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碳化铬/铁基自熔合金复合涂层真空反应钎涂
引用本文:裴新军,黄继华,张建纲,魏世忠.碳化铬/铁基自熔合金复合涂层真空反应钎涂[J].北京科技大学学报,2006,28(1):48-51.
作者姓名:裴新军  黄继华  张建纲  魏世忠
作者单位:1. 北京科技大学材料科学与工程学院,北京,100083
2. 河南省耐磨材料工程技术研究中心,洛阳,471003
基金项目:河南省高校杰出科研创新人才工程项目
摘    要:以纯铁粉、硅粉、硼铁粉、铬铁粉、胶体石墨及镍粉为原料,通过真空反应钎涂在低碳钢基体上制备了碳化铬/铁基自熔合金复合涂层,涂层表面光滑、平整且与基体为冶金结合.应用扫描电子显微镜、能谱仪、X射线衍射仪及显微硬度计,研究了涂层的组织结构、成分分布和硬度分布.结果表明:涂层为复合结构,其组织由Fe-Ni固溶体基底和原位合成的六棱柱Cr3C2相组成.涂层与基体间存在过渡区,过渡区内元素和硬度呈梯度分布;涂层表面硬度可达85HR15N以上.

关 键 词:反应钎涂  碳化铬  复合涂层  铁基自熔合金  碳化铬  铁基  合金复合涂层  真空  反应钎涂  carbide  Chromium  composite  coatings  braze  vacuum  表面硬度  梯度分布  元素  过渡区  存在  相组成  六棱柱  原位合成  基底  固溶体
收稿时间:2004-11-24
修稿时间:2005-05-27

Chromium carbide/Fe-based self-fluxing alloy composite coatings produced by vacuum reactive braze coating
PEI Xinjun,HUANG Jihua,ZHANG Jiangang,WEI Shizhong.Chromium carbide/Fe-based self-fluxing alloy composite coatings produced by vacuum reactive braze coating[J].Journal of University of Science and Technology Beijing,2006,28(1):48-51.
Authors:PEI Xinjun  HUANG Jihua  ZHANG Jiangang  WEI Shizhong
Institution:1 Materials Science and Engineering School, University of Science and Technology Beijing, Beijing 100083, China; 2 Henan Engineering Research Center for Wear of Material, Luoyang 471003, China
Abstract:Using carbon, iron, silicon, ferrochromium, ferrotitanium and nickel powder as the raw ma terials, chromium carbide/Fe-based composite coatings with an even and smooth surface were prepared by vacuum reactive braze coating, which combined with a mild steel substrate by a metallurgical bonding. The phase structure, composition distribution and hardness distribution of the coatings were studied by means of scanning electron microscopy (SEM), energy dispersive spectrum (EDS), X-ray diffraction (XRD) and microhardness testing. The results showed that the coating had a composite structure, and the microstructure of the coating consists of an Fe-Ni solid solution matrix and in-situ synthesized hexagon prismy Cr_3C_2. There was a transition zone between the coating and the substrate, in which chemical elements and microhardness had a gradient distribution. The surface hardness of the composite coating was high up to 85HR15N.
Keywords:reactive braze coating  chromium carbide  composite coating  Fe-based self-fluxing alloy
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