FireDOC Search

displaying 11 - 18 results in total 18

  • Takahashi, W.; Sugawa, O.; Ogahara, I.
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    Fire Retardance Mechanism for Ethylene Copolymers Given by Magnesium Hydroxide.
    Science University of Tokyo, Japan
    Bulletin of Japanese Association of Fire Science and Engineering, Vol. 41, No. 2, 1-10, 1993

  • Larcey, P. A.; Redfern, J. P.; Bell, G. M.
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    Studies on Magnesium Hydroxide in Polypropylene Using Simultaneous TG-DSC.
    Rheometric Scientific Ltd., Surrey, UK
    Fire and Materials, Vol. 19, No. 6, 283-285, 1995

  • LeBras, M.; Rose, N.; Bourbigot,S.; Henry, Y.; Delobel, R.
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    Degradation Front Model: A Tool for the Chemical Study of the Degradation of Epoxy Resins in Fire.
    Universite des Sciences et Technologies de Lille, France; Aerospatiale, Suresnes, France
    Jounal of Fire Sciences, Vol. 14, No. 3, 199-234, May/June 1996

  • Balazsik, K.; Torok, B.; Kiricsi, I.; Dekany, I.; Bartok, M.
    view article (1.0)

    Characterization of Cinchonidine Doped Montmorillonite Supported Noble Metal Catalysts by Thermoanalytical Methods.
    Jozsef Attila Univ., Szeged
    Journal of Thermal Analysis and Calorimetry, Vol. 56, No. 1, 337-343, 1999

  • Bockhorn, H.; Hornung, A.; Hornung, U.; Lochner, S.
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    Pyrolysis of Polystyrene as the Initial Step in Incineration, Fires, or Smoldering of Plastics: Investigations of the Liquid Phases.
    Universitat Karlsruhe (TH), Germany
    Combustion Institute, Symposium (International) on Combustion, 28th. Proceedings. Volume 2. July 20-August 4, 2000, Combustion Institute, Pittsburgh, PA, Edinburgh, Scotland, Candel, S.; Driscoll, J. F.; Burgess, A. R.; Gore, J. P., Editors, 2667-2673 p., 2000

  • López-Fonseca, R.; Landa, I.; Elizundia, U.; González-Velasco, J. R.
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    Thermokinetic Modeling of the Combustion of Carbonaceous Particulate Matter.
    Universidad del País Vasco/EHU, Bilbao, Spain
    Combustion and Flame, Vol. 144, No. 1/2, 398-406, January 2006

  • Ohlemiller, T. J.; Shields, J. R.
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    Aspects of the Fire Behavior of Thermoplastic Materials.
    National Institute of Standards and Technology, Gaithersburg, MD
    ['NIST TN 1493', 'NIST Technical Note 1493']
    NIST TN 1493; NIST Technical Note 1493
    January 2008
    158 p.

  • Lin, X.; Yun, Y.; Qiyuan, X.
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    Experimental Study on Degradation Properties of Typical Polyurethane Foam Under Different Gas Atmospheres and Different Heating Rates.
    Shanghai Fire Research Institute of MPS, China; State Key Laboratory of Fire Science, USTC, Hefei, China
    Journal of Applied Fire Science, Vol. 17, No. 2, 167-175, 2007-2008