A battery fixing assembly, a battery, and an electronic device.

CN224637341UActive Publication Date: 2026-08-14ZHEJIANG SUNWODA ELECTRONIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-18
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

这些游离金属异物可能造成电路板短路、元件物理损伤或风扇卡死等系统性故障

Benefits of technology

[0014]本申请通过插接件插设于第一限位件的插槽以及卡接件卡设于第二限位件的配合方式,避免了传统螺丝锁附方案中螺丝松动脱落的风险,消除了螺丝掉入电子设备的内部,例如防止因为螺丝松动而掉落至笔记本电脑的内部,造成电路短路、元件损坏或风扇卡死等安全隐患,同时减少了物料成本和装配复杂度,显著提高了框架的安装效率及拆卸便捷性,提升了电子设备例如笔记本电脑使用过程中的安全性和用户体验。

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Abstract

This application relates to the field of laptop battery installation, and discloses a battery fixing component, a battery, and an electronic device. The battery fixing component includes a frame, with at least one plug-in member and at least one snap-fit ​​member respectively disposed on the periphery of the frame; a plate is disposed on one side of the frame, and a first limiting member and a second limiting member are disposed on the plate, forming an accommodating space. The frame is disposed in the accommodating space, and the first limiting member has a slot facing the frame side, into which the plug-in member is inserted, and the snap-fit ​​member is engaged with the second limiting member. This application, through the cooperation of the plug-in member being inserted into the slot of the first limiting member and the snap-fit ​​member being engaged with the second limiting member, avoids the risk of screws loosening and falling out in traditional screw fastening schemes, and eliminates the safety hazards of screws falling into the interior of electronic devices, such as preventing screws from falling into the interior of a laptop computer due to loosening and causing short circuits, component damage, or fan jamming.
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Description

Technical Field

[0001] This application relates to the field of notebook battery installation, and more particularly to a battery fixing component, a battery, and an electronic device. Background Technology

[0002] In the field of mobile computing devices, laptops have become indispensable productivity tools due to their portability. As their independent power supply unit, the battery needs to be reliably secured to the device body. Currently, the industry commonly uses a screw-locking method to fix laptop batteries, which relies on multiple screws to tighten the battery latches at multiple points. The use of a large number of screws directly increases material costs and assembly complexity. The installation process requires tightening each screw individually, significantly extending production time. More importantly, screw fixing poses a potential safety hazard—during device transportation or daily use, screws may loosen or even fall off due to vibration, impact, or assembly negligence. Once a screw detaches from the latch, it will fall into the laptop's internal system space. These loose metal foreign objects may cause systemic malfunctions such as short circuits on circuit boards, physical damage to components, or fan jamming. Utility Model Content

[0003] In view of this, the purpose of this application is to overcome the shortcomings of the prior art and provide a battery fixing component, a battery, and an electronic device.

[0004] To achieve the above objectives, the technical solution adopted in this application is as follows: This application provides: A battery fixing assembly includes a frame, wherein at least one plug-in member and at least one snap-fit ​​member are respectively provided on the periphery of the frame; A plate is provided on one side of the frame, and a first limiting member and a second limiting member are provided on the plate. The first limiting member and the second limiting member form an accommodating space. The frame is disposed in the accommodating space. The first limiting member has a slot facing the frame. The plug is inserted into the slot, and the snap-fit ​​is snapped into the second limiting member.

[0005] Furthermore, the second limiting member has a slot facing the frame, and the snap-fit ​​member is snapped into the slot.

[0006] Furthermore, a clearance groove is provided on the side of the card slot opposite to the plate, and the clearance groove is connected to the card slot.

[0007] Furthermore, the snap-fit ​​component includes a first elastic plate and a second elastic plate that are both inclined. The first elastic plate is fixedly disposed on the periphery of the frame, and the ends of the first elastic plate and the second elastic plate that are close to each other are connected by a rounded transition.

