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Study of residual stress in surface nanostructured AISI 316L stainless steel using two mechanical methods
M. Ya; Y. M. Xing; F. L. Dai; K. Lu; J. Lu
2003
发表期刊Surface & Coatings Technology
ISSN0257-8972
卷号168期号:2-3页码:148-155
摘要Ultrasonic mechanical attrition (UMA) treatment can be used to create a nanostructured surface layer that plays a significant role in enhancing the overall strength, stiffness and fatigue life of the treated material. Residual stress can be induced by this process. The residual stress fields are relieved by two mechanical methods i.e. cutting and hole-drilling, and measured using moire interferometry and a method combining moire interferometry and incremental hole-drilling (MIIHD). The experimental results of the two methods correlate well. They show that UMA can cause a high compressive residual stress of up to 531 MPa on the material surface. This helps to prevent cracks from being initiated and propagated on the surface of the material and thus improves its mechanical properties. (C) 2003 Elsevier Science B.V. All ights reserved.
部门归属univ technol troyes, lasmis, f-10000 troyes, france. tsing hua univ, dept engn mech, beijing 10084, peoples r china. chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110015, peoples r china.;lu, j (reprint author), univ technol troyes, lasmis, f-10000 troyes, france;jian.lu@utt.fr
关键词Nanocrystalline Residual Stress Moire Interferometry Hole-drilling Moire Interferometry Nanocrystallization
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WOS记录号WOS:000182195800008
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被引频次:43[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/36100
专题中国科学院金属研究所
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M. Ya,Y. M. Xing,F. L. Dai,et al. Study of residual stress in surface nanostructured AISI 316L stainless steel using two mechanical methods[J]. Surface & Coatings Technology,2003,168(2-3):148-155.
APA M. Ya,Y. M. Xing,F. L. Dai,K. Lu,&J. Lu.(2003).Study of residual stress in surface nanostructured AISI 316L stainless steel using two mechanical methods.Surface & Coatings Technology,168(2-3),148-155.
MLA M. Ya,et al."Study of residual stress in surface nanostructured AISI 316L stainless steel using two mechanical methods".Surface & Coatings Technology 168.2-3(2003):148-155.
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