Automatic target marking device for small arms
By using a laser vibrometer and an electronic level to detect the status of the support and target, and by using fixed blocks and servo motors to adjust the support and target, the problem of the automatic target reporting device shaking and tilting under the impact of bullets was solved, achieving a stable and accurate shooting effect.
Patent Information
- Application Number
- CN202411732044.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2044-11-29
AI Technical Summary
Existing automatic target reporting devices are prone to shaking and target tilting when hit by bullets, affecting shooting quality and posing safety hazards.
A laser vibration meter is used to detect the vibration of the support frame. Stress is adjusted by fixing blocks and diagonal braces. An electronic level is used to keep the target level. Sensors and servo motors are used to adjust the target position. A buffer layer and a bulletproof layer are provided to reduce impact.
It effectively reduces support sway and target tilt, improves shooting accuracy, ensures safety, and guarantees stable operation of the device under bullet impact.
Smart Images

Figure CN119554924B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of target reporting device, and particularly relates to an automatic target reporting device for light weapon shooting. BACKGROUND
[0002] When shooting training is performed using a light weapon, the position of a bullet hitting a target is usually reported in real time. Currently, manual target reporting or an automatic target reporting device is mainly used. When manual target reporting is performed, a staff member needs to stand beside a target position and report by watching the position of a bullet hitting a target paper in real time. However, this method has great safety hazards and may easily injure the staff member. Therefore, an automatic target reporting device is usually used at present.
[0003] However, the actual automatic target reporting device shakes when being hit by a bullet, and even the target slightly tilts, which is not easy to be found, thereby affecting the shooting quality. Therefore, it is necessary to design an automatic target reporting device that can minimize the shaking of a support and the tilting of a target after being hit by a bullet. SUMMARY
[0004] The present application aims to provide an automatic target reporting device for light weapon shooting to solve the problems in the background.
[0005] To solve the above technical problems, the present application provides the following technical scheme: an automatic target reporting device for light weapon shooting, comprising a target, a support, a base and a mounting plate, characterized in that: a sensing component is arranged in the target, a lifting component is arranged in the support, a fixing component is arranged on the base, and a pressing component is arranged in the mounting plate.
[0006] The target is provided with an inner cavity one in which the sensing component is placed. The sensing component comprises a buffer layer, a bulletproof layer, a plurality of pressing rods and a pressure sensor. The buffer layer, the bulletproof layer and the pressure sensor are sequentially arranged in the inner cavity one of the target from left to right. A sealing ring is fixedly connected to the right side of the pressure sensor. One side of each pressing rod is fixedly connected to the right side of the buffer layer. A plurality of through holes two are formed in the bulletproof layer. Another side of each pressing rod passes through the through hole two and is fixedly connected. A spring one is arranged between each pressing rod and the left side of the bulletproof layer.
[0007] The support is provided with a support plate one and a support plate two, the support plate two is located directly below the support plate one, the bottom of both ends of the support is provided with a convex groove, the fixing component includes two mounting racks, two spring boxes, a fixing plate and a plurality of inclined supporting legs, each spring box is arranged at the top of the front surface of the mounting rack, the top of each mounting rack and the spring box are connected into the convex groove and fixedly connected, the bottom of the spring box is flush with the bottom of the convex groove, the left and right sides of the fixing plate are fixedly connected on one side of each mounting rack, the base is provided with a limiting groove, the bottom of each mounting rack and the fixing plate is connected into the limiting groove and fixedly connected, the front and rear surfaces of each mounting rack are provided with a rectangular groove one, one side of each inclined supporting leg is hingedly connected with a fixed block one, the left and right ends of the upper surface of the base are symmetrically provided with a rectangular groove two, each rectangular groove two is provided with a fixed block two, the other side of each inclined supporting leg is hingedly connected with the upper surface of the fixed block two, a plurality of through holes one are formed in the left and right sides of each rectangular groove one, and the fixed block one is arranged in the rectangular groove one.
[0008] The mounting plate is provided with an inner cavity two around the left and right sides, and four groups of pressing components are arranged in the inner cavity two.
