Showing posts with label Precision. Show all posts
Showing posts with label Precision. Show all posts

Saturday, October 31, 2015

Nice Precision Engineering China pictures

A couple of nice precision engineering china photos I found:


The Future of Overall health: Overview

Image by World Economic Forum

DAVOS/SWITZERLAND, 23JAN13 – (FLTR) Victor J. Dzau, President and Chief Executive Officer, Duke University Healthcare Center and Overall health Program, Duke University, USA Worldwide Agenda Council on Customized &amp Precision Medicine, Margaret A. Hamburg, Commissioner, US Food and Drug Administration, USA Worldwide Agenda Council on Customized &amp Precision Medicine, Peer M. Schatz, Chief Executive Officer, QIAGEN, Germany Global Agenda Council on Customized &amp Precision Medicine, David B. Agus, Professor of Medicine and Engineering, USC Center for Applied Molecular Medicine, USA International Agenda Council on Customized &amp Precision Medicine, Karin Johansson, State Secretary, Ministry of Wellness and Social Affairs of Sweden Global Agenda Council on Digital Overall health and Liu Jiren, Chairman and Chief Executive Officer, Neusoft Corporation, People’s Republic of China International Agenda Council on Emerging Multinationals are observed throughout the interactive session ‘The Future of Health -Strengthening Individual Resilience’ at the Annual Meeting 2013 of the Planet Economic Forum in Davos, Switzerland, January 23, 2013..

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Copyright by World Economic Forum.

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swiss-image.ch/Photo Remy Steinegger


The Future of Overall health: Overview

Image by World Financial Forum

DAVOS/SWITZERLAND, 23JAN13 – (FLTR) Victor J. Dzau, President and Chief Executive Officer, Duke University Health-related Center and Overall health Program, Duke University, USA Global Agenda Council on Customized &amp Precision Medicine, Margaret A. Hamburg, Commissioner, US Food and Drug Administration, USA Worldwide Agenda Council on Customized &amp Precision Medicine, Peer M. Schatz, Chief Executive Officer, QIAGEN, Germany International Agenda Council on Personalized &amp Precision Medicine, David B. Agus, Professor of Medicine and Engineering, USC Center for Applied Molecular Medicine, USA International Agenda Council on Personalized &amp Precision Medicine, Karin Johansson, State Secretary, Ministry of Wellness and Social Affairs of Sweden International Agenda Council on Digital Well being and Liu Jiren, Chairman and Chief Executive Officer, Neusoft Corporation, People’s Republic of China Worldwide Agenda Council on Emerging Multinationals are noticed throughout the interactive session ‘The Future of Well being -Strengthening Individual Resilience’ at the Annual Meeting 2013 of the World Financial Forum in Davos, Switzerland, January 23, 2013..

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Copyright by Planet Financial Forum.

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swiss-image.ch/Photo Remy Steinegger





(Source from rapid prototyping from China blog)

Saturday, October 10, 2015

Newest Precision Engineering China News

Taiwan: An Island in a Sea of Volatility

Investors have a tendency to treat Taiwan and South Korea as proxies both for international technologies demand and, much more not too long ago, as moons orbiting a giant Chinese Jupiter. Taiwan&#39s stock market has hence been hit fairly hard by the Fed&#39s hesitance, as investors fear it …
Read more on Barron’s



Venture capitalist Lee&#39s investment suggestions in China: precision engineering and

“China reinvents itself each and every ten years and you can see this in their policies – from the migration from low-expense labour to computer software-based IT personnel in 2000-05, to now precision manufacturing and automation,” stated Lee, who worked briefly as a banker …
Read far more on South China Morning Post (subscription)



ASE&#39s legal action won&#39t affect marketplace: Taiwan FSC head

Tseng Ming-chung, chair of Taiwan&#39s Monetary Supervisory Commission (FSC), stated Tuesday that a legal maneuver by IC packager Sophisticated Semiconductor Engineering (ASE) against a rival is unlikely to influence the country&#39s broader equity marketplace.
Read a lot more on WantChinaTimes






(Source from rapid prototyping from China blog)

Friday, September 4, 2015

Good Precision Engineering images

A few nice precision engineering pictures I located:


Clamp Variety Knurling tool

Image by tudedude

The clamp sort of knurling tool is suggested as they put far significantly less strain on the lathe.


