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等离子体基离子注入制备TiN膜的成分结构 被引量:2

Composition and structure of TiN film prepared by plasma-based ion implantation
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摘要 采用Ti、N等离子体基离子注入和先在基体表面沉积纯钛层然后离子注氮混合两种方法在铝合金基体上制备了TiN膜.利用XPS分析了两种方法制备TiN薄膜的成分深度分布和元素化学价态,并用力学性能显微探针测试对比了TiN膜的纳米硬度.研究表明:两种方法制备的薄膜均由TiN组成,Ti、N等离子体基离子注入薄膜中Ti/N≈1.1,而离子注入混合薄膜中Ti/N≈1.3,Ti、N等离子体基离子注入薄膜表面区域为TiN和TiO2的混合组织,TiN含量多于TiO2,离子注入混合薄膜表面主要是TiO2;Ti、N等离子体基离子注入所制备的薄膜的纳米硬度峰值为12.26 GPa,高于离子注入混合的7.98 GPa. TiN films were prepared by two methods on the aluminium alloy. One method is plasma-based ion implantion of Ti and N, and another is N ion implantation into Ti film, which was deposited on aluminum alloy. The composition depth profiles and element chemical states of the TiN films were analyzed using XPS, and the nano-hardness of the TiN films was measured by mechanical properties microprobe. The results show that the films prepared by both methods were mainly composed of TiN, but the Ti/N ratio in both TiN films is different and they are 1.1 and 1.3 for plasma-based ion implantion and N ion implantation mixing film, respectively. The surface of the Ti and N plasma-based ion implantion film was composed of TiN and a little TiO2, however surface of N ion implantation mixing film was dominated by TiO2. The hardness of 12. 26 GPa for plasma-based ion implantion film is higher than that of 7. 98 GPa for N ion implantation mixing film.
出处 《材料科学与工艺》 EI CAS CSCD 北大核心 2007年第1期40-43,共4页 Materials Science and Technology
基金 高等学校博士学科点专项科研基金资助项目(20040213048)
关键词 等离子体基离子注入 TIN膜 XPS 成分深度分布 元素化学价态 纳米硬度 plasma-based ion implantation TiN film XPS coposition depth profiles element chemical state nano-hardness
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  • 1龙振湖,任春生,闫坤,郭宝海,李有宏,张庆瑜,薛恒春,潘曼云.动态混合高结合力超厚TiN膜[J].大连理工大学学报,1995,35(3):317-320. 被引量:1
  • 2王福贞.表面沉积技术[M].北京:机械工业出版社,1989.251.
  • 3Tian Mingbo,薄膜科学与技术,1991年,2期,738页
  • 4Wang Guanghou,Physics of the interaction of particle with solid (in Chinese),1988年,399页
  • 5Panjan P,Surf Coat Tech,1998年,98卷,1497页
  • 6Su Y L,Wear,1998年,215卷,1/2期,59页
  • 7Chung W K,Thin Solid Films,1997年,307卷,113页
  • 8Yang Q Q,Surf Coat Tech,1996年,78卷,27页
  • 9Panjan P,Thin Solid Films,1996年,281/282卷,298页
  • 10Ma K J,Surf Coat Technol,1995年,76/77卷,297页

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