Chemiluminescence device capable of rotating after combination
The combined rotating chemiluminescent device solves the problems of existing rotating toys that cannot emit light at night and have a short rotation time. It realizes the combination of luminescence and rotation functions, extends the rotation time and meets multi-functional requirements, maintaining low cost and high cost performance.
Patent Information
- Application Number
- CN202422496975.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-16
AI Technical Summary
Existing rotating toys cannot emit light at night, have a short rotation time, and have a single function. They cannot meet the use needs of children in different lighting environments and are expensive.
A chemiluminescent device that can be assembled and rotated is designed. Through the ingenious combination of components such as the special-shaped main chemiluminescent stick, rotating structural accessories, side chemiluminescent sticks, supporting structural parts and limiting clips, the combination of luminescence and rotation functions is achieved, and the stability and rotation time of the device are enhanced.
The rotation status can be clearly displayed in low-light environments, the rotation time can be extended, and multi-functional needs can be met. The structure can be kept simple and low-cost, thereby improving the practicality and cost-effectiveness of the toy.
Smart Images

Figure CN223336763U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of chemiluminescent devices, in particular to a chemiluminescent device that can be assembled and rotated. Background Art
[0002] In the current toy market, rotating combination toys have long been a favorite among children. These toys primarily rely on mechanical structures, such as the coordination of gears and shafts, or simple physical principles like centrifugal force and gravity to achieve their rotational function. These toys play a vital role in children's development, stimulating their curiosity, developing their hands-on skills, and providing them with fun and entertaining experiences. However, with evolving market demands and children's increasing expectations for toy functionality, these existing rotating toys face significant limitations.
[0003] Most existing rotating toys can only be used during the day. This is primarily because they lack visibility in low-light environments (such as at night) and lack self-luminous features. At night or in dimly lit environments, children struggle to see the toy's rotation, significantly shortening the effective timeframe for children to play with these toys. This time constraint results in low toy utilization and fails to fully meet children's need for play at any time.
[0004] Due to limitations in structural design or power sources, existing rotating toys often suffer from a short rotation time. In terms of toy design, some unreasonable structural layouts can increase friction or hinder smooth rotation, causing the rotation speed to gradually decrease until it stops. Furthermore, rotating toys powered by simple springs or small batteries, for example, have limited power reserves and cannot sustain rotation for extended periods. This prevents children from fully enjoying the fun of the rotation. Just when they are immersed in the wonderful experience of spinning, the toy stops rotating, which undoubtedly reduces the toy's fun and appeal.
[0005] Existing rotating toys lack structural innovation. Most simply feature mechanical rotation, failing to integrate multiple functions (such as light and rotation) into a simple, low-cost structure. In terms of functional diversity, simply having a single rotating function can no longer meet children's growing demand for novel and multifunctional toys. Furthermore, if multifunctionality is not achieved while maintaining a simple structure and low cost, it will be difficult to meet consumers' demand for cost-effective toys. Consumers want toys that offer a variety of interesting functions at an affordable price.
[0006] In summary, existing rotating toys have many deficiencies in terms of functionality and usage scenarios, and are no longer well adapted to market development and children's needs. Therefore, a new solution is urgently needed to overcome these problems and meet market demands for rotating toys that can be used at night, rotate for long periods of time, and are multifunctional and low-cost. Utility Model Content
[0007] In view of this, the present invention aims to provide a chemiluminescent device that can be assembled and rotated. This solves the problems of easy assembly of rotating toys, not only being limited to daytime play but also being unable to play at night and shortening the rotation time. To achieve the above objectives, the technical solution of the utility model is implemented as follows:
[0008] The utility model relates to a chemiluminescent device which can be assembled and rotated, comprising a special-shaped main chemiluminescent rod, a rotating structural accessory, a side chemiluminescent rod, a supporting structural member, and a limiting clip. The special-shaped main chemiluminescent rod is a rod body with one end larger than the other end. The rotating structural accessory is provided with a central through hole A, and the supporting structural member is provided with a central through hole B. The special-shaped main chemiluminescent rod passes through the central through hole A and the central through hole B respectively. A plurality of side chemiluminescent rods are arranged in a surrounding shape, with one end embedded in an oblique angle slot on the end face of the rotating structural accessory and the other end embedded in an outwardly uniformly distributed semi-enclosed slot on the end face of the supporting structural member. The limiting clip is clamped on the special-shaped main chemiluminescent rod and the lower part of the supporting structural member. The special-shaped main chemiluminescent stick passes through the central through-hole of the rotating structural accessories and the supporting structural parts to form the main support and rotating axis structure of the device; a number of side chemiluminescent sticks are arranged around and respectively embedded in the rotating structural accessories and the supporting structural parts, providing a side luminous effect for the device and playing a certain stabilizing or decorative role during rotation; a limiting clip is clamped on the special-shaped main chemiluminescent stick and is located at the lower part of the supporting structural part, which is used to limit the relative position of each component, prevent axial displacement of the components during use, and ensure the overall structural stability of the device; in addition, the large end of the special-shaped main chemiluminescent stick is the force-generating end.
