Shooting training simulator and simulation method
By using laser devices and headless empty-packing bullets in shooting training, combined with the design of the protective cover, the problems of waste of resources and insufficient realism in the existing technology are solved, and an efficient, safe and low-cost shooting training simulation is achieved.
Patent Information
- Application Number
- CN202510681758.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-23
- Publication Date
- 2025-06-27
AI Technical Summary
The existing shooting training technology has waste of resources and safety risks caused by the use of live ammunition, and the computer simulation is insufficient and the cost is high.
Design a shooting training simulation simulator, using a laser device instead of live ammunition, combined with headless empty bullets and protective covers, to simulate the real shooting feeling and recoil.
It achieves maximum resource saving and reduces damage to the natural environment. The simulated shooting feeling is the same as live-fire training and is suitable for military training and film and television shooting.
Smart Images

Figure CN120212800A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of shooting simulation, and particularly relates to a shooting training simulation simulator and a simulation method. simulation method. Background Art
[0002] Since a large number of expired gunpowders are eliminated by the country every year and need to be disposed of, they are usually mixed into fireworks gunpowder for use. And directly using empty cartridges for simulated live ammunition shooting can be specifically used to consume and dispose of these expired gunpowders, which are used in blank cartridges. This reduces the risk that military gunpowder will flow into the civilian market and be exploited by malicious people, adding an invisible layer of protection to social security. At the same time, the simulated shooting training simulated by a computer is far from comparable to the present invention in terms of realism, and the cost is lower. The nearly expired gunpowder also needs a place to be consumed so as not to be wasted. Coupled with the scarce copper resource reserves in our country, the inventor has seen an invention that uses plastic cartridges to replace metal cartridges recently, achieving the purpose of saving money. In order to save a large amount of military expenditure for the country, the inventor designed and developed a simulation device that uses laser instead of live ammunition shooting training, which can simulate a completely real shooting feeling. Summary of the Invention
[0003] The purpose of the present invention is to overcome the deficiencies of the prior art, and provide a shooting training simulation simulator and a simulation method, which solve the problems in the above background art.
[0004] The purpose of the present invention is achieved as follows: A shooting training simulation simulator includes a main body. A cavity through hole is provided inside the main body. One end of the cavity through hole is provided with a wide mouth part, and the other end of the cavity through hole is provided with a docking part for docking with the port of a training gun barrel. A laser device is fixedly provided inside the cavity through hole and near the wide mouth part, and a protective cover is fixedly provided inside the cavity through hole and near the docking part. Multiple cover holes are provided on the cover body of the protective cover. During use, the docking part of the main body is docked with the muzzle of the gun barrel; the projectile shot from the gun barrel impacts and breaks when hitting the protective cover; after the projectile breaks, under the impact force released by itself, the fragments flow through the cover holes into the wide mouth part of the cavity through hole; the impact force and the projectile During the process of the fine powder passing through the cavity through-hole, the laser excitation switch is triggered, causing the laser device to emit laser light, the laser launch the impact point, simulating the target point of real live ammunition shooting. At the same time, the projectile disintegrates in the main body and finally its own impact force takes it out of the main body from the wide mouth part. The present invention can use laser instead of live ammunition shooting training. The projectile can be a headless blank cartridge or other projectiles, completely simulating a shooting feeling exactly the same as real live ammunition training, with a real recoil force and a real target impact point.
[0005] Furthermore, an insulating protective layer is fixedly arranged outside the laser device, and a laser trigger switch is arranged at the inner end of the laser device. The inside of the insulating protective layer is filled with an insulating material, and the insulating material is aerogel or a vacuum insulation panel. The laser device can also be a laser device with an infrared ranging function, that is, a combination of a laser device and infrared ranging, and the two functions are emitted by one emitter. The power supply of the laser device adopts an external power supply method, or it can also adopt a method of converting thermal energy into electrical energy, and the external power supply is preferably adopted. The inlet and outlet of the external power supply are the same as the laser trigger switch.
[0006] Furthermore, a bracket for stabilizing the laser device is fixedly arranged on the inner wall of the cavity through hole, and the bracket is slidably connected to the insulating protective layer outside the laser device. The bracket can also be replaced by a screw that is screwed into the cavity through hole from the outside of the body and then screwed into the insulating protective layer outside the laser device to fix the laser device.
