期刊文献+

镀TiN和镀锌钢板的辉光放电原子发射光谱深度轮廓分析(英文) 被引量:1

Depth profiling of TiN and zinc coatings on steel with glow discharge atomic emission spectrometry
下载PDF
导出
摘要 金属或合金表面的导电或非导体镀层,对改善材料的性能,降低材料的损耗具有很大的作用。如在钢表面镀一层TiN,钢的抗磨损性能会得到提升。探讨各种元素在基体材料表面的分布和渗透行为,对新材料的研究具有十分重要的意义。本文运用直流辉光放电原子发射光谱对镀TiN和镀锌钢板进行了深度轮廓分析。放电电压、放电功率和压力对深度轮廓分析的影响进行了研究,在功率为24.5~28W和500~1000Pa放电压力下,可以得到每层4μmTiN的深度分辨率,并且Ti的谱线强度相对较高。结果表明在相对较低的放电功率和压力下,深度分辩较好。在优化操作条件下,即放电电压700V,放电电流35~40mA,Ar压力553Pa,可以得到Ti的深度轮廓信息,在总深度为60μm的镀层中,以4μm的深度分辨率,Ti的含量从28%降低到0.02%。 A conductive or non-conductive coating on the surface of metal and alloy plays an important part in improving the characteristics of material and reducing the wear and tear in use of material. For example, the abradibility of the steel sheet with TiN coating will be increased. To get the concentration of elements on the different coating is very important for the study of the new material. In this paper, a direct current glow discharge atomic emission spectrometry (dc-GDAES) system was applied for the depth profiling of TiN and Zn coating on steel sheet. The influence of operating parameters such as discharge voltage, power and pressure on depth profile was discussed. At the discharge power of 24.5-28 W and Ar pressure of 500-1 000 Pa, a 4μm of depth resolution per layer and a relative high Zn and Ti intensity could be obtained. It was found that a good depth resolution could be obtained under relatively low discharge power and pressure. The optimum operation parameters were as follows: the discharge voltage is 700 V, the discharge current is 35-40 mA, the Ar pressure is 553 Pa. The quantitative depth profile approach of TiN coating on steel sheet was achieved. The concentration of Ti in per 4 μm coating was detected. The concentration of Ti decreased from 28% to 0.02% in the 60μm TiN coating.
出处 《冶金分析》 EI CAS CSCD 北大核心 2007年第10期1-5,共5页 Metallurgical Analysis
基金 Jiangsu University Foundation(06JDG030),Scientific Research Foundationfor the Returned Overseas Chinese Scholars,State Education Ministry
关键词 深度轮廓分析 辉光放电 原子发射光谱 镀TiN和镀锌钢板 depth profile glow discharge atomic emission spectrometry TiN and zinc coating steel sheet
  • 相关文献

参考文献13

  • 1Webb M,Hoffmann V,Hieftje G.Surface elemental mapping using glow discharge-optical emission spectrometry[J].Spectrochimica Acta Part B,2006,61:1279-1284.
  • 2Chen J J,Feng Z S,Jiang M L,et al.The effect of anodizing voltage on the electrical properties of Al-Ti composite oxide film on aluminum[J].Journal of Electroanalytical Chemistry,2006,590:26-31.
  • 3Galindo R,Forniés E,Albella J.Compositional depth profiling analysis of thin and ultrathin multiplayer coatings by radio-frequency glow discharge optical emission spectroscopy[J].Surface & Coatings Technology,2006,200:6185-6189.
  • 4Ortiz A,Dyaz-Parralejo A,Borrero-Lopez O,et al.Effect of ion nitriding on the crystal structure of 3 mo1% Y2O3-doped ZrO2 thin-films prepared by the sol-gel method[J].Applied Surface Science,2006,252:6018-6021.
  • 5Watanabe M,Toyoda E,Handa T,et al.Evolution of patinas on copper exposed in a suburban area[J].Corrosion Science,2007,49:766-780.
  • 6Rout T K.Nanolayered oxide on a steel surface reduces surface reactivity:Evaluation by glow discharge optical emission spectroscopy (GDOES)[J].Scripta Materialia,2007,56:573-576.
  • 7Kaestner P,Olfe J,Rie K T.Plasma-assisted boriding of pure titanium and TiAl6V4[J].Surface and Coatings Technology,2001,142-144:248-252.
  • 8Spitsberg I T,Putyera K.Depth profile and quantitative trace element analysis of diffusion aluminided type layers on Ni-base superalloys using high-resolution glow-discharge mass spectrometry[J].Surface and Coatings Technology,2001,139:35-43.
  • 9Asam T.Glow discharge optical spectroscopy depth profile analysis of conductive and nonconductive samples in a commercial service laboratory[J].Surface and Coatings Technology,1999,116-119:310-312.
  • 10Allebrandt D,Hoche H,Scheerer H,et al.Oxidation resistance of SiAlCN:H-coatings[J].Surface & Coatings Technology,2007,201:5172-5175.

同被引文献12

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部