Competitive slingshot rising and falling target
By using an independent support base and buffer structure design, the problem of poor stability of traditional inverted targets under high-intensity impact is solved, realizing independent stability and improved safety of the target components, ensuring the accuracy of competitive scoring and the durability of the structure.
Patent Information
- Application Number
- CN202520404042.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-10
AI Technical Summary
Traditional knockdown targets are prone to tipping over under high-intensity impacts due to mechanical resonance or shaft torsion, affecting the accuracy of competitive scoring. Furthermore, the existing design has poor center of gravity stability and is difficult to adapt to the high-intensity impacts of slingshot shooting.
The target assembly is mounted on an independent support base, combined with bulletproof cloth, protective rubber plate and anti-collision beam. The design incorporates a sensitivity adjustment rod and servo motor to control the target's erection and fall. The stability and cushioning effect are improved through bearing and bolt connections.
Independent stability of the target components was achieved, buffering the impact of projectiles, improving safety and durability, and ensuring the accuracy of competitive scoring and structural stability.
Smart Images

Figure CN223856304U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of target machine especially relates to a competitive bow and arrow shooting up-down target. BACKGROUND
[0002] The conventional up-down target usually adopts the design of multiple target plates in series, and multiple target plates are usually installed on the same shaft to realize the up-down function. However, this structure has the following disadvantages: when a certain target plate is knocked down, the shaft body will produce a coupled vibration due to the force impact, causing other target plates that are not hit to be knocked down due to mechanical resonance or shaft body torsion, which seriously interferes with the accuracy of the competition scoring. Especially in the scene of high-intensity impact, the problem of false triggering is particularly prominent, and it cannot meet the requirements of target independence and stability for competitive events. For example, competitive bow and arrow shooting usually uses steel ball projectiles, and the impact force is large. Moreover, the existing up-down target usually adopts a lightweight or simple frame design, and its bulletproof structure is thin and has poor stability, which is difficult to adapt to the high-intensity impact of bow and arrow shooting. SUMMARY
[0003] In view of the problem of unstable structure in the prior art, the utility model aims to provide a competitive bow and arrow shooting up-down target.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the technical scheme that:
[0005] A competitive bow and arrow shooting up-down target, wherein it comprises a frame 1, a protective rubber plate 2, a bulletproof cloth 3, a sensitivity adjusting rod 4, a support seat 5, a target plate assembly 6, a starting rod 7 and a rudder machine 8, the protective rubber plate 2 and the bulletproof cloth 3 are both installed on the front side of the frame 1, and the bulletproof cloth 3 is located in front of the protective rubber plate 2;The frame 1 comprises a bottom plate 101 and two side plates 102;A plurality of support seats 5 are installed on the bottom plate 101 and are distributed along the left-right direction of the bottom plate 101;Each support seat 5 is rotatably connected with a target plate assembly 6;The two ends of the starting rod 7 are rotatably connected with the two side plates 102 respectively, and are used to drive multiple target plate assemblies 6 to stand up;The rudder machine 8 is installed on the bottom plate 101 and is connected with a power supply, and is used to control the rotation of the starting rod 7;The two ends of the sensitivity adjusting rod 4 are installed on the two side plates 102 respectively, and are used to support the target plate assembly 6 in the standing-up state.
[0006] Further, the frame 1 further comprises a cross beam 103, and the two ends of the cross beam 103 are connected with the two side plates 102 respectively;The protective rubber plate 2 is connected with the front side of the cross beam 103.
[0007] Further, the frame 1 further comprises a limiting plate 104, and the limiting plate 104 is connected with the rear side of the bottom plate 101;The limiting plate 104 is used to support the target plate assembly 6 in the knocked-down state.
[0008] Further, the frame 1 further comprises an adjusting seat 105, one adjusting seat 105 is connected to each of the side plates 102; the two adjusting seats 105 are symmetrically arranged left and right; the adjusting seat 105 is provided with a strip-shaped through hole 1051, and the two ends of the sensitivity adjusting rod 4 are connected with the two adjusting seats 105 through bolts, and the bolts pass through the strip-shaped through hole 1051.
[0009] Further, the frame 1 further comprises a battery box 106, and the battery box 106 is connected to the outer side of the left or right side plate 102.
