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激光表面合金化制备TiC颗粒增强复合材料微观结构及磨擦学性能研究
引用本文:许长庆,李贵江.激光表面合金化制备TiC颗粒增强复合材料微观结构及磨擦学性能研究[J].中国激光,2008,35(11):1770-1772.
作者姓名:许长庆  李贵江
作者单位:School of Materials Science and Eugineering,Hebei University of Technology
摘    要:To strengthen the wear resistance of AISI321 stainless steel, the TiC carbide-reinforced composite coating was produced by laser surface alloying. The microstructure, microhardness, and wear resistance of the composite coatings were investigated using optical microscopy, X-ray diffraction (XRD) meter, scanning electron microscopy (SEM), microhardness tester, and sliding wear tester. The results show that the composite coating is metallurgically bonded to the substrate and the microstructure is fine and uniform. The hardness of the composite coating is up to 400 HV, which is 2.5 times that of the substrate. Under room temperature and oil lubrication condition, the sliding wear tests indicate the friction coefficient and weight loss of the composite coating are smaller than those of substrate. The worn surface of the composite coatings is much smoother than that of the substrate, without grooves and crater. The wear resistance of the material has been greatly improved by laser surface alloying.

收稿时间:2008/9/17

Microstructure and wear resistance of TiC carbide-reinforced composite coating prepared by laser surface alloying
Changqing Xu,Guijiang Li.Microstructure and wear resistance of TiC carbide-reinforced composite coating prepared by laser surface alloying[J].Chinese Journal of Lasers,2008,35(11):1770-1772.
Authors:Changqing Xu  Guijiang Li
Abstract:To strengthen the wear resistance of AISI321 stainless steel, the TiC carbide-reinforced compos-ite coating was produced by laser surface alloying. The microstructure, microhardness, and wear resistance of the composite coatings were investigated using optical microscopy, X-ray diffraction (XRD) meter, scan-ning electron microscopy (SEM), microhardness tester, and sliding wear tester. The results show that the composite coating is metallurgically bonded to the substrate and the microstructure is fine and uniform. The hardness of the composite coating is up to 400 HV, which is 2.5 times that of the substrate. Under room temperature and oil lubrication condition, the sliding wear tests indicate the friction coefficient and weight loss of the composite coating are smaller than those of substrate. The worn surface of the composite coatings is much smoother than that of the substrate, without grooves and crater. The wear resistance of the material has been greatly improved by laser surface alloying.
Keywords:laser technique  laser surface alloying  microstructure  microhardness  wear
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