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Study on the effect of post weld heat treatment parameters on the relaxation of welding residual stresses in electron beam welded P91 steel plates

机译:焊后热处理参数对电子束焊接P91钢板焊接残余应力松弛的影响

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摘要

Residual stresses are created by localised heating effects that occur during the welding process. Post weld heat treatment (PWHT) is the most convenient method for stress relief of welds. But PWHT cannot completely eliminate the residual stresses. So, it is essential to determine the influence of PWHT parameters like holding temperature and time on the stress relaxation for optimising the process. The selected material is modified 9Cr-1Mo (Grade 91) steel in the form of plates welded together using a high intensity electron beam. To facilitate the study, a numerical thermo-elastic-plastic model has been developed to simulate the welding of the plates. As P91 steels undergo phase transformations, the corresponding volumetric change and transformation plasticity are taken into consideration during the analysis and welding residual stresses are predicted. PWHT is implemented using Norton creep law and the residual stresses after relaxation are determined. The developed model and the predictions are validated using neutron diffraction measurements on as welded and post weld heat treated plates. A good agreement has been achieved between the measurements and predictions. The validated model has been used to study the effect of variation of heat treatment parameters like holding temperature and time on the relaxation of welding stresses.
机译:残余应力是由焊接过程中发生的局部加热效应产生的。焊后热处理(PWHT)是减轻焊缝应力的最便捷方法。但是PWHT不能完全消除残余应力。因此,必须确定诸如保持温度和时间之类的PWHT参数对应力松弛的影响,以优化工艺。所选材料是采用高强度电子束焊接在一起的板状9Cr-1Mo(91级)改性钢。为了便于研究,已经开发了数值热弹塑性模型来模拟板的焊接。当P91钢进行相变时,在分析过程中会考虑相应的体积变化和相变塑性,并预测焊接残余应力。使用诺顿蠕变定律实施PWHT,并确定松弛后的残余应力。所开发的模型和预测结果通过在焊接后和焊接后热处理的板上使用中子衍射测量进行验证。在测量和预测之间已经达成了良好的协议。经过验证的模型已用于研究热处理参数(例如保持温度和时间)变化对焊接应力松弛的影响。

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