by locusresearch

Close up shot of 2×2 in the course of assembly


Ubco components

Image by locusresearch

Close up shot of 2×2 for the duration of assembly


Ubco parts

Image by locusresearch

Close up shot of 2×2 during assembly





(Source from rapid prototyping from China blog)

Sunday, October 11, 2015

Cool China Prototype Manufacturing photos

A few good china prototype manufacturing photos I located:


Steven F. Udvar-Hazy Center: Photomontage of SR-71 on the port side

Image by Chris Devers
Posted by means of e-mail to ☛ HoloChromaCinePhotoRamaScope‽: cdevers.posterous.com/panoramas-of-the-sr-71-blackbird-at…. See the full gallery on Posterous …


• • • • •


See far more pictures of this, and the Wikipedia report.


Specifics, quoting from Smithsonian National Air and Space Museum | Lockheed SR-71 Blackbird:


No reconnaissance aircraft in history has operated globally in a lot more hostile airspace or with such complete impunity than the SR-71, the world’s fastest jet-propelled aircraft. The Blackbird’s efficiency and operational achievements placed it at the pinnacle of aviation technologies developments throughout the Cold War.


This Blackbird accrued about two,800 hours of flight time in the course of 24 years of active service with the U.S. Air Force. On its final flight, March six, 1990, Lt. Col. Ed Yielding and Lt. Col. Joseph Vida set a speed record by flying from Los Angeles to Washington, D.C., in 1 hour, 4 minutes, and 20 seconds, averaging three,418 kilometers (two,124 miles) per hour. At the flight’s conclusion, they landed at Washington-Dulles International Airport and turned the airplane more than to the Smithsonian.


Transferred from the United States Air Force.


Manufacturer:
Lockheed Aircraft Corporation


Designer:
Clarence L. &quotKelly&quot Johnson


Date:

1964


Nation of Origin:

United States of America


Dimensions:

Overall: 18ft 5 15/16in. x 55ft 7in. x 107ft 5in., 169998.5lb. (5.638m x 16.942m x 32.741m, 77110.8kg)

Other: 18ft 5 15/16in. x 107ft 5in. x 55ft 7in. (5.638m x 32.741m x 16.942m)


Components:

Titanium


Physical Description:

Twin-engine, two-seat, supersonic strategic reconnaissance aircraft airframe constructed largley of titanium and its alloys vertical tail fins are constructed of a composite (laminated plastic-kind material) to minimize radar cross-section Pratt and Whitney J58 (JT11D-20B) turbojet engines feature massive inlet shock cones.


Long Description:

No reconnaissance aircraft in history has operated in a lot more hostile airspace or with such total impunity than the SR-71 Blackbird. It is the quickest aircraft propelled by air-breathing engines. The Blackbird’s overall performance and operational achievements placed it at the pinnacle of aviation technologies developments in the course of the Cold War. The airplane was conceived when tensions with communist Eastern Europe reached levels approaching a full-blown crisis in the mid-1950s. U.S. military commanders desperately needed correct assessments of Soviet worldwide military deployments, especially close to the Iron Curtain. Lockheed Aircraft Corporation’s subsonic U-two (see NASM collection) reconnaissance aircraft was an in a position platform but the U. S. Air Force recognized that this comparatively slow aircraft was currently vulnerable to Soviet interceptors. They also understood that the speedy development of surface-to-air missile systems could put U-2 pilots at grave risk. The danger proved reality when a U-2 was shot down by a surface to air missile more than the Soviet Union in 1960.


Lockheed’s 1st proposal for a new high speed, higher altitude, reconnaissance aircraft, to be capable of avoiding interceptors and missiles, centered on a design and style propelled by liquid hydrogen. This proved to be impracticable since of considerable fuel consumption. Lockheed then reconfigured the style for conventional fuels. This was feasible and the Central Intelligence Agency (CIA), already flying the Lockheed U-2, issued a production contract for an aircraft designated the A-12. Lockheed’s clandestine ‘Skunk Works’ division (headed by the gifted style engineer Clarence L. &quotKelly&quot Johnson) created the A-12 to cruise at Mach 3.2 and fly well above 18,288 m (60,000 feet). To meet these challenging requirements, Lockheed engineers overcame a lot of daunting technical challenges. Flying far more than three occasions the speed of sound generates 316° C (600° F) temperatures on external aircraft surfaces, which are sufficient to melt traditional aluminum airframes. The design group chose to make the jet’s external skin of titanium alloy to which shielded the internal aluminum airframe. Two conventional, but very effective, afterburning turbine engines propelled this remarkable aircraft. These power plants had to operate across a enormous speed envelope in flight, from a takeoff speed of 334 kph (207 mph) to far more than three,540 kph (2,200 mph). To prevent supersonic shock waves from moving inside the engine intake causing flameouts, Johnson’s group had to style a complex air intake and bypass program for the engines.


Skunk Performs engineers also optimized the A-12 cross-section style to exhibit a low radar profile. Lockheed hoped to achieve this by meticulously shaping the airframe to reflect as little transmitted radar energy (radio waves) as attainable, and by application of specific paint made to absorb, rather than reflect, those waves. This treatment became one of the very first applications of stealth technology, but it never ever completely met the design ambitions.


Test pilot Lou Schalk flew the single-seat A-12 on April 24, 1962, soon after he became airborne accidentally for the duration of higher-speed taxi trials. The airplane showed wonderful guarantee but it needed considerable technical refinement just before the CIA could fly the very first operational sortie on May 31, 1967 – a surveillance flight over North Vietnam. A-12s, flown by CIA pilots, operated as component of the Air Force’s 1129th Unique Activities Squadron beneath the &quotOxcart&quot program. While Lockheed continued to refine the A-12, the U. S. Air Force ordered an interceptor version of the aircraft designated the YF-12A. The Skunk Operates, nonetheless, proposed a &quotspecific mission&quot version configured to conduct post-nuclear strike reconnaissance. This program evolved into the USAF’s familiar SR-71.


Lockheed built fifteen A-12s, which includes a specific two-seat trainer version. Two A-12s had been modified to carry a unique reconnaissance drone, designated D-21. The modified A-12s have been redesignated M-21s. These have been developed to take off with the D-21 drone, powered by a Marquart ramjet engine mounted on a pylon amongst the rudders. The M-21 then hauled the drone aloft and launched it at speeds high adequate to ignite the drone’s ramjet motor. Lockheed also built 3 YF-12As but this type never ever went into production. Two of the YF-12As crashed for the duration of testing. Only a single survives and is on display at the USAF Museum in Dayton, Ohio. The aft section of a single of the &quotwritten off&quot YF-12As which was later utilised along with an SR-71A static test airframe to manufacture the sole SR-71C trainer. One SR-71 was lent to NASA and designated YF-12C. Including the SR-71C and two SR-71B pilot trainers, Lockheed constructed thirty-two Blackbirds. The 1st SR-71 flew on December 22, 1964. Simply because of extreme operational charges, military strategists decided that the much more capable USAF SR-71s need to replace the CIA’s A-12s. These had been retired in 1968 soon after only one year of operational missions, largely over southeast Asia. The Air Force’s 1st Strategic Reconnaissance Squadron (part of the 9th Strategic Reconnaissance Wing) took more than the missions, flying the SR-71 starting in the spring of 1968.


Following the Air Force began to operate the SR-71, it acquired the official name Blackbird– for the unique black paint that covered the airplane. This paint was formulated to absorb radar signals, to radiate some of the tremendous airframe heat generated by air friction, and to camouflage the aircraft against the dark sky at higher altitudes.


Experience gained from the A-12 program convinced the Air Force that flying the SR-71 safely required two crew members, a pilot and a Reconnaissance Systems Officer (RSO). The RSO operated with the wide array of monitoring and defensive systems installed on the airplane. This equipment incorporated a sophisticated Electronic Counter Measures (ECM) program that could jam most acquisition and targeting radar. In addition to an array of sophisticated, higher-resolution cameras, the aircraft could also carry equipment designed to record the strength, frequency, and wavelength of signals emitted by communications and sensor devices such as radar. The SR-71 was created to fly deep into hostile territory, avoiding interception with its tremendous speed and higher altitude. It could operate safely at a maximum speed of Mach three.3 at an altitude more than sixteen miles, or 25,908 m (85,000 ft), above the earth. The crew had to put on pressure suits comparable to those worn by astronauts. These suits have been needed to safeguard the crew in the event of sudden cabin stress loss even though at operating altitudes.


