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Microstructure and Impact Toughness of the Intercritically Reheated Coarse-grained Heat Affected Zone of 13MnNiMoR Steel

机译:13mnnimor钢的间歇再加热粗粒热影响区的微观结构和冲击韧性

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The microstructure and impact toughness of intercritically reheated coarse-grained heat affected zone (ICCGHAZ) of 13MnNiMoR and the effect of post-welding heat treatment (PWHT) process were investigated by means of welding thermal simulation test. The result shows that after the first welding thermal cycle, the microstructure of the coarse-grained heat affected zone (CGHAZ) mainly consists of granular bainite and lath bainite, with good impact toughness. After the second thermal cycle with a peak temperature of 650 to 700°C, the CGHAZ microstructure experiences a tempering process and its impact toughness improves due to the precipitation of carbides and reduction of dislocations. With a second peak temperature of 750 to 850°C, part of the CGHAZ microstructure retransforms to austenite and during cooling, martensite-austenite (MA) constituents forms along grain boundaries in the ICCGHAZ microstructure, leading to a sharp drop of toughness. When the second thermal cycle peak temperature is up to 900°C, the CGHAZ microstructure is fully austenitized, and the final microstructure mainly consists of ferrite and granular bainite. After a PWHT process in the temperature range of 560 to 640°C, the impact toughness of ICCGHAZ is markedly improved, primarily due to the decomposition of MA constituents.
机译:通过焊接热模拟试验研究了13mnnimor的细胞重新加热粗粒热影响区(ICCGGHAZ)和焊接后热处理(PWHT)工艺的效果的微观结构和冲击韧性。结果表明,在第一焊接热循环之后,粗粒热影响区(CGHAZ)的微观结构主要由粒状贝氏体和Lath贝氏体组成,具有良好的冲击韧性。在峰值温度为650至700℃的第二热循环之后,CGHAZ微观结构经历回火过程,并且由于碳化物的沉淀和脱位的减少而改善其冲击韧性。第二峰值温度为750至850℃,部分CGHAZ微观结构重新变形至奥氏体和冷却期间,马氏体 - 奥氏体(MA)成分沿着ICCGHAZ微观结构的晶界形成,导致急剧下降。当第二热循环峰值温度高达900℃时,CGHAZ微观结构完全奥氏体化,最终的微观结构主要由铁氧体和粒状贝氏体组成。在560至640°C的温度范围内的PWHT过程之后,ICCGGHAZ的冲击韧性显着改善,主要是由于MA成分的分解。

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