Portable lifting target

Portable elevating targets simulate disordered movement through drive components, sliding components, and elevating components, solving the problem of insufficient regularity in traditional target training and improving the training effect of shooting and psychological qualities.

CN223538208UActive Publication Date: 2025-11-11KUNSHAN NINE MILLIMETER ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202423262443.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2025-11-11
Estimated Expiration
2034-12-28

AI Technical Summary

Technical Problem

The motion patterns of traditional fixed targets cannot meet the actual shooting training needs in complex counter-terrorism environments, resulting in insufficient training effectiveness.

Method used

A portable lifting target is used, with a rear wheel driven by a drive unit. Combined with a sliding component and a lifting component, it simulates the disordered movement of hostile elements, enhancing the uncertainty of the training environment, including disordered movement in the horizontal and vertical directions, as well as the rotation of the hostile target and broadcast feedback.

Benefits of technology

It improved the shooting skills and psychological qualities of the trainees, simulated emergencies in a complex counter-terrorism environment, and enhanced the actual effectiveness of the training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of target shooting, in particular to a portable lifting target which comprises a bottom plate and a target body, a front wheel and a rear wheel are rotatably arranged on the bottom plate and symmetrically arranged on the two sides of the bottom plate, protrusions are arranged on the outer side wall of the front wheel in the circumferential direction, a rotation driving part for driving the rear wheel to rotate is arranged on the bottom plate, and the target body is arranged on the bottom plate. The target is arranged on the bottom plate in a sliding mode, and a sliding assembly for driving the target to slide is arranged on the bottom plate. The method has the effect of improving the psychological quality and shooting level of trainees.
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Description

Technical Field

[0001] This application relates to the field of target shooting technology, and in particular to a portable lifting target. Background Technology

[0002] A shooting target is a tool used to train shooting skills, primarily for assessing a shooter's accuracy and reaction speed. The history of shooting targets dates back to ancient times, when soldiers used them to improve their shooting skills and tactical abilities. In the daily training of military personnel and armed police, shooting targets are an indispensable training item. Traditionally, targets were placed on simple devices and fixed to the ground for shooting training.

[0003] However, as the counter-terrorism environment becomes increasingly complex, traditional fixed-target drills are no longer sufficient to cope with the current complex counter-terrorism environment. Therefore, in order to improve the psychological quality and shooting skills of trainees, it is even more required that they be able to quickly and accurately fire counterattacks against suddenly appearing hostile elements in different environments.

[0004] Chinese Patent No. CN221744812U discloses an automatic target reporting and lifting machine, including a base, a fixed rod fixedly installed on the surface of the base, a slide rod slidably inserted into the top of the fixed rod, an mounting rod provided near the top of the slide rod, a target plate slidably connected to the surface of the mounting rod, a first drive mechanism for driving the slide rod to move vertically provided inside the base, a connecting mechanism for connecting the mounting rod and the slide rod near the top of the slide rod, and a second drive mechanism for driving the target plate to reciprocate on the surface of the mounting rod.

[0005] The aforementioned technology features a target plate that moves in a predictable pattern during use. However, in actual counter-terrorism operations, the movement and appearance of hostile elements are unpredictable. This causes trainees to rely on the target plate's movement patterns for shooting practice, which fails to meet actual training requirements and thus has shortcomings. Utility Model Content

[0006] To address the issue that the regular movement of the target disc cannot meet the requirements of shooting training, this application provides a portable lifting target.

[0007] The portable lifting target provided in this application adopts the following technical solution:

[0008] A portable lifting target includes a base plate and a target. A front wheel and a rear wheel are rotatably disposed on the base plate. The front wheel and the rear wheel are symmetrically disposed on both sides of the base plate. A protrusion is provided on the outer circumferential wall of the front wheel. A rotation drive component is provided on the base plate to drive the rear wheel to rotate. The target is slidably disposed on the base plate. A sliding component is provided on the base plate to drive the target to slide.

[0009] By adopting the above technical solution, during indoor training, the sliding component drives the target to slide continuously on the base plate. At the same time, the drive component drives the rear wheel to rotate. The friction between the rear wheel and the ground causes the front wheel to roll, thereby causing the base plate to move the sliding target horizontally. Because there are protrusions on the front wheel, the base plate will be in a bumpy state during the rolling process, making the target's movement pattern more disordered. At the same time, the unevenness of the outdoor ground will exacerbate the disorder of the target's movement, thereby improving the shooting level of the trainees and achieving the actual training requirements.