To climb and cruise at supersonic speeds, the Blackbird’s Pratt &amp Whitney J-58 engines have been made to operate continuously in afterburner. While this would seem to dictate higher fuel flows, the Blackbird really accomplished its greatest &quotgas mileage,&quot in terms of air nautical miles per pound of fuel burned, in the course of the Mach three+ cruise. A typical Blackbird reconnaissance flight might require a number of aerial refueling operations from an airborne tanker. Every single time the SR-71 refueled, the crew had to descend to the tanker’s altitude, typically about six,000 m to 9,000 m (20,000 to 30,000 ft), and slow the airplane to subsonic speeds. As velocity decreased, so did frictional heat. This cooling effect triggered the aircraft’s skin panels to shrink significantly, and those covering the fuel tanks contracted so a lot that fuel leaked, forming a distinctive vapor trail as the tanker topped off the Blackbird. As quickly as the tanks were filled, the jet’s crew disconnected from the tanker, relit the afterburners, and again climbed to high altitude.


Air Force pilots flew the SR-71 from Kadena AB, Japan, throughout its operational profession but other bases hosted Blackbird operations, too. The 9th SRW occasionally deployed from Beale AFB, California, to other places to carryout operational missions. Cuban missions have been flown directly from Beale. The SR-71 did not commence to operate in Europe until 1974, and then only temporarily. In 1982, when the U.S. Air Force based two aircraft at Royal Air Force Base Mildenhall to fly monitoring mission in Eastern Europe.


When the SR-71 became operational, orbiting reconnaissance satellites had already replaced manned aircraft to collect intelligence from sites deep inside Soviet territory. Satellites could not cover each and every geopolitical hotspot so the Blackbird remained a essential tool for worldwide intelligence gathering. On several occasions, pilots and RSOs flying the SR-71 offered information that proved important in formulating productive U. S. foreign policy. Blackbird crews offered critical intelligence about the 1973 Yom Kippur War, the Israeli invasion of Lebanon and its aftermath, and pre- and post-strike imagery of the 1986 raid carried out by American air forces on Libya. In 1987, Kadena-primarily based SR-71 crews flew a number of missions over the Persian Gulf, revealing Iranian Silkworm missile batteries that threatened industrial shipping and American escort vessels.


As the overall performance of space-based surveillance systems grew, along with the effectiveness of ground-primarily based air defense networks, the Air Force started to drop enthusiasm for the costly program and the 9th SRW ceased SR-71 operations in January 1990. In spite of protests by military leaders, Congress revived the plan in 1995. Continued wrangling more than operating budgets, even so, quickly led to final termination. The National Aeronautics and Space Administration retained two SR-71As and the one particular SR-71B for high-speed research projects and flew these airplanes till 1999.


On March six, 1990, the service profession of 1 Lockheed SR-71A Blackbird ended with a record-setting flight. This special airplane bore Air Force serial quantity 64-17972. Lt. Col. Ed Yeilding and his RSO, Lieutenant Colonel Joseph Vida, flew this aircraft from Los Angeles to Washington D.C. in 1 hour, 4 minutes, and 20 seconds, averaging a speed of 3,418 kph (2,124 mph). At the conclusion of the flight, ‘972 landed at Dulles International Airport and taxied into the custody of the Smithsonian’s National Air and Space Museum. At that time, Lt. Col. Vida had logged 1,392.7 hours of flight time in Blackbirds, more than that of any other crewman.


This particular SR-71 was also flown by Tom Alison, a former National Air and Space Museum’s Chief of Collections Management. Flying with Detachment 1 at Kadena Air Force Base, Okinawa, Alison logged a lot more than a dozen ‘972 operational sorties. The aircraft spent twenty-4 years in active Air Force service and accrued a total of 2,801.1 hours of flight time.


Wingspan: 55’7&quot

Length: 107’5&quot

Height: 18’6&quot

Weight: 170,000 Lbs


Reference and Further Reading:


Crickmore, Paul F. Lockheed SR-71: The Secret Missions Exposed. Oxford: Osprey Publishing, 1996.


Francillon, Rene J. Lockheed Aircraft Given that 1913. Annapolis, Md.: Naval Institute Press, 1987.


Johnson, Clarence L. Kelly: Far more Than My Share of It All. Washington D.C.: Smithsonian Institution Press, 1985.


Miller, Jay. Lockheed Martin’s Skunk Works. Leicester, U.K.: Midland Counties Publishing Ltd., 1995.


Lockheed SR-71 Blackbird curatorial file, Aeronautics Division, National Air and Space Museum.


DAD, 11-11-01





(Source from rapid prototyping from China blog)

Thursday, September 17, 2015

Cool China Prototypes pictures

Some cool china prototypes pictures:


BMW GUGGENHEIM LAB

Image by DCF_pics

MARS IN MUMBAI

Prototypes of adjust developed for the BMW Guggenheim Lab


Informal settlements dominate a lot of the world’s emerging cityscape. The tense social and spatial circumstances they bring forth render most urban techniques ineffective. Neither prime-down planning, defined by a technocratic strategy of ever bigger infrastructure, nor bottom-up efforts, in the kind of increasingly sophisticated neighborhood level projects, seem capable to meet the challenges at the scale the establishing metropolis demands. Can micro-scale interventions be designed to accomplish citywide techniques?


This conceptual divide is additional exacerbated in Mumbai, where slums that make up two-thirds of the population reduce via the entire island city in a sharp spatial divide. Attempts to address the dire challenges from, water safety to pollution and extreme congestion, are limited to either the formal or informal settlements. MARS Architects has produced a vision for a United Mumbai, the starting point for incorporating informal settlements as totally integrated parts of the formal city.


More than the coming weeks, stakeholder meetings will be held at the Guggenheim Lab Mumbai to talk about our ten proposed technologies, from wall systems to transport systems. Stick to us as an expanding method of architectural interventions turns slums into sustainable settlements, which in turn become the backbone of a United Mumbai.


Component 1: SPI MODEL

The foundation of this project is an in-depth study of Mumbai’s population density. Not merely mapping Mumbai’s infamous situations in abstract terms but introducing a new methodology that greater represents the knowledge on the ground. The new metric, named the Stacked Population Index (SPI), measures the density of folks per amount of offered floor surface. Suddenly the accurate extents of Mumbai’s informal settlements can be observed: a yellow forest of towering densities covers the whole urban landscape. The harsh reality the city accommodates two thirds of its population on much less than a quarter of its residential surface, and but urban plans for Mumbai largely ignore their existence.


Comply with the project: MARS Architects Facebook web page


Occasion specifics: BMW GUGGENHEIM LAB


BMW GUGGENHEIM LAB

Image by DCF_pics

MARS IN MUMBAI

Prototypes of change developed for the BMW Guggenheim Lab


Informal settlements dominate considerably of the world’s emerging cityscape. The tense social and spatial situations they bring forth render most urban techniques ineffective. Neither top-down preparing, defined by a technocratic method of ever larger infrastructure, nor bottom-up efforts, in the kind of increasingly sophisticated neighborhood level projects, seem able to meet the challenges at the scale the developing metropolis demands. Can micro-scale interventions be designed to accomplish citywide strategies?


This conceptual divide is further exacerbated in Mumbai, where slums that make up two-thirds of the population cut by means of the complete island city in a sharp spatial divide. Attempts to address the dire challenges from, water safety to pollution and serious congestion, are restricted to either the formal or informal settlements. MARS Architects has produced a vision for a United Mumbai, the starting point for incorporating informal settlements as completely integrated components of the formal city.


More than the coming weeks, stakeholder meetings will be held at the Guggenheim Lab Mumbai to go over our ten proposed technologies, from wall systems to transport systems. Follow us as an expanding method of architectural interventions turns slums into sustainable settlements, which in turn turn into the backbone of a United Mumbai.