[0010] Further, the supporting seat 5 is provided with a bearing hole 501, an adjusting slot 502 and a screw hole 503, the bearing hole 501 and the adjusting slot 502 penetrate through the left and right sides of the supporting seat 5; the adjusting slot 502 is located above the bearing hole 501 and communicates with the bearing hole 501; the screw hole 503 penetrates through the front and back sides of the supporting seat 5 and communicates with the adjusting slot 502; the screw hole 503 is provided with a screw for adjusting the size of the bearing hole 501.
[0011] Further, the target plate assembly 6 comprises a shaft 601, a bracket 602, a target plate rod 603, a target plate 604 and a fixing plate 605, the shaft 601 is connected to the lower end of the bracket 602; the shaft 601 is provided with a bearing, and the bearing is arranged in the bearing hole 501; the target plate 604 is connected to the top end of the target plate rod 603 in an integrated manner; the target plate rod 603 is arranged between the bracket 602 and the fixing plate 605 through bolts.
[0012] Further, at least one bullet leakage through hole 1011 is formed in the bottom plate 101.
[0013] Further, the anti-collision beam 9 is further arranged, and the two ends of the anti-collision beam 9 are connected with the two side plates 102 respectively; the anti-collision beam 9 is located between the protective rubber plate 2 and the sensitivity adjusting rod 4; the anti-collision beam 9 is in a cylindrical structure, and the top end of the anti-collision beam 9 is higher than the top end of the sensitivity adjusting rod 4.
[0014] Further, the track 10, the switch 11 and the line box 12 are further arranged, the track 10 is arranged at the rear end of the bottom plate 101; a plurality of the switches 11 are arranged in the track 10, and one of the target plate assemblies 6 controls one of the switches 11; the rudder 8 and the plurality of switches 11 are electrically connected with the line box 12, and the line box 12 is electrically connected with the power supply.
[0015] The utility model discloses a positive effect that is compared with the prior art because of adopting the above technology:
[0016] (1) The utility model discloses a plurality of support seat is installed on the bottom plate, and each support seat is rotatably connected with a target board assembly through a bearing. Different from the structure that a plurality of target boards are connected in series through an axle in the traditional up-down target, each target board assembly in the utility model is independently installed on the respective support seat. This design makes that when one target board assembly is impacted, the stability of other target board assemblies is not affected.
[0017] (2) The utility model discloses setting up bulletproof cloth, bulletproof rubber plate and anti -collision beam, and these structures can effectively buffer the high -intensity impact produced when shooting with a bow and arrow, prevent the rebound of the bullet, and further improve the security and durability, and, still, the stability of overall structure is improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a whole structure schematic diagram of the utility model discloses a kind of competitive bow and arrow up-down target.
[0019] Figure 2 It is a partial structure schematic diagram of the utility model discloses a kind of competitive bow and arrow up-down target.
[0020] Figure 3 It is a sectional view of the utility model discloses a kind of competitive bow and arrow up-down target.
[0021] Figure 4 It is a front side view of the utility model discloses a kind of competitive bow and arrow up-down target.
[0022] Figure 5 It is a plan view of the utility model discloses a kind of competitive bow and arrow up-down target.
[0023] In the drawing, 1, frame;101, bottom plate;1011, bullet leakage through-hole;102, side plate;103, crossbeam;104, limiting plate;105, adjusting seat;1051, strip-shaped through-hole;106, battery box;2, protective rubber plate;3, bulletproof cloth;4, sensitivity adjusting rod;5, support seat;501, bearing hole;502, adjusting gap;503, screw hole;6, target board assembly;601, axle;602, support;603, target board rod;604, target board;605, fixed plate;7, starting rod;8, rudder machine;9, anti-collision beam;10, track;11, switch;12, line box. DETAILED DESCRIPTION
[0024] The utility model will be further described in connection with the drawing and specific embodiment, but not as the limitation of the utility model.
[0025] Please refer to Figures 1 to 5As shown, a competitive archery target is shown, which comprises a frame 1, a protective rubber plate 2, a bulletproof cloth 3, a sensitivity adjusting rod 4, a support seat 5, a target board assembly 6, a starting rod 7 and a rudder 8. The protective rubber plate 2 and the bulletproof cloth 3 are both installed on the front side of the frame 1, and the bulletproof cloth 3 is located in front of the protective rubber plate 2. The frame 1 comprises a bottom plate 101 and two side plates 102, and the two side plates 102 are respectively connected with the left and right ends of the frame 1. A plurality of support seats 5 are installed on the bottom plate 101 and are distributed along the left and right directions of the bottom plate 101. Each support seat 5 is rotatably connected with a target board assembly 6. The two ends of the starting rod 7 are rotatably connected with the two side plates 102, and the starting rod 7 is used to drive the plurality of target board assemblies 6 to stand up. The rudder 8 is installed on the bottom plate 101 and connected with a power supply, and is used to control the rotation of the starting rod 7. The two ends of the sensitivity adjusting rod 4 are respectively installed on the two side plates 102, and are used to support the target board assembly 6 in the standing-up state.
