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Numerical simulation and experimental investigation of temperature and residual stresses in GTAW with a heat sink process of Monel 400 plates

机译:Monel 400板散热工艺对GTAW中温度和残余应力的数值模拟和实验研究。

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摘要

A 3D thermo-mechanical simulation model was developed to predict distributions of temperature and residual stresses during the gas tungsten arc welding (GTAW) process with a heat sink for Monel 400 plates using finite element method. The model was validated against the experimental measurements of both temperature and released strain in the welded plates. Effects of heat input, pipe diameter and water flow rate in the heat sink welding process were investigated. The results showed that in the GTAW process with a heat sink, the high temperature region was only limited to the vicinity of heat source and the maximum temperature of the sample was much lower than that of conventional GTAW process. This resulted in a lower residual stresses and even compressive stresses near the weld zone.
机译:建立了3D热力机械仿真模型,以采用有限元方法预测Monel 400板用钨丝电弧气焊(GTAW)过程中的温度和残余应力分布。该模型针对焊接板中温度和释放应变的实验测量值进行了验证。研究了散热器焊接过程中热量输入,管道直径和水流量的影响。结果表明,在带有散热器的GTAW工艺中,高温区域仅局限于热源附近,样品的最高温度远低于常规GTAW工艺。这导致较低的残余应力,甚至在焊接区附近产生压缩应力。

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