Identical tool as ahead of but different background and lighting, trying to boost all black pictures and to improve the detail shown.





(Source from rapid prototyping from China blog)

Monday, August 31, 2015

Stocks To Look Out For: Siliconware Precision Industries (ADR) (NASDAQ:SPIL ...

Stocks To Look Out For: Siliconware Precision Industries (ADR) (NASDAQ:SPIL

Sophisticated Semiconductor Engineering, Inc. (TAIEX: 2311, NYSE: ASX), on August 28, 2015, admitted the announcement produced public these days by Siliconware Precision Electronics Co, Ltd. in response to ASE&#39s tender offer you of NT$ 45 per widespread share for up to&nbsp…
Study a lot more on Wall Street Observer



ROHM&#39s H Bridge Motor Driver Achieves Lower Power Consumption

Motors have been a driving force behind sector and our everyday lives for as long as any person can keep in mind. More than a century has passed given that the initial Japanese-made motor was created, and the range of motors&#39 applications is still expanding right now.
Read much more on ENGINEERING.com






(Source from rapid prototyping from China blog)

Sunday, August 30, 2015

Good Precision Engineering photos

A few nice precision engineering photos I located:


Collet Holder Morse Taper


Image by tudedude
View On Black


Just a Tiny Drill


Image by tudedude


Old Metal functioning Lathe


Image by tudedude





(Source from rapid prototyping from China blog)

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)

Monday, August 17, 2015

Good Higher Precision Engineering images

Verify out these high precision engineering pictures:


Egyptian Obelisk – St. Peter’s Square


Image by HuTDoG83
Vibrant Rome – Photo 1 of 6


The Ancient Romans have been strongly influenced by the obelisk form, to the extent that there are now far more than twice as many obelisks standing in Rome as stay in Egypt. All fell soon after the Roman period except for the Vatican obelisk and were re-erected in distinct areas.


Re-erecting the obelisk had daunted even Michelangelo, but Sixtus V was determined to erect it in front of St Peter’s, of which the nave was but to be built. He had a complete-sized wooden mock-up erected inside months of his election. Domenico Fontana, the assistant of Giacomo Della Porta in the Basilica’s building, presented the Pope with a tiny model crane of wood and a heavy tiny obelisk of lead, which Sixtus himself was in a position to raise by turning a little winch with his finger. Fontana was provided the project.

The obelisk, half-buried in the debris of the ages, was first excavated as it stood then it took from April 30 to Might 17, 1586 to move it on rollers to the Piazza: it needed nearly 1000 males, 140 carthorses, 47 cranes. The re-erection, scheduled for September 14, the Feast of the Exaltation of the Cross, was watched by a big crowd. It was a well-known feat of engineering, which created the reputation of Fontana, who detailed it in a book illustrated with copperplate etchings, Della Trasportatione dell’Obelisco Vaticano et delle Fabriche di Nostro Signore Papa Sisto V (1590),[ten][11] which itself set a new regular in communicating technical details and influenced subsequent architectural publications by its meticulous precision.[12] Before getting re-erected the obelisk was exorcised. It is stated that Fontana had teams of relay horses to make his getaway if the enterprise failed. When Carlo Maderno came to build the Basilica’s nave, he had to place the slightest kink in its axis, to line it precisely with the obelisk.


Source: Wikipedia




Ideal viewed Huge | On Black


As often, comments/suggestions/critiques/faves are often welcome! Thank you all for viewing my photo!





(Source from rapid prototyping from China blog)

Thursday, August 13, 2015

Outsource Your Wind Turbine Design, CNC Precision Engineering and Welding Fabrication Tasks


What do wind turbine style, CNC precision engineering and welding fabrication have in common? Properly, if you are an OEM or Original Equipment Manufacturer, then you must have guessed that it is the reality that all these tasks demand a high degree of accuracy and finesse. Additionally, they need to have committed resources in the kind of manpower, cash, space, time and tools. The slightest mistake could result in shoddy work that does not pass muster with your personal high standards as an OEM, let alone with your consumers.


