Design and test of a simple fast electromagnetic inductive gas valve for planar pulsed inductive plasma thruster

Dawei Guo(National University of Defense Technology), Mousen Cheng(National University of Defense Technology), Xiaokang Li(National University of Defense Technology)
Review of Scientific Instruments
October 1, 2017
Cited by 7

Abstract

In support of our planar pulsed inductive plasma thruster research, a fast electromagnetic inductive valve for a gas propellant injection system has been built and tested. A new and important design feature is the use of a conical diaphragm as the action part, which greatly contributes to the virtue of simplicity for adopting the resultant force of the diaphragm deformation as the closing force. An optical transmission technique is adopted to measure the opening and closing characters of the valve while the gas throughput is determined by measuring the pressure change per pulse in a test chamber with a capacitance manometer. The experimental results revealed that the delay time before the valve reaction is less than 40 μs, and the valve pulse width is no longer than 160 μs full width at half maximum. The valve delivers 0-2.5 mg of argon gas per pulse varied by adjusting the drive voltage and gas pressure.


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