Showing posts with label Plastic. Show all posts
Showing posts with label Plastic. Show all posts

Thursday, September 15, 2016

Do You Need To Know What Plastic Manufacturing Is?

Do You Need To Know What Plastic Manufacturing Is?


Plastic manufacturing is not a light activity. Discovering machine tools to develop plastic parts calls for cautious analysis on the capacity, condition and capability of this tool. In selling goods, makers ought to give manuals so customers will know the proper use and maintenance of the products they acquire.


Specifications and retrofit quotes should also come with the merchandise as they are sold, so that, in the course of replacement, it would not be challenging. Contemporary engineered plastics are identified for their strength, light weight and resistance to chemical attack and corrosion.


They also come in varying hues and textures. Since of distinct applications of plastic, analytical techniques and expertise for their characterization should be varied as nicely. A great plastic manufacturing firm endeavors to analyze plastic elements such as chemical and physical properties.


Raw supplies must be of consistent good quality. Machines should be well-maintained, and tooling and manufacturing procedures should be strict in compliance while being flexible for improvements. To make sure great good quality plastic items, plastic machining components calls for constant commitment and upkeep.


A great plastic manufacturer is capable of following the Enterprise Resource Planning program, which is designed specifically for plastics manufacturing. There must also be genuine-time process monitoring that is integrated into the Enterprise Resource Preparing. Component of its monitoring duty is lot traceability and record retention.


Bar coding is essential. Resins and elastomers are also engineered. Its suppliers and materials are certified and the plastic manufacturing company is ISO-9001:2000 certified. Some plastic makers have limited skills as far as solutions and products are concerned.


Customization of plastic according to offered specifications is crucial. The cutting service is amongst the in-demand service of every plastic manufacturer. It contains sawing CNC, routing and shaping, and personal computer controlled laser cutting.


Whilst such tasks may not be as complicated as it appears simply because it is machine and pc operated, the qualities of finished merchandise reflect the top quality of service exerted. Examples of great service are correct merchandise and possessing no chip edges whether or not the shapes are square, rectangular, triangular or round.


Good good quality items are not the sole basis for becoming a good plastic manufacturing company. Aggravation of atmosphere is among the worst effects of plastic procedures. The earth should not endure just to make the desirable merchandise. Hence, manufacturers should be conscious of the methodologies they employ.


Plastic molding is a plastic manufacturing process of generating components from thermoplastic and thermosetting plastic materials. It is widely used for manufacturing a selection of parts like body panels of vehicles.


In plastic extrusion, the raw plastic components are melted and formed into a continuous profile. Extrusion produces things like climate stripping, plastic pipe or tubing, adhesive tape, wire insulation, and window frames.


Plastic thermoforming requires heating plastic sheet to a pliable forming temperature, and formed to a certain shape employing a mold. It is then trimmed to develop usable item. The sheets are heated in an oven to quite higher temperature so it can be stretched into or onto a mold, and cooled to a final shape.



Are you looking for reputable plastic manufacturing? Then, go to us at http://www.tamshell.com . We operate with polymer groups and polycarbonates. We machine Nylon, PTFE or PEEK. Drop by at Vespel machining , and find out our custom seal designs. If you want Teflon components we can do that for you.

Friday, September 9, 2016

Do You Need To Know What Plastic Manufacturing Is?

Do You Want To Know What Plastic Manufacturing Is?


Plastic manufacturing is not a light process. Locating machine tools to produce plastic components needs careful analysis on the capacity, situation and capability of this tool. In promoting merchandise, companies should offer manuals so customers will know the correct use and maintenance of the goods they purchase.


Specifications and retrofit quotes need to also come with the items as they are sold, so that, throughout replacement, it would not be challenging. Modern engineered plastics are recognized for their strength, light weight and resistance to chemical attack and corrosion.


They also come in varying hues and textures. Simply because of distinct applications of plastic, analytical strategies and knowledge for their characterization have to be varied as properly. A excellent plastic manufacturing business endeavors to analyze plastic elements such as chemical and physical properties.


Raw supplies need to be of constant top quality. Machines must be well-maintained, and tooling and manufacturing procedures should be strict in compliance although becoming flexible for improvements. To make sure great high quality plastic goods, plastic machining elements requires consistent commitment and upkeep.


