Battery fixing structure and electronic equipment
By using a suction nozzle through-hole and limiting rod design in the battery fixing structure, the pulling direction of the adhesive is optimized, solving the problem of easy-to-break adhesive in traditional battery fixing methods. This achieves reliable battery fixing and convenient disassembly, making it suitable for modern electronic devices.
Patent Information
- Application Number
- CN202520353477.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Traditional battery fixing methods use adhesive pull tabs located on the front of the battery compartment. This causes the pulling force to act directly on the adhesive layer, making it prone to breakage. This affects the reliability of battery fixing and the ease of disassembly, making it difficult to meet the high-performance requirements of modern electronic devices.
A battery fixing structure is designed, which uses a cavity inside the casing and a suction nozzle through hole. The handle of the adhesive part is exposed through the suction nozzle through hole, and the pulling direction is closer to horizontal. Combined with the limiting rod and the inclined limiting surface, the vertical pulling force is reduced and the disassembly stability is enhanced. At the same time, the guide slope and the arc transition surface optimize the assembly process and reduce friction and resistance.
It reduces the risk of adhesive breakage, enables reliable battery mounting and easy disassembly, is suitable for electronic devices with limited space, and improves user experience and assembly efficiency.
Smart Images

Figure CN223956718U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery technical field, especially a kind of battery fixing structure and electronic equipment. BACKGROUND
[0002] In modern electronic equipment, the fixing and dismounting of battery are crucial. With the continuous development of electronic equipment to miniaturization and high performance, the battery compartment design faces the dual challenges of reliable fixing and convenient dismounting and replacement in limited space. The traditional battery fixing method mostly uses easy-to-pull glue, which is pasted on the bottom wall of the battery compartment and the battery respectively to achieve the fixing effect. However, the pull handle of the easy-to-pull glue is usually located on the front of the battery compartment, flush with or slightly protruding from the front of the battery. Although it is convenient for users to pull directly, the force is directly applied to the adhesive layer of the easy-to-pull glue during the pulling process, which not only increases the pulling force, but also easily causes the easy-to-pull glue to break, seriously affecting the fixing reliability and dismounting convenience of the battery, and it is difficult to meet the high performance requirements of modern electronic equipment for battery fixing system. SUMMARY
[0003] The main purpose of the utility model is to provide a battery fixing structure and electronic equipment, which aims to reduce the risk of tearing and breaking of the adhesive part during battery dismounting.
[0004] To achieve the above-mentioned purpose, the battery fixing structure provided by the utility model comprises:
[0005] A shell is provided with a cavity, and a suction hole through hole is formed in the bottom wall of the cavity;
[0006] A battery is accommodated in the cavity; and
[0007] An adhesive part is connected to the body and the pull handle, the body is connected to the battery and the bottom wall of the cavity, and part of the structure of the pull handle is exposed in the suction hole through hole.
[0008] The utility model also provides an electronic equipment comprising the above-mentioned battery fixing structure. BRIEF DESCRIPTION OF DRAWINGS
[0009] In order to more clearly illustrate the technical scheme of the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained from the structure shown in these drawings without creative labor.
[0010] Figure 1 The structure diagram of the embodiment of the battery fixing structure of the utility model is provided;
[0011] Figure 2 An explosion structure schematic view of the battery fixing structure one embodiment is provided for the utility model.
[0012] Figure 3 A sectional view of the battery fixing structure one embodiment is provided for the utility model.
[0013] Figure 4 For Figure 3 The local enlarged view of A in the middle.
[0014] Explanation of the attached drawing:
[0015] 100, battery fixing structure;1, shell;11, cavity;12, suction nozzle via;121, circular arc transition surface;13, buckle hand position hole;14, limit rod;141, inclined limit surface;142, horizontal limit surface;143, guide inclined surface;15, groove;16, positioning groove;2, battery;3, adhesive;31, body;32, handle.
[0016] The utility model purposes realization, functional characteristics and advantages will be further explained in combination with the embodiment, and referring to the attached drawing. Specific implementation
[0017] The technical scheme in the utility model embodiment will be clearly and completely described below in combination with the attached drawing in the utility model embodiment, obviously, the described embodiment is only a part of the utility model, rather than all the embodiments. Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the scope of the utility model protection.
[0018] It should be noted that if the utility model embodiment has involved directional indication (such as up, down, left, right, front, back……), then the directional indication is only used to explain the relative position relationship, movement condition etc. between the components in a certain specific posture, if the specific posture changes, then the directional indication also changes accordingly.
[0019] In addition, if the description of "first", "second" and the like is involved in the embodiments of the utility model, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears in the whole text, it means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary technical personnel in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0020] The utility model provides a kind of battery fixing structure 100.
