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C/Ti原子比对前驱体碳化复合等离子熔覆TiC/Fe复合涂层的影响

Influence of C/Ti atomic ratio on TiC/Fe composites coating using sucrose as a carbonaceous precursor by plasma cladding

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【作者】 刘均波姜军生谭志强刘均海

【Author】 LIU Jun-bo1,JIANG Jun-sheng1,TAN Zhi-qiang2,LIU Jun-hai3 (1.School of Mechanical and Electronic Engineering,Weifang University,Weifang Shandong 261061,China; 2.School of Information and Control Engineering,Weifang University,Weifang Shandong 261061,China; 3.School of Materials Science and Engineering,University of Science and Technology Beijing,Beijing 100083,China)

【机构】 潍坊学院机电系潍坊学院信控系北京科技大学材料学院 山东潍坊261061山东潍坊261061北京100083

【摘要】 以钛铁粉和碳的前驱体(蔗糖)为原料通过前驱体碳化复合技术制备了Ti-Fe-C等离子熔覆复合粉末,并通过等离子熔覆技术在普通低碳钢表面成功地原位合成了TiC/Fe陶瓷金属复合涂层。着重研究了不同C/Ti原子比对等离子熔覆TiC/Fe复合涂层的相组成、显微结构和硬度的影响。结果表明,前驱体碳化复合技术制备的Ti-Fe-C系等离子熔覆复合粉末中C/Ti原子比是影响涂层相组成、显微结构和硬度的关键因素。C/Ti原子比不同,涂层的相组成和硬度不同;随着C/Ti原子比增大,涂层中TiC团聚富集区增大,涂层的孔隙率也随之增大。

【Abstract】 Ti-Fe-C composite powder for plasma cladding was prepared by precursor carbonization-composition process using ferrotitanium powder and precursor-sucrose as raw materials.TiC/Fe composite coatings were in situ synthesized on the surface of low carbon steel by plasma cladding process.The influence of C/Ti atomic ratio on the component,microstructure and hardness of the composite coatings was investigated.Results show that C/Ti atomic ratio has strong influence on the component,microstructure and hardness of TiC/Fe composite coating.The component,microstructure and hardness of the coating changed along with different C/Ti atomic ratio.The size of TiC aggregate zone and porosity of TiC/Fe composite coating increase with the increase of the C/Ti atomic ratio.

【基金】 山东省自然科学基金项目(Y2002F12);山东省科技攻关项目(2007GG30003003)
  • 【文献出处】 金属热处理 ,Heat Treatment of Metals , 编辑部邮箱 ,2008年06期
  • 【分类号】TG174.4
  • 【被引频次】10
  • 【下载频次】196
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