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3D finite element simulation of temperature distribution, residual stress and distortion on 304 stainless steel plates using GTA welding

机译:使用GTA焊接的304不锈钢板上温度分布,残余应力和变形的3D有限元模拟

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摘要

In the present study, the distortion induced in rectangular plate of AISI 304 SS during autogenous GTA welding process is measured experimentally and further validated using Finite element (FE) analysis. The thermal histories are measured at fixed locations over the surface of the plate and the results are compared with FE analysis. The Gaussian surface and Volumetric heat source models are simulated and transient heat transfer analysis is performed. The heat source models have been tested with two different speeds. The effectiveness of change in thermal histories of the heat sources have been studied and reported. In FE analysis, the sequentially coupled thermo-mechanical analysis is performed using the thermal histories as input and the distortion of the plates are predicted and compared with experimental measurements. The large and small displacement theories are employed for the above purpose and the effectiveness of the theories are reported. The edge deformation of the plates have been measured and validated for both the theories. The residual stress and distortion at the mid span are predicted and discussed. The results predicted using large displacement theory is in good agreement with measured values.
机译:在本研究中,通过实验测量在自生GTA焊接过程中AISI 304 SS矩形板中引起的变形,并使用有限元(FE)分析对其进行了进一步验证。在板表面的固定位置测量热历史,并将结果与​​有限元分析进行比较。模拟了高斯表面和体积热源模型,并进行了瞬态传热分析。热源模型已经过两种不同速度的测试。已经研究并报道了热源的热历史变化的有效性。在有限元分析中,使用热历史作为输入执行顺序耦合的热机械分析,并预测板的变形并将其与实验测量值进行比较。大排量理论和小排量理论被用于上述目的,并报道了该理论的有效性。两种理论都对板的边缘变形进行了测量和验证。对中跨的残余应力和变形进行了预测和讨论。使用大位移理论预测的结果与测量值非常吻合。

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