Non-contact type electromagnetic needle puncturing balloon or glass bottle targeting device and method thereof
The non-contact electromagnetic needle puncture device utilizes a clamping mechanism consisting of magnets and guide rods, combined with infrared signal transmission, to automatically clamp and release balloons or glass bottles, solving the problem of balloon fragment residue and improving customer experience and device convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-26
- Publication Date
- 2026-04-03
AI Technical Summary
Existing target shooting devices often leave balloon fragments on the clamping mechanism after popping the balloon, requiring manual cleaning by operators and affecting customer experience.
The non-contact electromagnetic needle puncture method utilizes a clamping mechanism consisting of a magnet, a guide rod, and a spring. Through signal transmission from an infrared transmitter and receiver, combined with the pushing action of the magnet, the balloon or glass bottle is automatically clamped and released. A cylinder then pushes the puncture needle to burst the bottle.
It enables automatic clamping and releasing of balloons or glass bottles, reducing the cleaning time for operators, improving the customer experience, and the device can be quickly disassembled and assembled, making it aesthetically pleasing and easy to store.
Smart Images

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Abstract
Description
Technical Field
[0001] This invention belongs to the field of target shooting equipment technology, specifically relating to a non-contact electromagnetic needle device and method for puncturing balloons or glass bottles. Background Technology
[0002] Currently, target shooting games at street stalls typically involve using guns with lead bullets to pop balloons. However, with increasing awareness of safety and requirements for regulated street stall operations, guns with lead bullets pose a certain degree of danger. Since the game itself is for leisure and entertainment, the direction for improving existing target shooting equipment is to ensure safety while still allowing players to experience the fun of shooting balloons.
[0003] Currently, when the target shooting device is in actual use, after the balloon is popped, fragments of the balloon remain on the clamping mechanism that holds the balloon in place. This requires manual cleaning by the operator, which is very troublesome. For the operator, the time spent on replacement will delay the customer's experience. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the existing defects and provide a non-contact electromagnetic needle puncture device and method for puncturing balloons or glass bottles. This solves the problem mentioned in the background art that, in actual use, after the balloon is punctured, fragments of the balloon remain on the clamping mechanism that holds the balloon, requiring manual cleaning by the operator, which is very troublesome and delays the customer experience.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles, comprising an ABS injection-molded plate, wherein a fixing ring is symmetrically fixedly connected to one side of the back of the ABS injection-molded plate, an aluminum alloy bracket is slidably connected inside the fixing ring, a base is fixedly connected to the bottom of the aluminum alloy bracket, a display board is fixedly connected to the upper end of one side of the ABS injection-molded plate, a target-shooting main board is provided at the upper end of one side of the ABS injection-molded plate, ear plates are symmetrically fixedly connected to both sides of the target-shooting main board, a fixing mechanism is provided on one side of the ear plates, and an LED light, an infrared emitter, and an infrared signal receiver are arranged sequentially from top to bottom on one side of the target-shooting main board. A mounting plate is fixedly connected to the top of the plate. A cylinder is fixedly connected to one side of the mounting plate. An air pipe is fixedly connected to one end of the cylinder. A piercing needle is fixedly connected to the output end of the cylinder. Guide rods are symmetrically fixedly connected to one side of the top of the mounting plate. A movable plate is slidably connected to the outside of the guide rods. A protective frame is fixedly connected to the middle of one side of the movable plate. Support blocks are provided at both ends of the protective frame. Guide rods are slidably connected inside the support blocks. A limiting slide plate is fixedly connected to one end of the guide rod. A first magnet is fixedly connected to one end of the limiting slide plate. A second magnet is provided on one side of the second fixing component. A clamping block is fixedly connected to the other end of the guide rod. A spring is fixedly connected between the support block and the limiting slide plate.
[0006] Preferably, the ABS injection molded plate has fixing holes and through holes inside, and there are several fixing holes and through holes.