Portion 1: SPI MODEL

The foundation of this project is an in-depth study of Mumbai’s population density. Not merely mapping Mumbai’s infamous circumstances in abstract terms but introducing a new methodology that greater represents the experience on the ground. The new metric, named the Stacked Population Index (SPI), measures the density of people per quantity of offered floor surface. Abruptly the true extents of Mumbai’s informal settlements can be observed: a yellow forest of towering densities covers the entire urban landscape. The harsh reality the city accommodates two thirds of its population on significantly less than a quarter of its residential surface, and yet urban plans for Mumbai mainly ignore their existence.


Follow the project: MARS Architects Facebook web page


Occasion information: BMW GUGGENHEIM LAB


BMW GUGGENHEIM LAB

Image by DCF_pics

MARS IN MUMBAI

Prototypes of adjust created for the BMW Guggenheim Lab


Informal settlements dominate considerably of the world’s emerging cityscape. The tense social and spatial circumstances they bring forth render most urban techniques ineffective. Neither leading-down arranging, defined by a technocratic approach of ever bigger infrastructure, nor bottom-up efforts, in the kind of increasingly sophisticated community level projects, look capable to meet the challenges at the scale the creating metropolis demands. Can micro-scale interventions be developed to attain citywide strategies?


This conceptual divide is additional exacerbated in Mumbai, exactly where slums that make up two-thirds of the population reduce through the complete island city in a sharp spatial divide. Attempts to address the dire challenges from, water safety to pollution and severe congestion, are limited to either the formal or informal settlements. MARS Architects has created a vision for a United Mumbai, the starting point for incorporating informal settlements as completely integrated components of the formal city.


Over the coming weeks, stakeholder meetings will be held at the Guggenheim Lab Mumbai to discuss our ten proposed technologies, from wall systems to transport systems. Comply with us as an expanding system of architectural interventions turns slums into sustainable settlements, which in turn turn out to be the backbone of a United Mumbai.


Element 1: SPI MODEL

The foundation of this project is an in-depth study of Mumbai’s population density. Not merely mapping Mumbai’s infamous situations in abstract terms but introducing a new methodology that greater represents the experience on the ground. The new metric, called the Stacked Population Index (SPI), measures the density of men and women per quantity of available floor surface. Abruptly the correct extents of Mumbai’s informal settlements can be observed: a yellow forest of towering densities covers the entire urban landscape. The harsh reality the city accommodates two thirds of its population on significantly less than a quarter of its residential surface, and yet urban plans for Mumbai mostly ignore their existence.


Comply with the project: MARS Architects Facebook page


Event details: BMW GUGGENHEIM LAB





(Source from rapid prototyping from China blog)

Sunday, August 30, 2015

Cool Precision Engineering Elements photos

A couple of nice precision engineering components images I found:


Beaulieu National Motor Museum 18-09-2012


Image by Karen Roe

1903 Cadillac

USA

This Model A was the initial Cadillac to be brought to Britain. Frederick Stanley Bennett imported it and drove it in the 1903 Thousand Miles Trial. Bennett subsequently became the official UK importer and was behind the standardisation tests of 1908 in which three identical Cadillacs were dismantled and then rebuilt from a mixed up pile of components, proving the interchangeability of the elements.

Produced in 1902 by Henry Leland, Cadillac was constructed upon the remains of the original Henry Ford Firm. From the starting Leland insisted on the highest requirements of precision engineering in order to build a quality mass produced car, demanding that ‘We need to make every piston so precise and every single cylinder so exact that every piston will fit into every cylinder’. Regardless of these higher production requirements more than 2000 Cadillacs had been developed in 1903.

Engine: 1609cc, 1 cylinder, overhead valve, six,5hp

Performance: 30mph

Cost New: £200

Manufacturer: Cadillac Automobile Business, Detroit

Owner: Mr J.F. Bennett and Mrs M Southam


Housing a collection of over 250 automobiles and motorcycles telling the story of motoring on the roads of Britain from the dawn of motoring to the present day, the award winning (Winner – The International Historic Motoring Awards of the Year 2012) National Motor Museum appeals to all age groups. From World Land Speed Record Breakers such as Campbell’s famous Bluebird to film favourites such as the magical flying car, Chitty Chitty Bang Bang and uncommon oddities like the giant orange on wheels. Don’t miss fascinating extra attributes such as the Motorsport Gallery, Wheels and Jack Tucker’s Garage – A permanent, multi award-winning 1930’s garage has been produced inside the Museum, comprehensive down to the final nut and bolt and rusty drainpipe. While the building is a comprehensive fabrication, everything in it – all the fixtures, fittings, tools and ephemera – are genuine artefacts collected over a period of 25 years.


Custom Inshore Snook Spinning Rod


Image by Cajun Custom Rods

This Cajun Custom Rods™ “Inshore Snook Spinning Rod&quot is functionality-enhanced and hand-crafted to provide you the quite greatest custom fishing rod obtainable – loaded for inshore fishing action! Precision-tuned for energy-finesse inshore spin-casting, this custom fishing rod leverages cutting-edge technologies to incorporate: a classic layout of hand-tuned Titanium REC Recoil spinning guides with &quotSpring-Back technology,&quot a CCR™ split grip manage technique utilizing Super Grade Premium Higher Density (HD) Portuguese cork, a sensitivity-tuned and ergonomic AERO spinning reel seat (silver hood / comfort finish), ProWrap &quotMetallic Green &amp Black&quot thread, and a laser-cut Snook decal. This custom fishing rod is built around a perfectly engineered 7′ Lamiglas inshore popping series rod blank … engineered, fabricated, and hand-tuned to each premium component! Custom-made, corrosion-proof, and strike-prepared … At Cajun Custom Rods™, you style the rod of your dreams and we’ll build your self-assurance!”


&quotTight Wraps, Tight Lines, and Content Fishing on the 4th of July!&quot


– Jaesen Yerger

Cajun Custom Rods™, Inc.
www.cajuncustomrods.com


Custom Inshore Snook Spinning Rod


Image by Cajun Custom Rods

This Cajun Custom Rods™ “Inshore Snook Spinning Rod&quot is efficiency-enhanced and hand-crafted to supply you the extremely greatest custom fishing rod available – loaded for inshore fishing action! Precision-tuned for power-finesse inshore spin-casting, this custom fishing rod leverages cutting-edge technologies to include: a standard layout of hand-tuned Titanium REC Recoil spinning guides with &quotSpring-Back technology,&quot a CCR™ split grip manage program utilizing Super Grade Premium High Density (HD) Portuguese cork, a sensitivity-tuned and ergonomic AERO spinning reel seat (silver hood / comfort finish), ProWrap &quotMetallic Green &amp Black&quot thread, and a laser-cut Snook decal. This custom fishing rod is constructed around a completely engineered 7′ Lamiglas inshore popping series rod blank … engineered, fabricated, and hand-tuned to every single premium element! Custom-developed, corrosion-proof, and strike-ready … At Cajun Custom Rods™, you design the rod of your dreams and we’ll create your self-assurance!”


&quotTight Wraps, Tight Lines, and Content Fishing on the 4th of July!&quot


– Jaesen Yerger

Cajun Custom Rods™, Inc.
www.cajuncustomrods.com





(Source from rapid prototyping from China blog)

Saturday, August 22, 2015

Cool Higher Precision Engineering photos

Some cool high precision engineering photos:


Image from page 1147 of “Electrical globe” (1883)


Image by World wide web Archive Book Images
Identifier: electricalworld43newy
Title: Electrical planet
Year: 1883 (1880s)
Authors:
Subjects: Electrical engineering
Publisher: [New York McGraw-Hill Pub. Co., etc.]
Contributing Library: Engineering – University of Toronto
Digitizing Sponsor: University of Toronto


View Book Page: Book Viewer
About This Book: Catalog Entry
View All Images: All Pictures From Book


Click right here to view book on-line to see this illustration in context in a browseable on the web version of this book.


