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XU Lei, ZHU Zhencai, CHEN Guoan, LI Yilei. Analysis on Tribological Properties of Potentially New Friction Material with Response Surface Method. Journal of Wuhan University of Technology (Materials Science Edition) |
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baiyuefei
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4楼2014-02-22 13:21:04
baiyuefei
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xlcumt: 金币+5, ★★★很有帮助 2014-02-22 13:29:24
xlcumt: 金币+5, ★★★很有帮助 2014-02-22 13:29:24
2楼2014-02-22 13:20:40
baiyuefei
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jssxh: 金币+3, 检索EPI+1, 谢谢参与,请继续关注本版块! 2014-02-23 09:09:52
jssxh: 金币+3, 检索EPI+1, 谢谢参与,请继续关注本版块! 2014-02-23 09:09:52
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Analysis on Tribological Properties of Potentially New Friction Material with Response Surface Method 作者:Xu, L (Xu Lei)[ 1 ] ; Zhu, ZC (Zhu Zhencai)[ 1 ] ; Chen, GA (Chen Guoan)[ 1 ] ; Li, YL (Li Yilei)[ 1 ] JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY-MATERIALS SCIENCE EDITION 卷: 26 期: 3 页: 499-503 DOI: 10.1007/s11595-011-0256-7 出版年: JUN 2011 查看期刊信息 摘要 The tribological properties of newly developed friction material were evaluated by statistical analysis of the major affecting factors. The material for investigation was non-metallic friction material synergistically reinforced with aramid fibre and CaSO(4) whisker, which was developed for hoisting applications in coal mine. The response surface method (RSM) was employed to analyze the material performances affected by the independent and interactive effect of the factors under the normal working condition and severe working condition, respectively. Results showed that under the normal working condition, the newly developed material exhibited stable tribological properties which were insensitive to the test conditions. While under the severe working condition, the sliding velocity was the most dominant factor affecting the friction coefficient. Additionally, compared to the commercially available material, the modified material showed superior wear resistance and thermal stability. 关键词 作者关键词:tribological properties; friction material; response surface method; wear KeyWords Plus:WEAR BEHAVIOR; PERFORMANCE 作者信息 通讯作者地址: Xu, L (通讯作者) China Univ Min & Technol, Sch Mech & Elect Engn, Xuzhou 221008, Peoples R China. 地址: [ 1 ] China Univ Min & Technol, Sch Mech & Elect Engn, Xuzhou 221008, Peoples R China 电子邮件地址:xucumt@hotmail.com 基金资助致谢 基金资助机构 授权号 National Natural Science Foundation of China 50875253 Natural Science Foundation of Jiangsu Province of China BK2008127 Chinese Ministry of Education 107054 查看基金资助信息 出版商 JOURNAL WUHAN UNIV TECHNOLOGY, WUHAN UNIV TECHNOLOGY, WUHAN 430070, PEOPLES R CHINA 类别 / 分类 研究方向:Materials Science Web of Science 类别:Materials Science, Multidisciplinary 文献信息 文献类型:Article 语种:English 入藏号: WOS:000291705500024 |
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