[0026] Further, in a preferred embodiment, the rudder 8 comprises a rotatable pushing rod, and the rotation angle of the pushing rod is 90°. The axis of rotation of the pushing rod coincides with the axis of rotation of the starting rod 7. A left-right through limiting groove is formed on the pushing rod, and the starting rod 7 transversely passes through the limiting groove. When the rudder 8 is started, the pushing rod rotates from the horizontal state to the vertical state, thereby driving the starting rod 7 to the vertical state, and further driving the fallen target board assembly 6 to be pushed and stood up. Subsequently, the pushing rod is automatically reset to the horizontal state, thereby driving the starting rod 7 to the horizontal state.
[0027] Further, in a preferred embodiment, the bottom plate 101 and the two side plates 102 are both made of a 4mm-thick steel plate.
[0028] Further, in a preferred embodiment, a mounting rope is further included, and the two ends of the mounting rope are respectively connected with the two side plates 102. Mounting through holes are arranged on the two side plates 102, and the mounting rope is connected with the side plates 102 through the mounting through holes. The mounting rope is used to connect the bulletproof cloth 3.
[0029] Further, in a preferred embodiment, the bulletproof cloth 3 is in a grid shape and is made of a fiber material. The bulletproof cloth 3 can absorb the kinetic energy of the bullet, on the one hand to protect the structure behind it, and on the other hand to protect the bullet. At the same time, it can also prevent the bullet from splashing and protect the safety of personnel and facilities. Preferably, at least two layers of bulletproof cloth 3 are arranged on the front side of the frame 1 to enhance the bulletproof effect.
[0030] Further, in a preferred embodiment, the protective rubber plate 2 is pressed from rubber and nylon cloth, and the substructure has certain elasticity and better toughness. The elastic function can further buffer the bullet hitting the bulletproof cloth 3, and the better toughness can improve the wear resistance of the protective rubber plate 2, so that it is solid and durable. In addition, the protective rubber plate 2 can block the bullet and prevent the bullet from hitting the structure inside the frame 1.
[0031] Further, in a preferred embodiment, the frame 1 further comprises a cross beam 103, both ends of the cross beam 103 are connected with the two side plates 102 respectively; the protective rubber plate 2 is connected with the front side of the cross beam 103; the cross beam 103 is preferably a square steel pipe, both ends of the cross beam 103 are welded with the two side plates 102 respectively; the protective rubber plate 2 is installed on the cross beam 103 through a plurality of bolts; the cross beam 103 can improve the stability of the overall structure.
[0032] Further, in a preferred embodiment, the frame 1 further comprises a limiting plate 104, the limiting plate 104 is connected with the rear side of the bottom plate 101; the limiting plate 104 is used to support the target plate assembly 6 in the knocked down state, so that it remains parallel; the limiting plate 104 comprises a vertical plate and a horizontal plate, the bottom side of the vertical plate is connected with the bottom plate 101 integrally, and the top side of the vertical plate is connected with the horizontal plate integrally; the horizontal plate is parallel to the bottom plate 101, and the knocked down target plate assembly 6 is abutted on the horizontal plate.