Text Appearing Prior to Image:
or belt ordirect connection rotary converters, motor-generator sets, oil-in-sulated and air-blast transformers, direct-present and alternating-existing railway motors and controllers, single and polyphase in-duction motors of constant and variable speeds, direct-current motorsof several kinds, including motors for variable-speed service fromsingle and double-voltage circuits, switchboard apparatus, ammeters,voltmeters, wattmeters, synchroscopes, energy factor meters, circuit-breakers and switches, a lot of of them electrically operated portableinstruments, instruments of precision, potential regulators, and innu-merable other forms of auxiliary apparatus and instruments. Thealternating-existing, series-wound, single-phase crane motors, sim-ilar in sort and common construction to the single-phase railwaymotors exhibited in the Transportation Building, and the new West-inghouse Unit Switch System of Numerous Control are also to heseen in this section. The spectacular high-tension sign, utilizing a


Text Appearing After Image:
FIG. five.—BRAKE E.XHIBITS, TRANSPORTATION Developing. brake which is now so considerably in use. The method at present gen-erally adopted when two pumps are used on 1 locomotive isshown, and a single of the novel attributes of the rack is that all valvesare placed ig duplicate, a single sectioned so as to show the internalworking mechanism, and connected to the valve in use in such a ELECTRICAL Planet and ENGINEER. Vol. XLIII, No. 24. manner that it moves as the standard valve is operated. The opera-tion of the different valves is therefore readily studied. The Westinghouse friction draft gear also is shown in section,with a machine specially made for testing it in operation. Theavailable power which can be e.xerted on the draft gear approximates2,000 pounds. A triple valve testing rack is presented to show themanner in which this device is now getting installed in a lot of rail-road shops. Sectional parts also are shown of the other apparatusof the Westinghouse Air Brake Organization and the WestinghouseTraction Brake


Note About Photos
Please note that these photos are extracted from scanned page photos that may have been digitally enhanced for readability – coloration and look of these illustrations may possibly not perfectly resemble the original function.





(Source from rapid prototyping from China blog)

Friday, July 31, 2015

Cool Metal Components China pictures

Some cool metal components china pictures:


mong kok, materials


Image by cesarharada.com


handy taxi driver in mong kok, materials


Image by cesarharada.com


mong kok, supplies


Image by cesarharada.com





(Source from rapid prototyping from China blog)

Monday, June 29, 2015

Cool Speedy Prototyping China images

Check out these speedy prototyping china photos:


Speedy prototyping Protei 011 “Optimist”


Image by cesarharada.com





(Source from rapid prototyping from China blog)

Monday, June 1, 2015

Cool Milling Engineering photos

Verify out these milling engineering photos:


PA – Mill Run: Fallingwater – Living space fireplace and kettle


Image by wallyg

A boulder best, increasing unaltered above the level of the very first floor, serves as the hearth of the 1,800-square-foot living area fireplace and the functional and spiritual heart of Fallingwater. To the left hangs a spherical Cherokee-red kettle that can be swung over the fire. The kettle, copied soon after one Frank Lloyd Wright utilised at Taliesin, was intended to serve mulled wine, but proved unworkable. The fireplace fork is signed by the master ironworker Samuel Yellin, who created it about 1930 for La Tourelle.


Fallingwater, often referred to as the Edgar J. Kaufmann Sr. Residence or just the Kaufmann Residence, situated inside a five,100-acre nature reserve 50 miles southeast of Pittsburgh, was developed by Frank Lloyd Wright and constructed amongst 1936 and 1939. Built more than a 30-foot flowing waterfall on Bear Run in the Mill Run section of Stewart Township, Fayette County, Pennsylvania, the property served as a vacation retreat for the Kaufmann loved ones like patriarch, Edgar Kaufmann Sr., was a productive Pittsburgh businessman and president of Kaufmann’s Department Shop, and his son, Edgar Kaufmann, Jr., who studied architecture briefly below Wright. Wright collaborated with employees engineers Mendel Glickman and William Wesley Peters on the structural design and style, and assigned his apprentice, Robert Mosher, as his permanent on-internet site representative throughout building. Despite frequent conflicts between Wright, Kaufmann, and the building contractor, the home and guesthouse were lastly constructed at a cost of 5,000.


Fallingwater was designated a National Historic Landmark in 1966. It was listed among the Smithsonian’s 28 Areas to See Prior to You Die. In a 1991 poll of members of the American Institute of Architects (AIA), it was voted &quotthe very best all-time work of American architecture.&quot In 2007, Fallingwater was ranked #29 on the AIA 150 America’s Favorite Architecture list.


National Register #74001781 (1974)


PA – Mill Run: Fallingwater – Dressing Space


Image by wallyg

Fallingwater’s Dressing Room, on the second floor, is often referred to as Edgar Kaufmann Sr’s Study or Edgar Kaufmann Sr’s bedroom.


Fallingwater, sometimes referred to as the Edgar J. Kaufmann Sr. Residence or just the Kaufmann Residence, located within a five,100-acre nature reserve 50 miles southeast of Pittsburgh, was created by Frank Lloyd Wright and built amongst 1936 and 1939. Built over a 30-foot flowing waterfall on Bear Run in the Mill Run section of Stewart Township, Fayette County, Pennsylvania, the property served as a trip retreat for the Kaufmann family members including patriarch, Edgar Kaufmann Sr., was a productive Pittsburgh businessman and president of Kaufmann’s Division Retailer, and his son, Edgar Kaufmann, Jr., who studied architecture briefly beneath Wright. Wright collaborated with staff engineers Mendel Glickman and William Wesley Peters on the structural style, and assigned his apprentice, Robert Mosher, as his permanent on-website representative all through construction. Regardless of frequent conflicts in between Wright, Kaufmann, and the building contractor, the property and guesthouse were finally constructed at a price of five,000.


Fallingwater was designated a National Historic Landmark in 1966. It was listed among the Smithsonian’s 28 Places to See Just before You Die. In a 1991 poll of members of the American Institute of Architects (AIA), it was voted &quotthe greatest all-time perform of American architecture.&quot In 2007, Fallingwater was ranked #29 on the AIA 150 America’s Favored Architecture list.


National Register #74001781 (1974)





(Source from rapid prototyping from China blog)

Tuesday, May 19, 2015

Cool Milling Engineering pictures

A couple of good milling engineering images I identified:


sound effects that made Tv history


Image by brizzle born and bred
image above: Two veterans of the Workshop recreate some of its renowned sounds.


The BBC’s Radiophonic Workshop, a pioneering force in sound effects, would have been 50 this month. Ten years following it was disbanded, what remains of its former glory?


Deep in the bowels of BBC Maida Vale studios, behind a door marked B11, is all that is left of an institution in British television history.


A green lampshade, an immersion tank and half a guitar lie forlornly on a shelf, above a couple of old synthesisers in a area complete of electrical bric-a-brac.


These are the sad remnants of the BBC Radiophonic Workshop, set up 50 years ago to develop revolutionary sound effects and incidental music for radio and tv.


The corporation initially only offered its founders a six-month contract, simply because it feared any longer in the throes of such creative and experimental workout routines may make them ill.


Using reel-to-reel tape machines, early heroines such as Daphne Oram and Delia Derbyshire recorded everyday or strange sounds and then manipulated these by speeding up, slowing down or cutting the tape with razor blades and piecing it back together.


The sound of the Tardis was 1 sound engineer’s front-door key scraped across the bass strings on a broken piano. Other impromptu props integrated a lampshade, champagne corks and assorted cutlery.


Ten years ago the workshop was disbanded due to charges but its reputation as a Heath Robinson-style, pioneering force in sound is as powerful as ever, acknowledged by ambient DJs like Aphex Twin.


Although considerably of its gear has lengthy been sold off, each and every sound and musical theme it produced has been preserved. To mark its 50 years, there are plans for a CD box-set.


Right here Dick Mills and Mark Ayres, who each worked there, use the surviving gear to revive four sounds from the previous.


Green Lampshade


This was a stroke of genius from Delia Derbyshire, who died in 2001 and famously created the Medical doctor Who theme tune from Ron Grainer’s score.


