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Effect of electropulsing on anisotropy in strength of laser metal deposited Ti-6Al-4V alloy
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作者 Fu-bin WANG Yu-ke LIU +3 位作者 Yun-xiang TONG Chong ZHANG Feng-chun JIANG Jian-dong WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第8期2578-2586,共9页
The effect of electropulsing treatment on microstructure and mechanical strength of laser metal deposited Ti−6Al−4V alloy was investigated in order to eliminate the anisotropy in strength of laser metal deposited Ti−6... The effect of electropulsing treatment on microstructure and mechanical strength of laser metal deposited Ti−6Al−4V alloy was investigated in order to eliminate the anisotropy in strength of laser metal deposited Ti−6Al−4V alloy by tensile tests,optical microscopy,scanning electron microscopy,electron back-scattered diffraction analyses and transmission electron microscopy.With increasing applied voltages from 0 to 130 V,the evolution of microstructure within columnarβgrains followed the sequence ofα′martensite→colonyαstructure→basket-weaveαstructure.The electropulsing treated at 130 V weakened the texture of martensite withinβgrains.The as-built Ti−6Al−4V alloy showed an anisotropy in yield strength(6.2%).After processing at 130 V,the anisotropy in yield strength was reduced to 0.6%,which was attributed to the almost equivalent distribution of Schmid factor in the samples deformed along different orientations. 展开更多
关键词 laser metal deposition Ti-6Al-4V alloy yield strength ANISOTROPY ELECTROPULSING
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面心立方晶体孪生和滑移轴对称共生塑性变形分析
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作者 陈志永 才鸿年 +2 位作者 张新明 王富耻 谭成文 《中国科学(E辑)》 CSCD 北大核心 2006年第11期1320-1334,共15页
将Bishop-Hill最大功原理拓展于面心立方晶体{111}<112>孪生和{111}<110>滑移两种机制同时起作用的轴对称共生塑性变形过程之中.系统研究了孪生对滑移不同临界剪切应力之比ξ对立方晶体标准投影三角形区各晶体取向的屈服应... 将Bishop-Hill最大功原理拓展于面心立方晶体{111}<112>孪生和{111}<110>滑移两种机制同时起作用的轴对称共生塑性变形过程之中.系统研究了孪生对滑移不同临界剪切应力之比ξ对立方晶体标准投影三角形区各晶体取向的屈服应力状态以及相应活化滑移或/和孪生系的影响,同时分析了取向空间里[100],[110]和[111]三个重要取向的Taylor因子及屈服强度各向异性的变化规律,从微观晶体塑性理论本质上揭示了轴对称变形情况下拉伸和压缩屈服强度的不对称性;引入了孪生能力取向因子概念,建立了轴对称塑性变形取向空间塑性变形机构图.在此基础上,定性地解释了低层错能面心立方晶体在轴对称拉伸情况下形变织构的形成演变规律. 展开更多
关键词 孪生 滑移 面心立方晶体 轴对称共生变形 Bishop-Hill最大功原理 屈服强度各向异性
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