摘要
采用冷压-烧结方法制备了含质量分数0%、5%、10%、15%Cr2AlC的铜基复合材料,利用光学显微镜、扫描电子显微镜及能谱仪观察并分析复合材料微观组织和微区成分,使用HVS-1000型显微硬度计和M-2000型摩擦磨损试验机测试复合材料的硬度和摩擦磨损性能,分析Cr2AlC质量分数对复合材料硬度、摩擦性能和磨损机理的影响。结果表明:含Cr2AlC铜基复合材料的相对密度为0.8,Cr2AlC均匀分布在铜基体上,有效提高了复合材料的硬度;随Cr2AlC质量分数增加,复合材料摩擦系数先升高后降低,磨损量先降低后回升,当Cr2AlC质量分数为10%时,复合材料的摩擦系数最大,磨损量最低,耐磨性能最佳;未添加Cr2AlC的纯铜材料磨损机理以黏滑为主,含Cr2AlC铜基复合材料的磨损机理是犁削磨损、剥层磨损和氧化磨损三者的结合。
The copper matrix composites with Cr2AlC in the mass fraction of 0%,5%,10%,and 15%were prepared by cold pressing-sintering method.The microstructures and compositions of the composites were studied by optical microscope(OM),scanning electron microscope(SEM),and energy disperse spectroscope(EDS).The hardness and the properties of friction and wear of the composites were tested on HVS-1000 microhardness tester and M-2000 friction and wear tester.The effects of Cr2AlC contents by mass on the hardness,friction property,and wear mechanism of the composites were analyzed.The results show that,the relative density of copper matrix composites with Cr2AlC is 0.8,the Cr2AlC evenly distributes on the copper matrix and effectively improves the composites hardness.With the increase of Cr2AlC content,the friction coefficient of the composites increases first and then decreases,and the abrasion loss decreases first and then increases.When Cr2AlC content by mass is 10%,the friction coefficient is the largest,the wear rate is the lowest,and the wear resistance is the best.The wear mechanism of pure copper without Cr2AlC is mainly stick slip,and the wear form of copper matrix composites with Cr2AlC is the combination of plough wear,stripping wear,and oxidation wear.
作者
吴辉
郭彪
李强
敖进清
刘胜明
鲁云
WU Hui;GUO Biao;LI Qiang;AO Jin-qing;LIU Sheng-ming;LU Yun(School of Materials Science and Engineering,Xihua University,Chengdu 610039,China;Research Center for Applied Technology of Xihua University in Huaian City,Huaian 223001,China;Jiangsu Kailai Steel Pipe Co.,Ltd.,Huaian 223001,China;Faculty of Engineering,Chiba University,Chiba 263-8522,Japan)
出处
《粉末冶金技术》
CAS
CSCD
北大核心
2019年第3期184-190,共7页
Powder Metallurgy Technology
基金
教育部春晖计划资助项目(Z2015097)
国家自然科学基金资助项目(51504197)
四川省粉末冶金工程技术研究中心开放基金资助项目(SC-FMYJ2018-04)
淮安市科技局重点研发计划资助项目(HAG201618)
西华大学“青年学者后备人才”支持计划资助项目
西华大学研究生创新基金资助项目(YCJJ2018072)
关键词
铜基复合材料
硬度
摩擦
磨损
摩擦系数
copper matrix composites
hardness
friction
wear
friction coefficient