Horizontal cartridge extractor

By incorporating a bullet-water separation valve, a steam-water separation anti-overflow cover, and a pressure relief tank into the horizontal bullet catcher, the problem of violent movement of the water tank caused by the bullet's potential energy was solved, achieving both stability and portability of the equipment.

CN116697810BActive Publication Date: 2025-11-04WUXI FANYING POLICE EQUIP CO LTD +1
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Patent Information

Application Number
CN202310882353.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-18
Publication Date
2025-11-04
Estimated Expiration
2043-07-18

AI Technical Summary

Technical Problem

The water tank of the existing horizontal bullet catcher causes violent movement of the water inside the tank due to the potential energy of the bullet during gun testing, resulting in violent air movement and local pressure increase, which leads to the excessive size of the water tank and inconvenience in use.

Method used

The design incorporates a bullet-water separation valve, a steam-water separation anti-overflow cover, first and second pressure relief tanks, and a buffer plate assembly. By decelerating, depressurizing, and collecting the bullet impact water, the impact force on the water tank is reduced, the equipment length is shortened, and materials are saved.

Benefits of technology

It effectively reduces the impact force on the water tank, shortens the equipment length, facilitates installation and transportation, and maintains the stability and sealing of the water tank.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to a horizontal bullet grabber, which comprises a water tank body, the water tank body is provided with water, one end of the water tank body is a shooting port, a bullet outlet is arranged at the bottom of the water tank body far from the shooting port, a bullet-water separation valve is arranged at the position of the shooting port, the shooting port is sealed by the bullet-water separation valve, a steam-water separation anti-overflow cover is arranged at the top of the water tank body, a first pressure relief barrel is arranged at the end of the top of the water tank body close to the shooting port, and a second pressure relief barrel is arranged at the end of the water tank body far from the shooting port. The application has the effects of shortening the length of the equipment, saving materials, and facilitating equipment installation and transportation.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of firearm inspection devices, in particular to a horizontal bullet catcher. BACKGROUND

[0002] The bullet catcher is a commonly used device in forensic science bullet identification laboratories, and is commonly used in large-scale firearm inspection occasions. In actual shooting, the bullet catcher can recover the fired bullets and prevent the movement of the bullets, effectively avoiding damage to the shooting site and the surrounding environment due to shooting.

[0003] A horizontal bullet catcher is disclosed in Chinese Patent No. CN218066158U, which specifically relates to the technical field of bullet catchers and includes a water tank, an outer ring is fixed at one end of the water tank, a shooting port is formed in the inner part of the outer ring, a compression ring is arranged on the inner side of the shooting port, a first special-purpose rubber plate is arranged on the inner side of the compression ring, a second bullet-water separation rubber plate is arranged on the inner side of the first special-purpose rubber plate, and a water outlet hole is formed at the bottom end of the outer ring. The speed of the bullet is slowed down by the first special-purpose rubber plate and the second bullet-water separation rubber plate. After being penetrated, the first special-purpose rubber plate can automatically solidify to prevent water leakage. When the bullet contacts the fence net type bullet blocking rubber plate inside the water tank, the fence net type bullet blocking rubber plate will swing to reduce part of the kinetic energy when the bullet penetrates to achieve secondary bullet blocking. Under the joint action of the last buffer stirring, the purpose of non-destructive bullet catching is achieved, the travel distance of the bullet speed reduction is greatly reduced, and the length of the equipment is shortened, facilitating equipment installation and transportation.

[0004] However, the water tank in the above-mentioned patent is in a sealed state. When the firearm is inspected, the large potential energy bullet entering the water tank inside will cause the water body inside the water tank to move violently. At the same time, the violent movement of the water body will squeeze the air, causing the air to move violently, resulting in a local pressure rise. At the same time, the water tank will be subjected to a certain impact. In order to ensure the working stability of the water tank, the entire water tank needs to be large enough to withstand the potential energy of the bullet, ultimately resulting in a large water tank volume, which not only requires a large amount of material, but also is inconvenient to use. SUMMARY

[0005] In order to ensure the working stability of the bullet catcher while reducing the volume of the bullet catcher, the present application provides a horizontal bullet catcher.

