By W. Sudnik
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Extra info for Arc Welding
Lippold, J. (1993). Laser and Electron beam welding of a SiCP reinforced aluminum A-356 metal matrix composite, Scripta metallurgical et materialia, Vol. 28, Issue 11 (Jun 1993), pp. ; Wang, G. Srivatsan T. (2003). A mechanism for the formation of equiaxed grains in welds of aluminum-lithium alloy 2090. Materials Science and Engineering A, Vol. 351, Issue 1-2, (Jun 2003), pp. ; McClure, J. & Vega, F. (1997). Microstructural aspects friction-stir welding of 6061-T6 aluminum. 3, pp. 355-361, ISSN 1359-6462 Liu, W.
Introduction The indirect electric arc technique (IEA) is a welding process that was initially developed to weld aluminum metal matrix composites (MMCs) reinforced with high content of TiC particles. Later on, its use was extended to weld MMCs reinforced with low contents of SiC and Al2O3 particles and monolithic materials such as carbon steels, aluminum and aluminum alloys. This technique is based on using the gas metal arc welding process (GMAW). In this instance, however, fusion of the base metal is not realized by the direct contact between the electric arc and the work pieces.
Pérez, R (2007). A comparative study of the SSC resistance of a novel welding process IEA with SAW and MIG. Materials Characterization, Volume 58, Issue 8-9, (August-September 2007), pp. ; Ramirez, J. & Koch G. (2003). Performance of welded high-strength low-alloy steels in sour environments. Corrosion, Volume 59, Issue 7, (July 2003), pp. ; Raju, M. Sundaresan, S. (2000). Use of inoculants to refine weld solidification structure and improve weldability in type 2090 Al-Li alloy. Materials Science and Engineering A, Vol.
Arc Welding by W. Sudnik