[0009] The support is provided with a sliding groove one on both sides, two groups of lifting components are arranged in the sliding groove one, each lifting component includes a servo motor, a shaft coupling, a lead screw, an H-shaped sliding block and a fixing seat, the servo motor is arranged at the bottom of the sliding groove one, the output end of the servo motor is bearing-connected with one end of the shaft coupling, the other end of the shaft coupling is bearing-connected with one end of the lead screw, the other end of the lead screw is bearing-connected with the fixing seat, the H-shaped sliding block is threadedly connected to the surface of the lead screw, and one side of each H-shaped sliding block is slidingly connected to the inward side of the sliding groove one.
[0010] The mounting plate is provided with two groups of circular arc grooves on both sides, the H-shaped sliding block is bearing-connected with the mounting plate, thread holes are formed in the two sides of the H-shaped sliding block, the thread holes are arranged on the both sides of the bearing connection between the H-shaped sliding block and the mounting plate, the thread holes correspond to the circular arc grooves, and the target is arranged on the front surface of the mounting plate.
[0011] The upper surface of the base is provided with a bulletproof plate.
[0012] The right surface of the bulletproof plate is symmetrically provided with a laser vibration meter at both ends.
[0013] The top end of the mounting plate is symmetrically provided with an electronic level.
[0014] The upper surface of the base is provided with a digital media, and the digital media is electrically connected with the pressure sensor.
[0015] The upper surface of the base is provided with a digital media, and the digital media is electrically connected with the pressure sensor.
[0016] The pressure sensor adopts a circular arc shape.
[0017] Compared with the prior art, the present application has the following advantages: the laser vibration meter is used to detect the vibration of the support after shooting, and then the fixed block 1 and the fixed block 2 are used to adjust the diagonal support foot, so that the diagonal support foot can accurately offset the stress and reduce the shaking of the support to the maximum extent.
[0018] The electronic level is also used to measure whether the target keeps horizontal balance, and the compression part or the circular arc groove on the H-shaped slider is used to adjust the target to keep horizontal balance, so as to not affect the shooting accuracy. DETAILED DESCRIPTION
[0019] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, together with the embodiments of the present application, to explain the present application, and do not constitute a limitation on the present application. In the drawings:
[0020] Figure 1 is a schematic diagram of the overall structure of the present application;
[0021] Figure 2 is a left view schematic diagram of the present application;
[0022] Figure 3 is a schematic diagram of the support of the present application;
[0023] Figure 4 is a schematic diagram of the fixed part of the present application;
[0024] Figure 5 is a schematic diagram of the target fixation of the present application;
[0025] Figure 6 is a schematic diagram of the target of the present application;
[0026] Figure 7is the A area enlarged schematic view of the present application Figure 7
[0027] Figure 8 is the B area enlarged schematic view of the present application Figure 3
[0028] In the figure: 1, target; 2, support; 21, sliding groove one; 22, convex groove; 23, support plate one; 24, support plate two; 3, base; 31, limiting groove; 4, fixing component; 41, mounting frame; 42, spring box; 43, fixed plate; 44, inclined support leg; 45, fixed block one; 46, rectangular groove one; 47, through hole one; 48, fixed block two; 5, sensing component; 51, buffer layer; 52, bulletproof layer; 53, pressure rod; 54, spring one; 55, pressure sensor; 6, lifting component; 61, servo motor; 62, coupling; 63, lead screw; 64, H-shaped sliding block; 65, fixed seat; 7, mounting plate; 8, pressing component; 81, air cylinder; 82, moving plate; 83, spring two; 84, connecting rod; 85, pressing plate; 9, controller; 10, digital media; 11, bulletproof plate; 12, laser vibration meter; 13, electronic level; 14, threaded hole. DETAILED DESCRIPTION
[0029] The technical solutions of the present application will be further described in detail below in combination with preferred embodiments and the drawings thereof. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work shall fall within the protection scope of the present application.
[0030] Please refer to Figures 1-8 , the present application provides technical solutions: a light weapon shooting automatic target device, comprising a target 1, a support 2, a base 3 and a mounting plate 7, the target 1 is provided with a sensing component 5, which detects data of bullet shooting target 1, the support 2 is provided with a lifting component 6, which adjusts the height of the target 1, the base 3 is provided with a fixing component 4, which avoids the front and back shaking of the support 2, the mounting plate 7 is provided with a pressing component 8, which avoids the left and right shaking of the support 2, the upper surface of the base 3 is provided with a bulletproof plate 11, which is flush with the upper surface of the support plate two 24 in height and wider than the fixing component 4, protecting the components on the base 3 from being damaged by bullets.
