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剧烈塑性变形条件下工业纯钛晶粒细化机理研究
引用本文:何晓梅,朱晓雅,董洁,刘晓燕.剧烈塑性变形条件下工业纯钛晶粒细化机理研究[J].热加工工艺,2009,38(22).
作者姓名:何晓梅  朱晓雅  董洁  刘晓燕
作者单位:西安建筑科技大学冶金工程学院,陕西,西安,710055
摘    要:通过对工业纯钛表面机械研磨(SMAT)这种变形方式的结果和微观组织变化的研究,分析了工业纯钛的品粒细化机制,讨论了其他剧烈塑性变形技术无法制备出晶粒尺寸更小的纳米晶的原因.结果表明:对于工业纯钛,SMAT这种具有高的应变速率和多方向载荷的变形方式,有利于形成细小的纳米晶;同时高应变速率增加了位错滑移的临界分切应力.

关 键 词:工业纯钛  表面机械研磨(SMAT)  剧烈塑性变形  晶粒细化机制

Study on Grain Refinement Mechanism for Commercial Pure Titanium Processed by Severe Plastic Deformation
HE Xiaomei,ZHU Xiaoya,DONG Jie,LIU Xiaoyan.Study on Grain Refinement Mechanism for Commercial Pure Titanium Processed by Severe Plastic Deformation[J].Hot Working Technology,2009,38(22).
Authors:HE Xiaomei  ZHU Xiaoya  DONG Jie  LIU Xiaoyan
Abstract:The outcome and microstructure change of commercial pure titanium (CP-Ti) processed by surface mechanical attrition (SMAT) were analyzed. The grain refinement mechanism of SMAT CP-Ti was systematically investigated by means of transmission electron microscopy. The reason that other severe plastic deformation (SPD) can not obtain finer nano-crystalline was discussed. The experimental results show that the high-strain-rate and many direction loading are conductive to the formation ofnano-grains, and the high-strain-rate goes against dislocation slipping.
Keywords:commercial pure titanium (CP-Ti)  surface mechanical attrition treatment (SMAT)  severe plastic deformation(SPD)  grain refinement mechanism
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