[0007] Furthermore, a screw rod is fixedly connected to the inner end of the laser device, a connection hole corresponding to the screw rod is opened at the inner end of the protective cover, and the screw rod is threadedly connected to the connection hole. An auxiliary hole is opened on the side wall of the screw rod, a through hole penetrating through the connection hole is opened on the side wall of the body, a stabilizing rod is inserted into the through hole, and the inner end of the stabilizing rod is threadedly connected to the auxiliary hole. The through hole passes through the wall thickness between the two cover holes, not through the air flow cover hole.
[0008] Furthermore, a spacer layer is arranged between the screw rod and the laser device, and an insulating material is arranged inside the spacer layer, or a heat insulating cloth can be optionally arranged outside the screw rod to solve the problem that the screw rod of the exposed laser device conducts heat. A pointed end is arranged at the outer end of the protective cover, and the pointed end is used to impact the projectile to break the projectile, and the pointed end and the protective cover are integrally formed. A shooting training simulation method includes the following steps: docking the docking part of the body with the muzzle of the barrel; the projectile fired from the barrel impacts the protective cover and breaks; after the projectile breaks, the fragments flow into the wide mouth part of the cavity through hole under the action of the impact force released by itself; the impact force and the projectile fragments trigger the laser excitation switch during the process of passing through the cavity through hole, so that the laser device emits laser.
[0009] Advantages of the present invention: The present invention is mainly aimed at saving the military training expenses to the greatest extent. Since no metal projectiles are fired, just like using plastic cartridges, the copper resources saved by the warheads are much more than those of the cartridges. The reduction of the gunpowder amount can also achieve the purpose of energy conservation and environmental protection, and reduce the maximum damage to the natural environment. Secondly, this blank cartridge barrel structure that can simulate the real recoil can also be used in the prop shooting of film and television dramas, making the shooting realism of film and television drama works exceed that of American blockbusters, and enabling domestic gunfight movies to better enter the international market. It has great potential both for military and civilian use. Laser is used instead of live ammunition shooting training, and the projectile body uses headless blank cartridges, completely simulating the shooting feeling exactly the same as that of live ammunition training, the real recoil, and the real target hitting point. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 is a schematic structural diagram of the closed state of the present invention; Figure 2 is a schematic structural diagram of the open state of the present invention; Figure 3 is a schematic cross-sectional view of the protective cover of the present invention; Figure 4 is a schematic cross-sectional view of the bracket of the present invention; Figure 5 is a schematic cross-sectional view of the internal air flow circulation path of the present invention.
[0011] In the figures: 1 body, 2 cavity through hole, 3 wide mouth part, 4 docking part, 5 laser device, 6 protective cover, 7 cover hole, 8 heat insulation protection layer, 9 laser trigger switch, 10 aerogel, 11 bracket, 12 screw rod, 13 connection hole, 14 auxiliary hole, 15 through hole, 16 stabilizing rod, 17 pointed end part.
[0012] DETAILED DESCRIPTION OF THE EMBODIMENTS The following further describes the present invention in detail with reference to the accompanying drawings. It should be noted that the Figure 1 and Figure 2 in the BRIEF DESCRIPTION OF THE DRAWINGS are only diagrams for explaining the structural principle and do not represent the actual size of the final physical object. For example, the laser device may need to add other components according to the required integrated other ranging and positioning functions, and the size will become larger. All orientation words such as up, down, front, back, left, and right that appear in the present invention do not limit the present invention, but are only for more clearly explaining and interpreting the present invention.
[0013] Embodiment 1 As Figure 1 and 2As shown in the figure, this embodiment discloses a shooting training simulation simulator, which includes a main body 1. A cavity through-hole 2 is arranged inside the main body 1. One end of the cavity through-hole 2 is provided with a wide-mouth part 3, and the other end of the cavity through-hole 2 is provided with a docking part 4 for docking with the port of the training gun barrel. A laser device 5 is fixedly arranged inside the cavity through-hole 2 and near the wide-mouth part 3. A protective cover 6 is fixedly arranged inside the cavity through-hole 2 and near the docking part 4, and a plurality of cover holes 7 are formed in the cover body of the protective cover 6. When in use, the docking part 4 of the main body 1 is docked with the muzzle of the gun barrel; the bullet ejected from the gun barrel impacts and breaks on the protective cover 6; after the bullet breaks, the fragments flow through the cover holes 7 into the wide-mouth part 3 of the cavity through-hole 2 under the action of the impact force released by itself; during the process that the impact force and the bullet fragments pass through the cavity through-hole 2, a laser excitation switch is triggered, so that the laser device 5 emits laser light, and the laser emits a hitting point to simulate the target point of real live ammunition shooting. At the same time, the bullet disintegrates in the main body 1 and finally has its own impact force to carry it out of the main body 1 from the wide-mouth part 3. The present invention can use laser instead of real live ammunition shooting training. The bullet can be a headless blank cartridge, or other bullets, etc., fully simulating the same shooting feeling as real live ammunition training, the real recoil force, and the real target hitting point.