[0031] Please refer to Figure 2 , Figure 3 , and Figure 4 The right surface of the bulletproof plate 11 is symmetrically provided with a laser vibration detector 12 at both ends, which detects the front and rear vibration of the support 2 and adjusts the height of the fixed part 4. The support 2 is provided with a support plate one 23 and a support plate two 24, and the support plate two 24 is located directly below the support plate one 23. The bottom of the support 2 is provided with a convex groove 22 at both ends. The fixed part 4 comprises two mounting frames 41, two spring boxes 42, a fixed plate 43 and a plurality of inclined supporting legs 44. Each spring box 42 is arranged at the top of the front surface of the mounting frame 41. The top of each mounting frame 41 and the spring box 42 are fixedly connected into the convex groove 22. The bottom of the spring box 42 is flush with the bottom of the convex groove 22. The spring box 42 absorbs the stress generated when the bullet hits the target 1 and cushions the shock. The left and right sides of the fixed plate 43 are fixedly connected to one side of each mounting frame 41. The base 3 is provided with a limiting groove 31. The bottom of each mounting frame 41 and the fixed plate 43 are fixedly connected into the limiting groove 31. The front and rear surfaces of each mounting frame 41 are provided with a rectangular groove one 46. One side of each inclined supporting leg 44 is hingedly connected with a fixed block one 45. The left and right ends of the upper surface of the base 3 are symmetrically provided with a rectangular groove two. Each rectangular groove two is provided with a fixed block two 48. The other side of each inclined supporting leg 44 is hingedly connected with the upper surface of the fixed block two 48. The left and right sides of each rectangular groove one 46 are provided with a plurality of through holes one 47. The fixed block one 45 is arranged in the rectangular groove one 46. The inclined supporting leg 44 is used to stabilize the support 2 and avoid front and rear vibration. However, with the change of time, the fixed part 4 will inevitably age, and the support 2 will sway. The laser vibration detector 12 detects the vibration of the two ends of the support 2. Through data comparison, the height of one or both sides of the inclined supporting leg 44 is adjusted to realize the compensation of the front and rear vibration of the support 2.
[0032] Please refer to Figure 5 , Figure 6 and Figure 7 . The target 1 is provided with an inner cavity one for placing the sensing part 5. The sensing part 5 comprises a buffer layer 51, a bulletproof layer 52, a plurality of pressure rods 53 and a pressure sensor 55. The buffer layer 51, the bulletproof layer 52 and the pressure sensor 55 are arranged in the inner cavity one of the target 1 from left to right. The right side of the pressure sensor 55 is fixedly connected with a sealing ring. One side of each pressure rod 53 is fixedly connected with the right side of the buffer layer 51. A plurality of through holes two are provided in the bulletproof layer 52. The other side of each pressure rod 53 passes through the through hole two and is fixedly connected. A spring one 54 is arranged between each pressure rod 53 and the left side of the bulletproof layer 52. When the bullet hits the target 1, the impact force of the bullet makes the buffer layer 51 move backward, pushes the pressure rod 53 to move backward, and at the same time squeezes the spring one 54, so that the other side of the pressure rod 53 touches the pressure sensor 55 to collect shooting data. After the impact force disappears, the buffer layer 51 and the pressure rod 53 will reset under the self force of the spring one 54.
[0033] Please refer toFigure 1 The upper surface of the base 3 is provided with a digital medium 10, which is electrically connected with the pressure sensor 55. When the other side of the pressure rod 53 touches the pressure sensor 55, the coordinate position of the bullet hitting the target 1 is transmitted to the digital medium 10 in real time for voice broadcast.
