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Analysis of the Interaction of Pulsed Laser with Nanoporous Activated Carbon Cloth

Analysis of the Interaction of Pulsed Laser with Nanoporous Activated Carbon Cloth
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摘要 Interaction of pulsed transversely excited atmospheric (TEA) CO2-1aser radiation at 10.6 μm with nanoporous activated carbon cloth was investigated. Activated carbon cloth of different adsorption characteristics was used. Activated carbon cloth modifications were initiated by laser pulse intensities from 0.5 to 28 MW/cm^2, depending on the cloth adsorption characteristics. CO2 laser radiation was effectively absorbed by the used activated carbon cloth and largely converted into thermal energy. The type of modification depended on laser power density, number of pulses, but mostly on material characteristics such as specific surface area. The higher the surface area of activated carbon cloth, the higher the damage threshold. Interaction of pulsed transversely excited atmospheric (TEA) CO2-1aser radiation at 10.6 μm with nanoporous activated carbon cloth was investigated. Activated carbon cloth of different adsorption characteristics was used. Activated carbon cloth modifications were initiated by laser pulse intensities from 0.5 to 28 MW/cm^2, depending on the cloth adsorption characteristics. CO2 laser radiation was effectively absorbed by the used activated carbon cloth and largely converted into thermal energy. The type of modification depended on laser power density, number of pulses, but mostly on material characteristics such as specific surface area. The higher the surface area of activated carbon cloth, the higher the damage threshold.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2011年第11期979-984,共6页 材料科学技术(英文版)
基金 supported by the Ministry of Education and Science of the Republic of Serbia (Contracts Nos. 45005 and 172019)
关键词 Activated carbon cloth Transversely excited atmospheric (TEA) C02 laser Nanoporous material Laser-material interaction Activated carbon cloth Transversely excited atmospheric (TEA) C02 laser Nanoporous material Laser-material interaction
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参考文献20

  • 1N. Rykalin, A. Uglov, I. Zuev and A. Kokora: Laser and Electron Beam Material Processing Handbook, MIR Publishers Moscow, 1988.
  • 2L.G. Hu. S.M. Wang, B.Z. Zhang and Y.W. Zeng: Carbon, 2006, 44, 1725.
  • 3H.A. Michelsen: J. Chem. Phys. 2003, 118, 7012.
  • 4F. Al-Sulairnan and B.S. Yilbas: Lasers Eng., 2005,15, 119.
  • 5K.T. Voisey, S. Fouquet, D. Roy and T.W. Clyne: Opt. Laser. Eng., 2006, 44, 1185.
  • 6C.Z. wang, K.M. Ho, M.D. Shirk and P.A. Molian: Phys. Rev. Lett., 2000, 58, 4092.
  • 7M. Sreckovic, B. Kaludjerovic, S. Bojanic, N. Ivanovic, V. Rajkovic, S. Ristic and Z. Fidanovski: Laser Interaction with Carbon Type Materials, in Proc. 5th Congress on Modern Optics, SPIE, Budapest, Hungary, 1998, 134.
  • 8J.M. Stasic, M.Z. Sredkovid, B.V. Kaluderovid and S.S. Ristid: Hem. Ind., 2007, 61, 60. (in Serbo-Croatian).
  • 9B.V. Kaludjerovic, M.Z. Sreckovic, M.S. Trtica, A.A. Ionin, B.M. Babic and L.M. Milovanovic: Carbon, 2004, 42,443.
  • 10B. Kaludjerovic, M. Trtica, M. Sreckovic, B. Babic, S. Zec and Z. Bogdanov: Mater. Sci. Forum, 2004, 453-454, 355.

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