[0008] Furthermore, the end of the second elastic plate opposite to the end connected to the first elastic plate is provided with an extension plate, which is disposed within the clearance groove.

[0009] Furthermore, the cross-section of the connector gradually decreases along the direction of the plate toward the first limiting member; at least one side of the connector is inclined, and the inclined surface of the connector forms an angle α with the surface perpendicular to the periphery of the frame, satisfying: 2°≤α≤5°.

[0010] Furthermore, the connector has a hollowed-out area.

[0011] Furthermore, the edge of the connector facing and / or away from the side of the plate is provided with a stepped surface.

[0012] This application also provides a battery comprising: Battery cell; A frame, wherein at least one plug-in member and at least one snap-fit ​​member are respectively provided on the periphery of the frame; the plug-in member is used to be inserted into a slot on the plate, and the snap-fit ​​member is used to be snapped into a second limiting member on the plate; The frame includes a housing with a first opening and a second opening. A first cover plate is provided at the first opening, and a second cover plate is provided at the second opening. The housing, the first cover plate, and the second cover plate surround each other to form an installation space, and the battery cell is disposed within the installation space.

[0013] This application also provides an electronic device that includes the battery fixing assembly described in any of the above claims.

[0014] This application avoids the risk of screws loosening and falling out in traditional screw fastening schemes by using a connector that is inserted into the slot of the first limiting member and a snap-fit ​​connector that is snapped into the second limiting member. This eliminates the risk of screws falling into the interior of electronic devices, such as preventing screws from falling into the interior of a laptop computer and causing safety hazards such as short circuits, component damage, or fan jamming. At the same time, it reduces material costs and assembly complexity, significantly improves the installation efficiency and disassembly convenience of the frame, and enhances the safety and user experience of electronic devices such as laptop computers during use.

[0015] To make the above-mentioned objectives, features and advantages of this application more apparent and understandable, preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 A schematic diagram of the existing frame and panel assembly is shown; Figure 2 This paper shows a structural schematic diagram of the panels, frame, and fixing components in their assembled state. Figure 3 This diagram shows the distribution of the first and second limiting members on the plate. Figure 4 This diagram shows the distribution of the connectors and snap-fit ​​components of this application on the periphery of the frame; Figure 5 A schematic diagram of the structure of the second limiting member of this application is shown; Figure 6 A side view of the card connector of this application is shown; Figure 7 This is a schematic diagram of the connector structure from a first-view perspective. Figure 8 This shows a schematic diagram of the second-view structure of the connector of this application; Figure 9 This diagram illustrates the process of mounting the framework of this application onto the board using a fixing component; Figure 10 A schematic diagram of the framework structure of this application is shown.

[0018] Explanation of key component symbols: 101-Frame; 1011-Outer shell; 1012-First cover plate; 1013-Second cover plate; 102-Panel; 103-Battery cell; 100-First limiting component; 110-Slot; 200-Second limiting component; 210-Card slot; 220-Allowing slot; 300-Plug-in component; 310-Hollowed area; 320-Stepped surface; 400-Card-connector; 410-First elastic plate; 420-Second elastic plate; 430-Extension plate; X-First direction; Y-Second direction; Z-Third direction; a-Lock lug; b-Screw. Detailed Implementation

[0019] The embodiments of this application are described in detail below. Examples of these embodiments 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 are only used to explain this application, and should not be construed as limiting this application.

[0020] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application 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, and therefore should not be construed as a limitation of this application.

[0021] 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 technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0022] In this application, unless otherwise expressly 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 application according to the specific circumstances.