[0006] The horizontal bullet catcher provided by the present application adopts the following technical scheme:

[0007] The horizontal bullet grabber comprises a water tank body provided with water, one end of the water tank body being a shooting port, a bullet outlet being arranged at the bottom of the water tank body away from the shooting port, a bullet-water separation valve being arranged at the position of the shooting port, the shooting port being sealed by the bullet-water separation valve, a steam-water separation anti-overflow cover being arranged at the top of the water tank body, a first pressure relief barrel being arranged at one end of the top of the water tank body close to the shooting port, and a second pressure relief barrel being arranged at the end of the water tank body away from the shooting port.

[0008] By adopting the technical scheme, when in use, a staff member aims the muzzle of a gun at the shooting port and then fires the gun to make the bullet shoot out, the bullet first passes through the bullet-water separation valve to reduce the speed, then enters the water in the water tank body, the water impacted by the bullet first enters the first pressure relief barrel and then flows out, so that the water impacted by the bullet is not easy to fall down quickly to impact the water tank body, then the bullet continues to move, at this time, the water in violent motion extrudes air, the air can flow out of the water tank body through the steam-water separation anti-overflow cover, so that the local gas pressure in the water tank body is released, finally, the water in violent motion enters the second pressure relief barrel after moving to the end of the water tank body, so that the potential energy of the water in motion is released, the local pressure in the water tank body is quickly released, the impact on the water tank body is reduced, the length of the equipment can be shortened, the material is saved, and the equipment installation and transportation are facilitated.

[0009] Optionally, the bullet-water separation valve comprises a mounting ring, rubber plates arranged in the mounting ring, and a pressing ring arranged on the side of the rubber plates away from the water tank body, a mounting groove is arranged on the inner side of the mounting ring away from the water tank body, the rubber plates are arranged in the mounting groove, a plurality of rubber plates are arranged in parallel, and the pressing ring is detachably connected in the mounting groove and abuts against the rubber plates.

[0010] By adopting the technical scheme, the bullet passes through the plurality of rubber plates in sequence, the rubber plates intercept the bullet to reduce the speed of the bullet, after the bullet passes through the rubber plates, the rubber plates are automatically solidified and closed, and the sealing of the water tank body is not affected. The plurality of rubber plates are arranged in the mounting groove and fixed by the detachable pressing ring, so that the rubber plates are convenient to replace.

[0011] Optionally, two rubber plates are arranged in parallel, a plurality of claw nails are arranged on the side walls of the mounting groove and the pressing ring close to the rubber plates, the plurality of claw nails are distributed along the circumferential direction of the mounting ring, and the claw nails are inserted into the rubber plates.

[0012] By adopting the technical scheme, the claw nails are inserted into the rubber plates to stably position the rubber plates, reduce the possibility that the edges of the rubber plates are separated from the pressing ring after being impacted, and improve the stability of the rubber plates.

[0013] Optionally, the steam-water separation anti-overflow cover comprises a horizontally arranged body part and a connecting part arranged around the body part, the connecting part is vertically arranged and connected with the water tank body, the body part is arranged in an arc shape and is provided with a plurality of air outlet holes, and a water baffle is arranged in parallel at the bottom of the body part, and a plurality of communication holes are arranged around the water baffle.

[0014] By adopting the above technical scheme, when the water in the water tank body moves violently, the water baffle is impacted, and due to the arc-shaped arrangement of the water baffle, the water flows into the water tank body under the action of gravity, and the air squeezed by the water body enters between the water baffle and the body part through the communication holes, and finally is discharged from the water tank body through the air outlet holes, thereby realizing local pressure relief of the water tank body and achieving the effect of preventing water overflow.

[0015] Optionally, an L-shaped flange is arranged on the side of the connecting part away from the body part, a water collecting groove is formed between the flange and the connecting part, and a plurality of backflow holes are arranged on the flange.

[0016] By adopting the above technical scheme, the L-shaped flange cooperates with the connecting part to form a water collecting groove, the water collecting groove receives the water left on the water baffle, and then the water in the water collecting groove flows back to the water tank body through the backflow holes.