[0007] Preferably, a plurality of fixing rings are provided, and the aluminum alloy bracket is fixedly connected to the fixing rings through a first fixing component.
[0008] Preferably, the aluminum alloy bracket and the base are both fixedly connected in a circular shape with reinforcing ribs, and a counterweight is fixedly connected to the lower end of the base.
[0009] Preferably, a display screen, a remote control signal receiver, and a response device are respectively provided on one side of the inside of the display panel, and a pairing device and an external signal receiving device are respectively provided on both sides of the upper part of the inside of the display panel.
[0010] Preferably, the fixing mechanism includes a handle, one end of which is fixedly connected to a positioning screw, and the outer end of the positioning screw is threadedly connected to a screw sleeve.
[0011] Preferably, the air tube is located inside the through hole, and the positioning screw is located inside the fixing hole.
[0012] Preferably, a limit ring is fixedly connected to the top of the guide rod, and the movable plate is fixedly connected to the guide rod through a second fixing component.
[0013] Preferably, the clamping block is slidably connected inside the protective frame, and one end of the clamping block is fixedly connected to an anti-slip pad.
[0014] A method for a non-contact electromagnetic needle to puncture balloons or glass bottles includes the following steps:
[0015] Step 1: First, place the shooting device in the appropriate scenario. Then, place the aluminum alloy bracket and base on the ground. The counterweights and reinforcing ribs increase the stability of the shooting device. Slide the fixing ring on one side of the ABS injection molded plate to the outside of the aluminum alloy bracket. Then, fix the fixing ring and the aluminum alloy bracket using the first fixing component. Next, align several main shooting plates with the fixing holes and through holes inside the ABS injection molded plate. Position the main shooting plates and ear plates on the surface of the ABS injection molded plate by pushing the handle and positioning screw. Then, position and install them by rotating the threaded sleeve at one end of the positioning screw. This allows the shooting device to be quickly assembled and disassembled. The aluminum alloy bracket is also detachable, making it aesthetically pleasing and easy to store.
[0016] Step Two: Place the head of the balloon or glass bottle inside the protective frame set on one side of the moving plate. Then, the infrared transmitter and infrared signal receiver set on the target motherboard transmit signals through the reflection of the balloon or glass bottle. In conjunction with the second magnets set at both ends of the moving plate, the first magnet and guide rod can be pushed. Then, the movement effect of the first magnet and guide rod being pushed can drive the clamping block set at one end of the guide rod to move the head of the balloon or glass bottle to achieve the clamping and fixing effect of the balloon or glass bottle. The target gun can then shoot at the balloon or glass bottle on the target device. The signal transmitter on the target gun transmits the signal to the remote control signal receiver, pairing device and external signal receiver set on the display board. The control cylinder pushes the rod to puncture the target and burst the balloon or glass bottle.
[0017] Step 3: When the balloon or glass bottle bursts, the infrared transmitter and receiver lose the reflective effect of the balloon or glass bottle, and the signal transmission will be interrupted. This will cause the spring between the support block and the limiting slide plate to reset the clamping block, thereby automatically releasing the balloon or glass bottle fragments for timely replacement.
[0018] Compared with the prior art, the present invention provides a non-contact electromagnetic needle puncture device and method for targeting balloons or glass bottles, and a feeding device and method based on monitoring the sow's feed and water intake, which has the following beneficial effects:
[0019] 1. This invention utilizes a clamping mechanism composed of a second magnet, a first magnet, a guide rod, a spring, and a clamping block. The infrared transmitter and receiver on the target board transmit signals based on the reflection from the balloon or glass bottle. This, combined with the second magnets at both ends of the moving plate, pushes the first magnet and guide rod. The movement of the first magnet and guide rod then moves the clamping block at one end of the guide rod, securing the balloon or glass bottle. The target gun can then fire at the balloon or glass bottle. The signal transmitter on the target gun transmits the signal to a remote control receiver, pairing device, and external signal receiver on the display board. This allows the control cylinder to push the rod to puncture and explode the balloon or glass bottle.
