[1] Loftus H, Montanino L, Bryndle R. Powder Rocket Feasibility Evaluation[R]. AIAA 72-1162.
[2] Loftus H, Marshall D, Montanino L. Powder Rocket Feasibility Evaluation[M]. New Nork: Bell Aerosystems Co., 1973.
[3] Meyer M L. Powdered Aluminum and Oxygen Rocket Propellants: Subscale Combustion Experiments[R]. NASA-TM-106439, 1993.
[4] Wickman J. In-situ Mars Rocket and Jet Engines Burning Carbon Dioxide[C]. Los Angeles: 35th Joint Propulsion Conference and Exhibit, Joint Propulsion Conferences, 1999.
[5] Szabo J, Miller T, Herr J, et al. Metal Bipropellant Rockets for Martian Ascent Vehicles[R]. AIAA 2011-5834.
[6] 李芳, 胡春波, 何国强. Mg粉/CO2粉末火箭发动机性能分析[J]. 固体火箭技术, 2010, 33(4): 414-418.
[7] 李芳, 胡春波, 何国强, 等. Mg粉/CO2点火燃烧性能实验研究[J]. 固体火箭技术, 2011, 34(2): 193-196.
[8] 姚亮, 胡春波, 肖虎亮, 等. Mg粉/CO2粉末火箭发动机点火试验研究[J]. 固体火箭技术, 2011, 34(4):440-442.
[9] Zhang S M, Hu C B, Xia S Y, et al. Ignition and Combustion of Magnesium Particles in Carbon Dioxide[J]. Applied Mechanics and Materials, 2012, 152-154: 220-225.
[10] 张胜敏, 杨玉新, 胡春波. 粉末火箭发动机推力调节试验研究[J]. 固体火箭技术, 2015, 38(3): 347-350.
[11] 邓哲, 胡春波, 卢子元, 等. Metal/N2O 粉末火箭发动机实验研究[J]. 固体火箭技术, 2015, 38(2): 220-224.
[12] 李悦, 胡春波, 孙海俊, 等. 粉末火箭发动机燃烧室燃烧流动特性研究[J]. 固体火箭技术, 2014, 37(6): 792-796.
[13] 李悦, 胡春波, 胡加明, 等. 粉末火箭发动机研究进展[J]. 推进技术, 2018, 39(8). (LI Yue, HU Chun-bo, HU Jia-ming, et al. Research Status of Powder Rocket Engine[J]. Journal of Propulsion Technology, 2018, 39(8).)
[14] Li Y, Hu C B, Deng Z, et al. Experimental Study on Multiple-Pulse Performance Characteristics of Ammonium Perchlorate/Aluminum Powder Rocket Motor[J]. Acta Astronautica, 2017, 133: 455-466.
[15] 虞虔. 粉末火箭发动机点火器设计及实验研究[D]. 西安:西北工业大学, 2015.
[16] 武冠杰, 任全彬, 胡春波, 等. 基于AP预处理技术的粉末推进剂性能[J]. 含能材料, 2017, 25(8): 627-632.
[17] Sun H J, Hu C B, Zhang T, et al. Experimental Investigation on Mass Flow Rate Measurements and Feeding Characteristics of Powder at High Pressure[J]. Applied Thermal Engineering, 2016, 102: 30-37.
[18] Sun H J, Hu C B, Zhu X F, et al. Experimental Investigation on Incipient Mass Flow Rate of Micro Aluminum Powder at High Pressure[J]. Experimental Thermal and Fluid Science, 2017, 83: 231-238.
[19] 邓哲. Al/AP粉末推进剂点火燃烧及层流火焰传播模型研究[D]. 西安:西北工业大学, 2016.
[20] Gordon, Sanford, Mcbride, et al. Computer Program for Calculation of Complex Chemical Equilibrium Compositions and Applications: I.Analysis[J]. NASA Reference Publication, 2011, (4).
[21] McBride B J, Gordon S. Computer Program for Calculation of Complex Chemical Equilibrium Compositions and Applications: II. Users Manual and Program Description[J]. NASA Reference Publication, 1996, (4).
[22] 陈利东, 沈顾身, 苍大强. 浓相气力输送的流型及稳定性判定[J]. 化工冶金, 1998, 19(1): 44-49.
[23] Bai D, Shibuya E, Nakagawa N, et al. Characterization of Gas Fluidization Regimes Using Pressure Fluctuation[J]. Powder Technology, 1996, 87(2): 105-111.
[24] Beckstead M W. A Summary of Aluminum Combustion[C]. Belgium: Internal Aerodynamics in Solid Rocket Propulsion, 2002.
[25] Pahk J B, Klinzing G E. Assessing Flow Regimes from Pressure Fluctuations in Pneumatic Conveying of Polymer Pellets[J]. Particulate Science & Technology, 2008, 26(3): 247-256.
[26] Wang S F, Mosdorf R, Shoji M. Nonlinear Analysis on Fluctuation Feature of Two-Phase Flow Through a T-Junction[J]. International Journal of Heat and Mass Transfer, 2003, 46(9):1519-1528.
[27] 杨立军, 富庆飞. 液体火箭发动机推力室设计[M]. 北京:北京航天航空大学出版社, 2013. 收稿日期:2018-03-27;修订日期:2018-06-06。基金项目:载人航天领域预先研究项目。作者简介:李超,男,博士生,研究领域为粉末发动机设计。E-mail: lichao1990@live.cn通讯作者:胡春波,男,博士,教授,研究领域为粉末发动机设计。E-mail: Huchubo@nwpu.edu.cn(编辑:史亚红)
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