Battery assembly structure of cup

The rotary locking structure solves the problem of difficult disassembly and vibration-falling of the cup battery, which achieves convenient installation and stable connection, and improves the flexibility and safety of the equipment.

CN223296955UActive Publication Date: 2025-09-02FOSHAN BEIWA BABY PROD CO LTD
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Patent Information

Application Number
CN202422150401.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-09-02
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The existing cup-body battery structure is difficult to disassemble and install easily, and it is easy to fall off under vibration or impact, affecting the stability and safety of the equipment.

Method used

The battery part and the cup main body are locked by rotary means, and the battery part and the cup main body are stablely connected by the engagement and inclined guide design of the first and second mounting structures.

Benefits of technology

Improves the convenience of battery removal and installation, enhances the flexibility and stability of the equipment, ensures that the battery does not fall off during movement or accidental collision, and provides safe battery fixation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cup body structures, and discloses a battery assembly structure of a cup, which comprises a cup main body and a battery part, a first mounting structure is arranged on the cup main body, and a second mounting structure is arranged on the battery part; when the battery part is mounted on the cup main body, the battery part is rotated towards the first direction, so that the second mounting structure is clamped with the first mounting structure, and the battery part and the cup main body are fixed; and when the battery part is detached from the cup main body, the battery part is rotated towards the second direction, so that the second mounting structure is separated from the first mounting structure, and the battery part is detached. According to the battery assembly structure, the battery part and the cup main body are locked in a rotating mode, so that the convenience of disassembly and assembly is improved. A user can easily separate the battery part from the cup main body without complicated operation, so that the operation is simpler and quicker when the battery needs to be replaced, the cup body needs to be charged or the cup body needs to be cleaned.
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Description

Technical Field

[0001] The utility model relates to the technical field of cup body structures, in particular to a battery assembly structure of a cup. Background Art

[0002] The battery assembly structure of the cup refers to a battery installation and fixing mechanism designed for use in portable cup devices, which ensures that the battery part can be firmly installed on the cup body and will not fall off during normal use or carrying. By connecting the battery component to the cup body, power can be provided for certain functions of the cup body (such as heating, cooling, etc.).

[0003] In the prior art, many battery-equipped cup body designs fix the battery and the cup body as a whole. This design approach has certain limitations. Specifically, this integrally fixed structure makes it difficult for users to conveniently separate the battery from the cup body and use it separately. When it is necessary to replace the battery or clean the cup body, this fixing method is not only difficult to disassemble, but may also be inconvenient when reinstalling. In addition, for designs that only use a snap-fit ​​method to fix the battery and the cup body, if the cup body is vibrated or impacted during use, the battery component can easily separate from the cup body due to loose snap-fitting, which not only affects the stability of the device, but may also cause the battery to fall off accidentally. Utility Model Content

[0004] In order to solve one or more problems in the prior art, the present invention provides a battery assembly structure for a cup.

[0005] The technical solution of the utility model is as follows: A battery assembly structure for a cup, comprising: a cup body and a battery part, wherein the cup body is provided with a first mounting structure, and the battery part is provided with a second mounting structure; when the battery part is installed in the cup body, the battery part is rotated in a first direction so that the second mounting structure is engaged with the first mounting structure to achieve fixation of the battery part and the cup body; when the battery part is removed from the cup body, the battery part is rotated in a second direction so that the second mounting structure is separated from the first mounting structure to achieve disassembly of the battery part.

[0006] According to the above technical solution, in the battery assembly structure of the cup, the first mounting structure includes a plurality of groups of first clamping blocks, and the first clamping blocks are arranged on the cup body and are used to rotate and engage with the second mounting structure.

[0007] By adopting the above-mentioned technical solutions, in the battery assembly structure of the cup, the second mounting structure includes several groups of second card blocks, and the second card blocks are arranged on the battery part. The second card blocks are L-shaped structures, which are used to make the first card block enter the second card block to achieve abutment limitation when the second card block rotates in the first direction.

[0008] By adopting the above technical solutions, in the battery assembly structure of the cup, the second clamping block is provided with an inclined surface structure for contacting and guiding the first clamping block when the second clamping block rotates in the first direction.

[0009] By adopting the above technical solutions, in the battery assembly structure of the cup, a protruding structure is further provided on the battery portion, and the second mounting structure is provided on the peripheral side of the protruding structure.

