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Modeling of the Temperature Field during Electron Beam Welding of Aluminum Alloy by a Pre-defined Keyhole

机译:预定锁孔铝合金电子束焊接期间温度场的建模

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The transient temperature field of Al alloy during electron beam welding (EBW) process was simulated using a three-dimensional finite element method. Different from the most previous models which were based on the assumption that the welding pool was solid and neglected the existence of keyhole by meshing the solid as a whole, a dynamic three-dimensional keyhole was applied in this model. The profile of the keyhole was ellipse and its size was determined before simulation based on the results of experiments. Following the heat source, the pre-defined keyhole moved along the welding line. A three-dimensional complex heat source model, including a modified Gaussian distribution source and a uniform source, was used in this study. The result shows that the shape of the keyhole had a direct effect on the temperature distribution and contribution to the special shape of the welding pool in EBW.
机译:使用三维有限元法模拟电子束焊接(EBW)工艺期间的Al合金的瞬态温度场。与最先前的模型不同,基于焊接池固体并通过啮合整体通过啮合固体而忽略锁孔的存在,在该模型中应用了动态的三维钥匙孔。钥匙孔的轮廓是椭圆形,并且在基于实验结果的模拟之前确定其尺寸。在热源之后,预定义的钥匙孔沿焊接线移动。在本研究中使用了一种三维复杂热源模型,包括改进的高斯分布源和统一来源。结果表明,钥匙孔的形状对EBW中焊接池的特殊形状的温度分布和贡献直接影响。

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