期刊文献+

镀钼石墨纤维/铜复合材料的微观组织和热性能 被引量:1

Microstructure and thermal properties of Mo-coated graphite fiber/Cu composites
在线阅读 下载PDF
导出
摘要 以磨碎中间相沥青基石墨纤维和铜粉为原料,采用金属有机化学气相沉积工艺对原料纤维进行镀钼处理,通过真空热压烧结制备镀钼石墨纤维/Cu复合材料,对其微观组织及热性能进行检测和分析。结果表明:纤维在垂直于热压方向的平面上出现择优排布,使得复合材料在二维方向上拥有较高的热导率和较低的热膨胀系数;纤维表面的Mo镀层,烧结过程中部分与纤维反应生成连续的Mo2C层,能有效改善纤维与金属基体的界面结合,进而促进复合材料热性能的改善。当纤维体积分数为35%~55%时,复合材料二维方向的热导率在367~382W/(m·K)之间,热膨胀系数为4.2×10-6~8.6×10-6K-1,可以很好地满足大功率电子器件对封装材料的散热及匹配性要求。 Mo-coated graphite fiber/Cu composites were fabricated by vacuum hot-press sintering with milled mesophase pitch-based graphite fibers and Cu powder, The molybdenum coatings on the fibers were obtained via metal organic chemical vapor deposition technique. Microstructure and thermal properties of the composites was examined. The results show that the fibers have a preferential orientation in the plane perpendicular to the pressure axis, which leads to the composites possess higher thermal conductivities and lower coefficients of thermal expansion (CTEs) at the 2-D direction The Mo coating reacts with graphite fiber, and part of which forms a continuous Mo2C layer during densification process, which can improve the interfacial bonding between the fiber and metal matrices effectively, and then improve the thermal properties of the composites. The composites achieve 2-D thermal conductivities between 367-382 W/(m.K) and CTEs of 4.2 X 10-6-8.6 X 10-6 K-l with the fiber content ranging 35%-55% (volume fraction). They can commendably meet the heat dispersion and matching requirements of power electronic devices to the packaging materials.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2013年第4期1092-1098,共7页 The Chinese Journal of Nonferrous Metals
基金 国家自然科学基金资助(51274040) 中央高校基本科研业务费专项基金资助(FRF-TP-10-003B)
关键词 石墨纤维 CU复合材料 钼镀层 微观组织 热导率 热膨胀 graphite fiber/Cu composites molybdenum coating microstructure thermal conductivity thermal expansion
  • 相关文献

参考文献2

二级参考文献47

  • 1HE XinBo,QU XuanHui,REN ShuBin,JIA ChengChang.Net-shape forming of composite packages with high thermal conductivity[J].Science China(Technological Sciences),2009,52(1):238-242. 被引量:9
  • 2莫文剑,王志法,王海山,杨会娟.Au-Ag-Si钎料合金的初步研究[J].贵金属,2004,25(4):45-51. 被引量:20
  • 3Schubert Th,Trindade B,Wei?g¨arber T.Interfacial design of Cu-based composites prepared by powder metallurgy for heat sink applications. Materials Science Engineering A Structural Materials Properties Microstructure and Processing . 2008
  • 4Zweben C.Composite Materials and Mechanical Design. Mechanical Engineers’ Handbook, Book 1: Materials and Mechanical Design . 2005
  • 5Paul P,Sung C,Sundberg G.Fabrication and characterization of dif- fusion barriers for CuSiC metal matrix composites: The thermal management materials for next generation power electronics. Microscopy and Microanalysis . 2004
  • 6Kelly A,Zweben C.Comprehensive Composite Materials. . 2000
  • 7Ren S B,He X B,Qu X H.Effect of calcination process on the prop- erties and microstructure of SiC preform and corresponding SiCp/Al composites synthesis by pressureless infiltration. Materials Science Engineering A Structural Materials Properties Microstructure and Processing . 2007
  • 8Ren Shubin,He Xinbo,Qu Xuanhui,et al.Effect of Mg andSi in the aluminum on the thermo-mechanical properties of pres-sureless infiltrated SiCp/Al composites. Composites Sci-ence and Technology . 2007
  • 9Glenn Sundberg,Pradeep Paul,Changmo Sung,Thomas Vasilos.Identification and characterization of diffusion barriers for Cu/SiC systems[J]. Journal of Materials Science . 2005 (13)
  • 10MALLIK S,,EKERE N,BEST C,BHATTI R.Investigation of thermal management materials for automotive electronic control units. Applied Thermal Engineering . 2011

共引文献29

同被引文献3

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部