Toy rocket projectile

By designing a torsion structure for the rocket body and winglets in the toy rocket, the aerodynamic performance is optimized, solving the problems of unstable flight and monotonous gameplay of existing rockets. This enables longer flight distances and more diverse trajectories, enhancing children's gaming experience and competitive fun.

CN224141460UActive Publication Date: 2026-04-21HUIZHOUSHI XUTE PLASTIC ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOUSHI XUTE PLASTIC ELECTRONIC TECH CO LTD
Filing Date
2025-03-10
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing toy rockets have a simple structural design and poor aerodynamic performance, resulting in high flight drag, unstable launch process, limited functionality, monotonous gameplay, and a lack of fun.

Method used

A toy rocket was designed, which adopts a rocket body and wing structure. The wing is connected to the rocket body through a twisting part to form a twist at a specific angle, which enhances aerodynamic performance. By combining the wing with the launcher at different twist angles, a variety of flight trajectories can be generated.

Benefits of technology

It improves the flight stability and range of the rocket, increases the fun and competitiveness of the toy, stimulates children's desire to explore and their competitive spirit, and enhances the entertainment value of the game.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of flying toy articles, and particularly relates to a toy rocket bomb which comprises a rocket bomb body and side wings, and the rocket bomb body is composed of a rocket body, a launching hole and an arrow; the side wings are connected with the rocket body and are composed of connecting parts, extending parts, twisting parts and wing faces. The connecting part is parallel to the rocket body, the extension part reinforces connection between the rocket body and the side wings, the twisting part enables the side wings to twist by a specific angle relative to the central axis of the rocket body, and the twisting angles of the side wings in one set of rocket projectile are different. When the rocket projectile flies, due to the torsion design of the side wings, the rocket projectile rotates around the axis of the rocket projectile, airflow interference is effectively resisted under the gyroscopic effect, flight stability is remarkably improved, shaking and deviation are reduced, aerodynamic performance is optimized, and the rocket projectile is assisted to fly farther; rich and diversified flight paths are generated, the playing interestingness and novelty are greatly enhanced, the exploration desire of players is stimulated, and the competitive entertainment value of the toy is improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of flying toy products, specifically relating to a toy rocket. Background Technology

[0002] With the continuous improvement of living standards and the overall quality of the population, people are paying more and more attention to children's growth and development. Children's educational toys, due to their ability to effectively develop children's open-minded thinking, occupy a significant share of the toy market.

[0003] As a type of educational toy, toy rockets simulate the launch and flight process of aerospace rockets using a foam rocket launch system. Their fun and educational value have made them popular in the market. A typical structure consists of a launch pad fixed to a toy base, connected to a propulsion airbag. A model rocket made of foam is placed on the launch pad, and the operator compresses the propulsion airbag to generate air pulses, propelling the rocket model into the air.

[0004] Currently, there is a wide variety of launching mechanisms, covering single-player single-launch and two-player double-launch competitive types. All of them launch the rocket model by impacting it with air pulses, and the toy rockets being launched are mostly made of soft foam material. However, the existing toy rockets generally have a relatively simple structural design and poor aerodynamic performance, resulting in high air resistance during flight, severely limiting flight distance and speed. At the same time, the coordination between the rocket and the launching mechanism lacks rationality, causing instability in the launch process. Consequently, the toy rockets have limited functionality, insufficient playability, and monotonous gameplay.

[0005] In conclusion, there is an urgent need to develop a new type of toy rocket. This rocket must effectively overcome the shortcomings of existing rockets in terms of functionality, playability, and gameplay, providing children with a higher quality and more diverse entertainment experience. Summary of the Invention

[0006] The purpose of this utility model is to provide a toy rocket that solves the technical problems of existing toy rockets having limited functionality, insufficient playability, and monotonous gameplay.

[0007] To achieve the above objectives, this utility model provides a toy rocket, characterized in that it includes a rocket body and side wings;

[0008] The arrow body consists of an arrow shaft, a firing port, and an arrowhead. The arrow shaft has a firing port, and the arrowhead is located above the arrow shaft.

[0009] The wing is connected to the arrow body and consists of a connecting part, an extension part, a twisting part, and a wing surface. The connecting part is fixed to the arrow body and is arranged parallel to the arrow body. The bottom end of the connecting part is provided with an extension part, the connecting part is provided with a twisting part, and the top surface of the twisting part is provided with a wing surface. The twisting arrangement of the twisting part causes the wing surface to twist at a certain angle relative to the central axis of the arrow body.