 


Even so, you may be constrained by present circumstances from allocating the sources needed to total these tasks perfectly. You may not have the requisite skilled labor, or the additional factory space, for instance. Economic limitations might stop you from hiring the labor and expanding your manufacturing facility. What then must you do?


 


Trying to total the tasks on your own in such situation is foolhardy you will either finish up with less than satisfactory wind turbine design, CNC precision engineering and welding fabrication, or you will finish up delivering right after the project deadline. In both circumstances, your reputation will suffer and you could lose company. It would consequently be savvier to outsource these jobs to a contract manufacturer who specializes in such tasks, and get the advantage of their expertise.


 


There are numerous good contract makers out there who can supply you great turbine design, as properly as the most current CNC engineering and welding fabrication. Many of them have decades of experience in these regions, so you can rely on them to offer you only the very best manufacturing solutions. They take care to employ only the very best specialists and the newest tools to execute these jobs. As a outcome, they can offer you you delivery properly just before project deadlines. So in sum, these contract equipment manufacturer and designers save you from the hassle of trying to full your manufacturing jobs with restricted resources, they enable you to get reliable and timely services, lessen your to-industry time and in the end enhance your position in the industry.


 


But perhaps the greatest advantage supplied by these contract companies is the cost savings they offer you. As they offer their manufacturing at lower than market rates, you can get bigger profit margins when you outsource these jobs to them. The time and resources saved by outsourcing your work can be far more productively utilized elsewhere, to expand your organization or to increase consumer relations. This will support you get more company, and a lot more profits.


 


Due to the fact of all these above offered motives, you must not hesitate to outsource your manufacturing perform to contract producers if the need arises. It could be the ideal company choice you ever make. 



I am webmaster of Denis Ferranti Group. We specialize in the Wind Turbine Design and style, CNC Precision Engineering, Welding Fabrication and lots a lot more. For much more information about assembly services please visit at http://www.dferrantigroup.com






(Source from rapid prototyping from China blog)

Sunday, July 26, 2015

Good Higher Precision Engineering photos

A couple of good higher precision engineering pictures I discovered:


1965 – 1976 Lancia Fulvia Coupé


Image by Georg Sander

The Lancia Fulvia is an Italian auto introduced at the Geneva Motor Show in 1963 by Lancia. It was made by that company by means of 1976. Fulvias are notable for their role in automobile racing history, including winning the International Rally Championship in 1972. On testing it in 1967, Road &amp Track summed up the Fulvia as &quota precision motorcar, an engineering tour de force&quot.


(Wikipedia)


– – –


Der Lancia Fulvia ist ein Automobil des italienischen Herstellers Lancia. Es wurde von Herbst 1963 bis Ende 1976 gebaut und gilt als Nachfolgemodell des Lancia Appia.


Wie andere nach dem 1950 vorgestellten Aurelia entwickelten Lancia-Modelle war der Fulvia nach einer klassischen Römerstraße, hier der Via Fulvia, benannt. Im Herbst 1972 wurde dieses Method der Benennung wieder geändert: der unter Fiat-Regie gebaute Nachfolger des Fulvia war der Lancia Beta.


Der Fulvia war als Berlina (Limousine) und als Coupé erhältlich. Außerdem gab es wie bei Lancia üblich ein bei Carrozzeria Zagato entworfenes und in Kleinserie gebautes Fließheckcoupé mit dem traditionellen Namen Sport. Das technische Konzept des Fulvia stammt von Antonio Fessia, die Type wurde von Pietro Castagnero bei Lancia entworfen.


(Wikipedia)





(Source from rapid prototyping from China blog)

Friday, July 24, 2015

Most recent Precision Engineering China News

Chinese Motorcycle Good quality – A Matter of Choice

In engineering you would be challenging pushed to witness something as extraordinary as the three gorges dam which is the biggest engineering project the planet has ever noticed and brings electrical energy to millions. What then of motorcycles? Everybody agrees that Chinese …
Read much more on UltimateMotorcycling.com


China unleashes 3bn margin trader to stem stock rout

China has created what amounts to a state-run margin trader with $ 483bn (€445bn) of firepower, its newest bid to end a stock marketplace rout that threatens to drag down financial development and erode self-assurance in President Xi Jinping&#39s government.
Read more on Irish Independent


