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Hydrogen Permeation Characteristics of TiN-Coated Stainless Steels 被引量:1

Hydrogen Permeation Characteristics of TiN-Coated Stainless Steels
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出处 《材料科学与工程(中英文A版)》 2015年第5期197-201,共5页 Journal of Materials Science and Engineering A
关键词 氢渗透性 不锈钢基体 渗透特性 镀锡 涂布薄膜 渗透性能 微观结构 微晶结构 Hydrogen permeation, TiN coating, microstructure, crystal grain, stainless steel.
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参考文献18

  • 1Beachem, C, D. 1972. "A New Model for Hydrogen-Assisted Cracking (Hydrogen 'Embrittlement')." Metall. Trans. 3: 437-51.
  • 2Hirth, J. P. 1980. "Effects of Hydrogen on the Properties of Iron and Steel", Metall. Trans. A 11 : 861-90.
  • 3Nagumo, M., Nakamura, M. and Takai, K. 2001. "Hydrogen Thermal Desorption Relevant to Delayed-Fracture Susceptibility of High-Strength Steels." Metall. Trans. A 32: 339-347.
  • 4Takai, K., Homma, Y., Izutsu, K. and Nagumo, M. 1996. "Identification of Trapping Sites in High-Strength Steels by Secondary Ion Mass Spectrometry for Thermal Desorbed Hydrogen." J. Jpn. Inst. Met. 60 (12): 1155-62.
  • 5Fukuyama, S., Yokogawa, K., Kubo, K. and Araki, M. 1985. "Fatigue Properties of Type 304 Stainless Steel in High Pressure Hydrogen at Room Temperature." Trans. Jpn. Int. Met. 26:325-31.
  • 6Han, G., He, J., Fukuyama, S. and Yokogawa, K. 1998. "Effect of Strain-lnduced Martensite on Hydrogen Environment Embrittlement of sSensitized Austenitic Stainless Steels at Low Temperature." Acta Mater 46: 4559-70.
  • 7Marchi, C. S., Somerday, B. P. and Robinson, S. L. 2007. "Permeability, Solubility and Diffusivity of Hydrogen Isotopes in Stainless Steels at High Gas Pressures." lnt.J. Hydrogen Energ. 32: 100-16.
  • 8Tamura, M. and Shibata, K. 2005. "Evaluation of Mechanical Properties of Metals at 45 MPa Hydrogen."J. Jpn. Inst. Met. 69: 1039-48.
  • 9Hollenberg, G. W., Simonen, E. P., Kalinin, G. and Terlain, A. 1995. "Tritium/Hydrogen Barrier Development." Fusion Eng. Des. 28: 190-208.
  • 10Thornton, J. A. 1974. "Influence of Apparatus Geometry and Deposition Conditions on the Structure and Topography of Tshick Sputtered Coatings." J. Vac. Sci. Technol. 11 : 666-70.

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