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Studying the Effect of PWHT on Microstructural Evolution and Mechanical Properties of Welded A517 Quenched and Tempered Steel

机译:研究PWHT对焊接A517淬火和钢化钢的微观结构演化和力学性能的影响

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摘要

Sometimes post-weld heat treatment (PWHT) is required for stress relieving both the weld metal and heat-affected zone in A517 Quenched and Tempered (QT) steels. This process unavoidably results in further tempering which adversely affects the mechanical properties of the welded joints. Investigations on A517 QT steel are presented in as-welded condition and after PWHT at 560 and 630 A degrees C. Microstructural variation upon applying PWHT and its influence on impact absorbed energy, fatigue behavior, tensile and hardness properties of the material in as-welded condition and after PWHT are studied. The decrease in hardness is very remarkable after PWHT at 630 A degrees C. Increasing heat treatment temperature from 560 to 630 A degrees C results in reduction of YS and UTS. Void coalescence and coarsening of carbides after PWHT makes the fracture easier and results in reduction of absorbed impact energy. Elimination of acicular ferrite after PWHT at 630 A degrees C increases crack growth rate, and fatigue endurance limit is reduced.
机译:有时焊接后热处理(PWHT)是用于在A517淬火和回火(QT)钢中的焊接金属和热影响区域的应力消热(PWHT)。该过程不可避免地导致进一步的回火,这产生不利地影响焊接接头的机械性能。 A517 QT钢的研究以焊接条件和在560和630℃下的PWHT呈现,在焊接材料中施加PWHT时的微观结构变化及其对焊接材料中材料的影响的影响。病情和pWHT进行了研究。在630℃下的pWHT后,硬度降低非常显着。将热处理温度从560升至630℃,降低ys和UT。在PWHT之后使碳化物的空隙聚结和粗化使得骨折更容易并导致吸收的冲击能量减少。在630℃下PWHT消除针状铁素体增加了裂缝的生长速率,并且减少了疲劳耐久性限制。

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