4.5 Article

Formation of nanocrystalline surface layers in various metallic materials by near surface severe plastic deformation

期刊

SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS
卷 5, 期 1-2, 页码 145-152

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1016/j.stam.2003.10.015

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ultra-grain refinement; nanocrystalline materials; surface modification; severe plastic deformation; grain size; microstructure; steel; aluminum alloy; copper alloy; lead alloy

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The surface of the various kinds of metallic materials sheets were severely deformed by wire-brushing at ambient temperature to achieve nanocrystalline surface layer. The surface layers of the metallic materials developed by the near surface severe plastic deformation (NS-SPD) were characterized by means of TEM. Nearly equiaxed nanocrystals with grain sizes ranging from 30 to 200 nm were observed in the near surface regions of all the severely scratched metallic materials, which are Ti-added ultra-low carbon interstitial free steel, austenitic stainless steel (SUS304), 99.99 wt.%Al, commercial purity aluminum (Al050 and Al100), Al-Mg alloy (A5083), Al-4 wt.%Cu alloy, OFHC-Cu (C1020), Cu-Zn alloy (C2600) and Pb-1.5%Sn alloy. In case of the 1050-H24 aluminum, the depth of the surface nanocrystalline layer was about 15 mum. It was clarified that wire-brushing is an effective way of NS-SPD, and surface nanocrystallization can be easily achieved in most of metallic materials. (C) 2003 Elsevier Ltd. All rights reserved.

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