Balloon blasting device
By replacing helium with the lifting components and blasting components, the balloon is lifted off by using electromagnets to pierce the balloon, and the problem of high cost and inconvenience in use is solved, achieving a stable and low-cost balloon blasting effect.
Patent Information
- Application Number
- CN202421859386.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-02
AI Technical Summary
Helium is expensive and unstable, and helium balloons are prone to collision at the event site, resulting in inconvenience in use.
The lifting assembly and blasting assembly are adopted, and the balloon is lifted off instead of helium by using the drive drive coil and electromagnet to lift the balloon into the air, and the balloon is pierced by the electromagnet to achieve blasting, combining the limiting mechanism and the conductive slip ring to stabilize the movement of the wire.
Save helium costs, avoid inconvenience of helium balloons, improve the component to be stable at a constant speed, and multiple devices can be used in series, so that the balloon is fixed and stable without shaking.
Smart Images

Figure CN223077544U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of festival and entertainment supplies, and particularly to a balloon bursting device. Background Art
[0002] When holding some group activities, such as wedding celebrations, opening ceremonies, corporate team building and other activities, in order to enliven the on-site atmosphere, small balloons, red envelopes, petals or other items are often put into helium-filled balloons. A ribbon is tied to the bottom end of the helium balloon, and then the balloon rises to the roof under the action of helium, and then the balloon is detonated so that small balloons, red envelopes, petals or other items fall from a high place to create an atmosphere.
[0003] On the one hand, the price of helium is high and unstable. Large balloons filled with small balloons, red envelopes, petals or other items are usually about 36 inches. When the price of helium is at a high point, it often costs 100 yuan to blow up a large balloon. On the other hand, people walk around at the activity site, and inevitably touch the ribbon at the bottom end of the helium balloon, which will drive the floating of the helium balloon, which is very inconvenient. Utility Model Content
[0004] In order to effectively solve the problems of high cost and inconvenient use, this application provides a balloon bursting device.
[0005] The balloon bursting device provided by this application adopts the following technical solutions:
[0006] A balloon bursting device includes a lifting component and a bursting component, and the lifting component is used to lift or lower the bursting component;
[0007] The bursting component includes a needle-shaped part.
[0008] By adopting the above technical solutions, the lifting component and the bursting component are used to replace the effect of filling helium into the balloon to make the balloon rise in the prior art, saving costs.
[0009] Further, to better implement this application, the following structural settings are particularly adopted: The lifting component includes a driver, a power plug, a conductive slip ring, a wire, and a coil;
[0010] The coil is hollow and has a through hole in the radial position. One end of the coil is fixedly connected to the conductive slip ring. The power plug is electrically connected to the wire in the hollow part of the coil through the other end of the conductive slip ring, and the wire is led out from the through hole of the coil;
[0011] The bursting component further includes a frame and an electromagnet. The wire is led out from the through hole of the coil, connected to the frame, and then electrically connected to the electromagnet. The needle-shaped part is one end of the electromagnet.
[0012] By adopting the above technical solution, the lifting component is arranged at a high position, the drive is used to drive the coil to rotate, the wire is wound around the coil, the other end of the wire is connected to the blasting component, and the forward and reverse rotations of the coil adjust the extension or retraction of the wire to drive the lifting or lowering of the blasting component. The conductive slip ring is electrically connected to the power plug and the wire so that the wire can normally extend or retract on the coil. The electromagnet is arranged on the frame, and the wire is connected to the frame and drives the lifting or lowering of the frame. The electromagnet is an existing device, and one end of the electromagnet is processed into a needle-shaped part, and the control needle-shaped end extends to pierce the balloon.
[0013] Further, to better implement the present application, the following setting structure is particularly adopted: The drive is a synchronous motor or a stepper motor.
[0014] By adopting the above technical solution, the synchronous motor has a uniform speed, which can make the lifting component lift or lower the blasting component at a uniform speed; the stepper motor can be programmed to control the lifting and lowering of the blasting component according to a preset program.
[0015] Further, to better implement the present application, the following setting structure is particularly adopted: The power plug is a five-core aviation plug.
[0016] By adopting the above technical solution, the five-core aviation plug has five electrical connectors. Three of the five electrical connectors control the drive, one of the three electrical connectors controls the forward rotation of the drive, and one controls the reverse rotation. The remaining two of the five electrical connectors control the electromagnet.
[0017] Further, to better implement the present application, the following setting structure is particularly adopted: Two power plugs are installed on the lifting component, one is a power input plug and the other is a power output plug.
[0018] By adopting the above technical solution, multiple balloon blasting devices can be connected in series at the activity site.
[0019] Further, to better implement the present application, the following setting structure is particularly adopted: The blasting device further includes a limiting mechanism, and the limiting mechanism is arranged between the coil and the blasting component.
[0020] By adopting the above technical solution, the shaking of the wire during the extension and retraction process is restricted.
[0021] Further, to better implement the present application, the following setting structure is particularly adopted: The limiting mechanism is two rollers, and the wire is led out from the middle of the two rollers.
