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Investment casting and experimental testing of heat sinks designed by topology optimization

机译:通过拓扑优化设计的熔模铸造和实验测试

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摘要

Topology optimization (TO) is an attractive numerical tool to obtain optimized engineering designs, which has been originally developed for mechanical optimization and extended to the area of conjugate heat transfer. With rapid developments in topology optimization models, promising designs have been proposed and presented recently for conjugate heat transfer problems. However, only a very small number of experimental validations of TO heat transfer devices have been reported. In this paper, investment casting (IC) using 3D stereolithography (SLA) printed patterns is proposed to fabricate 3D metal heat transfer devices designed by TO. Three heat sinks for natural convection are designed by a previously reported topology optimization model and five reference pin-fin heat sinks are devised for comparison. From those designs six heat sinks are cast in Britannia metal, fully reproducing the complex 3D optimized designs. It shows that SLA-assisted IC is a very promising technology with low cost and high accuracy for fabricating TO metal parts, which is not limited to heat transfer devices and can be extended to other areas such as structural optimization. A natural convection experimental setup is used to experimentally study the performance of the fabricated heat sinks. The results show that the tested TO heat sinks can always realize the best heat dissipation performance compared to pin-fin heat sinks, when operating under the conditions used for the optimization. Moreover, validation simulations have been conducted to investigate the temperature distribution, fluid flow pattern and local heat transfer coefficient for the TO and pin-fin designs, further evidencing that TO designs always perform better under the design conditions. In addition, the impact of heat sink orientation and radiation are presented.
机译:拓扑优化(TO)是获得优化工程设计的一种有吸引力的数值工具,该技术最初是为机械优化而开发的,并扩展到共轭传热领域。随着拓扑优化模型的快速发展,针对共轭传热问题已经提出并提出了有前途的设计。然而,仅报道了极少量的TO传热装置的实验验证。本文提出了使用3D立体光刻(SLA)印刷图案的熔模铸造(IC)来制造由TO设计的3D金属传热装置。通过先前报告的拓扑优化模型设计了三个用于自然对流的散热器,并设计了五个参考针翅式散热器进行比较。从这些设计中,用不列颠尼亚金属铸造了六个散热器,完全再现了复杂的3D优化设计。它表明,SLA辅助IC是一种非常有前途的技术,具有低成本和高精度的制造TO金属零件的技术,它不仅限于传热设备,而且可以扩展到其他领域,例如结构优化。自然对流实验装置用于实验研究装配式散热器的性能。结果表明,在优化条件下运行时,与针翅式散热器相比,经过测试的TO散热器始终可以实现最佳散热性能。此外,已经进行了验证模拟,以研究TO和针翅设计的温度分布,流体流型和局部传热系数,进一步证明TO设计在设计条件下始终表现更好。此外,还介绍了散热器方向和辐射的影响。

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