[0020] 2. The present invention, through the setting of a second magnet and a spring, when the balloon or glass bottle is burst, the infrared emitting tube and infrared signal receiver lose the reflective effect of the balloon or glass bottle, the signal transmission will be interrupted, so that the spring set between the support block and the limiting slide can reset the clamping block, thereby achieving the effect of automatically releasing the balloon or glass bottle fragments, so as to facilitate the timely replacement of new balloons or glass bottles, thus bringing a better play experience;
[0021] 3. The present invention uses a fixed ring, an aluminum alloy bracket, and a positioning screw to slide the fixed ring on one side of the back of the ABS injection molded plate to the outside of the aluminum alloy bracket. Then, the fixed ring and the aluminum alloy bracket are fixed by the first fixing component. Next, several target main boards are respectively aligned with the fixing holes and through holes inside the ABS injection molded plate. The target main boards and ear plates are positioned on the surface of the ABS injection molded plate by pushing the handle and the positioning screw. Then, the screw sleeve connected to the outer end of the positioning screw is rotated to position and install them. This gives the target device the advantage of quick assembly and disassembly.
[0022] 4. The present invention allows for free adjustment of the height of balloons or glass bottles through the setting of guide rods and movable plates. Then, the height of the movable plate and guide rods is fixed by the second fixing component, which makes it easier for balloons or glass bottles to be punctured by the puncture needle, thereby further improving the customer experience. Attached Figure Description
[0023] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention, but do not constitute a limitation thereof. In the drawings:
[0024] Figure 1This is an isometric structural diagram of one side of a non-contact electromagnetic needle target puncturing balloons or glass bottles proposed in this invention.
[0025] Figure 2 This is an isometric structural diagram of the other side of a non-contact electromagnetic needle target puncturing balloons or glass bottles proposed in this invention.
[0026] Figure 3 This is a schematic diagram of the pairing device structure of a non-contact electromagnetic needle target puncturing balloons or glass bottles proposed in this invention.
[0027] Figure 4 This is an enlarged structural diagram of point A of a non-contact electromagnetic needle target device for puncturing balloons or glass bottles proposed in this invention.
[0028] Figure 5 This is a schematic diagram of the mainboard structure of a non-contact electromagnetic needle target piercing device for balloons or glass bottles proposed in this invention.
[0029] Figure 6 This is a schematic diagram of the cylinder structure of a non-contact electromagnetic needle target puncturing balloons or glass bottles proposed in this invention.
[0030] Figure 7 This is a schematic diagram of the guide rod structure of a non-contact electromagnetic needle target puncturing balloons or glass bottles proposed in this invention.
[0031] Figure 8 This is a schematic diagram of the magnet structure of a non-contact electromagnetic needle target device for puncturing balloons or glass bottles proposed in this invention.