A good plastic manufacturer is capable of following the Enterprise Resource Arranging technique, which is made particularly for plastics manufacturing. There should also be genuine-time approach monitoring that is integrated into the Enterprise Resource Organizing. Part of its monitoring duty is lot traceability and record retention.


Bar coding is important. Resins and elastomers are also engineered. Its suppliers and components are certified and the plastic manufacturing firm is ISO-9001:2000 certified. Some plastic companies have restricted skills as far as services and merchandise are concerned.


Customization of plastic according to provided specifications is essential. The cutting service is among the in-demand service of each plastic manufacturer. It involves sawing CNC, routing and shaping, and laptop controlled laser cutting.


Although such tasks could not be as complex as it appears because it is machine and pc operated, the qualities of completed goods reflect the good quality of service exerted. Examples of good service are correct products and obtaining no chip edges no matter whether the shapes are square, rectangular, triangular or round.


Excellent high quality products are not the sole basis for becoming a very good plastic manufacturing firm. Aggravation of environment is among the worst effects of plastic procedures. The earth need to not suffer just to make the desirable merchandise. Therefore, producers should be conscious of the methodologies they employ.


Plastic molding is a plastic manufacturing procedure of making parts from thermoplastic and thermosetting plastic materials. It is extensively used for manufacturing a selection of parts like physique panels of cars.


In plastic extrusion, the raw plastic components are melted and formed into a continuous profile. Extrusion produces items like weather stripping, plastic pipe or tubing, adhesive tape, wire insulation, and window frames.


Plastic thermoforming involves heating plastic sheet to a pliable forming temperature, and formed to a particular shape making use of a mold. It is then trimmed to generate usable item. The sheets are heated in an oven to very higher temperature so it can be stretched into or onto a mold, and cooled to a final shape.



Are you hunting for reputable plastic manufacturing? Then, go to us at http://www.tamshell.com . We operate with polymer groups and polycarbonates. We machine Nylon, PTFE or PEEK. Drop by at Vespel machining , and find out our custom seal designs. If you require Teflon components we can do that for you.

Monday, June 13, 2016

CNC Plastic Machining for Tight Tolerance Parts

CNC Plastic Machining for Tight Tolerance Parts


For centuries, metals have been machined in order to generate various kinds of parts. Even so, as plastics have been replacing metals in several spheres of our life, the need to have for CNC plastic machining has grown tremendously in the recent previous. CNC stands for pc numerical handle, which entails the use of applications to command the machining procedure. Tight tolerances want to be followed whilst machining metals and the case with plastics is no distinct. Understandably, the varieties of machines and tactics used with plastics vary substantially as it is much softer than metals.


By producing use of CNC machining to get the components of desired dimension, you can advantage from the following advantages:


* The surface texture and optical clarity that is accomplished with CNC machining is noticeably a lot more superior. The all round finish is a lot better, thus giving your part or component a far better appear.


* If you have a medium or high capacity portion requirement, then this is undoubtedly the very best strategy. It provides you with constant components batch soon after batch. In a huge production run, the cost per part is really low.


* Utilizing this strategy, the most complex contours, niches, angles, corrugations and threading can be achieved. Plastics are considered effortless to function with, but only if your selected firm has the proper machines and technicians.


* Given that almost everything takes place on a highly computerized platform, the entire process is tightly controlled. This reduces the chances of errors and you can expect a very constant good quality of parts in each single batch. This method also offers you impeccable repeatability.


* Apart from just CNC plastic machining, other associated tasks such as drilling, cutting and beveling can also be carried out.


* If your operations pertain to sectors such as electrical, optical, power, aerospace, telecommunications, electronics etc, you can undoubtedly think about making use of plastic machines components as an alternative of metal ones. Plastic is lighter, less expensive, low on upkeep and also durable.


* CNC plastic machining, as a process can be utilized for creating parts that are smaller sized than an inch and larger than 20″ in size. If you have any doubts about which approach is suitable for you, you could seek advice from your chosen service provider.


When it comes to this procedure, most service providers function with components such as acrylics, Delrin, Teflon, and Lexan components. Every of these materials has a specific use. The most suitable material for your application can be decided primarily based on aspects such as part complexity, required tolerance, cost per element, turnaround time, etc. With the market becoming highly expense sensitive nowadays, it is critical to companion with a CNC plastic machining firm that can offer you the greatest expertise, services, tactics and options at the most economical prices.



