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基于聚合物的柔性振荡热管的3D打印制造及其热性能

Fabrication and Thermal Performance of a Polymer-Based Flexible Oscillating Heat Pipe via 3D Printing Technology.

作者信息

Han Zhaoyang, Chang Chao

机构信息

Institute of Marine Engineering and Thermal Science, Marine Engineering College, Dalian Maritime University, Dalian 116026, China.

出版信息

Polymers (Basel). 2023 Jan 12;15(2):414. doi: 10.3390/polym15020414.

Abstract

As flexible electronic technologies rapidly developed with a requirement for multifunction, miniaturization, and high power density, effective thermal management has become an increasingly important issue. The oscillating heat pipe, as a promising technology, was used to dissipate high heat fluxes and had a wide range of applications. In this paper, we reported the fabrication and heat transfer performance evaluation of a polymer-based flexible oscillating heat pipe (FOHP) prepared using 3D printing technology. The 3D-printed inner surface presented excellent wettability to the working fluid, which was beneficial for the evaporation of the working fluid. Ethanol was selected as the working fluid, and the influence of the filling ratios range of 30-60% on heat transfer performance was analyzed. It was found that a 3D-printed FOHP with a filling ratio of 40% presented the best heat transfer performance with the lowest thermal resistance, and the fabricated heat pipes could be easily bent from 0° to 90°. With the best filling ratio, the thermal resistance of the FOHPs increased with larger bending angles. In addition, the 3D-printed FOHP was successfully applied for the thermal management of flexible printed circuits, and the results showed that the temperature of flexible printed circuits was kept within 72 °C, and its service life was guaranteed.

摘要

随着柔性电子技术迅速发展,对多功能、小型化和高功率密度有了需求,有效的热管理已成为一个日益重要的问题。振荡热管作为一种很有前景的技术,被用于消散高热流,且有广泛的应用。在本文中,我们报道了使用3D打印技术制备的聚合物基柔性振荡热管(FOHP)的制造及其传热性能评估。3D打印的内表面对工作流体表现出优异的润湿性,这有利于工作流体的蒸发。选择乙醇作为工作流体,并分析了30%-60%的填充率范围对传热性能的影响。发现填充率为40%的3D打印FOHP呈现出最佳的传热性能,热阻最低,且制造的热管可以轻松地从0°弯曲到90°。在最佳填充率下,FOHP的热阻随着弯曲角度的增大而增加。此外,3D打印的FOHP成功应用于柔性印刷电路的热管理,结果表明柔性印刷电路的温度保持在72°C以内,且其使用寿命得到保证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5311/9863260/18a8748c3784/polymers-15-00414-g001.jpg

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