[0009] In a structure that can optimize the above solution, the surface of the special-shaped main chemiluminescent stick is evenly covered with protrusions. The protrusions can increase friction and cooperate with the rotating structural parts and the supporting structural parts to play a fixing role.
[0010] In a structure that optimizes the above solution, the small end of the special-shaped main chemiluminescent stick is a smooth arc-shaped rotating head. The smooth arc-shaped rotating head facilitates the insertion of rotating structural accessories and supporting structural parts, and also avoids safety hazards such as scratches caused by sharp edges.
[0011] In a structure that optimizes the aforementioned solution, the number of side chemiluminescent sticks is no less than two, evenly distributed around the special-shaped main chemiluminescent stick. The side chemiluminescent sticks provide a luminous effect from multiple sides. A single luminescent stick cannot provide sufficient light or a full range of visual effects. Multiple side chemiluminescent sticks can produce a more uniform and brilliant luminous effect during rotation, enhancing the visibility and aesthetics of the device in low-light environments. Furthermore, more side chemiluminescent sticks can improve the stability and balance of the device's rotation, increasing the rotation time.
[0012] In a structure that can optimize the above-mentioned solution, the rotating structural accessory is one of circular, rectangular, and square.
[0013] In a structure that optimizes the aforementioned solution, a rib A is disposed within the oblique slot on the end face of the rotating structural accessory. Rib A acts as a reinforcing rib. On the one hand, it enhances the structural strength of the oblique slot, preventing deformation during installation of a side chemiluminescent stick or during device rotation. On the other hand, rib A facilitates the positioning of the side chemiluminescent stick, ensuring a more secure installation within the slot and reducing its wobble during use.
[0014] In a structure that optimizes the aforementioned solution, a rib B is provided within the semi-enclosed slot on the support structure. Ribs B enhance the structural strength of the semi-enclosed slot, preventing deformation during installation of the side chemiluminescent stick or during device rotation. They also facilitate accurate installation and secure fixation of the side chemiluminescent stick within the slot, ensuring its positional stability during rotation.
[0015] In a structure that optimizes the aforementioned solution, the outer diameter of the side chemiluminescent stick is 4mm to 6mm, and its length is half that of the shaped main chemiluminescent stick. This suitable outer diameter ensures that the side chemiluminescent stick has sufficient luminous area while facilitating installation with the slots and retaining grooves on the rotating structural components and support structure. The side chemiluminescent stick is half the length of the shaped main chemiluminescent stick, based on considerations of overall structural proportions and luminous effect.
[0016] In a structure that optimizes the aforementioned solution, the limit clip is retained within a slot on the shaped main chemiluminescent stick. The slot precisely limits the position of the limit clip on the shaped main chemiluminescent stick, preventing the limit clip from sliding or shifting on the main chemiluminescent stick. This ensures that the limit clip accurately limits the entire device structure and maintains the relative positional relationships between the various components of the device.
[0017] In one configuration that optimizes the aforementioned solution, the retaining clip is provided with an anti-loosening protrusion. This protrusion prevents the retaining clip from accidentally coming loose from the slot of the shaped main chemiluminescent stick. During use, the device may be subjected to forces such as vibration and rotation. The anti-loosening protrusion enhances the stability of the connection between the retaining clip and the slot, ensuring the structural integrity of the entire device.
