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Effect of different types of carbon on microstructure and arcing behavior of Ag/C contact materials
P. Jiang; F. Li; Y. P. Wang
2006
发表期刊Ieee Transactions on Components and Packaging Technologies
ISSN1521-3331
卷号29期号:2页码:420-423
摘要Silver-carbon (Ag/C) contact materials with different types of carbon, including diamond, graphite, carbon black, and carbon nanotubes were,fabricated by high-energy ball milling and hot-pressing. Their microstructures, arcing properties, and stability of the carbon structures were investigated. The results show that Ag/C nanotubes material displays a scallop-like morphology, which is significantly different from the microstructure of other Ag/C materials with dispersed particles. During the process of discharge, the diamond and carbon black in Ag/C materials are partially graphitized, while the morphology and crystal structure of graphite component have little change, indicating the graphite structure of Ag/C materials is the most stable of all.
部门归属luoyang ship mat res inst, luoyang 471039, peoples r china. chinese acad sci, inst met res, shenyang natl lab mat sci, shenyang 110016, peoples r china.;jiang, p (reprint author), luoyang ship mat res inst, luoyang 471039, peoples r china;jiangpeng725@tom.com
关键词Electrical Contacts Raman Spectra Silver-carbon (Ag/c) Black Silver-carbon (Ag/c) Nanotubes Silver-diamond (Ag/diamond) Silver-graphite (Ag/graphite) Nanotubes Raman
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WOS记录号WOS:000237982600026
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被引频次:12[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/34275
专题中国科学院金属研究所
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P. Jiang,F. Li,Y. P. Wang. Effect of different types of carbon on microstructure and arcing behavior of Ag/C contact materials[J]. Ieee Transactions on Components and Packaging Technologies,2006,29(2):420-423.
APA P. Jiang,F. Li,&Y. P. Wang.(2006).Effect of different types of carbon on microstructure and arcing behavior of Ag/C contact materials.Ieee Transactions on Components and Packaging Technologies,29(2),420-423.
MLA P. Jiang,et al."Effect of different types of carbon on microstructure and arcing behavior of Ag/C contact materials".Ieee Transactions on Components and Packaging Technologies 29.2(2006):420-423.
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