[0014] . Embodiment 2 As Figure 1 and 2 As shown in the figure, this embodiment discloses a shooting training simulation simulator, which includes a main body 1. A cavity through-hole 2 is arranged inside the main body 1. One end of the cavity through-hole 2 is provided with a wide-mouth part 3, and the other end of the cavity through-hole 2 is provided with a docking part 4 for docking with the port of the training gun barrel. A laser device 5 is fixedly arranged inside the cavity through-hole 2 and near the wide-mouth part 3. A protective cover 6 is fixedly arranged inside the cavity through-hole 2 and near the docking part 4, and a plurality of cover holes 7 are formed in the cover body of the protective cover 6. The plurality of cover holes 7 can be arranged in a structure similar to the cartridge filling holes of a revolver bullet wheel. When in use, the docking part 4 of the main body 1 is docked with the muzzle of the gun barrel; the bullet ejected from the gun barrel impacts and breaks on the protective cover 6; after the bullet breaks, the fragments flow through the cover holes 7 into the wide-mouth part 3 of the cavity through-hole 2 under the action of the impact force released by itself; during the process that the impact force and the bullet fragments pass through the cavity through-hole 2, a laser excitation switch is triggered, so that the laser device 5 emits laser light, and the laser emits a hitting point to simulate the target point of real live ammunition shooting. At the same time, the bullet disintegrates in the main body 1 and finally has its own impact force to carry it out of the main body 1 from the wide-mouth part 3. The present invention can use laser instead of real live ammunition shooting training. The bullet can be a headless blank cartridge, or other bullets, etc., fully simulating the same shooting feeling as real live ammunition training, the real recoil force, and the real target hitting point.
[0015] The laser device 5 makes accurate predictions based on the big data collected in advance according to the real environment of live shooting, and determines the position where the live ammunition should land. The front end of the laser device 5 can be bent and deformed, and can automatically adjust to the drift angle required for simulating live ammunition according to the drift angle required by the wind speed at that time. At this time, the shooter can be trained to adjust the sight by himself and complete the practical training through simulated shooting. Although the technology of AI artificial intelligence will become more and more mature in the future, and it can completely rely on AI big data to complete calculations and automatically adjust the sight to achieve accurate shooting, it is inevitable that mechanical equipment may malfunction. At this time, the strength of the person himself becomes the key to victory in the battlefield. People can never really trust AI and hand over all permissions to AI. This is also the practical significance of this invention. It is necessary to enable every soldier to become a sharpshooter through training at the lowest cost without relying on artificial intelligence.
[0016] In this embodiment, a heat insulation protection layer 8 is fixedly arranged outside the laser device 5, and a laser trigger switch 9 is arranged at the inner end of the laser device 5. The laser trigger switch 9 can be arranged at any position where the air flow passes. The inside of the heat insulation protection layer 8 is filled with heat insulation materials, and the heat insulation materials are aerogel 10 or vacuum insulation panels. Any plastic integrated solidified material can also be used as the heat insulation material. The laser device 5 can also adopt a laser device 5 with an infrared ranging function, that is, a combination of the laser device 5 and infrared ranging, and the two functions are emitted by one emitter. The power supply of the laser device 5 adopts an external power supply method, or can also adopt a method of converting thermal energy into electrical energy, and the external power supply is preferred. The inlet and outlet of the external power supply are the same as the inlet and outlet of the laser trigger switch 9, or they can be separated and used. The switch can be built-in and activated by sensing high-temperature air flow, or can be directly connected to the trigger through an algorithm, and the laser is emitted while the blank cartridge is fired by pulling the trigger.
[0017] In this embodiment, a bracket 11 for stabilizing the laser device 5 is fixedly arranged on the inner wall of the cavity through hole 2, and the bracket 11 is slidably connected to the heat insulation protection layer 8 outside the laser device 5. The bracket 11 can also be replaced by a screw that is screwed into the cavity through hole 2 from the outside of the main body 1 and then screwed into the heat insulation protection layer 8 outside the laser device 5 to play a role in fixing the laser device 5.
