Gun repairing training target

By using a rotating component and an electromagnetic brake to control the rotation of the first target in the supplementary shooting training target, and combining this with a drive component to move the second target, the problems of obstruction and uncontrolled time in existing training targets are solved, resulting in a more challenging supplementary shooting training experience.

CN223954774UActive Publication Date: 2026-02-27SHANGHAI YIWAN SPECIAL TRAINING EQUIP TECH CO LTD
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Patent Information

Application Number
CN202520211663.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2026-02-27
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

The existing training targets for follow-up shooting have a first target falling and obscuring the second target. The shooting time is not limited, the difficulty is low, which does not meet the needs of actual combat. In addition, it is time-consuming and laborious to pick up the first target.

Method used

Design a target for follow-up shooting training. Use a rotating component to flip the first target after it is hit to open the shooting window and expose the second target. Combine an electromagnetic brake and a time limit regulator to control the flipping time of the first target and drive the component to move the second target, so as to realize follow-up shooting training in a short time.

Benefits of technology

It increases the difficulty and realism of training. The first target can be reused, and the movement of the second target increases the shooting challenge, meeting the training needs of quick follow-up shots.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223954774U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of shooting training, and provides a gun repairing training target which comprises a target drone main body, a first target body and a second target body, and a shooting window is formed in the target drone main body; the first target body is rotatably arranged on the back face of the target drone main body through a rotating assembly and relatively located on the rear side of the shooting window, and after the first target body is shot, the first target body is overturned backwards through the rotating assembly and opens the shooting window within a certain time; the second target body is arranged behind the first target body at an interval and relatively located on the rear side of the shooting window. According to the gun repairing training target, the target machine body is provided with the first target body and the second target body which can be observed through the shooting window, the first target body is suitable for being overturned backwards through the rotating assembly and opening the shooting window after being shot, at the moment, the second target body can be observed through the shooting window, and the gun repairing ability in a short time can be trained conveniently; the first target body is always arranged on the target drone main body, so that the first target body can be recycled conveniently.
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Description

TECHNICAL FIELD

[0001] The utility model relates to shooting training equipment technical field further relates to a gun replacement training target. BACKGROUND

[0002] Gun replacement training is a routine project of shooter training, and the shooter needs to hit the first target body in front and then hit the second target body moving behind the first target body, but the first target body of the existing gun replacement training target is mostly disposable, that is, after hitting the first target body, the first target body will fall off the training target, thereby exposing the second target body behind, and the falling process of the first target body will occasionally block the second target body, seriously affecting the exposure of the second target body, and the shooting time of the second target body in the existing training target is not limited, which is relatively low in difficulty and does not meet the training needs of shooting the second target body again in a short time in actual combat, and the pickup of the first target body is also a big problem, and even when used again, the first target body needs to be reloaded on the training target, which is time-consuming and laborious in overall training. SUMMARY

[0003] In view of the above technical problems, the utility model aims at providing a gun replacement training target, which is provided with a first target body and a second target body that can be observed through a shooting window on the target machine main body, the first target body is suitable for turning over backward and opening the shooting window through a rotating assembly after being hit, at this time, the second target body can be observed through the shooting window, which is convenient for training the ability of gun replacement in a short time, and the first target body is always arranged on the target machine main body, which is convenient for the recycling of the first target body.

[0004] In order to achieve the above purpose, the utility model provides a gun replacement training target, which comprises a target machine main body, a first target body and a second target body, and the target machine main body is provided with a shooting window;

[0005] The first target body is rotatably arranged on the back of the target machine main body and located on the back side of the shooting window through a rotating assembly, and after being hit, the first target body turns over backward through the rotating assembly and opens the shooting window within a certain time;

[0006] The second target body is arranged at intervals behind the first target body and located on the back side of the shooting window.