Becoming a professional Technical Engineer I am usually writing articles about the latest technologies utilised in industrial usage has been my forte more than the final few years. Comply with my write ups to know about the newest technologies in plastic sector. This fall Plastic Machining, CNC Plastic Machining, Plastic Injection Molding Chicago are very considerably in demand amongst the technical industries across the world. Maintain your self updated on these products exclusively from Chicago, USA.

Tuesday, June 7, 2016

Meet your plastic molding requirements in the most professional way by the leader

Meet your plastic molding specifications in the most professional way by the leader


Plastic becoming an economical and versatile stuff is utilized in practically all parts of the globe. Injection molding is a manufacturing process in which plastic is molded to parts of a device or any appliance by use of suitable machines. Be it keyboard, mouse, soda bottles or plastic components in a residence appliance, these are created from injection molding approach. Picking a prime notch plastic injection molding organization is crucial to get premium high quality injection molded goods at a price effective rate in a specialist and practical way.


Asia Billion Industry Co. Restricted is a leading name among Plastic Injection Tooling Manufacturer China and caters to the demands of its consumers worldwide. Primarily based in Shenzhen City of China the business requires pride on its higher high quality merchandise and services and delivers maximum worth for money to all its clientele. The firm has carved a niche in this hard competitive business globe due to its unflinching commitment to offer impeccable quality goods and solutions. As a result it fulfills plastic molding requirements of a wide range of industries that includes Health-related, Automotive, and Electric, Household appliances and other people.


With a well stocked inventory of a massive quantity of injection molded automotive parts, CNC machining components the specialists can simply fulfill your molding tools and molded element needs in a customized and comprehensive way. The organization strictly follows a high quality assurance plan that ensures that all its products are tested to the highest requirements and they provide optimum satisfaction and assured peace of mind to the customers.


So make it a point to seek the advice of an professional of this top Plastic Injection Tooling Manufacturer China and talk about your plastic molding requirement or browse the on-line inventory by clicking on this hyperlink http://www.ab-sector.net/. With a dominant on the internet presence, massive inventory of molded goods and user-friendly shipping policies, Asia Billion Sector Co. Limited will facilitate you to meet your plastic injection molding needs in a prompt and skilled way thereby saving your valuable time and cash. You can make a contact on the no-0086-134 8063 8827 or e mail on sales@ab-business.com.



For far more particulars about Plastic Injection Tooling Manufacturer China

Tuesday, December 2, 2014

Cool Plastic Machining pictures

Check out these plastic machining photos:


Revell 737-800 close up


Image by wbaiv

IMG_4252


Skywave 1/700 “The West Wings” Grumman S2 Tracker CDF Airtanker


Image by wbaiv

IMG_0732

Wednesday, October 29, 2014

Lastest Plastic Machining Organization News

I Can In no way Have As well Numerous Mechanical Pencils

Low cost, plastic mechanical pencils expensive polycarbonate mechanical pencils tiny, slim aluminum mechanical pencils and finely-engineered mechanical drafting pencils: I have them all. I use them to write … Such pencils, although, had thick leads …
Read much more on The Atlantic


Greensburg Higher to host Open Property in new vocational facility

The new facility at Greensburg Neighborhood Higher School exemplifies a nationwide shift in education philosophy to reinvigorate hands-on-studying in traditional trades — plumbing, machining, carpentry — and in higher-tech equipment that can prepare …
Study far more on Greensburg Everyday News


Sanmina&#39s (SANM) CEO Jure Sola on F4Q 2014 Results – Earnings Get in touch with

The company&#39s actual benefits of operations could differ drastically as a outcome of a variety of aspects like the state of the global economy, financial situations in the electronics sector, alterations in customer needs and sales volume …
Read more on In search of Alpha (registration)


Lithoz&#39s CeraFab 7500: AM Goes Ceramic

With a quarter century of knowledge cutting plastic, glass and carbon fiber supplies HZ has a deep interest in materials. In fact, a crucial to HZ&#39s competitiveness is the firm&#39s constant researching into cutting edge materials and strategies for …
Study more on ENGINEERING.com



(Posted by a CNC machining China Company and precision CNC machined parts China manufacturer)

Saturday, September 27, 2014

Cool Plastic Machining Solutions photos

Verify out these plastic machining solutions images:


FUJIFILM 20 (Amsterdam 02:15PM)


Image by eastendimages

it was quite cold. i was tired following all night journey from london by means of france to eindhoven (by the coach). i took a train from eindhoven to amsterdam amstel in the middle on the night and following some local connection to the centre of amsterdam (with a wrong ticket, but the ticket collector geezer was really polite and relaxed, even though i didn’t punch my ticked which i purchased in some sort of self-service vending machine, but i cannot speak any dutch apart from few words which reminds me of german words i forgot lengthy time ago anyway). i found some spot to crash just opposite the holliday inn close to the station, but close adequate to the red light district and fall asleep. next morning i was on my hunt for the continental breakfast and packet of gitanes. i did not have any camera on me apart from some kinda crap i purchased on a ferry for my step daughter. it was fuji nexia APS. i purchased that camera only since it was purple and she liked purple a lot…



(Posted by a CNC machining China Company and precision CNC machined parts China manufacturer)

Friday, September 26, 2014

Saturday, September 20, 2014

ABS Plastic CNC Machining Mock Up Parts at Jevny Technologies in China




ABS Plastic CNC Machining Mock Up Components at Jevny Technologies in China Jevny Technologies is a Complete Service Fast Prototype,Manufacturing and OEM firm located…



(Posted by a CNC machining China Company and precision CNC machined parts China manufacturer)

Tuesday, September 9, 2014

2030 China cnc router, relief engraving on plastic




2000x3000mm function size This entire operate costed about 20 hours to finish. machine speed was 10m/min max we ought to have utilized wood board rather than plastic board This designing was provided by a…





operating area1300x2500 x200mm with a rotary axis 200mm diameter and 700mm operating length in front of the machine 6kw air cooling spindle produced in China Delta s…
Video Rating: four / five



(Posted by a CNC machining China Company and precision CNC machined parts China manufacturer)

Sunday, September 7, 2014

Your Preferred Provider of Cost-effective Plastic Screw Machining Service




Plastic Screw Machining has become a lost art form, but it really is one of the most cost effective forms of plastic machining. Screw machining gives relative ine…
Video Rating: / 5



(Posted by a CNC machining China Company and precision CNC machined parts China manufacturer)

Tuesday, August 26, 2014

Lastest Machining China Plastic News

Air Pollution Board To Hold Hearing On Permits For City Landfill, 3 Industries

Mueller Co., LLC, 1401 Mueller Avenue, Chattanooga, TN 37406, which operates and iron foundry with machining equipment, painting equipment, and assembly equipment necessary to produce complete valves, chiefly for potable water systems, has submitted an …
Read more on The Chattanoogan


Investing in Custom 3D Printing

So the solution was simple: They opened up the machine and quickly discovered that a small plastic component had failed. They then spent a few minutes reconfiguring one of their direct metal laser sintering machines (a 3D printer that can work with …
Read more on Wealth Daily



Lastest Machining China Plastic News

Monday, August 18, 2014

Lastest Plastic Cnc Machining China News

ABB Robotics to introduce new robots, turnkey manufacturing cells and

CNC Machine China Tending Cell: designed by VersaBuilt, the cell uses vise soft jaws to move parts in and out of the CNC China machine, with no custom robot programming or robot fixturing required. The soft jaws enable a new tended part to be setup in …
Read more on Robotics Online (press release)


Vortex Tool Introduces Tool Selection Guide App

Users input the type of material being cut, the horsepower of the CNC China machine, the tool diameter, the thickness of material and the type of cut desired, and the Tool Selection Guide App will recommend the best tool for your application. … Vortex Tool …
Read more on woodworkingnetwork.com



Lastest Plastic Cnc Machining China News

Saturday, August 16, 2014

Nice Plastic Machining China Services photos

Check out these plastic machining China services images:


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


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


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


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


This Blackbird accrued about 2,800 hours of flight time during 24 years of active service with the U.S. Air Force. On its last 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, 4 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 over to the Smithsonian.


Transferred from the United States Air Force.


Manufacturer:
Lockheed Aircraft Corporation


Designer:
Clarence L. "Kelly" Johnson


Date:

1964


Country 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)


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-type material) to reduce radar cross-section; Pratt and Whitney J58 (JT11D-20B) turbojet engines feature large inlet shock cones.