[0032] In the diagram: 1. ABS injection molded plate; 2. Fixing hole; 3. Through-pipe hole; 4. Fixing ring; 5. Aluminum alloy bracket; 6. First fixing component; 7. Base; 8. Reinforcing rib; 9. Display board; 10. Display screen; 11. Remote control signal receiver; 12. Response device; 13. Pairing device; 14. External signal receiver; 15. Targeting mainboard; 16. Ear plate; 17. Handle; 18. Positioning screw tap; 19. Screw sleeve; 20. LED light; 21. Infrared emitting tube; 22. Infrared signal receiver; 23. Mounting plate; 24. Cylinder; 25. Air pipe; 26. Piercing needle; 27. Guide rod; 28. Moving plate; 29. Limiting ring; 30. Protective frame; 31. Support block; 32. Guide rod; 33. Limiting slide plate; 34. First magnet; 35. Second magnet; 36. Second fixing component; 37. Clamping block; 38. Spring. Detailed Implementation
[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0034] Please see Figure 1-8This invention provides a technical solution: a non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles, comprising an ABS injection-molded plate 1, with a fixing ring 4 symmetrically fixedly connected to one side of the back of the ABS injection-molded plate 1, an aluminum alloy bracket 5 slidably connected inside the fixing ring 4, a base 7 fixedly connected to the bottom of the aluminum alloy bracket 5, a display board 9 fixedly connected to the upper end of one side of the ABS injection-molded plate 1, a target-shooting main board 15 disposed at the upper end of one side of the ABS injection-molded plate 1, ear plates 16 symmetrically fixedly connected to both sides of the target-shooting main board 15, a fixing mechanism disposed on one side of the ear plates 16, and an LED light 20 and an infrared emitting tube 2 arranged sequentially from top to bottom on one side of the target-shooting main board 15. 1. An infrared signal receiver 22 is attached to the top of the target shooting mainboard 15. A mounting plate 23 is fixedly connected to one side of the mounting plate 23. An air pipe 25 is fixedly connected to one end of the air cylinder 24. A piercing needle 26 is fixedly connected to the output end of the air cylinder 24. The signal is transmitted through the signal transmitter on the target shooting gun to the remote control signal receiver 11, pairing device 13 and external signal receiver 14 set on the display board 9. The air cylinder 24 can be controlled to push the rod to pierce the needle 26 to burst the balloon or glass bottle. A guide rod 27 is symmetrically fixedly connected to one side of the top of the mounting plate 23. A moving plate 28 is slidably connected to the outside of the guide rod 27. A protective frame is fixedly connected to the middle of one side of the moving plate 28. The protective frame 30 has support blocks 31 at both ends. A guide rod 32 is slidably connected inside each support block 31. A limiting slide plate 33 is fixedly connected to one end of each guide rod 32, and a first magnet 34 is fixedly connected to one end of each limiting slide plate 33. Signal transmission occurs through the infrared emitter 21 and infrared signal receiver 22 on the target motherboard 15, reflecting off the balloon or glass bottle. This, combined with the second magnets 35 at both ends of the moving plate 28, pushes the first magnet 34 and the guide rod 32. The movement of the first magnet 34 and the guide rod 32 after being pushed causes the clamping block 37 at one end of the guide rod 32 to immediately move the head of the balloon or glass bottle. The movement achieves the effect of clamping and fixing the balloon or glass bottle. When the balloon or glass bottle is burst, the infrared emitting tube 21 and infrared signal receiver 22 lose the reflective effect of the balloon or glass bottle, and the signal transmission will be interrupted. This allows the spring 38 between the support block 31 and the limiting slide plate 33 to reset the clamping block 37, thereby achieving the effect of automatically releasing the balloon or glass bottle fragments. This facilitates timely replacement of new balloons or glass bottles, resulting in a better play experience. A second magnet 35 is provided on one side of the second fixing component 36, and the clamping block 37 is fixedly connected to the other end of the guide rod 32. The spring 38 is fixedly connected between the support block 31 and the limiting slide plate 33.
[0035] In this invention, preferably, the ABS injection molded plate 1 is provided with fixing holes 2 and through holes 3, and there are a plurality of fixing holes 2 and through holes 3.
[0036] In this invention, preferably, a plurality of fixing rings 4 are provided, and the aluminum alloy bracket 5 is fixedly connected to the fixing rings 4 through the first fixing component 6.
[0037] In this invention, preferably, the aluminum alloy bracket 5 and the base 7 are both fixedly connected in a circular shape with reinforcing ribs 8, and a counterweight is fixedly connected to the lower end inside the base 7.
[0038] In this invention, preferably, a display screen 10, a remote control signal receiver 11, and a response device 12 are respectively provided on one side inside the display panel 9, and a pairing device 13 and an external signal receiver 14 are respectively provided on both sides of the upper end inside the display panel 9.