[0021] Please refer to Figures 1 to 4 In an embodiment of the utility model, the battery fixing structure 100 includes shell 1, battery 2 and adhesive piece 3, the shell 1 is equipped with containing cavity 11, the bottom wall of containing cavity 11 is equipped with suction nozzle via hole 12;The battery 2 is contained in the containing cavity 11;The adhesive piece 3 includes the body 31 and handle 32 connected, the body 31 is connected the battery 2 and the bottom wall of containing cavity 11, and part of structure of handle 32 is exposed to suction nozzle via hole 12.
[0022] In the technical scheme of the utility model, the containing cavity 11 in the shell 1 is used to accommodate the battery 2, to ensure that the battery 2 does not loosen or shift during use, the suction nozzle via hole 12 on the bottom wall of containing cavity 11 facilitates the installation and disassembly of the handle 32 part of adhesive piece 3, the handle 32 part is used to facilitate the disassembly of battery 2, and part of structure of handle 32 is exposed outside through suction nozzle via hole 12, so that the user or automatic equipment can easily grab handle 32 by hand or other tools, to realize the quick disassembly of battery 2;When installing battery 2, first, adhesive piece 3 is pasted to the bottom wall of containing cavity 11, and handle 32 is pulled out to suction nozzle via hole 12, then battery 2 is placed in containing cavity 11, so that adhesive piece 3 is connected with battery 2 and the bottom wall of containing cavity 11;When disassembling battery 2, pull handle 32 from the bottom, and the direction of pulling force is closer to horizontal, which reduces the vertical pulling force on adhesive piece 3, reduces the risk of breaking adhesive piece 3, and does not need to occupy the space of the front of shell 1 additionally, suitable for application on the equipment with limited space;The battery fixing structure 100 proposed in the application realizes the reliable fixation and convenient disassembly of battery 2 by optimizing the design of adhesive piece 3 and the structure of shell 1.
[0023] In the specific installation process of the battery fixing structure 100, the adhesive member 3 is usually adhered to the bottom wall of the accommodating cavity 11 and is pressed to ensure the reliability of the adhesive member 3. In the pressing process, the pull handle 32 is pulled through the suction nozzle through hole 12 by using a suction nozzle, and then the battery 2 is placed in the accommodating cavity 11 and is pressed to ensure that the battery 2 is reliably adhered to the shell 1. In an embodiment, the adhesive member 3 usually uses a high-adhesion 3M93430 easy-to-pull adhesive, which has the characteristics of strong adhesion and difficulty in being pulled off.
[0024] For a more intuitive disassembly process, please refer to Figure 1 In an embodiment of the utility model, the bottom wall of the accommodating cavity 11 is provided with a pull handle position hole 13, the pull handle position hole 13 is spaced from the suction nozzle through hole 12, and a limiting rod 14 is formed between the pull handle position hole 13 and the suction nozzle through hole 12, and the pull handle 32 abuts against one side of the limiting rod 14 away from the battery 2. The design of the limiting rod 14 can effectively limit the movement direction of the pull handle 32, prevent the pull handle 32 from deviating or excessively bending during the disassembly process, and ensure that the pull handle 32 can move along the predetermined direction when stressed, thereby improving the stability and reliability of the disassembly process. The abutment of the pull handle 32 and the limiting rod 14 away from the battery 2 enables the pull handle 32 to be supported by the limiting rod 14 when stressed, further reducing the risk of deformation and fracture of the pull handle 32. The spaced arrangement of the pull handle position hole 13 and the suction nozzle through hole 12 separates the functional areas of the pull handle position hole 13 and the suction nozzle through hole 12, avoiding mutual interference therebetween, and the presence of the limiting rod 14 further enhances the stability of the structure. By forming the limiting rod 14 between the pull handle position hole 13 and the suction nozzle through hole 12, the limited space is fully utilized, and the compactness of the overall design is improved. The user can easily grasp the pull handle 32 through the pull handle position hole 13, and the design of the limiting rod 14 makes the pull handle 32 more stable during the disassembly process, reducing the force intensity of the user when disassembling the battery 2. The design of the pull handle position hole 13 and the limiting rod 14 provides clear operation guidance for the user, making the disassembly process more intuitive and convenient.