[0022] By adopting the above technical solution, the rollers can roll together with the extension or retraction of the wire, reducing the wear of the wire.
[0023] Furthermore, to better implement the present application, the following structural settings are specifically adopted: The limiting mechanism is composed of four rollers, which are set in two groups, with two rollers in each group, and the roller groups are arranged crosswise. The wire is led out from the middle of one group of rollers and then from the middle of the other group of rollers.
[0024] By adopting the above technical solution, the rollers can roll together with the extension or retraction of the wire, reducing the wear of the wire. The limiting mechanism can limit the sway of the wire in two directions, with better effects.
[0025] Furthermore, to better implement the present application, the following structural settings are specifically adopted: The blasting assembly further includes a suspension member, which is arranged below the frame, and a through groove is provided on the suspension member.
[0026] By adopting the above technical solution, setting the balloon to be blasted in the through groove can more conveniently fix the balloon, while improving the fixing stability, and the balloon does not sway when blasting the balloon.
[0027] Furthermore, to better implement the present application, the following structural settings are specifically adopted: The lifting assembly further includes a limit switch.
[0028] By adopting the above technical solution, the limit switch stops the operation of the driver after detecting that the blasting assembly has been lifted to a certain height.
[0029] In summary, the present application includes at least one of the following beneficial technical effects:
[0030] 1. Using the lifting assembly and the blasting assembly to replace the effect of filling helium into the balloon to make the balloon rise in the prior art, saving costs;
[0031] 2. A conductive slip ring is provided, which is electrically connected to the power plug and the wire, so that the wire can normally extend or retract on the coil. The electromagnet is arranged on the frame, and the wire is connected to the frame and drives the lifting or lowering of the frame. The electromagnet is an existing device, and one end of the electromagnet is processed into a needle-shaped part, and the needle-shaped end is controlled to extend to pierce the balloon;
[0032] 3. By setting a five-core aviation plug, the five-core aviation plug has five electrical connectors. Three of the five electrical connectors control the driver, one of the three electrical connectors controls the forward rotation of the driver, and one controls the reverse rotation. The remaining two of the five electrical connectors control the electromagnet. Only one plug can supply power to multiple components, saving costs and processes. By setting one power input plug and one power output plug, multiple balloon blasting devices can be connected in series at the activity site;
[0033] 4. The limiting mechanism is set as rollers, and the wire is led out from the middle of the two rollers, so that the wire does not sway during the extension and retraction on the coil, and thus the blasting assembly does not sway;
[0034] 5. The overall structure is ingeniously designed, easy to operate and inexpensive at the same time;
[0035] 6. By arranging the balloon to be burst in the through groove, the balloon can be fixed more conveniently, and at the same time, the fixing stability is improved, and the balloon does not shake when it bursts. Description of the Drawings
[0036] Figure 1 It is an exploded view of the lifting component in this embodiment;
[0037] Figure 2 It is a schematic diagram of the internal structure of the lifting component in this embodiment;
[0038] Figure 3 It is a schematic diagram of the internal structure of the lifting component in this embodiment;
[0039] Figure 4 It is a schematic diagram of the internal structure of the lifting component in this embodiment;
[0040] Figure 5 It is a bottom view of the lifting component in this embodiment;
[0041] Figure 6 It is a schematic diagram of the bursting component in this embodiment;
[0042] Figure 7 It is a schematic diagram of the bursting component connecting the balloon in this embodiment;
[0043] Figure 8 It is a schematic diagram of the balloon bursting device in this embodiment;
[0044] Figure 9 It is a schematic diagram of the balloon bursting device in another direction in this embodiment.
[0045] Description of the reference numerals: 1. Lifting component; 11. Driver; 12. Power plug; 13. Conductive slip ring; 14. Limit switch; 15. Electric wire; 16. Coil; 17. Roller; 18. Lower housing; 19. Front housing; 20. Rear housing; 21. Flap; 4. Bursting component; 41. Electromagnet; 42. Suspension; 43. Frame; 44. Small hole. Detailed Description of the Preferred Embodiment
[0046] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0047] An embodiment of the present application discloses a balloon bursting device. Refer to Figures 1-8 , the balloon bursting device includes a lifting assembly 1 and a bursting assembly 4.
