材料科学
微观结构
双金属片
钛镍合金
共晶体系
冶金
延展性(地球科学)
复合材料
压痕硬度
制作
尼亚尔
相(物质)
形状记忆合金
酒窝
平面的
压力(语言学)
钛合金
打滑(空气动力学)
机械加工
合金
抗压强度
极限抗拉强度
作者
Mengmeng Xie,Meiqing Meng,Jian Han,Xin Zhang,Yinbao Tian,Mengmeng Xie,Meiqing Meng,Jian Han,Xin Zhang,Yinbao Tian
标识
DOI:10.1002/adem.202501292
摘要
Conventional fabrication of Ti‐6Al‐4V/Ni‐Ti bimetallic structures is both costly and impractical for complex geometries. In this study, to resolve these difficulties, multi‐wire arc additive manufacturing (M‐WAAM) with in situ alloying is used. The results show that NiTi 2 phase reduces ductility and induces stress concentration due to lattice mismatch with the NiTi phase, further accelerating crack formation. The as‐built wall consists of NiTi 2 and NiTi layers, formed through element diffusion, with the interface evolving from a basket‐weave microstructure to a eutectic α‐Ti + NiTi 2 phase and ultimately a planar NiTi 2 structure. Besides, as‐built wall exhibits a peak microhardness of 692.2 HV, a compressive strength of 1137.5 ± 31 MPa, and a fracture strain of 6.7% ± 2%. This study presents an efficient strategy for fabricating complex bimetallic structures, providing insights into integrated manufacturing of dissimilar metals for aerospace and related applications.
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