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A model for predicting the temperature field during selective laser melting

机译:选择性激光熔化过程中预测温度场的模型

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To solve the problem that the thermal behavior of powder bed during SLM process is difficult to be analyzed by direct test measurement, a model for predicting the temperature field of AlSi10Mg molten pool in SLM process was established based on the finite element method. In the prediction model, the thermal properties of the material and the variation of laser power absorptivity with temperature were taken into account; the laser heat source was regarded as a 3D Gaussian body heat source, and successfully implemented that the element properties of the material were transformed from powder state to solid state in real time. Through the simulation, the influence of laser power and scanning speed on the thermal behavior of powder bed was investigated, and the validity of the model was verified by experiments. The experimental results were in eminent agreement with the predicted results, and the prediction error was lower than 7%. Based on this model, the process parameters can be optimized according to the obtained law of variation of the thermal behavior of the molten pool, reducing the number of intensive tests and improving the process stability of SLM.
机译:为解决SLM工艺过程中粉床热行为难以直接测试分析的问题,基于有限元方法建立了SLM工艺中AlSi10Mg熔池温度场的预测模型。在预测模型中,考虑了材料的热性能和激光功率吸收率随温度的变化;激光热源被认为是3D高斯体热源,并成功实现了将材料的元素性质从粉末状态实时转换为固态的成功实现。通过仿真,研究了激光功率和扫描速度对粉床热行为的影响,并通过实验验证了模型的有效性。实验结果与预测结果基本吻合,预测误差低于7%。基于该模型,可以根据所获得的熔池热行为的变化规律来优化工艺参数,从而减少密集测试的次数并提高SLM的工艺稳定性。

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