[0010] In the same toy set, the twist angles of the twisted parts relative to the top surface of the connecting parts of the multiple rockets are different in each rocket.

[0011] Preferably, the arrow body is made of soft foam material, the launch hole is provided through one end of the bottom of the arrow body, and the other end is a sealed structure, and the diameter of the launch hole matches the diameter of the jet tube in the launch mechanism.

[0012] Preferably, a light source is fixedly installed at the top of the launch hole in the arrow body, and the arrowhead is connected to the arrow body by a snap-fit ​​mechanism.

[0013] Preferably, the width of the connecting portion is greater than the thickness of the twisted portion, and the lower end of the connecting portion and the extension portion are integrally formed.

[0014] Preferably, the twisted portion is located above the connecting portion and in the middle of the connecting portion, and is an integral structure with the connecting portion. One end of the twisted portion is located at the top of the connecting portion, and the other end extends to the end of the extension portion. The twisted portion is twisted at a specific angle relative to the top surface of the connecting portion. At one end of the extension portion, the left side of the twisted portion forms an angle with the top surface of the connecting portion. The angle ranges from 5 to 60 degrees. The angle extends upward along the left side of the twisted portion and the top surface of the connecting portion, and the angle gradually increases. The twisted surface of the twisted portion is a smooth curved surface.

[0015] Preferably, in the same set of toys, the torsion angle of the twisted part of each rocket relative to the top surface of the connecting part can be set to 5, 15, 30, 45 and 60 degrees.

[0016] Preferably, the wing surface and the twisted part are manufactured by an integrated molding process, and the specific angle of the twist of the wing surface relative to the central axis of the arrow body varies with the angle between the top surface of the twisted part and the connecting part.

[0017] The toy rocket provided in this embodiment of the present invention has at least one of the following technical effects:

[0018] This invention relates to a toy rocket in which the side wings are twisted at a certain angle relative to the central axis of the rocket body. During flight, the difference in air force on both sides of the rocket creates a torque that causes the rocket to rotate around its own axis. Under the gyroscopic effect, the rocket can effectively resist airflow interference, greatly reducing swaying and deviation from the predetermined trajectory during flight, making flight more stable and controllable, and significantly improving flight stability. At the same time, the twisting design of the side wings optimizes aerodynamic performance, reduces flight drag, and helps the rocket fly farther.

[0019] This invention relates to a toy rocket where each rocket has a fixed wing twist angle, but the twist angles of the rockets in a set are inconsistent. The combination of rockets with wing twist angles of varying degrees and different launch angles of the launcher creates a rich variety of trajectories during flight. This unique design breaks away from the monotony of traditional rocket flight trajectories, providing children with a novel visual experience and exploratory fun, greatly increasing the enjoyment and novelty of play. Furthermore, the different wing twist angles of each rocket fully stimulate children's initiative during play. By continuously experimenting with adjusting the launcher angle and using rockets with different twist angles, children can discover the optimal combination to launch the rockets further. This exploratory and challenging process greatly stimulates children's curiosity and competitive spirit. Through comparison and competition, players not only enjoy the game but also develop their thinking and hands-on skills, significantly enhancing the toy's competitive and entertainment value. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 A perspective view of a toy rocket provided for an embodiment of this utility model.

[0022] Figure 2 A front view of a toy rocket provided for an embodiment of this utility model.

[0023] Figure 3 A rear view of a toy rocket provided for an embodiment of this utility model.

[0024] Figure 4 A perspective view of the side wing of a toy rocket provided for an embodiment of this utility model.

[0025] The following are the labeling elements in the figure:

[0026] 10—Arrow body 11—Arrow shaft 12—Launch port 13—Arrowhead 20—Flank

[0027] 21—Connecting part; 22—Extension part; 23—Twisting part; 24—Wing surface. Detailed Implementation

[0028] The embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the embodiments of the present invention, and should not be construed as limiting the present invention.

[0029] In the description of the embodiments of this utility model, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the embodiments of this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0030] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of embodiments of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0031] In this embodiment of the invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment of the invention according to the specific circumstances.

