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So What Are Some of the Applications For the Gas Tungsten Arc Welding Process?
So What Are Some of the Applications For the Gas Tungsten Arc Welding Process?
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So What Are Some of the Applications For the Gas Tungsten Arc Welding Process?
By: Jennifer Jenkins
Posted: Jan 04, 2011
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So what are some of the applications for GTAW?
Obviously, this process is used for a wide variety of applications where the parts are made out of non-ferrous metals. Maintenance and repair is done by both manual and automatic methods of Gas Tungsten Arc Welding. From stainless to titanium, aluminum, inconel, monel, cobalt, magnesium, hastalloy, you name it, and it can probobly be welded with TIG.
It is appropriate for welding of pipe and tubing in all positions. The excellent control of heat input gives maximum penetration while preventing melt-through on the root (first) pass. A lot of times a procedure is used where the root pass is welded with the GTAW process and then completed with Shielded Metal Arc Welding, Gas Metal Arc Welding, or flux Cored Arc Welding. This is used to obtain a high quality, low cost weld.
Consumable inserts are sometimes used in critical service applications. These inserts reduce porosity when alloyed with deoxidizers, improve the contour of the underside of the weld, and minimize cracking in the weld. On thin pipewall (depending on the base metal) , complete fusion is obtained without the use of filler metal. Filler metal , is used with thicker sections in order to fill the joint. Pulsed current may also be used.
Automatic circumferential or orbital Gas Tungsten Arc Welding is also used to weld pipe and tube.
Power piping, Air piping, Refrigeration piping, Chemical industry process piping, and Nuclear power piping are some of the different industries that apply the Gas Tungsten Arc Welding process for welding pipe and tubing. Vacuum jacketed piping and pressure piping are a couple of cases where critical welding is required.
Nuclear Power Facilities :
Critical welding in the construction and repair of nuclear power facilities is required. Both manual and automatic methods are employed for many nuclear applications because of their precise control of the welding.
Pressure Vessels, Boilers, and Heat Exchangers :
Gas Tungsten Arc Welding has a wide range of applications in the pipe and tube industry for the welding of pressure vessels, boilers, and heat exchangers. It is employed where full fusion welding is made from one side, without the use of permanent backing rings, and on girth butt welds with a smooth internal contour. Adequate mechanical strength and corrosion resistance for a particular service encountered can be obtained by choosing the correct filler metal and welding conditions.
Aerospace :
The Gas Tungsten Arc Welding process is the major welding process used in the aerospace industry. Aircraft, spacecraft, and launch vehicles are a few of what’s included in this industry. Some of the metals welded include aluminum, nickel, stainless steel, magnesium, and super alloys. Both the manual and automatic methods are employed in this industry. Pulsed current is also used extensively in this industry. Just about all critical welds made in this industry are done by TIG and a highly skilled welder.
Ships :
The Gas Tungsten Arc Welding process is applied in the ship-building industry because different materials like aluminum, molybdenum, and stainless steel are used. There is a lot of applications in this industry for the welding of stainless steel and aluminum.
Transportation :
The Gas Tungsten Arc Welding process is used somewhat in the automotive and railroad industries. It is used mainly for the welding of non-ferrous metals, maintenance, and for small components. Fabrication of aluminum fuel tanks is one application used in this industry.
In the railroad industry, several of the interior components are made of aluminum, stainless steel, monel, and copper are sometimes welded by this process. Some maintenance and repair of passenger trains is also performed.
Another area of use for this process is contractor work. If you have the equipment and skill you can charge anywhere from – 5 per hour. I personally know a person who’s company charges per hour for TIG aluminum jobs and he gets it. If you don’t have the equipment, you could always try to go to work for a contractor. TIG welding is a very rewarding profession, and they always need skilled welders.
So my advice to you is, if you want to be a TIG welder, get some training ( I recommend The Hobart Institute of Welding Technology in Troy, Ohio ) They’re the best! Maybe, if you could afford it, get a certification in GTAW while you go to school there. Apply yourself, and learn as much as you can. Then be aggressive, and go out there and get a job in the TIG welding industry. Make sure to keep your attendance perfect, if at all possible. Employers want you to come to work and be on time. If you do this you’ll be on your way to an interesting and fun career that is rewarding.
Jennifer Jenkins
Jennifer Jenkins – About the Author:
Jennifer Jenkins is an expert in many niches. She would like to invite you to visit another one of her and husband Ralph’s many websites. If your interested in earning extra cash while working at home, then go to http://www.free9fastcashvideos.com and sign up to get your FREE membership and a totally FREE 9 video course on how to start an Internet Marketing business.
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Article Tags:
gas tungsten arc welding, gtaw, non ferrous metals, arc welding, welder, stainless steel, applications, pipe and tubing, nuclear power, filler metal
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Flash Butt welding for heavy duty applications:
The welding principle is quite simple. The welding machine, whatever its type and size – applies heat to the two metal pieces that are to be joined. This heat causes the two metal pieces to melt slightly to form a liquid. A filler material made from tungsten or a metal alloy is often used as a filler material between the two pieces. When the heat from the welding machine is withdrawn, the liquefied metal and filler quickly solidify to join the two units.
Flash butt welding is an advanced and innovative technique for joining mild steel, alloy steel and other dissimilar metals in various tubular or solid forms. Flash butt welding may be described as a technique for joining segments of metal rail or pipe in which segments aligned end to end are electronically charged, producing an electric arc that melts and welds the ends of the segments resulting in a remarkably firm and smooth joint.
