Lateral rotation simulation training target

By designing a side-rotating mechanism and counterweights on the training target, the problem of exposed target rods and target bases was solved, achieving a more realistic simulation scenario and higher structural stability, thus improving training effectiveness.

CN223596684UActive Publication Date: 2025-11-25BEIJING YIJIU TECH CO LTD
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Patent Information

Application Number
CN202520240888.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-11-25
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

When simulating real combat scenarios, the target pole and target base of the existing training targets are exposed, resulting in poor visual fidelity and affecting the training effect.

Method used

A side-rotating simulated training target was designed. The target rod is installed on one side of the target surface, and the counterweight is on the other side to maintain balance. The target surface is rotated by a motor through a rotating mechanism, while the target rod is fixed. The motor is installed on the target surface.

Benefits of technology

It improves the realism and structural stability of the simulated scenario, and enhances the control accuracy and response speed of the training target.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a lateral rotation simulation training target, which comprises a target seat, a target rod and a target frame, a target surface is mounted in the target frame, the target surface is rotatably mounted at the top of the target rod through a rotating mechanism, the target rod is positioned on one side of the central axis of the target surface, and the target rod is used as a boundary. More than half of the target surface exposed on one side of the target rod is an exposed surface, the other side of the target rod is a non-exposed surface, a balancing weight is arranged between the other side of the target rod and the target frame, and the balancing weight enables the gravity center of the target surface to coincide with the central axis of the target rod. According to the utility model, the target frame is additionally arranged, and the target surface, the target rod and the balancing weight are arranged on the target frame, so that the structure is simple and firm; the target rod is installed on one side of the target surface, the target surface is exposed during training, the target rod and the target seat are not exposed, and a simulated scene is more real. The balancing weight is mounted on the unexposed side of the target surface, so that the left side and the right side of the target rod are kept balanced, and the stability of the whole structure is improved.
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Description

Technical Field

[0001] This utility model relates to shooting training equipment, and more particularly to a side-rotating simulated training target. Background Technology

[0002] Live-fire drills are one way for police officers to train their skills. By simulating various combat scenarios, live-fire drills can improve police officers' combat skills, ability to handle emergencies, and responsiveness.

[0003] The live-fire exercise recreates a realistic scenario, using a training target to simulate a target. When the target appears from behind cover, the training target is exposed, and police officers fire at it. In a typical training target, the target pole is located at the center axis of the target face. However, in simulating the above scenario, most of the target face needs to be exposed. In this case, both the target pole and the target base are exposed, resulting in poor visual fidelity and an unrealistic simulation. This is not effective in improving the skills and rapid response capabilities of police officers. To solve these problems, a side-rotating simulated training target was developed. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a side-rotation simulation training target with high simulation scene fidelity and structural stability.

[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is: a side-rotating simulation training target, including a target base, a target rod mounted on the target base, and a target frame. A target surface is mounted inside the target frame. The target surface is rotatably mounted on the top of the target rod through a rotating mechanism. The target rod is located on one side of the central axis of the target surface. Taking the target rod as a dividing line, most of the target surface on one side of the target rod is exposed, while the other side of the target rod is not exposed, and a counterweight is installed between the target rod and the target frame. The counterweight makes the center of gravity of the target surface coincide with the central axis of the target rod.

[0006] As a preferred technical solution, the target frame is provided with a mounting platform inside, and the target surface is fixedly mounted on the mounting platform.

[0007] As a preferred technical solution, the target surface is a tactical target, the background of the target surface extends to the edge of the target surface, and the background color is close to the base color of the target frame.

[0008] As a preferred technical solution, the rotating mechanism includes a mounting housing, which is vertically mounted on the back of the target surface via a connector. The surface of the mounting housing has an opening, and a cover plate is installed at the opening. The target rod extends from the bottom of the mounting housing and is fixedly connected to the target base. A motor is installed inside the mounting housing, and the output shaft of the motor is connected to the target rod via a motor shaft connector. When the motor starts, it drives the target surface to rotate around the target rod.

[0009] As a further improvement, a motor control board is mounted on the cover plate. The motor control board is connected to a power source and is electrically connected to the motor to control the operation of the motor.

[0010] As a further improvement, the motor is fixed to the cover plate by a motor mounting plate. The two ends of the motor mounting plate are L-shaped, with one end fixed to the cover plate and the other end having a through hole. The motor output shaft passes through the through hole and is mounted on the motor shaft connector.