[0034] Please refer to Figure 3 Both sides of the support 2 are provided with a sliding groove one 21. The lifting component 6 has two groups and is located in the sliding groove one 21 respectively. Each group of lifting component 6 includes a servo motor 61, a coupling 62, a lead screw 63, an H-shaped sliding block 64 and a fixed seat 65. The servo motor 61 is arranged at the bottom of the sliding groove one 21. The output end of the servo motor 61 is bearing connected with one end of the coupling 62. The other end of the coupling 62 is bearing connected with one end of the lead screw 63. The other end of the lead screw 63 is bearing connected with the fixed seat 65. The H-shaped sliding block 64 is threadedly connected on the surface of the lead screw 63. One side of each H-shaped sliding block 64 is slidingly connected with the inward side of the sliding groove one 21. Two groups of circular arc grooves are arranged on both sides of the mounting plate 7. The middle of the H-shaped sliding block 64 is bearing connected with the mounting plate 7. Threaded holes 14 are arranged on both sides of the bearing connection between the H-shaped sliding block 64 and the mounting plate 7. The threaded holes 14 correspond to the circular arc grooves. The target 1 is arranged on the front surface of the mounting plate 7. The servo motor 61 is started to drive the lead screw 63 to rotate, so that the H-shaped sliding block 64 moves up and down in the sliding groove one 21, and the target 1 is synchronously moved up and down.
[0035] Please refer to Figure 2 、 Figure 8 The top end of the mounting plate 7 is symmetrically provided with electronic levels 13. After the target 1 is shot, the mounting plate 7 may not maintain a horizontal balance state. The comparative data is used to start the compression component 8. The left and right sides of the mounting plate 7 are both provided with inner cavities two. The compression component 8 has four groups and is located in the inner cavities two respectively. Each group of compression component 8 includes a pneumatic cylinder 81, a moving plate 82, a connecting rod 84 and a pressing plate 85. The pneumatic cylinder 81 and the moving plate 82 are arranged in the inner cavities two. The output end of the pneumatic cylinder 81 is connected with one side of the moving plate 82. A sliding groove two is arranged in the inner cavities two. The moving plate 82 is slidingly connected in the sliding groove two. A spring two 83 is arranged between the other side of the moving plate 82 and the left side of the sliding groove two. The other side of the moving plate 82 is connected with the right side of the connecting rod 84. The left side of the connecting rod 84 is connected with the right side of the pressing plate 85. When the data of the two electronic levels 13 are consistent, it represents that the mounting plate 7 is in a horizontal balance state. At this time, the pneumatic cylinder 81 does not need to be started. When the data of the two electronic levels 13 are inconsistent, it represents that the mounting plate 7 is not in a horizontal balance state. The pneumatic cylinder 81 is started. The piston rod pushes the moving plate 82 to extrude the spring two 83, so that the pressing plate 85 is synchronously moved to apply a compression force to the side surface of the support 2. Until the data of the two electronic levels 13 are consistent, the pneumatic cylinder 81 can be stopped.
[0036] Please refer to Figure 1 The support plate 23 is provided with a controller 9, which is electrically connected with the pressure sensor 55, the servo motor 61 and the air cylinder 81. The data transmitted by the pressure sensor 55 is used to start the servo motor 61 and the air cylinder 81 respectively.
[0037] The pressure sensor 55 adopts a circular arc shape, which can better collect the stress distribution inside the target 1 hit by the bullet.
[0038] Example one:
[0039] The servo motor 61 is started to drive the mounting plate 7 to the appropriate height, and the target 1 installed inside is arranged on the mounting plate 7. When the customer performs shooting training on the target 1, the bulletproof plate 11 can prevent the bullet from hitting the digital media 10 and the fixed part 4. When the bullet hits the target 1, the bullet first hits the buffer layer 51, and the huge force generated by the bullet pushes the pressure rod 53 behind the buffer layer 51 to move backward. The tail end of the pressure rod 53 is in contact with the pressure sensor 55. According to the data of the contact between the pressure sensor 55 and the pressure rod 53, the position of the bullet hitting the target 1 is determined, and then the position data is transmitted to the digital media 10 for voice broadcast. After the broadcast is over, the buffer layer 51 can be reset by using the elastic force of the spring 54.
[0040] When shooting, the bullet may cause the support 2 to vibrate forward and backward, and the mounting plate 7 cannot maintain a horizontal balance state.
[0041] The support 2 is installed by using the fixed part 4, and the base 3, the spring box 42 and the inclined support foot 44 are used to maximize the cancellation of the forward and backward vibrations of the support 2 after being hit by the bullet. It needs to be pointed out here that in the ideal state, the remaining cancellation can be performed by using the inclined support foot 44, but as time goes by, the previous fixed part 4 will age, resulting in that the vibration to be cancelled at last is not a constant value and may change. At this time, the laser vibration meter 12 needs to be used.