[0010] Optionally, the driving component includes a drive motor mounted on the base plate, the drive motor being electrically connected to the control system, a drive shaft being rotatably mounted on the base plate, the rear wheel being coaxially mounted on the drive shaft, a transmission belt being wound between the output shaft of the drive motor and the drive shaft, and a clearance groove being provided on the base plate for the transmission belt to pass through.

[0011] By adopting the above technical solution, trainees can remotely start the drive motor through the control system. The output shaft of the drive motor drives the drive shaft to rotate through the transmission belt, and the drive shaft drives the rear wheel to rotate, thereby moving the base plate horizontally. Trainees do not need to control the movement of the base plate at close range, thus improving the safety of trainees.

[0012] Optionally, the sliding assembly includes a movable plate that is horizontally slidably disposed on the base plate, a rocker arm disposed on the output shaft of the drive motor, a connecting rod hinged between the rocker arm and the movable plate, a vertical upright tube disposed on the movable plate, the target being vertically slidably disposed on the upright tube, and a lifting component for driving the target to slide vertically on the movable plate.

[0013] By adopting the above technical solution, during the vertical sliding of the target driven by the lifting component, the output shaft of the drive motor drives the rocker arm to rotate. The rocker arm, through the connecting rod, causes the moving plate to slide back and forth in the horizontal direction. Since the vertical sliding of the target is not consistent with the horizontal sliding of the moving plate, the target becomes more disordered as it moves with the base plate, thereby further improving the shooting level of the trainees.

[0014] Optionally, the lifting component includes a lifting motor mounted on the movable plate and electrically connected to the control system. A lifting plate is coaxially mounted on the output shaft of the lifting motor. A lifting rod is mounted on the edge of the lifting plate. A lifting rod is vertically slidably mounted on the upright. The target is mounted on the lifting rod. A crossbar is mounted on the lifting rod. A lifting groove is vertically formed between the inner and outer walls of the upright for the crossbar to slide. The lifting rod is used to lift the crossbar.

[0015] By adopting the above technical solution, the control system starts the lifting motor, the output shaft of the lifting motor drives the lifting plate to rotate, and the lifting plate drives the lifting rod to rotate circumferentially around the axis of the lifting plate. The rotating lifting rod abuts against the crossbar on the lifting rod at the bottom of the rotating lifting plate. The lifting rod slides vertically with the crossbar. Since the lifting rod lifts the crossbar a different distance per unit time, the vertical sliding speed of the target driven by the lifting rod is inconsistent. Then the lifting rod separates from the crossbar on the lifting rod at the top of the rotating lifting plate. Under the action of gravity, the lifting rod drives the target to fall vertically back down, thereby simulating a suddenly appearing hostile element and improving the reaction speed of the trainees.

[0016] Optionally, a buffer spring is provided at the bottom of the riser, and the buffer spring is located between the lifting rod and the moving plate.

[0017] By adopting the above technical solution, the falling lifting rod will press against the buffer spring. Through the continuous deformation of the buffer spring, the direct impact between the lifting rod and the moving plate is reduced, which helps to improve the service life of the lifting rod.

[0018] Optionally, the target includes a hostage target and an adversary target. The hostage target is mounted on the lifting rod, which is located between the adversary target and the hostage target. The adversary target is rotatably mounted on the lifting rod, and the lifting rod is provided with a rotating component that drives the adversary target to rotate.

[0019] By adopting the above technical solution, the rotating component drives the enemy target to rotate, thereby causing the enemy target to rotate out of the cover range of the hostage target. This simulates the enemy personnel hiding behind the hostage, making the training results more in line with actual counter-terrorism situations, thereby improving the psychological quality and shooting accuracy of the trainees.

[0020] Optionally, the rotating component includes a rotating motor mounted on the lifting rod and electrically connected to the control system, with a rotating rod coaxially mounted on the output shaft of the rotating motor, and the opposing target mounted on the rotating rod.

[0021] By adopting the above technical solution, the control system starts the rotating motor, and the output shaft of the rotating motor drives the rotating rod to rotate, thereby causing the hostage target to rotate out of the obstruction range of the hostage target, thus simulating the situation of being held hostage.

[0022] Optionally, both the hostage target and the hostage target are equipped with a broadcaster, which is electrically connected to the control system.

[0023] By adopting the above technical solution, the results of the trainees' shooting will be promptly fed back to the trainees' ears through the broadcasting system, which will facilitate timely adjustments by the trainees and help improve the accuracy of their shooting and their ability to react to unexpected situations.

