Multiphysics Modeling and Simulations of Mil A46100 Armor-Grade Martensitic Steel Gas Metal Arc Welding Process

Author:

Grujicic M.,Ramaswami S.,Snipes J. S.,Yen C.-F.,Cheeseman B. A.,Montgomery J. S.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference58 articles.

1. M.G.H. Wells, R.K. Weiss, and J.S. Montgomery, LAV Armor Plate Study, MTL TR 92-26, U.S. Army Materials Technology Laboratory, Watertown, MA, 1992

2. J.G. Holmes and B.J. Resnick, Flexible Robot Arc Welding System, Soc. Manuf. Eng., 1979, MS (79)

3. U.S. Environmental Protection Agency, AP 42, Fifth Edition: Compilation of Air Pollutant Emission Factors, Volume 1: Stationary Point and Area Sources, U.S. Environmental Protection Agency, Washington, 1995, p 12.19-1–12.19-3

4. A.D. Althouse, C.H. Turnquist, W.A. Bowditch, K.E. Bowditch, and M.A. Bowditch, Modern Welding, 10th ed., Goodheart-Willcox Publisher, Tinley Park, IL, 2004, p 233–265

5. M. Grujicic, S. Ramaswami, J.S. Snipes, R. Yavari, A. Arakere, C-F. Yen, and B.A. Cheeseman, Computational Modeling of Microstructure Evolution in AISI 1005 Steel During Gas Metal Arc Butt Welding, J. Mater. Eng. Perform., 2012. doi: 10.1007/s11665-012-0402-1

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