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激光沉积预混合的近α钛合金和Ti2AlNb合金粉末中成分偏析与层错诱导亚晶结构形成(英文)

Formation of Sub-grain Structure Induced by Composition Segregation and Stacking Faults in Laser-Deposited Premixed Near-α Titanium Alloy and Ti2AlNb Alloy Powders

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【作者】 刘娜赵张龙刘郁丽冯凯凯查小晖李璞徐文馨杨海鸥赖运金

【Author】 Liu Na;Zhao Zhanglong;Liu Yuli;Feng Kaikai;Zha Xiaohui;Li Pu;Xu Wenxin;Yang Haiou;Lai Yunjin;School of Materials Science and Engineering, Northwestern Polytechnical University;State Key Laboratory of Solidification Processing, Northwestern Polytechnical University;Engine Development Department, AECC Hunan Aviation Powerplant Research Institute;Xi’an Sino-Euro Materials Technologies Co., Ltd;

【通讯作者】 赵张龙;

【机构】 西北工业大学材料学院西北工业大学凝固技术国家重点实验室中国航发湖南动力机械研究所发动机研发部西安欧中材料科技有限公司

【摘要】 通过激光沉积在近α钛合金基板上制备了不同比例的预混合近α钛合金和Ti2AlNb合金粉末,并对2种粉末的微观组织演变和结构特征进行了分析和讨论。结果表明,Ti2AlNb含量在40%(质量分数,下同)以上的激光沉积预混合钛合金粉末的等轴B2晶粒内形成了许多河流状亚晶粒结构,而Ti2AlNb含量在40%以下的粗柱状β晶粒内则呈现针状结构。值得注意的是,降低激光功率和扫描速度可以促进亚晶粒结构的形成。基于实验结果的分析可以推断出,这种亚晶粒结构的形成不仅与亚晶界成分微偏析导致的O相析出有关,还与激光沉积过程中内应力诱导的堆垛层错密不可分。

【Abstract】 Near-α titanium alloy and Ti2Al Nb alloy powders premixed with different proportions were prepared on the near-α titanium alloy substrate by laser deposition technique,and the microstructure characteristics were analyzed and discussed.Results show that numerous river-like sub-grain structures are formed inside the equiaxed B2 grains of the laser-deposited premixed titanium alloy powders with the proportion of Ti2Al Nb above 40wt%,whereas the needle-like structure within coarse columnar β grains exist with the proportion of Ti2Al Nb below 40wt%.It is noteworthy that the decrease in laser power and scanning speed can accelerate the formation of sub-grain structures.Based on the analysis of experimental results,it can be inferred that the formation of sub-grain structure not only is related to the precipitation of O phase due to composition micro-segregation at sub-grain boundaries,but also is inseparable from the stacking faults caused by the internal stress during the laser deposition.

【基金】 National Natural Science Foundation of China (51974259);Xi’an Municipal Bureau of Science and Technology (21ZCZZHXJS-QCY6-0008);Industry-Academic Cooperation Project of Aero Engine Corporation of China (HFZL2020CXY021)
  • 【文献出处】 稀有金属材料与工程 ,Rare Metal Materials and Engineering , 编辑部邮箱 ,2024年12期
  • 【分类号】TG665;TG146.23
  • 【下载频次】8
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