Zacytuj

Ambekar A. & Yoh J. Assessment of 3D Printing Technology for Potential Application Towards Manufacturing Composite Propellants, 11th Asia-Pacific Conference on Combustion (ASPACC-11), The University of Sydney, Australia, 2017.Search in Google Scholar

Chandru R.A., Balasubramanian N., Bharath R.S., Oommen C. & Raghunandan B.N. Ammonium Perchlorate Based Composite Propellant Grain Geometries via Computer Aided Manufacturing, 57th Israel Annual Conference on Aerospace Sciences, Tel-Aviv & Haifa, Israel, 2017.Search in Google Scholar

Chandru R.A., Balasubramanian N., Oommen C. & Raghunandan B.N. Additive Manufacturing of Solid Rocket Propellant Grains, Journal of Propulsion and Power, 2018, Vol. 34, Iss. 4, pp. 1090-1093.Search in Google Scholar

Sutton G.P. & Biblarz O. Rocket Propulsion Elements, Ninth Edition, Wiley, Hoboken, 2017.Search in Google Scholar

Mărmureanu M.I. Solid rocket motor internal ballistics simulation using different burning rate models, U.P.B. Sci. Bull., Series D, 2014, Vol. 76, Iss. 4, pp. 49-56.Search in Google Scholar

Kubota N. Propellants and Explosives. Thermochemical Aspects of Combustion, Third Edition, WILEY-VCH Verlag, Weinheim, 2015.Search in Google Scholar

Korobeinichev O.P., Paletsky A.A., Tereschenko A.G. & Volkov E.N. Combustion of Ammonium Dinitramide/Polycaprolactone Propellants, Proceedings of the Combustion Institute, 2002, Vol. 29, pp. 2955-2961.Search in Google Scholar

Korobeinichev O.P., Paletsky A.A., Tereschenko A.G. & Volkov E.N. Study of Combustion Characteristics of Ammonium Dinitramide/Polycaprolactone Propellants, Journal of Propulsion and Power, March-April 2003, Vol. 19, No. 2, pp. 203-212.Search in Google Scholar