A target shooting device
By adopting a square elastic target disk and sleeve design in the target shooting device, the rotation angle of the target disk is maintained by friction, which solves the problem of target reading errors caused by the gap of the target disk in the existing technology. This enables accurate display of the bullet impact point and accurate statistics of the hit rate, improving training efficiency and device stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 吴鹏
- Filing Date
- 2025-08-01
- Publication Date
- 2026-05-26
AI Technical Summary
Existing target shooting devices have large gaps between the target plates, which makes it impossible to display the point of impact when the bullet passes through the gaps, making it difficult to accurately read the bullet's hitting position and affecting the accuracy of hit rate statistics.
The design employs a square-structured elastic target disc and sleeve. The friction between the sleeve and the crossbar maintains the rotation angle of the target disc after the bullet hits, accurately displaying the point of impact. The rotatable connection of multiple elastic target discs reduces gaps, ensuring that every bullet hits the target disc and displays the point of impact.
It achieves precise display of bullet impact points, improves the accuracy of hit rate statistics and training efficiency, reduces the probability of target reading errors, and enhances the stability and applicability of the device.
Smart Images

Figure CN224285668U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of shooting training equipment technology, specifically a target shooting device. Background Technology
[0002] In the field of shooting training, target practice is a key link in testing the training effectiveness of shooters and improving their shooting skills, while accurate and efficient target practice equipment is an important foundation for ensuring the quality of training.
[0003] Currently, various devices for target practice training exist in the industry to meet training needs in different scenarios. For example, Chinese utility model patent CN217520346U discloses a target practice device that detachably connects a target disc to a rotating arm and includes an elastic positioning component. This elastic positioning component includes a pressure plate, one end of which is movably connected to the rotating arm, while the other end can open and close relative to the rotating arm. When the other end of the pressure plate is closed with the rotating arm, it can press the target disc firmly against the end of the rotating arm. This design, through the elastic positioning component, enables the rapid disassembly of the target disc. During shooting training, when a bullet hits the target disc, it imparts a certain impact force, causing the target disc to miss. Trainees can quickly calculate the hit rate based on the number of misses, providing convenience for target disc replacement and preliminary hit rate calculation.
[0004] However, the target shooting device in the aforementioned patent displays the bullet impact point through multiple target discs arranged in a ring. However, due to the large gaps between the target discs, when the bullet deviates and passes through the gaps between the target discs, the device cannot display the bullet impact point. This results in the inability to accurately read the direction in which the bullet hits the target, which can easily lead to target reading errors and affect the accuracy of data statistics such as the hit rate.
[0005] Therefore, this application provides a target-shooting device to solve the above-mentioned problems. Utility Model Content
[0006] This application provides a target shooting device, which aims to solve the problems mentioned in the background art of existing target shooting devices, such as the inability to display the bullet impact point when the bullet passes through the gap due to the large gap between the target discs, the difficulty in reading the bullet's impact direction, the easy occurrence of target reading errors, and inaccurate statistics.
[0007] To achieve the above objectives, this application provides the following technical solution: a target shooting device, comprising a frame, a mounting groove on the rear of the frame, two arc-shaped plates symmetrically arranged inside the mounting groove, the two arc-shaped plates enclosing the opening of the frame to form a target shooting port for bullet firing; multiple crossbars are rotatably arranged in the mounting groove corresponding to the position of the target shooting port, the multiple crossbars are equally spaced along the vertical direction of the mounting groove, an elastic target plate is arranged between two adjacent crossbars, a sleeve is fixedly connected to the top of the target plate, the sleeve is rotatably sleeved on the crossbar; when a bullet is fired onto the target plate, the target plate rotates counterclockwise around the crossbar through the sleeve to form a certain angle, the friction between the sleeve and the crossbar keeps this angle constant, thereby realizing the display of the bullet impact point. This structural design can accurately display the bullet impact point, making it easier for trainees to accurately read the shooting direction and improve the accuracy of hit rate statistics. At the same time, the setting of multiple flexible target plates and the rotatable connection method allows the target plates to maintain their rotation angle after being hit. After shooting, the target plates can be rotated back to their original state, eliminating the need for frequent target plate replacements and allowing for continuous training, thus improving training efficiency.
