FireDOC Search

displaying 161 - 170 results in total 175

  • Rugaiganisa, B. M. S.
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    Measurement With the NIST Low Temperature Guarded-Hot-Plate Apparatus to Determine the Thermal Conductivity of a Polyurethane Foam Specimen. Progress Report.
    National Institute of Standards and Technology, Gaithersburg, MD
    Progress Report
    Progress Report
    March 16, 1998
    14 p.

  • Daems, D.; Rosbotham, I. D.
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    Factors Affecting the Long Term Dimensional Stability of Rigid Foam for the Construction Industry.
    ICI Polyurethanes, Everberg, Belgium
    Cellular Polymers, Vol. 13, No. 3, 197-209, 1994

  • Boyd, R. B.; Crandlemere, R. W.
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    Evaluation of Fire Safety of Rigid Foamed Polyurethane as a Wall Cavity Insulation With Notes on Toxicity of Thermal Decomposition Products. Final Report.
    Factory Mutual Research Co., Johnston, RI
    FMRC Serial No. 18829
    Charles A. Maguire and Associates, Providence, RI, FMRC Serial No. 18829
    February 1969
    30 p.

  • Ohlemiller, T. J.; Rogers, F. E.
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    Survey of Several Factors Influencing Smoldering Combustion in Flexible and Rigid Polymer Foams.
    Princeton Univ., NJ
    Journal of Fire and Flammability, Vol. 9, 489-509, October 1978
    National Bureau of Standards, Washington, DC,

  • Hotta, H.; Sato, H.; Ochi, T.; Takeyasu, H.
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    Novel Polyols for All-Water-Blown Open-Cell Rigid Polyurethane Foam.
    Asahi Glass Co., Ltd., Kanagawa-Ken, Japan
    Defining the Future Through Technology. Polyurethanes Conference 2000. Proceedings. October 8-11, 2000, Boston, MA, 135-140 p., 2000

  • Weil, E. D.; Levchik, S. V.
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    Commercial Flame Retardancy of Polyurethanes.
    Polytechnic Univ., Brooklyn, NY; Akzo Nobel Chemicals, Dobbs Ferry, NY
    Journal of Fire Sciences, Vol. 22, No. 3, 183-210, May 2004

  • Cox-Smith, I.
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    Insulating With Expanded Polystryrene Foam.
    Build, 20-21, June/July 2004

  • Levchik, S. V.; Weil, E. D.
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    Thermal Decomposition, Combustion and Fire-Retardancy of Polyurethanes - A Review of the Recent Literature.
    Akzo Nobel Chemicals, Dobbs Ferry, NY; Polytechnic Univ., Brooklyn, NY
    Polymer International, Vol. 53, No. 11, 1585-1610, November 2004

  • Borms, R.; Wilmer, R.; Bron, S.; Zilberman, Y.; Georlette, P.
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    Efficient Reactive Flame Retardant Systems for Production of Flexible and Rigid Polyurethane Foams.
    Eurobrom B. V., Rijswijk, The Netherlands; IMI, Haifa Bay, Israel; DSBG, Beer Sheva, Israel
    Flame Retardants 2004. (Flame Retardants '04). 11th Conference Proceedings. British Plastics Federation and Interscience Communications in collaboration with the Association of Plastics Manufacturers, European Flame Retardant Association and the Fire Retardant Chemicals Association. January 27-28, 2004, Interscience Communications Ltd., London, England, London, England, 163-170 p., 2004

  • Hatchett, D. W.; Kinyanjui, J. M.
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    FTIR Analysis of Chemical Gradients in Thermally Processed Molded Polyurethane Foam.
    Nevada Univ., Las Vegas; Pacific Northwest National Laboratory, Richland, WA
    Journal of Cellular Plastics, Vol. 43, No. 3, 183-196, May 2007