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Effect of Post Weld Heat Treatment on Weld Hardness Quality of P91 Welded Pipes

机译:焊接焊接热处理对P91焊接管焊接硬度质量的影响

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Quality of a weld produced is generally evaluated by different parameters such as weld size, bead geometry, deposition rate, hardness and strength. A common problem that has been faced at the construction sites is to obtain a good welded joint having the required strength with minimal detrimental residual stresses to avoid any premature cracking due to high variation of hardness. In order to address this issue and to attain good weld quality, this study has been made to comprehend the effect of the post weld heat treatment on P91 material welds produced by TIG welding. Findings from the studies indicate that the PWHT has significant influence on the weld hardness of Alloy Steel-A335 P91 pipes. It is eminent that during cooling, after welding of P91, quenched martensite was formed in the HAZ that results in an increased hardness to an undesirable level of more than 250HB. PWHT at temperature of 760°C for 2 hours has good influence on mechanical properties as the hardness decreases and turns out to be uniformly distributed. If the PWHT is correctly carried out, the hardness of parent metals, heat affected zones and weld metal can be brought into the required limits to avoid any premature cracking due to high variation of hardness.
机译:所生产的焊接的质量通常由不同的参数评估,例如焊接尺寸,珠子几何形状,沉积速率,硬度和强度。已经面对施工地点的常见问题是获得具有所需强度的良好焊接接头,具有最小的残余应力,以避免由于硬度的高变化而过早裂缝。为了解决这个问题并获得良好的焊接品质,本研究已经制定了理解焊接焊接热处理对由TIG焊接产生的P91材料焊缝的影响。研究结果表明,PWHT对合金钢-A335 P91管道的焊缝硬度具有显着影响。它呈现在冷却过程中,在P91的焊接后,在沉肠中形成淬火马氏体,导致超过250hb的不希望水平的硬度增加。在760℃的温度下,2小时的PWHT对机械性能的影响良好,因为硬度降低并均匀分布。如果PWHT正确地进行,则可以将母体金属,热影响的区域和焊接金属的硬度进入所需的限度,以避免由于硬度的高变化而发生过早裂缝。

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