基于选择性激光熔化温度场数值模拟的支撑结构优化设计

Renkai Huang, C. Pan, Sukun Tian
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引用次数: 1

摘要

在选择性激光熔化过程中,支撑结构是必不可少的组成部分。特别是在悬垂处热量积聚的情况下,这是必需的。热应力和翘曲可能发生由于热积累在悬垂。这些缺陷最终会影响零件的尺寸和几何精度。因此,本文研究了支架接触点数量对温度场的影响,并通过增加支路结构来改善柱状支架的导热性能。对不同支撑结构的热传导进行了有限元分析。仿真结果表明,支撑结构的热传导与支撑接触点的数量成正比。结果表明,树形支架的导热性能优于柱状支架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Optimization of Support Structures Based on Numerical Simulation of the Temperature Fields in Selective Laser Melting
A support structure is an essential part in a selective laser melting process. It is required especially in cases where heat accumulates in overhangs. Heat stress and warping may occur due to heat accumulation in overhangs. These defects ultimately affect the dimensional and geometrical accuracy of a part. Therefore, this work investigates the influence of the number of support contact points on the temperature field, and improves columnar support for good heat conduction by increasing branch structures. Finite element analyses are carried out for studying the heat conduction of different support structures. The simulation results reveal that the heat conduction of the support structure is proportional to the number of support contact points. Moreover, it is shown that tree-shaped support has better heat conduction than columnar support.
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