FireDOC Search

displaying 331 - 340 results in total 395

  • Kwon, Y. S.; Moon, J. S.; Ilyin, A. P.; Gromov, A. A.; Popenko, E. M.
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    Estimation of the Reactivity of Aluminum Superfine Powders for Energetic Applications.
    Ulsan Univ., Korea; Tomsk Polytechnic Univ., Russia; Altay State Technic Univ., Biysk, Russia
    Combustion Science and Technology, Vol. 176, No. 2, 277-288, February 2004

  • Wozniak, G.; Lukomski, M.; Kosiorek, M.
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    Calculation Methods of Fire Resistance Assessment of Light Steel Frame Partition Walls With Gypsum Board Cladding.
    Building Research Institute, Warsaw, Poland
    Performance-Based Codes and Fire Safety Design Methods, 5th International Conference. Proceedings. October 6-8, 2004, Luxembourg, Almand, K.; Attlan, J. M.; D'Hoop, J. M.; Gordon, J.; Jonsson, R.; Kruppa, J., Editors, 315-326 p., 2004

  • Yan, R.; Gauthier, D.; Flamant, G.; Wang, Y.
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    Behavior of Selenium in the Combustion of Coal or Coke Spiked With Se.
    Nanyang Technological Univ., Singapore; Institut de Science et de Génie des Matériaux et Procédés, Font-Romeu, France
    Combustion and Flame, Vol. 138, No. 1/2, 20-29, July 2004

  • Chen, F. F.; Gemeny, D. F.
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    Case Study Using SAFIR to Predict Fire Resistance of a Column in a Performance-Based Environment.
    Fire Protection Engineering, No. 23, 40,42,44,46,48,50, Summer 2004

  • Zhang, H.
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    Fire-Safe Polymers and Polymer Composites.
    Massachusetts Univ., Amhurst
    DOT/FAA/AR-04/11, September 2004, 209 p.

  • Kodaira, A.; Fujinaka, H.; Ohashi, H.; Nishimura, T.
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    Fire Resistance of Composite Beams Composed of Rolled Steel Profile Concreted Between Flanges.
    Tokyo University of Science, Japan; Takenaka Corp., Japan
    Fire Science and Technology (International Journal for Fire Science and Technology), Vol. 23, No. 3, 192-208, 2004

  • Gao, M.; Zhu, K.; Sun, Y. J.; Sun, C.
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    Thermal Degradation of Wood Treated with Amino Resins and Amino Resins Modified with Phosphate in Nitrogen.
    North China Institute of Science & Technology, Yanjiao Beijing 101601, P.R. China
    Journal of Fire Sciences, Vol. 22, No. 6, 505-516, November 2004

  • Bernhart, D.
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    Effect of Support Conditions on the Fire Resistance of a Reinforced Concrete Beam.
    University of Canterbury, Christchurch, New Zealand
    Fire Engineering Research Report 04/5, August 2004, 158 p.

  • Sullivan, P. J. E.; Terro, M. J.; Morris, W. A.
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    Critical Review of Fire-Dedicated Thermal and Structural Computer Programs.
    Chapter 1,
    Computer Applications in Fire Protection Engineering. Volume 3. Chapter 1. Applied Fire Science in Transition Series, Baywood Publishing Co. Inc., Amityville, NY, DeCicco, P. R., Editors, 5-27 p., 2002

  • Kodur, V. K. R.; Wang, T. C.; Cheng, F. P.
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    Predicting the Fire Resistance Behavior of High Strength Concrete Columns.
    National Research Council of Canada, Ottawa, Ontario
    Cement and Concrete Composites, Vol. 26, No. 2, 141-153, February 2004
    NRCC-43379,