The magic of Delia Derbyshire’s lampshade, recreated by Dick Mills and Mark Ayres


She would hit the tatty-seeking aluminium lampshade to create a sound with a organic, pure frequency. Right after recording it on tape, she would play with it to make the desired sound effect.


For a documentary on the Tuareg people of the Sahara desert, she took the ringing element of the lampshade sound, faded it up and then reconstructed it utilizing the workshop’s 12 oscillators to give a whooshing sound, allied to her own voice.


&quotSo the camels rode off into the sunset with my voice in their hooves and a green lampshade on their backs,&quot she once said.


The green lampshade has because gained close to-mythical status and Peter Howell, who succeeded Derbyshire in the early 1970s and reworked the Medical professional Who theme tune, can see why.


&quotIt’s a helpful point to cling on to simply because every person knows what a lampshade is due to the fact it symbolises the use of domestic objects to produce sounds.&quot


The workshop fascinates his music students nowadays simply because of all the kit employed back then, he says, and its influence is nonetheless clearly observed – an advert for a VW Golf that makes use of only sounds of the vehicle, for instance.


&quotThe sampling era we’re now in is the subsequent generation of the same principle.&quot


Dalek Voice


The sound that sent youngsters, and many adults, cowering behind sofas was co-produced by Mills, a sound engineer who joined the workshop in its initial year and left 35 years later.

Generating the voice of the Daleks


&quotWe tried to give the impression that whenever a Dalek spoke, it wasn’t speaking like we do, it was accessing words from a memory bank, so they all sound the same – dispassionate, mechanical and retrievable.&quot


He utilised a centre-tap transformer plugged into the microphone of an actor standing at the side of the set, and the threat in the voice was all in the overall performance.


Sometimes the tape got played at the wrong speed and the voice came out slightly differently, but the arrival of the EMS VCS3 synthesiser in the late 60s did not signal the end for this tried and tested strategy.


In other methods, nevertheless, the synthesisers changed the way the workshop operated and – in spite of some resistance by individuals – presented a larger selection.


Workshop Highlights


Sound effects: Quatermass and the Pit, The Goon Show, Blake’s 7, The Hitch-Hiker’s Guide to the Galaxy, Doctor Who Music: Woman’s Hour, Tomorrow’s World, Blue Peter, John Craven’s Newsround, Medical doctor Who


&quotSynthesisers provided a wide open pallet of colours and sounds to play with, but you still had to pick what you wanted to do and learn the discipline of this new technological type,&quot says Mills.


&quotSo on the one hand, it was effortless but you still had the original difficulty of considering of the idea in the 1st place.&quot


Sci-Fi Door Opening


Sci-fi fans will recognise the &quotswooshing&quot door from programmes such as Physician Who and Blake’s 7, plus in the odd hotel scene in other programmes.


The workshop’s suitcase synth


The suitcase synthesiser was a portable version of the VCS3, useful for jobs out of the studio.


Recalling the early days and influences, Mills says: &quotWe would take a pre-recorded sound effect from the BBC’s vast library but treated them to produce cerebral effects. If you wanted a character to seem to be thinking, you got him to read the line and put in a strange echo.&quot


Related tactics had been already utilized in Europe in &quotmusique concrete&quot.


&quotThey did it for their own investigation and study, but our way of life was we never did something until a commission.


So all our experimentation and investigation was taking place in the context of that radio or tv programme.&quot


One of Mills’ proudest creations was the slimy monster sound, which was him spreading Swarfega cleaning gel on his hands and then slowing down the sound.


And he produced the upset tummy of Major Bloodnok in The Goon Show, a colonial officer who liked curry, by utilizing burp sounds and an oscillator to give a violent, explosive gastro-effect. Making use of contrasting sounds extremely speedily is a trick in audio comedy.


&quotWe did our personal factor in the name of artistic creation. Functioning here was a bit like surf riding. Every so typically a creative wave of power kept you going till the wave ran out.&quot


Broken Guitar


1 pluck of a guitar string became the well-known Dr Who bass line. Derbyshire and Mills sped it up and slowed it down to get the different notes, and these had been cut to give it an further twang on the front of each note.


Demonstration of the Radiophonic Workshop’s guitar


&quotIt slides up to the note each and every time if you listen meticulously,&quot says Mills. &quotDelia fabricated the baseline out of two or 3 lines of tape.


&quotYou’d be scrabbling around the floor saying ‘Where’s that half-inch of tape I wanted to play on the front of that note?’&quot


Every single sound generated by the workshop and employed in radio or tv is preserved, partly in thanks to archivist Mark Ayres, who worked there whilst a student.


He believes a single of its greatest legacies is that it created listeners much more utilised to hearing such sounds as portion of everyday entertainment and education.


&quotIt led to] the steady integration of experimental sound into popular culture and the placement of such sound into the mainstream rather than it becoming confined to various strictly academic studios.


&quotCertainly, considerably of this took place in parallel with developments elsewhere – The Beatles’ Sergeant Pepper and Pink Floyd’s Dark Side of the Moon for example.


&quotLater on, the workshop housed a couple of the most advanced laptop-primarily based MIDI studios in the globe, but by that time competition from the outside world was too fantastic and, under [the BBC’s policy] Producer Decision, the workshop could not compete on price and its demise was inevitable.&quot


Old Mills and Guthrie along the Mississippi


Image by Gmonkey


PA – Mill Run: Fallingwater


Image by wallyg

The cantilevered terraces are crucial to the organization and knowledge of Fallingwater, uniting the indoor and outside space.


Fallingwater, at times referred to as the Edgar J. Kaufmann Sr. Residence or just the Kaufmann Residence, situated inside a five,one hundred-acre nature reserve 50 miles southeast of Pittsburgh, was created by Frank Lloyd Wright and built between 1936 and 1939. Built more than a 30-foot flowing waterfall on Bear Run in the Mill Run section of Stewart Township, Fayette County, Pennsylvania, the property served as a vacation retreat for the Kaufmann family members such as patriarch, Edgar Kaufmann Sr., was a effective Pittsburgh businessman and president of Kaufmann’s Department Retailer, and his son, Edgar Kaufmann, Jr., who studied architecture briefly below Wright. Wright collaborated with employees engineers Mendel Glickman and William Wesley Peters on the structural design, and assigned his apprentice, Robert Mosher, as his permanent on-web site representative throughout construction. Despite frequent conflicts amongst Wright, Kaufmann, and the construction contractor, the home and guesthouse had been ultimately constructed at a price of 5,000.


Fallingwater was designated a National Historic Landmark in 1966. It was listed amongst the Smithsonian’s 28 Locations to See Before You Die. In a 1991 poll of members of the American Institute of Architects (AIA), it was voted &quotthe greatest all-time work of American architecture.&quot In 2007, Fallingwater was ranked #29 on the AIA 150 America’s Favourite Architecture list.


National Register #74001781 (1974)





(Source from rapid prototyping from China blog)

Saturday, May 16, 2015

Cool Metal Parts China pictures

A couple of good metal components china pictures I located:


Blue Metal and Light


Image by Stuck in Customs

A lot of regulars know that I like to get &quotlost&quot in cities and uncover tiny secrets right here or there. But, that’s frequently in the older, charming part of cities. I rarely go into the industrial or mega-residential areas since at times they are far more sterile or significantly less intriguing. Properly, this portion of Beijing is sort of a neo-industrial jungle of wild architecture and unexpected forms of light. There are dozens of brand-new buildings, each with exciting designs and numerous angles. I ended up staying in this area deep into the night.


from the blog www.stuckincustoms.com


Way to the future appropriate now


Image by aurelio.asiain

Much much more greater at a close approach: the unfinished National Grand Theater of China, in Beijing, next to the Great Hall of the Men and women. With 150,000 square meters floor region, it was supposed to be finished and ready to have performances by 2005, but the construction is still going on. (This is part of a growing set, try operating the slideshow first.)





(Source from rapid prototyping from China blog)

Saturday, May 9, 2015

Cool Prototype Makers In China pictures

A handful of nice prototype manufacturers in china pictures I located:


Steven F. Udvar-Hazy Center: SR-71 Blackbird (starboard tail view)


Image by Chris Devers
See much more photographs of this, and the Wikipedia post.


