个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:埼玉大学
学位:博士
所在单位:材料科学与工程学院
学科:材料学. 材料加工工程
办公地点:材料馆304室
联系方式:辽宁省大连市甘井子区凌工路2号 大连理工大学 材料科学与工程学院 116024 办公电话0411-84708189 手机13149898722
电子邮箱:minxiaohua@dlut.edu.cn
Study of {332}< 113 > twinning in a multilayered Ti-10Mo-xFe (x=1-3) alloy by ECCI and EBSD
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论文类型:期刊论文
发表时间:2016-07-01
发表刊物:SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS
收录刊物:SCIE、EI、PubMed、Scopus
卷号:17
期号:1
页面范围:220-228
ISSN号:1468-6996
关键字:Dislocations; plasticity; interface; multi-layered materials
摘要:We have investigated the propagation of {332}< 113 > twins in a multilayered Ti-10Mo-xFe (x = 1-3) alloy fabricated by multi-pass hot rolling. The material contains a macroscopic Fe-graded structure (about 130 mu m width) between 1 and 3 wt% Fe in the direction perpendicular to rolling. We observe strong influence of the Fe-graded structure in the twin propagation behavior. The propagation of {332}< 113 > twins that are nucleated in Fe-lean regions (similar to 1 wt% Fe) is interrupted in the grain interiors at a specific Fe content, namely, about 2 wt% Fe. We ascribe this effect to the role of Fe content in solid solution on the stress for twin propagation. The interruption of twins in the grain interiors results in the development of characteristic dislocation configurations such as highly dense dislocation walls (HDDWs) associated to strain localization phenomena. The nucleation and propagation of these dislocation configurations is ascribed to the underlying plastic accommodation mechanisms of the stress field at the twin tips. We find that the crystallographic alignment of HDDWs is determined by the stress field at the twin tips and the deformation texture. The excellent plastic accommodation at the interrupted twin tips allows attaining the good ductility of the present material (total elongation of 28%).