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Original Articles

Theory of Ignition of a Reactive Solid by Constant Energy Flux

Pages 11-20 | Received 23 Feb 1970, Published online: 10 May 2007

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Read on this site (9)

AlexanderM. Telengator, StephenB. Margolis & FormanA. Williams. (1999) Ignition analysis of a porous energetic material: II. Ignition at a closed heated end. Combustion Theory and Modelling 3:3, pages 433-445.
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Alexander M Telengator, Stephen B Margolis & Forman A Williams. (1999) Analysis of ignition of a porous energetic material. Combustion Theory and Modelling 3:1, pages 33-49.
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H. L. GIRDHAR, A. J. ARORA & G. N. MALIK. (1980) Ignition Times of Composite Propellants Based on Nitrophenolic Binders. Combustion Science and Technology 23:5-6, pages 243-249.
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T. NIIOKA. (1978) Heterogeneous Ignition of a Solid Fuel in a Hot Stagnation-Point Flow. Combustion Science and Technology 18:5-6, pages 207-215.
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CHOONG SE KIM & PAUL M. CHUNG. (1977) Ignition of a Porous Solid Fuel by Convective Heat and Mass Transfer at the Fuel Surface. Combustion Science and Technology 15:1-2, pages 75-82.
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M. KINDELAN & F. A. WILLIAMS. (1975) Theory for Endothermic Gasification of a Solid by a Constant Energy Flux. Combustion Science and Technology 10:1-2, pages 1-19.
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A. LIÑÁN & F. A. WILLIAMS. (1971) Theory of Ignition of a Reactive Solid by Constant Energy Flux. Combustion Science and Technology 3:2, pages 91-98.
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H. H. BRADLEY$suffix/text()$suffix/text() & F. A. WILLIAMS. (1970) Theory of Radiant and Hypergolic Ignition of Solid Propellants. Combustion Science and Technology 2:1, pages 41-52.
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Articles from other publishers (31)

