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Finite Element Analysis of Thermal Effect on Large Thick Titanium Alloy Electron Beam Welding with Different Focus

机译:不同焦点大厚钛合金电子束焊接热效应的有限元分析

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A composite heat source model composed of Gaussian surface heat source and rotational paraboloidal body heat source have been established to simulate the temperature field of 20mm TA15 titanium alloy. The results show that the simulated peak temperature of molten pool during surface focus welding is 3200°C, while the simulated peak temperature of molten pool during lower focus is 2700°C, and the whole surface temperature of surface focus welding is higher than that of lower focus welding, while the whole inner temperature of surface focus welding is lower than that of lower focus. The simulated temperature gradient in the direction of depth during surface focus welding is large, but the simulated temperature gradient in the direction of depth during lower focus welding is small. The simulated result was verified by the thermocouple and contrast of weld cross section morphology. The simulated thermal cycle curves are well consistent to the results tested by thermocouple, and there is a good consistency between the simulated molten pool morphology and the real weld morphology, they verify the accuracy of finite element model.
机译:已经建立了由高斯表面热源和旋转抛物面体热源组成的复合热源模型,以模拟20mm Ta15钛合金的温度场。结果表明,表面聚焦焊接期间熔池的模拟峰值温度为3200°C,而较低焦点熔池的模拟峰值温度为2700°C,表面聚焦焊接的整体温度高于较低的焦点焊接,而表面聚焦焊接的整个内部温度低于较低的焦点。在表面聚焦焊接期间深度方向的模拟温度梯度大,但在较低焦焊期间的深度方向上的模拟温度梯度小。通过焊接横截面形态的热电偶和对比度来验证模拟结果。模拟的热循环曲线与热电偶测试的结果一致,并且在模拟的熔池形态与真实焊接形态之间存在良好的一致性,它们验证了有限元模型的准确性。

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