焊前热处理对91级钢ICHAZ组织和蠕变强度的影响

Yiyu Wang, Wei Zhang, Zhili Feng
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摘要

对91级母材采用水淬和空冷两种不同的冷却条件进行正火处理。将Gleeble系统模拟的临界间焊接热循环应用于热处理后的贱金属,重现临界间热影响区。采用先进的显微技术仔细表征了母材和ICHAZ的显微组织,包括析出相和回火马氏体。在650℃的高蠕变温度和100 MPa的应力下,对模拟ichaz的蠕变强度进行了评估。建立了ICHAZ的微观结构与蠕变行为之间的关系,以了解ICHAZ的蠕变破裂机制。结果表明:水淬母材回火后沿奥氏体晶界析出的粗碳化物较多;这些碳化物不能被临界间焊接热循环完全溶解。在760℃的典型焊后热处理中,水淬母材产生的模拟ICHAZ具有更高的晶粒恢复和生长。在蠕变测试中,两种预焊热处理母材的ichaz均表现出极低的抗蠕变性能和典型的韧性断裂。在水淬母材模拟的ICHAZ中,更快的晶粒生长和沉淀粗化使其更加严重。
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Effect of Pre-Weld Heat Treatment on Microstructure and Creep Strength of ICHAZ in Grade 91 Steel
In this work, Grade 91 base metal was normalized with two different cooling conditions, water quenching and air cooling. The intercritical welding thermal cycle simulated by using the Gleeble system was applied to the heat-treated base metals to reproduce the intercritical heat-affected zone (ICHAZ). Microstructure, including precipitate and tempered martensite, of the base metal and ICHAZ was carefully characterized with advanced microscopy techniques. Creep strength of the simulated ICHAZs was evaluated at a high creep temperature of 650 °C with a stress of 100 MPa. A correlation between the microstructure and creep behavior of the ICHAZ is built to understand creep rupture mechanisms in the ICHAZ. The results show that more coarse carbides precipitated along the prior austenite grain boundaries after tempering in the water-quenched base metal. These carbides cannot be fully dissolved by the intercritical welding thermal cycle. The simulated ICHAZ generated from the water-quenched base metal underwent a higher grain recovery and growth during the typical post-weld heat treatment at 760 °C. Both simulated ICHAZs from two pre-weld heat treated base metals exhibit an extremely low creep resistance with a typical ductile fracture during creep testing. The faster grain growth and precipitate coarsening in the ICHAZ, simulated from the water-quenched base metal, made it even worse.
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