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Dual-anode magnetic control electronic gun with adjustable cathode

A magnetically controlled electron gun and double anode technology, which is applied to the electron/ion gun of the time-of-flight electron tube, etc., can solve the problem of low efficiency of gyrotron injection wave interaction, low efficiency of gyrotron injection wave interaction, and discrete initial velocity of electrons. increase and other problems, to achieve the effect of improving the efficiency of injection-wave interaction in the gyrotron tube, ensuring the reliability, reducing equipment errors and thermal deformation, and increasing the redundancy.

Inactive Publication Date: 2012-11-28
UNIV OF ELECTRONIC SCI & TECH OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The patent number is 200810114538.X, and the name of the invention is "Method for Suppressing Oscillation in Double-anode Magnetron Injection Gun Area of ​​Gyrotron Amplifier", which belongs to this type of double-anode magnetron electron gun. The cathode of this type of electron gun is welded with the electron gun through its supporting cylinder Therefore, once the relative position of the cathode and anode of the electron gun deviates during the manufacturing and assembly process of the electron gun, it cannot be adjusted, and the heat caused by the uneven heating of each part during the working process Deformation or changes in the relative position of cathode and anode due to excessive changes in operating current and voltage will lead to changes in the electric field on the surface of the cathode, increase the dispersion of the initial electron velocity when the electron gun is working, and reduce the efficiency of the injection wave interaction of the gyrotron tube. happened
Therefore, this type of electron gun has defects such as large scattered velocity, it is difficult to meet the requirement that the velocity dispersion is less than 3% in use, and the injection wave interaction efficiency of the gyrotron is low.

Method used

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  • Dual-anode magnetic control electronic gun with adjustable cathode
  • Dual-anode magnetic control electronic gun with adjustable cathode
  • Dual-anode magnetic control electronic gun with adjustable cathode

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Embodiment Construction

[0012]This embodiment: the total length of the electron gun is 283mm, the second anode 1, the axis length is 105mm, the rear outer diameter is Φ68mm, the rear inner diameter is Φ26mm, the front length is 86mm, and the front cavity taper is 11°; the first anode 2., the axis length is 26mm, the rear External diameter Φ57mm, rear internal diameter Φ48mm, inclination angle of the rear cone (covered on the cathode) is 60°; shell 3. external diameter Φ68mm, length 150mm, wall thickness 5.5mm; adjustment mechanism assembly 4: Adjusting nut 4-3 has an axial height of 26mm, and the thread is also G10 fine pipe thread. The axial limit groove width on it is 3mm, the groove bottom diameter is Φ17.26mm, and the diameter of the joint between the front end and the rear support cylinder 6-1 is Φ22mm. , The diameter of the rear rotating handle is Φ19mm (cylindrical knurling), the axial height of the lock nut 4-4 is 12mm, the inner hole is also a G10 fine tooth pipe thread, the outer end surface...

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Abstract

The invention belongs to a dual-anode magnetic control electronic gun for being matched with a vacuum gyrotron. The dual-anode magnetic control electronic gun comprises an electronic gun shell, a base, an electric heating wire assembly, a supporting drum, an adjusting mechanism assembly, an electronic gun cathode, a fixed annular plate, a first anode, a fixed ring and a second anode, wherein the electric heating wire assembly comprises an electric heating wire, an electric heating wire bushing and insulation stuffing, the electric heating wire busing is provided with an annular scale section, a threaded section and a guide plane, the supporting drum is provided with a sliding-type positioning sleeve and fixes the electric heating wire assembly into the electronic gun shell, the adjusting mechanism assembly with an adjusting nut is arranged between the electric heating wire bushing and the supporting drum; and a distance between the cathode and anodes is adjusted according to a working condition, a transverse-longitudinal speed ratio of an obtained electron beam is greater than 1.0, and the dispersion of the longitudinal speed is smaller than 1.5 percent. Due to adopting the dual-anode magnetic control electronic gun with adjustable cathode, the influences of a traditional electronic gun caused by assembling error, overheating deformation or large current and voltage variation can be effectively overcome. The dual-anode magnetic control electronic gun has characteristics of adaptability to the working current and voltage of greater range, low dispersion of the speed, excellent performance of electron beams, capability of improving the interaction power and efficiency of the subsequent gyrotron electron beams and the like.

Description

technical field [0001] The invention belongs to the double-anode magnetron electron gun in the technical field of high-power microwave, millimeter wave and submillimeter wave, in particular to a cathode-adjustable double-anode magnetron electron gun matched with a vacuum gyrotron. Background technique [0002] The gyrotron was made by the scientists of the former Soviet Union in the 1960s by using the mechanism of electron cyclotron resonance stimulated radiation. The excellent performance shown has greatly promoted the application of millimeter wave and submillimeter wave in the fields of radar and guidance system, electronic warfare, millimeter wave communication, high power microwave system, controlled thermonuclear fusion, etc. It has attracted the attention of countries all over the world, and has successively carried out theoretical and applied research on gyrotrons. The gyrotron is a device that converts the direct current energy carried by electrons into microwave e...

Claims

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Application Information

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IPC IPC(8): H01J23/06
Inventor 鄢然罗勇屈晓斌王丽王建勋李焱昭
Owner UNIV OF ELECTRONIC SCI & TECH OF CHINA
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