When two wires, which are charged with electricity, are made to contact with each other, they crackle with sparks. The flash-butt welding is a welding method which harnesses this heat of which sparks generate, to melt and to weld metals.
The striking feature of flash butt welding is the resultant weld quality is similar to the parent metal. No additional tools like rods or gas is required and that makes flash butt welding highly economical. Other important features of flash butt welding include – no elaborate preparation, high accuracy of welded joints and high consistency of weld parameters.
Generally speaking, there are three basic types of butt-welding and you adopt one or the other depending on the thickness of the metals to be joined. For thin metal sheets or plastic, you can choose a square weld joint. In such cases, the edges of the metals form 90-degree angles to one another and can be butted together with ease. This is the most economical and common type of butt-welding joint.
When you weld thicker materials, the edges must be beveled to form either a single or double V-groove. A single V-groove is meant for metal pieces of moderate thickness including almost all varieties of pipes. Filler is usually placed on the wider part of the V-groove to provide firmness to the weld. As regards a double V-groove, both the top and bottom of each object is beveled. Filler is placed on both sides and heated in alternating patterns to achieve the most secure weld possible. This double V-shape is more meant for extra thick or large pieces.
Butt-welding is widely used in a wide variety of manufacturing industries, at construction sites and in specialty welding shops. Applications include wheels, aerospace, structural members, rings, rods, stationary rail application, anodes, bands etc.
There are available in the market Flash Butt Welding machines for many applications from the smallest to the largest. There are also welders specially designed for heavy duty applications where repeatability in performance is the key. The manufacturers also supply necessary tooling and clamping devices for adapting these machines for the production of railway shackles, automotive parts, starter ring-gears, wheel rims, chain links and assembly of parts by links etc.
Oleg Gladshteyn is a Professional writer working with Everlastgenerators and he writes articles for Plasma Cutters. He written many articles like Welders, plasma cutting, TIG Welders. Contact him at weldings.info@gmail.com. For more information visit our site http://www.everlastgenerators.com
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Magnet and Its Applications
As the world is advancing towards a new technological era, more and more new inventions are being made. Even though all inventions are considered in one way or another, the invention of magnet is considered the greatest achievement of mankind. Magnet has made transportation and power and energy generation a much easier and effective process.
What is a magnet?
A magnet is basically a material or an object that creates a magnetic field around itself and attracts ferromagnetic materials like iron and attracts or repels other magnets. The earliest existence of magnets was around 2500 years ago in India, China and Greece. By the 12th and 13th centuries, magnets were being used extensively in several Asian and European countries in the form of magnetic compasses.
Magnets are available in several shapes and sizes and are used for home as well as industrial uses. The two major varieties of magnets are electromagnets and permanent magnets. Electromagnets generally consist of a coil wire that behaves as a magnet when an electric current passes through it. Permanent magnet on the other hand, is created from a magnetic material that is having a persistent magnetic field.
Magnets have gained immense popularity and is nowadays used in a host of application areas. All the major activities, whether industrial or otherwise, are undertaken with the use of magnets and due to high dependency on the use of magnets, their absence will be conspicuous. It would be quite right to say that magnets are crucial for the subsistence of the contemporary world.
Magnets are used for a variety of purposes and have various applications.
Magnets are used extensively in floppy disks, cassettes and hard disks. Magnets, due to their property of attracting a multitude of things, are produced in the form of thin coating films on which data is stored or recorded.
Magnets serve a variety of industrial purposes. They are used in industrial equipment like separators, sweepers, pullers, conveyors and welding devices besides others.
Magnets are also used widely in magnetic therapy devices that include magnetic waist belts, magnetic massager, knee magnets and magnetic mattresses, etc.
Credit, Debit and ATM cards have magnetic strips on one side that encodes the information about the individual and his account and bank details.
The use of magnets is also common in speaker and microphones.
Electronics motors and generators also work with the use of magnets.
Another extensive use of magnets is in the health sector. Hospitals use Magnetic Resonance Techniques (MRI) to scan various organs in the human body and for surgical purposes.
Household equipment like headphones, telephones, television, refrigerators, water pumps, etc. also make use of magnets.
Magnets are also used in a variety of jewelry items like bracelets, earrings, pendants and necklaces.
Other uses of magnets include uses in tools, toys, science projects, vinyl magnet sheets, compasses, fail-safe devices, etc.
Please Visit URL: http://www.jupitermagnetics.com
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Welding: Principles and Applications, Fifth Edition
Product Description
This book should be of interest to welding students requiring an introduction to welding processes.
Welding: Principles and Applications
Product Description
This newly updated sixth edition of Welding: Principles and Applications features tight shots of actual welds to speed beginners to an understanding of a variety of different welding processes used today. Moving quickly from basic concepts to the study of today’s most complex welding technologies, each section begins by introducing readers to the materials, equipment, setup procedures, and critical safety information they need to know to successfully execute a specific process. Remaining chapters in the section zero in on individual welding tasks and must-know techniques. Comprehensive coverage spans from specific welding processes to discussion of related topics, including welding metallurgy, metal fabrication, weld testing and inspection, joint design, and job costing. Objectives, key terms, review questions, lab experiments, and practice exercises in every chapter are also included to focus attention on information and skills required for success as a professional welder.