[0007] In some embodiments, the rotating assembly comprises a rotating shaft, the rotating shaft is rotatably arranged on the back of the target machine main body and located on the top of the shooting window, the rotating shaft is connected with the first target body, and when the first target body is hit, the first target body turns over upward through the rotating shaft and opens the shooting window, so that the second target body can be observed in the shooting window.

[0008] In some embodiments, the rotating assembly further comprises a one-way bearing and an electromagnetic brake, the one-way bearing is arranged on the rotating shaft and connected with the first target body, when the first target body is shot, the first target body is flipped upward on the one-way bearing in one direction and opens the shooting window;

[0009] The electromagnetic brake is connected with the rotating shaft and adapted to brake the rotating shaft for a certain time, after the electromagnetic brake is released, the first target body and the rotating shaft are adapted to flip in the opposite direction and block the shooting window.

[0010] In some embodiments, further comprising a sensing assembly and a time-limiting regulator, the time-limiting regulator is connected with the electromagnetic brake and adapted to control the braking time of the first target body;

[0011] The sensing assembly is adapted to sense the flipping angle of the first target body, when the first target body is flipped to a preset angle, the time-limiting regulator starts timing.

[0012] In some embodiments, the sensing assembly comprises a photoelectric sensor and a photoelectric sensing block, the photoelectric sensor is arranged above the one-way bearing, the photoelectric sensing block is arranged at the connection between the first target body and the one-way bearing, when the photoelectric sensor senses the photoelectric sensing block, the time-limiting regulator starts running.

[0013] In some embodiments, the second target body is arranged behind the first target body by a driving assembly, the driving assembly comprises a driving member and a conveying module, the driving member is adapted to drive the second target body to reciprocate on the conveying module and pass through the shooting window at least once.

[0014] In some embodiments, the conveying module is arranged along the width direction of the shooting window and relatively located above the shooting window, the driving member is adapted to drive the second target body to reciprocate along the width direction of the shooting window.

[0015] In some embodiments, the conveying module comprises a power wheel, an auxiliary wheel and a transmission member, the power wheel and the auxiliary wheel are arranged along the width direction of the shooting window, the power wheel is connected with the driving member, the transmission member is transmissionally connected with the power wheel and the auxiliary wheel, the second target body is connected with the transmission member.

[0016] In some embodiments, the target machine body comprises a shooting plate, a first mounting frame and a second mounting frame, the first mounting frame is adapted to be placed in a shooting field, the shooting plate is mounted above the first mounting frame, the shooting window is arranged at the center of the shooting plate, the back of the shooting plate is provided with the rotating assembly;

[0017] The second mounting frame is mounted on the back of the shooting plate and is opposite to the rotating assembly, and the second mounting frame is provided with the driving assembly at one end away from the first mounting frame.

[0018] In some embodiments, the shooting plate comprises bulletproof rubber bricks arranged on the front of the shooting plate and bulletproof steel plates arranged on the back of the shooting plate.

[0019] The power module is arranged on the back of the shooting plate, and the power module is connected to the rotating assembly and the driving assembly.

[0020] Compared with the prior art, the shooting training target provided by the utility model has at least one of the following beneficial effects:

[0021] 1. The target machine body is provided with a first target body and a second target body that can be observed through a shooting window, the first target body is adapted to be flipped backward and open the shooting window through the rotating assembly after being shot, at this time, the second target body can be observed through the shooting window, which is convenient for training the ability to replenish guns in a short time, and the first target body is always arranged on the target machine body, which is convenient for the recycling of the first target body.

[0022] 2. The first target body is flipped in one direction through a one-way bearing, avoiding the first target body from shaking up and down and affecting shooting observation; the electromagnetic brake brakes the first target body and the rotating shaft for a period of time, so as to control the training difficulty through the braking time of the first target body, which is beneficial for the shooting training of beginners.

