Firework setting-off device with spring structure
By designing a rotating firing mechanism with a spring structure and a hand-clapping structure of the fireworks firing device, the problem of the monotonous firing effect of existing toy fireworks is solved, and diversified three-dimensional firing effects and cost-effectiveness are achieved.
Patent Information
- Application Number
- CN202422730664.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-10-08
- Filing Date
- 2024-11-08
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-08
AI Technical Summary
Existing handheld toy fireworks ignition devices have monotonous ignition effects and lack of fun, and cannot meet the needs of young people for diversified ignition methods.
A fireworks firing device with a spring structure is designed. By rotating the firing mechanism components and the hand-clapping structure, the rebound force of the spring is used to make multiple fireworks effect bodies unfold into umbrella or palm shapes after ignition, thereby achieving diverse firing effects.
The invention realizes the three-dimensional rotating firing of multiple firework effect bodies, enhances the interest and viewing experience of the firing, reduces the production cost and saves the packaging and transportation space.
Smart Images

Figure CN223412594U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toy fireworks ignition devices, in particular to a fireworks ignition device with a spring structure. Background Art
[0002] In the prior art, there are many types of handheld toy fireworks, but most of them are to hold a single firework tube and ignite it directly, which makes the firing effect very monotonous and boring. In particular, teenagers always want to pursue an interesting way of firing, which can increase the lively atmosphere of the group. In recent years, some childlike firing carriers have appeared around toy fireworks devices suitable for teenagers, such as hand-grabbed fireworks, rocket fireworks, animal fireworks and other devices. With the advancement of science and technology and people's continuous pursuit of trendy firing carriers, fireworks technology personnel are also constantly innovating in the design of fireworks carrying and supporting firing devices. This utility model patent application proposes a new design concept, which aims to solve many problems existing in the production, assembly and use of existing small-scale fireworks firing devices. Utility Model Content
[0003] The purpose of the present utility model is to provide a device in which multiple fireworks effect pieces are mounted on the same carrier at different azimuth points, and after ignition at the end face of the cluster of multiple ignition ends at the rear, the ignition pieces spread out in an umbrella shape to support rotating firing or a palm-clapping configuration to support handheld firing, so as to solve the problems raised in the above-mentioned background technology.
[0004] To achieve the above objectives, the present invention can be solved by the following technical solutions:
[0005] A fireworks firing device with a spring structure, comprising a fireworks effect body and an ignition end, characterized in that it also includes a rotating firing mechanism assembly connected to at least two of the fireworks effect bodies, the rotating firing mechanism assembly including a rotating seat handle with a hollow structure, a button structure connected to the rotating seat handle, a rotating mechanism box body arranged above the rotating seat handle, a rotating seat connected to the rotating mechanism box body, a central connecting shaft communicating with the inner cavity of the rotating mechanism box body is further provided at the lower middle part of the rotating seat, at least two spring baffles with an outwardly inclined structure are arranged on the upper edge of the rotating seat, and a connecting pile head is connected to the rotating seat on the inner side of each spring baffle in the same direction. A spring is sleeved on the outer surface of each connecting pile head, and a firework effect body connecting piece with a central through hole is sleeved and connected on the upper part of each spring. At least two firework effect bodies are matched and connected above each firework effect body connecting piece, and the upper ends of the at least two firework effect bodies are gathered and bundled together and connected by a binding material to form an integrated ignition combination. During ignition, one of the ignition ends on the bundled end is ignited and ignites the other ignition ends in the bundled end of the firework effect body, so that the binding material wrapped around the bundled end of the firework effect body is ignited and burned, thereby utilizing the rebound force of the inwardly curved spring on the firework effect body connecting piece to bounce the at least two firework effect bodies open and expand outward in an inclined manner to form an upward structure umbrella-shaped shape for rotational ignition.
[0006] Specifically, in a preferred technical solution, preferably, the rotating functional parts configured in the inner cavity of the rotating box include: a transmission gear assembly arranged in the middle, a movable gear meshing with the transmission gear assembly, a movable rotating seat bevel gear arranged at the lower end of the central connecting shaft, and a movable gear groove is arranged in the center of the movable gear. The hollow chamber of the rotating seat handle and the inner cavity of the rotating mechanism box are an integrated through structure.