[0032] In one embodiment of this utility model, such as Figure 1-4As shown, a toy rocket is provided, including a rocket body 10 and side wings 20. The rocket body 10 is composed of a shaft 11, a launch port 12, and an arrowhead 13. The launch port 12 is provided in the rocket body 10. A light source (not shown) is fixed at the top of the launch port 12 in the rocket body 11. The arrowhead 13 is provided above the rocket body 11. The side wings 20 are connected to the rocket body 10. The side wings 20 are composed of a connecting part 21, an extension part 22, a twisting part 23, and a wing surface 24. The connecting part 21 is fixed to the rocket body 11 and is arranged parallel to the rocket body 11. The bottom end of the connecting part 21 has an extension part 22. The connecting part 21 has a twisting part 23. The twisting part 23 is twisted at a specific angle relative to the top surface of the connecting part 21. The top surface of the twisting part 23 has a wing surface 24. The twisting arrangement of the twisting part 23 causes the wing surface 24 to twist at a certain angle relative to the central axis of the rocket body 11. This toy rocket set includes multiple rockets, each with a different twist angle between the twisted part 23 and the top surface of the connecting part 21. During flight, the twist design of the side wings 20 causes the rocket to rotate around its own axis. Under the gyroscopic effect, this effectively resists airflow interference, significantly improves flight stability, reduces swaying and deviation, optimizes aerodynamic performance, and helps it fly farther. At the same time, the different twist angles of the side wings, combined with the different launch angles of the launcher, produce a variety of flight trajectories, greatly enhancing the fun and novelty of playing, stimulating the player's desire to explore, and improving the competitive entertainment value of the toy.

[0033] The arrow body 11 is made of soft foam material, and a firing hole 12 is formed in the arrow body 11. The firing hole 12 extends through one end of the bottom of the arrow body 11, and the other end of the firing hole 12 is a sealed structure. The diameter of the firing hole 12 matches the diameter of the jet tube in the firing mechanism. The firing hole 12 allows the arrow body 11 to be fitted into the jet tube, so that the arrow body 11 can be ejected under the action of air pressure pulse after the player compresses the driving airbag to generate an air pulse in the jet tube. A light source (not shown) is fixedly installed at the top of the firing hole 12 in the arrow body 11. An arrowhead 13 is provided above the arrow body 11 and is connected to the arrow body 11. The arrowhead 13 can reduce the air resistance encountered by the arrow body 11 during ejection. At the same time, the arrowhead 13 is connected to the arrow body 11 by a snap-fit ​​method, which facilitates the replacement of the energy in the light source.

[0034] The connecting portion 21 is fixedly disposed at the lower end of the arrow body 11 and is arranged parallel to the arrow body 11. The width of the connecting portion 21 is greater than the thickness of the twisted portion 23. The connecting portion 21 serves to connect the twisted portion 23 to the arrow body 11. An extension portion 22 is provided at the lower end of the connecting portion 21. The extension portion 22 is an integral structure with the connecting portion 21. The extension portion 22 can strengthen the connection strength between the connecting portion 21 and the arrow body 11. At the same time, the extension portion 22 can also strengthen the connection strength between the connecting portion 21 and the twisted portion 23.

[0035] The twisted portion 23 is disposed above the connecting portion 21, located in the middle of the connecting portion 21, and is integrally formed with the connecting portion 21. One end of the twisted portion 23 is disposed at the top of the connecting portion 21, and the other end extends to the end of the extension portion 22. The twisted portion 23 is twisted relative to the top surface of the connecting portion 21 at a specific angle. Specifically, the left side of the twisted portion 23 at one end of the extension portion 22 forms an angle with the top surface of the connecting portion 21. This angle can be 5-60 degrees, preferably 15, 30, 45, or 60 degrees. This angle extends upwards from the left side of the twisted portion 23 and the top surface of the connecting portion 21, and the angle gradually increases. When the connecting part 21 reaches the middle position, the angle between the left side of the twisted part 23 and the top surface of the connecting part 21 becomes 90 degrees. Then, this angle continues to extend upward until the top of the twisted part 23. At this time, the angle formed between the right side of the top of the twisted part 23 and the top surface of the connecting part 21 is the same as the angle between the left side of the bottom of the twisted part 23 and the top surface of the connecting part 21. Moreover, the twisted surface of the twisted part 23 is a smooth curved surface, so that the twisted part 23 forms a smooth airflow channel, thereby optimizing the aerodynamic performance of the side wing 20 and reducing flight drag.