[0023] 3. The time limit adjuster can adjust the braking time of the electromagnetic brake, and then adjust the braking time of the first target body and the observation time of the second target body, the sensing assembly can sense the flipping condition of the first target body, the time limit adjuster starts timing after the first target body is flipped away from the shooting window and the second target body can be observed in the shooting window, and the time connection is better.

[0024] 4. The second target body is arranged behind the first target body, when the electromagnetic brake starts to run, the second target body also starts to move and passes through the shooting window at least once, at this time, the second target body needs to be hit within the time of passing through the shooting window, and the replenishment training is completed, and the replenishment training experience is better. BRIEF DESCRIPTION OF DRAWINGS

[0025] The above characteristics, technical features, advantages and implementation modes of the utility model will be further described in the following in a clear and easy-to-understand manner combined with the preferred embodiments and the attached drawings.

[0026] Figure 1 It is the overall view of the target machine body;

[0027] Figure 2is a position map of the first target body and the second target body;

[0028] Figure 3 is a structure diagram of the rotating assembly;

[0029] Figure 4 is a structure diagram of the driving assembly.

[0030] BRIEF DESCRIPTION OF DRAWINGS

[0031] Target machine body 1, shooting window 10, shooting plate 11, first mounting frame 12, second mounting frame 13, first target body 2, rotating assembly 3, rotating shaft 31, one-way bearing 32, induction assembly 33, photoelectric inductor 331, photoelectric induction block 332, time limiter 35, electromagnetic brake 36, power supply module 37, second target body 4, driving assembly 5, driving piece 51, transmission module 52, power wheel 521, auxiliary wheel 522, transmission piece 523. DETAILED DESCRIPTION

[0032] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, specific embodiments of the present application will be described below with reference to the drawings. Obviously, the drawings described below are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without creative labor, and other embodiments can also be obtained.

[0033] In order to make the drawing simple, only the parts related to the present application are shown in each drawing, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some drawings, only one of the components with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one".

[0034] It should be further understood that the term "and / or" used in the specification and claims of the present application means any combination of one or more of the associated listed terms and all possible combinations, and includes these combinations.

[0035] In this paper, it should be noted that unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0036] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance. It should be noted that the above embodiments can be freely combined as needed. The above is only the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which should be considered within the scope of protection of the present application.

[0037] Reference Figure 1 And Figure 2 The utility model provides a kind of gun training target, including target machine main body 1, first target body 2 and second target body 4, and shooting window 10 is equipped on target machine main body 1;First target body 2 is rotatably arranged on the back of target machine main body 1 by rotating assembly 3 and is located relatively behind shooting window 10, after being shot, first target body 2 is flipped back by rotating assembly 3 and opens shooting window 10 in a certain time;Second target body 4 is spaced apart and arranged behind first target body 2 by driving assembly 5 and is located relatively behind shooting window 10.

[0038] In the embodiment, first target body 2 and second target body 4 that can be observed through shooting window 10 are equipped on target machine main body 1, first target body 2 is suitable for flipping back by rotating assembly 3 and opening shooting window 10 after being shot, second target body 4 can be observed through shooting window 10 at this time, it is convenient to train the ability of gun replenishment in short time, first target body 2 is always arranged on target machine main body 1, and it is convenient for the recycling of first target body 2.

[0039] Specifically, rotating assembly 3 includes rotating shaft 31, rotating shaft 31 is rotatably arranged on the back of target machine main body 1 and is located relatively on the top of shooting window 10, rotating shaft 31 is connected with first target body 2, when first target body 2 is shot, first target body 2 is flipped up by rotating shaft 31 and opens shooting window 10 in a certain time, so that second target body 4 can be observed in shooting window 10.In the process that first target body 2 is opened, second target body 4 can be observed in shooting window 10, at this time, second target body 4 needs to be hit in the short time that second target body 4 is observed in shooting window 10, to realize better gun replenishment training experience.Finally, first target body 2 is flipped reversely by the gravity of first target body 2.It is worth noting that first target body 2 is flipped up in the present application, i.e. rotating shaft 31 is arranged on the back of target machine main body 1 and is located relatively on the top of shooting window 10, at this time, the bottom of first target body 2 needs to be shot, so that first target body 2 is flipped up, in the alternative embodiment, first target body 2 can also be flipped down, left and right, which are all within the protection scope of the present application.

