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Deformation kinking and highly localized nanocrystallization in metastableβ-Ti alloys using cold forging

Deformation kinking and highly localized nanocrystallization in metastable β-Ti alloys using cold forging

作     者:Keer Li W.Chen G.X.Yu J.Y.Zhang S.W.Xin J.X.Liu X.X.Wang J.Sun Keer Li;W.Chen;G.X.Yu;J.Y.Zhang;S.W.Xin;J.X.Liu;X.X.Wang;J.Sun

作者机构:State Key Laboratory for Mechanical Behavior of MaterialsXi’an Jiaotong UniversityXi’an 710049China Northwest Institute for Nonferrous Metal ResearchXi’an 710016China Baoji Titanium Industry Co.Ltd.Baoji 721014China 

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

年 卷 期:2022年第120卷第25期

页      面:53-64页

核心收录:

学科分类:08[工学] 080502[工学-材料学] 0805[工学-材料科学与工程(可授工学、理学学位)] 

基  金:supported by the National Natural Science Foundation of China(Nos.51871176,51722104,51922017,51972009) the National Key Research and Development Program of China(Nos.2017YFA0700701,2017YFB0702301) the 111 Project 2.0 of China(No.PB2018008) Natural Science Basic Research Plan in Shaanxi Province of China(No.2018JM5098) the Fundamental Research Funds for the Central Universities(No.xtr022019004) 

主  题:Metastableβ-Ti alloys Deformation kinking Microstructural evolution Grain refinement Dislocations 

摘      要:Deformation kinking as an uncommon plastic deformation mechanism has been reported in several materials while the relevant microstructure evolution and grain refinement behavior at a large strain remain unclear so *** this study,the issue was systematically investigated by utilizing cold forging to impose severe plastic deformation(SPD)on Ti-11 V metastableβ-Ti *** is found that the formation of kink bands experiences dislocation gliding,pre-kinking and the ripening of pre-kinks in *** kink bands are subsequently thickened through the coalescence of multiple kink bands in a manner of high *** dislocation slip is developed as a dominant deformation mechanism when deformation kinking is *** resulting grain refinement involves transverse breakdown and longitudinal splitting of dislocation walls and cells,which fragment kink bands into smallβ-*** refinement of theβ-blocks is still governed by dislocation activities,and finally nanograins with a diameter of~15 nm are produced at a large strain of ***,it is revealed that nanocrystallization is highly localized inside kink bands while the outer microstructure maintains original coarse *** localized refinement characterization is ascribed to the intrinsic soft nature of kink bands,shown as low hardness in nanoindentation *** intrinsic softening of kink bands is uncovered to originate from the inner degraded dislocation density evidenced by both experimental measurement and theoretical *** findings enrich fundamental understanding of deformation kinking,and shed some light on exploring the deformation accommodation mechanisms for metal materials at large strains.

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