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考虑粉末尺寸变化和堆积的粉末床金属增材制造的分析热模型

Analytical Thermal Modeling of Powder Bed Metal Additive Manufacturing Considering Powder Size Variation and Packing.

作者信息

Ning Jinqiang, Wang Wenjia, Ning Xuan, Sievers Daniel E, Garmestani Hamid, Liang Steven Y

机构信息

George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, 801 Ferst Drive, Atlanta, GA 30332, USA.

School of Mathematics, Georgia Institute of Technology, 686 Cherry St NW, Atlanta, GA 30332, USA.

出版信息

Materials (Basel). 2020 Apr 24;13(8):1988. doi: 10.3390/ma13081988.

Abstract

This work presents a computationally efficient predictive model based on solid heat transfer for temperature profiles in powder bed metal additive manufacturing (PBMAM) considering the heat transfer boundary condition and powder material properties. A point moving heat source model is used for the three-dimensional temperature prediction in an absolute coordinate. The heat loss from convection and radiation is calculated using a heat sink solution with a mathematically discretized boundary considering non-uniform temperatures and heat loss at the boundary. Powder material properties are calculated considering powder size statistical distribution and powder packing. The spatially uniform and temperature-independent material properties are employed in the temperature prediction. The presented model was tested in PBMAM of AlSi10Mg under different process conditions. The calculations of material properties are needed for AlSi10Mg because of the significant difference in thermal conductivity between powder form and solid bulk form. Close agreement is observed upon experimental validation on the molten pool dimensions.

摘要

这项工作提出了一种基于固体热传递的计算效率高的预测模型,用于粉末床金属增材制造(PBMAM)中的温度分布,该模型考虑了热传递边界条件和粉末材料特性。采用点移动热源模型在绝对坐标中进行三维温度预测。对流和辐射的热损失通过热沉解来计算,该热沉解具有考虑非均匀温度和边界热损失的数学离散边界。粉末材料特性的计算考虑了粉末尺寸统计分布和粉末堆积情况。在温度预测中采用了空间均匀且与温度无关的材料特性。所提出的模型在不同工艺条件下的AlSi10Mg粉末床金属增材制造中进行了测试。由于粉末形式和固体块状形式的热导率存在显著差异,因此AlSi10Mg需要进行材料特性计算。在熔池尺寸的实验验证中观察到了密切的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/572d/7215875/f459cde1cdcb/materials-13-01988-g001.jpg

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