[0017] Optionally, a channel for water flow is arranged in the first pressure relief barrel, the second pressure relief barrel comprises a pressure relief shell arranged on the water tank body and a collecting barrel arranged at the bottom of the pressure relief shell, a cavity communicating with the inside of the water tank body is arranged in the pressure relief shell, and the top of the collecting barrel communicates with the inside of the cavity.

[0018] By adopting the above technical scheme, when the bullet enters the water, the water impacted by the bullet first enters the channel of the first pressure relief barrel and then flows out, so that the excited water first enters the channel, so that the water has a place to go, thereby consuming the impact potential energy of the water. When the water in the water tank body moves to the second pressure relief barrel, the excited water enters the inside of the cavity and then enters the collecting barrel, thereby collecting the excited water, so that the excited water cannot fall down again to form impact on the water body, thereby improving the stability of the water body in the water tank body.

[0019] Optionally, an elastic membrane is arranged in the collecting barrel, the elastic membrane divides the inside of the collecting barrel into two cavities, and the upper cavity communicates with the cavity of the pressure relief shell.

[0020] By adopting the above technical scheme, when the water body quickly enters the inside of the collecting barrel to impact the elastic membrane, the elastic membrane can store a certain amount of water through its deformation, and then the impact of the water body is reduced, and the water backflows to the inside of the water tank body after the elastic membrane resets, thereby achieving the effect of repeated use.

[0021] Optionally, the water tank body is provided with a buffer plate assembly, which includes a bullet-resistant rubber plate and a buffer rubber plate arranged sequentially along the bullet's movement direction, with the buffer rubber plate located above the bullet exit.

[0022] By adopting the above technical solution, the bullet is finally stopped by the buffer plate assembly. The bullet first passes through the ballistic plate. When the bullet penetrates, the ballistic plate reduces some of the kinetic energy. Finally, the bullet is intercepted by the buffer plate. After being intercepted by the buffer plate, the bullet falls into the bullet exit under its own gravity.

[0023] Optionally, the bulletproof rubber sheet includes a frame and several parallel guard strips disposed inside the frame.

[0024] By adopting the above technical solution, several parallel fence bars are used to block the bullet. The bullet will hit the fence bars and pass through the gaps between the fence bars, thereby reducing the damage of the bullet-stopping rubber plate to the bullet, protecting the marks on the bullet surface, and facilitating subsequent documentation work.

[0025] Optionally, the water tank body is shaped like a bucket near the bullet outlet, and a discharge assembly is provided at the bullet outlet. The discharge assembly includes a slide gate electric valve located at the bullet outlet and a ball valve located below the slide gate electric valve.

[0026] By adopting the above technical solution, when the bullet reaches the bullet exit, the slide gate electric valve is opened to allow the bullet to fall into the ball valve. At this time, the ball valve is closed, and then the slide gate electric valve is immediately closed. Then, the ball valve is opened again to allow the bullet to be automatically discharged.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. During use, the operator aligns the gun muzzle with the firing port and fires the bullet. The bullet first passes through the bullet-water separation valve, where its speed is reduced, before entering the water inside the tank. The water impacted by the bullet first enters the first pressure relief tank and then flows out, preventing the agitated water from quickly falling back down and impacting the tank. The violently moving air then flows out of the tank through the steam-water separation overflow cover, releasing local gas pressure. Finally, the violently moving water moves to the end of the tank and enters the second pressure relief tank, releasing the kinetic energy of the water and quickly relieving local pressure inside the tank, reducing the impact on the tank. Ultimately, this shortens the equipment length, saves materials, and facilitates installation and transportation.

[0029] 2. When the water inside the water tank body is in violent motion, it will impact the water baffle. Since the water baffle is arranged in an arc shape, the water will flow into the water tank body under the action of gravity, and the air squeezed by the water body will enter between the water baffle and the body part through the communication hole, and finally be discharged from the water tank body through the air outlet hole, thereby realizing partial pressure relief of the water tank body and achieving the effect of preventing water overflow.