[0033] Further, in a preferred embodiment, the frame 1 further comprises an adjusting seat 105, one adjusting seat 105 is connected to each side plate 102; the two adjusting seats 105 are symmetrically arranged left and right; the adjusting seat 105 is provided with a strip-shaped through hole 1051, and the two ends of the sensitivity adjusting rod 4 are connected to the two adjusting seats 105 through bolts, and the bolts pass through the strip-shaped through hole 1051; each adjusting seat 105 is connected to the inner side of a side plate 102; the two adjusting seats 105 are parallel to the bottom plate 101; the bottom of the left end and the bottom of the right end of the sensitivity adjusting rod 4 abut against the two adjusting seats 105, respectively. When it is necessary to adjust the front and back positions of the sensitivity adjusting rod 4, the bolts are first loosened, then the sensitivity adjusting rod 4 is moved to the appropriate position, and finally the bolts are tightened. Since the vertical target board assembly 6 is overlapped on the sensitivity adjusting rod 4, when the position of the sensitivity adjusting rod 4 is changed, the angle of the target board assembly 6 with the vertical direction can be adjusted. When the position of the sensitivity adjusting rod 4 is more forward, the angle of the target board assembly 6 is larger, and the center of gravity of the target board assembly 6 is more forward, so a greater impact force is required to knock it backward, and therefore the larger the angle of the target board assembly 6, the lower the sensitivity; when the position of the sensitivity adjusting rod 4 is more backward, the angle of the target board assembly 6 is smaller, and the center of gravity of the target board assembly 6 is more backward, so it is easier to knock it backward, and therefore the smaller the angle of the target board assembly 6, the higher the sensitivity. The purpose of this design is to adapt to different shooting scenes, for example, when using steel balls for shooting, the impact force is larger, and the sensitivity can be adjusted to be lower, and when using plastic bullets for shooting, the sensitivity can be adjusted to be higher, so as to facilitate knocking down the target board assembly 6.
[0034] Further, in a preferred embodiment, the frame 1 further comprises a battery box 106, the battery box 106 is connected to the outer side of the left or right side plate 102; the power source for powering the rudder 8 is preferably a battery, and the battery box 106 is used to place the battery; the side plate 102 connected with the battery box 106 is provided with a wire passing hole for passing the wire connecting the rudder 8 and the battery. Using a battery can facilitate the movement of the whole device to adapt to different site requirements, such as outdoor sites.
[0035] Further, in a preferred embodiment, the support seat 5 is provided with a bearing hole 501, an adjusting slot 502 and a screw hole 503, the bearing hole 501 and the adjusting slot 502 both penetrate through the left and right sides of the support seat 5; the adjusting slot 502 is located above the bearing hole 501 and communicates with each other; the screw hole 503 penetrates through the front and back sides of the support seat 5 and communicates with the adjusting slot 502; a screw is installed in the screw hole 503 for adjusting the size of the bearing hole 501.
[0036] Further, in a preferred embodiment, the target board assembly 6 comprises a shaft 601, a bracket 602, a target board rod 603, a target board 604 and a fixed plate 605, the shaft 601 is connected with the lower end of the bracket 602; the shaft 601 is provided with a bearing, the bearing is installed in the bearing hole 501, the target board assembly 6 is installed on the support seat 5 through the bearing, so that the rotation of the target board assembly 6 is more stable; the bearing is detachably installed in the bearing hole 501, the screw is located above the bearing, the size of the bearing hole 501 is adjusted by screwing the screw, and then the bearing is conveniently disassembled or fastened.
[0037] Further, in a preferred embodiment, the bearing can be replaced by a rotary connection device, the rotary connection device comprises an inner ring, an outer ring, a retainer and a plurality of rolling bodies, the inner ring and the outer ring are coaxially arranged; an annular raceway is arranged between the inner ring and the outer ring, the plurality of rolling bodies are distributed in the circumferential direction along the raceway; the retainer is used for fixing the circumferential distance of the rolling bodies; the outer ring and the inner ring rotate through the plurality of rolling bodies; the inner ring is installed on the shaft 601, and the outer ring is fastened with the inner wall of the bearing hole 501; the outer ring has an elastic deformation amount; the size of the bearing hole 501 can be adjusted by screwing the screw, so that the pressure exerted by the hole wall of the bearing hole 501 on the outer ring can be adjusted, the distance between the inner ring and the outer ring can be adjusted through the deformation of the outer ring, so that the friction force of the rolling bodies changes, and then the rotation flexibility of the target board assembly 6 can be adjusted.
[0038] Further, in a preferred embodiment, the target board 604 is connected with the top end of the target board rod 603 as a whole; the target board rod 603 is installed between the bracket 602 and the fixed plate 605 through bolts, so that the target board rod 603 and the target board 604 can be conveniently replaced.
[0039] Further, in a preferred embodiment, the bracket 602 and the fixed plate 605 are both strip-shaped steel plate structures; when the target board assembly 6 is knocked down, the bracket 602 will hit the limiting plate 104; due to the high strength of the steel plate, the deformation of the bracket 602 and the fixed plate 605 can be prevented.
[0040] Further, in a preferred embodiment, at least one bullet leakage hole 1011 is formed in the bottom plate 101; the bullet leakage hole 1011 is arranged, so that the bullets scattered in the frame 1 after being fired can flow out; a storage box can be placed below the bottom plate 101, for further collection.