[0042] The laser vibration detector 12 is symmetrically arranged on the right side of the bulletproof plate 11, and can detect the front and rear vibration of the support 2. Assuming that the vibration value in the ideal state is t, when the vibration value of one side is t and the vibration value of the other side is greater than or less than t, the side with the vibration value t does not need to adjust the height of the inclined support leg 44. If the vibration value of one side is greater than t, the bolt connecting the fixed block one 45 and the rectangular groove one 46 is removed, the fixed block one 45 is slid downward, the bolt of the fixed block two 48 on the base 3 is removed, and the fixed block two 48 is slid to the left. When the value returns to t, stop moving and thread the fixed block one 45 and the fixed block two 48 at this time. Conversely, if the value is less than t, repeat the above operation, but the fixed block one 45 needs to be slid upward and the fixed block two 48 needs to be slid to the right until the value returns to t. When the vibration values of both sides are greater than or less than t, observe the values of both sides, and then adjust the height of the corresponding inclined support leg 44. It should be noted that when the vibration value is greater than t, the downward movement of the fixed block one 45 can reduce the support stress of the inclined support leg 44, and offset the part greater than t. Conversely, when the value is less than t, the upward movement of the fixed block one 45 can increase the support stress of the inclined support leg 44, and offset the part less than t.
[0043] For the left and right vibration generated after shooting, electronic levels 13 and compression components 8 are used. The electronic levels 13 are symmetrically arranged on the top end of the mounting plate 7. When the data of the electronic levels 13 remain the same, it represents that the mounting plate 7 is horizontally balanced at this time. When the value of one side of the electronic levels 13 is a and the value of the other side is b, and a>b, a small force is applied to the compression force. First, the threaded connection between the H-shaped sliding block 64 and the mounting plate 7 is loosened, and then the controller 9 is used to start a set of compression components 8 with a value of b. The cylinder 81 is started, the piston rod is extended and retracted outward, and the pressing plate 85 is pushed to the side of the support 2. Slowly, the pressing plate 85 is attached to the side of the support 2 and applies a compression force. Under the action of the pressing plate 85, the mounting plate 7 slowly recovers to horizontal balance, and the values of the two electronic levels 13 remain the same. The cylinder 81 is closed instead of allowing the cylinder 81 to return. The pressing plate 85 continues to resist the side of the support 2 to keep the values on both sides consistent, but remember to fix the H-shaped sliding block 64 and the mounting plate 7. After the shooting training is completed, the cylinder 81 can be started again by using the controller 9, so that the piston rod is retracted and the pressing plate 85 is away from the side of the support 2. If b has not changed to a, it can be judged that the target 1 is not tilted due to stress. At this time, the threaded connection between the H-shaped sliding block 64 and the mounting plate 7 is loosened, and the threaded connection between the mounting plate 7 and the H-shaped sliding block 64 is slid by using the circular arc groove until the values of the two electronic levels 13 remain the same. At this time, the threaded connection between the H-shaped sliding block 64 and the mounting plate 7 can be tightened.
[0044] By using the above structure, the shaking of the support 2 and the tilting of the target 1 can be reduced.