[0025] For reducing the risk of fracture of the pull handle 32 during the disassembly process, please refer to Figure 4In an embodiment of the present application, the side of the limiting rod 14 facing away from the battery 2 is formed with an inclined limiting surface 141. By adjusting the slope of the inclined limiting surface 141, the distance of the handle 32 extending longitudinally from the bottom wall of the accommodating cavity 11 can be accurately controlled, so that the handle 32 can better adapt to different space requirements during installation and disassembly; the design of the inclined limiting surface 141 provides greater flexibility, allowing the position of the handle 32 to be adjusted according to specific application scenarios, ensuring that it can be easily grabbed during disassembly; the inclined limiting surface 141 can better restrict the movement direction of the handle 32, preventing the handle 32 from shifting or excessively bending during disassembly, ensuring that the handle 32 can move in the predetermined direction when under stress, thereby improving the stability and reliability of the disassembly process; by adjusting the slope, the stress on the handle 32 can be optimized, reducing the vertical pulling force on the handle 32 during disassembly, thereby reducing the risk of the handle 32 breaking; when installing the battery 2, the body 31 of the adhesive member 3 is attached to the bottom wall of the accommodating cavity 11, the handle 32 is passed through the suction nozzle via hole 12 and exposed, the handle 32 abuts against the inclined limiting surface 141, the slope of the inclined limiting surface 141 is adjusted to ensure that the handle 32 does not shift during installation, the battery 2 is placed into the accommodating cavity 11, the body 31 of the adhesive member 3 is tightly attached to the bottom surface of the battery 2, and the fixing of the battery 2 is completed; when disassembling the battery 2, the handle 32 is grabbed through the handle position hole 13, the design of the inclined limiting surface 141 allows the handle 32 to be more easily grabbed and pulled horizontally from the bottom, allowing the battery 2 to be removed from the accommodating cavity 11 together with the adhesive member 3, and the inclined limiting surface 141 provides support during the pulling process, preventing the handle 32 from deforming or breaking, ensuring the stability of the disassembly process.
[0026] To improve the adhesion stability of the adhesive member 3, please refer to Figure 4 In an embodiment of the present application, the side of the limiting rod 14 facing away from the battery 2 is formed with an inclined limiting surface 141. By adjusting the slope of the inclined limiting surface 141, the distance of the handle 32 extending longitudinally from the bottom wall of the accommodating cavity 11 can be accurately controlled, so that the handle 32 can better adapt to different space requirements during installation and disassembly; the design of the inclined limiting surface 141 provides greater flexibility, allowing the position of the handle 32 to be adjusted according to specific application scenarios, ensuring that it can be easily grabbed during disassembly; the inclined limiting surface 141 can better restrict the movement direction of the handle 32, preventing the handle 32 from shifting or excessively bending during disassembly, ensuring that the handle 32 can move in the predetermined direction when under stress, thereby improving the stability and reliability of the disassembly process; by adjusting the slope, the stress on the handle 32 can be optimized, reducing the vertical pulling force on the handle 32 during disassembly, thereby reducing the risk of the handle 32 breaking; when installing the battery 2, the body 31 of the adhesive member 3 is attached to the bottom wall of the accommodating cavity 11, the handle 32 is passed through the suction nozzle via hole 12 and exposed, the handle 32 abuts against the inclined limiting surface 141, the slope of the inclined limiting surface 141 is adjusted to ensure that the handle 32 does not shift during installation, the battery 2 is placed into the accommodating cavity 11, the body 31 of the adhesive member 3 is tightly attached to the bottom surface of the battery 2, and the fixing of the battery 2 is completed; when disassembling the battery 2, the handle 32 is grabbed through the handle position hole 13, the design of the inclined limiting surface 141 allows the handle 32 to be more easily grabbed and pulled horizontally from the bottom, allowing the battery 2 to be removed from the accommodating cavity 11 together with the adhesive member 3, and the inclined limiting surface 141 provides support during the pulling process, preventing the handle 32 from deforming or breaking, ensuring the stability of the disassembly process; the inclined limiting surface 141 provides a flat support surface, ensuring that the adhesive member 3 can be evenly stressed during adhesion, thereby improving the stability of the adhesion.
[0027] Further, please refer to Figure 4In an embodiment of the present application, the side of the limiting rod 14 facing the battery 2 is formed with a guide slope 143. The guide slope 143 provides a slope, so that the suction nozzle can be more smoothly operated when the handle 32 passes through the suction nozzle via hole 12. This design reduces the resistance that the suction nozzle may encounter during operation, improves the efficiency and reliability of assembly; the presence of the guide slope 143 allows the handle 32 to slide more naturally into the suction nozzle via hole 12, reducing the difficulty of alignment during assembly, especially during automated assembly, this design can significantly improve assembly speed and accuracy; the design of the guide slope 143 can reduce the vertical pulling force that the handle 32 experiences when passing through the suction nozzle via hole 12, thereby reducing the risk of deformation or damage to the handle 32 during assembly; the guide slope 143 ensures that the handle 32 can be accurately placed on the limiting rod 14, thereby improving the stability of the entire battery fixing structure 100.
