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A high-voltage double-pulse induction acceleration component structure

An inductive acceleration and double-pulse technology, which is applied in the direction of linear accelerators, electrical components, accelerators, etc., can solve problems such as difficult adjustment of pulse amplitude, difficulty in resetting the magnetic core of the accelerator cavity, and complex structures of the primary power source and trigger power source. The effect of structural simplification

Active Publication Date: 2017-10-03
INST OF FLUID PHYSICS CHINA ACAD OF ENG PHYSICS
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Problems solved by technology

[0007] The purpose of the present invention is to provide a high-voltage double-pulse induction acceleration component structure, which solves the complex structure of multiple pulse forming lines and the supporting primary power source and trigger power source in the current double-pulse generation method, and the difficulty in adjusting the amplitude between pulses. Cavity Core Reset Difficulty Three Difficulties

Method used

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  • A high-voltage double-pulse induction acceleration component structure
  • A high-voltage double-pulse induction acceleration component structure

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Embodiment

[0022] Such as figure 1 As shown, a high-voltage double-pulse induction acceleration component structure of the present invention includes two Blumlein forming lines, two accelerating cavities, a delay transmission line and multiple high-voltage cables; wherein Blumlein line A1 and Blumlein line B2 share the same set Charging and triggering system, when the trigger signal arrives, the two Blumlein lines output high-voltage short pulses at the same time, Blumlein line A is connected to the acceleration chamber A3 and the acceleration chamber B4 respectively through four first high-voltage cables 8 of the same length, the first high-voltage cable The electrical length of 8 is 60ns, that is, the high-voltage short pulse generated by the Blumlein line A1 reaches the acceleration chamber A3 and the acceleration chamber B4 after 60ns, and the Blumlein line B2 passes through two parallel 24Ω second high-voltage cables 7 and the water medium high-voltage delay line 5, the output end o...

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Abstract

The invention discloses a high-voltage and double-pulse induction acceleration assembly structure. A Blumlein line A is connected with an acceleration cavity A and an acceleration cavity B through four first high-voltage cables with the same length; a Blumlein line B is connected with a water medium high-voltage delay line through two second high-voltage cables which are connected in parallel; an output end of the water medium high-voltage delay line is further connected with the acceleration cavity A and the acceleration cavity B through four third high-voltage cables with the same length. Compared with a structure comprising a plurality of pulse formation lines, and a primary power supply and a triggering power supply which are matched with the pulse formation lines, the structure of the double-pulse structure disclosed by the invention is greatly simplified; in a charging process of the Blumlein line A and the Blumlein line B, a charging leakage current pulse with a time quantity microsecond is generated; polarities of the current pulse and main pulse current are opposite; magnetic cores of the acceleration cavity A and the acceleration cavity B are reset when the current pulse passes through the acceleration cavities, so that the problem that the resetting is difficult is solved.

Description

technical field [0001] The invention relates to a multi-pulse accelerating electric field generation technology, in particular to a high-voltage double-pulse induction acceleration component structure. Background technique [0002] The induction acceleration component composed of the induction cavity and the corresponding pulse power system is the basic unit of the linear induction accelerator. The high-voltage short pulse generated by the pulse power system excites the magnetic core in the induction acceleration cavity, and the pulse electric field is induced on the acceleration gap to realize Acceleration of intense electron beams. The pulse high voltage fed into the acceleration cavity usually needs to reach more than 200kV. Due to the limitation of the switching capacity, it can only be generated by the pulse forming line at present. After the forming line is discharged, it needs a long switch insulation recovery time and charging time, so it can only work in Very low r...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H05H9/00
CPCH05H9/00
Inventor 黄子平李远陈思富高峰李洪叶毅吕璐
Owner INST OF FLUID PHYSICS CHINA ACAD OF ENG PHYSICS
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