[0008] Preferably, the target disc has a square structure. A square target disc can form a closer arrangement between adjacent target discs, reducing the gaps between the target discs and further reducing the probability that the bullet will pass through the gaps and fail to show the point of impact; at the same time, compared with other shapes such as circles, the square structure can cover a larger shooting area in the same installation space, improving the utilization rate of the firing port.
[0009] Preferably, both the target disc and the sleeve are made of materials such as rubber or elastic plastic. Target discs and sleeves made of materials such as rubber or elastic plastic have good elasticity and toughness. When a bullet hits the target disc, they can buffer the impact force of the bullet, reducing damage to the target disc and sleeve and extending their service life. At the same time, the elastic material can better maintain the angle by cooperating with the friction between the sleeve and the crossbar after the target disc rotates, and it is not prone to permanent deformation after impact, ensuring the stability of the bullet impact point display.
[0010] Preferably, the gap between two adjacent target discs is smaller than the diameter of the bullet. This effectively prevents bullets from passing through the gap between adjacent target discs, ensuring that every bullet hits a target disc or is blocked by it, thus guaranteeing that the point of impact can be displayed. This completely solves the problem of target reading errors and inaccurate statistics caused by excessive gaps in the prior art, and improves the reliability of target shooting training.
[0011] Preferably, to facilitate adjustment of the target firing port opening size: multiple strip-shaped grooves, connected to the mounting slot, are equally spaced vertically on both sides of the front of the frame. At least two of these strip-shaped grooves are fitted with screws threaded to the arc-shaped plate. Both ends of the arc-shaped plate have screw holes adapted to the screws. This allows for flexible adjustment of the target firing port opening size, adapting to different types and ranges of shooting training needs, improving the versatility and applicability of the target firing device. The adjustment method is simple and convenient, requiring no complex tools or operations, saving adjustment time and improving the efficiency of training preparation.
[0012] Preferably, to ensure the stability of the target shooting device, a triangular base is provided at the bottom of the frame. The triangular base has a stable support structure, which can significantly improve the overall stability of the target shooting device. When a bullet hits the target plate and generates impact force, it reduces the risk of shaking and tipping of the device, ensuring the safety and continuity of the training process. At the same time, the stability of the triangular structure also allows the device to maintain good stability in different ground environments, such as uneven outdoor fields.
[0013] When a bullet hits the target plate, the impact force of the bullet will cause the target plate to rotate counterclockwise around the crossbar via the sleeve and form a certain angle. Due to the friction between the sleeve and the crossbar, this friction force can overcome the weight of the target plate itself and other factors, so that the target plate is kept at the angle after rotation, thus intuitively displaying the position of the bullet's impact point, which is convenient for training personnel to observe and count.
[0014] The square target disc structure of this application can form a closer arrangement between adjacent target discs, reducing the gap between the target discs and further reducing the probability that the bullet will pass through the gap and fail to show the point of impact. At the same time, compared with other shapes such as circles, the square structure can cover a larger shooting area in the same installation space, improving the utilization rate of the firing port.
[0015] The gap between two adjacent target discs in this application is smaller than the diameter of the bullet, which can effectively prevent the bullet from passing through the gap between the adjacent target discs, ensuring that every bullet fired can hit the target disc or be blocked by the target disc, thereby ensuring that the bullet impact point can be displayed. This completely solves the problem of target reading errors and inaccurate statistics caused by excessive gaps in the prior art, and improves the reliability of target shooting training. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of a target-shooting device.
[0017] Figure 2 for Figure 1 The rear view of the structure in the middle;
[0018] Figure 3This is a schematic diagram of the connection between the sleeve, the crossbar, and the target plate.
