Influence of Bonding Conditions and Nitrogen Content on Diffusion Bonding of 316L-type Austenitic Steels: Diffusion Bonding for Low-temperature Dampers of Superconducting Generators

Takanobu Mori, Hiroshi Sato
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Abstract

Keeping HIP treatment in mind, diffusion bonding conditions of 316L-type austenitic steels for a low-temperature damper were investigated. It was found that diffusion bonding of 316L with high-content nitrogen onto 316L with high-content nitrogen was difficult. It was tentatively concluded that the martensite formation near the bonding surface induced during the cooling process was most likely responsible for reducing the bonding strength at -196°C. Complete diffusion bonding properties at -196°C were attained by adopting a combination of 316L with high-content nitrogen and 316L with low-content nitrogen under the following bonding conditions: nitrogen content less than 0.017% in 316L with low-content nitrogen, bonding temperature above 1039°C, surface roughness below 0.07 μm, pressure above 130 MPa and pressing time above 4 h.
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结合条件和氮含量对 316L 型奥氏体钢扩散结合的影响:超导发电机低温阻尼器的扩散接合
考虑到HIP处理,研究了316l型奥氏体钢用于低温阻尼器的扩散连接条件。结果表明,高含氮316L与高含氮316L之间的扩散键合较为困难。初步认为,在-196℃时,冷却过程中在结合表面附近形成的马氏体是导致结合强度降低的主要原因。采用高氮316L与低氮316L相结合的方法,在低氮316L中氮含量小于0.017%、结合温度大于1039℃、表面粗糙度小于0.07 μm、压力大于130 MPa、压制时间大于4 h的条件下,获得了-196℃下完全扩散结合的性能。
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