[0039] In this invention, preferably, the fixing mechanism includes a handle 17, one end of which is fixedly connected to a positioning screw 18, and the outer end of the positioning screw 18 is threadedly connected to a screw sleeve 19. A fixing ring 4 provided on one side of the back of the ABS injection molded plate 1 is slidably connected to the outer side of the aluminum alloy bracket 5. Then, the fixing ring 4 and the aluminum alloy bracket 5 are fixed by the first fixing component 6. Next, several target main plates 15 are respectively positioned on the fixing holes 2 and through holes 3 provided inside the ABS injection molded plate 1. The target main plates 15 and ear plates 16 are positioned on the surface of the ABS injection molded plate 1 by pushing the handle 17 and the positioning screw 18. Then, the screw sleeve 19 threadedly connected to the outer end of the positioning screw 18 is rotated to position and install them, thus giving the target device the advantage of quick assembly and disassembly.
[0040] In this invention, preferably, the air tube 25 is located inside the through hole 3, and the positioning screw 18 is located inside the fixing hole 2.
[0041] In this invention, preferably, a limiting ring 29 is fixedly connected to the top of the guide rod 27, and the moving plate 28 is fixedly connected to the guide rod 27 through a second fixing component 36.
[0042] In this invention, preferably, the clamping block 37 is slidably connected inside the protective frame 30, and one end of the clamping block 37 is fixedly connected to an anti-slip pad.
[0043] A method for a non-contact electromagnetic needle to puncture balloons or glass bottles includes the following steps:
[0044] Step 1: First, place the shooting device in the appropriate scenario. Then, place the aluminum alloy bracket 5 and base 7 on the ground. The stability of the shooting device can be increased by the counterweight and reinforcing rib 8. The fixing ring 4 on one side of the back of the ABS injection molded plate 1 is slidably connected to the outside of the aluminum alloy bracket 5. Then, the fixing ring 4 and the aluminum alloy bracket 5 are fixed by the first fixing component 6. Next, several shooting main plates 15 are respectively aligned with the fixing holes 2 and through holes 3 inside the ABS injection molded plate 1. The shooting main plates 15 and ear plates 16 are positioned on the surface of the ABS injection molded plate 1 by pushing the handle 17 and the positioning screw 18. Then, the screw sleeve 19 connected to the outer end of the positioning screw 18 is rotated to position and install them. This makes the shooting device easy to assemble and disassemble. At the same time, the aluminum alloy bracket 5 is a detachable bracket, which has the advantages of being beautiful and easy to store.
[0045] Step 2: Place the head of the balloon or glass bottle inside the protective frame 30 on one side of the moving plate 28. Then, the infrared transmitter 21 and infrared signal receiver 22 on the target shooting main board 15 transmit signals through the reflection of the balloon or glass bottle. In conjunction with the second magnets 35 on both ends of the moving plate 28, the first magnet 34 and guide rod 32 can be pushed. Then, the movement effect of the first magnet 34 and guide rod 32 after being pushed can drive the clamping block 37 on one end of the guide rod 32 to move the head of the balloon or glass bottle to achieve the clamping and fixing effect of the balloon or glass bottle. The target gun can then shoot the balloon or glass bottle on the target shooting device. The signal transmitter on the target gun transmits the signal to the remote control signal receiver 11, pairing device 13 and external signal receiver 14 on the display board 9. The control cylinder 24 pushes the rod piercing needle 26 to burst the balloon or glass bottle.
[0046] Step 3: When the balloon or glass bottle bursts, the infrared transmitter 21 and infrared signal receiver 22 lose the reflective effect of the balloon or glass bottle, and the signal transmission will be interrupted. This will cause the spring 38 between the support block 31 and the limiting slide plate 33 to reset the clamping block 37, thereby achieving the effect of automatically releasing the balloon or glass bottle fragments, so as to facilitate timely replacement of new balloons or glass bottles.