Specifics, quoting from Smithsonian National Air and Space Museum | Lockheed SR-71 Blackbird:


No reconnaissance aircraft in history has operated globally in much more hostile airspace or with such full impunity than the SR-71, the world’s quickest jet-propelled aircraft. The Blackbird’s overall performance and operational achievements placed it at the pinnacle of aviation technology developments for the duration of the Cold War.


This Blackbird accrued about two,800 hours of flight time throughout 24 years of active service with the U.S. Air Force. On its final flight, March 6, 1990, Lt. Col. Ed Yielding and Lt. Col. Joseph Vida set a speed record by flying from Los Angeles to Washington, D.C., in 1 hour, four minutes, and 20 seconds, averaging 3,418 kilometers (2,124 miles) per hour. At the flight’s conclusion, they landed at Washington-Dulles International Airport and turned the airplane more than to the Smithsonian.


Transferred from the United States Air Force.


Manufacturer:
Lockheed Aircraft Corporation


Designer:
Clarence L. &quotKelly&quot Johnson


Date:

1964


Country of Origin:

United States of America


Dimensions:

General: 18ft 5 15/16in. x 55ft 7in. x 107ft 5in., 169998.5lb. (5.638m x 16.942m x 32.741m, 77110.8kg)

Other: 18ft 5 15/16in. x 107ft 5in. x 55ft 7in. (five.638m x 32.741m x 16.942m)


Materials:

Titanium


Physical Description:

Twin-engine, two-seat, supersonic strategic reconnaissance aircraft airframe constructed largley of titanium and its alloys vertical tail fins are constructed of a composite (laminated plastic-kind material) to lessen radar cross-section Pratt and Whitney J58 (JT11D-20B) turbojet engines function massive inlet shock cones.





(Source from rapid prototyping from China blog)

Sunday, April 26, 2015

Cool Milling Engineering pictures

Some cool milling engineering pictures:


PA – Mill Run: Fallingwater – Livingroom


Image by wallyg

Fallingwater’s monumental 1,800 square foot living measures roughly 40 by 50 feet and a central, symmetrical raised cove ceiling.


Fallingwater, occasionally referred to as the Edgar J. Kaufmann Sr. Residence or just the Kaufmann Residence, positioned within a five,one hundred-acre nature reserve 50 miles southeast of Pittsburgh, was designed by Frank Lloyd Wright and built in between 1936 and 1939. Built over a 30-foot flowing waterfall on Bear Run in the Mill Run section of Stewart Township, Fayette County, Pennsylvania, the residence served as a trip retreat for the Kaufmann family including patriarch, Edgar Kaufmann Sr., was a effective Pittsburgh businessman and president of Kaufmann’s Division Shop, and his son, Edgar Kaufmann, Jr., who studied architecture briefly below Wright. Wright collaborated with employees engineers Mendel Glickman and William Wesley Peters on the structural style, and assigned his apprentice, Robert Mosher, as his permanent on-website representative all through building. Despite frequent conflicts between Wright, Kaufmann, and the construction contractor, the house and guesthouse had been ultimately constructed at a cost of five,000.


The 23¾&quot x 18¼&quot x 60&quot wood coffee table was designed by Frank Lloyd Wright. The smaller tabonettes, a side table or occasional table, also made by Wright, came in three sizes and all bearing a resemblance to their bigger coffee table counterpart. The name, tabonette, came about from a mistaken transcription by one of Wright’s apprentices who might misspelled the word taboret. The Zabuton, 25½&quot x 29¾&quot floor cushions, had been created by Frank Lloyd Wright in 1939. The Higher Hassocks, also designed by Wright, are taller versions of the Zabuton at 12&quot x 26&quot x 21¾&quot. They represent 1 of the earliest makes use of of latex foam, a material suggested by Edgar Jaufmann Jr., in a residential setting. Surrounded by a walnut veneer frame, the floor cushions are upholsted with either a red or yellow, heavily textured, wool blend Jack Lenor Larsen fabric known as Doria. The cost-free floating seats of differing heights support produce a casual environment.


Fallingwater was designated a National Historic Landmark in 1966. It was listed amongst the Smithsonian’s 28 Areas to See Ahead of You Die. In a 1991 poll of members of the American Institute of Architects (AIA), it was voted &quotthe greatest all-time work of American architecture.&quot In 2007, Fallingwater was ranked #29 on the AIA 150 America’s Preferred Architecture list.


National Register #74001781 (1974)


PA – Mill Run: Fallingwater – Livingroom


Image by wallyg

Fallingwater’s monumental 1,800 square foot living measures roughly 40 by 50 feet and a central, symmetrical raised cove ceiling.


The wood and lacquer red cubical sculpture that sits on the coffee table was designed by artist Paul Mayén in the 1950s. The 23¾&quot x 18¼&quot x 60&quot wood coffee table was designed by Frank Lloyd Wright. The smaller sized tabonettes, a side table or occasional table, also created by Wright, came in 3 sizes and all bearing a resemblance to their bigger coffee table counterpart. The name, tabonette, came about from a mistaken transcription by 1 of Wright’s apprentices who might misspelled the word taboret. The Zabuton, 25½&quot x 29¾&quot floor cushions, had been made by Frank Lloyd Wright in 1939. The High Hassocks, also designed by Wright, are taller versions of the Zabuton at 12&quot x 26&quot x 21¾&quot. They represent 1 of the earliest uses of latex foam, a material recommended by Edgar Jaufmann Jr., in a residential setting. Surrounded by a walnut veneer frame, the floor cushions are upholsted with either a red or yellow, heavily textured, wool blend Jack Lenor Larsen fabric named Doria. The totally free floating seats of differing heights help generate a casual atmosphere.


Fallingwater, at times referred to as the Edgar J. Kaufmann Sr. Residence or just the Kaufmann Residence, situated within a five,100-acre nature reserve 50 miles southeast of Pittsburgh, was made by Frank Lloyd Wright and built in between 1936 and 1939. Built over a 30-foot flowing waterfall on Bear Run in the Mill Run section of Stewart Township, Fayette County, Pennsylvania, the home served as a vacation retreat for the Kaufmann family members such as patriarch, Edgar Kaufmann Sr., was a productive Pittsburgh businessman and president of Kaufmann’s Division Store, and his son, Edgar Kaufmann, Jr., who studied architecture briefly below Wright. Wright collaborated with staff engineers Mendel Glickman and William Wesley Peters on the structural design, and assigned his apprentice, Robert Mosher, as his permanent on-website representative throughout construction. Despite frequent conflicts in between Wright, Kaufmann, and the construction contractor, the house and guesthouse had been ultimately constructed at a price of 5,000.


Wright specified Johnson Liquid Wax for the flagstone floors all through the home. The waxed sheen drew a parallel to the wet bedrock of the stream below. Whilst building Fallingwater, Wright was commissioned to design the Johnson Wax Creating in Racine, Wisconsin.


Fallingwater was designated a National Historic Landmark in 1966. It was listed amongst the Smithsonian’s 28 Places to See Prior to You Die. In a 1991 poll of members of the American Institute of Architects (AIA), it was voted &quotthe very best all-time function of American architecture.&quot In 2007, Fallingwater was ranked #29 on the AIA 150 America’s Favored Architecture list.


National Register #74001781 (1974)


PA – Mill Run: Fallingwater


Image by wallyg

Fallingwater, at times referred to as the Edgar J. Kaufmann Sr. Residence or just the Kaufmann Residence, situated inside a five,one hundred-acre nature reserve 50 miles southeast of Pittsburgh, was made by Frank Lloyd Wright and built among 1936 and 1939. Built more than a 30-foot flowing waterfall on Bear Run in the Mill Run section of Stewart Township, Fayette County, Pennsylvania, the property served as a holiday retreat for the Kaufmann family members including patriarch, Edgar Kaufmann Sr., was a successful Pittsburgh businessman and president of Kaufmann’s Department Retailer, and his son, Edgar Kaufmann, Jr., who studied architecture briefly below Wright. Wright collaborated with employees engineers Mendel Glickman and William Wesley Peters on the structural style, and assigned his apprentice, Robert Mosher, as his permanent on-website representative throughout building. Regardless of frequent conflicts amongst Wright, Kaufmann, and the construction contractor, the house and guesthouse had been finally constructed at a price of five,000.


