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2025 Vol.29, Issue 1 Preview Page

TECHNICAL PAPERS

28 February 2025. pp. 40-48
Abstract
References
1

ASD-EUROSPACE, "Exemption of Propellant-Related Use of Hydrazine from REACH Authorisation Requirement," 2012.

2

Shotwell, R., Benito, J., Karp, A. and Dankanich, J., "Drivers, developments and options under consideration for a Mars ascent vehicle," In 2016 IEEE Aerospace Conference, pp. 1-14, IEEE, 2016.

10.1109/AERO.2016.750082225733589
3

Karp, A.C., Redmond, M., Nakazono, B., Vaughan, D., Shotwell, R., Story, G., ... and Young, D., "Technology development and design of a hybrid Mars ascent vehicle concept," In 2016 IEEE Aerospace Conference, pp. 1-10, IEEE, 2016.

10.1109/AERO.2016.750083526514194PMC5123387
4

Karp, A., "Hybrid Rocket Propulsion for a Low Temperature Mars Ascent Vehicle," In Proceedings of the Lecture Held at Jet Propulsion Laboratory, National Aeronautics and Space, Pasadena, C.A., U.S.A., 2017.

5

Pfeil, M.A., "Solid amine-boranes as high performance hypergolic hybrid rocket fuels," Doctoral dissertation, Purdue University, 2014.

6

Benhidjeb-Carayon, A., Gabl, J.R., Whitehead, B.E. and Pourpoint, T.L., "Hypergolic Hybrid Rocket Engine Ignition and Relights with Mixed Oxides of Nitrogen," Journal of Propulsion and Power, Vol. 38, No. 1, pp. 111-121, 2022.

10.2514/1.B38266
7

Baier, M., "Development and Characterization of High Performance Ammonia Borane Based Rocket Propellants," Doctoral dissertation, Purdue University, 2021.

8

Story, G., Karp, A., Nakazono B., et al, "Mars ascent vehicle hybrid propulsion effort," AIAA Propulsion and Energy 2020 Forum, 2020.

10.2514/6.2020-3727
9

Nath, S., Mallick, L. and Lefkowitz, J., "Spray Ignition Studies on a Green Hypergolic Hybrid Rocket Propellant," AIAA SCITECH 2023 Forum, 2023.

10.2514/6.2023-1831
10

Castaneda, D. and Natan, B., "Experimental investigation of the hydrogen peroxide - solid hydrocarbon hypergolic ignition," Acta Astronautica, Vol. 158, pp. 286-295, 2019.

10.1016/j.actaastro.2018.05.058
11

Sahul, K.V.S. and Ramakrishna, P.A., "Development and Testing of Aluminium Based Hypergolic Hybrid Solid Fuel with Industrial grade H2O2," 13-ISICP, 2023.

12

Petrutik, N., Kaminker, I., Flaxer E., et al., "Janus-type Hypergolic Fuels for Hybrid Systems Using Hydrogen Peroxide and Hydroxylammonium Nitrate-Based Oxidizers," Chemical Engineering Journal, Vol. 454, p. 140170, 2023.

10.1016/j.cej.2022.140170
13

Lee, E., Kang, H. and Kwon, S., "Feasibility Study on Non-Catalytic Ignitor for Hydrogen Peroxide/Polyethylene Hybrid Rocket," 67th International Astronautical Congress, 2016.

14

Jeong, J., Bhosale, V.K. and Kwon, S., "Ultrafast igniting, low toxicity hypergolic hybrid solid fuels and hydrogen peroxide oxidizer," Fuel, Vol. 286, p. 119307, 2021.

10.1016/j.fuel.2020.119307
15

Jeong, J., Kim, K.S., Bhosale, V.K. and Kwon, S., "Demonstration of ammonia borane-based hypergolic ignitor for hybrid rocket," Acta Astronautica, Vol. 196, pp. 85-93, 2022.

10.1016/j.actaastro.2022.04.009
16

Rang, S., Jeong, J., Bhosale, V.K., and Kwon, S., "Reactivity of hypergolic hybrid solid fuel with industrial grade hydrogen peroxide," Fuel, Vol. 330, p. 125543, 2022.

10.1016/j.fuel.2022.125543
17

Jeong, J., Choi, G.W. and Kwon, S., "Static and re-ignition test of hypergolic hybrid rocket using hydrogen peroxide oxidizer," 73rd International Astronautical Congress, 2022.

18

Jeong, J., Im, H.J. and Kwon, S., "Demonstration of centrifugal casted paraffin wax-based hypergolic solid fuel for hydrogen peroxide," 74th International Astronautical Congress, 2023.

19

Jeong, J., "Experimental validation of novel hypergolic hybrid rocket fuels for hydrogen peroxide oxidizer," Ph. D. Dissertation, KAIST, 2024.

20

McBride, B.J., "Computer program for calculation of complex chemical equilibrium compositions and applications," NASA Lewis Research Center, Vol. 2, 1996.

21

Park, S., Lee, K., Kang, H., Park, Y. and Lee, J., "Effects of oxidizing additives on the physical properties and ignition performance of hydrogen peroxide-based hypergolic propellants," Acta Astronautica, Vol. 200, pp. 48-55, 2022.

10.1016/j.actaastro.2022.07.051
22

Jeong, J., Lee, S. and Kwon, S., "Demonstration of Composite Hypergolic Solid Fuel for Hydrogen Peroxide Hybrid Rocket," AIAA SCITECH 2023 Forum, 2023.

10.2514/6.2023-0892
23

Schmierer, C., Tomilin, K., Kobald, M., Steelant, J. and Schlechtriem, S., "Analysis and preliminary design of a hybrid propulsion lunar lander," In Space Propulsion Conference, 2016.

Information
  • Publisher :The Korean Society of Propulsion Engineers
  • Publisher(Ko) :한국추진공학회
  • Journal Title :Journal of the Korean Society of Propulsion Engineers
  • Journal Title(Ko) :한국추진공학회지
  • Volume : 29
  • No :1
  • Pages :40-48
  • Received Date : 2024-01-25
  • Revised Date : 2024-10-08
  • Accepted Date : 2024-10-13