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Influence of heat treatments and chemical composition on SCC susceptibility during repairing procedure of overlaying of Inconel 182 by laser surface melting

机译:热处理和化学成分对Inconel 182激光表面熔覆修复过程中SCC敏感性的影响

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摘要

A practical repairing technique using laser surface melting (LSM) was developed to remove the stress corrosion cracking (SCC) in overlaying of Inconel 182. Influence of microstructure of different heat treatments performed during repairing process on intergranular cracking/intergranular stress corrosion cracking (IGC/IGSCC) susceptibility was discussed. The intergranular precipitate was identified as M23 C6 by TEM. The microstructure with no intergranular precipitate and refiner sub-grain after LSM process shows excellent IGC/IGSCC resistance. The stress relief heat treatment induced severe microstructure of high IGC/IGSCC susceptibility, owing to the semicontinuous intergranular precipitation. The influence of Nb/C ratio on IGC/IGSCC susceptibility of three nickel based superalloys after LSM process was also investigated. For both of the Inconel 182 alloys with different Nb content, the microstructure after LSM process and following sensitisation treatment showed precipitation free grain boundary. The results of corrosion tests also indicated that the material with higher Nb/C ratio showed higher IGC/IGSCC resistance after LSM process and following sensitisation treatment.
机译:开发了一种实用的利用激光表面熔化(LSM)的修复技术来去除Inconel 182覆层中的应力腐蚀裂纹(SCC)。修复过程中进行的不同热处理的微观结构对晶间裂纹/晶间应力腐蚀裂纹(IGC /讨论了IGSCC的敏感性。通过TEM鉴定出晶间沉淀为M 23 C 6 。 LSM工艺后没有晶间沉淀和细化剂亚晶粒的组织显示出优异的IGC / IGSCC抗性。由于半连续的晶间析出,应力消除热处理引起了高IGC / IGSCC敏感性的严重的微观结构。还研究了Nb / C比对LSM工艺后三种镍基高温合金的IGC / IGSCC磁化率的影响。对于两种Nb含量不同的Inconel 182合金,LSM工艺和经过敏化处理后的显微组织均显示出无沉淀晶界。腐蚀测试结果还表明,具有较高Nb / C比的材料在LSM工艺和敏化处理后具有较高的IGC / IGSCC抗性。

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