[0041] Further, in a preferred embodiment, a plurality of mounting holes are arranged on the bottom plate 101; in actual application, the utility model can be integrally installed on a support frame, and is fixed by using bolts passing through the mounting holes.
[0042] Further, in a preferred embodiment, the anti-collision beam 9 is further provided, and two ends of the anti-collision beam 9 are connected with the two side plates 102 respectively; the anti-collision beam 9 is located between the protective rubber plate 2 and the sensitivity adjusting rod 4; the anti-collision beam 9 is in a cylindrical structure, and the top end of the anti-collision beam 9 is higher than the top end of the sensitivity adjusting rod 4. The anti-collision beam 9 can prevent the bullet from hitting the sensitivity adjusting rod 4, and avoid the deformation or position movement of the sensitivity adjusting rod 4 caused by the impact, so as to affect the sensitivity of the target plate assembly 6. Moreover, the target plate assembly 6 is arranged on the sensitivity adjusting rod 4, and if the sensitivity adjusting rod 4 is impacted, the stability of the target plate assembly 6 will be affected.
[0043] Further, in a preferred embodiment, the anti-collision beam 9 comprises a steel beam and a PVC pipe, and two ends of the steel beam are welded with the two side plates 102 respectively, and the PVC pipe is sleeved on the outer surface of the steel beam. When the bullet hits the anti-collision beam 9, the PVC pipe can play a buffering role due to its good toughness, so as to avoid the damage of the bullet.
[0044] Further, in a preferred embodiment, the track 10, the switch 11 and the circuit box 12 are further provided, the track 10 is installed at the rear end of the bottom plate 101; a plurality of switches 11 are installed in the track 10, and each target plate assembly 6 controls one switch 11; the steering engine 8 and the plurality of switches 11 are electrically connected with the circuit box 12, and the circuit box 12 is electrically connected with the power supply; the track 10 is located between the limiting plate 104 and the plurality of support seats 5; the switch 11 is preferably a micro switch. The rear of one vertical target plate assembly 6 corresponds to one switch 11, when one target plate assembly 6 is knocked down, the switch 11 corresponding to the target plate assembly 6 can be pressed to turn on the switch 11, when all the target plate assemblies 6 are knocked down, all the switches 11 are turned on to form a closed circuit, so as to trigger the steering engine 8 to start, and the steering engine 8 drives the starting rod 7 to rotate, and then pushes the target plate assembly 6 to stand up. Therefore, when all the target plate assemblies 6 are knocked down, they can be automatically stood up, which is convenient for continuous use. When the target plate assembly 6 is vertically upward, the pressure applied to the switch 11 is removed, the switch 11 is reset, and the circuit is disconnected.
[0045] Further, in a preferred embodiment, the wireless remote controller is further provided, and the wireless signal receiver is arranged in the steering engine 8, which is used to receive the signal instruction sent by the wireless remote controller, so as to control the steering engine 8 to start, and then drive the starting rod 7 to rotate, and push the target plate assembly 6 which has been knocked down. Therefore, it is convenient to vertically arrange part of the target plate assemblies 6 which are knocked down according to actual needs by operating the wireless remote controller.
[0046] Working principle:
[0047] The bottom plate 101 is provided with a plurality of support seats 5, and each support seat 5 is rotatably connected with a target plate assembly 6 through a bearing. When the target plate assembly 6 is erected, the front side of the target plate assembly 6 is arranged on the sensitivity adjusting rod 4, and when the target plate assembly 6 is knocked down, the rear side of the target plate assembly 6 is arranged on the limiting plate 104. When all the target plate assemblies 6 are knocked down, all the switches 11 are turned on to form a closed circuit, so that the steering engine 8 drives the starting rod 7 to rotate, and then the knocked down target plate assembly 6 is pushed and erected. In addition, the steering engine 8 can also be controlled by a wireless remote controller.
[0048] In the utility model, each target plate assembly 6 is independently installed on the respective support seat 5. This design makes that when a certain target plate assembly 6 is hit, the stability of other target plate assemblies 6 is not affected. Meanwhile, the utility model is provided with the bulletproof cloth 3, the bulletproof rubber plate 2 and the anti-collision beam 9, and these structures can effectively buffer the high-strength impact generated when the bow is shot, prevent the bullet from rebounding, not only improve the safety and durability, but also enhance the stability of the overall structure.
