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银氧化铜复合材料反应合成制备
引用本文:周晓龙,陈敬超,曹建春,杜焰,张昆华,甘国友,闫杏丽.银氧化铜复合材料反应合成制备[J].稀有金属材料与工程,2006,35(5):814-816.
作者姓名:周晓龙  陈敬超  曹建春  杜焰  张昆华  甘国友  闫杏丽
作者单位:1. 昆明理工大学,云南省新材料制备与加工重点实验室,云南,昆明,650093
2. 昆明理工大学,云南,昆明,650093
3. 昆明贵金属研究所,云南,昆明,650221
基金项目:Acknowledgment: We would like to express our thanks to Lab of Advanced Materials of Yunnan Province.
摘    要:采用反应合成法与粉末冶金法制备了Ag/CuO复合材料,研究了2种制备方法所获得Ag/CuO复合材料的显微组织与性能。结果表明,反应合成法制备的Ag/CuO复合材料具有独特的环状组织特点,这一特点决定了反应合成制备的Ag/CuO复合材料的机械性能和电学性能要好于粉末冶金制备的Ag/CuO复合材料。在220V交流和24V直流实验条件下,反应合成制备的Ag/CuO复合材料的电寿命是粉末冶金制备的Ag/CuO复合材料的2倍。

关 键 词:反应合成  复合材料  组织与性能
文章编号:1002-185X(2006)05-0814-03
收稿时间:2004-09-16
修稿时间:2004年9月16日

Fabrication Research of Silver Copper Oxide Composite Reactive Synthesis
Zhou Xiaolong,Chen Jingchao,Cao Jianchun,Du Yan,Zhang Kunhu,Gan Guoyou,Yah Xinli.Fabrication Research of Silver Copper Oxide Composite Reactive Synthesis[J].Rare Metal Materials and Engineering,2006,35(5):814-816.
Authors:Zhou Xiaolong  Chen Jingchao  Cao Jianchun  Du Yan  Zhang Kunhu  Gan Guoyou  Yah Xinli
Affiliation:1. Key Lab of Advanced Materials of Yunnan Province, Kunming University of Science and Technology, Kunming 650093, China;2. Kunming University of Science and Technology, Kunming 650093, China;3. Kunming Institute of Precious Metal, Kunming 650221, China
Abstract:Silver copper oxide composites were prepared by reactive synthesis and powder metallurgy methods, Microstructures and properties of silver copper oxide composites by the two methods were studied in the present paper. The results show that silver copper oxide fabricated by reactive synthesis possess unique ringed microstructure that brings its good mechanical and alternating current contact properties. It means that reactive synthesis method can obtain better mechanic properties than powder metallurgy method in fabrication silver copper oxide composites. The service life of Ag/CuO material with reactive synthesis was twice as long as it with powder metallurgy under AC (220 V) and DC (24 V).
Keywords:Ag/CuO  reactive synthesis  Ag/CuO  composites  microstructure and properties
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