华南理工大学学报(自然科学版) ›› 2012, Vol. 40 ›› Issue (3): 156-161.

• 机械工程 • 上一篇    下一篇

铜粉粒径对烧结式微热管传热性能的影响

李勇 陈春燕 揭志伟 曾志新   

  1. 华南理工大学 机械与汽车工程学院//表面功能结构先进制造广东普通高校重点实验室,广东 广州 510640
  • 收稿日期:2011-09-23 修回日期:2011-12-30 出版日期:2012-03-25 发布日期:2012-02-01
  • 通信作者: 李勇(1974-),男,博士,副教授,主要从事微成形及面向节能与新能源的设计与制造技术研究. E-mail:meliyong@scut.edu.cn
  • 作者简介:李勇(1974-),男,博士,副教授,主要从事微成形及面向节能与新能源的设计与制造技术研究.
  • 基金资助:

    国家自然科学基金资助项目(50975096,51 175186);广东省自然科学基金资助项目($201 1010002225);广东省科技计划项目(2010A080802009,2010A011300022,2011B040300020);华南理工大学中央高校基本科研业务费专项资金资助项目(2012ZZ0053)

Effect of Copper Particle Size on Heat Transfer Performance of Sintered Heat Pipe

Li Yong  Chen Chun-yan  Jie Zhi-wei  Zeng Zhi-xin   

  1. School of Mechanical and Automotive Engineering//Key Laboratory of Surface Functional Structure Manufacturing of Guangdong Higher Education Institutes,South China University of Technology,Guangzhou 510640,Guangdong,China
  • Received:2011-09-23 Revised:2011-12-30 Online:2012-03-25 Published:2012-02-01
  • Contact: 李勇(1974-),男,博士,副教授,主要从事微成形及面向节能与新能源的设计与制造技术研究. E-mail:meliyong@scut.edu.cn
  • About author:李勇(1974-),男,博士,副教授,主要从事微成形及面向节能与新能源的设计与制造技术研究.
  • Supported by:

    国家自然科学基金资助项目(50975096,51 175186);广东省自然科学基金资助项目($201 1010002225);广东省科技计划项目(2010A080802009,2010A011300022,2011B040300020);华南理工大学中央高校基本科研业务费专项资金资助项目(2012ZZ0053)

摘要: 为了进一步优化烧结式吸液芯的结构,提高热管的热传导性能与效率,研究了外径分别为5、6、8mm和吸液芯厚度为0.5~0.6mm的热管的传热特性,结果发现:铜粉粒径分布比较集中时,如果其平均粒径增大,吸液芯的孔隙率和热管的极限传输功率(MHTP)均会增大,热管的冷凝端温差及总热阻则略微减小;不同粒径范围的铜粉混合时,热管的冷凝端温差及总热阻在不同外径的热管内的变化规律不同;含70% 小粒径铜粉的烧结式热管的MHTP最小,且粒径越小MHTP越低;含70%大粒径铜粉的烧结式热管的MHTP仅次于全部为大粒径铜粉的烧结式热管的MHTP;铜粉粒径的范围越小,热管的性能越优,平均粒径为(165±15) m的铜粉适合于制作薄壁烧结式热管.

关键词: 热管, 传热性能, 铜粉, 孔隙率, 粒径, 热阻

Abstract:

In order to optimize the structure of sintered powder wick and improve the thermal conductivity and effi-ciency of heat pipes,the heat transfer characteristics of the sintered heat pipes with the outer diameters of 5,6 and8 mm and with a wick thickness ranging from 0.5 to 0.6 mm are discusse. The resuhs show that,when the copper particle size distribution is concentrated,both the porosity of the wick and the maximum heat transfer power (MHTP)of the heat pipe increase with the average particle size,while the temperature difference at the condensa-tion end and the total thermal resistance both slightly decreases,and that,when the particles in different sizes are mixed,the variation rules of the temperature difference at the condensation end and the total thermal resistance are different for heat pipes with different outer diameters. Moreover,it is found that the MHTP of the heat pipe decrea-ses with the copper particle size and reaches the minimum when the pipe is sintered with 70% of small-size parti-cles,that the MHTP of the heat pipe sintered with 70% of large-size particles is only second to that of the pipe sintered entirely with large-size particles,that a more concentrated particle size favors the perform ance of the heat pipe,and that copper powders with an average particle size of(165±15)Ixm is appropriate to the manufacturing of heat pipes.

Key words: heat pipe, heat transfer performance, copper powder, porosity, particle size, therm al resistance

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