[0007] Specifically, in a preferred technical solution, preferably, the functional parts of the button structure configuration include: a button spring arranged on the left side wall at the bottom of the inner cavity of the rotating mechanism box, a button top rack connecting plate connected to the upper end of the button structure, and a button shaft located at the button structure and connected to the lower end of the rotating seat handle chamber. A button top rack is also provided on the right side of the top surface of the button top rack connecting plate. The rotating seat and the rotating mechanism box are connected by manually pressing the button spring through the button structure to make the button top rack at the upper end move back and forth and engage with the movable gear, transmission gear assembly and the movable rotating seat bevel gear to rotate the rotating seat above the center connecting shaft.
[0008] Specifically, in a preferred technical solution, preferably, the rotating seat handle adopts a tube handle structure that can be disassembled and assembled with the central connecting shaft and also serves as a manual rotating handle.
[0009] Specifically, in a preferred technical solution, preferably, the bundle used to wrap and connect the at least two firework effect body clusters is a tape wrapping and bundling structure, or a yarn wrapping and bundling structure.
[0010] Specifically, in a preferred technical solution, preferably, the firework effect body and the firework effect body connector are connected and fixed in an inserting manner, or in a sleeve-type connection and fixed manner.
[0011] Specifically, in a preferred technical solution, preferably, the spring baffle is an arc-shaped structure or a straight strip structure that matches the spring.
[0012] Specifically, in a preferred technical solution, preferably, the firework effect body is a firework effect body structure of an incense stick type, or a firework effect body structure of a spray type, or a firework effect body structure of a cold light type.
[0013] For the above purpose, the present invention can also be achieved through another technical solution:
[0014] 14. The fireworks display device according to claim 13, wherein the at least two ignition ends of the fireworks display device are connected to the upper end of the fireworks display device and the ignition end of the fireworks display device. The ...
[0015] Specifically, in another preferred technical solution, preferably, the bundle used to wrap and connect the at least two firework effect body clusters is a tape wrapping and bundling structure, or a yarn wrapping and bundling structure.
[0016] Specifically, in another preferred technical solution, preferably, the firework effect body and the firework effect body connector are connected and fixed in an inserting manner, or in a sleeve-type connection and fixed manner.
[0017] Specifically, in another preferred technical solution, preferably, the firework effect body is a firework effect body structure of an incense stick type, or a firework effect body structure of a spray type, or a firework effect body structure of a cold light type.
[0018] Beneficial effects
[0019] The advantages and beneficial effects of the utility model are:
[0020] 1. The technical solution of the utility model has a unique innovative design structure and novel shape. Its umbrella-shaped configuration and palm-clapping configuration have strong schematic characteristics, which are in line with the young people's exploration and pursuit of innovative design of existing fireworks carrier technology. It is quick to assemble and install during firing, and has good firing safety.
[0021] 2. Due to the adoption of the technical solution of the present invention, in the first embodiment, due to the adoption of the innovative principle of a supporting rotating structure in which multiple functional parts of a newly designed rotating firing mechanism assembly connected to multiple firework effect bodies are matched and configured and connected as one, in order to design a new type of small-scale firework firing shape, multiple connecting studs that can be sleeved with spring components and spring baffles that match the multiple connecting studs are designed on the top panel of the rotating firing mechanism assembly. Moreover, the connecting studs and the spring baffles are matched and connected at the same inclination angle, with a certain gap between them. The setting of the spring component is to take into account the use of the rebound force of the spring to integrate and combine multiple fireworks into an umbrella-shaped folded state. When the flower effect body is ignited and set off, it burns and melts the bundled materials at the end of the bundle, and then it can quickly rebound and expand into an umbrella-shaped three-dimensional rotating structure; of course, in order to meet the needs of firing, its spring baffle mainly blocks the spring set on the connecting pile head from rebounding back to the original inclined angle position and expanding, and no longer continues to spread out into a flat shape, which is conducive to the formation of three-dimensional patterns and the viewing effect. Therefore, in the design, the smooth consistency of the blocking spring expansion is taken into consideration, and the spring baffle is designed to be an arc-shaped baffle structure slightly larger than the spring arc surface. Of course, it can also be a flat straight plate structure; in order to set off the shape, it is also possible to only configure the peripheral design to connect multiple connecting pile heads and set springs connecting the firework effect bodies, so that it can be expanded into a pot-shaped structure facing upward.
