首页> 外文期刊>International Journal of Pressure Vessels and Piping >Effect of creep constitutive equation on simulated stress mitigation behavior of alloy steel pipe during post-weld heat treatment
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Effect of creep constitutive equation on simulated stress mitigation behavior of alloy steel pipe during post-weld heat treatment

机译:蠕变本构方程对焊后热处理合金钢管模拟应力缓解行为的影响

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Post-weld heat treatment (PWHT) is usually conducted to reduce the residual stress and to improve the mechanical properties of the welded region. The thermal elasto-plastic creep analysis is used to estimate the mitigation of the residual stress in the welded region analytically. The stress mitigation is caused by effect of the creep relaxation behavior during PWHT. Thus, creep constitutive equation is used to estimate the residual stress mitigation. The material properties of Norton's law and the Norton-Bailey law for alloy steel pipe JIS STPA23 (equivalent to ASME SA335P11 seamless steel tubes) were experimentally investigated. Creep tests were conducted at 400, 500, 600, and 700℃. Specimens were subjected to certain stresses, and creep strain was measured. The material properties of Norton's law and the Norton-Bailey law were calculated from the measured creep strain data. Five bead-on curved plate specimens were fabricated in order to verify the thermal elasto-plastic creep analysis done with these creep constitutive equations. The curved plate was made from a pipe cut in the hoop direction. The specimens were welded without filler metal by gas tungsten arc weld (GTAW) on both surfaces in the center of the curved plate. The residual stress in one specimen was measured without PWHT. The other specimens were measured under different PWHT conditions. The results of analysis with the two creep constitutive equations agreed well with the experimentally measured results. In addition, no differences in the creep constitutive equations were observed at high PWHT temperature. Accordingly, these analyses conducted with both types of creep constitutive equation were verified to be effective. The effect of creep constitutive equation on simulated stress mitigation behavior during PWHT has been clarified for analytically estimating residual stress in the welded region.
机译:通常进行焊后热处理(PWHT)以减少残余应力并改善焊接区域的机械性能。热弹塑性蠕变分析用于分析性地估计焊接区域中残余应力的缓解情况。应力减轻是由PWHT期间蠕变松弛行为的影响引起的。因此,蠕变本构方程用于估计残余应力的减轻。实验研究了合金钢管JIS STPA23(相当于ASME SA335P11无缝钢管)的诺顿定律和Norton-Bailey定律的材料性能。蠕变测试是在400、500、600和700℃下进行的。标本受到一定的应力,并测量了蠕变应变。根据测得的蠕变应变数据计算出诺顿定律和诺顿-贝利定律的材料特性。为了验证使用这些蠕变本构方程进行的热弹塑性蠕变分析,制造了五个在珠子上的弯曲板样本。弯曲板由沿环向切割的管制成。试样在不带填充金属的情况下,通过气体钨极电弧焊(GTAW)在弯曲板中心的两个表面上焊接。在没有PWHT的情况下测量了一个样品中的残余应力。其他标本在不同的PWHT条件下测量。两个蠕变本构方程的分析结果与实验测量结果吻合得很好。此外,在高PWHT温度下,未观察到蠕变本构方程的差异。因此,用两种蠕变本构方程进行的这些分析被证明是有效的。为了分析估计焊接区域的残余应力,已经阐明了蠕变本构方程对PWHT期间模拟应力减轻行为的影响。

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