FireDOC Search

displaying 361 - 370 results in total 979

  • Kodur, V. K. R.; Phan, L.
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    Critical Factors Governing the Fire Performance of High Strength Concrete Systems.
    Michigan State Univ., East Lansing; National Institute of Standards and Technology, Gaithersburg, MD
    Fire Safety Journal, Vol. 42, No. 6-7, 482-488, September/October 2007

  • Buchanan, A.
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    Challenges of Predicting Structural Performance in Fire.
    University of Canterbury, Christchurch, New Zealand
    Fire Safety Science. Proceedings. Ninth (9th) International Symposium. International Association for Fire Safety Science (IAFSS). September 21-26, 2008, Intl. Assoc. for Fire Safety Science, Boston, MA, Karlsruhe, Germany, Karlsson, B., Editors, 79-90 p., 2008

  • Henkensiefken, R.; Castro, J.; Kim, H.; Bentz, D. P.; Weiss, J.
    view article (5.438618)

    J., Internal Curing Improves Concrete Performance Throughout Its Life.
    US Concrete, San Jose, CA; National Ready Mixed Concrete Association, College Park, MD; National Institute of Standards and Technology, Gaithersburg, MD; Purdue Univ., West Lafayette, IN
    Concrete in FOCUS, Vol. 8, No. 5, 22-30, September/October 2009

  • Gales, J.; Bisby, L. A.; MacDougall, C.; MacLean, K.
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    Transient High-Temperature Stress Relaxation of Prestressing Tendons in Unbonded Construction.
    Queens Univ., Kingston, Ontario K7L 3N6, Canada; Edinburgh Univ., Scotland; Read Jones Christoffersen Ltd., Toronto, Ontario M5J 2L7, Canada
    Fire Safety Journal, Vol. 44, No. 4, 570-579, May 2009

  • Behnood, A.; Ghandehari, M.
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    Comparison of Compressive and Splitting Tensile Strength of High-Strength Concrete With and Without Polypropylene Fibers Heated to High Temperatures.
    Iran University of Science and Technology, Tehran, Iran; Brooklyn Polytechnic University, New York, NY
    Fire Safety Journal, Vol. 44, No. 8, 1015-1022, November 2009

  • Menendez, E.; Vega, L.
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    Analysis of the Behavior of the Structural Concrete After the Fire at the Windsor Building in Madrid.
    Instituto de Ciencias de Construcción 'Eduardo Torroja' (CSIC), C/Serrano Galvache, 4, 28033 Madrid, Spain
    Fire and Materials, Vol. 34, No. 2, 95-107, March 2010

  • Beck, V. R.
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    Prediction of Probability of Failure of Structural Steel Elements Under Fire Conditions.
    Footscray Institute of Technology, Melbourne, Australia
    Civil Engineering Transactions, Vol. 27, No. 1, 8, February 1, 1985

  • Copier, W. J.
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    Spalling of Normal Weight and Lightweight Concrete Exposed to Fire.
    IBBC-Instituto T.N.O. for Building Materials and Building Structures, Rijswijk (ZH), The Netherlands
    Fire Safety of Concrete Structures. ACI Committee 216. September 1980, San Juan, Puerto Rico, Abrams, M. S., Editors, 219-236 p., 1983

  • Nixon, P. J.
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    Changes in Portland Cement Properties and Their Effects on Concrete.
    Fire Research Station, Borehamwood, England
    BRE IP 03/86, March 1986, 3 p.

  • Keough, J. J.
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    Translation of Research Into Practice.
    Keough Consultants, North Epping, Australia
    International Association for Fire Safety Science. Fire Safety Science. Proceedings. 1st International Symposium. October 7-11, 1985, Hemisphere Publishing Corp., NY, Gaithersburg, MD, Grant, C. E.; Pagni, P. J., Editors, 593-601 p., 1986