[0022] 3. Due to the adoption of the second technical solution of the present invention, this embodiment employs a palm-clapping support and firing device, eliminating the complex structure of the rotating firing mechanism assembly. Its construction is relatively simple and its production cost is low. However, the spring connection structure of the first embodiment is also employed, namely, a spring member is installed between the connecting post and the firework effect body connection and fixing member. Furthermore, the ignition ends of the multiple firework effect bodies are bundled and tied together with tape or yarn. This facilitates packaging, boxing, storage, and transportation of the finished product, saves packaging storage space, increases the number of finished product packages, and reduces packaging and transportation costs. More importantly, during ignition, the flame of the ignition powder burns the bundle apart. The elastic force of the spring connected to the bottom of the bundled firework effect bodies causes the tops of the bundled firework effect bodies to bounce apart, and each of the bundled firework effect bodies is restored to an independent firing unit. As they rebound and disperse, the bundled firework effect bodies sway back and forth without affecting each other's ignition and firing. Conversely, ignition at the same ignition node on the same carrier can simultaneously ignite multiple firework effect bodies of the same or different types, producing different or the same firing effects and patterns and colors. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The following drawings will further provide an understanding of the technical solution of the present invention, which constitutes a part of the present invention. The embodiments and descriptions of the present invention are used to further explain the present invention, but do not constitute an improper limitation of the present invention. As shown in the drawings:
[0024] Figure 1 This is a front view of the three-dimensional structure of an embodiment of the utility model.
[0025] Figure 2 It is a schematic diagram of the three-dimensional structure of a plurality of firework effect bodies in an embodiment of the present invention unfolded into an umbrella shape.
[0026] Figure 3 It is a schematic cross-sectional structure diagram of a rotary firing mechanism assembly in one embodiment of the present utility model.
[0027] Figure 4 It is a schematic diagram of the three-dimensional structure of the connection position of the spring baffle and the connecting pile head unit in one embodiment of the utility model.
[0028] Figure 5 It is a three-dimensional schematic diagram of the relationship between the spring baffles and the connecting pile head units in one embodiment of the present invention, which are matched into four pairs of connection positions.
[0029] Figure 6 The utility model is a cross-sectional view showing the structure of a detachably connected bobbin handle in an embodiment of the rotary seat handle.
[0030] Figure 7It is a schematic diagram of the three-dimensional structure of a firework effect body cluster assembly according to another embodiment of the present invention.
[0031] Figure 8 This is a schematic diagram of the three-dimensional structure of another embodiment of the utility model in which the fireworks effect body is unfolded into the shape of a palm clapping.
[0032] Description of the accompanying drawings: Figures 1-8 Among them, 1-rotating seat handle, 2-button structure, 3-rotating mechanism box, 4-rotating seat, 5-spring baffle, 6-spring, 7-firework effect body connector, 8-center insertion hole, 9-firework effect body, 10-bundling, 11-button shaft, 12-button top rack, 13-movable gear groove, 14-movable gear, 15-movable rotating seat bevel gear, 16-transmission gear assembly, 17-button spring, 18-hand clapping handle, 19-connecting pile head, 20-center connecting shaft, 21-button top rack connecting plate, 22-bobbin handle structure, 901-ignition end. DETAILED DESCRIPTION
[0033] It should be noted that in order to thoroughly understand the present utility model application, a large number of specific details are presented in the following description. It is obvious to those skilled in the art that the present utility model can be implemented without adopting some or all of these specific details. It should be understood that the present utility model application describes only some embodiments of the present utility model, not all embodiments. Based on a preferred embodiment of the present utility model application, those known operations are not described in detail without making the present utility model difficult to understand. Therefore, all other different embodiments obtained by ordinary technicians in this field without doing creative work should fall within the scope of protection of the present utility model application.
