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首页> 外文期刊>Computational Materials Science >Validated numerical analysis of residual stresses in safety relief valve (SRV) nozzle mock-ups: Influence of axial restraint on distortion and residual stress predictions
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Validated numerical analysis of residual stresses in safety relief valve (SRV) nozzle mock-ups: Influence of axial restraint on distortion and residual stress predictions

机译:经验证的安全释放阀(SRV)喷嘴模型中残余应力的数值分析:轴向约束对变形和残余应力预测的影响

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摘要

A simulation of the residual stress and distortion produced during the fabrication of a dissimilar metal weld (DMW) in a safety relief valve (SRV) was performed using an axi-symmetric finite element model. Traditionally, the ends of the axi-symmetric model are allowed to move freely in the axial direction, producing satisfactory predictions of residual stress; this capability has been demonstrated in previous studies [1]. However, the main limitation of the accepted axi-symmetric restraint approximation lies in the assumption of a weld bead being deposited at infinite speed, thus neglecting the constraint provided by previously deposited and already solidified weld metal. The axial constraint method presented in the current work provides a means to overcome this limitation, leading to more accurate predictions of distortion and residual stress without resorting to a computationally expensive 3D analysis.
机译:使用轴对称有限元模型对安全泄压阀(SRV)中异种金属焊缝(DMW)的制造过程中产生的残余应力和变形进行了仿真。传统上,轴对称模型的端部允许沿轴向自由移动,从而产生令人满意的残余应力预测。先前的研究已经证明了这种能力[1]。然而,公认的轴对称约束近似的主要限制在于假设焊缝以无限的速度沉积,从而忽略了先前沉积且已经固化的焊缝金属所提供的约束。当前工作中提出的轴向约束方法提供了一种克服此限制的方法,从而可以更准确地预测变形和残余应力,而无需借助计算上昂贵的3D分析。

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