[0049] The above is only the preferred embodiment of the utility model, and does not limit the implementation mode and protection scope of the utility model, and for those skilled in the art, it should be realized that the equivalent replacement and obvious changes obtained by the application of the utility model specification and drawing contents should be contained in the protection scope of the utility model.
Claims
1. A slingshot for launching a falling target, characterized in that: The utility model relates to a target shooting device, including frame (1), protective rubber plate (2), bulletproof cloth (3), sensitivity adjusting rod (4), support seat (5), target board assembly (6), starting rod (7) and rudder (8), protective rubber plate (2) and bulletproof cloth (3) are all installed in the front side of frame (1), and bulletproof cloth (3) is located in the front of protective rubber plate (2), frame (1) includes a bottom plate (101) and two side plates (102), a plurality of support seat (5) is installed on the bottom plate (101), and is along the left and right direction distribution of bottom plate (101), every support seat (5) is rotatably connected with a target board assembly (6), and the both ends of starting rod (7) are rotatably connected with two side plates (102) respectively, for driving multiple target board assembly (6) to stand up, rudder (8) is installed on the bottom plate (101) and is connected with power supply, for controlling the rotation of starting rod (7), and the both ends of sensitivity adjusting rod (4) are installed on two side plates (102) respectively, for supporting target board assembly (6) in the vertical state.
2. The sporting pop-up target of claim 1 wherein: The frame (1) further includes a crossbeam (103), and the both ends of the crossbeam (103) are connected with the two side plates (102) respectively; the protective rubber plate (2) is connected with the front side of the crossbeam (103).
3. The sporting pop-up target of claim 1 wherein: The frame (1) further includes a limiting plate (104), and the limiting plate (104) is connected with the rear side of the bottom plate (101); the limiting plate (104) is used for supporting the target board assembly (6) in the knocked down state.
4. The sporting pop-up target of claim 1 wherein: The frame (1) further includes an adjusting seat (105), and one adjusting seat (105) is connected with each side plate (102); the two adjusting seats (105) are symmetrically arranged left and right; a strip-shaped through hole (1051) is arranged on the adjusting seat (105), and the both ends of the sensitivity adjusting rod (4) are connected with the two adjusting seats (105) through bolts respectively, and the bolts pass through the strip-shaped through hole (1051).
5. The sporting reflex bow target of claim 1 wherein: The frame (1) further includes a battery box (106), and the battery box (106) is connected with the outer side of the left or right side plate (102).
6. The sporting pop-up target of claim 1 wherein: The support seat (5) is provided with a bearing hole (501), an adjusting slot (502) and a screw hole (503), the bearing hole (501) and the adjusting slot (502) all penetrate through the left and right sides of the support seat (5); the adjusting slot (502) is located above the bearing hole (501) and communicates with each other; the screw hole (503) penetrates through the front and back sides of the support seat (5) and communicates with the adjusting slot (502); a screw is arranged in the screw hole (503) and used for adjusting the size of the bearing hole (501).
7. The sporting pop-up target of claim 6 wherein: The target board assembly (6) comprises a shaft (601), a bracket (602), a target board rod (603), a target board (604) and a fixed plate (605), the lower end of the shaft (601) is connected with the bracket (602); a bearing is installed on the shaft (601), the bearing is installed in the bearing hole (501); the target board (604) is connected with the top end of the target board rod (603) as a whole; the target board rod (603) is installed between the bracket (602) and the fixed plate (605) through bolts.
8. The sporting reflex bow target of claim 1 wherein: At least one bullet leakage through hole (1011) is formed in the bottom plate (101).
9. The sporting reflex bow target of claim 1 wherein: The anti-collision beam (9) is connected with the two side plates (102) at two ends respectively; the anti-collision beam (9) is located between the protective rubber plate (2) and the sensitivity adjusting rod (4); the anti-collision beam (9) is a cylindrical structure, and the top end of the anti-collision beam (9) is higher than the top end of the sensitivity adjusting rod (4).
10. The sporting pop-up target of claim 1 wherein: The track (10), the switch (11) and the line box (12) are further included, the track (10) is installed at the rear end of the bottom plate (101); a plurality of the switches (11) are installed in the track (10), each of the target board assemblies (6) controls one of the switches (11); the steering engine (8) and the plurality of switches (11) are electrically connected with the line box (12), and the line box (12) is electrically connected with the power supply.