of char formation/ 'J . Appl. Polymer Sci. 9, 2799-2810 (1965). 2 Zemany, P. D., Identification of complex organic materials by mass spectroscopic analysis of their pyrolysis products/' Anal. Chem. 24, 1709-1713 (1952). 3 Madorsky, S. L., Thermal Degradation of Organic Polymers (Interscience Publishers, New York, 1964), Chap. XVI, pp. 288-292. 4 Friedman, H. L., The pyrolysis of plastics in a high vacuum arc image furnace/' General Electric Co., Missile and Space Div., TIS-R62SD57 (December 1962). 5 Tick, S. J., Huson, G. R., and Griese, R., Design of ablative thrust chambers and their materials/' J. Spacecraft Rockets 2,325-331(1965). 6 Walker, P. L., Rusinko, F., and Austin, L. G., Gas reactions of carbon, Advances in Catalysis (Academic Press Inc., New York, 1959), Vol. XI, p. 133. 7 Munson, T. R. and Spindler, R. J., Transient thermal behavior of decomposing materials. Part I: General theory and application of convective heating/' I AS Paper 62-30 (January 1962). 8 Rivers, W. J., Van Wyk, R., Seader, J. D., Friedman, H. A., and Chu, H. N., Effect of rocket engine combustion on chamber materials. Parti: One-dimensional computer program, Rocketdyne, a Division of North American Aviation, Inc., Rept. AFRPL-TR-65-13 (January 1965). 9 Friedman, H. A., Persselin, S. F., McFarland, B. L., and Seader, J. D., Effect of rocket engine combustion on chamber materials. Part II: Two-dimensional computer program/' Rocketdyne, a Division of North American Aviation, Inc., Rept. AFRPL-TR-65-176 (September 1965). 10 Beecher, N. and Rosensweig, R. E., Ablation mechanisms in plastics with inorganic reinforcement, ARS J. 31, 532-539 (1961). 11 Hurwicz, H., Aerothermochemistry studies in ablation, Combustion and Propulsion, Fifth AGARD Colloquium (The Macmillan Co., New York, 1963), p. 403.
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HEROLD et al. (1966) studied this question.
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