维普中文期刊产品整合服务

A pathway to improve low-cycle fatigue life of face-centered cubic metals via grain boundary engineering

查看全文 作  者:[1,3]X.J.Guan;[1,3]Z.P.Jia;[1,3]S.M.Liang;[1,3]F.Shi;[1,2]X.W.Li 高影响力作者 机构地区:[1]Department of Materials Physics and Chemistry,School of Materials Science and Engineering,Northeastern University,Shenyang 110819,China;[2]State Key Laboratory of Rolling and Automation,Northeastern University,Shenyang 110819,China;[3]Key Laboratory for Anisotropy and Texture of Materials,Ministry of Education,Northeastern University,Shenyang 110819,China高影响力机构 出  处:《Journal of Materials Science & Technology》索引2022年第18期,共8页高影响力期刊 基  金:supported by the National Natural Science Foundation of China(NSFC)(Nos.51871048 and 52171108);the Fundamental Research Funds for the Central Universities under(No.N2002014). 摘  要:To probe a pathway to improve the low-cycle fatigue life of face-centered cubic(FCC)metals via grain boundary engineering(GBE),the tension-tension fatigue tests were carried out on the non-GBE and GBE Cu-16 at.%Al alloys at relatively high stress amplitudes.The results indicate that the cyclic strain localiza-tion and cracking at grain boundaries(GBs)can be effectively suppressed,especially at increased stress amplitude,by an appropriate GBE treatment that can result in a higher resistance to GB cracking and a greater capability of compatible deformation.Therefore,the sensitivity of fatigue life to stress amplitude can be weakened by GBE,and the low-cycle fatigue life of Cu-16 at.%Al alloys is thus distinctly improved. 关 键 词:Cu-Al alloy Grain boundary engineering Fatigue life Crack nucleation Stress amplitude
相关文献

参考文献(40)

引证文献(5)

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费