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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Comparison of Nickel Nanoparticle-Assisted Diffusion Brazing of Stainless Steel to Conventional Diffusion Brazing and Bonding Processes
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Comparison of Nickel Nanoparticle-Assisted Diffusion Brazing of Stainless Steel to Conventional Diffusion Brazing and Bonding Processes

机译:不锈钢镍纳米粒子辅助扩散钎焊与常规扩散钎焊和结合工艺的比较

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摘要

Transient liquid phase diffusion brazing is used in precision, hermetic joining applications as a replacement for diffusion bonding to reduce cycle times, reduce bonding pressure, and improve yields. In the present study, stainless steel 316L laminae are diffusion brazed with an interlayer of nickel nanoparticles and compared with samples joined by conventional diffusion bonding and electroplated nickel-phosphorous diffusion brazing. Comparison is made with regard to microstructural evolution, diffusional profile, and bond strength. All bonding was carried out in a uni-axial vacuum hot press at 1000°C with a heating rate of 10°C /min, a dwell time of 2 h and a bonding pressure of 10 MPa. Bond strength measurements show that the sample brazed with a nickel nano-particle interlayer has the lowest void fraction at 4.8 ±0.9% and highest shear strength at 141.3±7.0 MPa. Wavelength dispersive spectroscopic analysis of sample cross-sections shows substantial diffusion of Ni and Fe across the nickel nanoparticle bond line. Scanning electron micrographs show no secondary phases along the nickel nanoparticle bond line.
机译:瞬态液相扩散钎焊用于精密的气密连接应用中,以代替扩散键合,以缩短周期时间,降低键合压力并提高产量。在本研究中,将316L不锈钢薄板与镍纳米颗粒的中间层进行扩散钎焊,并与通过常规扩散结合和电镀镍-磷扩散钎焊连接的样品进行比较。在微观结构演变,扩散轮廓和粘结强度方面进行了比较。全部粘合在1000℃的单轴真空热压机中以10℃/ min的加热速率,2h的停留时间和10MPa的粘合压力进行。粘结强度测量结果表明,钎焊有镍纳米粒子中间层的样品的空隙率最低,为4.8±0.9%,剪切强度最高,为141.3±7.0 MPa。样品横截面的波长色散光谱分析表明,镍和铁在镍纳米粒子结合线上的扩散很大。扫描电子显微照片显示沿镍纳米粒子键合线没有第二相。

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