Ward, J. R.; Decker, L. J.
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Determination of the Thermal Decomposition Kinetics of Polyurethane Foam by Guggenheim's Method.
Army Ballistic Research Lab., Aberdeen Proving Ground, MD
Industrial Engineering Chemistry Product Research Development,
Vol. 21,
460-461,
1982
ARBL-TR-02306,
Keating, J. Z.
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Use of Hydrated Alumina as a Flame and Smoke Suppressing Filler for Flexible Urethane Foams.
Solem Industries, Inc., Norcorss, GA
Journal of Fire Retardant Chemistry,
Vol. 9,
No. 4,
215-225,
November 1982
Society of the Plastics Industry, Inc. Fall Conference. October 20-22, 1982.,
Bal Harbour, FL,
1982
Lee, F. T.; Nicholson, P.; Green, J.
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New Reactive Phosphorus Flame Retardant for Rigid Polyurethane Application. Part 1.
FMC Corp., Princeton, NJ
Journal of Fire Retardant Chemistry,
Vol. 9,
No. 3,
194-205,
August 1982
Taylor, W.
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Fire Study of Cellular Plastics Insulation in Cavity Walls.
ESSO Chemical, Canada
Journal of Consumer Product Flammability,
Vol. 9,
No. 3,
140-146,
September 1982
Fire Retardant Chemicals Association. Fall Conference. October 13-15, 1982.,
Toronto, Canada,
1982
Kourtides, D. A.; Parker, J. A.
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Thermal Performance of Aircraft Polyurethane Seat Cushions.
National Aeronautics and Space Admin., Moffett Field, CA
Journal of Fire and Flammability,
Vol. 13,
No. 4,
250-267,
October 1982
Federal Aviation Admin., Washington, DC,
Society of the Plastics Industry, Inc. Fall Conference. October 20-22, 1982.,
Bal Harbour, FL,
1982
Robbins, W. P.
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Evaluation of Polyimide Flexible Foam.
Air Force Packaging Evaluation Agency, Wright-Patterson AFB, OH
PTPT Report 80-6,
March 1980,
8 p.
Health Devices
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Polyurethane Foam Pads Banned in Boston. ECRI Asks: "Where's the Fire?"
Health Devices,
Vol. 11,
No. 10,
263,283,
August 1982
Zicherman, J. B.; Allard, D. L.
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Compartment Tests of Polyurethane Foam Seating Assemblies.
IFT Technical Services Inc., Berkeley, CA
Fire Technology, Vol. 24, No. 2, 128-137, May 1988 <b>AND</b> Fire and Arson Investigator, Vol. 41, No. 4, 56-60, June 1991,
Borisov, G.; Sviriev, K.; Devedzhiev, I.
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Increasing the Refractoriness of Solid Polyurethane Foams Through the Introduction of Phosphorus Into Their Molecules.
Bulgarian Academy of Sciences
Khimiya i industria,
Vol. 57,
No. 6,
270-276,
FSTC-HT-0978-86,
February 3, 1987,
20 p.
Eicher, W. J.; Szabat, J. F.
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Response of Polyurethane Foams to Cigarette Ignition Tests.
Product Safety Corp., Sunnyvale, CA
Journal of Consumer Product Flammability,
Vol. 7,
No. 3,
172-188,
September 1980