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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Topology optimization of thermal conductive support structures for laser additive manufacturing
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Topology optimization of thermal conductive support structures for laser additive manufacturing

机译:激光添加剂制造热导电支撑结构的拓扑优化

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摘要

This paper presents a topology optimization approach to design support structures with efficient thermal conductive capabilities for powder-bed based laser additive manufacturing (AM). A transient heat transfer model is proposed to simulate the temperature distribution of the point-by-point and layer-upon-layer AM process. The process model is seamlessly integrated into a density based structural topology optimization method with an adjoint based sensitivity analysis and a gradient based optimization. For a given prototype shape, the layout of the corresponding support structure is designed such that the thermal energy during the fabrication process can be efficiently transferred from the laser path to a prescribed heat sink. Besides, an overhang constraint is proposed and used together with an AM filter to avoid overhang features in both the optimized support structure and the prototype, ensuring the overall manufacturability. Numerical examples and discussions are given to demonstrate its applicability. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文介绍了设计支持结构的拓扑优化方法,具有高效的基于粉末的激光添加剂制造(AM)的热导电能力。提出了一种瞬态传热模型来模拟逐渐点和层次的水平的温度分布。该过程模型与基于伴随的灵敏度分析和基于梯度的优化无缝集成到基于密度的结构拓扑优化方法中。对于给定的原型形状,设计相应支撑结构的布局使得可以从激光路径到规定的散热器的制造过程中的热能。此外,提出了一个突出的约束,并与AM过滤器一起使用,以避免优化的支撑结构和原型中的悬垂特征,确保整体可制造性。给出了数值例子和讨论来证明其适用性。 (c)2019 Elsevier B.v.保留所有权利。

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