[0010] By adopting the above-mentioned technical solutions, in the battery assembly structure of the cup, a groove structure is further provided on the side of the cup body close to the protruding structure, and the first mounting structure is provided on the peripheral side of the groove structure; when the battery part is installed on the cup body, the protruding structure enters the groove structure.

[0011] By adopting the above technical solutions, in the battery assembly structure of the cup, an electronic control component is further provided on the cup body near the battery portion for electrically connecting to the battery portion.

[0012] By adopting the above technical solutions, in the battery assembly structure of the cup, a positive connecting tube and a negative connecting tube are provided on the electronic control component, the positive connecting tube is connected to the positive end of the battery part, and the negative connecting tube is connected to the negative end of the battery part.

[0013] By adopting the above technical solutions, in the battery assembly structure of the cup, a charging interface is also provided on the electronic control component.

[0014] By adopting the above technical solutions, in the battery assembly structure of the cup, the number of the second card blocks is the same as the number of the first card blocks.

[0015] In the utility model, the battery assembly structure significantly improves the convenience of disassembly and installation by locking the battery part and the cup body in a rotating manner. Users no longer need complicated operations to easily separate the battery part from the cup body, so that when the battery needs to be replaced, charged or cleaned, the operation becomes simpler and faster. The battery part can be used independently of the cup body, which increases the flexibility of use of the device. Users can choose whether to carry the battery part according to actual needs, which reduces the weight of the device to a certain extent and makes it more portable. The improved fixing mechanism effectively solves the problem of separation of the battery part and the cup body due to vibration or impact. The rotary locking structure can provide a more stable fixing effect, which can keep the battery part firm even in the case of movement or accidental collision, thereby ensuring the stability and safety of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 This is a schematic diagram of the cross-sectional structure of the battery portion of the present utility model;

[0018] Figure 3 This is a schematic diagram of the overall cross-sectional structure of the present utility model;

[0019] Figure 4 This is a schematic structural diagram of the second card block of the present invention;

[0020] Figure 5 This is a schematic structural diagram of the first card block of the present utility model;

[0021] Among them, 1. cup body; 2. battery part; 3. first card block; 4. second card block; 20. protrusion structure; 21. electronic control component; 10. groove structure; 210. positive electrode connecting tube; 211. negative electrode connecting tube; 212. charging interface; 40. inclined structure.

[0022] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0024] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to mechanical connections, direct connections, or indirect connections through an intermediate medium; they may refer to internal communication between two components or the interaction 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.

[0025] In the present utility model, it should also be noted that the directional terms such as one side, one end, the other end, top and bottom in the embodiments of the present application are merely relative concepts or are based on the normal use status of the product, and should not be considered as restrictive.

[0026] like Figure 1 and Figure 2As shown, an embodiment of the present application provides a battery assembly structure for a cup, comprising: a cup body 1 and a battery unit 2. The cup body 1 is provided with a first mounting structure, and the battery unit 2 is provided with a second mounting structure. When the battery unit 2 is installed in the cup body 1, the battery unit 2 is rotated in a first direction to engage the second mounting structure with the first mounting structure, thereby securing the battery unit 2 to the cup body 1. When the battery unit 2 is removed from the cup body 1, the battery unit 2 is rotated in a second direction to separate the second mounting structure from the first mounting structure, thereby removing the battery unit 2. In this embodiment, the cup body 1 is the main structure of the device, used to hold liquids or other substances. The battery unit 2 is a separate component, containing a battery, used to provide power to the cup. This separate design allows the battery unit 2 to be maintained and replaced independently of the cup body 1, increasing the device's flexibility and lifespan. The first mounting structure, located on the cup body 1 and typically a set of snaps or other shaped interfaces, mates with the second mounting structure of the battery unit 2. This provides a physical connection point between the battery unit 2 and the cup body 1, ensuring its secure and stable fit. The second mounting structure, located on the battery unit 2 and corresponding to the first mounting structure on the cup body 1, can be a set of protrusions, snaps, or rotating plugs. Working in conjunction with the first mounting structure, it ensures precise docking and securement of the battery unit 2 to the cup body 1. The user simply rotates the battery unit 2 relative to the cup body 1 to engage the second mounting structure with the first, thereby securing the battery unit 2. This simplifies the installation process, reduces complex manual operations, and improves assembly convenience and speed. To remove the battery unit 2, the user rotates the battery unit 2 in the opposite direction to separate the second mounting structure from the first. This allows the user to easily remove the battery unit 2, making it easier to use the cup body alone or perform battery maintenance and replacement. When the battery unit 2 is not installed, the cup body 1 can be equipped with a power port, allowing the user to directly connect the power cord to the cup body 1 for use. This provides a backup power supply that does not rely on batteries, increasing the device's usability and convenience. When the battery unit 2 is installed and locked in the bottom of the cup body, the device can operate using both battery and power.