[0018] In a structure that optimizes the aforementioned solution, the length of the shaped main chemiluminescent stick is five times the combined thickness of the rotating structural component and the supporting structure. This length ratio is based on considerations of the mechanical properties and functional implementation of the overall structure. The length from the large end of the shaped main chemiluminescent stick to the end face of the rotating structural component and the length from the small end of the shaped main chemiluminescent stick to the end face of the supporting structure maintains a 3:2 ratio, which helps ensure the structural stability of the entire device and ensures mechanical compatibility between the components.
[0019] In a structure that can optimize the above-mentioned solution, the connection between the special-shaped main chemiluminescent rod and the rotating structural accessory is a snap connection or a threaded connection.
[0020] Compared with the prior art, the chemiluminescent device that can be assembled and rotated according to the present invention has the following advantages:
[0021] 1. Breaking through usage time limitations and integrating functions: This utility model's chemiluminescent device achieves its luminescence function through a structure that includes a special-shaped main chemiluminescent rod and side chemiluminescent rods, eliminating the need for daytime use. The rotational state can be clearly observed even in low-light environments, extending the usable time range and increasing the toy's utilization rate, satisfying children's need for play at any time. Furthermore, the device integrates chemiluminescence and rotation functions into a simple structure, eliminating the problem of single functionality and enhancing practicality in various scenarios.
[0022] 2. Extend the rotation time: The number of side chemiluminescent sticks is no less than 2, and they are evenly distributed around the special-shaped main chemiluminescent stick, which can not only provide a better luminous effect, but also improve the stability and balance of the rotation, reduce factors that hinder rotation, extend the rotation time, and let children enjoy the fun of rotation more fully. The length of the special-shaped main chemiluminescent stick is the thickness of the rotating structural accessories and the supporting structural parts and maintains a specific ratio (5 times), which helps to ensure structural stability and reduce energy loss, so that it can rotate longer when the power source is constant. In addition, the overall structure of the device is symmetrical, so that the force in all directions during the rotation process is more uniform, avoiding energy loss and rotation hindrance caused by uneven force, which helps to extend the rotation time. The small end of the special-shaped main chemiluminescent stick is a smooth arc surface with a small diameter, which has little friction with the plane and is subject to little frictional resistance during rotation, reducing the proportion of energy consumption in overcoming friction, which is also conducive to extending the rotation time.
[0023] 3. Innovative Multifunctional Structure: The device's unique structural design, comprised of a clever combination of multiple components, achieves both luminescence and rotational functionality. This innovative structure meets multifunctional requirements while maintaining simplicity and cost-effectiveness, meeting cost-performance requirements. For example, ribs A within the angled slots and ribs B within the semi-enclosed slots enhance component strength, facilitate side-mounted chemiluminescent stick installation and positioning, and ensure rotational stability and reliability.
[0024] 4. In terms of structural stability, the protrusions on the surface of the special-shaped main chemiluminescent stick increase friction with other components, acting as a fixing mechanism. The anti-loosening protrusions in the limit clip slot ensure the relative position of the components and guarantee structural integrity. In terms of safety and operational convenience, the smooth curved rotating head on the small end of the special-shaped main chemiluminescent stick facilitates insertion of components and avoids scratches. The connection method is a snap-on or threaded connection, which is simple and convenient to operate and easy to assemble and disassemble. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The accompanying drawings, which constitute part of the present invention, are intended to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are intended to explain the present invention and do not constitute an improper limitation of the present invention. In the accompanying drawings:
[0026] Figure 1 This is a schematic structural diagram of the chemiluminescent device that can be assembled and rotated according to the present invention;
[0027] Figure 2 This is an exploded view of the structure of the chemiluminescent device that can be assembled and rotated according to the present invention;
[0028] Figure 3 This is a cross-sectional view of the chemiluminescent device that can be assembled and rotated according to the present invention;
[0029] Figure 4 This is a schematic structural diagram of the rotating structural accessory of the present invention;
[0030] Figure 5 This is a schematic structural diagram of the support structure of the present invention;
[0031] Figure 6 This is a structural diagram of the limit clip described in the utility model;
[0032] Figure 7 This is a schematic structural diagram of the special-shaped main chemiluminescent stick described in the present invention.
