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Micro Newton thruster development = ...
~
Hey, Franz Georg.
Micro Newton thruster development = direct thrust measurements and thruster downscaling /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Micro Newton thruster development/ by Franz Georg Hey.
Reminder of title:
direct thrust measurements and thruster downscaling /
Author:
Hey, Franz Georg.
Published:
Wiesbaden :Springer Fachmedien Wiesbaden : : 2018.,
Description:
xvii, 171 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Rocket engines - Thrust. -
Online resource:
http://dx.doi.org/10.1007/978-3-658-21209-4
ISBN:
9783658212094
Micro Newton thruster development = direct thrust measurements and thruster downscaling /
Hey, Franz Georg.
Micro Newton thruster development
direct thrust measurements and thruster downscaling /[electronic resource] :by Franz Georg Hey. - Wiesbaden :Springer Fachmedien Wiesbaden :2018. - xvii, 171 p. :ill. (some col.), digital ;24 cm.
Electric Propulsion Fundamentals: Thrust Measurement Fundamentals, HEMPT Physics -- Micro-Newton Thruster Test Facility Development -- Micro-Newton Thrust Balance Development -- High Efficiency Multistage Plasma Thruster Downscaling.
Franz Georg Hey summarises the development and testing of a micro-Newton thrust balance, as well as the downscaling of a High Efficiency Multistage Plasma Thruster to micro-Newton thrust levels. The balance is tailored to fully characterise thruster candidates for the space based gravitational wave detector LISA. Thus, thrust noise measurements in sub-micro-Newton regime can be performed in the overall LISA bandwidth. The downscaled thruster can be operated down to serval tens of micro-Newton with a comparably high specific impulse. Contents Electric Propulsion Fundamentals: Thrust Measurement Fundamentals, HEMPT Physics Micro-Newton Thruster Test Facility Development Micro-Newton Thrust Balance Development High Efficiency Multistage Plasma Thruster Downscaling Target Groups Scientists and students in the field of aerospace research Satellite and thruster integrators, electric propulsion and gravitational wave detector community About the Author Franz Georg Hey works as mechanical, thermal, propulsion architect and technical lead of the micro Newton propulsion laboratory of Europe's leading air and spacecraft manufacturer. The author is participating on major programmes for future satellite and electric propulsion development. The author's research is performed in close collaboration with the Dresden University of Technology, the University of Bremen and the DLR Bremen.
ISBN: 9783658212094
Standard No.: 10.1007/978-3-658-21209-4doiSubjects--Topical Terms:
1202382
Rocket engines
--Thrust.
LC Class. No.: TL782 / .H494 2018
Dewey Class. No.: 629.134354
Micro Newton thruster development = direct thrust measurements and thruster downscaling /
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Electric Propulsion Fundamentals: Thrust Measurement Fundamentals, HEMPT Physics -- Micro-Newton Thruster Test Facility Development -- Micro-Newton Thrust Balance Development -- High Efficiency Multistage Plasma Thruster Downscaling.
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Franz Georg Hey summarises the development and testing of a micro-Newton thrust balance, as well as the downscaling of a High Efficiency Multistage Plasma Thruster to micro-Newton thrust levels. The balance is tailored to fully characterise thruster candidates for the space based gravitational wave detector LISA. Thus, thrust noise measurements in sub-micro-Newton regime can be performed in the overall LISA bandwidth. The downscaled thruster can be operated down to serval tens of micro-Newton with a comparably high specific impulse. Contents Electric Propulsion Fundamentals: Thrust Measurement Fundamentals, HEMPT Physics Micro-Newton Thruster Test Facility Development Micro-Newton Thrust Balance Development High Efficiency Multistage Plasma Thruster Downscaling Target Groups Scientists and students in the field of aerospace research Satellite and thruster integrators, electric propulsion and gravitational wave detector community About the Author Franz Georg Hey works as mechanical, thermal, propulsion architect and technical lead of the micro Newton propulsion laboratory of Europe's leading air and spacecraft manufacturer. The author is participating on major programmes for future satellite and electric propulsion development. The author's research is performed in close collaboration with the Dresden University of Technology, the University of Bremen and the DLR Bremen.
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