[0034] like Figures 1-8 In the figure, its structure is formed by the rotating seat handle 1, button structure 2, rotating mechanism box 3, rotating seat 4, spring baffle 5, spring 6, fireworks effect body connector 7, central insertion hole 8, fireworks effect body 9, bundling 10, button shaft 11, button top rack 12, movable gear groove 13, movable gear 14, movable rotating seat bevel gear 15, transmission gear assembly 16, button spring 17, hand clapping handle part 18, connecting pile head 19, central connecting shaft 20, button top rack connecting plate 21, bobbin handle structure 22, ignition end 23 and other components / parts.
[0035] Example 1
[0036] The structural features of the specific embodiment are:
[0037] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 In the figure, a preferred embodiment of the present utility model is shown.
[0038] In this embodiment, it should be noted that the spring 6 described herein is a conventionally formed spring component, and the fireworks effect body 9 is a product of the prior art, which can be a mainly assembled component of an incense stick type firework, and is mainly used in the first embodiment. In another embodiment, the fireworks effect body can be an incense stick type firework, and its fireworks effect body 9 can also be mainly assembled with a spray type firework or a jet type cold light firework product.
[0039] The structural features of its specific embodiment are:
[0040] Specifically, in a preferred embodiment, as shown in the figure, it includes a fireworks effect body and an ignition end, and is characterized in that it also includes a rotating firing mechanism assembly connected to at least two of the fireworks effect bodies 9, the rotating firing mechanism assembly includes a hollow rotating seat handle 1, a button structure 2 connected to the rotating seat handle, a rotating mechanism box 3 arranged above the rotating seat handle, and a rotating seat 4 connected to the rotating mechanism box. A central connecting shaft 20 communicating with the inner cavity of the rotating mechanism box is also provided at the lower middle part of the rotating seat. At least two spring baffles 5 with an outwardly inclined structure are provided on the upper edge of the rotating seat, and a connecting pile head 19 is connected to the rotating seat on the inner side of each spring baffle in the same direction and in parallel. Each of the connecting piles is fitted with a spring 6, and a firework effect body connector 7 with a central through-hole 8 is fitted and connected to the upper portion of each spring. At least two firework effect bodies 9 are matched and connected above each firework effect body connector. The upper ends of the at least two firework effect bodies are gathered and bundled together and wrapped and connected with a binding material 10 to form an integrated firing assembly. During firing, one of the ignition ends 901 on the bundled end is ignited and ignites the other ignition ends in the bundled end of the firework effect body, causing the binding material wrapped around the bundled end of the firework effect body to ignite and burn out. The at least two firework effect bodies are then ejected by the rebound force of the inwardly curved spring on the firework effect body connector, and are tilted outward to form an upward-pointing umbrella-shaped structure for rotational firing.
[0041] In this embodiment, there are five connecting studs and matching spring baffles on the rotating seat, and four can also be symmetrically connected, or N can be matched and connected according to user needs.
[0042] In this embodiment, the rotating seat is configured as a square or circular structure, and can also be designed as other specific geometric shapes as needed.
[0043] Specifically, in a preferred embodiment, as shown in the figure, further, the rotating functional parts configured in the inner cavity of the rotating box body 3 include: a transmission gear assembly 16 arranged in the middle, a movable gear 14 meshing with the transmission gear assembly, a movable rotating seat bevel gear 15 arranged at the lower end of the central connecting shaft, and a movable gear groove 13 is arranged in the center of the movable gear. The hollow chamber of the rotating seat handle 1 and the inner cavity of the rotating mechanism box body are an integrated through structure.