[0024] In summary, this application includes at least one of the following beneficial technical effects:

[0025] 1. During indoor training, the sliding assembly drives the target to slide continuously on the base plate. At the same time, the drive unit drives the rear wheel to rotate. The friction between the rear wheel and the ground causes the front wheel to roll, thereby moving the base plate and the sliding target horizontally. Because there are protrusions on the front wheel, the base plate will be in a bumpy state during the rolling process, making the target's movement pattern more disordered. At the same time, the unevenness of the outdoor ground will exacerbate the disorder of the target's movement, thereby improving the shooting level of the trainees and achieving the actual training requirements.

[0026] 2. During the vertical sliding of the target driven by the lifting component, the output shaft of the drive motor drives the rocker arm to rotate. The rocker arm, through the connecting rod, causes the moving plate to slide back and forth in the horizontal direction. Since the vertical sliding of the target is not consistent with the horizontal sliding of the moving plate, the target becomes more disordered as it moves with the base plate, thereby further improving the shooting level of the trainees.

[0027] 3. The control system starts the lifting motor, and the output shaft of the lifting motor drives the lifting plate to rotate. The lifting plate drives the lifting rod to rotate circumferentially around the axis of the lifting plate. The rotating lifting rod abuts against the crossbar on the lifting rod at the bottom of the rotating lifting plate. The lifting rod slides vertically with the crossbar. Because the lifting rod lifts the crossbar a different distance per unit time, the vertical sliding speed of the target driven by the lifting rod is inconsistent. Then the lifting rod separates from the crossbar on the lifting rod at the top of the rotating lifting plate. Under the action of gravity, the lifting rod drives the target to fall vertically back down, thereby simulating the sudden appearance of hostile elements and improving the trainees' reaction ability. Attached Figure Description

[0028] Figure 1 This is a structural schematic diagram of an embodiment of this application.

[0029] Figure 2 This is a structural schematic diagram showing the positional relationship between the riser, buffer spring, and lifting rod in an embodiment of this application.

[0030] Explanation of reference numerals in the attached diagram: 1. Base plate; 2. Target; 21. Hostage target; 22. Opposing target; 3. Front wheel; 4. Rear wheel; 5. Protrusion; 6. Drive component; 61. Drive motor; 62. Drive shaft; 63. Transmission belt; 64. Clearance groove; 7. Sliding assembly; 71. Moving plate; 72. Riser; 73. Lifting component; 731. Lifting motor; 732. Lifting plate; 733. Lifting rod; 734. Lifting rod; 735. Crossbar; 736. Lifting groove; 74. Rocker arm; 75. Connecting rod; 8. Buffer spring; 9. Rotating component; 91. Rotating motor; 92. Rotating rod; 10. Announcer; 11. Synchronous pulley; 12. Guide rail. Detailed Implementation

[0031] The following is in conjunction with the appendix Figures 1-2 This application will be described in further detail.

[0032] This application discloses a portable lifting target.

[0033] Reference Figure 1 A portable lifting target includes a base plate 1 and a target 2. A front wheel 3 and a rear wheel 4 are rotatably arranged at the bottom of the base plate 1. The front wheel 3 and the rear wheel 4 are symmetrically arranged on both sides of the base plate 1. A protrusion 5 is integrally formed on the outer circumferential wall of the front wheel 3. A rotation drive 6 for driving the rear wheel 4 to rotate is arranged on the base plate 1. The target 2 is slidably arranged on the base plate 1. A sliding assembly 7 for driving the target 2 to slide is arranged on the base plate 1.

[0034] Reference Figure 1 and Figure 2 The driving component 6 includes a drive motor 61 bolted to the top of the base plate 1. The drive motor 61 is electrically connected to the control system. A drive shaft 62 is rotatably connected to the bottom of the base plate 1. The rear wheel 4 is coaxially bolted to the drive shaft 62. Synchronous pulleys 11 are welded to both the output shaft of the drive motor 61 and the drive shaft 62. A transmission belt 63 is wound around the synchronous pulleys 11 on the output shaft of the drive motor 61 and the synchronous pulleys 11 on the drive shaft 62. A clearance groove 64 is provided on the base plate 1 for the transmission belt 63 to pass through.

[0035] The trainee starts the drive motor 61 through the control system. The output shaft of the drive motor 61 causes the drive shaft 62 to rotate synchronously through the synchronous pulley 11 and the transmission belt 63. The drive shaft 62 drives the rear wheel 4 to rotate. The friction between the rear wheel 4 and the ground causes the base plate 1 to move forward. The moving base plate 1 pushes the front wheel 3 to roll. Because there are protrusions 5 on the front wheel 3, the base plate 1 is in a bumpy state during the forward movement, which causes the target 2 on the base plate 1 to move in a disordered state.

