By Rajiv Mishra, Murray Mahoney, Yutaka Sato, Yuri Hovanski, Ravi Verma
This assortment makes a speciality of all features of technology and expertise regarding friction stir welding and processing.
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Extra info for Friction Stir Welding and Processing VII
Figure 8 indicated the upper layer material was mainly affected by the shoulder. The material was difficult to push down when in the upper layer. Figure 9 showed that the tracer material in the middle layer flowed with a different routine compared with that in the upper layer. The particles were stirred and distributed uniformly in a fairly large area. It could also be found that all the counter-clockwise samples had defects on the advancing side near the top surface. The material had a trend of being pushed downward by the screwed pin during FSP.
8. Y. Morisada, H. Fuji, T. Nagaoka and M. Fukusumi, "MWCNTs/AZ31 surface composites fabricated by friction stir processing", Materials Science and Engineering A, 419 (2006), pp. 344-48. 9. Y. Morisada, H. Fuji, T. Nagaoka and M. Fukusumi, "Effect of friction stir processing with SiC particles on microstructure and hardness of AZ31", Materials Science and Engineering A, 433 (2006), pp. 50-54. 10. l Lee, lC. l Hsieh, "Mg based nano-composites fabricated by friction stir processing", Scripta. Mater, 54 (2006), pp.
Validation of microstructure and property correlation for design of materials, MS thesis, Materials Science and Engineering, Missouri S&T, Rolla, Missouri. , Particle reinforced aluminium and magnesium matrix composites. lnt. Mater. Rev. 39 (1994), ppl-24. , Ho N l, Microstructure and mechanical properties of AI-Fe in situ nanocomposite produced by friction stir processing, lntermetallics 16 (2008), pp II 04-11 08. , Particle-reinforced aluminum matrix composites produced from powder mixtures via friction stir processing, Composites Science and Technology 71 (20 II), pp693-698.