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作 者:GAO YaNan HUANG LuJun SUN Yuan AN Qi ZHANG Jie GENG Lin
机构地区:[1]State Key Laboratory of Advanced Welding and Joining,Harbin Institute of Technology,Harbin 150001,China [2]School of Materials Science and Engineering,Harbin Institute of Technology,Harbin 150001,China [3]Institute of Metal Research,Chinese Academy of Sciences,Sheryang 110016,China
出 处:《Science China(Technological Sciences)》2019年第12期2293-2301,共9页中国科学(技术科学英文版)
基 金:supported by the National Key R&D Program of China(Grant No.2017YFB0703100);the National Natural Science Foundation of China(Grant Nos.51822103,51801206,and 51731009);the Fundamental Research Funds for the Central Universities(Grant No.HIT.BRETIV.201902)
摘 要:A good joint of Ti Bw/Ti6Al4V composites and Inconel 718 alloys was obtained by Gas Tungsten Arc Welding(GTAW) heat transmission. The interfacial reaction mechanism of joint was investigated and analyzed in details. Owing to the heat input applied on the surface of Ti Bw/Ti6Al4V composites, a solid-state reaction layer appeared at the interface of Ti Bw/Ti6Al4 V composites to Inconel 718 alloys. The thickness of the reaction layer was obviously increased with increasing heat input.Developing of reaction layer mainly depended on the diffusion of elements of Ti and Ni through the interface during welding to form solid solutions and intermetallic compounds(IMCs). The reaction layer can be divided into Ti-rich zone(layer 2) and Nirich zone(layer 1). In Ni-rich zone, relatively coarse dendrites were the predominant, however, more brittle IMCs like Ti2Ni were found in the Ti-rich zone. Micro hardness of reaction layer was much higher than that of base metal. While a slight decrease of hardness was found between Ti-rich zone and Ni-rich zone due to the formation of TiNi.
关 键 词:TiBw/Ti6Al4V composites Inconel 718 alloys interfacial reaction heat transmission microstructures
分 类 号:TG1[金属学及工艺—金属学]
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