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Original Articles

An Analytical and Experimental Study for Solid Propellant Combustion in an Acceleration Field

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Pages 177-184 | Published online: 27 Apr 2007

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Tohur Mitani & Takashi Niioka. (1977) An Analytical Model of Solid Propellant Combustion in an Acceleration Field. Combustion Science and Technology 15:3-4, pages 107-114.
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Articles from other publishers (9)

. 2000. Solid Propellant Chemistry, Combustion, and Motor Interior Ballistics. Solid Propellant Chemistry, Combustion, and Motor Interior Ballistics 907 920 .
. 2000. Solid Propellant Chemistry, Combustion, and Motor Interior Ballistics. Solid Propellant Chemistry, Combustion, and Motor Interior Ballistics.
Michael D. Fuchs, Arie Peretz & Y.M. Timnat. (1982) Parametric Study of Acceleration Effects on Burning Rates of Metallized Solid Propellants. Journal of Spacecraft and Rockets 19:6, pages 539-544.
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M. FUCHS, A. PERETZ & Y. TIMNAT. (1981) A parametric study of the effect of acceleration on the burning rate of metalized solid propellants. A parametric study of the effect of acceleration on the burning rate of metalized solid propellants.
A. D. Margolin & V. G. Krupkin. (1978) Effect of overloads on the combustion rate of compositions containing up to 80% aluminum. Combustion, Explosion, and Shock Waves 14:3, pages 304-309.
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Takashi Miioka, Tohru Mitani & Shinichi Ishii. (1976) Transient Period of the Acceleration-Produced Burning Rate Augmentation. AIAA Journal 14:9, pages 1165-1169.
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Merrill K. King. (1976) Critical Review: Modeling of Acceleration Effects on Solid Propellant Combustion. AIAA Journal 14:1, pages 18-25.
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T. NIIOKA, T. MITANI & S. ISHII. (1975) An experimental study on the accelerated-produced burning rate augmentation during transient period. An experimental study on the accelerated-produced burning rate augmentation during transient period.
TAKASHI NIIOKA & TOHRU MITANI. (1974) Independent Region of Acceleration in Solid Propellant Combustion. AIAA Journal 12:12, pages 1759-1761.
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