Gas control device for retention ring attenuation based on radioactive inert gas

A technology of inert gas and control equipment, applied in the direction of mechanical equipment, fluid flow, etc., can solve the problems of uneven matching between parallel ports and serial ports, slow radiation attenuation, and unstable switching valves, etc., to achieve improvement. Stability, high retention and attenuation efficiency, short residence time effect

Inactive Publication Date: 2020-05-22
许春明
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a gas control device based on the stagnation ring attenuation of radioactive inert gas to solve the need to guide the radioactive inert gas through electrodes and cooperate with the radiated charges in the inert gas to form a direction Due to the effect of linear displacement consumption, and the conductance of the overall small electromagnetic valve is relatively small, the control amount of the radiation charge of the inert gas becomes lower at this time, resulting in slow radiation attenuation, and continues to affect the inner electrode end of the electromagnetic valve, causing the electromagnetic valve electrode end The impact of the radiation is large, and the continuous failure affects the conduction process of the inert gas, resulting in uneven matching between the overall parallel port and the serial port, resulting in the instability of the on-off valve for gas delivery

Method used

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  • Gas control device for retention ring attenuation based on radioactive inert gas
  • Gas control device for retention ring attenuation based on radioactive inert gas
  • Gas control device for retention ring attenuation based on radioactive inert gas

Examples

Experimental program
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Embodiment 1

[0034] see Figure 1-Figure 7, the present invention provides a gas control device based on stagnation ring attenuation of radioactive inert gas, its structure includes: inner core tube 1, parallel port 2, electromagnetic pole plate 3, sealing ring cap 4, shuttle ring attenuation cylinder 5, following Electric seat 6, four-way valve seat 7, the shuttle ring attenuation cylinder 5 is inserted on the top of the four-way valve seat 7 and is on the same vertical plane, the relay seat 6 is nested in the four-way valve seat 7 and communicate with each other, the shuttle ring attenuation cylinder 5 and the sealing ring cap 4 adopt an interference fit, the parallel port 2 is installed on the top of the electromagnetic pole plate 3, and the electromagnetic pole plate 3 and the relay The seat 6 is electrically connected, the inner core tube 1 is inserted into the interior of the relay seat 6 and the four-way valve seat 7 and the axes are collinear, and the electromagnetic pole plate 3 i...

Embodiment 2

[0041] see Figure 1-Figure 7 , the present invention provides a gas control device based on stagnation ring attenuation of radioactive inert gas, other aspects are the same as in Embodiment 1, the difference is:

[0042] see image 3 , the exhaust pipe 5G is composed of a grid trapezoidal groove 5G1, a pipe body 5G2, and an exhaust elbow 5G3, and the grid trapezoidal groove 5G1 is nested on the top of the pipe body 5G2 and the axes are collinear, The through-pipe body 5G2 is inserted on the top of the exhaust elbow 5G3 and communicates with the exhaust elbow 5G3 through the grille trapezoidal groove 5G1 to ensure that after the top air-collecting funnel-type vortex air intake, the ripples at the tail output to achieve the high efficiency of airflow push.

[0043] see Figure 7 The grid trapezoidal groove 5G1 is composed of a thick spacer strip 5G11, an oblique grid plate 5G12, a guide ellipse 5G13, and a trapezoidal groove body 5G14, and the oblique grid 5G12 and the guide...

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Abstract

The invention discloses a gas control device for retention ring attenuation based on radioactive inert gas. The gas control device structurally comprises an inner core pipe, a parallel port, an electromagnetic pole plate block, a sealing ring cap, a shuttle ring attenuation cylinder, a relay seat, and a four-way valve seat. According to the gas control device for the retention ring attenuation based on the radioactive inert gas, the effect that the mutual cooperation between the shuttle ring attenuation cylinder and the four-way valve seat is applied to form sliding-shuttle-type rotary consumption of radioactive charge is achieved, so that the retention attenuation of the radioactive inert gas is highly efficient, the retention time is short, the elimination of the inert gas radiation amount is improved through matching the high efficiency of the attenuation, and the effect that a gas inlet extraction pipe is used for extracting and processing the inert gas, then the insert gas is putback an exhaust through pipe through a corrugated pipeline frame to be guided into the four-way valve seat is formed conveniently, so that when wandering of the inert gas is matched with the transverse guide of gas control, the effect that a cylinder groove body press a retention ring brush inwards is achieved, the radioactive charge of the inert gas enters a current collection frame ring to formthe effect of carbon brush and electrode tip attenuation linkage, the instability of inert gas control is improved, and the efficiency of attenuating the radioactive substance and the rapidity of thegas delivery are improved.

Description

technical field [0001] The invention relates to a gas control device based on the stagnation ring attenuation of radioactive inert gas, which belongs to the field of pneumatic equipment. Background technique [0002] The gas control equipment is convenient for the diversion and settlement of multi-element gases, but the treatment of charged radioactive inert gases is relatively complicated and cumbersome, so that the electromagnetic end of the gas control valve can form an adaptive regulation effect to ensure the efficiency of other control regulation and transportation , the shortcomings to be optimized in the current technology are: [0003] The control of radioactive inert gas needs to be guided by electrodes and cooperate with the radiated charge in the inert gas to form a directional displacement consumption effect. However, the conduction of the overall small electromagnetic valve is relatively small, and the control amount of radiated charge in the inert gas becomes l...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F15D1/00
CPCF15D1/0075F15D1/008
Inventor 许春明
Owner 许春明
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