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Effect of PWHT Larson-Miller Parameter on Mechanical Properties and Microstructure of Line Pipe Microalloyed Steel Joints

机译:PWHT Larson-MILLER参数对线管微合金钢接缝机械性能和微观结构的影响

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摘要

In this article, the effects of the postweld heat treatment (PWHT) on grain size and mechanical properties of X52 microalloyed steel joints have been investigated. The joints were welded by high-frequency induction welding (HFIW), and heat-treated at various temperatures and times. Then, the mechanical and microstructural evaluations were done on the heat-treated samples. To study the cumulative effects of PWHT time and temperature, the Larson-Miller parameter (LMP) of all the heat treatment cycles was calculated. Finally, the effects of LMP on the grain size and mechanical properties of the samples were studied. According to the findings, the grain size, toughness, strength and hardness show completely meaningful relationships with the LMP of PWHT for the HFIW welded joints. To achieve high impact energies and ductile fracturing, there was an optimum time and temperature condition for the PWHT, and it was obtained for the LMP range of 23,300 to 25,300.
机译:在本文中,研究了突破热处理(PWHT)对X52微合金钢接缝的晶粒尺寸和机械性能的影响。 通过高频感应焊接(HFIW)焊接接头,并在各种温度和时间进行热处理。 然后,在热处理样品上进行机械和微结构评价。 为了研究PWHT时间和温度的累积效果,计算所有热处理循环的Larson-Miller参数(LMP)。 最后,研究了LMP对样品的晶粒尺寸和机械性能的影响。 根据调查结果,晶粒尺寸,韧性,强度和硬度显示出与HFIW焊接接头的LMP的完全有意义的关系。 为了实现高冲击能量和球墨压性压裂,PWHT的最佳时间和温度条件,获得的LMP范围为23,300至25,300。

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