[0011] As a further improvement, the top of the motor shaft connector is provided with a motor shaft sleeve, the output shaft of the motor is inserted into the central hole of the motor shaft sleeve, and the bottom of the motor shaft connector is provided with a target rod connecting part. The target rod connecting part is provided with at least two arc surfaces that are combined with the outer wall of the target rod. The top end of the target rod is sleeved on the outside of the target rod connecting part and fixed by a set screw.

[0012] As a preferred technical solution, the counterweight is an alloy block, which is composed of one or more alloy blocks spliced ​​together.

[0013] Due to the adoption of the above technical solution, the beneficial effects of this utility model are: this utility model is equipped with a target frame, and the target surface, target rod and counterweight are installed on the target frame. The structure is simple and firm, which improves the stability of the overall structure and facilitates installation and disassembly.

[0014] This invention mounts the target rod on one side of the target face, allowing the target face to be exposed during training without revealing the target rod and target base, thus making the simulation more realistic. Because a counterweight is installed on the side of the target face not exposed, the left and right sides of the target rod remain balanced, improving the overall structural stability.

[0015] This invention features a rotating mechanism mounted on the back of the target surface, fixing the target rod in place. The motor's rotation directly drives the target surface to rotate, with the motor and target rod aligned in a straight line. Its compact size allows for direct mounting on the target surface. Because the target rod is fixed, the motor directly drives the target surface to rotate, resulting in fast rotation speed and rapid response, thus improving the control accuracy of the training target. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1This is a structural schematic diagram of an embodiment of the present utility model;

[0018] Figure 2 yes Figure 1 Rear view;

[0019] Figure 3 This is a schematic diagram of the internal structure of the mounting housing in an embodiment of this utility model;

[0020] Figure 4 This is a side sectional view of the mounting housing in an embodiment of this utility model;

[0021] Figure 5 This is a schematic diagram of the structure of the motor shaft connector in an embodiment of this utility model;

[0022] In the diagram: 100-Target rod; 200-Target surface; 300-Target frame; 400-Counterweight; 500-Mounting housing; 501-Cover plate; 503-Motor control board; 510-Motor; 511-Output shaft; 520-Motor shaft connector; 521-Motor bushing; 522-Target rod connection; 523-Curved surface; 530-Motor mounting plate. Detailed Implementation

[0023] like Figures 1 to 5 As shown, a side-rotation simulation training target includes a target base (the target base is an existing structure and is omitted in the attached figure), a target rod 100 mounted on the target base, a target frame 300 mounted on the top of the target rod 100, a target surface 200 mounted inside the target frame 300, and the back of the target surface 200 connected to the target rod 100 via a target rod connector 500. The target rod 100 is mounted on one side of the central axis of the target surface 200. With the target rod 100 as the boundary, the exposed portion of the target surface 100 on one side of the target rod 100 is the exposed surface, while the other side of the target rod 100 is the unexposed surface, and a counterweight 400 is mounted between the target rod 100 and the target frame 300. The counterweight 400 makes the center of gravity of the target surface 200 coincide with the axis of the target rod 100. The counterweight 400 is an alloy block; preferably, the counterweight is a single integral alloy block, but it can also be composed of multiple alloy blocks joined together. The target frame 300 has a mounting groove to accommodate the counterweight 400.

[0024] The target frame 300 has an internal mounting platform 301. The target surface 200 is fixedly mounted on the mounting platform with adhesive and screws. An adhesive strip is installed at the joint between the front of the target surface 200 and the target frame. The joint between the front of the target surface 200 and the target frame can also be filled with sealant.

[0025] In this embodiment, the target surface is a tactical target. Ordinary training targets have a border at the edge and target rings and the number of rings are printed on the target surface. In this embodiment, the background of the target surface extends to the border, the background color is close to the surrounding environment, and there is no border at the edge of the target surface, which maximizes the reproduction of the actual combat scenario.

[0026] The target surface 200 can be a laser-sensing target. The target surface 200 also has a rotation function. When shooting, after hitting the target surface 200, the target surface 200 rotates to one side. The target surface 200 is rotated and installed on the top of the target rod 100 through a rotation mechanism. The rotation mechanism drives the target rod 100 to rotate.

[0027] The rotating mechanism includes a mounting housing 500, which is vertically mounted on the back of the target surface 200 via a connector. The surface of the mounting housing 500 has an opening, and a cover plate 501 is installed at the opening. The target rod 100 extends from the bottom of the mounting housing 500 and is fixedly connected to the target base. A motor 510 is installed inside the mounting housing 500. The output shaft 511 of the motor 510 is connected to the target rod 100 via a motor shaft connector 520. When the motor 510 is started, it drives the target surface 200 to rotate around the target rod 100.