[0036] Reference Figure 1 and Figure 2 The sliding assembly 7 includes a movable plate 71 that is horizontally slidably arranged on the top of the base plate 1. A dovetail-shaped guide rail 12 is welded to the top of the base plate 1. The movable plate 71 and the guide rail 12 are slidably engaged. A rocker arm 74 is welded to the output shaft of the drive motor 61. A connecting rod 75 is hinged between the rocker arm 74 and the movable plate 71. A vertical riser 72 is welded to the movable plate 71. The two ends of the riser 72 are connected vertically. The target 2 is vertically slidably arranged on the riser 72. A lifting component 73 that drives the target 2 to slide vertically is arranged on the movable plate 71.

[0037] Reference Figure 1 and Figure 2The lifting component 73 includes a lifting motor 731 bolted to the moving plate 71 and electrically connected to the control system. A lifting plate 732 with a horizontal axis is coaxially welded to the output shaft of the lifting motor 731. A horizontal lifting rod 733 is welded to the edge of the lifting plate 732. A lifting rod 734 is vertically slidably arranged on the riser 72.

[0038] Reference Figure 1 and Figure 2 A buffer spring 8 is arranged at the bottom of the riser 72. The buffer spring 8 is located between the lifting rod 734 and the moving plate 71. The target 2 is arranged on the lifting rod 734. The target 2 includes a hostage target 21 and an enemy target 22. A broadcaster 10 is bolted to both the enemy target 22 and the hostage target 21. The broadcaster 10 is electrically connected to the control system. A horizontal bar 735 is welded on the lifting rod 734. A lifting groove 736 is vertically opened between the inner and outer walls of the riser 72 for the horizontal bar 735 to slide. The lifting rod 733 is used to lift the horizontal bar 735.

[0039] Reference Figure 1 and Figure 2 The hostage target 21 is bolted to the lifting rod 734, which is located between the hostage target 22 and the hostage target 21. The hostage target 22 is rotatably arranged on the lifting rod 734. A rotating component 9 is arranged on the lifting rod 734 to drive the hostage target 22 to rotate. The rotating component 9 includes a rotating motor 91 bolted to the lifting rod 734 and electrically connected to the control system. A rotating rod 92 is coaxially welded to the output shaft of the rotating motor 91. The hostage target 22 is welded to the rotating rod 92.

[0040] The output shaft of the drive motor 61 drives the rocker arm 74 to rotate. The rotating rocker arm 74 drives the moving plate 71 to continuously slide back and forth on the top of the base plate 1 through the connecting rod 75. Then the control system starts the lifting motor 731. The output shaft of the lifting motor 731 drives the lifting plate 732 to rotate synchronously. The rotating lifting plate 732 drives the lifting rod 733 to rotate around the axis of the lifting plate 732.

[0041] When the lifting rod 733 moves to the lowest vertical position of the lifting plate 732, the lifting rod 733 rotates to the bottom of the horizontal bar 735. As the lifting plate 732 continues to rotate, the lifting rod 733 drives the horizontal bar 735 to rise, and the horizontal bar 735 drives the lifting rod 734 to rise, thereby causing the lifting rod 734 to drive the target 2 to rise. When the lifting rod 733 moves to the highest vertical position of the lifting plate 732, as the lifting plate 732 continues to rotate, the lifting rod 733 separates from the horizontal bar 735, and the lifting rod 734 drives the target 2 to fall back under the action of gravity.

[0042] During the ascent and descent of the lifting rod 734, the control system may activate the rotating motor 91. The output shaft of the rotating motor 91 drives the enemy target 22 to rotate through the rotating rod 92, thereby causing the enemy target 22 to rotate out of the obstruction range of the hostage target 21, thus simulating hostile elements taking hostages, thereby improving the psychological quality and shooting level of the trainees.

[0043] The implementation principle of a portable lifting target according to an embodiment of this application is as follows: the trainee starts the drive motor 61 through the control system. The output shaft of the drive motor 61 drives the drive shaft 62 to rotate synchronously through the synchronous wheel 11 and the transmission belt 63. The drive shaft 62 drives the rear wheel 4 to rotate. The friction between the rear wheel 4 and the ground causes the base plate 1 to move forward. The moving base plate 1 pushes the front wheel 3 to roll. Since there is a protrusion 5 on the front wheel 3, the base plate 1 is in a bumpy state during the forward movement, so that the target 2 on the base plate 1 is in a disordered moving state.

[0044] The output shaft of the drive motor 61 drives the rocker arm 74 to rotate. The rotating rocker arm 74 drives the moving plate 71 to continuously slide back and forth on the top of the base plate 1 through the connecting rod 75. Then the control system starts the lifting motor 731. The output shaft of the lifting motor 731 drives the lifting plate 732 to rotate synchronously. The rotating lifting plate 732 drives the lifting rod 733 to rotate around the axis of the lifting plate 732.

