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Energy Beam Welding

Energy beam welding methods, namely laser beam welding and electron beam welding, are relatively new processes that have become quite popular in high production applications. The two processes are quite similar, differing most notably in their source of power. Laser beam welding employs a highly focused laser beam, while electron beam welding is done in a vacuum and uses an electron beam. Both have a very high energy



density, making deep weld penetration possible and minimizing the size of the weld area. Both processes are extremely fast, and are easily automated, making them highly productive. The primary disadvantages are their very high equipment costs (though these are decreasing) and a susceptibility to thermal cracking. Developments in this area include laser-hybrid welding, which uses principles from both laser beam welding and arc welding for even better weld properties


Here are some more welding articles...

Gas Welding
The most common gas welding process is oxyfuel welding, also known asoxyacetylene welding. It is one of the oldest and most versatilewelding processes, but in recent years it has become less Read more...
Distortion and Cracking
Weldingmethods that involve the melting of metal at the site of the jointnecessarily are prone to shrinkageas the heated metal cools. Shrinkage, in turn, can Read more...
Distortion and Cracking
Weldingmethods that involve the melting of metal at the site of the jointnecessarily are prone to shrinkageas the heated metal cools. Shrinkage, in turn, can Read more...
Heat_affected_zone
Theeffects of welding on the material surrounding the weld can bedetrimental – depending on the materials used and the heatinput of the welding process used, the HAZ can be of varying Read more...
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