[0027] Specifically, the battery assembly structure significantly improves the convenience of disassembly and installation by locking the battery part 2 and the cup body 1 in a rotating manner. Users no longer need complicated operations to easily separate the battery part 2 from the cup body, so that when the battery needs to be replaced, charged or cleaned, the operation becomes simpler and faster. The battery part 2 can be used independently of the cup body 1, which increases the flexibility of use of the device. Users can choose whether to carry the battery part 2 according to actual needs, which reduces the weight of the device to a certain extent and makes it more portable. The improved fixing mechanism effectively solves the problem of separation of the battery part 2 from the cup body 1 due to vibration or impact. The rotary locking structure can provide a more stable fixing effect, and can keep the battery part 2 firm even in the event of movement or accidental collision, thereby ensuring the stability and safety of the device.

[0028] like Figure 4 and Figure 5As shown, the first mounting structure further includes several groups of first clamps 3, which are configured to rotate and engage with the second mounting structure. The second mounting structure includes second clamps 4, which are L-shaped and configured to engage and stop the first clamps 3 when the second clamps 4 are rotated in the first direction. In this embodiment, the first clamps 3 are located on the cup body 1 and are configured to engage with the second mounting structure of the battery unit 2. When the battery unit 2 is rotated into position, the first clamps 3 interact with the second clamps 4 to secure it. These groups of clamps provide multiple fixing points, increasing the contact area between the battery unit 2 and the cup body 1, thereby improving overall stability and securing effectiveness. By rotating the battery unit 2, the second clamps 4 on the second mounting structure interact with the first clamps 3, engaging them. This rotational action forces the first clamps 3 to enter the second clamps 4, creating a tight fit. This rotational engagement simplifies the installation process while ensuring that the battery unit 2 is securely fixed to the cup body 1, preventing loosening due to vibration or impact. The second block 4 is designed to be L-shaped, allowing it to capture and secure the first block 3 during rotation. This L-shaped structure provides restraint in two directions: horizontally and vertically, resulting in a more stable fixation. This L-shaped structure enhances the interaction between the second block 4 and the first block 3, improving the stability and reliability of the fixation point and reducing the relative movement of the battery unit 2 on the cup body 1. When the battery unit 2 rotates in the first direction, the L-shaped portion of the second block 4 guides the first block 3 into its internal cavity, achieving abutment and restraint. This rotation and guidance mechanism ensures that the first block 3 precisely enters the second block 4, effectively locking it and preventing the battery unit 2 from accidentally falling out. Once the first block 3 is rotated into position, a portion of it enters the internal cavity of the second block 4, forming a physical barrier that restricts further rotation or removal of the battery unit 2. This abutment and restraint mechanism provides additional safety, ensuring that the battery unit 2 will not loosen or fall out due to external forces after being secured, thereby enhancing the stability and safety of the overall assembly.

[0029] like Figure 4As shown, further, the second card block 4 is provided with an inclined surface structure 40 for contacting and guiding the first card block 3 when the second card block 4 rotates in the first direction. In this embodiment, the inclined surface structure 40 is provided on the second card block 4, and when the battery unit 2 rotates in the first direction, this inclined surface will contact the first card block 3. The design of the inclined surface enables the first card block 3 to be guided and positioned along the inclined surface during the rotation process. The inclined surface structure 40 provides a guiding function, helping the first card block 3 to smoothly enter the predetermined position in the second card block 4, thereby ensuring the accuracy and smoothness of the engagement process. The user rotates the battery unit 2 in the first direction relative to the cup body 1. This action causes the inclined surface on the second card block 4 to contact the first card block 3 and begin to guide the first card block 3. The rotational action enables the second card block 4 to be precisely aligned with the first card block 3, providing the necessary mechanical interaction for the engagement process and ensuring that the battery unit 2 can be firmly fixed to the cup body 1. As the second clamping block 4 rotates, the inclined surface contacts the first clamping block 3. The angle and shape of the inclined surface ensure that the first clamping block 3 moves along the predetermined path and ultimately enters the restricted position within the second clamping block 4. This contact-guiding mechanism simplifies the assembly process, reduces user operation complexity, and improves assembly accuracy. It ensures that the first clamping block 3 is correctly guided and secured during rotation, avoiding assembly failures caused by inaccurate alignment.

