FireDOC Search

displaying 671 - 680 results in total 1037

  • Yuen, R.; Yeoh, G. H.; Casey, R.; Chandrasekaran, V.; deVahlDavis, G.; Leonardi, E.
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    Three-Dimensional Numerical Prediction ofBurning of Wood in a Cone Calorimeter.
    University of New South Wales, Australia
    National Institute of Standards and Technology (NIST) and Society of Fire Protection Engineers (SFPE). International Conference on Fire Research and Engineering (ICFRE). Proceedings. September 10-15, 1995, SFPE, Boston, MA, Orlando, FL, Lund, D. P.; Angell, E. A., Editors, 223-228 p., 1995

  • Opstad, K.; Magnussen, B. F.
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    Algorithm for Thermal Flame Spread on Solid Surfaces by the Use of Cone Calorimeter Fire Test Data in a CFD-Model.
    University of Trondheim, Norway; Norwegian Institute of Technology, Norway
    Thesis, May 1995,
    Modelling of Thermal Flame Spread on Solid Surfaces in Large-Scale Fires, 1-15 p., 1995

  • Babrauskas, V.; Wetterlund, I.
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    Optimising Foil Thickness for Cone Calorimeter Tests of Furniture Composites. Short Communication.
    Fire Science and Technology Inc., Damascus, MD; Swedish National Testing and Research Institute, Boras, Sweden
    Fire Safety Journal, Vol. 22, No. 4, 417-422, 1994

  • Sorathia, U.; Dapp, T.; Kerr, J.
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    Flammability Characteristics of Composites for Shipboard and Submarine Internal Applications.
    David Taylor Research Center, Annapolis, MD
    Society for the Advancement of Material and Process Engineering. How Concept Becomes Reality. Volume 36. Part 2. Proceedings. April 15-18, 1991, San Diego, CA, 1868-1878 p., 1991

  • Soderbom, J.
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    Combustion Behavior of Upholstered Furniture (CBUF) Work Package Report on Data Management.
    Swedish National Testing Institute, Boras, Sweden
    SP REPORT 1995:50, 1995, 44 p.

  • Grand, A.
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    Fire Retardant Polymers and the Cone.
    SFPE Bulletin, 3, Winter 1995

  • Piers, A. S.
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    Enhanced Performance of Composite Materials Under Fire Conditions.
    Brunner Mond and Company Limited
    Paper 15,
    Institute of Marine Engineers. Polymers in a Marine Environment. Proceedings. October 23-24, 1991, Institute of Marine Engineers, London, England, London, England, 123-131 p., 1991

  • Nalepa, C. J.
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    Use of the Cone Calorimeter as a Probe to Flame Retardant Mechanisms.
    Albemarle Corp., Baton Rouge, LA
    Product Safety Corporation. International Conference on Fire Safety, 20th. Volume 20. Proceedings. January 9-13, 1995, Product Safety Corp., Sunnyvale, CA, Millbrae, CA, 229-240 p., 1995

  • Noll, D. C.; Sorathia, U.
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    Correlation Between Quarter-Scale Flashover Fire Tests and Cone Calorimeter Heat Release Rates. [Abstract Only]
    Naval Surface Warfare Center, China Lake, CA
    Federal Aviation Administration. Fire Calorimetry. July 27-28, 1995, Gaithersburg, MD, Hirschler, M. M.; Lyons, R. E., Editors, 153 p., 1995

  • Buch, R. R.
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    Cone Calorimeter-Applications in Fire Resistant Materials Characterization and Development.
    Dow Corning Corp., Auburn, MI
    Federal Aviation Administration. Fire Calorimetry. July 27-28, 1995, Gaithersburg, MD, Hirschler, M. M.; Lyons, R. E., Editors, 154-156 p., 1995