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Numerical simulation of temperature field of direct laser metal deposition shaping process of titanium alloys

机译:钛合金直接激光金属沉积成形过程温度场的数值模拟

摘要

in order to control the thermal stress of forming process, based on "element birth and death" technology of finite element method, a numerical simulation of three-dimensional temperature field and stress field during multi-track & multi-layer laser metal deposition shaping(LMDS) process is developed with ANSYS parametric design language (APDL). The dynamic variances of temperature field and stress field of forming process are calculated with the energy compensation of interaction between molten pool-powder and laser-powder. The temperature field, temperature gradient, thermal stress field and distribution of residual stress are obtained. The results indicate that although the nodes on different layers are activated at different time, their temperature variations are similar. The temperature gradients of samples are larger near the molten pool area and mainly along z-direction. Finally, it's verified that the analysis results are consistent with actual situation by the experiments with same process parameters. 
机译:为了控制成形过程中的热应力,基于有限元法的“元素生与死”技术,对多道多层激光金属沉积成形过程中三维温度场和应力场进行了数值模拟( LMDS)流程是使用ANSYS参数设计语言(APDL)开发的。利用熔池粉体与激光粉体相互作用的能量补偿,计算了成形过程中温度场和应力场的动态变化。得到了温度场,温度梯度,热应力场和残余应力的分布。结果表明,尽管不同层上的节点在不同的时间被激活,但是它们的温度变化是相似的。样品的温度梯度在熔池区域附近且主要沿z方向较大。最后,通过相同工艺参数的实验,验证了分析结果与实际相符。

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