FireDOC Search

displaying 311 - 320 results in total 1037

  • Coppens, D. D.; Rabeno, D.; Gillespie, J. W., Jr.; Crane, R.
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    Fire Hardened Composites for Shipboard Structures.
    Anholt Technologies, Inc., Avondale, PA; University of Delaware, Newark; Naval Air Warfare Center, China Lake, CA
    Bridging the Centuries With SAMPE's Materials and Processes Technology. Science of Advanced Materials and Process Engineering Series. Society for the Advancement of Materials and Process Engineering (SAMPE), 45th International SAMPE Symposium and Exhibition. Volume 45. Proceedings. May 21-25, 2000, Long Beach, CA, 1222-1228 p., 2000

  • Babrauskas, V.
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    Ignition of Wood: A Review of the State of the Art.
    Fire Science and Technology Inc., Issaquah, WA
    Volume 1,
    Interscience Communications Ltd.; Building Research Establishment; National Fire Protection Association; National Institute of Standards and Technology; Society of Fire Protection Engineers; and Swedish National Testing and Research Institute. Interflam 2001. (Interflam '01). International Interflam Conference, 9th Proceedings. Volume 1. September 17-19, 2001, Interscience Communications Ltd., London, England, Edinburgh, Scotland, 71-88 p., 2001

  • Grexa, O.; Lubke, H.
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    Flammability Parameters of Wood Tested on a Cone Calorimeter.
    State Forest Products Research Institute, Bratislava, Slovakia
    Polymer Degradation and Stability, Vol. 74, No. 3, 427-432, 2001

  • Grayson, s. J.; Green, A. M.; Gregory, S.
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    Predicting the Fire Performance of Products From Bench Scale Fire Tests.
    FTT, West Sussex, England
    Flame Retardants 2000. (Flame Retardants '00). 9th 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. February 8-9, 2000, Interscience Communications Ltd., London, England, London, England, 15-26 p., 2000

  • Harada, T.
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    Time to Ignition, Heat Release Rate and Fire Endurance Time of Wood in Cone Calorimeter Test.
    Forestry and Forest products Research Institute, Ibaraki, Japan
    Fire and Materials, Vol. 25, No. 4, 161-167, July/August 2001

  • Nyman, J.
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    Equivalent Fire Resistance Ratings of Construction Elements Exposed to Realistic Fires.
    University of Canterbury, Christchurch, New Zealand
    Fire Engineering Research Report 01/13, May 2001, 212 p.

  • Urbas, J.
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    BDMC Interlaboratory Cone Calorimeter Test Program.
    Pacific Fire Laboratory, Kelso, WA
    Fire and Materials, Vol. 26, No. 1, 29-35, January/February 2002

  • Chow, C. L.; Chow, W. K.; Fong, N. K.; Jiang, Z.; Han, S. S.
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    Assessing Fire Behavior of Common Building Materials With a Cone Calorimeter.
    DCL Consultants Limited, Hong Kong, China; Hong Kong Polytechnic Univ., China
    International Journal on Architectural Science, Vol. 5, No. 4, 91-98, 2004

  • Ohlemiller, T. J.; Gann, R. G.
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    Estimating Reduced Fire Risk Resulting From an Improved Mattress Flammability Standard.
    National Institute of Standards and Technology, Gaithersburg, MD
    NIST TN 1446, August 2002, 80 p.

  • Simonson, M.; Blomqvist, P.; Boldizar, A.; Moller, K.; Rosell, L.; Tullin, C.; Stripple, H.; Sundqvist, J. O.
    view article (5.333784)

    Fire-LCA Model: TV Case Study.
    SP Swedish National Testing and Research Institute, Boras, Sweden; IVL-Swedish Environmental Research Institute, Sweden
    SP Report 2000:13, 2000, 219 p.