[0019] In the picture:
[0020] 1. Frame; 11. Mounting slot; 12. Strip groove; 2. Arc plate; 3. Target nozzle; 4. Crossbar; 5. Target plate; 6. Sleeve; 7. Triangular base. Detailed Implementation
[0021] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0022] Example 1
[0023] This embodiment provides a target-firing device, such as... Figure 1-3 As shown, the target shooting device includes a frame 1, with a mounting groove 11 at the rear of the frame 1. Two arc-shaped plates 2 are symmetrically arranged inside the mounting groove 11, enclosing the opening of the frame 1 to form a target firing port 3 for bullet firing. Multiple crossbars 4 are rotatably arranged inside the mounting groove 11 corresponding to the target firing port 3. The multiple crossbars 4 are evenly spaced along the vertical direction of the mounting groove 11. An elastic target plate 5 is arranged between two adjacent crossbars 4. A sleeve 6 is fixedly connected to the top of the target plate 5 and is rotatably fitted onto the crossbar 4. When a bullet is fired onto the target plate 5, the target plate 5 rotates counterclockwise around the crossbar 4 through the sleeve 6 to form a certain angle. The friction between the sleeve 6 and the crossbar 4 keeps this angle constant, thereby displaying the bullet impact point. This structural design accurately displays the bullet's impact point, facilitating accurate reading of the shooting direction by trainees and improving the accuracy of hit rate statistics. Simultaneously, the multiple elastic target discs 5 and their rotatable connection allow the target discs 5 to maintain their rotation angle after being hit, enabling continuous training without frequent disc replacements and improving training efficiency. When a bullet strikes the target disc 5, the impact force causes it to rotate counterclockwise around the crossbar 4 via the sleeve 6, forming a certain angle. Due to the friction between the sleeve 6 and the crossbar 4, this friction overcomes the target disc 5's own weight and other factors, keeping it at its rotated angle. This visually displays the bullet's impact point, facilitating observation and statistics by trainees.
[0024] The target disc 5 has a square structure. The square structure allows for a closer arrangement between adjacent target discs 5, reducing gaps and further decreasing the probability of bullets passing through gaps and failing to show the impact point. Simultaneously, compared to other shapes such as circles, the square structure can cover a larger firing area within the same installation space, improving the utilization rate of the firing port 3. When the target disc 5 is installed between two adjacent crossbars 4, the square corners can be closer to the edges of adjacent target discs 5, resulting in smaller gaps between them. Furthermore, the regularity of the square structure allows it to more tightly fill the space corresponding to the firing port 3 within the mounting slot 11 during arrangement, increasing the probability of bullets hitting the target disc 5.
[0025] Both the target disc 5 and the sleeve 6 are made of rubber, elastic plastic, and other similar materials. The use of rubber and elastic plastic in the target disc 5 and sleeve 6 provides excellent elasticity and toughness. When a bullet hits the target disc 5, it can cushion the impact, reducing damage to the target disc 5 and sleeve 6 and extending their service life. Simultaneously, the elastic material, after the target disc 5 rotates, better cooperates with the friction between the sleeve 6 and the crossbar 4 to maintain the angle, and is less prone to permanent deformation after impact, ensuring the stability of the bullet impact point display. When a bullet hits the target disc 5 made of rubber and elastic plastic, the elasticity of the material absorbs some of the bullet's impact force, reducing hard damage to the target disc 5 and sleeve 6. At the same time, the elastic material of the sleeve 6, when fitted onto the crossbar 4, forms a tighter contact with the surface of the crossbar 4, increasing the friction between them. This helps the target disc 5 maintain its angle after rotation, and the inherent properties of the elastic material also allow the target disc 5 and sleeve 6 to recover to a good state after repeated stress, ensuring long-term performance.
[0026] The gap between two adjacent target discs 5 is smaller than the diameter of the bullet. This effectively prevents bullets from passing through the gap between adjacent target discs 5, ensuring that every bullet hits a target disc 5 or is blocked by it, thus guaranteeing that the point of impact can be displayed. This completely solves the problem of target reading errors and inaccurate statistics caused by excessive gaps in existing technologies, improving the reliability of target shooting training. Because the gap between two adjacent target discs 5 is smaller than the diameter of the bullet, when a bullet is fired at the firing port 3, regardless of the bullet's firing direction, it cannot pass through the gap and will inevitably hit one of the target discs 5. This causes the target disc 5 to rotate around the crossbar 4 and maintain its angle, achieving the display of the point of impact and ensuring that the firing results of all bullets can be accurately recorded.
