咨询与建议

看过本文的还看了

相关文献

该作者的其他文献

文献详情 >Uncovering the softening mecha... 收藏

Uncovering the softening mechanism and exploring the strengthening strategies in extremely fine nanograined metals:A molecular dynamics study

Uncovering the softening mechanism and exploring the strengthening strategies in extremely fine nanograined metals: A molecular dynamics study

作     者:H.R.Peng Z.Y.Jian C.X.Liu L.K.Huang Y.M.Ren F.Liu H.R.Peng;Z.Y.Jian;C.X.Liu;L.K.Huang;Y.M.Ren;F.Liu

作者机构:School of Materials and Chemical EngineeringXi’an Technological UniversityXi’an 710021China State Key Laboratory of Solidification ProcessingNorthwestern Polytechnical UniversityXi’an 710072China 

出 版 物:《Journal of Materials Science & Technology》 (材料科学技术(英文版))

年 卷 期:2022年第109卷第14期

页      面:186-196页

核心收录:

学科分类:07[理学] 070205[理学-凝聚态物理] 08[工学] 0806[工学-冶金工程] 0805[工学-材料科学与工程(可授工学、理学学位)] 080502[工学-材料学] 0702[理学-物理学] 

基  金:financially supported by the National Key R&D Program of China(No.2017YFB0703001) the Natural Science Foundation of China(Nos.51971166,51790481 and 52130110) the Fundamental Research Funds for the Central Universities(No.3102017jc01002) the Natural Science Foundation of Shaanxi Province(No.2021JQ-651) supported by High Performance Computation Center of Northwestern Polytechnical University. 

主  题:Softening Strengthening Cu-Ag alloy Molecular dynamics Nanocrystalline 

摘      要:The strength of polycrystalline metals increases with decreasing grain size,following the classical HallPetch relationship.However,this relationship fails when softening occurs at very small grain sizes(typically less than 10 to 20 nm),which limits the development of ultrahigh-strength materials.In this work,using columnar-grained nanocrystalline Cu-Ag‘samples’,molecular dynamics simulations were performed to investigate the softening mechanism and explore the strengthening strategies(e.g.,formation of solid solution or grain boundary(GB)segregation)in extremely fine nanograined metals.Accordingly,the softening of pure metals is induced by atomic sliding in the GB layer,rather than dislocation activities in the grain interior,although both occur during deformation.The solid solution lowers the stacking fault energy and increases the GB energy,which leads to the softening of NC metals.GB segregation stabilizes GB structures,which causes a notable improvement in strength,and this improvement can be further enhanced by optimizing the solute concentration and GB excess.This work deepens the understanding of the softening mechanism due to atomic sliding in the GB layer and the strengthening mechanism arising from tailoring the GB stability of immiscible alloys and provides insights into the design of ultrahighstrength materials.

读者评论 与其他读者分享你的观点

用户名:未登录
我的评分