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TiC/Ti(C,N)/TiN复合涂层在滑移区的高温微动磨损特性

Fretting Wear Behaviour of TiC/Ti(C, N)/TiN Multi-Layer Coatings at Elevated Temperature in Gross Slip Regime

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【作者】 刘捍卫邱绍宇周彤黄鵾鹏朱旻昊周仲荣

【Author】 LIU Han-wei1,QIU Shao-yu2,Zhou Tong3,HUANG Kun-peng1, ZHU Min-hao1,ZHOU Zhong-rong1 (1. Key Laboratory of Advanced Technologies of Materials,Ministry of Education of China,Southwest Jiaotong University,Chengdu, 610031,China;2. National Key Laboratory of Nuclear Fuel and Materials,Nuclear Power Institute of China, Chengdu,610041,China;3. Chengdu Tool Researoh Institute,610051,China)

【机构】 西南交通大学材料先进技术教育部重点实验室中国核动力研究设计院核燃料及材料国家重点实验室成都工具研究所西南交通大学材料先进技术教育部重点实验室 成都610031成都610041610051610031

【摘要】 采用化学气相沉积(CVD)技术,在1Cr13不锈钢基体上制备TiC/Ti(C,N)/TiN复合涂层。研究了该涂层从室温(25℃)到400℃的微动磨损特性,并与无涂层的1Cr13不锈钢基材比较。结果表明:在滑移区,温度对1Cr13不锈钢微动磨损影响较显著;随着温度上升1Cr13不锈钢摩擦系数减少,磨损体积下降;而温度对TiC/Ti(C,N)/TiN复合涂层磨损体积影响不大,且磨损量均很小。TiC/Ti(C,N)/TiN涂层表现出比1Cr13不锈钢优异的抗微动磨损性能。但当该涂层被磨去后,产生的硬质磨屑形成磨粒磨损,反而对基体造成更大的损伤。

【Abstract】 TiC/Ti(C, N)/TiN multi-layer coatings are prepared on the 1Cr13 stainless steel substrate by the technique of Chemical Vapour Deposition, and the fretting wear behaviour of 1Cr13 stainless steel and TiC/Ti(C, N)/TiN coatings are investigated and studied contrastively from 25℃ to 400℃ in the gross slip regime. It showes that the temperature has great influence on the fretting wear in the gross slip regime for the 1Cr13 stainless steel but little for TiC/Ti(C, N)/ TiN multi-layer coatings. With the temperature increasing, the friction coefficient and the wear volume of the 1Cr13 alloy decreases and the wear volume of TiC/Ti(C, N)/TiN multi-layer coatings is invariant. TiC/Ti(C, N)/TiN multi-layer coatings have better wear-resistant capability than the 1Cr13 stainless steel, but the wear volume of the substrate increases greatly because of the grain-abrasion resulted from hard debris when TiC/Ti(C, N)/TiN multi-layer coatings are ground off .

【基金】 核燃料及材料国家重点实验室基金(51481070104QT2201);教育部科学技术研究重点项目基金(01149)资助
  • 【文献出处】 核动力工程 ,Nuclear Power Engineering , 编辑部邮箱 ,2005年04期
  • 【分类号】TG174
  • 【被引频次】5
  • 【下载频次】284
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