[0027] To facilitate adjustment of the opening size of the firing port 3, multiple strip-shaped grooves 12, connected to the mounting grooves 11, are equally spaced vertically on both sides of the front of the frame 1. At least two of the strip-shaped grooves 12 are fitted with screws threaded onto the arc-shaped plate 2. Both ends of the arc-shaped plate 2 have screw holes adapted to the screws. This allows for flexible adjustment of the firing port 3's opening size, adapting to different types and ranges of shooting training needs, improving the versatility and applicability of the firing device. The adjustment method is simple and convenient, requiring no complex tools or operations, saving adjustment time and improving the efficiency of training preparation. When it is necessary to adjust the size of the target opening 3, loosen the screws that are threaded onto the strip groove 12 and connected to the arc plate 2. Since the strip groove 12 is opened vertically and connected to the mounting groove 11, the arc plate 2 can move vertically within the mounting groove 11, thereby changing the size of the target opening 3 formed by the two arc plates 2. After adjusting to the appropriate size, tighten the screws to fix them within the strip groove 12, thereby fixing the position of the arc plate 2 and realizing the adjustment of the size of the target opening 3.
[0028] To ensure the stability of the target shooting device, a triangular base 7 is installed at the bottom of the frame 1. The triangular base 7 provides a stable support structure, significantly improving the overall stability of the device. When a bullet hits the target disc 5, it reduces the risk of shaking and tipping, ensuring the safety and continuity of training. Simultaneously, the stability of the triangular structure allows the device to maintain good stability in various ground environments, such as uneven outdoor terrain. The triangular base 7 at the bottom of the frame 1 utilizes the mechanical principle of triangle stability. The three support points of the triangular base 7 form a stable support surface with the ground, distributing the weight of the frame 1 and its upper structure. When a bullet hits the target disc 5 and generates a backward impact, the friction and support force between the triangular base 7 and the ground resist this impact, preventing the frame 1 from shaking or tipping, thus ensuring the stability of the target shooting device.
[0029] It should be noted that many of the standard parts used in this application are available on the market, while non-standard parts can be specially customized. The connection method used in this application is also a very common method in the mechanical field, and will not be described in detail here.
[0030] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and concept of this application, should be included within the scope of protection of this application.
Claims
1. A targeting device characterized by: The system includes a frame (1), with a mounting groove (11) at the rear. Two arc-shaped plates (2) are symmetrically arranged inside the mounting groove (11), and the two arc-shaped plates (2) enclose the opening of the frame (1) to form a target port (3) for bullet shooting. Multiple crossbars (4) are rotatably arranged in the mounting groove (11) corresponding to the position of the target port (3). The multiple crossbars (4) are evenly spaced along the vertical direction of the mounting groove (11). An elastic target plate (5) is arranged between two adjacent crossbars (4). A sleeve (6) is fixedly connected to the top of the target plate (5), and the sleeve (6) is rotatably fitted onto the crossbar (4). When a bullet is shot onto the target plate (5), the target plate (5) rotates counterclockwise around the crossbar (4) through the sleeve (6) and forms a certain angle. The friction between the sleeve (6) and the crossbar (4) keeps this angle unchanged, so as to realize the display of the bullet impact point.
2. The target-shooting device according to claim 1, characterized in that: The target disk (5) has a square structure.
3. The target-firing device according to claim 1, characterized in that: Both the target plate (5) and the sleeve (6) are made of rubber and elastic plastic.
4. The target-firing device according to claim 1, characterized in that: The gap between two adjacent target disks (5) is smaller than the diameter of the bullet.
5. The target-shooting device according to claim 1, characterized in that: The front two side walls of the frame (1) are provided with multiple strip grooves (12) that are connected to the mounting groove (11) at equal intervals in the vertical direction. At least two of the strip grooves (12) are fitted with screws that are threaded to the arc plate (2). Both ends of the arc plate (2) are provided with screw holes that are compatible with the screws.
6. The target-shooting device according to claim 1, characterized in that: The bottom of the frame (1) is provided with a triangular base (7).