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Fabrication of in-situ TiC reinforced composite coating via plasma transferred arc process

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【作者】 黄诗铭孙大千王文权徐红勇刘帅

【Author】 Huang Shiming;Sun Daqian;Wang Wenquan;Xu Hongyong;Liu Shuai;Key Laboratory of Automobile Materials of Ministry of Education,School of Materials Science and Engineering,Jilin University;

【机构】 Key Laboratory of Automobile Materials of Ministry of Education,School of Materials Science and Engineering,Jilin University

【摘要】 In this work,the in-situ TiC particles reinforced composite coating was prepared by plasma transferred arc process on the surface of Q235 steel.Microstructures,phase composition and wear property of the coating were investigated.The results showed that the composite coating consisted mainly of γ-Ni,TiC,Cr23C6,Cr7C3,Ni3Si,CrB,Cr5B3 and FeNi3phases,and was characterized by fine TiC particles embedded in Ni matrix.The wear resistance of composite coating was significantly improved compared with that of the steel substrate.The wear volume loss of the substrate was 443 mm,which was about 9 times as that of in-situ TiC particles reinforced composite coating(49 mm).It is mainly attributed to the presence of chromium carbide particles and in-situ TiC particles and their favorable combination with Ni matrix.

【Abstract】 In this work,the in-situ TiC particles reinforced composite coating was prepared by plasma transferred arc process on the surface of Q235 steel.Microstructures,phase composition and wear property of the coating were investigated.The results showed that the composite coating consisted mainly of γ-Ni,TiC,Cr23C6,Cr7C3,Ni3Si,CrB,Cr5B3 and FeNi3phases,and was characterized by fine TiC particles embedded in Ni matrix.The wear resistance of composite coating was significantly improved compared with that of the steel substrate.The wear volume loss of the substrate was 443 mm,which was about 9 times as that of in-situ TiC particles reinforced composite coating(49 mm).It is mainly attributed to the presence of chromium carbide particles and in-situ TiC particles and their favorable combination with Ni matrix.

【基金】 supported by Jilin Provincial Science and Technology Department(No.20130301003GX)
  • 【文献出处】 China Welding ,中国焊接(英文版) , 编辑部邮箱 ,2015年02期
  • 【分类号】TG174.4
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