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Evaluation of Sprinkler Systems for Ships Based on Heat Release Rate.
Research Institute of Marine Engineering, Higashimurayama, Tokyo
CIB W14/93/2 (J),
Tsukuba Building Test Laboratory, Center for Better Living. Japan Symposium on Heat Release and Fire Hazard, First (1st) Proceedings. Session 3. Scope for Next-Generation Fire Safety Testing Technology. May 10-11, 1993,
Tsukuba, Japan,
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1993
Kashiwagi, T.; Babrauskas, V.
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Progress Report on U.S. Research on Materials and Test Methods.
National Institute of Standards and Technology, Gaithersburg, MD
U.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 12th Joint Panel Meeting. October 27-November 2, 1992,
Building Research Inst., Ibaraki, Japan Fire Research Inst., Tokyo, Japan,
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1992
Hirata, T.
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Fire-Proofing of Wood and Related Problems in Japan.
Forestry and Forest Products Research Inst., Ibaraki, Japan
Science University of Tokyo, Japan. '93 Asian Fire Seminar. October 7-9, 1993,
Tokyo, Japan,
89-101 p.,
1993
Karlsson, B.
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Mathematical Models for Calculating Heat Release Rate in the Room Corner Test.
Lund Univ., Sweden
American Society for Testing and Materials (ASTM). Fire and Flammability of Furnishings and Contents of Buildings. ASTM STP 1233. Sponsored by ASTM Committee E5 on Fire Standards and Its Subcommittee E05.32 on Research. December 7, 1992,
ASTM, Philadelphia, PA,
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Tsuchiya, Y.
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Heat Release Rate Measurement for Evaluating the Flammability of Aircraft Materials.
National Research Council of Canada, Ottawa, Ontario
Advisory Group for Aerospace Research and Development (AGARD). Aircraft Fire Safety. Proceedings No. 467. May 1989,
Portugal, Spain,
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Buch, R. R.; Romenesko,D.
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Silicone Based Additives for Thermoplastic Resins Providing Improved Fire Properties Such as Reduced Heat Release Rate, Reduced Toxic Gasses and Smoke as Measured by the Cone Calorimeter.
Dow Corning Corp., Midland, MI
Fire Retardant Chemicals Association. Customer Demands for Improved Total Performance of Flame Retarded Materials. October 26-29, 1993,
Fire Retardant Chemicals Assoc., Lancaster, PA,
Tucson, AZ,
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Fernandez-Pello, A. C.
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Challenge of Fire Prediction.
California Univ., Berkeley
Combustion Science and Technology,
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1994
Egglestone, G. T.; Turley, D. M.
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Flammability of GRP for Use in Ship Superstructures.
DSTO Materials Research Lab., Melbourne, Australia
Fire and Materials,
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Wang, M.
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Thoretische Grundlagen der Loschwirkung und der Effizienz von Sprinklern. [Theoretical Foundation of the Extinguishment and Efficiency of Sprinklers.]
University of Kaiserslautern, Shanghai, China
Thesis D386,
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deRis, J.; Orloff, L.
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Similarity of Turbulent Wall Fires.
Factory Mutual Research Corp., Norwood, MA
National Institute of Standards and Technology, Gaithersburg, MD,
NISTIR 5499,
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National Institute of Standards and Technology. Annual Conference on Fire Research: BOOK OF ABSTRACTS. October 17-20, 1994,
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