[0030] 3. An elastic film is arranged inside the collecting barrel. When the water body quickly enters the collecting barrel to impact the elastic film, the elastic film can store a certain amount of water through its own deformation, and then the impact of the water body becomes smaller. After the elastic film resets, the water flows back to the inside of the water tank body, thereby achieving the effect of repeated use. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 is a schematic diagram of the overall structure of the embodiment of the present application.

[0032] Figure 2 is a schematic diagram of the buffer plate group structure in the embodiment of the present application.

[0033] Figure 3 is a sectional view of the water and bullet separation valve structure in the embodiment of the present application.

[0034] Figure 4 is a schematic diagram of the first pressure relief barrel structure in the embodiment of the present application.

[0035] Figure 5 is a schematic diagram of the steam and water separation anti-overflow cover structure in the embodiment of the present application.

[0036] Figure 6 is a schematic diagram of the second pressure relief barrel structure in the embodiment of the present application.

[0037] Figure 7 is a schematic diagram of the ball valve structure in the embodiment of the present application.

[0038] BRIEF DESCRIPTION OF DRAWINGS

[0039] 1, water tank body; 11, shooting port; 12, bullet outlet; 2, water and bullet separation valve; 21, mounting ring; 211, mounting groove; 212, water drain hole; 22, rubber plate; 23, pressure ring; 24, claw nail; 3, steam and water separation anti-overflow cover; 31, body part; 311, air outlet hole; 32, connecting part; 321, flange; 322, backflow hole; 33, water baffle; 331, communication hole; 4, first pressure relief barrel; 41, channel; 5, second pressure relief barrel; 51, pressure relief shell; 511, cavity; 52, collecting barrel; 521, elastic film; 6, buffer plate group; 61, bullet blocking rubber plate; 611, frame; 612, fence; 62, buffer rubber plate; 7, discharge assembly; 71, plug-in plate type electric valve; 72, ball valve; 721, valve body; 722, ball; 723, valve stem. Detailed Implementation

[0040] The following is in conjunction with the appendix Figures 1-7 This application will be described in further detail.

[0041] This application discloses a horizontal grenades grabber.

[0042] Reference Figure 1 and Figure 2 A horizontal bullet catcher includes a horizontally arranged water tank body 1 filled with water. One end of the water tank body 1 is a firing port 11. The bottom end of the water tank body 1 away from the firing port 11 is provided with a bullet outlet 12. A bullet-water separation valve 2 is provided at the bullet outlet 12. A discharge assembly 7 is provided at the bullet outlet 12. A first pressure relief tank 4, a steam-water separation anti-overflow cover 3, and a second pressure relief tank 5 are arranged sequentially along the direction from the firing port 11 to the bullet outlet 12 on the water tank body 1. The bullet-water separation valve 2 is used to seal the firing port 11. The top of the water tank body 1 is open. The first pressure relief tank 4 and the steam-water separation anti-overflow cover 3 cover the opening of the water tank body 1. A buffer plate assembly 6 is also provided inside the water tank body 1.

[0043] Reference Figure 1 and Figure 2 The operator aims the gun at firing port 11 and fires, firing a bullet. The bullet first passes through the bullet-water separation valve 2 and then enters the water inside the tank body 1. The water impacted by the bullet first enters the first pressure relief tank 4 and then flows out. Simultaneously, the water compresses the air, and the violently moving air flows out of the tank through the steam-water separation overflow cover 3, releasing the local gas pressure. The bullet is then blocked by the buffer plate assembly 6 and finally falls to the bullet outlet 12, where it is collected by the discharge assembly 7. At the same time, the violently moving water moves to the end of the tank body 1 and enters the second pressure relief tank 5, thereby releasing the kinetic energy of the water and quickly relieving the local pressure inside the tank body 1. Ultimately, this reduces the impact on the tank body 1, shortens the equipment length, saves materials, and facilitates equipment installation and transportation.

