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Micropropulsion Technologies 267
38. J. Mueller, I. Chakraborty, D. Bame, and W. Tang, The vaporizing liquid micro-thruster
concept: preliminary results of initial feasibility studies, Micropropulsion for Small
Spacecraft, Progress in Astronautics and Aeronautics, vol. 187, Chapter 8, M. Micci
and A. Ketsdever (eds.), AIAA, Reston, VA, 2000.
39. J. Mueller, J. Ziemer, A. Green, and D. Bame, Performance Characterization of the
Vaporizing Liquid Micro-Thruster (VLM), 28th International Electric Propulsion Con-
ference, IEPC-2003-237, Toulouse, 2003.
40. P.D. Fuqua, S.W. Janson, W.W. hansen, and H. Helvajian, Fabrication of true 3D
microstructures in glass/ceramic materials by pulsed UV laser volumetric exposure
techniques, Proceedings of SPIE 1999, 1999, p. 213.
41. J. Cardin and J. Acosta, Design and Test of an Economical Cold Gas Propulsion System,
th
14 Annual AIAA/USU Conference on Small Satellites paper SSC00-, 2000.
42. R. Nanson III, Navier Stokes/Direct Simulation Monte Carlo Modeling of Small Cold
Gas Thruster Nozzle and Plume Flows, Phd thesis. Worcester Polytechnic Institute
(2002).
43. B. Larangot, C. Rossi, T. Camps, A. Berthold, P.Q. Cham, D. Briand, N.F. deRooij, M.
Puig-Vidal, P. Miribel, E. Montane, E. Lopez, and J. Samitier, Solid Propellant Micro-
Rockets-towards a New Type of Power MEMS’, AIAA paper 2002–xxxx, Nanotech,
2002, www.laas.fr/Micropyros/Publication/Nanotech-paper.pdf.
44. D. Lewis et al., Digital Micro-Propulsion Sensors and Actuators A, Physical, vol. 80,
no. 2, 2000, pp. 143–154.
45. S. Tanaka et al., MEMS-based solid propellant rocket array thruster with electrical
feedthroughs, Transactions of Japanese Society Aero Space Science, vol. 46, no. 151,
2003, pp. 47–51.
46. E. Rudnyi et al., Solid Propellant Microthrusters: Theory of Operation and Modelling
Strategy, AIAA paper 2002–5755, Nanotech, 2002.
47. Takahashi et al., Design and Testing of Mega-Bit Microthruster Arrays, AIAA paper
2002–5757, Nanotech, 2002.
48. D.H. Lee, J.S. Hwang, S.-E. Park, and S. Kwon, Thermochemical Design of a Micro
Liquid Monopropellant Rocket with Catalytic Reaction of Hydrogen Peroxide, ASME
IMECE 39193, International Mechanical Engineers Congress and Exhibition 2002, New
Orleans, LA.
49. D. Hitt, C. Zakrzwski, and M. Thomas, MEMS based satellite micropropulsion via
catalyzed hydrogen peroxide decomposition, Smart Materials and Structure, vol. 10,
2001, pp. 1163–1175.
50. A. Varia, Thermal Model of MEMS Thruster, NASA GSFC Propulsion Branch code 597
— Report, femci.gsfc.nasa.gov/workshop/2003/presentations/varia/Varia-MEMS_
Thruster.ppt.
51. Prof. Amit Lal, Cornell University, lal@ece.cornell.edu — private communications.
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