FireDOC Search

displaying 711 - 720 results in total 979

  • Bentz, D. P.; Garboczi, E. J.
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    Multi-Scale Microstructural Modeling to Predict Chloride Ion Diffusivity for High Performance Concrete.
    National Institute of Standards and Technology, Gaithersburg, MD
    Materials Science of Concrete Special Volume: Ion and Mass Transport in Cement-Based Materials. Proceedings. American Ceramic Society. October 4-5, 1999, Toronto, Canada, 253-267 p., 2001

  • Harada, K.
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    Review on Structural Fire Resistance.
    Kyoto Univ., Japan
    Asia-Oceania Symposium on Fire Science and Technology, 4th Proceedings. Co-Organized by Asia-Oceania Association for Fire Science and Technology (AOAFST) and Japan Association for Fire Science and Engineering (JAFSE). May 24-26, 2000, Tokyo, Japan, 155-163 p., 2000

  • British Cement Association
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    Flat Slabs for Efficient Concrete Construction
    British Cement Association, Berkshire, UK
    Best Practice Guides; 97.508, 2001, 4 p.

  • Sheratt, J.; Drysdale, D.
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    Effect of the Melt-Flow Process on the Fire Behavior of Thermoplastics.
    Edinburgh Univ., Scotland
    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, 149-159 p., 2001

  • Fire Prevention
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    Fire Tests Provoke Concerns Over Concrete.
    Fire Prevention, No. 350, 3, November 2001

  • Bentz, D. P.; Garboczi, E. J.; Frohnsdorff, G. J. C.
    view article (5.3553586)

    E-Concrete? Believe It!
    National Institute of Standards and Technology, Gaithersburg, MD
    Constructor, The Construction Management Magazine, Vol. 84, No. 2, 20-20, February 2002

  • Snyder, K. A.; Natesaiyer, K.; Hover, K.
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    Stereological and Statistical Properties of Entrained Voids in Concrete: A Mathematical Basis for Air Void System Characterization.
    National Institute of Standards and Technology, Gaithersburg, MD; USG Resarch Center, Libertyville, IL; Cornell Univ., Ithaca, NY
    Materials Science of Concrete VI. Proceedings. American Ceramic Society. December 2001, Mindess, S.; Skalny, J., Editors, 129-214 p., 2001

  • Al-Khaleefi, A. M.; Terro, M. J.; Alex, A. P.; Wang, Y.
    view article (5.3553586)

    Prediction of Fire Resistance of Concrete Filled Tubular Steel Columns Using Neural Networks.
    Kuwait Univ., Safat; Engineering Systems Group, Safat, Kuwait; Manchester Univ., UK
    Fire Safety Journal, Vol. 37, No. 4, 339-352, June 2002

  • Kodur, V. K. R.
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    Fire Resistance Evaluation of Large-Scale Structural Systems.
    National Research Council of Canada, Ottawa, Ontario
    NISTIR 6890, September 2002,
    Fire Resistance Determination and Performance Prediction Research Needs Workshop: Proceedings. Appendix III. Presentations: H. February 19-20, 2002, Gaithersburg, MD, Grosshandler, W. L., Editors, 70-75 p., 2002

  • Lennon, T.; Moore, D. B.
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    Rational Basis for the Structural Fire Engineering Desing of Buildings.
    Building Research Establishment, Garston, England
    Performance-Based Codes and Fire Safety Design Methods, 3rd International Conference. Proceedings. June 15-17, 2000, Lund, Sweden, Jonsson, R.; Almand, K.; Maskas, J., Editors, 269-277 p., 2000