[0044] Reference Figure 1 and Figure 3 The bullet-water separation valve 2 includes a mounting ring 21, a rubber plate 22, and a pressure ring 23. The mounting ring 21 is fixedly installed at the firing port 11. A mounting groove 211 is provided on the inner ring of the mounting ring 21 away from the water tank body 1. Several rubber plates 22 are arranged in parallel; this embodiment uses two as an example. The rubber plates 22 in this embodiment are self-healing rubber plates, which can automatically heal after a bullet passes through. The pressure ring 23 is detachably connected inside the mounting groove 211. In this embodiment, the pressure ring 23 and the side wall of the mounting groove 211 are threaded together. The side of the pressure ring 23 closest to the rubber plate 22 abuts against the rubber plate 22. In this embodiment, the pressure ring 23 is made of stainless steel.

[0045] ReferenceFigure 3 The mounting groove 211 and the side wall of the compression ring 23 close to the rubber plate 22 are fixedly provided with a plurality of claw nails 24, six in the embodiment, which are distributed along the circumferential direction of the mounting ring 21. A blind hole is formed on the side of each rubber plate 22 away from the other rubber plate 22, and the claw nail 24 is inserted into the blind hole of the rubber plate 22. The claw nail 24 inserted into the blind hole of the rubber plate 22 can stably position the rubber plate 22.

[0046] Referring to Figure 3 A drain hole 212 is formed in the vertical direction on the side wall of the mounting groove 211, which is located at the lowest part of the mounting ring 21 and is in communication with the gap between the two rubber plates 22. When the bullet passes through the first rubber plate 22, the first rubber plate 22 will automatically solidify and close. After the bullet passes through the first rubber plate 22, it will be cooled, and when it penetrates the second rubber plate 22 again, the solidification and closing functions of the second rubber plate 22 will be weakened, and part of the water will enter the gap between the two rubber plates 22 and be drained through the drain hole 212.

[0047] Referring to Figure 1 and Figure 4 The first pressure relief barrel 4 is fixedly arranged on the top of the water tank body 1, and a channel 41 is formed in the first pressure relief barrel 4 along the movement direction of the bullet. After the bullet enters the water, the water impacted by the bullet first enters the channel 41 of the first pressure relief barrel 4 and then flows out, so that the water stirred up is not easy to fall quickly and impact the water tank body 1.

[0048] Referring to Figure 1 and Figure 5 The steam-water separation anti-overflow cover 3 comprises an integrally formed body part 31 and a connecting part 32. The body part 31 is horizontally arranged on the top of the water tank body 1 and is arc-shaped with the arc center below itself. The connecting part 32 is arranged around the body part 31 and is vertically arranged. An L-shaped flange 321 is integrally formed on the bottom of the connecting part 32, and a water collecting groove is formed between the flange 321 and the connecting part 32. A plurality of backflow holes 322 are formed in the flange 321.

[0049] Referring to Figure 5 A plurality of air outlets 311 are formed in the body part 31. A water baffle 33 is arranged in parallel on the bottom of the body part 31 and is fixedly connected with the connecting part 32. A plurality of communication holes 331 are formed in the periphery of the water baffle 33. When the bullet enters the water in the water tank body 1, the water in the water tank body 1 moves violently and impacts the water baffle 33. The water flows into the water collecting groove under the action of gravity and backflows into the water tank body 1. The air squeezed by the water flows into the space between the water baffle 33 and the body part 31 through the communication holes 331 and is discharged from the water tank body 1 through the air outlets 311, so that the water tank body 1 is partially relieved, and the water is not easy to overflow.

[0050] Reference Figure 1 and Figure 6 The second pressure relief tank 5 includes a pressure relief shell 51 and a collection tank 52. The pressure relief shell 51 is fixedly installed at the end of the water tank body 1 away from the firing port 11. The pressure relief shell 51 has a cavity 511 inside, and the pressure relief shell 51 is higher than the water level inside the water tank body 1. The collection tank 52 is fixedly connected to the lower part of the pressure relief shell 51. The interior of the water tank body 1, the cavity 511, and the collection tank 52 are interconnected. An elastic membrane 521 is fixedly installed inside the collection tank 52. The elastic membrane 521 is horizontally positioned and divides the interior of the collection tank 52 into upper and lower cavities. The upper cavity is connected to the cavity 511 of the pressure relief shell 51.