[0045] When the lifting rod 733 moves to the lowest vertical position of the lifting plate 732, the lifting rod 733 rotates to the bottom of the horizontal bar 735. As the lifting plate 732 continues to rotate, the lifting rod 733 drives the horizontal bar 735 to rise, and the horizontal bar 735 drives the lifting rod 734 to rise, thereby causing the lifting rod 734 to drive the target 2 to rise. When the lifting rod 733 moves to the highest vertical position of the lifting plate 732, as the lifting plate 732 continues to rotate, the lifting rod 733 separates from the horizontal bar 735, and the lifting rod 734 drives the target 2 to fall back under the action of gravity.

[0046] During the ascent and descent of the lifting rod 734, the control system may activate the rotating motor 91. The output shaft of the rotating motor 91 drives the enemy target 22 to rotate through the rotating rod 92, thereby causing the enemy target 22 to rotate out of the obstruction range of the hostage target 21, thus simulating hostile elements taking hostages, thereby improving the psychological quality and shooting level of the trainees.

[0047] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A portable lifting target, characterized in that: The device includes a base plate (1) and a target (2). A front wheel (3) and a rear wheel (4) are rotatably mounted on the base plate (1). The front wheel (3) and the rear wheel (4) are symmetrically arranged on both sides of the base plate (1). A protrusion (5) is provided on the outer circumferential wall of the front wheel (3). A rotation drive (6) is provided on the base plate (1) to drive the rear wheel (4) to rotate. The target (2) is slidably mounted on the base plate (1). A sliding assembly (7) is provided on the base plate (1) to drive the target (2) to slide.

2. The portable lifting target according to claim 1, characterized in that: The driving component (6) includes a drive motor (61) mounted on the base plate (1), the drive motor (61) being electrically connected to the control system, a drive shaft (62) being rotatably mounted on the base plate (1), the rear wheel (4) being coaxially mounted on the drive shaft (62), a transmission belt (63) being wound between the output shaft of the drive motor (61) and the drive shaft (62), and a clearance groove (64) being provided on the base plate (1) for the transmission belt (63) to pass through.

3. A portable lifting target according to claim 2, characterized in that: The sliding assembly (7) includes a movable plate (71) that is horizontally slidably disposed on the base plate (1), a rocker arm (74) is disposed on the output shaft of the drive motor (61), a connecting rod (75) is hinged between the rocker arm (74) and the movable plate (71), a vertical tube (72) is disposed on the movable plate (71), the target (2) is vertically slidably disposed on the tube (72), and a lifting component (73) for driving the target (2) to slide vertically is disposed on the movable plate (71).

4. A portable lifting target according to claim 3, characterized in that: The lifting component (73) includes a lifting motor (731) disposed on the moving plate (71) and electrically connected to the control system. A lifting plate (732) is coaxially disposed on the output shaft of the lifting motor (731). A lifting rod (733) is disposed on the edge of the lifting plate (732). A lifting rod (734) is vertically slidably disposed on the riser (72). The target (2) is disposed on the lifting rod (734). A crossbar (735) is disposed on the lifting rod (734). A lifting groove (736) is vertically opened between the inner and outer walls of the riser (72) for the crossbar (735) to slide. The lifting rod (733) is used to lift the crossbar (735).

5. A portable lifting target according to claim 4, characterized in that: A buffer spring (8) is provided at the bottom of the riser (72), and the buffer spring (8) is located between the lifting rod (734) and the moving plate (71).

6. A portable lifting target according to claim 4, characterized in that: The target (2) includes a hostage target (21) and an adversary target (22). The hostage target (21) is mounted on the lifting rod (734). The lifting rod (734) is located between the adversary target (22) and the hostage target (21). The adversary target (22) is rotatably mounted on the lifting rod (734). The lifting rod (734) is provided with a rotating component (9) that drives the adversary target (22) to rotate.

7. A portable lifting target according to claim 6, characterized in that: The rotating component (9) includes a rotating motor (91) disposed on the lifting rod (734) and electrically connected to the control system. A rotating rod (92) is coaxially disposed on the output shaft of the rotating motor (91), and the adversary target (22) is disposed on the rotating rod (92).

8. A portable lifting target according to claim 7, characterized in that: Both the hostage target (22) and the hostage target (21) are equipped with a broadcaster (10), which is electrically connected to the control system.

Citation Information

Patent Citations

  • Automatic target-scoring lifting target drone

    CN221744812U