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Cathode water cooling structure for magnetoplasma thruster

A technology of magnetic plasma and thruster, which is applied in the direction of plasma, utilization of plasma, reverse thrust device, etc., to achieve the effect of large contact surface area, increased residence time, and reliable connection

Active Publication Date: 2018-02-13
BEIHANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The cathode connector and the cathode water-cooled housing together form the cathode holder

Method used

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  • Cathode water cooling structure for magnetoplasma thruster
  • Cathode water cooling structure for magnetoplasma thruster

Examples

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Embodiment Construction

[0024] The specific implementation of the present invention will be described in detail below through specific examples in conjunction with the accompanying drawings.

[0025] Please refer to figure 1 , the assembly diagram of the magnetic plasma engine disclosed in the present invention, comprising: 1. deflector plate 2. nut 3. hollow cathode

[0026] 4. Cathode inlet pipe 5. Cathode connector 6. Cathode outlet pipe 7. Cathode water cooling shell 8, 13. Bolt 9. Insulation sleeve 10. External fixing part 11. Intermediate connector 12. Anode propellant inlet 14. Insulating ceramics 15. Anode water cooling shell 16. Anode. The intermediate connecting piece 11 is fixed to the external fixing piece 10 through the bolt 8, the nut 2, and the insulating sleeve 9, wherein the external fixing piece 10 is fixed to the supporting structure of the thruster. The purpose of the insulating sleeve 9 is to insulate the external fixing part from the thruster, so as to prevent the electric pow...

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PUM

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Abstract

The invention belongs to the field of electric propulsion thrusters and discloses a cathode water cooling structure for a magnetoplasma thruster. The cathode water cooling structure is mainly used forsolving the cathode thermal protection problem of the magnetoplasma thruster. The water cooling structure adopts a cathode gripper composed of a cathode connecting part and a cathode water cooling outer shell for clamping a cathode, heat of the cathode is taken away through heat conduction, cooling water flowing reciprocally is used for heat convection in the gripper, and thus heat transmitted from the cathode is taken away. The water cooling structure takes lots of heat settled on the cathode of the thruster in a centralized mode away, an electrode structure is prevented from failing due tooverheat, ablation of the cathode is reduced, and the single working time and the service life of the magnetoplasma thruster are remarkably prolonged.

Description

Technical field [0001] The invention belongs to the design field of an electric propulsion thruster, and relates to a water cooling structure for cooling a cathode by a holder with an inner cooling channel. Background technique [0002] Electric propulsion is a kind of advanced propulsion method that uses electric energy to directly heat the propellant or ionizes and accelerates the propellant to obtain propulsion power. It has high specific impulse, thrust and efficiency. It has broad application prospects in space missions such as space navigation and interstellar navigation. [0003] The magnetoplasma thruster is a kind of electric propulsion, which uses the Lorentz force generated by the magnetic field and the electric field to accelerate the propellant ionized gas, also known as the Lorentz force accelerator. Magnetoplasma thrusters are easy to combine with high nuclear power, miniaturized, and can provide a greater magnitude of thrust than other electric thrusters. It...

Claims

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Application Information

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IPC IPC(8): F03H1/00H05H1/28
CPCF03H1/0081H05H1/28
Inventor 汤海滨陈志远杨文将王宝军李泽峰王一白
Owner BEIHANG UNIV
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