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Computational Modeling of Dissimilar Metal CO2 Laser Welding: Applied to Copper and 304 Stainless Steel

机译:不同金属CO2激光焊接的计算模型:应用于铜和304不锈钢

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This research work analyses the thermal, metallurgical and physical stages of AISI 304 Stainless Steel-Copper dissimilar couple during laser welding in keyhole mode numerically and then validated experimentally. 10.6 μm wavelength CO2 laser welding machine is used for conducting this experimental analysis and the process is simulated by finite volume method. For making the dissimilar couple, a volumetric Gaussian heat source is applied symmetrically on the both metal domain and it is getting an asymmetric molten pool shape. It is observed that the computational model have good concurrence with the experimental results, after the calibration between simulation and experimental results for the same parameter set.
机译:该研究工作分析了在数值上的激光焊接期间AISI 304不锈钢 - 铜相差耦合的热,冶金和物理阶段,然后通过实验验证。 10.6μm波长CO2激光焊接机用于进行该实验分析,并通过有限体积法模拟该过程。为了制造不同的耦合,体积高斯热源对称地在两个金属结构域上施加,并且它正在得到不对称的熔池形状。观察到,计算模型与实验结果具有良好的同意,在校正和实验结果的校准之后,相同参数集的实验结果。

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