FireDOC Search

displaying 41 - 50 results in total 336

  • Kanury, A. M.; Martin, S. B.
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    Profile of the Heat-Release Rate Calorimeter.
    Stanford Research Institute, Menlo Park, CA
    University of Edinburgh. Fire Safety of Combustible Materials International Symposium. October 1975, Edinburgh, Scotland, 266-278 p., 1975

  • Wilde, D. G.
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    Review of Test Methods for Fire-Resistant Conveyor Belts.
    Safety in Mines Research Establishment
    University of Edinburgh. Fire Safety of Combustible Materials International Symposium. October 1975, Edinburgh, Scotland, 304-309 p., 1975

  • Holmes, F. H.
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    Flammability Testing of Apparel Fabrics.
    Shirley Institute, Manchester, England
    University of Edinburgh. Fire Safety of Combustible Materials International Symposium. October 1975, Edinburgh, Scotland, 317-324 p., 1975

  • Babrauskas, V.; Peacock, R. D.
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    Heat Release Rate: The Single Most Important Variable in Fire Hazard.
    National Institute of Standards and Technology, Gaithersburg, MD
    Fire Safety Journal, Vol. 18, No. 3, 255-272, 1992
    Fire Retardant Chemicals Association (FRCA). Fire Safety Developments and Testing: Toxicity--Heat Release--Product Development--Combustion Corrosivity. Proceedings. Fall Meeting, 1990. October 20-25, 1990, FRCA, Lancaster, PA, Ponte Vedra Beach, FL, 67-80 p., ['1990', '1992']

  • Snell, J. E.
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    Fire Hazard and Risk: Evaluating Alternative Technologies.
    National Institute of Standards and Technology, Gaithersburg, MD
    National Conference of States on Building Codes and Standards (NCSBCS); Council of American Building Officials; Department of Housing and Urban Development; National Association of Home Builders; National Fire Protection Association; National Fire Sprinkler Association and National Institute of Standards and Technology. Sprinklers in Residential and Commercial Buildings. August 19-20, 1990, Natl. Conf. States on Bldg. Codes and Standards, Charleston, SC, McIntyre, M., Editors, 1-23 p., 1990

  • Smith, E. E.
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    Product Fire Hazard Evaluation.
    Ohio State Univ., Columbus, OH
    JFF/Consumer Product Flammability, Vol. 2, 58-69, March 1975

  • Suzuki, H.
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    Characterization of Factors in Estimating Fire Hazard by Furnace Test Based on Patterns in the Simulation of Fire for the Classification of Organic Interior Building Materials. Part 1. Checks on the Factors in Estimating Fire Hazard of Several Organic Building Materials.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 1, 1-8, 1971

  • Handa, T.
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    Characterization of Factors in Estimating Fire Hazard by Furnace Test Based on Patterns in the Simulation of Fire for the Classification of Organic Interior Building Materials. Part 2. Checks on Factors Concerning the Surface Flame-Spread Rate and Smoke-Evolution of Organic Building Materials by Small Inclined-Type Test Furnace.
    Science University of Tokyo, Japan
    Nihon Kasaigakkai Renbunshu, Vol. 21, No. 1, 25-32, 1971

  • Carhart, H.
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    Fire Hazard Classification of Chemical Vapors Relative to Explosion Proof Electrical Equipment. Interim Report.
    National Academy of Science, Washington, DC
    Coast Guard, Washington, DC, CG-D-109-74, October 1971, 32 p.

  • Pryor, A. J.; Fear, F. A.; Wheeler, R. J.
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    Mass Life Fire Hazard. Experimental Study of the Life Hazard of Combustion Products in Structural Fires.
    Southwest Research Institute, San Antonio, TX
    JFF/Combustion Toxicology, Vol. 1, 191-235, November 1974