[0023] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0024] Please see Figure 1As shown, the traditional method of installing a laptop battery typically uses screws (b) for fastening. This involves first setting several locking lugs (a) on the periphery of the frame 101, with at least one fixing hole on each lug. Finally, a screw (b) passes through this fixing hole and connects to a connection hole on the board 102. The frame 101 is then secured to the board 102 through the cooperation of the lugs (a) and screws (b). While this method effectively secures the frame 101 to the board 102, the large number of locking points reduces assembly efficiency when assembling large quantities of laptops. Furthermore, if screws (b) loosen during laptop transport, they may fall off, causing the frame 101 to separate from the board 102. Moreover, if screws (b) fall into components such as the laptop's motherboard or cooling fan, they could severely damage the laptop. Therefore, this application uses a snap-fit ​​method to achieve rapid installation of the frame 101.

[0025] Based on the existing problems in the installation of the frame 101, this application provides a battery fixing assembly. The battery fixing assembly has a first direction X, a second direction Y, and a third direction Z that intersect each other. The battery fixing assembly includes a frame 101. At least one plug-in member 300 and at least one snap-fit ​​member 400 are respectively provided on the periphery of the frame 101. A plate 102 is provided on one side of the frame 101. A first limiting member 100 and a second limiting member 200 are provided on the plate 102. The first limiting member 100 and the second limiting member 200 form an accommodating space. The frame 101 is disposed in the accommodating space. The first limiting member 100 has a slot 110 on the side facing the frame 101. The plug-in member 300 is inserted into the slot 110, and the snap-fit ​​member 400 is snapped into the second limiting member 200.

[0026] Please see Figure 2 , Figure 3 as well as Figure 4 As shown, the first direction X and the second direction Y combine to form a first plane. In order to fix the frame 101 and the plate 102, at least one first limiting member 100 and at least one second limiting member 200 are fixedly provided on the upper surface of the plate 102, so that the two form an accommodating space that can accommodate the frame 101, thereby limiting the position of the frame 101 on the first plane. Furthermore, the peripheral side of the frame 101 is also provided with a plug-in member 300 corresponding to the position of the first limiting member 100 and a snap-fit ​​member 400 corresponding to the position of the second limiting member 200.

[0027] See Figure 9As shown, specifically, when fixing the frame 101, the connector 300 is first inserted into the slot 110 at an angle along the third direction Z. After the connector 300 is fully inserted into the slot 110, the snap-fit ​​400 is located at the corresponding position of the second limiting member 200. Simply press the snap-fit ​​400 down to make it snap-fit ​​with the second limiting member 200, thereby completing the installation of the frame 101. At this time, the frame 101 is restricted in the first direction X, the second direction Y, and the third direction Z, thereby realizing the installation of the frame 101 and the plate 102.

[0028] It is understood that the fixing structure disclosed in this application can complete the installation of the frame 101 and the plate 102 by inserting the connector 300 into the slot 110 of the first limiting member 100 and by engaging the snap-fit ​​connector 400 and the second limiting member 200. This improves the convenience of installation, greatly increases the installation efficiency, and will not damage the computer due to the detachment of parts (screws b) during the transportation of the laptop. While improving the installation efficiency, it also improves the safety of the laptop during use, enhances the user experience, and reduces the probability of laptop malfunction.

[0029] In one embodiment, both the first limiting member 100 and the second limiting member 200 are block shapes, and the slot 110 is formed on the side of the first limiting member 100 facing the frame 101. For example, the slot 110 can be a through-hole setting or a non-through-hole setting. When it is a non-through-hole setting, its opening depth can be designed according to the length of the plug 300. The specific depth is not limited here.

[0030] Please continue reading. Figure 2 , Figure 3 as well as Figure 4 As shown in this embodiment, the frame 101 is illustrated by a conventional rectangle. In order to install the frame 101, the plug-in member 300 and the snap-fit ​​member 400 are not located on the same side of the frame 101, that is, the plug-in member 300 and the snap-fit ​​member 400 are on opposite sides. Correspondingly, the positional distribution of the first limiting member 100 and the second limiting member 200 is the same as the distribution of the plug-in member 300 and the snap-fit ​​member 400, so that the accommodating space formed by the first limiting member 100 and the second limiting member 200 can limit the frame 101 on the first plane.

