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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effect of bonding time on interfacial microstructure and shear strength of vacuum diffusion bonding super-Ni/NiCr laminated composite to Ti-6Al-4V joint without interlayer
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Effect of bonding time on interfacial microstructure and shear strength of vacuum diffusion bonding super-Ni/NiCr laminated composite to Ti-6Al-4V joint without interlayer

机译:粘合时间对真空扩散粘合超镍/ NiCR层压复合物与无中间层的界面微观结构和剪切强度的影响

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摘要

Super-Ni/NiCr laminated composite was successfully joined with Ti-6Al-4V by vacuum diffusion bonding at 950 degrees C temperature. Results show that the bonding interface was composed of sequentially Ni3Ti, NiTi and NiTi2 layers. The interfacial phase constituents were similar although the joints were obtained with different bonding time. But the bonding time had a significant effect on the interfacial microstructure when the bonding time was prolonged from 30 min to 90 min. The morphology of NiTi2 layer transformed from serrate to straight and eutectoid products (Ni3Ti and NiTi2) were formed in NiTi layer whose width increased significantly. The maximum shear strength of joint is 69.2 MPa obtained at 60 min. Most joints fractured at the super-Ni/Ni3Ti interface. The shear strength of joint is mainly attributed to the plastic deformation and shifting of super-Ni crystals. (C) 2017 Published by Elsevier Ltd.
机译:通过在950℃的温度下,通过真空扩散键合成功与Ti-6Al-4V加入超级Ni / NiCr层压复合物。 结果表明,粘接界面由序贯的Ni3Ti,Niti和Niti2层组成。 透晶相成分相似,尽管用不同的键合时间得到接头。 但是当键合时间从30分钟至90分钟延长时,键合时间对界面微观结构具有显着影响。 在宽度显着增加的Niti层中形成从锯齿转化为直链和共析产物(NI3TI和NIT12)的NITI2层的形态。 接头的最大剪切强度为69.2MPa,在60分钟内获得。 大多数关节在超级NI / NI3TI接口处破坏。 关节的剪切强度主要归因于超级晶体的塑性变形和变化。 (c)2017年由elestvier有限公司出版

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