[0040] Further, the rotating assembly 3 further comprises a one-way bearing 32 and an electromagnetic brake 36, the one-way bearing 32 is arranged in the rotating shaft 31 and connected with the first target body 2, when the first target body 2 is shot, the first target body 2 is one-way flipped upward on the one-way bearing 32 and opens the shooting window 10; the electromagnetic brake 36 is connected with the rotating shaft 31 and is suitable for braking the rotating shaft 31 for a period of time, after the electromagnetic brake 36 is released, the first target body 2 and the rotating shaft 31 are suitable for reverse flipping and shielding the shooting window 10.

[0041] In the embodiment, the first target body 2 realizes one-way flipping through the one-way bearing 32, avoiding the first target body 2 shaking up and down and affecting shooting observation; the electromagnetic brake 36 brakes the first target body 2 and the rotating shaft 31 for a period of time, facilitating controlling training difficulty through the braking time of the first target body 2, and being beneficial to shooting training of primary shooters.

[0042] Specifically, the one-way bearing 32 is arranged in the middle of the rotating shaft 31 and connected with the first target body 2, when the first target body 2 is shot, the first target body 2 is flipped upward on the one-way bearing 32. More specifically, the one-way bearing 32 is arranged in the center of the rotating shaft 31, the one-way bearing 32 is connected with the rotating shaft 31 and the first target body 2, the one-way bearing 32, the rotating shaft 31 and the electromagnetic brake 36 divide the flipping of the first target body 2 into two parts, after the first target body 2 is just hit by shooting, the first target body 2 is flipped upward on the one-way bearing 32 and opens the shooting window 10, the first target body 2 is flipped to the maximum range and remains prohibited, at this time, the rotating shaft 31 is locked by the electromagnetic brake 36; after the electromagnetic brake 36 brakes for a period of time, the electromagnetic brake 36 releases the rotating shaft 31, the first target body 2 drives the rotating shaft 31 to flip downward under the action of its own gravity and closes the shooting window 10.

[0043] Moreover, the rotation of the one-way bearing 32 is one-way, after the first target body 2 is impacted, the first target body 2 rotates on the one-way bearing 32, at this time, there is no need to worry about the reverse rotation of the first target body 2 itself, and there is no need to consider the impact of the first target body 2 on the rotating shaft 31, that is, the first target body 2 rotates upward on the one-way bearing 32, the rotating shaft 31 follows the first target body 2 and the one-way bearing 32 to flip downward, reducing the operation and structure difficulty of the rotating assembly 3, avoiding the impact force of the first target body 2 when being shot directly transmitted to the rotating shaft 31 and damaging the rotating shaft 31. Dividing the flipping process of the first target body 2 into two parts also increases the shooting difficulty of the first target body 2, at the same time, controlling the braking time of the first target body 2 through the electromagnetic brake 36, making the flipping process of the first target body 2 more variable, more unpredictable, and more in line with actual combat needs, only shooting the far end of the first target body 2 away from the rotating assembly 3 can give the first target body 2 enough power to flip it on the one-way bearing 32 for a sufficient angle and open the shooting window 10.

[0044] Further, the shooting device further comprises an induction assembly 33 and a time-limited regulator 35, the time-limited regulator 35 is connected with the electromagnetic brake 36 and is adapted to control the braking time of the first target body 2; the induction assembly 33 is adapted to induce the turning angle of the first target body 2, and the time-limited regulator 35 starts timing when the first target body 2 turns to the preset angle.