Long Description:

No reconnaissance aircraft in history has operated in more hostile airspace or with such complete impunity than the SR-71 Blackbird. It is the fastest aircraft propelled by air-breathing engines. The Blackbird’s performance and operational achievements placed it at the pinnacle of aviation technology developments during 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 accurate assessments of Soviet worldwide military deployments, particularly near the Iron Curtain. Lockheed Aircraft Corporation’s subsonic U-2 (see NASM collection) reconnaissance aircraft was an able platform but the U. S. Air Force recognized that this relatively slow aircraft was already vulnerable to Soviet interceptors. They also understood that the rapid 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 over the Soviet Union in 1960.


Lockheed’s first proposal for a new high speed, high altitude, reconnaissance aircraft, to be capable of avoiding interceptors and missiles, centered on a design propelled by liquid hydrogen. This proved to be impracticable because of considerable fuel consumption. Lockheed then reconfigured the design 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 design engineer Clarence L. "Kelly" Johnson) designed 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 many daunting technical challenges. Flying more than three times the speed of sound generates 316° C (600° F) temperatures on external aircraft surfaces, which are enough to melt conventional aluminum airframes. The design team chose to make the jet’s external skin of titanium alloy to which shielded the internal aluminum airframe. Two conventional, but very powerful, afterburning turbine engines propelled this remarkable aircraft. These power plants had to operate across a huge speed envelope in flight, from a takeoff speed of 334 kph (207 mph) to more than 3,540 kph (2,200 mph). To prevent supersonic shock waves from moving inside the engine intake causing flameouts, Johnson’s team had to design a complex air intake and bypass system for the engines.


Skunk Works engineers also optimized the A-12 cross-section design to exhibit a low radar profile. Lockheed hoped to achieve this by carefully shaping the airframe to reflect as little transmitted radar energy (radio waves) as possible, and by application of special paint designed to absorb, rather than reflect, those waves. This treatment became one of the first applications of stealth technology, but it never completely met the design goals.


Test pilot Lou Schalk flew the single-seat A-12 on April 24, 1962, after he became airborne accidentally during high-speed taxi trials. The airplane showed great promise but it needed considerable technical refinement before the CIA could fly the first operational sortie on May 31, 1967 – a surveillance flight over North Vietnam. A-12s, flown by CIA pilots, operated as part of the Air Force’s 1129th Special Activities Squadron under the "Oxcart" 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 Works, however, proposed a "specific mission" version configured to conduct post-nuclear strike reconnaissance. This system evolved into the USAF’s familiar SR-71.


Lockheed built fifteen A-12s, including a special two-seat trainer version. Two A-12s were modified to carry a special reconnaissance drone, designated D-21. The modified A-12s were redesignated M-21s. These were designed to take off with the D-21 drone, powered by a Marquart ramjet engine mounted on a pylon between the rudders. The M-21 then hauled the drone aloft and launched it at speeds high enough to ignite the drone’s ramjet motor. Lockheed also built three YF-12As but this type never went into production. Two of the YF-12As crashed during testing. Only one survives and is on display at the USAF Museum in Dayton, Ohio. The aft section of one of the "written off" YF-12As which was later used 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 first SR-71 flew on December 22, 1964. Because of extreme operational costs, military strategists decided that the more capable USAF SR-71s should replace the CIA’s A-12s. These were retired in 1968 after only one year of operational missions, mostly over southeast Asia. The Air Force’s 1st Strategic Reconnaissance Squadron (part of the 9th Strategic Reconnaissance Wing) took over the missions, flying the SR-71 beginning in the spring of 1968.


After the Air Force began to operate the SR-71, it acquired the official name Blackbird– for the special 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 high 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 included a sophisticated Electronic Counter Measures (ECM) system that could jam most acquisition and targeting radar. In addition to an array of advanced, high-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 designed to fly deep into hostile territory, avoiding interception with its tremendous speed and high altitude. It could operate safely at a maximum speed of Mach 3.3 at an altitude more than sixteen miles, or 25,908 m (85,000 ft), above the earth. The crew had to wear pressure suits similar to those worn by astronauts. These suits were required to protect the crew in the event of sudden cabin pressure loss while at operating altitudes.