[0044] Specifically, in a preferred embodiment, as shown in the figure, further, the functional parts configured in the button structure 2 include: a button spring 17 arranged on the left side wall at the bottom of the inner cavity of the rotating mechanism box, a button top rack connecting plate 21 connected to the upper end of the button structure, and a button shaft 11 located at the button structure and connected to the lower end of the rotating seat handle chamber. A button top rack 12 is also provided on the right side of the top surface of the button top rack connecting plate. The rotating seat 4 and the rotating mechanism box 3 are connected by manually pressing the button spring through the button structure 2 to make the button top rack (12) at the upper end move back and forth and engage with the movable gear 14, the transmission gear assembly 16 and the movable rotating seat bevel gear 15 to rotate the rotating seat 4 above the rotating center connecting shaft 20.
[0045] Specifically, in a preferred embodiment, as shown in the figure, further, the rotating seat handle 1 is constructed using a tube handle structure 22 that can be disassembled and assembled with the central connecting shaft 20 and also serves as a manual rotating handle.
[0046] Specifically, in a preferred embodiment, as shown in the figure, further, the bundle 10 used for winding and connecting the bundled portions of at least two of the firework effect bodies 9 is a tape winding and bundling structure, or a yarn winding and bundling structure.
[0047] Specifically, in a preferred embodiment, as shown in the figure, further, the fireworks effect body 9 and the fireworks effect body connector 7 are connected and fixed by insertion, or by fitting.
[0048] Specifically, in a preferred embodiment, as shown in the figure, further, the spring baffle 5 is an arc-shaped structure or a straight strip structure that matches the spring 6.
[0049] Specifically, in a preferred embodiment, as shown in the figure, further, the firework effect body 9 is a firework effect body structure of an incense stick type, a firework effect body structure of a spray type, or a firework effect body structure of a cold light type.
[0050] In this embodiment, due to the adoption of a newly designed supporting rotating structure innovation principle in which multiple functional parts of a rotating firing mechanism assembly connected to multiple firework effect bodies are matched and configured and connected into one, in order to design a new type of small-scale firework firing shape, multiple connecting piles that can be sleeved with spring components and spring baffles that match the multiple connecting piles are designed on the top panel of the rotating firing mechanism assembly, and the connecting piles and the spring baffles are matched and connected at the same inclined angle direction, with a certain gap distance between the two. The setting of the spring component takes into account the use of the rebound force of the spring to make the multiple firework effect bodies that are integrated and combined into an umbrella-shaped folded state burn when ignited. After the bundle at the end of the bundle is melted, it can quickly rebound and expand into an umbrella-shaped three-dimensional rotating structure; of course, in order to meet the needs of firing, its spring baffle mainly blocks the spring set on the connecting pile head from rebounding back to the original inclined angle position and expanding, and no longer continues to spread out into a flat shape, which is conducive to the formation of three-dimensional patterns and the viewing effect. Therefore, in the design, the smooth consistency of the expansion of the blocking spring is taken into consideration, and the spring baffle is designed to be an arc-shaped baffle structure slightly larger than the arc surface of the spring. Of course, it can also be a flat straight plate structure; in order to fire the shape, only the connecting pile heads and set springs designed to connect multiple fireworks effect bodies can be configured, so that it can be expanded into an upward-facing pot-shaped structure.
[0051] Example 2
[0052] The structural features of the specific embodiment are:
[0053] The structural features of the specific embodiment are:
[0054] The present invention can also be implemented through another preferred embodiment, specifically, as follows Figure 7 、 Figure 8As shown in, a fireworks setting off device with a spring structure includes a hand-clapping handle portion 18, a fireworks effect body 9, and an ignition end 901 on the top of the fireworks effect body, characterized in that: the fireworks setting off device is a hand-clapping spring structure, and also includes at least two connecting piles 19 arranged on the top surface of the hand-clapping handle portion 18, springs 6 are respectively mounted on the at least two connecting piles, and fireworks effect body connecting pieces 7 with central through holes 8 are respectively mounted on the upper parts of the at least two spring cavities. At least two of the fireworks effect bodies 9 are respectively arranged on the The firework effect body connector is fixedly connected above the firework effect body connector. At least two of the firework effect bodies are bundled at the upper end and near the lower portion of the ignition end 901, and are wrapped and connected by a bundle 10 to form an integrated firing assembly structure. When ignited, one of the at least two ignition ends 901 at the bundled end of the firing assembly is ignited and ignites the other ignition ends at the bundled end of the effect body, causing the bundle 10 wrapped around the upper end of the firework effect body to ignite and burn out. The firework effect body then uses the rebound force of the spring connected to the lower portion to rebound back to its original position, and the independent firing bodies are ignited simultaneously.