[0030] like Figure 4As shown, further, a protruding structure 20 is provided on the battery part 2, and the second mounting structure is provided on the circumferential side of the protruding structure 20. A groove structure 10 is also provided on the side of the cup body 1 close to the protruding structure 20, and the first mounting structure is provided on the circumferential side of the groove structure 10; when the battery part 2 is installed on the cup body 1, the protruding structure 20 enters the groove structure 10. In this embodiment, a protruding structure 20 is provided on the battery part 2, and this protruding structure 20 will be inserted into the groove structure 10 on the cup body 1 when the battery part 2 is installed on the cup body 1. The protruding structure 20 provides a physical connection point between the battery part 2 and the cup body 1, which helps to position the battery part 2 and ensure its alignment during the installation process. The second mounting structure (such as the second block 4) is located around the protruding structure 20. When the battery part 2 is rotated into place, the second mounting structure will interact with the first mounting structure of the cup body 1 to complete the fixation. This layout makes the battery part 2 more stable when fixed, because the second mounting structure not only relies on rotational locking, but also provides additional support through the protruding structure 20. A groove structure 10 is provided on the side of the cup body 1 close to the protruding structure 20. This groove is designed to receive the protruding structure 20 of the battery part 2. The groove structure 10 ensures the guidance and positioning of the battery part 2 during the installation process, so that the battery part 2 can be accurately docked with the cup body 1. The first mounting structure (such as the first block 3) is located around the groove structure 10. When the battery part 2 rotates and its protruding structure 20 enters the groove, the first mounting structure will interact with the second mounting structure to complete the locking. This design increases the contact area between the battery part 2 and the cup body 1, improves the stability of the fixing point, and ensures that the battery part 2 is smoothly fixed during rotation. When the battery part 2 is installed on the cup body 1, the protruding structure 20 of the battery part 2 is guided into the groove structure 10 of the cup body 1 through the rotation action to achieve preliminary positioning. This entry mechanism ensures precise alignment between the battery portion 2 and the cup body 1, providing an accurate starting position for subsequent rotational locking, thereby improving assembly accuracy and efficiency.

[0031] like Figure 3As shown, further, an electronic control component 21 is provided on the cup body 1 near the battery part 2 for electrically connecting to the battery part 2. The electronic control component 21 is provided with a positive connecting tube 210 and a negative connecting tube 211. The positive connecting tube 210 is connected to the positive end of the battery part 2, and the negative connecting tube 211 is connected to the negative end of the battery part 2. A charging interface 212 is also provided on the electronic control component 21. In this embodiment, the electronic control component 21 is located on the cup body 1 near the battery part 2. Its main function is to establish an electrical connection with the battery part 2, control the charging and discharging process of the battery, and may include other electronic control functions, such as voltage monitoring, current control, etc. The electronic control component 21 ensures the electrical connection between the battery part 2 and the cup body 1, so that the battery can provide power to other electronic components of the cup body, while also protecting the battery and the device from electrochemical damage such as overcharging and over-discharging. The positive and negative connection tubes 210 and 211 are part of the electronic control assembly 21 and connect to the positive and negative terminals of the battery unit 2, respectively. These connection tubes ensure good electrical contact between the positive and negative terminals of the battery and the electronic control assembly 21 through physical contact or spring pressure. The positive and negative connection tubes 211 provide a stable electrical connection, improving the efficiency and reliability of the battery's power supply while also facilitating battery replacement and maintenance. After the battery unit 2 is installed, the positive connection tube 210 connects to the positive terminal of the battery, ensuring that the battery's positive output is transmitted to the electronic control assembly 21. This connection ensures proper connection of the battery's positive terminal, provides a correct discharge path for the battery, and ensures the stability of the positive power supply of the circuit. Similarly, the negative connection tube 211 connects to the negative terminal of the battery, completing the circuit and enabling the battery to provide continuous current to the device. The negative connection tube 211 ensures proper connection of the battery's negative terminal and, together with the positive connection tube 210, forms a complete power output circuit, providing a stable power supply to the device. The electronic control assembly 21 is also equipped with a charging port 212 for connecting to an external power source or charger to charge the battery. The presence of the charging port 212 allows the battery unit 2 to be charged without disassembling, improving user convenience. It also provides a safe charging path, with the electronic control assembly 21 monitoring and managing the charging process to prevent safety issues such as overcharging and short circuits.