[0045] In the embodiment, the time-limited regulator 35 can adjust the braking time of the electromagnetic brake 36, and further adjust the braking time of the first target body 2 and the observation time of the second target body 4; the induction assembly 33 can induce the turning condition of the first target body 2, and the time-limited regulator 35 starts timing when the first target body 2 turns away from the shooting window 10 and the second target body 4 can be observed in the shooting window 10, so that the time connection is better.

[0046] Specifically, the electromagnetic brake 36 can brake the rotating shaft 31 and the first target body 2 for a period of time to provide the observation time for the shooting of the second target body 4, and the time-limited regulator 35 can adjust the braking time of the electromagnetic brake 36 to meet the shooting requirements of various scenes and various difficulties. The electromagnetic brake 36 can brake the rotating shaft 31, and after the electromagnetic brake 36 is released, the first target body 2 and the rotating shaft 31 can be turned downward due to the gravity of the first target body 2 itself, and when the first target body 2 is turned reversely, the first target body 2 and the one-way bearing 32 are relatively static, that is, the first target body 2 does not rotate relative to the one-way bearing 32. More specifically, when the first target body 2 is turned upward to be induced by the induction assembly 33, the electromagnetic brake 36 starts to operate and brakes the rotating shaft 31 above the shooting window 10, at this time, the first target body 2 can still be turned upward on the one-way bearing 32 and be kept static after being turned to the maximum angle; when the braking time of the electromagnetic brake 36 is completed, the electromagnetic brake 36 releases the rotating shaft 31, and under the action of the gravity of the first target body 2 itself, the first target body 2 and the rotating shaft 31 are turned downward.

[0047] The induction assembly 33 comprises a photoelectric inductor 331 and a photoelectric induction block 332. The photoelectric inductor 331 is arranged above the one-way bearing 32, and the photoelectric induction block 332 is arranged at the connection between the first target body 2 and the one-way bearing 32. When the photoelectric inductor 331 senses the photoelectric induction block 332, the time limit adjuster 35 starts timing, that is, the electromagnetic brake 36 starts operating. When the photoelectric induction block 332 is flipped to the photoelectric inductor 331, that is, the first target body 2 has reached a certain angle, the second target body 43 can be observed through the shooting window 10. It is worth noting that the application senses the rotation angle of the first target body 2 through the photoelectric inductor 331 and the photoelectric induction block 332 to determine whether it reaches a certain angle. The induction assembly 33 can also use an angle sensor or other angle measuring device to sense and measure the angle. The application does not make further elaboration. The induction assembly 33 can also be a pressure induction structure, which can sense the rotation angle of the first target body 2 after shooting, so that the subsequent time limit adjuster 35 and electromagnetic brake 36 start operating. The required flipping angle of the first target body 2 in the application is 30-40 degrees, which is not limited further, and can be adjusted according to actual needs.

[0048] Further, with reference to Figure 4 The second target body 4 is arranged behind the first target body 2 at intervals through the driving assembly 5. The driving assembly 5 comprises a driving member 51 and a conveying module. The driving member 51 is suitable for driving the second target body 4 to move back and forth on the conveying module and pass through the shooting window 10 at least once.

[0049] In the embodiment, the second target body 4 is arranged behind the first target body 2. When the electromagnetic brake 36 starts operating, the second target body 4 also starts moving and passes through the shooting window 10 at least once. At this time, it is required to hit the second target body 4 within the time when the second target body 4 passes through the shooting window 10 to complete the supplemental gun training. The experience of the supplemental gun training is better.

