Abstract
化学镀银碳纳米管增强银基复合材料的制备和性能
Fabrication and Properties of Silver Composites Reinforced by Silver Coated Carbon Nanotubes
Received:August 20, 2015  
DOI:
中文关键词: 复合材料  碳纳米管    制备  性能
英文关键词: composite materials  nanotubes  silver  preparation  performance
基金项目:NSFC-云南联合基金(u1302272),云南省科技厅重大项目(KKSB201451004),国家重点实验室开放课题(SKL-SPM-201522)。
Author NameAffiliationE-mail
LI Aikun State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China liaikun2006@163.com 
XIE Ming State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
ZHANG Jiming State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
YANG Youcai State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
CHENG Yongtai State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
WANG Song State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
LIU Manmen State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
LI Zaijiu State Key Laboratory of Advanced Technologies for Comprehensive Utilization of Platinum Metals,Kunming Institute of Precious Metals, Kunming 650106, China  
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中文摘要:
      采用粉末冶金、挤压工艺制备了碳纳米管增强银基(Ag-CNTs(5%,体积比))复合材料丝材,并研究了其导电率、抗拉强度、硬度等物理性能。结果表明,采用混合酸处理可有效改善CNTs的分散性,CNTs表面的银镀层改善了CNTs与Ag基体间的界面结合以及复合材料的致密性,保证了材料的良好加工性能。与纯Ag相比,Ag-CNTs复合材料电阻率提高了30%,而抗拉强度提高了43%,硬度提高了近1倍,说明CNTs起到了较好的增强作用。
英文摘要:
      Carbon nanotubes (CNTs) reinforced Ag (Ag-CNTs (5% vol)) composite wire was fabricated by powder metallurgy and extrusion process. Then electrical conductivity, tensile strength, and hardness of the wires were studied. The results indicate that the CNTs could be effectively dispersed after the treatment of mixed acid. The interfacial bonding between Ag matrix and CNTs as well as the compactness of the Ag-CNTs composite was improved by the Ag coating on the CNTs, thus processability of the composite can be ensured. Compared with pure Ag, the Ag-CNTs composite presented an increase in electrical resistivity, tensile strength and hardness by 30%, 43% and nearly 100%, respectively, indicating the good reinforcement effect of CNTs.
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