[0032] like Figure 4 and Figure 5 As shown, further, the number of the second clamping blocks 4 is the same as the number of the first clamping blocks 3. Since the first clamping blocks 3 and the second clamping blocks 4 are the same in number, they are evenly distributed on the cup body 1 and the battery part 2, providing multiple fixing points, which helps to evenly distribute the weight of the battery part 2 and external impact forces, thereby improving the overall stability and durability.

[0033] By adopting the above-mentioned technical solutions, the battery assembly structure of the utility model significantly improves the convenience of disassembly and installation by locking the battery part 2 and the cup body 1 in a rotational manner. Users no longer need complicated operations to easily separate the battery part 2 from the cup body, so that when the battery needs to be replaced, charged or cleaned, the operation becomes simpler and faster. The battery part 2 can be used independently of the cup body 1, which increases the flexibility of use of the device. Users can choose whether to carry the battery part 2 according to actual needs, which reduces the weight of the device to a certain extent and makes it more portable. The improved fixing mechanism effectively solves the problem of separation of the battery part 2 from the cup body 1 due to vibration or impact. The rotary locking structure can provide a more stable fixing effect, and can keep the battery part 2 firm even in the case of movement or accidental collision, thereby ensuring the stability and safety of the device.

[0034] The above are only preferred embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A cup battery assembly structure, characterized in that: include: A cup body (1) and a battery part (2), wherein the cup body (1) is provided with a first mounting structure, and the battery part (2) is provided with a second mounting structure; when the battery part (2) is installed on the cup body (1), the battery part (2) is rotated in a first direction so that the second mounting structure engages with the first mounting structure, thereby fixing the battery part (2) to the cup body (1); when the battery part (2) is removed from the cup body (1), the battery part (2) is rotated in a second direction so that the second mounting structure is separated from the first mounting structure, thereby removing the battery part (2).

2. The battery assembly structure of the cup according to claim 1, characterized in that: The first mounting structure comprises a plurality of groups of first clamping blocks (3), and the first clamping blocks (3) are arranged on the cup body (1) and are used for rotating and engaging with the second mounting structure.

3. The battery assembly structure of the cup according to claim 2, characterized in that: The second mounting structure comprises a plurality of groups of second card blocks (4), the second card blocks (4) being arranged on the battery portion (2), the second card blocks (4) being L-shaped and used for causing the first card block (3) to enter the second card block (4) to achieve abutment and limiting when the second card block (4) rotates in a first direction.

4. The battery assembly structure of the cup according to claim 3, characterized in that: The second clamping block (4) is provided with an inclined surface structure (40) for guiding the second clamping block (4) to contact with the first clamping block (3) when the second clamping block (4) rotates in the first direction.

5. The battery assembly structure of a cup according to claim 1, characterized in that: A protruding structure (20) is also provided on the battery portion (2), and the second mounting structure is provided on the peripheral side of the protruding structure (20).

6. The battery assembly structure of the cup according to claim 5, characterized in that: A groove structure (10) is also provided on one side of the cup body (1) close to the raised structure (20), and the first mounting structure is provided on the peripheral side of the groove structure (10); when the battery part (2) is mounted on the cup body (1), the raised structure (20) enters into the groove structure (10).

7. The battery assembly structure of a cup according to claim 6, characterized in that: An electric control component (21) is also provided on the cup body (1) near the battery part (2) for being electrically connected to the battery part (2).

8. The battery assembly structure of a cup according to claim 7, characterized in that: The electronic control component (21) is provided with a positive electrode connecting tube (210) and a negative electrode connecting tube (211), wherein the positive electrode connecting tube (210) is connected to the positive terminal of the battery unit (2), and the negative electrode connecting tube (211) is connected to the negative terminal of the battery unit (2).

9. The battery assembly structure of a cup according to claim 7, characterized in that: The electric control component (21) is also provided with a charging interface (212).

10. The battery assembly structure of a cup according to claim 3, characterized in that: The number of the second card blocks (4) is the same as the number of the first card blocks (3).