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COMPARISON OF HEAT INPUT METHODS IN WELDING RESIDUAL STRESS ANALYSIS

机译:焊接残余应力分析中热输入方法的比较

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Welding residual stress simulation through finite element analysis is becoming increasingly common in fitness -for-service (FFS) assessments of pressurized equipment. The driving force for the residual stress is non-uniform thermal expansion and plastic strain due to drastic temperature gradients; with this in mind, proper heat transfer modeling is essential to meaningful mechanical predictions. The fundamental input to the heat transfer model is the welding arc power, which is commonly represented as an assigned triple Gaussian function (Goldak double ellipsoid model) or more simply, as a uniform temperature. These two methods are compared in detail, and conclusions drawn about the impact of the heat transfer modeling strategy on the predicted weld residual stress for two detailed cases. This evaluation finds particular significance when the welding power, or more particularly the welding energy per unit length, is used in an attempt to characterize a given weld.
机译:通过有限元分析焊接残余应力仿真在加压设备的服务(FFS)评估方面变得越来越普遍。由于剧烈温度梯度,残余应力的驱动力是不均匀的热膨胀和塑性应变;考虑到这一点,适当的传热建模对于有意义的机械预测至关重要。传热模型的基本输入是焊接电弧功率,通常表示为分配的三倍函数(Goldak Double EllipsoID模型)或更简单地作为均匀的温度。这些方法详细比较,并且关于传热建模策略对两个详细情况的预测焊接残余应力的影响。当尝试表征给定焊接时,该评估在使用焊接功率或更特别是焊接能量时,该评估发现特别重要性。

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