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Optimal design of a composite propellant formulation using response surface methodology Cover

Optimal design of a composite propellant formulation using response surface methodology

Open Access
|Apr 2017

References

  1. 1. Fitzgerald R. P., Brewster M. Q., Journal of Combustion and Flame, 154 (2008), 660-670p.10.1016/j.combustflame.2008.04.026
  2. 2. Carro R. et al., Proceeding of 41st AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit Tucson, Arizona (2005).
  3. 3. Brown C. D., Spacecraft Propulsion, AIAA, Washington (1995).10.2514/4.862441
  4. 4. Sutton G. P., Biblarz O., Rocket Propulsion Elements, John Wiley & Sons, 7th ed., New York (2001).
  5. 5. Catherine K. B., et al., Journal of Thermal Analysis and Calorimetry, 59 (2000), 93-100.10.1023/A:1010127727162
  6. 6. Yang R., An H., Tan H., Combustion and Thermal Decomposition of HNIW and HTPB/HNIW Propellants with Additives, Combustion and Flame, 135 (2003), 463-473.10.1016/j.combustflame.2003.08.008
  7. 7. Singh S., Raina C. S., Bawa A. S., Sexena D. C., Sweet potato-based pasta product: optimization of ingredient levels using response surface methodology, International Journal of Food Science and Technology 38 (2003). 1-10.
  8. 8. Langlet A., Wingborg N., Ostmark H., A New High Performance Oxidizer for Solid Propellants, International Journal of Energetic Materials and Chemical Propulsion, 4 (1997), 1-6.10.1615/IntJEnergeticMaterialsChemProp.v4.i1-6.580
  9. 9. Schoyer H. F. R., Schnork A. J., Korting P. A. O. G., van Lit P. J. First Experimental Results of an HNF/Al/GAP Solid Propellant, AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, T. L. 33rd, Seattle, WA, (1997) 6-9.10.2514/6.1997-3131
  10. 10.Couturier R., Advanced Energetic Binder Propellants, Solid Rocket Propulsion Technology, A. Davenas, Ed., Pergamon Press, Oxford, (1993) 510-511.10.1016/B978-0-08-040999-3.50016-3
  11. 11.Boyars C., Klager K., Propellants, Manufacturing, Hazards and Testing, American Chemical Society, Washington D.C, 88 (1969).10.1021/ba-1969-0088
  12. 12.Muthiah R. M., Varghese Rao S. S., Ninan K. N., Krishnamurthy V. N., Realization of an Eco-friendly Solid Propellant Based on HTPB-HMX-AP System for Launch Vehicle Applications, International Journal of Energetic Materials and Chemical Propulsion, 4 (1997), 1-6.10.1615/IntJEnergeticMaterialsChemProp.v4.i1-6.150
  13. 13.Hartfield R., Jenkins R., Burkhalter J., Foster W., A Review of Analytical Methods for Solid Rocket Motor Grain Analysis, AIAA (2003) 2003-4506.10.2514/6.2003-4506
  14. 14.Montgomery D. C., Design and Analysis of Experiments: Response Surface Method and Designs, New Jersey: John Wiley and Sons, Inc (2005).
  15. 15.Ogunleye O. O., Hamed J. O., Alagbe S. O., Optimization of Potassium Nitrate Based Solid Propellant Grains Design Using Response Surface Methodology, Advances in Science and Technology Research Journal, 9, No. 27 (2015), 123 - 134.
  16. 16.Sutton G. P., Rocket Propulsion Elements, John Wiley & Sons, MIT, 6th ed., New York (1992).
  17. 17.Bluestone S., et al., Proceedings of 46th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit Nashville, TN (2010).
  18. 18.Cai W.D., Thakre P., Yang V., Model of AP/HTPB composite propellant combustion in rocket motor environments, Combust. Sci. Tech., 180 (2008), 2143-2169.10.1080/00102200802414915
  19. 19.Yang V., Brill T., Ren W. Z., Solid-Propellant Chemistry, Combustion, and Motor Interior Ballistics, Progress Astronautics and Aeronautics, AIAA, 185 (2000), 990.10.2514/4.866562
  20. 20.Beckstead M. W., Puduppakkam K., Thakre P., Yang V., Modeling of combustion and ignition of solid-propellant ingredients, Programme Energy Combustion Science, 33 (6) (2007), 497-551.10.1016/j.pecs.2007.02.003
  21. 21.Krishnan S., Rajesh K. K., Proceedings of 37th AIAA/ASME/SAE/ASEE, Joint Propulsion Committee Conference and Exhibit Salt Lake City, Utah (2001).
  22. 22.Jayaraman K., et al., Combustion and Flame, 156 (2009), 1662-1673.10.1016/j.combustflame.2009.03.014
  23. 23.Yildirim C., Analysis of Grain Burn back and Internal Flow In Solid Propellant Rocket Motors in 3- Dimensions, Ph. D. Dissertation, Department of Mechanical Engineering, METU, (2007), 110-118.
DOI: https://doi.org/10.1515/adms-2017-0004 | Journal eISSN: 2083-4799 | Journal ISSN: 1730-2439
Language: English
Page range: 44 - 57
Published on: Apr 22, 2017
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 J. O. Hamed, O. O. Ogunleye, C. A. Osheku, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.