FireDOC Search

displaying 501 - 510 results in total 536

  • 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

  • Shimizu, M.; Hasemi, Y.; Yasui, N.; Murakami, M.; Kimura, T.
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    Prediction of Fire Resistance of Japanese Bare Timber Soil Walls.
    Waseda Univ., Japan; Kinki Univ., Japan; Kyoto Cooperative Union of Carpenters, Japan
    Fire and Materials 2005. 9th International Conference. Conference Papers. Proceedings. Organised by Interscience Communications Limited. January 31-February 1, 2005, Interscience Communications Limited, London, England, San Francisco, CA, 139-150 p., 2005

  • Gutierrez, J.; Bollero, A.; Hoyning, B.; McGeorge, D.; Gibson, G.; Wright, P.
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    Fire Performance of Naval Composite Structures.
    DCN, France; CETENA, Italy; FiReCo., Norway; Det Norske Veritas, Norway; Newcastle Univ., UK
    Fire and Materials 2005. 9th International Conference. Conference Papers. Proceedings. Organised by Interscience Communications Limited. January 31-February 1, 2005, Interscience Communications Limited, London, England, San Francisco, CA, 425-438 p., 2005

  • Fire Safety Engineering
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    Large Firewall Panesl Pass the Test.
    Fire Safety Engineering, Vol. 12, No. 5, 33-35, May 2005

  • Gross, J. L.; McAllister, T. P.
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    Structural Fire Response and Probable Collapse Sequence of the World Trade Center Towers. Chapter 7-Appendix B. Federal Building and Fire Safety Investigation of the World Trade Center Disaster.
    National Institute of Standards and Technology, Gaithersburg, MD
    NIST NCSTAR 1-6
    NIST NCSTAR 1-6
    September 2005
    204 p.

  • Gross, J. L.; Hervey, F.; Izydorek, M.; Mammoser, J.; Treadway, J.
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    Fire Resistance Tests of the Floor Truss Systems. Federal Building and Fire Safety Investigation of the World Trade Center Disaster.
    National Institute of Standards and Technology, Gaithersburg, MD; Underwriters Laboratories, Inc., Northbrook, IL
    NIST NCSTAR 1-6B
    NIST NCSTAR 1-6B
    September 2005
    202 p.

  • Park, J. S.; Buchanan, A. H.; Lee, J. J.
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    Fire Performance of Laminated Veneer Lumber (LVL) with Glued-In Steel Rod Connections.
    Korea Forest Research Institute Seoul, S. Korea; Canterbury Univ., Christchurch, New Zealand; Seoul National University Seoul, S. Korea
    Journal of Fire Sciences, Vol. 24, No. 1, 27-46, January 2006

  • Kodur, V. K. R.; Sultan, M. A.
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    Factors Influencing Fire Resistance of Load-bearing Steel Stud Walls.
    Michigan State Univ., East Lansing, MI; National Research Council of Canada, Ottawa, Ontario
    Fire Technology, Vol. 42, No. 1/1st Quarter, 5-26, January 2006

  • Lane, W. P.
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    Ignition, Charring and Structural Performance of Laminated Veneer Lumber.
    University of Canterbury, Christchurch, New Zealand
    Fire Engineering Research Report 05/3
    Fire Engineering Research Report 05/3
    October 2005
    189 p.

  • Lamont, S.; Lane, B.; Flint, G.; Usmani, A.
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    Behavior of Structures in Fire and Real Design: A Case Study.
    Arup Fire, Ove Arup and Partners, London, England; Edinburgh Univ., Scotland
    Journal of Fire Protection Engineering, Vol. 16, No. 1, 5-35, February 2006