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Ammunition destroying device

A technology for destroying devices and ammunition, applied in blasting and other directions, can solve problems such as reducing strength, and achieve the effects of preventing splashes, operating safely, and improving melting efficiency.

Pending Publication Date: 2020-08-18
NAT UNIV OF DEFENSE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For a slightly thicker shell case, although the high temperature generated by the reaction cannot directly melt through the shell case, it can soften the shell case and reduce its strength. , so that the high-pressure gas can be released and continue to burn and burn

Method used

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Examples

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Embodiment Construction

[0030] The embodiments of the present invention will be described in detail below with reference to the accompanying drawings, but the present invention can be implemented in various ways defined and covered by the claims.

[0031] see Figure 1 to Figure 3 , a device for destroying explosive ammunition, comprising a furnace cover 1, a reaction furnace 2, a drainage device 3 and a height-adjustable support frame 4 connected sequentially from top to bottom; the reaction furnace 2 is a cylindrical structure, and the reaction furnace 2. The upper end is provided with a convex edge outward, and the lower end is provided with a convex edge inward. The drainage device 3 is a cylinder whose inner diameter and outer diameter gradually decrease from top to bottom. The outer diameter of the upper end of the drainage device 3 and the reaction The inner diameter of the lower end of the furnace 2 is equal, the drainage device 3 is sleeved inside the reaction furnace 2, the upper end of the...

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Abstract

The invention provides an explosive ammunition destroying device. The explosive ammunition destroying device comprises a furnace cover, a reaction furnace, a drainage device and a height-adjustable supporting frame which are sequentially connected; the reaction furnace is of a cylindrical structure, a convex edge is outwards arranged at the upper end of the reaction furnace, a convex edge is inwards arranged at the lower end of the reaction furnace, the drainage device is a cylinder of which the inner diameter and the outer diameter are gradually reduced from top to bottom, the drainage deviceis sleeved with the reaction furnace, and the upper end of the drainage device is clamped with the inward convex edge at the lower end of the reaction furnace; a baffle with the diameter equal to theinner diameter of the lower end of the reaction furnace is arranged at an upper end opening of the drainage device, the furnace cover and the baffle jointly define a containing cavity used for containing a thermite and reacting, the supporting frame comprises a base ring and at least three side face supports connected with the base ring, and the reaction furnace is sleeved with the supporting frame through the base ring. The device is used for containing the high-heat agent, meanwhile, high-temperature liquid slag is guided to continuously act on a target position in a streamline shape,and unexploded ammunition is effectively destroyed.

Description

technical field [0001] The invention relates to the technical field of destroying unexploded ammunition, in particular to an ammunition destruction device. Background technique [0002] The disposal of unexploded ammunition is a link that must be faced in the live ammunition training of the army, public security and armed police. The current disposal method mainly adopts the method of blowing up explosives. This method has the disadvantages of additional increase in explosive equivalent, low safety and long cycle, and it is difficult to meet the real-time, safe and efficient needs of the training process. [0003] High heat agents (mainly including thermitants, magnesium heat agents, etc.) will release a large amount of heat during the reaction, and the high temperature slag produced (most of the high heat agents have a combustion temperature of 2000-2800°C, and even more so at 3000-4000°C Between them, in a high-temperature liquid state) interacts with the shell of the une...

Claims

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Application Information

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IPC IPC(8): F42D5/04
CPCF42D5/04
Inventor 汪庆桃陈志阳王崇旭
Owner NAT UNIV OF DEFENSE TECH
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