[0055] In this embodiment, there are four connecting studs above the hand-clapping handle portion, and five can also be set to connect, or N can be matched and connected according to user needs.
[0056] In another embodiment, further, the bundle 10 used for winding and connecting the bundled portions of at least two of the firework effect bodies 9 is a tape winding and bundling structure, or a yarn winding and bundling structure.
[0057] In another embodiment, further, the fireworks effect body 9 and the fireworks effect body connector 7 are connected and fixed by insertion, or by fitting.
[0058] In another embodiment, further, the firework effect body 9 is a firework effect body structure of an incense stick type, a firework effect body structure of a spray type, or a firework effect body structure of a cold light type.
[0059] Due to the adoption of another technical solution of the present invention, this embodiment adopts a palm-type hand-clapping support firing device, eliminating the complex structure of the rotating firing mechanism assembly, its structure is relatively simple and the production cost is low. However, it also adopts the spring connection structure of the first embodiment, that is, a spring member is installed between the connecting pile head and the firework effect body connecting and fixing member, and the ignition ends of multiple firework effect bodies are tied together with tape or yarn. This facilitates the packaging, boxing, storage and transportation of the finished product, saves packaging storage space, increases the number of finished product packages, and reduces packaging and transportation costs. More importantly, When ignited, the flame of the ignited powder burns and breaks the bundle, and the elastic force of the spring connected at the bottom causes the tops of the bundled fireworks effect bodies to bounce off and restore them to independent firing units. When rebounding and dispersing, they swing back and forth without affecting each other's ignition and firing. On the contrary, after ignition at the same ignition node on the same carrier, multiple fireworks effect bodies of the same or different types can be ignited simultaneously, and different or similar firing effects and pattern colors can be produced. This fully demonstrates the superiority of the palm-clapping structure of the shaped fireworks firing device, which is more suitable for young people's pursuit of the beauty of fireworks shapes.
[0060] Although the present invention is described in conjunction with various preferred embodiments, it should be understood that various structural modifications and component changes may be made thereon without departing from the scope of the present invention as set forth in the claims. In other words, the above-described embodiments of the present invention are merely illustrative of the technical solutions of the present invention and should not be construed as limiting the present invention in any way. It should be understood by those skilled in the art that the present invention may have various well-known structural forms and / or material substitutions / alternatives, and that such substitutions should all be included within the scope of protection of the present invention without departing from the essential meaning of the present invention.
Claims
1. A fireworks display device with a spring structure, comprising a fireworks effect body and an ignition end, characterized in that: The invention also includes a rotating firing mechanism assembly connected to at least two of the firework effect bodies (9), wherein the rotating firing mechanism assembly includes a rotating seat handle (1) with a hollow structure, a button structure (2) connected to the rotating seat handle, a rotating mechanism box (3) arranged above the rotating seat handle, and a rotating seat (4) connected to the rotating mechanism box. A central connecting shaft (20) communicating with the inner cavity of the rotating mechanism box is provided below the middle of the rotating seat. At least two spring baffles (5) with an outwardly inclined structure are provided on the upper edge of the rotating seat. A connecting pile (19) is connected to the rotating seat on the inner side of each spring baffle in the same direction and in parallel. A spring is sheathed on each connecting pile. A spring (6) is provided, and a firework effect body connector (7) with a central insertion hole (8) is sleeved and connected to the upper part of each spring. At least two firework effect bodies (9) are matched and connected above each firework effect body connector, and the upper ends of the at least two firework effect bodies are gathered and bundled together and connected with a bundle (10) to form an integrated firing combination. When firing, one of the ignition ends (901) on the bundled end is ignited and ignites the ignition end in the bundled end of the firework effect body, so that the bundle wrapped around the bundled end of the firework effect body is ignited and burned, thereby utilizing the rebound force of the inwardly bent spring on the firework effect body connector to bounce the at least two firework effect bodies open and expand outwardly in an inclined manner to form an umbrella-shaped upward structure for rotational firing.