[0050] Specifically, the time limit adjuster 35 is also connected to the driving member 51 of the driving assembly 5. The working time of the driving member 51 is equal to the braking time of the electromagnetic brake 36, that is, the moving time of the second target body 4 is matched with the braking time of the first target body 2. The driving member 51 is suitable for driving the second target body 4 to move back and forth on the conveying module and pass through the shooting window 10 at least once. At this time, it is required to hit the second target body 4 within the time when the second target body 4 passes through the shooting window 10 to complete the supplemental gun training. The experience of the supplemental gun training is better, the difficulty is better, and it is more in line with the actual combat needs. It is worth noting that the application takes the movement of the second target body 4 as an example, but in fact, the application does not limit the movement trajectory of the second target body 4. As long as it can pass through the shooting window 10 at least once, the movement state of the second target body 4 is variable, which can be moving, rotating, flipping, stretching, etc. All of them are within the protection scope of the application.

[0051] Further, the conveying module 52 comprises a power wheel 521, an auxiliary wheel 522 and a transmission member 523, the power wheel 521 and the auxiliary wheel 522 are arranged along the width direction of the shooting window 10, the power wheel 521 is connected to the driving member 51, the transmission member 523 is drivingly connected to the power wheel 521 and the auxiliary wheel 522, and the second target body 4 is connected to the transmission member 523.

[0052] In this embodiment, the second target body 4 reciprocates along the transmission member 523 between the power wheel 521 and the auxiliary wheel 522, so that the second target body 4 can pass through the shooting window 10 at least once, thereby increasing the shooting difficulty of the second target body 4.

[0053] Specifically, when the electromagnetic brake 36 starts to work, the driving assembly 5 also starts to work, and the driving assembly 5 drives the second target body 4 to rotate at least one circle around the transmission member 523, so that the second target body 4 passes through the shooting window 10 at least once. Moreover, because the working time set by the time-limiting adjuster 35 is different, the position where the second target body 4 stays each time is also different, thereby further increasing the uncertainty of the movement of the second target body 4 and increasing the shooting difficulty of the second target body 4. The conveying module 52 is arranged along the width direction of the shooting window 10 and is located above the shooting window 10, and the driving member 51 is adapted to drive the second target body 4 to reciprocate along the width direction of the shooting window 10. The moving direction of the second target body 4 is parallel to the shooting window 10 of the shooting plate 11. The driving member 51 is a motor, the driving member 51 is connected to the power wheel 521, the transmission member 523 is a conveying chain, the transmission member 523 is drivingly connected to the power wheel 521 and the auxiliary wheel 522, and the second target body 4 reciprocates in the circumferential direction along with the transmission member 523. It is worth noting that the conveying module 52 can also be a moving assembly such as a track or a screw rod, as long as it can drive the second target body 4 to move relative to the shooting window 10. The position of the conveying module 52 also includes but is not limited to the top of the shooting window 10, and it can also be arranged at other positions of the shooting window 10. In the variant embodiment, the second target body 4 also passes through the shooting window 10 by rotating. Specifically, the driving assembly 5 comprises a rotating shaft, and the second target body 4 is arranged at the end of the rotating shaft, so that in the process of driving the second target body 4 to rotate by the rotating shaft, the second target body 4 passes through the shooting window 10 at least once.

[0054] Further, referring to Figure 1 , the target machine body 1 comprises the shooting plate 11, the first mounting frame 12 and the second mounting frame 13, the first mounting frame 12 is adapted to be placed in the shooting field, the shooting plate 11 is mounted above the first mounting frame 12, the shooting window 10 is arranged at the center of the shooting plate 11, and the back of the shooting plate 11 is provided with the rotating assembly 3; the second mounting frame 13 is mounted on the surface of the shooting plate 11 and is located above the rotating assembly 3, and the end of the second mounting frame 13 away from the shooting plate 11 is provided with the driving assembly 5.

[0055] Specifically, the shooting plate 11 includes bulletproof rubber bricks and bulletproof steel plates, the bulletproof rubber bricks are arranged on the front surface of the shooting plate 11, and the bulletproof steel plates are arranged on the back surface of the shooting plate 11; the shooting plate 11 further includes a power module 37, the power module 37 is arranged on the back surface of the shooting plate 11, and the power module 37 is connected with the rotating assembly 3 and the driving assembly 5.

