FireDOC Search

displaying 11 - 20 results in total 44

  • Yang, L. Z.; Guo, Z. F.; Chen, X. J.; Fan, W. C.
    view article (8.606201)

    Predicting the Temperature Distribution of Wood Exposed to a Variable Heat Flux.
    University of Science and Technology of China. Hefei, Anhui Province. P.R. China
    Combustion Science and Technology, Vol. 178, No. 12, 2165-2176, December 2006
    Dynamics of Explosions and Reactive Systems, Twentieth (20th) International Colloquium. Proceedings. July 31-August 5, 2005, Montreal, Canada, Sirignano, W. A.; Williams, F. A., Editors, 2006

  • Omar, M.; Kuwana, K.; Saito, K.; Couch, C.
    view article (8.606201)

    Use of Infrared Thermograph Technique to Investigate Welding Related Industrial Fires.
    Clemson Univ., SC; Kentucky Univ., Lexington; Toyota Motor Manufacturing Kentucky (TMMK), Georgetown, KY
    Fire Technology, Vol. 43, No. 4, 319-329, ['2007', 'December 2007']

  • Handa, T.; Hamada, T.; kaneko, K.
    view article (8.49406)

    Characterization on the Behaviors of the Shallow Flows of Fire Products.
    Science University of Tokyo, Japan
    Japanese Association of Fire Science and Engineering. Main Reports on Production Movement and Control of Smoke in Buildings. Occasional Report. No. 1. 1974, 154-178 p., 1974

  • Tsuzuki, R.L.; Hashizume, A.; Mori, H.
    view article (8.49406)

    Teijin's Flame Retardant Fibers "TEVIRON and VALREN".
    Teijin Ltd., Osaka, Japan
    LeBland Research Corp. Textile Flammability Symposium Proceedings, 1974. April 17-18, 1974, LeBlanc Research Corp., East Greenwich, RI, Charlotte, NC, LeBlanc, R. B., Editors, 283-312 p., 1974

  • Straus, S.; Madorsky, S. L.
    view article (8.49406)

    Pyrolysis of Some Polyvinyl Polymers at Temperatures Up to 1,200 deg C.
    Journal of Research of the National Bureau of Standards. A. Physics and Chemistry, Vol. 66A, No. 5, 401-406, September/October 1962
    Paper 66A5-175,

  • Chiang, W. Y.; Hu, H. C. H.
    view article (8.49406)

    Phosphate-Containing Flame-Retardant Polymers With Good Compatibility to Polypropylene. Part 1. The Effect of Phosphate Structure on Its Thermal Behavior.
    Tatung Univ., Taipei, Taiwan; Industrial Technology Research Institute, Hsinchu, Taiwan
    Journal of Applied Polymer Sciences, Vol. 81, 1125-1135, August 2001

  • Geith, J.; Holl, G.; Klapotke, T. M.; Weignad, J. J.
    view article (8.49406)

    Pyrolysis Experiments and Thermochemistry of Mononitrobiuret (MNB) and 1,5-dinitrobiuret (DNB).
    Munich Univ., Germany; Bundeswehr Research Institute for Materials, Swisttal, Germany
    Combustion and Flame, Vol. 139, No. 4, 358-366, December 2004

  • Shufen, L.; Zhi, J.; Kaijun, Y.; Shuqin, Y.; Chow, W. K.
    view article (8.49406)

    Studies on the Thermal Behavior of Polyurethanes.
    University of Science and Technology of China, Hefei, Anhui; Hong Kong Polytechnic Univ., China
    Polymer-Plastics Technology and Engineering, Vol. 45, No. 1, 95-108, 2006

  • Li, X. R.; Koeski, H.; Iwata, Y.; Lim, W. S.
    view article (8.49406)

    Evalution of Various Bio-Mass Fuels With Heat Flux Measurements and Gas Vaporization Test.
    National Research Institute of Fire and Disaster, Tokyo, Japan
    Volume 2,
    Interflam 2007. (Interflam '07). International Interflam Conference, 11th Proceedings. Volume 2. September 3-5, 2007, London, England, 1379-1387 p., 2007

  • Li, X. R.; Lim, W. S.; Iwata, Y.; Koseki, H.
    view article (8.49406)

    Thermal Behavior of Sewage Sludge Derived Fuels.
    National Research Institute of Fire and Disaster, Tokyo, Japan
    Thermal Science: International Scientific Journal, Vol. 12, No. 2, 137-148, 2008