[0018] In this embodiment, a screw rod 12 is fixedly connected to the inner end of the laser device 5. A connection hole 13 corresponding to the screw rod 12 is formed in the inner end of the protective cover 6, and the screw rod 12 is in threaded connection with the connection hole 13. An auxiliary hole 14 is formed in the side wall of the screw rod 12, and a through hole 15 penetrating through the side wall of the main body 1 to the inside of the connection hole 13 is formed in the side wall of the main body 1. A stabilizing rod 16 is inserted into the through hole 15, and the inner end of the stabilizing rod 16 is in threaded connection with the auxiliary hole 14. The through hole 15 passes through the wall thickness between the two cover holes 7, rather than through the air flow cover hole 7.
[0019] In this embodiment, a spacer layer is provided between the screw rod 12 and the laser device 5, and a heat insulation material is provided inside the spacer layer. Alternatively, a heat insulation cloth can be wrapped around the outside of the screw rod 12 to solve the problem that the screw rod 12 of the exposed laser device 5 conducts heat. A pointed end portion 17 is provided at the outer end of the protective cover 6. The pointed end portion 17 is used to impact the projectile to break it, and the pointed end portion 17 and the protective cover 6 are integrally formed. In order to achieve the purpose of crushing the warhead, the air flow through hole can also be designed as an annular grid blade surrounding a circle. In other words, the support part connecting between the holes can be made into a straight blade, and the air flow through hole is no longer a round hole, but any other irregularly shaped through hole conforming to the blade design, so as to achieve the effect of more easily crushing the warhead.
[0020] A shooting training simulation method includes the following steps: docking the docking portion 4 of the main body 1 with the muzzle of the gun barrel; the projectile fired from the gun barrel impacts and breaks against the protective cover 6; after the projectile is broken, the fragments flow into the wide mouth portion 3 of the cavity through hole 2 under the action of the impact force released by itself; the impact force and the projectile fragments trigger the laser excitation switch during the process of passing through the cavity through hole 2, so that the laser device 5 emits laser light.
[0021] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and its concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. A shooting training simulation simulator, comprising a main body, characterized in that: A cavity through-hole is provided inside the body. One end of the cavity through-hole is provided with a wide-mouth portion, and the other end of the cavity through-hole is provided with a docking portion for docking with the port of the training barrel. A laser device is fixedly arranged inside the cavity through-hole and near the wide-mouth portion, and a protective cover is fixedly arranged inside the cavity through-hole and near the docking portion. A plurality of cover holes are provided on the cover body of the protective cover.
2. The shooting training simulation simulator according to claim 1, wherein: An insulating protective layer is fixedly arranged outside the laser device, and a laser trigger switch is arranged at the inner end of the laser device.
3. The shooting training simulation simulator according to claim 2, characterized in that: The inside of the insulating protective layer is filled with an insulating material, and the insulating material is aerogel or a vacuum insulation panel.
4. The shooting training simulation simulator according to claim 3, characterized in that: A bracket for stabilizing the laser device is fixedly arranged on the inner wall of the cavity through-hole, and the bracket is slidably connected with the insulating protective layer outside the laser device.
5. The shooting training simulation simulator according to claim 4, wherein: A screw rod is fixedly connected to the inner end of the laser device, a connection hole corresponding to the screw rod is provided at the inner end of the protective cover, and the screw rod is in threaded connection with the connection hole.
6. The shooting training simulation simulator according to claim 5, characterized in that: An auxiliary hole is provided on the side wall of the screw rod, a through-hole penetrating through to the inside of the connection hole is provided on the side wall of the body, a stabilizing rod is inserted into the through-hole, and the inner end of the stabilizing rod is in threaded connection with the auxiliary hole.
7. The shooting training simulation simulator according to claim 6, wherein: A pointed end portion is provided at the outer end of the protective cover.
8. A shooting training simulation method, characterized in that, Including the following steps: Dock the docking portion of the body with the muzzle of the barrel; the projectile fired from the barrel impacts and breaks against the protective cover; after the projectile breaks, under the action of the impact force released by itself, the fragments flow through the cover holes into the wide-mouth portion of the cavity through-hole; during the process that the impact force and the projectile fragments pass through the cavity through-hole, the laser excitation switch is triggered, and the laser device emits laser.