FireDOC Search

displaying 191 - 200 results in total 311

  • Oriakhi, C. O.; Lerner, M. M.
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    Rapid and Quantitative Displacement of Poly(ethylene oxide) From MnPS3 and Other Layered Hosts.
    Oregon State Univ., Corvallis
    Chemistry of Materials, Vol. 8, 2016-2022, 1996

  • Takeda, K.; Nemoto, T.
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    Quantitative Analysis of Volatile Products and Char Formation for Engineering Plastics.
    Shibaura Institute of Technology, Tokyo, Japan
    Recent Advances in Flame Retardancy of Polymeric Material. BCC Conference, 10th Annual. Volume 10. Proceedings. Business Communications Co., Inc. (BCC). 1999, Business Communications Co., Inc., Norwalk, CT, 79-87 p., 1999

  • Yao, Q.; Wilkiie, C. A.
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    How Does Cross-Linking Affect the Thermal Stability of Polyisoprene?
    Marquette Univ., Milwaukee, WI
    Polymer Degradation and Stability, Vol. 69, No. 3, 287-296, September 1, 2000

  • Isa, I. A. A.; Jodeh, S. W.
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    Thermal Properties of Automotive Polymers. Part 3. Thermal Characteristics and Flammability of Fire Retardnt Polymers.
    Delphi Research Laboratories, Warren, MI
    Materials Research Innovations, Vol. 4, No. 2/3, 135-143, 2001

  • Kowbel, W.; Patel, K.; Withers, J. C.
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    Nanocomposites for School Bus Upholstery.
    MER Corp., Tucson, AZ
    Bridging the Centuries With SAMPE's Materials and Processes Technology. Science of Advanced Materials and Process Engineering Series. Society for the Advancement of Materials and Process Engineering (SAMPE), 45th International SAMPE Symposium and Exhibition. Volume 45. Proceedings. May 21-25, 2000, Long Beach, CA, 1994-2000 p., 2000

  • Dabrowski, F.; LeBras, M.; Cartier, L.; Bourbigot, S.
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    Use of Clay in an EVA-Based Intumescent Formulation. Comparison With the Intumescent Formulation Using Polyamide-6 Clay Nanocomposite as Carbonisation Agent.
    Ecole Nationale Superieure de Chimie de Lille, Cedex, France
    Journal of Fire Sciences, Vol. 19, No. 3, 219-241, May/June 2001

  • Xie, R.; Qu, B.
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    Expandable Graphite Systems for Halogen-Free Flame-Retarding of Polyolefins. Part 1. Flammability Characterization and Synergistic Effect.
    University of Science and Technology of China, Anhui
    Journal of Applied Polymer Science, Vol. 80, No. 8, 1181-1189, May 2001

  • Horrocks, R.; Wang, M. Y.; Hall, M. E.; Pearson, J. S.
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    Effectiveness of Phosphorus-Containing Flame Retardants in Textile Back-Coating Formulations.
    Bolton Institute, UK; University of Huddersfield, UK
    Textile Coating and Laminating, 9th International Conference. Proceedings. 1999, Technomic Publishing Co., Inc., Lancaster, PA, 105-124 p., 1999

  • Li, J.; Li, B.; Zhang, X.; Su, R.
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    Study of Flame Retardants on Thermal Degradation and Charring Process of Manchurian Ash Lignin in the Condensed Phase.
    Northeast Forestry University, PR China
    Polymer Degradation and Stability, Vol. 72, No. 3, 493-498, June 2001

  • Xiao, W.; He, P.; Hu, G.; He, B.
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    Study on the Flame-Retardance and Thermal Stability of the Acid Anhydride-Cured Epoxy Resin Flame-Retarded by Triphenyl Phosphate and Hydrated Alumina.
    Hubei Univ., Wuhan, The People's Republic of China
    Journal of Fire Sciences, Vol. 19, No. 5, 369-377, September/October 2001