设为首页 联系我们 加入收藏

当前位置: 网站首页 期刊分类目录 2019第3期 正文

铜粉/液态金属导热膏的制备及其导热性能

作者:时间:2019-05-13点击数:

PDF全文下载:  201903009.pdf

 

文章编号: 16726987201903005206 DOI 10.16351/j.16726987.2019.03.009


朱晴, 王梦婕, 张灿英, 吴大雄*

 

(青岛科技大学 材料科学与工程学院,山东 青岛 266042)

 

摘要: 以铜粉作为导热填料,75Ga25In液态金属为导热基体,制备了一系列液态金属导热膏。通过扫描电子显微镜(SEM)对导热填料进行了表征,研究了铜粉的粒径和填充量对液态金属导热膏导热性能的影响。结果表明:当铜粉的粒径为25 μm,填充量为12%时,液态金属导热膏的导热系数最大,为347 W·(m·K)-1,显著高于市售普通导热硅脂。铜粉与液态金属复合既能获得高的导热系数,又能降低液态金属的流动性,提高其涂敷性能。

 

关键词: 铜粉; 液态金属; 热界面材料; 导热性能

 

中图分类号: TK 123文献标志码: A

 

引用格式: 朱晴, 王梦婕, 张灿英, . 铜粉/液态金属导热膏的制备及其导热性能\[J\]. 青岛科技大学学报(自然科学版), 2019 403): 5257.

 

ZHU Qing, WANG Mengjie, ZHANG Canying, et al. Preparation of copper powder/liquid metal thermal conductive paste and its thermal conductivity\[J\]. Journal of Qingdao University of Science and TechnologyNatural Science Edition), 2019, 40(3) 5257.

 

Preparation of Copper Powder/Liquid Metal Thermal Conductive Paste and Its Thermal Conductivity

 

ZHU Qing, WANG Mengjie, ZHANG Canying, WU Daxiong

 

(College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China)

 

Abstract: In this paper, a series of liquid metal thermal conductive paste is prepared with copper powder as a thermal conductive filler and 75Ga25In liquid metal as the thermal conductive matrix.The thermal conductive fillers were characterized by SEM. The effects of particle size and filling amount of copper powder on the thermal conductivity of liquid metal thermal conductive paste were studied.The results show that when the particle size of copper powder is 25 μm and the filling volume ratio is 12%, the thermal conductivity of liquid metal thermal conductive paste reaches the largest value of 347 W·(m·K)-1, which is significantly higher than that of the marketed ordinary thermal conductive silicone.The combination of copper powder and liquid metal can not only achieve high thermal conductivity, but also reduce the fluidity of liquid metal and improve its coating performance.

 

Key words: copper powder; liquid metal; thermal interface materials; thermal conductivity

 

收稿日期:  20180706

基金项目: 国家自然科学基金资助项目(51741206, 51472134);山东省自然科学基金项目(ZR2017MEM004).

作者简介: 朱晴(1993),女,硕士研究生.*通信联系人.

 

 

Copyright © 2011-2017 青岛科技大学学报 (自然科学版)