[0051] Reference Figure 1 and Figure 6 During the bullet's movement, the water impacts the second pressure relief tank 5. Some water enters the collection tank 52 through the cavity 511 and impacts the elastic membrane 521. At this time, the elastic membrane 521 will deform to store a certain amount of water. As the impact force of the water decreases, the elastic membrane 521 will reset, allowing the water to flow back into the water tank body 1, thus preventing the water that was stirred up from falling down again and impacting the water body.

[0052] Reference Figure 1 and Figure 2 The buffer plate assembly 6 includes a ballistic damping plate 61 and a buffer plate 62 arranged sequentially along the bullet's direction of motion. Both the ballistic damping plate 61 and the buffer plate 62 are vertically arranged. The ballistic damping plate 61 includes a frame 611 and guardrails 612. The frame 611 is fixedly installed inside the water tank and its periphery is fixedly connected to the inner wall of the water tank body 1. Several guardrails 612 are arranged parallel to each other inside the frame 611, and their two ends are fixedly connected to the frame 611. The guardrails 612 can be made of elastic plastic or rubber. The buffer plate 62 is fixedly connected to the inner wall of the water tank body 1 and is located above the bullet exit 12.

[0053] Reference Figure 1 and Figure 2 The bullet is initially intercepted by the ballistic rubber plate 61. When the bullet passes between the two fence bars 612, the fence bars 612 are less likely to damage the bullet and at the same time reduce the kinetic energy of the bullet. The bullet is then intercepted by the buffer rubber plate 62 and then falls into the bullet outlet 12 under its own gravity.

[0054] Reference Figure 1 The water tank body 1 is shaped like a bucket near the bullet outlet 12. The discharge assembly 7 includes a slide gate electric valve 71 and a ball valve 72. The slide gate electric valve 71 is fixedly installed at the bullet outlet 12, and the opening and closing of the bullet outlet 12 is controlled by the slide gate electric valve 71.

[0055] Referring to Figure 1 and Figure 7 The ball valve 72 includes a valve body 721 and a ball body 722, the valve body 721 is fixedly connected below the plug-in electric valve 71, the ball body 722 is rotatably arranged in the valve body 721, the ball body 722 is driven to rotate by the motor, the ball body 722 is provided with a through hole, when the ball valve 72 is closed, the through hole is not communicated with the outside of the valve body 721, when the ball valve 72 is opened, the through hole is communicated with the plug-in electric valve 71 and the outside. When the bullet reaches the bullet outlet 12, the plug-in electric valve 71 is opened to make the bullet fall into the ball valve 72, at this time the ball valve 72 is closed, and then the plug-in electric valve 71 is closed again, and the bullet is automatically discharged by opening the ball valve 72.

[0056] The working principle of the horizontal bullet catcher according to the embodiment of the application is as follows: the staff member aims at the shooting port 11 and shoots, the bullet first passes through the bullet-water separation valve 2, when the bullet passes through the two rubber plates 22 in sequence, the rubber plates 22 are automatically solidified and closed, the speed of the bullet is slowed down and the potential energy of the bullet is weakened. Then, when the bullet enters the water body in the water tank body 1, the water impacted by the bullet first enters the channel 41 of the first pressure relief barrel 4, and then flows out, at the same time, the water body under the steam-water separation overflow cover 3 moves violently and impacts the water baffle 33, the water flows back to the inside of the water tank body 1 under the action of gravity after flowing up the water baffle 33, and the air squeezed by the water body is discharged from the water tank body 1 through the communication hole 331 and the air outlet hole 311, so that the local pressure relief of the water tank body 1 is realized. Then, the bullet continues to move forward and is blocked by the buffer plate group 6, so that the bullet falls to the bullet outlet 12 under the action of gravity, and the bullet is collected by the discharging assembly 7. At the same time, the water moving violently moves close to the second pressure relief barrel 5, directly enters the second pressure relief barrel 5, so that the kinetic energy of the water body is released, and the local pressure in the water tank body 1 can be quickly relieved. Finally, the impact on the water tank body 1 is reduced, and the length of the equipment can be shortened, the material can be saved, and the equipment installation and transportation are facilitated.

