Design study of the heat switch base plate with single and multi-material topology optimization

F. Löffelmann, Jan Šplíchal
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引用次数: 2

Abstract

A miniaturized heat switch is a device under the development dedicated to control automatic cooling of a space instrument box. The design study presented in this paper focuses on a stiffness issue of the switch base plate which should assure good thermal contact with the instrument box. Due to inner deformations of the switch, base plate deforms which might decrease contact area needed to the heat transfer. Thus several design concepts of the copper base plate were investigated and multimaterial additive manufacturing was reviewed. One approach was to decrease deformations of existing geometry by multi-material design by local exchange of copper with steel, first by engineering intuition, then by the stiffness based topology optimization, and finally with the layer-wise topology optimization better respecting manufacturing possibilities. Another approach was to change the geometry and use the topology optimization constrained with a flatness of the base plate but with single material. Finally, deformation changes of all the variants were compared.
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基于单、多材料拓扑优化的热开关基板设计研究
小型化热开关是研制中的一种专用于控制航天仪表箱自动冷却的装置。本文的设计研究重点是开关底板的刚度问题,该问题应保证与仪表箱的良好热接触。由于开关的内部变形,底板的变形可能会减少传热所需的接触面积。研究了铜基板的几种设计概念,并对多材料增材制造技术进行了综述。一种方法是通过铜与钢的局部交换,通过多材料设计来减少现有几何形状的变形,首先是通过工程直觉,然后是基于刚度的拓扑优化,最后是基于层的拓扑优化,更好地尊重制造可能性。另一种方法是改变几何形状,使用受底板平面度约束但材料单一的拓扑优化方法。最后比较了各变形体的变形变化情况。
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