[0033] Description of reference numerals:
[0034] 1. Main chemiluminescent stick, 2. Rotating structural accessories, 3. Side chemiluminescent stick, 4. Supporting structural parts, 5. Limiting clip;
[0035] 11. Protrusion, 12. Slot, 13. Smooth arc rotating head;
[0036] 21. Oblique angle slot, 22. Rib A, 23. Center through hole A;
[0037] 41. Semi-enclosed slot, 42. Center through hole B, 43. Rib B;
[0038] 51. Anti-loosening limit protrusion. DETAILED DESCRIPTION
[0039] It should be noted that, in the absence of conflict, the embodiments of the present invention and the features therein can be combined with each other.
[0040] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, features defined as "first", "second", etc. may explicitly or implicitly include one or more of the features. In the description of the present invention, unless otherwise specified, "multiple" means two or more.
[0041] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0042] The present invention will be described in detail below with reference to the accompanying drawings and in combination with embodiments.
[0043] Example 1:
[0044] Materials preparation:
[0045] Prepare a special-shaped main chemiluminescent stick 1, a circular rotating structural accessory 2, three side chemiluminescent sticks 3, a supporting structure 4, and a limiting clip 5. These components are manufactured in accordance with the design requirements of the above-mentioned utility model. For example, the outer diameter of the side chemiluminescent stick 3 is 5 mm, within the range of 4 mm-6 mm, and the length of the special-shaped main chemiluminescent stick 1 is 5 times the sum of the thicknesses of the rotating structural accessory 2 and the supporting structure 4.
[0046] Assembly process:
[0047] First, the smooth arc-shaped rotating head 13 of the small end of the special-shaped main chemiluminescent stick 1 is passed through the central through hole A23 of the rotating structure accessory 2. Due to the design of the smooth arc-shaped rotating head 13, it can pass through easily. Then, the special-shaped main chemiluminescent stick 1 is passed through the central through hole B42 of the supporting structure 4.
[0048] Next, install the three side chemiluminescent sticks 3 separately. One end of each side chemiluminescent stick 3 is embedded in the oblique angle slot 21 on the end face of the rotating structural component 2. Because the oblique angle slot 21 is provided with a rib A22, the rib A22 positions and stabilizes the side chemiluminescent stick 3, allowing the side chemiluminescent stick 3 to be accurately installed in the slot and not easily shaken. The other end of the side chemiluminescent stick 3 is then embedded in the semi-enclosed slot 41 uniformly distributed outward on the end face of the supporting structure 4. The rib B43 inside the semi-enclosed slot 41 also enhances the structural strength of the slot, ensuring the positional stability of the side chemiluminescent stick 3 in the slot.
[0049] Finally, the limit clip 5 is clamped in the slot 12 on the special-shaped main chemiluminescent stick 1. The anti-loosening limit protrusion 51 on the limit clip 5 ensures that the limit clip 5 will not accidentally loosen from the slot 12. At this time, the limit clip 5 is located at the lower part of the supporting structure 4, completing the assembly of the entire device.
[0050] Basic functional test:
[0051] In a dimly lit environment, activate the chemiluminescent function of the special-shaped main chemiluminescent stick 1 and the side chemiluminescent stick 3, for example, by bending and the like to trigger the chemiluminescent reaction. Hold the large end of the special-shaped main chemiluminescent stick 1 in the hand, gently turn it, and observe the rotation of the device. Since there are three side chemiluminescent sticks 3, a relatively uniform and gorgeous luminous effect is produced during rotation. At the same time, multiple side chemiluminescent sticks 3 improve the rotational stability and balance of the device, making the rotation smooth and lasting longer. The protrusions 11 evenly distributed on the surface of the special-shaped main chemiluminescent stick 1 cooperate with the rotating structure accessories 2 and the supporting structure 4 to ensure the stability of the relative positions of the various components during the rotation process.
[0052] Example 2: Comparison of shapes of different rotating structure accessories
[0053] Materials preparation:
[0054] Prepare 3 sets of materials with the same components except for the shape of the rotating structure parts 2. One set of rotating structure parts 2 is circular, one is rectangular, and one is square.
[0055] Assembly and testing process:
[0056] The three sets of materials are assembled separately, and the assembly process is the same as that of Example 1.