To climb and cruise at supersonic speeds, the Blackbird’s Pratt & Whitney J-58 engines were designed to operate continuously in afterburner. While this would appear to dictate high fuel flows, the Blackbird actually achieved its best "gas mileage," in terms of air nautical miles per pound of fuel burned, during the Mach 3+ cruise. A typical Blackbird reconnaissance flight might require several aerial refueling operations from an airborne tanker. Each time the SR-71 refueled, the crew had to descend to the tanker’s altitude, usually about 6,000 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 caused the aircraft’s skin panels to shrink considerably, and those covering the fuel tanks contracted so much that fuel leaked, forming a distinctive vapor trail as the tanker topped off the Blackbird. As soon 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 career but other bases hosted Blackbird operations, too. The 9th SRW occasionally deployed from Beale AFB, California, to other locations to carryout operational missions. Cuban missions were flown directly from Beale. The SR-71 did not begin 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 gather intelligence from sites deep within Soviet territory. Satellites could not cover every geopolitical hotspot so the Blackbird remained a vital tool for global intelligence gathering. On many occasions, pilots and RSOs flying the SR-71 provided information that proved vital in formulating successful U. S. foreign policy. Blackbird crews provided important 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 conducted by American air forces on Libya. In 1987, Kadena-based SR-71 crews flew a number of missions over the Persian Gulf, revealing Iranian Silkworm missile batteries that threatened commercial shipping and American escort vessels.


As the performance of space-based surveillance systems grew, along with the effectiveness of ground-based air defense networks, the Air Force started to lose enthusiasm for the expensive program and the 9th SRW ceased SR-71 operations in January 1990. Despite protests by military leaders, Congress revived the program in 1995. Continued wrangling over operating budgets, however, soon led to final termination. The National Aeronautics and Space Administration retained two SR-71As and the one SR-71B for high-speed research projects and flew these airplanes until 1999.


On March 6, 1990, the service career of one Lockheed SR-71A Blackbird ended with a record-setting flight. This special airplane bore Air Force serial number 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 more than a dozen ’972 operational sorties. The aircraft spent twenty-four years in active Air Force service and accrued a total of 2,801.1 hours of flight time.


Wingspan: 55’7"

Length: 107’5"

Height: 18’6"

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 Since 1913. Annapolis, Md.: Naval Institute Press, 1987.


Johnson, Clarence L. Kelly: 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



Nice Plastic Machining China Services photos

Thursday, August 14, 2014

Nice Machining China Plastic photos

A few nice machining plastic images I found:


focusing_motor_nikon_af-s_nikkor_18-55mm


Image by Macroscopic Solutions

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Please download and use our open source images for your own purposes. If you do, please reference Macroscopic Solutions.


All of the images in our database were captured with the Macropod by Macroscopic Solutions. www.macroscopicsolutions.com


Click here to see a brief video about Macroscopic Solutions and the Macropod.


Click here to see a brief description about the Macropod.


Click here to see instructional videos about our techniques.


The Macropod is a rigid, portable photomacrography system, which allows the user to make razor sharp, fully focused photographs of small sized specimens at 18 to 26-megapixel resolution. It overcomes the extreme Depth of Field (DOF) limitations inherent in optics designed to image smaller specimens. Normally, lenses designed for macro will only render a very small fraction of the depth of targeted specimen in sharp focus at any one exposure. The Macropod allows the user to select and make multiple exposures in precise increments along the Z-axis (depth) such that each exposure’s area of sharp focus overlaps with the previous and next exposure. These source images are then transferred to a computer and merged by an image-stacking program. The stacking program finds and stitches together only the focused pixels from each exposure into one image. The Macropod integrates industry-leading components in a novel and elegant way to achieve these results.


Contact information:
Mark Smith

mark@macroscopicsolutions.com

410 258 6144

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injection molding machine


Image by HaiflyMachine

plastic injection blowing machine;pet machinery;plastic injection molding machinery;molding machines;energy-savings;preform machine;plastic bottle molding machine;used injection machinery;plastic moulding machinery;

plastic mold injection molding;plastic injection moulding;vertical injection machinery


focusing_motor_nikon_af-s_nikkor_18-55mm


Image by Macroscopic Solutions

/////////////////////////////////////////////////////////////////


Please download and use our open source images for your own purposes. If you do, please reference Macroscopic Solutions.


All of the images in our database were captured with the Macropod by Macroscopic Solutions. www.macroscopicsolutions.com


Click here to see a brief video about Macroscopic Solutions and the Macropod.


