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Effect of Martensite–Austenite Constituent on Low-Temperature Toughness in YS 500 MPa Grade Steel Welds

机译:YS 500 MPa级钢焊缝中马氏体-奥氏体成分对低温韧性的影响

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The effect of martensite–austenite (M–A) constituents and simulated microstructure on low-temperature toughness was investigated in YS 500 MPa grade structural steel welds. The specimens were fabricated using a direct quenching and tempering process. After simulated weld thermal cycles, the coarse-grained heat-affected zone (CGHAZ) and intercritically reheated coarse-grained heat-affected zone (IRCGHAZ) were produced using a Gleeble tester and real welded joint to support the simulation results. The largest low-temperature toughness was observed in the fine-grained heat-affected zone (FGHAZ) owing to the fine-ferrite microstructure. However, the toughness decreased in the IRCGHAZ because of the slender morphology of the M–A constituents that formed primarily along the prior austenite grain boundaries in the IRCGHAZ.
机译:在YS 500 MPa级结构钢焊缝中研究了马氏体-奥氏体(MA)成分和模拟组织对低温韧性的影响。使用直接淬火和回火工艺制造样品。经过模拟的焊接热循环后,使用Gleeble测试仪和实际焊接接头生成了粗粒热影响区(CGHAZ)和临界间再加热的粗粒热影响区(IRCGHAZ),以支持模拟结果。由于铁素体的微细组织,在热影响区(FGHAZ)中观察到最大的低温韧性。但是,IRCGHAZ中的韧性降低了,因为主要沿着IRCGHAZ中奥氏体晶界形成的M–A成分的形貌细长。

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