Residual stresses analysis of friction stir welding using one-way FSI simulation

Author:

Kang Sung-Wook,Jang Beom-Seon,Song Ha-Cheol

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials

Reference15 articles.

1. W. M. Thomas, E. D. Nicholas, J. C. Needham, M. G. Murch, P. Temple-Smith and C. J. Dawes, Friction stir butt welding, Int. Patent Application No. PCT/GB92/02203, GB Patent Application No. 9125978.8 (1991), US Patent No. 5460317 (1995).

2. W. M. Thomas, E. D. Nicholas, J. C. Needham, M. G. Murch, P. Temple-Smith and C. J. Dawes, Improvements relating to friction welding, International Patent Classifications B23K 20112, B29C 65/06 (1993).

3. S. W. Kang and B. S. Jang, Comparisons with friction stir welding heat transfer analysis methods and parametric study on unspecified input variables, Journal of Mechanical Science and Technology, 28 (10) (2014) 4223–4246.

4. M. Peel, A. Steuwer, M. Preuss and P. J. Withers, Microstructure, mechanical properties and residual stresses as a function of welding speed in aluminium AL5083 friction stir welds, Acta Materialia, 51 (2003) 4791–4801.

5. X. K. Zhu and Y. J. Chao, Numerical simulation of transient temperature and residual stresses in friction stir welding of 304L stainless steel, Journal of Materials Processing Technology, 146 (2004) 263–272.

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