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开孔直径对铜纤维蜂窝骨架/复合相变材料温控性能影响研究

童江彬 章国庆 龙传顺 黄书烽

机电工程技术2026,Vol.55Issue(10):34-38,5.
机电工程技术2026,Vol.55Issue(10):34-38,5.DOI:10.3969/j.issn.1009-9492.2026.10.005

开孔直径对铜纤维蜂窝骨架/复合相变材料温控性能影响研究

Study on Influence of Open Diameter on Temperature Control Performance of Copper Fiber Honeycomb Skeleton/Composite Phase Change Material

童江彬 1章国庆 1龙传顺 1黄书烽1

作者信息

  • 1. 东华理工大学 电子与电气工程学院,南昌 330013
  • 折叠

摘要

Abstract

A new type of composite paraffin phase change material as a heat sink material for heat dissipation is proposed,and a heat dissipation test system is built using an LED lamp as the heat source.A temperature acquisition instrument is used to collect real-time temperature data.Under four input power conditions,three groups of samples are tested to draw relevant conclusions.In the initial heating stage,the bottom temperature of the copper fiber honeycomb framework/paraffin composite phase change material heat sink with a smaller opening diameter is higher than that of the heat sink with a larger opening diameter,and the temperature difference between the two gradually increases with the increase of the opening diameter.In the heat sink with a larger opening,the paraffin melts better and the center temperature rises faster.At an input power of 21.3 W,the temperature difference ΔT2 of the 3.7 mm opening is 5℃higher than that of the 2.5 mm opening diameter,and 4.1℃higher than that of the 3 mm opening diameter on average.Under the same opening rate conditions,the thermal control performance of the copper fiber honeycomb framework/paraffin composite phase change material heat sink with a smaller opening diameter is better,and the temperature control and cooling effect for the LED lamp are more prominent.The influence of the opening diameter on this type of heat sink is tested and an experimental basis for structural optimization is provided.

关键词

相变材料/热沉/蜂窝骨架

Key words

phase change material/heat sink/honeycomb skeleton

分类

通用工业技术

引用本文复制引用

童江彬,章国庆,龙传顺,黄书烽..开孔直径对铜纤维蜂窝骨架/复合相变材料温控性能影响研究[J].机电工程技术,2026,55(10):34-38,5.

基金项目

江西省自然科学基金(20202BAB204021) (20202BAB204021)

核技术应用教育部工程研究中心项目(HJSJYB2021-2) (HJSJYB2021-2)

机电工程技术

1009-9492

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