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Al-Cu合金析出相在等径角挤压中的演变
引用本文:党朋,许晓嫦,刘志义,于文斌,宁爱林,曾苏民. Al-Cu合金析出相在等径角挤压中的演变[J]. 材料科学与工艺, 2009, 17(2): 263-265,269
作者姓名:党朋  许晓嫦  刘志义  于文斌  宁爱林  曾苏民
作者单位:党朋,许晓嫦,刘志义,于文斌,曾苏民,DANG Peng,XU Xiao-chang,LIU Zhi-yi,YU Wen-bin,ZENG Su-min(中南大学,材料科学与工程学院,长沙,410083);宁爱林,NING Ai-lin(邵阳学院机械工程系,湖南,邵阳,422004)  
基金项目:国家自然科学基金,湖南省自然科学基金 
摘    要:为了研究Al-Cu合金中两种不同析出相(θ′和θ相)在ECAP变形过程中的变化.采用透射电镜(TEM)和硬度测试方法研究了析出相形貌变化以及对合金性能的影响.结果表明:在本实验中,θ′和θ相其破碎、回溶速度明显不同,两者的破碎方式也不同.θ′相先是与基体失去取向关系,随后从其内部产生位错使其破碎,而θ相是被外部基体位错所切割、破碎.θ′相与位错的相互作用方式类似于绕过机制,θ相与位错的作用方式类似于切割机制.两种状态样品的硬度在变形过程中的变化趋势相同,但在第1道次后θ相状态样品的硬度增加值高于θ′相状态.

关 键 词:等径角挤压  Al-Cu合金  析出相  微观组织

Evolution of precipitates in Al-Cu alloy subjected to equal-channel angular pressing
DANG Peng,XU Xiao-chang,LIU Zhi-yi,YU Wen-bin,NING Ai-lin,ZENG Su-min. Evolution of precipitates in Al-Cu alloy subjected to equal-channel angular pressing[J]. Materials Science and Technology, 2009, 17(2): 263-265,269
Authors:DANG Peng  XU Xiao-chang  LIU Zhi-yi  YU Wen-bin  NING Ai-lin  ZENG Su-min
Affiliation:1.School of Materials Science and Engineering;Central South University;Changsha 410083;China;2.Dept.of Mechanical Engineering;Shaoyang Institute;Shaoyang 422004;China
Abstract:To study the changes of two precipitates(θ′and θ phase) in Al-Cu alloy subjected to equal-channel angular pressing(ECAP),the morphology change and its influence on mechanical properties of the alloy were investigated by transmission electron microscopy and hardness measurement.It is shown that the speed of breaking/dissolution of θ′phase is slower than that of θ phase.θ′phase firstly loses the orientation relationships with matrix,then the dislocation generated from precipitates results in the refinement and dissolution of precipitates.But θ phase is sheared by external matrix dislocation.The velocity of grain refinement in θ′phase condition is also slower than that in θ phase condition.The trend of hardness changes in these two conditions are the same,but after the first pass,the increase of hardness in θ phase condition is higher than that in θ′ phase condition.
Keywords:equal-channel angular pressing  Al-Cu alloy  precipitates  microstructure  
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