材料科学
喷丸
残余应力
微动
硬度
表面粗糙度
冶金
激光喷丸
加工硬化
极限抗拉强度
喷丸
压痕硬度
纳米压痕
复合材料
激光器
硬化(计算)
摩擦学
微观结构
光学
图层(电子)
物理
作者
S. Anand Kumar,R. Sundar,S. Ganesh Sundara Raman,Harish Kumar,R. Gnanamoorthy,R. Kaul,K. Ranganathan,S. M. Oak,L. M. Kukreja
出处
期刊:Tribology Transactions
日期:2012-09-01
卷期号:55 (5): 615-623
被引量:44
标识
DOI:10.1080/10402004.2012.686087
摘要
Abstract This work deals with the influence of laser peening on the fretting wear behavior of Ti-6Al-4V. Laser peening was carried out on Ti-6Al-4V. The laser-peened surface was characterized by transmission electron microscopy. Surface roughness, nanoindentation hardness, residual stress, and tensile properties of the material in both laser-peened and unpeened conditions were determined. Fretting wear tests were conducted at different normal loads using a ball-on-flat contact geometry. Laser peening resulted in the formation of nanocrystallites on the surface and near-surface regions, increased hardness, and compressive residual stress. Laser peening did not affect the tensile properties and surface roughness significantly. There was no considerable difference between the values of the tangential force coefficient of laser-peened and unpeened samples. The fretting scar size, wear volume, and wear rate of laser-peened specimens were lower than those of unpeened samples. This may be attributed to an increase in surface hardness due to strain hardening and grain refinement at the surface and near-surface regions, higher compressive residual stress, and higher resistance to plastic deformation of laser-peened samples. KEY WORDS: Surface ModificationLaser PeeningFrettingHardnessTi-6Al-4VTEM Acknowledgments Review led by Richard Ney
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