Fallingwater was designated a National Historic Landmark in 1966. It was listed among the Smithsonian’s 28 Places to See Just before You Die. In a 1991 poll of members of the American Institute of Architects (AIA), it was voted &quotthe very best all-time work of American architecture.&quot In 2007, Fallingwater was ranked #29 on the AIA 150 America’s Preferred Architecture list.


National Register #74001781 (1974)





(Source from rapid prototyping from China blog)

Wednesday, April 15, 2015

Cool Precision Engineering Firm photos

Check out these precision engineering company photos:


Steven F. Udvar-Hazy Center: Boeing B-29 Superfortress “Enola Gay” (view into nose cockpit)


Image by Chris Devers
See far more photographs of this, and the Wikipedia article.


Specifics, quoting from Smithsonian National Air and Space Museum | Boeing B-29 Superfortress &quotEnola Gay&quot:


Boeing’s B-29 Superfortress was the most sophisticated propeller-driven bomber of Globe War II and the very first bomber to house its crew in pressurized compartments. Despite the fact that developed to fight in the European theater, the B-29 located its niche on the other side of the globe. In the Pacific, B-29s delivered a range of aerial weapons: traditional bombs, incendiary bombs, mines, and two nuclear weapons.


On August six, 1945, this Martin-built B-29-45-MO dropped the very first atomic weapon employed in combat on Hiroshima, Japan. 3 days later, Bockscar (on display at the U.S. Air Force Museum close to Dayton, Ohio) dropped a second atomic bomb on Nagasaki, Japan. Enola Gay flew as the advance weather reconnaissance aircraft that day. A third B-29, The Wonderful Artiste, flew as an observation aircraft on each missions.


Transferred from the United States Air Force.


Manufacturer:
Boeing Aircraft Co.
Martin Co., Omaha, Nebr.


Date:

1945


Country of Origin:

United States of America


Dimensions:

Overall: 900 x 3020cm, 32580kg, 4300cm (29ft 6 5/16in. x 99ft 1in., 71825.9lb., 141ft 15/16in.)


Materials:

Polished general aluminum finish


Physical Description:

Four-engine heavy bomber with semi-monoqoque fuselage and higher-aspect ratio wings. Polished aluminum finish general, regular late-World War II Army Air Forces insignia on wings and aft fuselage and serial quantity on vertical fin 509th Composite Group markings painted in black &quotEnola Gay&quot in black, block letters on decrease left nose.


Extended Description:

Boeing’s B-29 Superfortress was the most sophisticated, propeller-driven, bomber to fly during World War II, and the initial bomber to home its crew in pressurized compartments. Boeing installed extremely sophisticated armament, propulsion, and avionics systems into the Superfortress. For the duration of the war in the Pacific Theater, the B-29 delivered the initial nuclear weapons utilised in combat. On August 6, 1945, Colonel Paul W. Tibbets, Jr., in command of the Superfortress Enola Gay, dropped a extremely enriched uranium, explosion-type, &quotgun-fired,&quot atomic bomb on Hiroshima, Japan. Three days later, Major Charles W. Sweeney piloted the B-29 Bockscar and dropped a hugely enriched plutonium, implosion-variety atomic bomb on Nagasaki, Japan. Enola Gay flew as the advance climate reconnaissance aircraft that day. On August 14, 1945, the Japanese accepted Allied terms for unconditional surrender.


In the late 1930s, U. S. Army Air Corps leaders recognized the want for extremely lengthy-variety bombers that exceeded the performance of the B-17 Flying Fortress. Numerous years of preliminary studies paralleled a continuous fight against these who saw restricted utility in creating such an costly and unproven aircraft but the Air Corps issued a requirement for the new bomber in February 1940. It described an airplane that could carry a maximum bomb load of 909 kg (2,000 lb) at a speed of 644 kph (400 mph) a distance of at least eight,050 km (5,000 miles). Boeing, Consolidated, Douglas, and Lockheed responded with design and style proposals. The Army was impressed with the Boeing design and issued a contract for two flyable prototypes in September 1940. In April 1941, the Army issued yet another contract for 250 aircraft plus spare parts equivalent to an additional 25 bombers, eight months prior to Pearl Harbor and nearly a year-and-a-half prior to the very first Superfortress would fly.


Among the design’s innovations was a extended, narrow, higher-aspect ratio wing equipped with big Fowler-variety flaps. This wing style allowed the B-29 to fly extremely fast at high altitudes but maintained comfortable handling characteristics throughout takeoff and landing. Far more revolutionary was the size and sophistication of the pressurized sections of the fuselage: the flight deck forward of the wing, the gunner’s compartment aft of the wing, and the tail gunner’s station. For the crew, flying at extreme altitudes became a lot far more comfortable as stress and temperature could be regulated. To protect the Superfortress, Boeing created a remote-controlled, defensive weapons method. Engineers placed 5 gun turrets on the fuselage: a turret above and behind the cockpit that housed two .50 caliber machine guns (4 guns in later versions), and an additional turret aft close to the vertical tail equipped with two machine guns plus two more turrets beneath the fuselage, each and every equipped with two .50 caliber guns. One of these turrets fired from behind the nose gear and the other hung further back near the tail. One more two .50 caliber machine guns and a 20-mm cannon (in early versions of the B-29) had been fitted in the tail beneath the rudder. Gunners operated these turrets by remote manage–a accurate innovation. They aimed the guns utilizing computerized sights, and each and every gunner could take handle of two or a lot more turrets to concentrate firepower on a single target.


Boeing also equipped the B-29 with advanced radar gear and avionics. Based on the sort of mission, a B-29 carried the AN/APQ-13 or AN/APQ-7 Eagle radar program to aid bombing and navigation. These systems have been accurate enough to permit bombing by way of cloud layers that completely obscured the target. The B-29B was equipped with the AN/APG-15B airborne radar gun sighting technique mounted in the tail, insuring precise defense against enemy fighters attacking at night. B-29s also routinely carried as a lot of as twenty various varieties of radios and navigation devices.


The initial XB-29 took off at Boeing Field in Seattle on September 21, 1942. By the finish of the year the second aircraft was prepared for flight. Fourteen service-test YB-29s followed as production began to accelerate. Creating this sophisticated bomber essential massive logistics. Boeing constructed new B-29 plants at Renton, Washington, and Wichita, Kansas, even though Bell built a new plant at Marietta, Georgia, and Martin constructed 1 in Omaha, Nebraska. Each Curtiss-Wright and the Dodge automobile firm vastly expanded their manufacturing capacity to construct the bomber’s strong and complicated Curtiss-Wright R-3350 turbo supercharged engines. The system essential thousands of sub-contractors but with extraordinary work, it all came together, despite main teething problems. By April 1944, the initial operational B-29s of the newly formed 20th Air Force started to touch down on dusty airfields in India. By May, 130 B-29s had been operational. In June, 1944, much less than two years following the initial flight of the XB-29, the U. S. Army Air Forces (AAF) flew its initial B-29 combat mission against targets in Bangkok, Thailand. This mission (longest of the war to date) referred to as for 100 B-29s but only 80 reached the target location. The AAF lost no aircraft to enemy action but bombing benefits were mediocre. The very first bombing mission against the Japanese main islands because Lt. Col. &quotJimmy&quot Doolittle’s raid against Tokyo in April 1942, occurred on June 15, once again with poor final results. This was also the initial mission launched from airbases in China.


