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作 者:张金虎[1] 徐东生[1] 滕春禹[2] 王皞[1] 李学雄[1] 孙佳 杨锐[1] Zhang Jinhu;Xu Dongsheng;Teng Chunyu;Wang Hao;Li Xuexiong;Sun Jia;Yang Rui(Institute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China;AVIC China Aero-Polytechnology Establishment,Beijing 100028,China)
机构地区:[1]中国科学院金属研究所,辽宁沈阳110016 [2]中国航空综合技术研究所,北京100028
出 处:《稀有金属材料与工程》2020年第3期939-943,共5页Rare Metal Materials and Engineering
基 金:国家重点研发计划项目(2016YFB0701304);中国科学院战略先导科技专项项目(XDC01040100);中国科学院信息化专项项目(XXH13506-304);辽宁省博士启动基金(20180540133)。
摘 要:采用相场动力学方法模拟Ti-6Al-4V合金中β→α转变过程,研究钛合金中不同方向的外加剪切应力对α析出相变体形核及微织构形成的影响。模型输入数据来自Pandat热力学与动力学数据库及Jmat Pro(TTT-Ti)。选取x[101]-y[12■]-z[■11]坐标系,保持时效温度不变,分别沿(101)[■11]_β或(12■)[■11]_β施加不同大小(10、30及50MPa)的正反向切应力,考察剪切加载对合金微观组织演化的影响。结果表明:过冷度一定时,随剪切应力增大,析出变体与剪切应力之间的弹性相互作用在相变过程中逐渐起主要作用,对α相变体的选择作用逐渐增强;应力大小一定时,切应力对变体选择的作用强于正应力;沿(101)[■11]_β或(12■)[■11]_β方向外加剪切应力,正向切应力分别促进2种与1种α变体的选择,而反向切应力均主要选择1种α变体。因而,在β向α转变过程中,切应力更有利于α相微织构的形成。Influences of applied shear stress on the nucleation process and micro-texture formation of α precipitates, β→α transformation in Ti-6 Al-4 V alloy were simulated by phase field method with Pandat software and Jmat Pro(TTT-Ti) databases as direct input in the model. The effects of applied positive and negative shear stresses(10, 30 and 50 MPa) along(101) [■11]_β or(12■) [■11]_β on the microstructure evolution of Ti-6 Al-4 V alloy were explored at certain aging temperature. The results show that with the increase of shear stress, the elastic interaction between applied stress and α variants gradually plays more significant role in determining the microstructure of the system under certain undercooling;therefore, the selection of α variants is gradually enhanced. It is found that the shear stress has a stronger effect on the variant selection than the normal stress, and thus it may be more effective in microtexture formation. With the increase of shear stress, two or one type of variant are selected under positive shear, and one type of variant is favored by the negative shear along(101) [■11]_β or(12■) [■11]_β.
分 类 号:TG146.23[一般工业技术—材料科学与工程]
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