赵正,刘福田,李文虎.多元硬质合金覆层材料力学性能的研究[J].表面技术,2008,37(3):16-18,70.
ZHAO Zheng,LIU Fu-tian,LI Wen-hu.Research on Mechanical Property of Multiple Hard Alloy Cladding Material[J].Surface Technology,2008,37(3):16-18,70
多元硬质合金覆层材料力学性能的研究
Research on Mechanical Property of Multiple Hard Alloy Cladding Material
投稿时间:2008-02-20  修订日期:2008-06-10
DOI:
中文关键词:  多元硬质合金  覆层材料  液相烧结  力学性能
英文关键词:Multiple hard alloy  Cladding material  Liquid phase sintering  Mechanical property
基金项目:国家自然科学基金资助项目(59975054)
作者单位
赵正 济南大学材料科学与工程学院,山东济南250022 
刘福田 1.济南大学材料科学与工程学院,山东济南250022;2.济南钢铁集团总公司博士后科研工作站,山东济南250101 
李文虎 济南大学材料科学与工程学院,山东济南250022 
AuthorInstitution
ZHAO Zheng School of Materials Science and Engineering, Jinan University, Jinan 250022, China 
LIU Fu-tian 1. School of Materials Science and Engineering, Jinan University, Jinan 250022, China;2. The Postdoctoral Programme of Jinan Iron and Steel Croup Corporation, Jinan 250101, China 
LI Wen-hu School of Materials Science and Engineering, Jinan University, Jinan 250022, China 
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中文摘要:
      为提高钢材表面的耐磨损和耐腐蚀能力,以Mo粉、Fe-B合金粉和Fe粉为基本原料,加入WC、Cr3 C2、TiC等碳化物硬质相和C、Ni、Cr等合金元素,采用真空液相烧结工艺,在Q235钢基体上制备多元硬质合金覆层材料。对覆层材料进行了洛氏硬度测试及弯曲强度测试,结果表明:CW系覆层材料的硬度达到HRA84.8,是Q235钢基体硬度的2.3倍;CW系覆层材料的弯曲强度值达到1175. 52MPa,是Q235钢基体弯曲强度的1.4倍;掺加碳化物硬质相显著提高了Mo2 FeB2硬质合金覆层材料的硬度和弯曲强度。利用扫描电镜观察了硬质合金覆层以及覆层一钢基体界面的微观组织结构,发现硬质合金覆层内部组织结构致密,覆层与钢基体之间形成了具有一定厚度的过渡层。
英文摘要:
      Using Mo powder, Fe-B alloy powder and Fe powder as raw materials, added with WC, Cr3C2, TiC and C, Cr, Ni, multiple hard alloy cladding materials were prepared on Q235 steel substrate to enhance the wear resistance and corrosion resistance by vacuum liquid phase sintering technology. The mechanical properties of cladding materials, including bending strength and hardness were tested. It is shown that the hardness of CW cladding materials is HRA84.8 and it is 2.3 times harder than Q235 steel substrate; the bending strength of CW cladding materials is 1175. 52 MPa and it is l.4 times higher than Q235 steel substrate; when carbide hard phase is added into cladding, the cladding materials possess higher bending strength and hardness than simplex M02FeB2 hard alloy cladding materials. The microstructure and element distribution in the vicinity of claddings and the bond interface were mvestigated by SEM. The structure inside of the cladding was compact. No clear bonding interface existed between cladding and steel substrate, but a transitional layer with a certain thickness was formed.
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