With the fall of Saipan, Tinian, and Guam in the Mariana Islands chain in August 1944, the AAF acquired airbases that lay a number of hundred miles closer to mainland Japan. Late in 1944, the AAF moved the XXI Bomber Command, flying B-29s, to the Marianas and the unit started bombing Japan in December. However, they employed high-altitude, precision, bombing tactics that yielded poor benefits. The higher altitude winds had been so strong that bombing computers could not compensate and the climate was so poor that rarely was visual target acquisition achievable at high altitudes. In March 1945, Major General Curtis E. LeMay ordered the group to abandon these tactics and strike rather at night, from low altitude, using incendiary bombs. These firebombing raids, carried out by hundreds of B-29s, devastated much of Japan’s industrial and financial infrastructure. But Japan fought on. Late in 1944, AAF leaders selected the Martin assembly line to produce a squadron of B-29s codenamed SILVERPLATE. Martin modified these Superfortresses by removing all gun turrets except for the tail position, removing armor plate, installing Curtiss electric propellers, and modifying the bomb bay to accommodate either the &quotFat Man&quot or &quotLittle Boy&quot versions of the atomic bomb. The AAF assigned 15 Silverplate ships to the 509th Composite Group commanded by Colonel Paul Tibbets. As the Group Commander, Tibbets had no specific aircraft assigned to him as did the mission pilots. He was entitled to fly any aircraft at any time. He named the B-29 that he flew on 6 August Enola Gay following his mother. In the early morning hours, just prior to the August 6th mission, Tibbets had a young Army Air Forces upkeep man, Private Nelson Miller, paint the name just under the pilot’s window.


Enola Gay is a model B-29-45-MO, serial quantity 44-86292. The AAF accepted this aircraft on June 14, 1945, from the Martin plant at Omaha (Positioned at what is today Offut AFB close to Bellevue), Nebraska. Following the war, Army Air Forces crews flew the airplane for the duration of the Operation Crossroads atomic test program in the Pacific, despite the fact that it dropped no nuclear devices for the duration of these tests, and then delivered it to Davis-Monthan Army Airfield, Arizona, for storage. Later, the U. S. Air Force flew the bomber to Park Ridge, Illinois, then transferred it to the Smithsonian Institution on July four, 1949. Even though in Smithsonian custody, the aircraft remained stored at Pyote Air Force Base, Texas, between January 1952 and December 1953. The airplane’s last flight ended on December 2 when the Enola Gay touched down at Andrews Air Force Base, Maryland. The bomber remained at Andrews in outside storage till August 1960. By then, concerned about the bomber deteriorating outdoors, the Smithsonian sent collections staff to disassemble the Superfortress and move it indoors to the Paul E. Garber Facility in Suitland, Maryland.


The staff at Garber began functioning to preserve and restore Enola Gay in December 1984. This was the biggest restoration project ever undertaken at the National Air and Space Museum and the specialists anticipated the operate would call for from seven to nine years to total. The project in fact lasted nearly two decades and, when completed, had taken roughly 300,000 work-hours to complete. The B-29 is now displayed at the National Air and Space Museum, Steven F. Udvar-Hazy Center.


Steven F. Udvar-Hazy Center: Boeing B-29 Superfortress “Enola Gay”, with Lockheed P-38J-10-LO Lightning


Image by Chris Devers

Quoting Smithsonian National Air and Space Museum | Lockheed P-38J-10-LO Lightning :


In the P-38 Lockheed engineer Clarence &quotKelly&quot Johnson and his team of designers created one of the most productive twin-engine fighters ever flown by any nation. From 1942 to 1945, U. S. Army Air Forces pilots flew P-38s more than Europe, the Mediterranean, and the Pacific, and from the frozen Aleutian Islands to the sun-baked deserts of North Africa. Lightning pilots in the Pacific theater downed much more Japanese aircraft than pilots flying any other Allied warplane.


Maj. Richard I. Bong, America’s leading fighter ace, flew this P-38J-10-LO on April 16, 1945, at Wright Field, Ohio, to evaluate an experimental method of interconnecting the movement of the throttle and propeller manage levers. Even so, his correct engine exploded in flight before he could conduct the experiment.


Transferred from the United States Air Force.


Manufacturer:
Lockheed Aircraft Company


Date:

1943


Country of Origin:

United States of America


Dimensions:

Overall: 390 x 1170cm, 6345kg, 1580cm (12ft 9 9/16in. x 38ft 4 5/8in., 13988.2lb., 51ft ten 1/16in.)


Supplies:

All-metal


Physical Description:

Twin-tail boom and twin-engine fighter tricycle landing gear.


• • • • •


Quoting Smithsonian National Air and Space Museum | Boeing B-29 Superfortress &quotEnola Gay&quot:


Boeing’s B-29 Superfortress was the most sophisticated propeller-driven bomber of World War II and the initial bomber to home its crew in pressurized compartments. Even though created to fight in the European theater, the B-29 located its niche on the other side of the globe. In the Pacific, B-29s delivered a range of aerial weapons: conventional bombs, incendiary bombs, mines, and two nuclear weapons.


On August six, 1945, this Martin-built B-29-45-MO dropped the very first atomic weapon utilised in combat on Hiroshima, Japan. Three days later, Bockscar (on display at the U.S. Air Force Museum close to Dayton, Ohio) dropped a second atomic bomb on Nagasaki, Japan. Enola Gay flew as the advance weather reconnaissance aircraft that day. A third B-29, The Great Artiste, flew as an observation aircraft on each missions.


Transferred from the United States Air Force.


Manufacturer:
Boeing Aircraft Co.
Martin Co., Omaha, Nebr.


Date:

1945


Nation of Origin:

United States of America


Dimensions:

All round: 900 x 3020cm, 32580kg, 4300cm (29ft six 5/16in. x 99ft 1in., 71825.9lb., 141ft 15/16in.)


Materials:

Polished overall aluminum finish


Physical Description:

Four-engine heavy bomber with semi-monoqoque fuselage and high-aspect ratio wings. Polished aluminum finish all round, common late-Globe War II Army Air Forces insignia on wings and aft fuselage and serial quantity on vertical fin 509th Composite Group markings painted in black &quotEnola Gay&quot in black, block letters on reduce left nose.


Image from page 1050 of “Electrical globe” (1883)


Image by Web Archive Book Images
Identifier: electricalworld43newy
Title: Electrical globe
Year: 1883 (1880s)
Authors:
Subjects: Electrical engineering
Publisher: [New York McGraw-Hill Pub. Co., and so forth.]
Contributing Library: Engineering – University of Toronto
Digitizing Sponsor: University of Toronto


View Book Web page: Book Viewer
About This Book: Catalog Entry
View All Images: All Images From Book


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Text Appearing Prior to Image:
he Regular Underground CableCompany close to the northwest corner entrance. The installation of ing was in its infancy. About the walls of the exhibit spaces arehung photographs of the pioneers and their early work. The Jumbodynamo, produced by the Edison Machine Functions, direct-connected toa high-speed engine, forms an intriguing comparison with themodel of the General Electric io,ooo-hp Niagara generator, which 1036 ELECTRICAL World and ENGINEER. Vol. XLIII, Xo. 22 is across the aisle. The 1st Edison electric locomotive vith itspassenger automobile shows in a graphic way the progress in transportationmade since 1880. The photograph of the British section reveals the splendid displayof electrical and scientific instruments created by the English manu-facturers. Most of these instruments have been tested and havecertificates from Lord Kelvins laboratory or the National PhysicalLaboratory. The Basic Post Workplace makes an superb displayof the telegraphic apparatus used in Fantastic Britain. Kelvin and


Text Appearing Soon after Image:
FIG. six.—ENGLISH EXHIBIT. James White, of Glasgow, and Muirhead &amp Co., of Kent, have casesof galvanometers, condensers, common cells, ammeters, voltmetersand other instruments of precision. In the foreground may beseen a working model of Behrs monorail and high-speed vehicle asauthorized by act of Parliament for the railway amongst Manchesterand Liverpool, to be operated at a speed of no miles per hour. The greater component of the sp-ace of the Wagner Electric Business, ofSt. Louis, in Section 9. is occupied by the a variety of applications ofsingle-phase alternating-existing motors. This includes the standardform, enclosed, semi-enclosed and back-geared types, from }4 to 35hp. The notable feature of these motors is their beginning beneath


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(Source from rapid prototyping from China blog)