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The Effect of Nitrogen Gas Flow Rate on the Cr-Containing DLC (Diamond-Like Carbon) Coating by AEGD Hybrid-CVD Coating Process 被引量:1
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作者 Yong-Ki Cho Jae-Hoon Lee +1 位作者 Masahiro Okumiya Sang-Gweon Kim 《Advances in Materials Physics and Chemistry》 2017年第5期198-211,共14页
The development of electric and hybrid automobiles has gained momentum with the growth of interest in the field of miniaturization of electrode materials. In particular, technologies that improve the electrical proper... The development of electric and hybrid automobiles has gained momentum with the growth of interest in the field of miniaturization of electrode materials. In particular, technologies that improve the electrical property of stainless steel, while maintaining corrosion resistance, are gaining interest in terms of maintaining specific resistivity. The study on metal doping in diamond-like carbon coating is currently in progress to enhance the characteristics of conductivity and corrosion resistance with excellent properties such as corrosion resistance and lubrication coating. It is the process of using Cr arc with DLC coating to actuate AEGD. The change of I(D)/I(G) (Graphite peak (G) and disordered bond peak (D)) ratio and G-peak position in Cr-containing DLC film causes graphitization and thus lowers the basic electric resistance. Simultaneous input of nitrogen gas leads to deposition of CrN by a specific ratio of Cr and N in the DLC coating, and the nitrogen atoms replace hydrogen in bonding to increase the sp3 bond structure in the DLC film, in which CrN is not deposited, to result in specific resistivity of a specific value or less. 展开更多
关键词 Cr(N)-C:H Film Nitrogen DOPING Graphitic Carbon Electrical RESISTIVITY Plasma CVD arc enhanced glow discharge (aegd)
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加弧辉光离子渗镀技术新进展 被引量:11
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作者 潘俊德 《世界科技研究与发展》 CSCD 2002年第3期32-35,共4页
本文介绍了加弧辉光离子渗镀技术的基本原理 ,几年来在基础研究和应用研究方面取得的新进展 ,以及本技术的延伸与扩展。研究表明该技术可以在普通碳钢、钛合金表面形成各种金属及合金的渗层、镀层、渗镀结合层 ,也可在其表面合成金属氮... 本文介绍了加弧辉光离子渗镀技术的基本原理 ,几年来在基础研究和应用研究方面取得的新进展 ,以及本技术的延伸与扩展。研究表明该技术可以在普通碳钢、钛合金表面形成各种金属及合金的渗层、镀层、渗镀结合层 ,也可在其表面合成金属氮碳化合物薄膜 ,达到提高表面耐磨、抗蚀。 展开更多
关键词 加弧辉光离子渗镀技术 辉光放电 弧光放电 离子渗镀 电子浴辅助 离子束增强 金属碳氮化合物薄膜 渗镀工艺
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