FireDOC Search

displaying 1 - 10 results in total 93

  • Kajaste-Rudnitski, J.
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    Numerical Model of Thermoelastic-Plastic Concrete Material.
    VTT-Technical Research Center of Finland, Espoo
    VTT Publications 154, September 1993, 47 p.

  • Kourtides, D. A.; Pitts, W. C.; Araujo, M.; Zimmerman, R. S.
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    High-Temperature Properties of Ceramic Fibers and Insulations for Thermal Protection of Atmospheric Entry and Hypersonic Cruise Vehicles.
    NASA Ames Research Center, Moffett Field, CA; Eloret Institute, Palo Alto, CA; San Jose State Univ., CA; Wyoming Univ., Laramie
    Journal of Fire Sciences, Vol. 6, No. 5, 313-332, September/October 1988

  • Skinner, D. H.
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    Determination of High-Temperature Properties of Steel.
    Melbourne Research Labs., Australia
    BHP Technical Bulletin, Vol. 16, No. 2, 10-21, November 1972

  • Chand, N.; Verma, S.
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    Effect of Chloride-Based Fire Retardant on the Physico-Mechanical Characteristics of Sunhemp Fiber.
    CSIR,Bhopal, India
    Journal of Materials Science Letters, Vol. 8, No. 8, 891-892, August 1989

  • Koenig, P. A.
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    Flame Retardant Cotton Flote.
    Southern Utilization Research and Development Div., New Orleans, LA
    ARS 72-72,
    Department of Agriculture. Flame Retardant Cotton Batting Workshop Proceedings. November 15, 1968, New Orleans, LA, 29-39 p., 1969

  • Carlson, A. W.
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    Liquid Flame Retardant Systems for Polypropylene/Polystyrene.
    Ferro Corp.
    Fire Safety Developments From Around the World International Conference. Proceedings. Fire Retardant Chemicals Association. March 19-22, 1995, Fire Retardant Chemicals Assoc., Lancaster, PA, Lake Buena Vista, FL, 201-208 p., 1995

  • Kotresh, T. M.; Prasad, A. S. K.; Thammaiah, K.; Jha, V. N.; Mathew, L.
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    Development and Evaluation of Flame Retardant Outer Garment for Anti G Suit.
    Defence Bioengineering and Electromedical Lab., Bangalore
    Man Made Textiles in India, Vol. 40, No. 5, 206-210, May 1997

  • Noumowe, N. A.; Clastres, P.
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    Experimental and Numerical Contributions to Explanation of Concrete Spalling.
    INSA de Lyo, France
    Modeling of Deterioration in Composite Building Components Due to Heat and Mass Transfer Workshop. Proceedings. Building Research Institute (BRI) Proceedings No. 6. January 22-23, 1998, Tsukuba, Japan, 151-167 p., 1998

  • Nguyen, T.; Tang, H. C.; Chuang, T. J.; Chin, J. W.; Wu, H. F.; Lesko, J.
    view article (8.376634)

    Fatigue Model for Fiber-Reinforced Polymeric Composites for Offshore Applications.
    National Institute of Standards and Technology, Gaithersburg, MD; Virginia Polytechnic Institute and State Univ., Blacksburg
    NIST TN 1434, September 2000, 43 p.

  • Stevens, A. G.; Cornish, R. C.; Skinner, D.
    view article (7.7412033)

    Tensile Data on Four Structural Steels. Project 6. Fire Resistance of Steels--High Temeprature Mechanical Properties.
    Melbourne Research Labs., Clayton, Australia
    MRL 6/5, November 1971, 56 p.