Butler, K. M.
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Computational Model of Dissipation of Oxygen From an Outward Leak of a Closed-Circuit Breathing Device.
National Institute of Standards and Technology, Gaithersburg, MD
National Institute of Occupational Safety and Health, Cincinnati, OH; Department of Health and Human Services, Washington, DC; Centers for Disease Control and Prevention, Atlanta, GA,
NIST TN 1484; NIST Technical Note 1484,
June 2007,
47 p.
Kashiwagi, T.
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Flame Retardant Mechanism of the Nanotubes-Based Nanocomposites. Final Report.
Maryland Univ., College Park
National Institute of Standards and Technology, Gaithersburg, MD,
NIST GCR 07-912; Final Report,
September 2007,
68 p.
Hu, Z.; Utiskul, Y.; Quintiere, J. G.; Trouve, A.
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Towards Large Eddy Simulations of Flame Extinction and Carbon Monoxide Emission in Compartment Fires.
Maryland Univ., College Park; National Institute of Standards and Technology, Gaithersburg, MD
Volume 31; Part 2,
Combustion Institute, Symposium (International) on Combustion, 31st. Proceedings. Volume 31. Part 2. August 5-11, 2006,
Combustion Institute, Pittsburgh, PA,
Heidelberg, Germany,
Barlow, R. S.; Sick, V.; Glarborg, P.; Yetter, R. A., Editors,
2537-2545 p.,
2007
Shmakov, A. G.; Shvartsberg, V. M.; Korobeinichev, O. P.; Beach, M. W.; Hu, T. I.; Morgan, T. A.
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Structure of a Freely Propagating Rich CH4/Air Flame Containing Triphenylphosphine Oxide and Hexabromocyclododecane.
Institute of Chemical Kinetics and Combustion, Novosibirsk, 630090 Russia; Dow Chemical Company, Midland, MI
Combustion and Flame,
Vol. 149,
No. 4,
384-391,
June 2007
Ohlemiller, T. J.; Shields, J. R.
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Aspects of the Fire Behavior of Thermoplastic Materials.
National Institute of Standards and Technology, Gaithersburg, MD
NIST TN 1493; NIST Technical Note 1493,
January 2008,
158 p.
Feih, S.; Mathys, Z.; Mathys, G.; Gibson, A. G.; Robinson, M.; Mouritz, A. P.
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Influence of Water Content on Failure of Phenolic Composites in Fire.
RMIT Univ., GPO Box 2476V, Melbourne 3001, Australia; Platforms Science Laboratory, GPO Box 4331, Melbourne 3001, Australia; Newcastle-upon-Tyne Univ., University-upon-Tyne, NE1 7RU, United Kingdom
Polymer Degradation and Stability,
Vol. 93,
No. 2,
376-382,
February 2008
Madrzykowski, D.; Stroup, D. W.
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Flammability Hazard of Materials.
National Institute of Standards and Technology, Gaithersburg, MD
Volume 1; Chapter 3 - Section 2; NFPA FPH2008,
Fire Protection Handbook, 20th Edition. Volume 1. Chapter 3. Section 2,
National Fire Protection Assoc., Quincy, MA,
Cote, A. E.; Grant, C. C.; Hall, J. R., Jr.; Solomon, R. E.; Powell, P. A., Editors,
2/31-48 p.,
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Steinberg, T. A.; Newton, B. E.; Beeson, H. D.
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Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres: Ninth (9th) Volume.
American Society for Testing and Materials, Philadelphia, PA
ASTM STP 1395,
American Society for Testing and Materials. Flammability and Sensitivity of Materials in Oxygen-Enriched Atmospheres: Ninth (9th) Volume. ASTM STP 1395. Proceedings. 2000,
ASTM, Philadelphia, PA,
Steinberg, T. A.; Newton, B. E.; Beeson, H. D., Editors,
536 p.,
2000
Hirschler, M. M.; Piansay, T.
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Survey of Small-Scale Flame Spread Test Results of Modern Fabrics.
GBH International, Mill Valley, CA
Fire and Materials,
Vol. 31,
No. 6,
373-386,
October 2007
Kotresh, T. M.; Indushekar, R.; Subbulakshmi, M. S.; Vijayalakshmi, S. N.; Prasad, S. K.; Agrawal, A. K.
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Evaluation of Commercial Flame Retardant Polyester Curtain Fabrics in the Cone Calorimeter.
Defence Bioengineering and Electromedical Laboratory, Bangalore 560 093, India; Indian Institute of Technology, Hauz Khas, Delhi-110 016, India
Journal of Industrial Textiles,
Vol. 36,
No. 1,
47-58,
July 2006