[0028] To allow the handle 32 to be more smoothly inserted and removed from the suction nozzle via hole 12, please refer to Figure 4 In an embodiment of the present application, the inner peripheral wall of the suction nozzle via hole 12 is formed with a circular arc transition surface 121. The circular arc transition surface 121 allows the handle 32 to slide more naturally when passing through the suction nozzle via hole 12, reducing direct contact between the handle 32 and the inner wall of the suction nozzle via hole 12; by reducing friction, the circular arc transition surface 121 significantly reduces wear and tear of the handle 32 and the inner wall of the suction nozzle via hole 12, prolonging the service life of the components; the design of the circular arc transition surface 121 allows the handle 32 to be more smoothly inserted and removed from the suction nozzle via hole 12, reducing resistance during operation.
[0029] To facilitate disassembly of the battery 2, please refer to Figure 2 In an embodiment of the present application, a recess 15 is provided in a side wall of the housing 1. The design of the recess 15 allows the user to directly contact the battery 2 without the need for other tools or components to assist in disassembly; the user can directly grasp the battery 2 through the recess 15, reducing the complexity and time cost during disassembly; the design of the recess 15 makes the disassembly process more intuitive, allowing the user to easily find the disassembly point, improving the user experience; by directly contacting the battery 2, the user can more accurately apply force, reducing the risk of equipment damage due to misoperation; the user can directly disassemble through the recess 15, reducing the safety risks that may be caused by the use of tools.
[0030] In an embodiment of the utility model, the projection area of the handle 32 in the height direction of the battery 2 is greater than the area of the suction nozzle via hole 12. The projection area of the handle 32 is greater than the area of the suction nozzle via hole 12, so that the handle 32 can be clearly exposed above the suction nozzle via hole 12, and the user or automatic equipment can easily find and hold the handle 32. This design reduces the misoperation caused by the handle 32 not being obvious, and improves the reliability and efficiency of the disassembly process. The larger projection area enables the handle 32 to more evenly distribute force when stressed, reducing the risk of deformation or damage of the handle 32 during disassembly. The larger area of the handle 32 provides a more stable gripping point, ensuring that the handle 32 does not slip or shift during disassembly. The user can directly disassemble through the handle 32 without the need for additional tools or complex operation steps, improving the user experience. The larger area of the handle 32 enables the user to more quickly find and hold the handle 32, reducing disassembly time.
[0031] To reduce the installation difficulty of the adhesive member 3, please refer to Figure 2 In an embodiment of the utility model, the bottom wall of the cavity 11 is provided with a positioning groove 16, and the body 31 is limited in the positioning groove 16 and partially exposes the notch of the positioning groove 16. The design of the positioning groove 16 enables the body 31 of the adhesive member 3 to be accurately aligned and limited in the bottom wall of the cavity 11, reducing the alignment difficulty during installation. Through the limitation of the positioning groove 16, the body 31 of the adhesive member 3 can remain stable during installation, reducing errors caused by inaccurate installation. The body 31 of the adhesive member 3 is limited in the positioning groove 16, ensuring that the adhesive member 3 does not shift or shift during use, thereby improving the stability of the battery 2 fixation. The design of the positioning groove 16 can effectively reduce the loosening of the adhesive member 3 caused by equipment vibration, ensuring that the battery 2 remains stable during use. The design of the positioning groove 16 enables the body 31 of the adhesive member 3 to be compactly installed on the bottom wall of the cavity 11, reducing additional space occupation. Through the guidance of the positioning groove 16, the installation process of the adhesive member 3 is simpler, reducing assembly time and cost.
[0032] The utility model also proposes an electronic equipment, this electronic equipment includes battery fixed structure 100, the specific structure of this battery fixed structure 100 refers to the above-mentioned embodiment, because the present electronic equipment has adopted all the technical schemes of the above-mentioned all embodiments, therefore at least has all the beneficial effects brought by the technical scheme of the above-mentioned embodiment, here will not repeat again.
[0033] The above merely illustrates the exemplary embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation or direct / indirect application in other related technical fields under the technical concept of the present application and by using the content of the present application specification and drawings are included in the patent protection scope of the present application.
Claims
1. A battery fixing structure characterized by comprising: The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure.
2. The battery fixing structure according to claim 1, wherein The application relates to a battery fixing structure.
3. The battery fixing structure according to claim 2, wherein The application relates to a battery fixing structure.
4. The battery fixing structure according to claim 3, wherein The application relates to a battery fixing structure.
5. The battery fixing structure according to claim 2, wherein The application relates to a battery fixing structure.
6. The battery fixation structure according to any one of claims 1 to 5, wherein The application relates to a battery fixing structure.
7. The battery fixation structure according to any one of claims 1 to 5, wherein The application relates to a battery fixing structure.
8. The battery fixation structure according to any one of claims 1 to 5, wherein The application relates to a battery fixing structure.
9. The battery fixation structure according to any one of claims 1 to 5, wherein The application relates to a battery fixing structure.
10. An electronic device, comprising: The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to a battery fixing structure. The application relates to