[0028] like Figure 3 The diagram shows the internal structure of the mounting housing. A motor control board 503 is mounted on the cover plate 501. The motor control board 503 is connected to a power source and is electrically connected to the motor 510 to control the operation of the motor 510.

[0029] The motor 510 is fixed to the cover plate by the motor mounting plate 530. The two ends of the motor mounting plate are set in an "L" shape. One end is fixed to the cover plate 501, and the other end is provided with a through hole. The motor output shaft 511 passes through the through hole and is installed on the motor shaft connector 520.

[0030] The top of the motor shaft connector 520 is provided with a motor shaft sleeve 521. The output shaft 511 of the motor 510 is inserted into the central hole of the motor shaft sleeve 521. The bottom of the motor shaft connector 520 is provided with a target rod connecting part 522. The target rod connecting part 522 is provided with at least two arc surfaces 523 that are engaged with the outer wall of the target rod. The top of the target rod 100 is sleeved on the outside of the target rod connecting part 522 and fixed by a set screw. In order to facilitate installation, the top of the target rod 100 is filled with a filler block. The top of the filler block is provided with a square insertion hole. The target rod connecting part 522 is inserted into the insertion hole and fixed by a set screw.

[0031] A conventional rotating target has a target box at the bottom of the target base, containing a motor, a reducer, and a related rotating mechanism to rotate the target rod. In this embodiment, a rotating mechanism is mounted on the back of the target surface 200. The target surface 200 is rotated and mounted on the top of the target rod 100 via the rotating mechanism. When the motor 510 is running, the target rod 100 remains stationary, and the motor 510 drives the target surface 200 to rotate via the mounting housing 500. Since both the motor 510 and the motor control board 530 are mounted on the cover plate 501 of the mounting housing 500, opening the cover plate 501 allows for easy disassembly and installation of the motor and internal components.

[0032] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A side-rotation simulation training target, comprising a target base, wherein a target rod is mounted on the target base, characterized in that: It also includes a target frame, in which a target surface is installed. The target surface is rotatably mounted on the top of a target rod via a rotating mechanism. The target rod is located on one side of the central axis of the target surface. With the target rod as the dividing line, most of the target surface on one side of the target rod is exposed, while the other side of the target rod is not exposed, and a counterweight is installed between the target rod and the target frame. The counterweight makes the center of gravity of the target surface coincide with the central axis of the target rod.

2. The side-rotation simulation training target as described in claim 1, characterized in that: The target frame has a mounting platform inside, and the target surface is fixedly mounted on the mounting platform.

3. The side-rotation simulation training target as described in claim 1, characterized in that: The target surface is a tactical target, and the background of the target surface extends to the edge of the target surface, and the background color is close to the base color of the target frame.

4. The side-rotation simulation training target as described in claim 1, characterized in that: The rotating mechanism includes a mounting housing, which is vertically mounted on the back of the target surface via a connector. The surface of the mounting housing has an opening, and a cover plate is installed at the opening. The target rod extends from the bottom of the mounting housing and is fixedly connected to the target base. A motor is installed inside the mounting housing, and the output shaft of the motor is connected to the target rod via a motor shaft connector. When the motor is started, it drives the target surface to rotate around the target rod.

5. A side-rotation simulation training target as described in claim 4, characterized in that: A motor control board is mounted on the cover plate. The motor control board is connected to a power source and is electrically connected to the motor to control the operation of the motor.

6. A side-rotation simulation training target as described in claim 4, characterized in that: The motor is fixed to the cover plate by a motor mounting plate. The two ends of the motor mounting plate are L-shaped. One end is fixed to the cover plate, and the other end is provided with a through hole. The motor output shaft passes through the through hole and is installed on the motor shaft connector.

7. A side-rotation simulation training target as described in claim 4, characterized in that: The top of the motor shaft connector is provided with a motor shaft sleeve, and the output shaft of the motor is inserted into the central hole of the motor shaft sleeve. The bottom of the motor shaft connector is provided with a target rod connecting part. The target rod connecting part is provided with at least two arc surfaces that are combined with the outer wall of the target rod. The top end of the target rod is sleeved on the outside of the target rod connecting part and fixed by a set screw.

8. A side-rotation simulation training target as described in claim 1, characterized in that: The counterweight is an alloy block, which is composed of one or more alloy blocks joined together.