首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Evolution of Microstructure in Brazed Joints of Austenitic-Martensitic Stainless Steel with Pure Silver Obtained with Ag-27Cu-5Sn Brazing Filler Material
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Evolution of Microstructure in Brazed Joints of Austenitic-Martensitic Stainless Steel with Pure Silver Obtained with Ag-27Cu-5Sn Brazing Filler Material

机译:用Ag-27cu-5sn钎料钎填料获得纯银钎焊钎焊钎焊聚会中微观结构的演变

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摘要

Brazing of an austenitic-martensitic stainless steel (AMSS) with pure silver was carried out at 1053 K, 1073 K, and 1093 K (780 A degrees C, 800 A degrees C, and 820 A degrees C) with Ag-27Cu-5Sn (wt pct) as brazing filler material (BFM). Wettability of the liquid BFM over base AMSS surface was found to be poor. Application of nickel coating to the steel was observed to enhance the wettability and to enable the formation of a good bond between BFM and the steel. The mechanism responsible for enhanced metallurgical bonding of the BFM with AMSS in the presence of nickel coating was explained based on diffusional interactions and uphill diffusion of iron, chromium and nickel observed in the brazed microstructure. Good diffusion-assisted zone was observed to form on silver side at all three temperatures. Four phases were encountered within the joint including silver solid solution, copper solid solution, Cu3Sn intermetallic and Ni-Fe solid solution. The Cu3Sn intermetallic was present in small amounts in the joints brazed at 1053 K and 1073 K (780 A degrees C and 800 A degrees C). The joint formed at 1093 K (820 A degrees C) exhibited the absence of Cu3Sn, fewer defects and larger diffusion-assisted zone. Hardness of base AMSS was found to reduce during brazing due to austenite reversion and post-brazing sub-zero treatment for 2.5 hours was found suitable to recover the hardness.
机译:用Ag-27Cu-5SN(780℃,800℃,820℃)以1053k,1073k和1093k(780℃,800℃,820℃)钎焊,用纯银钎焊(780℃,800℃)钎焊(wt pct)作为钎料填料(BFM)。发现液体BFM过度碱性AMSS表面的润湿性差。观察到镍涂层在钢中施加以增强润湿性,使得能够在BFM和钢之间形成良好的粘合。基于扩散相互作用和在钎焊的微观结构中观察到的铁,铬和镍的扩散相互作用,对负责BFM与AMS的增强冶金键合的机制。在所有三个温度下观察到良好的扩散辅助区在银侧形成。在包括银固溶体,铜固溶溶液,Cu3Sn金属间质和Ni-Fe固体溶液的关节内遇到四个阶段。 Cu3SN金属间质量在钎焊的关节中存在于1053 k和1073k(780℃和800℃)的关节中存在。形成为1093k(820℃)的关节表现出没有Cu3Sn,更少的缺陷和较大的扩散辅助区。发现基础AMSS的硬度在钎焊期间减少,由于奥氏体逆转,并且钎焊后的次零治疗2.5小时被发现适合回收硬度。

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