FireDOC Search

displaying 151 - 160 results in total 311

  • Fernando, A.; Leonard, J.; Webb, A.; Bowditch, P.; Dowling, V.
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    Experimental Derivation of Material Combustion Properties for Flame Spread Models.
    Victoria University of Technology, Melbourne, Australia; Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia
    Fire and Materials 2001. 7th International Conference and Exhibition. Proceedings. Interscience Communications Limited. January 22-24, 2001, San Antonio, TX, 315-326 p., 2001

  • Chao, C. Y. H.; Wang, J. H.
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    Comparison of the Thermal Decomposition Behavior of a Non-Fire Retarded and a Fire Retarded Flexible Polyurethane Foam With Phosphorus and Brominated Additives.
    University of Science and Technology, Hong Kong
    Journal of Fire Sciences, Vol. 19, No. 2, 137-156, March/April 2001

  • Li, J.; Li, B.; Zhang, X.; Su, R.
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    Study of Flame Retardants on Thermal Degradation and Charring Process of Manchurian Ash Lignin in the Condensed Phase.
    Northeast Forestry University, PR China
    Polymer Degradation and Stability, Vol. 72, No. 3, 493-498, June 2001

  • Walters, R. N.
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    Fire-Resistant Cyanate Ester-Epoxy Blends. Final Report.
    Galaxy Scientific Corp., Egg Harbor Township, NJ
    Federal Aviation Administration, Washington, DC, DOT/FAA/AR-02/53, May 2002, 18 p.

  • Beyer, G.
    view article (6.554558)

    Flame Retardant Properties of EVA-nanocomposites and Improvements by Combination of Nano.llers with Aluminium Trihydrate.
    Kabelwerk Eupen AG, Malmedyerstrasse 9, B-4700 Eupen, Belgium
    Fire and Materials, Vol. 25, No. 5, 193-197, September/October 2001

  • Lewin, M.; Endo, M.
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    Mn and Zn Compounds as Catalysts of Intumescent Flame Retardancy of Polypropylene.
    Polytechnic Univ., New York, NY; Showa Denko Co., Japan
    Recent Advances in Flame Retardancy of Polymeric Materials: Materials, Applications, Research and Industry Developments, Markets. Volume 11. Business Communications Co., Inc. (BCC). May 22-24, 2000, Business Communications Co., Inc., Norwalk, CT, Stamford, CT, Lewin, M., Editors, 191-202 p., 2000

  • Horrocks, A. R.; Zhang, S.
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    Enhancing Polymer Flame Retardancy by Reaction with Phosphorylated Polyols. Part 2. Cellulose Treated with a Phosphonium Salt Urea Condensate (Proban CC1) Flame Retardant.
    Bolton Institute, Deane Road, Bolton BL3 5AB, UK
    Fire and Materials, Vol. 26, No. 4/5, 173-183, July/October 2002

  • Kwak, S. B.; Nam, J. D.
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    Thermo-Oxidative Stability Study of Polypropylene Composites by Using Cone Calorimetry and Thermogravimetry.
    Sung Kyun Kwan Univ., Suwon, South Korea
    Polymer Engineering and Science, Vol. 42, No. 8, 1674-1685, August 2002

  • Stratakis, G. A.; Stamatelos, A. M.
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    Thermogravimetric Analysis of Soot Emitted by a Modern Diesel Engine Run on Catalyst-Doped Fuel.
    University of Thessaly, Volos, Greece
    Combustion and Flame, Vol. 132, No. 1/2, 157-169, January 2003

  • Davis, R. D.; Gilman, J. W.; Sutto, T. E.; Callahan, J. H.; Trulove, P. C.; DeLong, H. C.
    view article (6.554558)

    Improved Thermal Stability of Organically Modified Layered Silicates.
    National Institute of Standards and Technology, Gaithersburg, MD; Naval Academy and Naval Research Laboratory, Washington, DC; FDA/CFSAN, College Park, MD; Air Force Office of Scientific Research, Arlington, VA
    Clays and Clay Minerals, Vol. 52, No. 2, 171-179, 2004