[0056] It should be noted that the above embodiments can be freely combined as needed. The above is only a preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which should be considered as the protection scope of the present application.

Claims

1. A gun supplement training target, characterized in that, Comprising: a target body, a shooting window is arranged on the target body; a first target body, the first target body is rotatably arranged on the back of the target body by a rotating assembly and is located opposite to the back side of the shooting window, after being shot, the first target body is flipped backward by the rotating assembly and opens the shooting window within a certain time; a second target body, the second target body is arranged behind the first target body and is located opposite to the back side of the shooting window.

2. The shooting training target according to claim 1, wherein: the rotating assembly comprises a rotating shaft, the rotating shaft is rotatably arranged on the back of the target body and is located opposite to the top of the shooting window, the rotating shaft is connected with the first target body, after the first target body is shot, the first target body is flipped upward by the rotating shaft and opens the shooting window, so that the second target body can be observed in the shooting window.

3. The shooting training target according to claim 2, wherein: the rotating assembly further comprises a one-way bearing and an electromagnetic brake, the one-way bearing is arranged on the rotating shaft and is connected with the first target body, after the first target body is shot, the first target body is flipped upward on the one-way bearing and opens the shooting window; the electromagnetic brake is connected with the rotating shaft and is adapted to brake the rotating shaft for a certain time, after the electromagnetic brake is released, the first target body and the rotating shaft are adapted to flip reversely and block the shooting window.

4. The shooting training target according to claim 3, wherein: further comprising a sensing assembly and a time limit adjuster, the time limit adjuster is connected with the electromagnetic brake and is adapted to control the braking time of the first target body; the sensing assembly is adapted to sense the flipping angle of the first target body, after the first target body is flipped to a preset angle, the time limit adjuster starts timing.

5. The shooting training target according to claim 3, wherein: the sensing assembly comprises a photoelectric sensor and a photoelectric sensing block, the photoelectric sensor is arranged above the one-way bearing, the photoelectric sensing block is arranged at the connection between the first target body and the one-way bearing, after the photoelectric sensor senses the photoelectric sensing block, the time limit adjuster starts running.

6. The shooting training target according to any one of claims 1-5, wherein: the second target body is arranged behind the first target body by a driving assembly, the driving assembly comprises a driving member and a transmission module, the driving member is adapted to drive the second target body to move back and forth on the transmission module and pass through the shooting window at least once.

7. The shooting training target according to claim 6, wherein: the transmission module is arranged along the width direction of the shooting window and is located opposite to the top of the shooting window, the driving member is adapted to drive the second target body to move back and forth along the width direction of the shooting window.

8. The shooting training target according to claim 7, wherein: The transmission module comprises a power wheel, an auxiliary wheel and a transmission member, the power wheel and the auxiliary wheel are arranged at intervals along the width direction of the shooting window, the power wheel is connected with the driving member, the transmission member is drivingly connected with the power wheel and the auxiliary wheel, and the second target body is connected with the transmission member.

9. The gun training target according to claim 1, wherein, The target machine body comprises a shooting plate, a first mounting frame and a second mounting frame, the first mounting frame is adapted to be placed in a shooting field, the shooting plate is mounted above the first mounting frame, the shooting window is provided in the center of the shooting plate, and the rotation assembly is provided on the back of the shooting plate; The second mounting frame is mounted on the back of the shooting plate and is located above the rotation assembly opposite to the first mounting frame, and the driving assembly is provided on the end of the second mounting frame away from the first mounting frame.

10. The gun training target according to claim 9, wherein, The shooting plate comprises bulletproof rubber bricks and bulletproof steel plates, the bulletproof rubber bricks are provided on the front of the shooting plate, and the bulletproof steel plates are provided on the back of the shooting plate; Further comprising a power module, the power module is provided on the back of the shooting plate, and the power module is connected with the rotation assembly and the driving assembly.