[0045] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0046] Finally, it should be pointed out that: the above examples are only used to illustrate the technical solutions of the present application, and are not limited thereto. Although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacement for part of the technical features, and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An automatic target reporting device for light weapons firing, comprising a target (1), a bracket (2), a base (3), and a mounting plate (7), characterized in that: The target (1) is provided with a sensing component (5), the bracket (2) is provided with a lifting component (6), the base (3) is provided with a fixing component (4), and the mounting plate (7) is provided with a pressing component (8). The target (1) has an inner cavity for placing the sensing component (5). The sensing component (5) includes a buffer layer (51), a bulletproof layer (52), several pressure rods (53), and a pressure sensor (55). The buffer layer (51), the bulletproof layer (52), and the pressure sensor (55) are arranged in the inner cavity of the target (1) from left to right. A sealing ring is fixedly connected to the right side of the pressure sensor (55). One side of each pressure rod (53) is fixedly connected to the right side of the buffer layer (51). Several through holes are opened in the bulletproof layer (52). The other side of each pressure rod (53) passes through the through holes and is fixedly connected. A spring (54) is provided between each pressure rod (53) and the left side of the bulletproof layer (52). The bracket (2) is provided with a first support plate (23) and a second support plate (24). The second support plate (24) is located directly below the first support plate (23). The bottom of both ends of the bracket (2) are provided with convex grooves (22). The fixing component (4) includes two mounting brackets (41), two spring boxes (42), a fixing plate (43), and several diagonal braces (44). Each spring box (42) is located at the top of the front surface of the mounting bracket (41). The top of each mounting bracket (41) and the spring box (42) are connected and fixedly connected in the convex groove (22). The bottom of the spring box (42) is flush with the bottom of the convex groove (22). The left and right sides of the fixing plate (43) are fixedly connected to one side of each mounting bracket (41). The base (3) has a limiting groove (31) and the bottom of each mounting bracket (41) and the fixing plate (43) are connected in the limiting groove (31). Each mounting bracket (41) has a rectangular groove (46) on its front and rear surfaces. Each diagonal support (44) has a fixing block (45) hinged to one side. The upper surface of the base (3) has rectangular grooves (2) symmetrically opened on the left and right ends. Each rectangular groove (2) has a fixing block (48) installed in it. The other side of each diagonal support (44) is hinged to the upper surface of the fixing block (48). Each rectangular groove (46) has several through holes (47) on its left and right sides. The fixing block (45) is installed in the rectangular groove (46). The mounting plate (7) has an inner cavity 2 on all four sides of its left and right sides. There are four sets of pressing components (8) and they are all located in the inner cavity 2. Each set of pressing components (8) includes a cylinder (81), a moving plate (82), a connecting rod (84) and a pressure plate (85). The cylinder (81) and the moving plate (82) are both located in the inner cavity 2. The output end of the cylinder (81) is connected to one side of the moving plate (82). A sliding groove 2 is provided in the inner cavity 2. The moving plate (82) is slidably connected in the sliding groove 2. A spring 2 (83) is provided between the other side of the moving plate (82) and the left side of the sliding groove 2. The other side of the moving plate (82) is connected to the right side of the connecting rod (84). The left side of the connecting rod (84) is connected to the right side of the pressure plate (85). The bracket (2) has a sliding groove (21) on both sides. There are two sets of lifting components (6) and they are located in the sliding groove (21). Each set of lifting components (6) includes a servo motor (61), a coupling (62), a lead screw (63), an H-shaped slider (64) and a fixed seat (65). The servo motor (61) is located at the bottom of the sliding groove (21). The output end of the servo motor (61) is connected to one end of the coupling (62) by a bearing. The other end of the coupling (62) is connected to one end of the lead screw (63) by a bearing. The other end of the lead screw (63) is connected to the fixed seat (65) by a bearing. The H-shaped slider (64) is threaded onto the surface of the lead screw (63). One side of each H-shaped slider (64) is slidably connected to the inward side of the sliding groove (21).
2. The automatic target reporting device for light weapons firing according to claim 1, characterized in that: The mounting plate (7) has two sets of arc grooves on both sides. The H-shaped slider (64) is connected to the mounting plate (7) by a bearing in the middle. The H-shaped slider (64) has threaded holes (14) on both sides. The threaded holes (14) are located on both sides of the bearing connection between the H-shaped slider (64) and the mounting plate (7). The threaded holes (14) correspond to the arc grooves. The target (1) is located on the front surface of the mounting plate (7).
3. The automatic target reporting device for light weapons firing according to claim 2, characterized in that: The upper surface of the base (3) is provided with a bulletproof plate (11).
4. The automatic target reporting device for light weapons firing according to claim 3, characterized in that: Laser vibration meters (12) are symmetrically arranged at both ends of the right surface of the bulletproof plate (11).
5. The automatic target reporting device for light weapons firing according to claim 4, characterized in that: Electronic levels (13) are symmetrically arranged at the top of the mounting plate (7).
6. The automatic target reporting device for light weapons firing according to claim 5, characterized in that: A controller (9) is provided on the support plate (23), and the controller (9) is electrically connected to the pressure sensor (55), the servo motor (61) and the cylinder (81).
7. The automatic target reporting device for light weapons firing according to claim 6, characterized in that: The upper surface of the base (3) is provided with digital media (10), which is electrically connected to the pressure sensor (55).
8. The automatic target reporting device for light weapons firing according to claim 7, characterized in that: The pressure sensor (55) is arc-shaped.
Citation Information
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