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Mechanical Properties and Microstructure of Bionic Non-Smooth Stainless Steel Surface by Laser Multiple Processing 被引量:7

Mechanical Properties and Microstructure of Bionic Non-Smooth Stainless Steel Surface by Laser Multiple Processing
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摘要 Laser multiple processing, i.e. laser surface texturing and then Laser Shock Processing (LSP), is a new surface processing technology for the preparation of bionic non-smooth surfaces. Based on engineering bionics, samples of bionic non-smooth surfaces of stainless steel 0Crl 8Ni9 were manufactured in the form of reseau structure by laser multiple processing. The mechanical properties (including microhardness, residual stress, surface roughness) and microstructure of the samples treated by laser multiple processing were compared with those of the samples without LSP The results show that the mechanical properties of these samples by laser multiple processing were clearly improved in comparison with those of the samples without LSP The mechanisms underlying the improved surface microhardness and surface residual stress were analyzed, and the relations between hardness, comnressive residual stress and roughness were also presented. Laser multiple processing, i.e. laser surface texturing and then Laser Shock Processing (LSP), is a new surface processing technology for the preparation of bionic non-smooth surfaces. Based on engineering bionics, samples of bionic non-smooth surfaces of stainless steel 0Crl 8Ni9 were manufactured in the form of reseau structure by laser multiple processing. The mechanical properties (including microhardness, residual stress, surface roughness) and microstructure of the samples treated by laser multiple processing were compared with those of the samples without LSP The results show that the mechanical properties of these samples by laser multiple processing were clearly improved in comparison with those of the samples without LSP The mechanisms underlying the improved surface microhardness and surface residual stress were analyzed, and the relations between hardness, comnressive residual stress and roughness were also presented.
出处 《Journal of Bionic Engineering》 SCIE EI CSCD 2009年第2期180-185,共6页 仿生工程学报(英文版)
基金 supported by the National Natural Science Foundation of China (Grant No.50705038,50735001 and 10804037) the Foundation of Jiangsu Province (Grant No.06-D-023,BK2007512 and BG2007033) The 8th Student Research Train Program of Jiangsu University (Grant No.08A172) the Innovation Program of Graduated Student of Jiangsu Province (Grant No.XM2006-45) the Open Foundation of Jiangsu Key Laboratory of Advanced Numerical Control Technology (Grant No.KXJ07126)
关键词 laser multiple processing laser surface texturing laser shock processing stainless steel 0Cr18Ni9 MICROHARDNESS residual stress roughness laser multiple processing laser surface texturing laser shock processing stainless steel 0Cr18Ni9 microhardness residual stress roughness
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