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Studies on Numerical Simulation of Temperature Distribution in Laser Beam Welding of 304L Austenitic Stainless Steel

机译:304L奥氏体不锈钢激光束焊温度分布数值模拟研究

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摘要

A numerical simulation of temperature distribution in laser welding of 304L austenitic stainless steel have been investigated in the present research work. A three-dimensional Gaussian conical moving heat source has been implemented in the present numerical simulation using ANSYS software package. Temperature-dependent thermal physical properties of 304L austenitic stainless steel have been considered, which affects the temperature profile in the weldment. The effect of laser welding process parameters, namely, average beam power, welding speed, and laser spot diameter on weld bead geometry have been studied. The temperature distribution obtained from the numerical results at different positions away from the weld line were found to be in good agreement with the experimental results. The shape of the weld pool profile obtained through numerical simulation are in good agreement with the experimental results. Mechanical properties of the welded joint have also been studied. The ultimate tensile strength of the laser welded sample was equal to the base metal 304L austenitic stainless steel.
机译:本研究工作已经研究了304L奥氏体不锈钢激光焊接温度分布的数值模拟。在使用ANSYS软件包的本数值模拟中已经实现了一种三维高斯锥形移动热源。已经考虑了304L奥氏体不锈钢的温度依赖性热物理性质,从而影响焊接中的温度曲线。研究了激光焊接工艺参数,即平均梁功率,焊接速度和激光光斑直径的影响已经研究过焊缝几何形状。发现从远离焊接线的不同位置获得的数值结果获得的温度分布与实验结果很好。通过数值模拟获得的焊接池轮廓的形状与实验结果吻合良好。还研究了焊接接头的机械性能。激光焊接样品的极限拉伸强度等于基础金属304L奥氏体不锈钢。

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