[0036] The wing surface 24 is disposed on the twisted part 23 and is manufactured with the twisted part 23 by an integrated molding process. Under the setting of the twisted structure of the twisted part 23, the wing surface 24 is twisted relative to the central axis of the arrow body 11 by a specific angle. This specific angle changes with the angle between the top surface of the twisted part 23 and the connecting part 21.

[0037] Preferably, the angle between the top surface of the twisted part 23 and the connecting part 21 in different rockets within the same toy set can be set to different sizes. Different angles result in varying aerodynamic forces on the side wings 20 during rocket flight, generating different torques and causing the rockets to rotate at different speeds and in different directions around their own axes, thus creating diverse flight trajectories. For example, some rockets rotate quickly with straight trajectories, while others rotate slowly with curved trajectories, providing players with a rich visual experience. Simultaneously, the different flight trajectories of different rockets greatly enhance the game's fun. By exploring the flight performance of different rockets and repeatedly attempting to launch them, the enjoyment of play is increased. The diverse twisted parts 23 encourage children to explore the relationship between the angle of the twisted parts in different rockets and their flight trajectories. They will actively think about why some rockets fly farther and why some have unusual trajectories, stimulating curiosity and a desire to explore, and developing their thinking skills. In multiplayer scenarios, players can combine rockets with different angles and launch angles to develop different gameplay strategies, choose more advantageous rockets, and participate in the competition by combining different launch angles, increasing the competitiveness and entertainment value, and making the game more challenging and attractive.

[0038] The rest of this embodiment is the same as that in Embodiment 1. Features not explained in this embodiment are explained using the methods in Embodiment 1, and will not be repeated here.

[0039] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A toy rocket projectile, characterized by: Includes the arrow body (10) and the flanks (20); The arrow body (10) is composed of an arrow body (11), a firing hole (12) and an arrowhead (13). The arrow body (11) has a firing hole (12) and an arrowhead (13) on top of the arrow body (11). The side wing (20) is connected to the arrow body (10) and is composed of a connecting part (21), an extension part (22), a twisting part (23) and a wing surface (24). The connecting part (21) is fixed to the arrow body (11) and is arranged parallel to the arrow body (11). The bottom end of the connecting part (21) is provided with an extension part (22). The connecting part (21) is provided with a twisting part (23). The top surface of the twisting part (23) is provided with a wing surface (24). The twisting arrangement of the twisting part (23) causes the wing surface (24) to twist at a certain angle relative to the central axis of the arrow body (11). In the same set of toys, the twisting angle of the twisted part (23) relative to the top surface of the connecting part (21) of each rocket is different.

2. A toy rocket projectile according to claim 1, wherein: The arrow body (11) is made of soft foam material. The launch hole (12) is provided through one end of the bottom of the arrow body (11) and the other end is a sealed structure. The diameter of the launch hole (12) matches the diameter of the jet tube in the launch mechanism.

3. A toy rocket according to claim 1, wherein: A light source is fixedly provided at the top of the launch hole (12) in the arrow body (11), and the arrowhead (13) is connected to the arrow body (11) by a snap-fit ​​method.

4. The toy rocket projectile of claim 1 wherein: The width of the connecting part (21) is greater than the thickness of the twisted part (23), and the lower end of the connecting part (21) and the extension part (22) are integral structures.

5. The toy rocket projectile of claim 1, wherein: The twisted part (23) is located above the connecting part (21) and in the middle of the connecting part (21). It is an integral structure with the connecting part (21). One end of the twisted part (23) is located at the top of the connecting part (21), and the other end extends to the end of the extension part (22). The twisted part (23) is twisted at a specific angle relative to the top surface of the connecting part (21). At one end of the extension part (22), the left side of the twisted part (23) forms an angle with the top surface of the connecting part (21). The angle ranges from 5 to 60 degrees. The angle extends upward along the left side of the twisted part (23) and the top surface of the connecting part (21), and the angle gradually increases. The twisted surface of the twisted part (23) is a smooth curved surface.

6. A toy rocket according to claim 1 or 5, characterized in that: In the same set of toys, the torsion angle of the twisted part (23) of each rocket relative to the top surface of the connecting part (21) can be set to 5, 15, 30, 45 and 60 degrees.

7. The toy rocket projectile of claim 1, wherein: The wing surface (24) and the twisted part (23) are manufactured by an integrated molding process. The specific angle at which the wing surface (24) is twisted relative to the central axis of the arrow body (11) varies with the angle between the top surface of the twisted part (23) and the connecting part (21).