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A Study of Multi-Permeating TiN/Ti Alloying Layer Using Plasma Surface Alloying Technology
引用本文:刘燕萍 徐晋勇 隗小云 王建忠 高原 徐重 张广秋 葛袁静 张跃飞. A Study of Multi-Permeating TiN/Ti Alloying Layer Using Plasma Surface Alloying Technology[J]. 等离子体科学和技术, 2006, 8(2): 213-216
作者姓名:刘燕萍 徐晋勇 隗小云 王建忠 高原 徐重 张广秋 葛袁静 张跃飞
作者单位:[1]Taiyuan University of Technology, Taiyuan 030024, China [2]Beijing Institute of Printing, Beijing 102600, China
基金项目:supported by National Natural Science Foundation of China (No. 50374054) and the Natural Science Foundation of Shanxi Province (No. 20031050)
摘    要:
TiN/Ti multi-permeating alloying layer has been formed on the low carbon steel by means of the double glow-discharge plasma surface alloying technique and hollow-cathode effect. The alloying layer was detected by axiovert 25 CA optical microscope with computer analyzing software (LEC), GDA-2 glow discharge spectroscopy (GDS), X-ray diffraction (XRD) and galvanochemical method. The results showed that the thickness of TiN/Ti multi-permeating alloying layer was about 10μm, the content of Ti on the surface was up to 63.48 wt% and the content of N was up to 12.46 wt%. The atom Ti and N concentrations changed gradually across the depth of the alloying layer and the preferred orientation of TiN/Ti alloying layer was crystal surface (200). The multi-permeating alloying layer and substrate were combined through metallurgy. The surface appearances of the multi-permeating alloying layer were uniform and of a compact cellular structure. The hardness of the surface was about 1600-3000 HV0.1. The corrosion resistance of the permeating TiN/Ti alloying layer in 0.5 mol/L H2SO4 solution was greatly increased and the corrosion rate was only 0.3082 g/m^2. h.

关 键 词:等离子表面技术 双重发光过程 扩散 腐蚀电阻
收稿时间:2005-03-24
修稿时间:2005-03-24

A Study of Multi-Permeating TiN/Ti Alloying Layer Using Plasma Surface Alloying Technology
LIU Yanping, XU Jinyong, KUI Xiaoyun, WANG Jianzhong, GAO Yuan, XU Zhong, ZHANG Guangqiu, GE Yuanjing, ZHANG Yuefei. A Study of Multi-Permeating TiN/Ti Alloying Layer Using Plasma Surface Alloying Technology[J]. Plasma Science & Technology, 2006, 8(2): 213-216
Authors:LIU Yanping   XU Jinyong   KUI Xiaoyun   WANG Jianzhong   GAO Yuan   XU Zhong   ZHANG Guangqiu   GE Yuanjing   ZHANG Yuefei
Abstract:
Keywords:plasma surface technology   TiN multi-layer   double glow discharge process  diffusion   structure   corrosion resistance
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