[0057] After assembly, the three different shapes of rotating structural accessories 2 were subjected to rotation tests. Under the same rotation force, it was found that the device with the circular rotating structural accessory 2 rotated the smoothest. This is because the circle has no edges and corners, and the force is more evenly distributed during rotation, which reduces the jamming phenomenon. When the device with the rectangular rotating structural accessory 2 rotates in a specific direction, there will be slight shaking due to the difference in the side length of the rectangle, but the rotation stability is better in the direction that matches the side length of the rectangle. The rotation stability of the device with the square rotating structural accessory 2 is between the circular and rectangular ones. The rotation stability in all directions is relatively balanced, but the overall rotation smoothness is slightly inferior to that of the device with the circular rotating structural accessory 2.
[0058] Example 3: Effect of connection mode on device stability
[0059] Materials preparation:
[0060] Prepare two sets of device components, one set of special-shaped main chemiluminescent sticks 1 is connected to the rotating structure accessories 2 by a snap connection method, and the other set is connected by a threaded connection method.
[0061] Assembly and testing process
[0062] Assemble the two sets of devices separately according to the assembly steps of Example 1.
[0063] The two sets of devices were subjected to rotation and shaking tests. During normal rotation, both connection methods can ensure the normal rotation of the device. However, when a certain external force is applied to the device to shake it, it is found that the overall structure of the device with a threaded connection method is more stable, and it is not easy for the special-shaped main chemical luminescent stick 1 and the rotating structure accessory 2 to loosen. When the device with a clip-on connection method is subjected to a large external shaking force, although it can maintain a certain stability due to the effect of structures such as the protrusion 11 on the surface of the special-shaped main chemical luminescent stick 1, its connection stability is slightly worse than that of the threaded connection method. However, the clip-on connection method does not require the use of tools during the assembly process, and the operation is more convenient and quick.
[0064] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A chemiluminescent device that can be assembled and rotated, characterized in that: The invention comprises a special-shaped main chemical luminescent stick (1), a rotating structural accessory (2), a side chemical luminescent stick (3), a supporting structural member (4), and a limiting clip (5). The special-shaped main chemical luminescent stick (1) is a stick body with one end larger than the other end. The rotating structural accessory (2) is provided with a central through hole A (23), and the supporting structural member (4) is provided with a central through hole B (42). The special-shaped main chemical luminescent stick (1) passes through the central through hole A (23) and the central through hole B (42) respectively. A plurality of side chemical luminescent sticks (3) are arranged in a surrounding shape, with one end embedded in an oblique angle slot (21) on the end face of the rotating structural accessory (2), and the other end embedded in an outwardly uniformly distributed semi-enclosed slot (41) on the end face of the supporting structural member (4). The limiting clip (5) is clamped on the special-shaped main chemical luminescent stick (1) and the lower part of the supporting structural member (4).
2. The rotatable chemiluminescent device according to claim 1, characterized in that: The surface of the special-shaped main chemiluminescent stick (1) is evenly covered with protrusions (11).
3. The rotatable chemiluminescent device according to claim 1, characterized in that: The small end of the special-shaped main chemiluminescent stick (1) is a smooth arc-surface rotating head (13).
4. The rotatable chemiluminescent device according to claim 1, characterized in that: The number of the side chemiluminescent rods (3) is not less than 2 and they are evenly distributed around the special-shaped main chemiluminescent rod (1).
5. The rotatable chemiluminescent device according to claim 1, characterized in that: The rotating structural accessory (2) is in the shape of a circle, a rectangle or a square.
6. The rotatable chemiluminescent device according to claim 1, characterized in that: A rib column A (22) is provided inside the oblique angle slot hole (21) on the end surface of the rotating structural accessory (2).
7. The rotatable chemiluminescent device according to claim 1, characterized in that: A rib column B (43) is provided inside the semi-enclosed slot (41) on the supporting structure (4).
8. The rotatable chemiluminescent device according to claim 1, characterized in that: The outer diameter of the side chemiluminescent rod (3) is 4 mm to 6 mm, and the length of the side chemiluminescent rod (3) is half the length of the special-shaped main chemiluminescent rod (1).
9. The rotatable chemiluminescent device according to claim 1, characterized in that: The limiting clip (5) is clamped in the clamping slot (12) on the special-shaped main chemiluminescent stick (1).
10. The rotatable chemiluminescent device according to claim 1, characterized in that: The limit clip (5) is provided with an anti-loosening limit protrusion (51).