[0048] The lifting assembly 1 includes a driver 11, a power plug 12, a conductive slip ring 13, a limit switch 14, a wire 15, a coil 16, and a roller 17. The driver 11 is a synchronous motor or a stepper motor. The power plug 12 is a five-core aviation plug. The five-core aviation plug has five electrical connectors. Three of the five electrical connectors control the synchronous motor or the stepper motor. One of the three electrical connectors controls the forward rotation of the synchronous motor or the stepper motor, and one controls the reverse rotation. In this embodiment, the forward rotation of the synchronous motor or the stepper motor is for the wire 15 to retract into the coil 16, and the limit switch 14 is connected in series to the electrical connector controlling the forward rotation. The remaining two electrical connectors among the five electrical connectors control the electromagnet. Two five-core aviation plugs are installed on the lifting assembly 1, one is an incoming power plug and the other is an outgoing power plug. The outgoing power plug can be connected to the incoming power plug of another balloon bursting device, so that multiple balloon bursting devices can be connected in series. When using a synchronous motor, the uniform rotation of the synchronous motor can ensure that the rising heights of multiple devices are not deviated too much at the same time. When using a stepper motor, since the stepper motor can be programmed, each device can be controlled to lift and lower according to a preset program. The coil 16 is hollow and has through holes at the radial position. One end of the coil 16 is fixedly connected to one end of the conductive slip ring 13. One end of the conductive slip ring 13 can rotate together with the coil 16. The other end of the conductive slip ring 13 is fixed on the frame 43 of the lifting assembly 1. The five-core aviation plug is electrically connected to the wire 15 in the hollow part of the coil 16 through the other end of the conductive slip ring 13. The wire 15 is led out from the through hole of the coil 16, and then led out from the middle of a set of rollers, and then led out from the middle of another set of rollers, and then connected to the bursting assembly 4. There is a hole on the lower housing 18 of the lifting assembly 1 for leading out the wire 15. One end of the lower housing 18 is hinged to the front housing 19 and the rear housing 20. The other end of the lower housing 18 is suspended. The retaining piece 21 is inserted into the holes on the front housing 19 and the rear housing 20. The retaining piece 21 can block the falling of the lower housing 18. The switch of the limit switch 14 is arranged above the other end of the lower housing 18.
[0049] The bursting assembly 4 includes a frame 43, an electromagnet 41, and a suspension member 42. After the wire 15 is connected to the frame 43 of the bursting assembly 4 (the wire is fixed by passing a cable tie through several small holes 44 of the frame 43), it is then electrically connected to the electromagnet 41. One end of the electromagnet 41 is processed into a needle shape. The suspension member 42 is erected below the frame 43. The suspension member 42 is provided with a groove for placing the knot tied after the balloon is inflated.
[0050] The implementation method of a balloon bursting device in an embodiment of the present application is: Refer to Figures 1-8, first assemble the blasting component 4 and the lifting component 1, install the lifting component 1 at a high place, blow up and tie a balloon filled with small balloons, red envelopes, petals or other items, place the tied knot in the groove on the suspension member 42, start the synchronous motor or the stepper motor (a remote control, mobile phone software, computer software, etc. that can make and operate the synchronous motor or the stepper motor can be made and used), the synchronous motor or the stepper motor drives the wire 15 on the coil 16 to retract around the coil 16, the blasting component 4 rises, when the upper end of the blasting component 4 touches the lower housing 18 of the lifting component 1, the other end of the lower housing 18 rises to trigger the limit switch 14, and the limit switch 14 stops the synchronous motor or the stepper motor from working. At this time, control the end of the electromagnet 41 processed into a needle shape to extend, thereby bursting the balloon.
[0051] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A balloon bursting device, characterized in that: It includes a lifting component (1) and a blasting component (4), and the lifting component (1) is used to lift or lower the blasting component (4); The blasting component (4) includes a needle-shaped part.
2. The balloon bursting device according to claim 1, wherein: The lifting component (1) includes a driver (11), a power plug (12), a conductive slip ring (13), a wire (15), and a coil (16); The coil (16) is hollow and has through holes at radial positions. The coil (16) is fixedly connected to one end of the conductive slip ring (13). The power plug (12) is electrically connected to the wire (15) in the hollow part of the coil (16) through the other end of the conductive slip ring (13), and the wire (15) is led out from the through hole of the coil (16); The blasting component (4) further includes a frame (43) and an electromagnet (41). The wire (15) is led out from the through hole of the coil (16), connected to the frame (43), and then electrically connected to the electromagnet (41). The needle-shaped part is one end of the electromagnet (41).
3. The balloon bursting device according to claim 2, wherein: The driver (11) is a synchronous motor or a stepper motor.
4. The bursting balloon device according to claim 2, wherein: The power plug (12) is a five-core aviation plug.
5. The balloon bursting device according to claim 2, wherein: Two power plugs (12) are installed on the lifting component (1), one is a power-in plug and the other is a power-out plug.
6. The balloon bursting device according to claim 2, characterized in that: The blasting device further includes a limiting mechanism, and the limiting mechanism is arranged between the coil (16) and the blasting component (4).
7. The balloon bursting device according to claim 6, characterized in that: The limiting mechanism is two rollers (17), and the wire (15) is led out from the middle of the two rollers (17).
8. The balloon bursting device according to claim 6, wherein: The limiting mechanism is four rollers (17). The four rollers (17) are arranged in two groups, with two rollers (17) in each group. The roller (17) groups are arranged in a cross pattern. The wire (15) is led out from the middle of one group of rollers (17) and then led out from the middle of the other group of rollers (17).
9. The balloon bursting device according to claim 2, wherein: The blasting component (4) further includes a suspension part (42). The suspension part (42) is arranged below the frame (43), and a through groove is provided on the suspension part (42).
10. The balloon bursting device according to claim 2, wherein: The lifting component (1) further includes a limit switch (14). When the limit switch (14) detects that the blasting component (4) is lifted to a certain height, it stops the operation of the driver (11).