[0047] The working principle and usage process of this invention are as follows: In use, the aluminum alloy bracket 5 and base 7 are placed on the ground. The stability of the target-shooting device is increased by the counterweight and reinforcing ribs 8. The fixing ring 4 on one side of the back of the ABS injection-molded plate 1 is slidably connected to the outside of the aluminum alloy bracket 5. Then, the fixing ring 4 and the aluminum alloy bracket 5 are fixed by the first fixing component 6. Next, several target-shooting main plates 15 are respectively aligned with the fixing holes 2 and through holes 3 inside the ABS injection-molded plate 1. The handle 17 and the positioning screw 18 are then pushed. The mainboard 15 and ear plate 16 are positioned on the surface of the ABS injection-molded plate 1. Then, they are positioned and installed by rotating the threaded sleeve 19 connected to the outer end of the positioning screw cone 18. This allows for quick assembly and disassembly of the target-shooting device. The aluminum alloy bracket 5 is detachable, offering aesthetic appeal and easy storage. The heads of balloons or glass bottles are placed inside the protective frame 30 on one side of the movable plate 28. The infrared emitter 21 and infrared signal receiver 22 on the mainboard 15 then... Signal transmission occurs through reflection. In conjunction with the second magnets 35 at both ends of the movable plate 28, the first magnet 34 and guide rod 32 are pushed. The movement of the first magnet 34 and guide rod 32 after being pushed causes the clamping block 37 at one end of the guide rod 32 to move the head of the balloon or glass bottle, thus clamping and fixing it. The target gun can then immediately fire at the balloon or glass bottle on the target device, transmitting a remote control signal to the display plate 9 via the signal transmitter on the target gun. The receiver 11, pairing device 13, and external signal receiving device 14 can push the rod piercing needle 26 to burst the balloon or glass bottle through the control cylinder 24. When the balloon or glass bottle is burst, the infrared emitting tube 21 and infrared signal receiver 22 lose the reflective effect of the balloon or glass bottle, and the signal transmission will be interrupted. This allows the spring 38 between the support block 31 and the limiting slide plate 33 to reset the clamping block 37, thereby achieving the effect of automatically releasing the balloon or glass bottle fragments, so as to facilitate timely replacement of new balloons or glass bottles.
[0048] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A non-contact electromagnetic needle puncture device for targeting balloons or glass bottles, comprising an ABS injection-molded plate (1), characterized in that: A fixing ring (4) is symmetrically fixed to one side of the back of the ABS injection molded plate (1). An aluminum alloy bracket (5) is slidably connected inside the fixing ring (4). A base (7) is fixedly connected to the bottom of the aluminum alloy bracket (5). A display board (9) is fixedly connected to the upper end of one side of the ABS injection molded plate (1). A target main board (15) is set at the upper end of one side of the ABS injection molded plate (1). Ear plates (16) are symmetrically fixed to both sides of the target main board (15). A fixing mechanism is set on one side of the ear plates (16). An LED light (20), an infrared emitting tube (21), and an infrared signal receiver (22) are arranged sequentially from top to bottom on one side of the target main board (15). A mounting plate (23) is fixedly connected to the top of the target main board (15). A cylinder (24) is fixedly connected to one side of the mounting plate (23). One end of the cylinder (24) is fixedly fixed. A puncture needle (26) is fixedly connected to the output end of the cylinder (24). A guide rod (27) is symmetrically fixedly connected to one side of the top of the mounting plate (23). A moving plate (28) is slidably connected to the outside of the guide rod (27). A protective frame (30) is fixedly connected to the middle of one side of the moving plate (28). Support blocks (31) are provided at both ends of the protective frame (30). A guide rod (32) is slidably connected inside the support block (31). A limiting slide plate (33) is fixedly connected to one end of the guide rod (32). A first magnet (34) is fixedly connected to one end of the limiting slide plate (33). A second magnet (35) is provided on one side of the second fixing component (36). A clamping block (37) is fixedly connected to the other end of the guide rod (32). A spring (38) is fixedly connected between the support block (31) and the limiting slide plate (33).
2. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The ABS injection molded plate (1) is provided with fixing holes (2) and through holes (3) inside, and there are several fixing holes (2) and through holes (3).
3. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The fixing ring (4) is provided in several parts, and the aluminum alloy bracket (5) is fixedly connected to the fixing ring (4) through the first fixing component (6).
4. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The aluminum alloy bracket (5) and the base (7) are both fixedly connected in a circular shape with reinforcing ribs (8), and a counterweight is fixedly connected to the lower end inside the base (7).
5. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The display panel (9) is equipped with a display screen (10), a remote control signal receiver (11) and a response device (12) on one side inside. The display panel (9) is equipped with a pairing device (13) and an external signal receiver (14) on both sides of the upper part inside.
6. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The fixing mechanism includes a handle (17), one end of which is fixedly connected to a positioning screw (18), and the outer end of the positioning screw (18) is threadedly connected to a screw sleeve (19).
7. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The air tube (25) is located inside the through hole (3), and the positioning screw (18) is located inside the fixing hole (2).
8. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The top of the guide rod (27) is fixedly connected to a limiting ring (29), and the movable plate (28) is fixedly connected to the guide rod (27) through a second fixing component (36).
9. The non-contact electromagnetic needle target-shooting device for puncturing balloons or glass bottles according to claim 1, characterized in that: The clamping block (37) is slidably connected inside the protective frame (30), and an anti-slip pad is fixedly connected to one end of the clamping block (37).
10. A method for a non-contact electromagnetic needle to puncture balloons or glass bottles according to any one of claims 1-9, characterized in that: Includes the following steps: Step 1: First, place the shooting device in the applicable scene, then place the aluminum alloy bracket (5) and base (7) on the ground. The stability of the shooting device can be increased by the counterweight and reinforcing rib (8). The fixing ring (4) set on one side of the back of the ABS injection molded plate (1) is slidably connected to the outside of the aluminum alloy bracket (5). Then, the fixing ring (4) and the aluminum alloy bracket (5) are fixed by the first fixing component (6). Next, several shooting main boards (15) are respectively positioned on the fixing holes (2) and through holes (3) set inside the ABS injection molded plate (1). The shooting main board (15) and ear plate (16) are positioned on the surface of the ABS injection molded plate (1) by pushing the handle (17) and positioning screw (18). Then, the screw sleeve (19) connected to the outer end of the positioning screw (18) is rotated to position and install it. This makes the shooting device easy to assemble and disassemble. At the same time, the aluminum alloy bracket (5) is a detachable bracket, which has the advantages of being beautiful and easy to store. Step 2: Place the head of the balloon or glass bottle inside the protective frame (30) set on one side of the moving plate (28). Then, through the infrared emitting tube (21) and infrared signal receiver (22) set on the target motherboard (15), the signal is transmitted under the reflection of the balloon or glass bottle. Instantly, with the second magnet (35) set at both ends of the moving plate (28), the first magnet (34) and guide rod (32) can be pushed. Then, the movement effect after the first magnet (34) and guide rod (32) are pushed is utilized. As a result, the clamping block (37) set at one end of the guide rod (32) can be moved to move the head of the balloon or glass bottle to achieve the clamping and fixing effect of the balloon or glass bottle. The target gun can be used to hit the balloon or glass bottle on the target device. The signal transmitter on the target gun is sent to the remote control signal receiver (11), pairing device (13) and external signal receiver (14) set on the display board (9). The control cylinder (24) can push the rod to puncture needle (26) to burst the balloon or glass bottle. Step 3: When the balloon or glass bottle is burst, the infrared emitting tube (21) and infrared signal receiver (22) lose the reflective effect of the balloon or glass bottle, and the signal transmission will be interrupted. This will cause the spring (38) between the support block (31) and the limiting slide plate (33) to reset the clamping block (37), thereby achieving the effect of automatically releasing the balloon or glass bottle fragments, so as to facilitate timely replacement of new balloons or glass bottles.