TE Connectivity&#39s PolyZen YC Series Wins EDN China&#39s 2015 Innovation Award for

The PolyZen ZEN056V230A16YC and ZEN056V260A16YC devices combine a precision Zener diode and a resettable PolySwitch PPTC (polymer optimistic temperature coefficient) device in a compact (4.0mm x 5.0mm x 1.3mm) package. A PolyZen device&#39s Zener diode is …
Study a lot more on CNNMoney





(Source from rapid prototyping from China blog)

Monday, July 20, 2015

Latest Precision Engineering Solutions News

Internet 2. (and Beyond): Establishing the Next Generation of Connectivity

Even reasonably low latencies like 100 milliseconds are far as well slow for real-time applications that require higher precision. The third is … On nowadays&#39s World wide web, conversely, thousands of customers across the nation might access the exact same video streaming …
Read a lot more on Techwire.net


Company Update: Lockheed Martin Corporation (NYSE:LMT) – Lockheed to acquire Black

Its Missiles and Fire Handle segment offers air and missile defense systems tactical missiles and air-to-ground precision strike weapon systems logistics and other technical services fire handle systems mission operations and engineering …
Read a lot more on Jutia Group





(Source from rapid prototyping from China blog)

Saturday, July 18, 2015

Latest High Precision Engineering News

Meet the Marshall London: Amp Maker Introduces Phone for Music Lovers

The London is an Android Lollipop phone custom-fitted for music lovers, with a processor for high-resolution audio (like uncompressed FLAC files), headphone jacks constructed into it, Marshall Mode earbuds, a button that fires up the phone&#39s music UI, a …
Read more on Guitar World Magazine


A Glimpse at Autodesk&#39s Robotics Lab of the Future &gt ENGINEERING.com

They are also functioning on software program that will enable Castor and Pollux, two of their robots, to work in simultaneous collaboration with higher precision. Even though commercial adoption of these developments are not extensively available but, the lab&#39s integration of …
Read far more on ENGINEERING.com


Inkjet printing equipment for organic LED mass production | SPIE Newsroom: SPIE

Inkjet was a logical candidate since this technology can deliver hugely scalable, pattern-smart precision deposition of organic thin films with high material efficiency. Generating inkjet successful, nevertheless, requires very good inkjet gear and excellent …
Read far more on SPIE Newsroom





(Source from rapid prototyping from China blog)

Saturday, July 11, 2015

Latest Cnc Precision Engineering News

Greece Monkeys | The Weekly Normal

Depending on regardless of whether you like the motive, you could call it idealism or social engineering. In the United States in the 1990s, we had been … Germany specialized in making Mercedes and designing precision machinery. Greece specialized in developing olives …
Read a lot more on The Weekly Regular


Bev Durgan: four-H Science of Ag sparks interest in ag-literate careers | Morris

The strongest job marketplace is for plant and meals scientists, sustainable biomaterials specialists, water resources scientists and engineers, precision ag specialists and farm animal veterinarians. • Almost half will fall beneath the heading of management …
Read much more on Morris Sun Tribune


Fabrinet (NYSE:FN) Rating was Enhanced by Analysts at Needham to a &quotBuy

Fabrinet gives optical packaging and precision optical, electro-mechanical and electronic manufacturing services to original equipment producers (OEMs) of complicated products, such as optical communication components, modules and sub-systems …
Read a lot more on OctaFinance.com





(Source from rapid prototyping from China blog)

Sunday, June 7, 2015

Latest Precision Engineering Elements News

State legislature wants to invest in aerospace

Horst Engineering, the 69-year-old loved ones enterprise that I lead, not too long ago closed our Mexican operations and is expanding precision machining and forming operations in Connecticut and Massachusetts. We see opportunities right here but are keenly aware of the …
Read far more on Hartford Organization


Three teenagers &#39touched inappropriately&#39 close to station in Marlow

3 teenagers had been touched inappropriately by a man in a series of sexual assaults near the train station in Marlow yesterday afternoon. Police say he approached two girls and a 19-year-old lady in the area about Station Method among 4pm and&nbsp…
Study much more on Bucks Free of charge Press