V. E. Zarko. (2024) Errors in Using Balance Relations in the Theory of Combustion of Condensed Systems. Combustion, Explosion, and Shock Waves 59:6, pages 744-751.
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Mengying Liu, Wenhao Yu & Shipeng Li. (2023) Effect of aluminum-based additives on the ignition performance of ammonium perchlorate-based composite solid propellants. Acta Astronautica 204, pages 321-330.
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Junhui Gong & Lizhong Yang. (2022) A Review on Flaming Ignition of Solid Combustibles: Pyrolysis Kinetics, Experimental Methods and Modelling. Fire Technology.
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V E Zarko. (2021) Correctness of determination of energetic materials high temperature decomposition kinetics. Journal of Physics: Conference Series 1721:1, pages 012004.
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Vladimir E. Zarko & A.G. Knyazeva. (2020) Determination of kinetic parameters of exothermic condensed phase reaction using the energetic material ignition delay data. Combustion and Flame 221, pages 453-461.
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V. E. Zarko & A. G. Knyazeva. 2020. Innovative Energetic Materials: Properties, Combustion Performance and Application. Innovative Energetic Materials: Properties, Combustion Performance and Application 67 108 .
Merrill W. Beckstead, Karthik Puduppakkam, Piyush Thakre & Vigor Yang. (2007) Modeling of combustion and ignition of solid-propellant ingredients. Progress in Energy and Combustion Science 33:6, pages 497-551.
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Jeremy Cain & M. Quinn Brewster. (2006) Radiative Ignition of Fine‐Ammonium Perchlorate Composite Propellants. Propellants, Explosives, Pyrotechnics 31:4, pages 278-284.
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M. Q. Brewster. (2006) Surface-Absorption Assumption for Radiant Heating and Ignition of Energetic Solids. Journal of Thermophysics and Heat Transfer 20:2, pages 348-351.
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Eun. S. Kim, Rongjie Yang & Vigor Yang. 2003. Energetic Materials - Part 2. Detonation, Combustion. Energetic Materials - Part 2. Detonation, Combustion 295 350 .
Y.-C. Liau, E.S. Kim & V. Yang. (2001) A comprehensive analysis of laser-induced ignition of RDX monopropellant. Combustion and Flame 126:3, pages 1680-1698.
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Mohammad K. Alkam & P. Barry Butler. (2000) Impingement Heating and Ignition of Condensed-Phase Energetic Materials. Journal of Propulsion and Power 16:6, pages 1075-1082.
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Alexander Telengator, Forman Williams & Stephen Margolis. (1999) Ignition analyses of porous energetic materials. Ignition analyses of porous energetic materials.
Carlos Vázquez-Espí & Amable LiÑán. (1994) Ignition of a Rectangular Solid by an External Heat Flux. SIAM Journal on Applied Mathematics 54:5, pages 1181-1202.
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S.W. Baek, M. Sichel & C.W. Kauffman. (1990) Asymptotic analysis of the shock wave ignition of dust particles. Combustion and Flame 81:3-4, pages 219-228.
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A. D. Margolin, G. N. Mokhin & V. G. Krupkin. (1990) Ignition of a wedge and cone by a thermal flux in a homogeneous reaction. Combustion, Explosion, and Shock Waves 26:1, pages 17-22.
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Lolke G. Vorsteveld & C. E. Hermance. (1989) Effect of geometry on ignition of a reactive solid - Acute angles. Journal of Propulsion and Power 5:1, pages 26-31.
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H. L. Girdhar & G. M. Peerzada. (2004) Ignition Time Delay of polyacrylic fuels‐ammonium perchlorate condensed mixtures. Propellants, Explosives, Pyrotechnics 13:4, pages 103-105.
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Lolke G. Vorsteveld & C. E. Hermance. (1987) Effect of geometry on ignition of a reactive solid - Square corner. AIAA Journal 25:4, pages 592-597.
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LOLKE VORSTEVELD & C. HERMANCE. (1987) Effect of geometry on ignition of a reactive solid - Acute angles. Effect of geometry on ignition of a reactive solid - Acute angles.
K.Y. Lee & C.L. Tien. (1986) Radiation-induced ignition of condensed fuels in a ceiling fire including effects of radiation blockage. International Journal of Heat and Mass Transfer 29:8, pages 1237-1244.
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C. HERMANCE. (1986) Ignition of a reactive solid having a corner geometry 1 Numerical modeling for constant heat flux. Ignition of a reactive solid having a corner geometry 1 Numerical modeling for constant heat flux.
J. Villermaux, B. Antoine, J. Lede & F. Soulignac. (1986) A new model for thermal volatilization of solid particles undergoing fast pyrolysis. Chemical Engineering Science 41:1, pages 151-157.
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. 1984. Fundamentals of Solid-Propellant Combustion. Fundamentals of Solid-Propellant Combustion 239 304 .
A.K. Kapila. (1981) Evolution of deflagration in a cold combustible subjected to a uniform energy flux. International Journal of Engineering Science 19:4, pages 495-509.
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A. KULKARNIM. KUMARK. KUO. (1980) Review of solid-propellant ignition studies. Review of solid-propellant ignition studies.
. 1978. Experimental Diagnostics in Combustion of Solids. Experimental Diagnostics in Combustion of Solids 173 187 .
T. Niioka & F.A. Williams. (1977) Ignition of a reactive solid in a hot stagnation-point flow. Combustion and Flame 29, pages 43-54.
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W.B. Bush & F.A. Williams. (1976) Influence of strong conductive gas-phase cooling on radiant ignition of a reactive solid. Combustion and Flame 27, pages 321-329.
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W.B. Bush & F.A. Williams. (1975) Radiant ignition of a surface-cooled reactive solid. Acta Astronautica 2:5-6, pages 445-462.
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A. Linan & F.A. Williams. (1972) Radiant ignition of a reactive solid with in-depth absorption. Combustion and Flame 18:1, pages 85-97.
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