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制备工艺对铜——石墨复合材料导电性能的影响 被引量:2
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作者 高强 吴渝英 +1 位作者 洪锓 肖学明 《有色金属(冶炼部分)》 CAS 2001年第3期44-46,43,共4页
采用两种不同的复合工艺制备含粘结剂的铜———石墨复合材料 ,测定了不同配方时复合材料的导电性能 ,结果表明 。
关键词 制备工艺 铜--石墨复合材料 导电性
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Effect of WS_2 addition on electrical sliding wear behaviors of Cu-graphite-WS_2 composites 被引量:6
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作者 钱刚 凤仪 +3 位作者 陈阳明 莫飞 王雨晴 刘文宏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第6期1986-1994,共9页
Four kinds of Cu-based composites with different mass ratios of graphite and WS2 as lubricants were fabricated by hot-pressing method. Electrical sliding wear behaviors of the composites were investigated using a bloc... Four kinds of Cu-based composites with different mass ratios of graphite and WS2 as lubricants were fabricated by hot-pressing method. Electrical sliding wear behaviors of the composites were investigated using a block-on-ring tribometer rubbing against Cu-5%Ag alloy ring. The results demonstrated that 800 ~C was the optimum sintering temperature for Cu-graphite-WS2 dual-lubricant composites to obtain the best comprehensive properties of mechanical strength and lubrication performance. Contact voltage drops of the Cu-based composites increased with increasing the mass ratio of WS2 to graphite. The Cu-based composite with 20% graphite and 10% WS2 showed the best wear resistance due to the excellent synergetic lubricating effect of graphite and WS2. The reasonable addition of WS2 into the Cu-graphite composite can remarkably improve the wear resistance without much rise of electrical energy loss which provides a novel principle of designing suitable sliding electrical contact materials for industrial applications. 展开更多
关键词 Cu-based composites GRAPHITE WS2 synergetie lubrication wear rate contact voltage drop
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Microstructures and interfacial interactions of Al_(2)O_(3)whiskers and graphene nano-platelets co-reinforced copper matrix composites
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作者 Zhen-yi SHAO Heng-kang PAN +2 位作者 Rui SHU Xiao-song JIANG Min-hao ZHU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第9期2935-2947,共13页
The mechanical properties and microstructures of Al_(2)O_(3)whiskers and graphene nano-platelets(GNPs)co-reinforced Cu-matrix composites were studied.Cu-matrix composites with a variation of GNPs amount were fabricate... The mechanical properties and microstructures of Al_(2)O_(3)whiskers and graphene nano-platelets(GNPs)co-reinforced Cu-matrix composites were studied.Cu-matrix composites with a variation of GNPs amount were fabricated by mechanical alloying followed by vacuum hot-pressing sintering and hot isostatic pressing.The Cu-matrix composite with 0.5 wt.%GNPs(GNPs-0.5)suggests a good interfacial bonding of both Cu/C and Cu/Al_(2)O_(3)interfaces.Both the hardness and compressive strength of Cu-matrix composites show a consistent tendency that firstly increases to a critical value and then decreases with increasing GNPs amount.It is suggested that the most possible strengthening mechanisms of both GNPs and Al_(2)O_(3)whisker working in the Cu-matrix composites involve energy dissipating and load transfer,as well as grain refinements for GNPs.The synergetic effect of GNPs and Al_(2)O_(3)whiskers is highlighted that the embedded GNPs would hinder the crack path generated at the Al_(2)O_(3)/Cu interface and enhance the already outstanding strengthening effect that Al_(2)O_(3)whiskers provide. 展开更多
关键词 GRAPHENE Al_(2)O_(3)whisker Cu-matrix composite microstructure interfacial interaction
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