SkinnyPack at the head of the pack in DuPont Awards 2015

The four-colour IPL label, which fills in between the “legs” of the tub and completes the bottom of the container, is converted by Precision Press. ADVERTISEMENT. Filling of the new …. “Prent has a great style group that can articulate what we as a …
Read more on Packaging Globe





(Source from rapid prototyping from China blog)

Saturday, May 23, 2015

Newest Precision Engineering News

Chinese university denies professors stole U.S. secrets

Zhang, 36, is a employees member at the university&#39s School of Precision Instrument and Opto-Electronics Engineering. In 2011, he was a founder of a business in Tianjin, ROFS Microsystem, which an official website stated was located in a element of the city that …
Study more on Indiana Gazette


Maker of sexually transmitted illness test wins UW enterprise plan competitors

Led by a University of Washington PhD in mechanical engineering and PhD candidates in chemical engineering, Vie Diagnostics says that its tests can be administered in the clinic is as little as 10 minutes. This implies a lot. It is going to take us to …
Read much more on GeekWire


Hires and promotions (May 23, 2015)

Toft specializes in the placement of mid-career to executive level candidates in skillsets such as accounting, legal, human sources, details technology, engineering, management and sales and marketing. She has been employed with Spherion for four&nbsp…
Study far more on INFORUM





(Source from rapid prototyping from China blog)

Wednesday, May 20, 2015

Adam Equipment Announces Expanded Line of Nimbus Analytical and Precision Balances in the United States



Danbury, Connecticut (PRWEB) May 07, 2015


Adam Equipment, manufacturer of quality balances and scales for professionals worldwide, is expanding its U.S. line of Nimbus analytical and precision balances to include an internal calibration option. Availability of this option broadens the selection of Nimbus balances for lab users seeking the ease, convenience and speed provided by internal calibration.



The Nimbus shines brightly in many applications, offering readabilities from 0.1mg to 0.1, capacities from 80g to 22kg, and numerous weighing units, including a customizable unit. Internal calibration is available on all 0.1mg, 1mg and 0.01g units.



Innovative design enables a compact footprint, so the Nimbus occupies minimal space wherever it goes. The Nimbus base is formed from a single piece of extruded aluminum, offering stability and highly repeatable results. Solid metal construction throughout the balance provides the durability to withstand rigorous daily use.



The Nimbus’s expansive range of models provides users with numerous features, including choice of internal or external calibration. Data collection and transmission are optimized with the Nimbus’s USB and RS-232 interfaces, while a third interface allows for an optional remote display. Nimbus is capable of performing parts counting, percentage weighing, density measurement for liquids or solids, and dynamic/animal weighing.



Nimbus analytical balances with 0.1mg readability have a glass-enclosed weighing chamber, which disassembles quickly for cleaning. Nimbus precision balances with 0.001g readability have a round glass shield to help minimize effects of air movement.



Learn more about Nimbus balances: http://www.adamequipment.com/nimbus.



About Adam Equipment



For more than 40 years, Adam Equipment has designed and manufactured precision balances and scales for professionals worldwide in the laboratory, medical, education, industrial, food, animal/veterinary and jewelry markets. Adam is committed to offering an extensive selection of weighing equipment with best-in-class value. Headquartered in the United Kingdom, the company has strategically established offices in the United States, South Africa, Australia and China to provide product support and speedy delivery to distributors. For more information about the company and its products, go to http://www.adamequipment.com.





















(Source from rapid prototyping from China blog)

Saturday, May 2, 2015

Vision Precision Engineering Nottigham - Drilling Services



We supply various engineering solutions from CNC and Manual Turning, Milling, Screw Cutting, Boring, Drilling and Metal Polishing as nicely as a Mass Production Turning service. Competitive prices…





(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


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


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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Please note that these pictures are extracted from scanned web page images that may have been digitally enhanced for readability – coloration and appearance of these illustrations may possibly not completely resemble the original operate.





(Source from rapid prototyping from China blog)

Friday, April 3, 2015

COARSE AND FINE ROTOR TURNING MACHINE HF- C60 By Shrav Precision Engineers Private Restricted


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(Source from rapid prototyping from China blog)