2. The fireworks setting off device with a spring structure according to claim 1, characterized in that: The rotating functional parts arranged in the inner cavity of the rotating mechanism housing (3) include: a transmission gear assembly (16) arranged in the middle, a movable gear (14) meshingly connected with the transmission gear assembly, a movable rotating seat bevel gear (15) arranged at the lower end of the central connecting shaft, and a movable gear groove (13) arranged in the center of the movable gear. The hollow chamber of the rotating seat handle (1) and the inner cavity of the rotating mechanism housing are an integrated through structure.
3. The fireworks setting off device with a spring structure according to claim 1, characterized in that: The functional parts configured in the button structure (2) include: a button spring (17) arranged on the left side wall at the bottom of the inner cavity of the rotating mechanism box, a button top rack connecting plate (21) connected to the upper end of the button structure, and a button rotating shaft (11) located at the button structure and connected to the lower end of the rotating seat handle chamber. A button top rack (12) is also arranged on the right side of the top end surface of the button top rack connecting plate. The rotating seat (4) and the rotating mechanism box (3) are connected by manually pressing the button spring through the button structure (2) to make the button top rack (12) at the upper end move back and forth and engage with the movable gear (14), the transmission gear assembly (16) and the movable rotating seat bevel gear (15) to rotate the rotating seat (4) above the central connecting shaft (20).
4. The fireworks setting off device with a spring structure according to claim 1, characterized in that: The rotating seat handle (1) is constructed of a bobbin handle structure (22) that can be disassembled and assembled with the central connecting shaft (20) and also serves as a manual rotating handle.
5. The fireworks setting off device with a spring structure according to claim 1, characterized in that: The bundle (10) used for winding and connecting the bundled parts of at least two of the firework effect bodies (9) is a tape winding and bundling structure, or a yarn winding and bundling structure.
6. The fireworks setting off device with a spring structure according to claim 1, characterized in that: The firework effect body (9) and the firework effect body connector (7) are in an insert-connection fixing structure, or in a sleeve-connection fixing structure.
7. The fireworks setting off device with a spring structure according to claim 1, characterized in that: The spring baffle (5) is an arc-shaped structure or a straight strip structure that matches the spring (6).
8. A fireworks ignition device with a spring structure, comprising a hand-clapping handle (18), a fireworks effect body (9), and an ignition end (901) on the top of the fireworks effect body, characterized in that: The fireworks firing device is a hand-clapping spring structure, and further comprises at least two connecting studs (19) arranged on the top surface of the hand-clapping handle portion (18), springs (6) being respectively fitted on the at least two connecting studs, and fireworks effect body connecting pieces (7) with central insertion holes (8) being respectively fitted and connected on the upper parts of the inner cavities of the at least two springs, at least two fireworks effect bodies (9) being respectively arranged above the fireworks effect body connecting pieces and fixedly connected, and being wound and connected by a bundle (10) at the lower parts of the upper end clustering parts of the at least two fireworks effect bodies and close to the ignition ends (901) to form an integrated firing combination structure, when firing, one of the at least two ignition ends (901) on the clustering end of the firing combination is ignited and ignites the ignition end in the clustering end of the effect body, so that the bundle (10) wrapped around the upper end of the fireworks effect body is ignited and burns out, thereby utilizing the rebound force of the spring connected to the lower part of the fireworks effect body to bounce back to the original independent firing bodies and fire simultaneously.
9. The fireworks setting off device with a spring structure according to claim 8, characterized in that: The bundle (10) used for winding and connecting the bundled parts of at least two of the firework effect bodies (9) is a tape winding and bundling structure, or a yarn winding and bundling structure.