FireDOC Search

displaying 51 - 60 results in total 236

  • Sarvaranta, L.; Elomaa, M.; Jarvela
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    Study of Spalling Behavior of PAN Fiber-Reinforced Concrete by Thermal Analysis.
    VTT-Technical Research Center of Finland, Espoo; Helsinki Univ., Finland; Jyväskylä Univ., Finland
    Fire and Materials, Vol. 17, No. 5, 225-230, September/October 1993

  • Mulroy, W. J.; Grimes, J. W.
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    Ice Quality and Energy Utilization Efficiency Tests of Four Commercial Ice Makers.
    National Bureau of Standards, Washington, DC
    Army Natick Laboratories, MA, NBSIR 74-547, March 27, 1974, 10 p.

  • Ings, J. B.; Brown, P. W.
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    Evaluation of Hydrated Calcium Aluminate Compounds as Energy Storage Media.
    National Bureau of Standards, Washington, DC
    Department of Energy, Washington, DC, NBSIR 82-2531, July 1982, 15 p.

  • Shaw, J. R.; Urbas, J.
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    Intermediate-Scale Calorimeter for Building Materials and Assemblies.
    Weyerhaeuser Fire Technology Lab., Longview, WA
    Fire and Materials, Vol. 17, No. 6, 259-263, November/December 1993

  • Gould, D.; Fairley, T.
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    Commission of the European Communities' Research Program on the Fire Behavior of Furniture.
    Commission of the European Communities, Brussels, Belgium
    Fire Retardant Chemicals Assoc. Model Building Codes, International Electrical Standards and European Fire Safety Directives. A Behind the Scenes Look at FR Codes, Standards and Directives. Educational Workshop. Educational Committee. October 29, 1993, Tucson, AZ, 1-10 p., 1993

  • Ingason, H.; Gustavsson, S.; Dahlberg, M.
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    Heat Release Rate Measurements in Tunnel Fires. BRANDFORSK Project 723-924.
    Swedish National Testing and Research Institute, Boras, Sweden
    SP REPORT 1994:08, 1994, 64 p.

  • Dlugogorski, B. Z.; Mawhinney, J. R.; Duc, V. H.
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    Measurement of Heat Release Rates by Oxygen Consumption Calorimetry in Fires Under Suppression.
    National Research Council of Canada, Ottawa, Ontario
    International Association for Fire Safety Science. Fire Safety Science. Proceedings. 4th International Symposium. July 13-17, 1994, Intl. Assoc. for Fire Safety Science, Boston, MA, Ottawa, Ontario, Canada, Kashiwagi, T., Editors, 877-888 p., 1994

  • Paul, K.
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    Review of the Role and Uses of the Cone Calorimeter in Fire Tests of Upholstery and Other Material Composites.
    Rapra Technology Limited, Shropshire, UK
    Progress in Rubber and Plastics Technology, Vol. 9, No. 4, 286-320, 1993

  • Vanspeybroeck, R.; VanWesemael, E.; VanHees, P.; Vandevelde, P.
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    Calorimetric Combustion Assessment of Polyurethane Flexible Foam and Fabric Composites.
    Urethane Polymers Research and Development, Terneuzen, The Netherlands; Gent Univ., Belgium
    Cellular Polymers, Vol. 12, No. 5, 374-389, 1993

  • Crowley, D. P.; Tempesta, F. L.; Castle, G. K.; Belason, E. B.; D'Avanzo, L. J.
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    Test Facilities for Measuring the Thermal Response of Materials to the Fire Environment.
    Avco Systems, Lowell, MA; Avco Thermal Properties and Fire Testing Laboratory, Lowell, MA
    Journal of Testing and Evaluation, Vol. 1, No. 5, 363-368, September 1973