Click here to see a brief description about the Macropod.


Click here to see instructional videos about our techniques.


The Macropod is a rigid, portable photomacrography system, which allows the user to make razor sharp, fully focused photographs of small sized specimens at 18 to 26-megapixel resolution. It overcomes the extreme Depth of Field (DOF) limitations inherent in optics designed to image smaller specimens. Normally, lenses designed for macro will only render a very small fraction of the depth of targeted specimen in sharp focus at any one exposure. The Macropod allows the user to select and make multiple exposures in precise increments along the Z-axis (depth) such that each exposure’s area of sharp focus overlaps with the previous and next exposure. These source images are then transferred to a computer and merged by an image-stacking program. The stacking program finds and stitches together only the focused pixels from each exposure into one image. The Macropod integrates industry-leading components in a novel and elegant way to achieve these results.


Contact information:
Mark Smith

mark@macroscopicsolutions.com

410 258 6144

/////////////////////////////////////////////////////////////////



Nice Machining China Plastic photos

Drive shaft - plastic injection molding machine - small plastic injection molding machine Manufactur


Drive shaft – plastic injection molding machine – small plastic injection molding machine Manufactur


An automobile may use a longitudinal shaft to deliver power from an engine/transmission to the other end of the vehicle before it goes to the wheels. A pair of short drive shafts is commonly used to send power from a central differential, transmission, or transaxle to the wheels.


A truck double propeller shaft


Main article: Front-engine, rear-wheel drive layout


In front-engined, rear-drive vehicles, a longer drive shaft is also required to send power the length of the vehicle. Two forms dominate: The torque tube with a single universal joint and the more common Hotchkiss drive with two or more joints. This system became known as Systme Panhard after the automobile company Panhard et Levassor patented it.


Most of these vehicles have a clutch and gearbox (or transmission) mounted directly on the engine with a drive shaft leading to a final drive in the rear axle. When the vehicle is stationary, the drive shaft does not rotate. A few, mostly sports, cars seeking improved weight balance between front and rear, and most commonly Alfa Romeos or Porsche 924s, have instead used a rear-mounted transaxle. This places the clutch and transmission at the rear of the car and the drive shaft between them and the engine. In this case the drive shaft rotates continuously as long as the engine does, even when the car is stationary and out of gear.


Early automobiles often used chain drive or belt drive mechanisms rather than a drive shaft. Some used electrical generators and motors to transmit power to the wheels.


In British English, the term “drive shaft” is restricted to a transverse shaft that transmits power to the wheels, especially the front wheels. A drive shaft connecting the gearbox to a rear differential is called a propeller shaft, or prop-shaft. A prop-shaft assembly consists of a propeller shaft, a slip joint and one or more universal joints. Where the engine and axles are separated from each other, as on four-wheel drive and rear-wheel drive vehicles, it is the propeller shaft that serves to transmit the drive force generated by the engine to the axles.


A drive shaft connecting a rear differential to a rear wheel may be called a half shaft. The name derives from the fact that two such shafts are required to form one rear axle.


Several different types of drive shaft are used in the automotive industry:


The slip-in-tube drive shaft is a new type that also helps in crash energy management. It can be compressed in the event of a crash, so is also known as a collapsible drive shaft.


Four wheel and all-wheel drive


These evolved from the front-engine rear-wheel drive layout. A new form of transmission called the “transfer box” was placed between transmission and final drives in both axles. This split the drive to the two axles and may also have included reduction gears, a dog clutch or differential. At least two drive shafts were used, one from the transfer box to each axle. In some larger vehicles, the transfer box was centrally mounted and was itself driven by a short drive shaft. In vehicles the size of a Land Rover, the drive shaft to the front axle is noticeably shorter and more steeply articulated than the rear shaft, making it a more difficult engineering problem to build a reliable drive shaft, and which may involve a more sophisticated form of universal joint.


Modern light cars with all-wheel drive (notably Audi or the Fiat Panda) may use a system that more closely resembles a front-wheel drive layout. The transmission and final drive for the front axle are combined into one housing alongside the engine, and a single driveshaft runs the length of the car to the rear axle. This is a favoured design where the torque is biased to the front wheels to give car-like handling, or where the maker wishes to produce both four-wheel drive and front-wheel drive cars with many shared components.