[0057] The above are preferred embodiments of the application, and do not limit the protection scope of the application, therefore: any equivalent changes made on the structure, shape and principle of the application should be covered within the protection scope of the application.

Claims

1. A horizontal round grabber, characterized by: The utility model provides a water tank, including water tank body (1), the water tank body (1) is equipped with water, one end of water tank body (1) is the shooting mouth (11), the bottom of water tank body (1) is provided with bullet outlet (12) away from the one end of shooting mouth (11), the shooting mouth (11) position is provided with water bullet separation valve (2), water bullet separation valve (2) seal shooting mouth (11) setting, the top of water tank body (1) is provided with steam water separation anti -overflow cover (3), the top of water tank body (1) is provided with first pressure relief bucket (4) away from the one end of shooting mouth (11), the one end of water tank body (1) is provided with second pressure relief bucket (5) away from shooting mouth (11);Steam water separation anti -overflow cover (3) includes horizontally arranged body part (31) and the connecting part (32) setting in the body part (31) four -quarters, the connecting part (32) is vertically arranged and is connected with water tank body (1), the body part (31) is arranged in arc and is provided with a plurality of gas outlet (311), the bottom of body part (31) is provided with the water baffle (33) in parallel, the periphery of water baffle (33) is provided with a plurality of communication hole (331);The inside of first pressure relief bucket (4) is provided with the passageway (41) for water flow, second pressure relief bucket (5) includes the pressure relief shell (51) setting on water tank body (1) and the collection bucket (52) setting on the bottom of pressure relief shell (51), the inside of pressure relief shell (51) is provided with the cavity (511) of communicating the inside of water tank body (1), the top of collection bucket (52) and the inside of cavity (511) are communicated;The inside of collection bucket (52) is provided with elastic film (521), the elastic film (521) divides the inside of collection bucket (52) into two cavities, and the cavity in the upper side is communicated with the cavity (511) of pressure relief shell (51);Water bullet separation valve (2) includes mounting ring (21), rubber plate (22) setting in the inside of mounting ring (21) and pressure ring (23) setting on the side of rubber plate (22) away from water tank body (1), the inside of mounting ring (21) is provided with mounting groove (211) on the side away from water tank body (1), rubber plate (22) is located in the inside of mounting groove (211), rubber plate (22) is provided with a plurality of in parallel, pressure ring (23) is detachably connected in the inside of mounting groove (211), and is in contact with rubber plate (22).

2. A horizontal magazine according to claim 1, characterized in that: The rubber plate (22) is provided with two in parallel, the sidewall of mounting groove (211) and pressure ring (23) close to rubber plate (22) is provided with a plurality of claw nails (24), a plurality of claw nails (24) are distributed along the circumferential direction of mounting ring (21), and the claw nail (24) is inserted into the inside of rubber plate (22).

3. A horizontal magazine according to claim 2, characterized in that: The side of connecting part (32) away from body part (31) is provided with L-shaped turn -up (321), the water collecting groove is formed between turn -up (321) and connecting part (32), a plurality of backflow holes (322) are formed in turn -up (321).

4. A horizontal cartridge extractor according to claim 1, characterized in that: The water tank body (1) is internally provided with a buffer plate group (6), the buffer plate group (6) comprises bullet stopping rubber plates (61) and buffer rubber plates (62) arranged in sequence along the bullet movement direction, and the buffer rubber plates (62) are located above the bullet outlet (12).

5. A horizontal magazine according to claim 4, characterized in that: The bullet stopping rubber plate (61) comprises a frame (611) and a plurality of fence strips (612) arranged in parallel inside the frame (611).

6. A horizontal cartridge extractor according to claim 1, characterized in that: The water tank body (1) is arranged in a bucket shape near the bullet outlet (12), a discharging assembly (7) is arranged at the bullet outlet (12), the discharging assembly (7) comprises a plug-in electric valve (71) arranged at the bullet outlet (12) and a ball valve (72) arranged below the plug-in electric valve (71).

Citation Information

Patent Citations

  • Double-insurance water tank with double inner containers

    CN202281558U

  • Horizontal bullet grabbing device

    CN218066158U