Drive shaft for Research and Development (R&D)


The automotive industry also uses drive shafts at testing plants. At an engine test stand a drive shaft is used to transfer a certain speed / torque from the combustion engine to a dynamometer. A “shaft guard” is used at a shaft connection to protect against contact with the drive shaft and for detection of a shaft failure. At a transmission test stand a drive shaft connects the prime mover with the transmission.


A 1913 FN (Fabrique Nationale), Belgium, 4cylinders and shaft drive


A 1923 BMW R32, with a shaft-drive, boxer twin engine


Drive shafts have been used on motorcycles almost as long as there have been motorcycles. As an alternative to chain and belt drives, drive shafts offer relatively maintenance-free operation and long life. A disadvantage of shaft drive on a motorcycle is that gearing is needed to turn the power 90 from the shaft to the rear wheel, losing some power in the process. On the other hand, it is easier to protect the shaft linkages and drive gears from dust, sand and mud.


The best known motorcycle manufacturer to use shaft drive for a long time since 1923 is BMW. Among contemporary manufacturers, Moto Guzzi is also well-known for its shaft drive motorcycles. The British company, Triumph and all four Japanese brands, Honda, Suzuki, Kawasaki and Yamaha, have produced shaft drive motorcycles.


Motorcycle engines positioned such that the crankshaft is longitudinal and parallel to the frame are often used for shaft driven motorcycles. This requires only one 90 turn in power transmission, rather than two. Moto Guzzi, BMW, Triumph, and Honda use this engine layout.


Motorcycles with shaft drive are subject to shaft effect where the chassis climbs when power is applied. This is counteracted with systems such as BMW’s Paralever, Moto Guzzi’s CARC and Kawasaki’s Tetralever.


On a power-driven ship, the drive shaft, or propeller shaft, usually connects the transmission inside the vessel directly to the propeller, passing through a stuffing box or other seal at the point it exits the hull. There is also a thrust block, a bearing to resist the axial force of the propeller. As the rotating propeller pushes the vessel forward, any length of drive shaft between propeller and thrust block is subject to compression, and when going astern to tension. Except for the very smallest of boats, this force isn’t taken on the gearbox or engine directly.


Cardan shafts are also often used in marine applications between the transmission and either a propeller gearbox or waterjet.


Cardan shafts are used in some diesel locomotives (mainly diesel-hydraulics, such as British Rail Class 52) and some electric locomotives (e.g. British Rail Class 91). They are also widely used in diesel multiple units.


Drive shafts in Bicycles


The drive shaft has served as an alternative to a chain-drive in bicycles for the past century, although never becoming very popular. A shaft-driven bicycle is described as an “Acatane”, from one of their early makers. When used on a bicycle, a drive shaft has several advantages and disadvantages:


Drive system is less likely to become jammed or broken, a common problem with chain-driven bicycles


The use of a gear system creates a smoother and more consistent pedaling motion


The rider cannot become dirtied from chain grease or injured by the chain from “Chain bite”, which occurs when clothing or even a body part catches between the chain and a sprocket


Lower maintenance than a chain system when the drive shaft is enclosed in a tube, the common convention


More consistent performance. Dynamic Bicycles claims that a drive shaft bicycle consistently delivers 94% efficiency, whereas a chain-driven bike can deliver anywhere from 75-97% efficiency based on condition.


Greater clearance: with the absence of a derailleur or other low-hanging machinery, the bicycle has nearly twice the ground clearance


For bicycle rental companies, a drive-shaft bicycle is less prone to be stolen, since the shaft is non-standard, and both noticeable and non-maintainable. This type of bicycle is in use in several major cities of Europe, where there have been large municipal funded, public (and automatic) bicycle rental projects.


A drive shaft system weighs more than a chain system, usually 1-2 pounds heavier


At optimum upkeep, a chain delivers greater efficiency


Many of the advantages claimed by drive shaft’s proponents can be achieved on a chain-driven bicycle, such as covering the chain and gears with a metal or plastic cover


Use of lightweight derailleur gears with a high number of ratios is impossible, although hub gears can be used


Wheel removal can be complicated in some designs (as it is for some chain-driven bicycles with hub gears).


Categories: Vehicle parts | Automotive technologies | Mechanical power control | Mechanical power transmissionHidden categories: Articles lacking sources from December 2007 | All articles lacking sources



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