[0031] For example, in this embodiment, there are two plug-in members 300, both located on the same side of the frame 101, and three snap-fit ​​members 400, two of which are located on adjacent sides of the first limiting member 100, and the other is located on a side opposite to the first limiting member 100. It can be understood that the positional distribution of the first limiting member 100 and the second limiting member 200 is the same as that of the plug-in members 300 and the snap-fit ​​members 400, respectively. This will not be described in detail here. In practice, the positional distribution of the first limiting member 100, the second limiting member 200, the plug-in members 300, and the snap-fit ​​members 400 can be set according to actual needs. The specific positions are not limited here.

[0032] In this embodiment, in order to ensure the connection strength between the first limiting member 100, the second limiting member 200 and the plate 102, the first limiting member 100 and the second limiting member 200 are installed with the plate 102 in an integrated manner. For example, the first limiting member 100, the second limiting member 200 and the plate 102 can all be made of plastic and can be integrally formed with the plate 102 by injection molding, thereby ensuring the connection strength between the first limiting member 100, the second limiting member 200 and the plate 102. Correspondingly, in this embodiment, the plug-in member 300 and the snap-fit ​​member 400 can also be made of plastic and can also be integrally formed with the frame 101 by injection molding.

[0033] In some embodiments, the second limiting member 200 has a slot 210 on the side facing the frame 101, and the snap-fit ​​member 400 is snapped into the slot 210.

[0034] Please see Figure 3 and Figure 5 As shown, in order to achieve the snap-fit ​​between the snap-fit ​​member 400 and the second limiting member 200, a snap-fit ​​groove 210 adapted to the snap-fit ​​member 400 is opened on the side of the second limiting member 200 facing the frame 101. It can be understood that since the frame 101 is installed from top to bottom along the third direction Z, in order to ensure that the snap-fit ​​member 400 enters the snap-fit ​​groove 210, the snap-fit ​​groove 210 extends upward along the third direction Z and communicates with its outside, thereby achieving installation avoidance of the snap-fit ​​member 400.

[0035] In some embodiments, a clearance groove 220 is provided on the side of the card slot 210 away from the plate 102, and the clearance groove 220 is connected to the card slot 210.

[0036] Please continue reading. Figure 5As shown, when the frame 101 needs to be disassembled, the snap-fit ​​400 and the slot 210 need to be separated. Since the snap-fit ​​400 is snapped into the slot 210 and the space is narrow, it is difficult to use tools or fingers to reach into it for disassembly. Therefore, this application provides an avoidance groove 220 on the upper surface of the second limiting member 200 on one side of the slot 210, so that tools or fingers can be inserted into the avoidance groove 220 to press the snap-fit ​​400 out of the slot 210, thereby limiting the frame 101 in the third direction Z. Then, it is only necessary to tilt and move the frame 101 along the third direction Z to disengage the connector 300 from the slot 110, thereby completing the disassembly of the frame 101.

[0037] It is understandable that when disassembling the frame 101, it is only necessary to disengage the snap-fit ​​400 from the slot 210 to complete the disassembly of the frame 101. Compared with the existing method of disassembling the frame 101 by removing multiple screws b, the disassembly and installation method of this application greatly improves the convenience and efficiency of disassembling the frame 101.

[0038] In some embodiments, the snap-fit ​​member 400 includes a first elastic plate 410 and a second elastic plate 420 that are both inclined. The first elastic plate 410 is fixedly disposed on the periphery of the frame 101, and the ends of the first elastic plate 410 and the second elastic plate 420 that are close to each other are connected by a rounded corner.

[0039] Please see Figure 6 As shown, in order for the snap-fit ​​component 400 to snap into the slot 210, both the first elastic plate 410 and the second elastic plate 420 have a certain degree of elasticity. Specifically, the first elastic plate 410 is fixedly connected to the peripheral side of the frame 101, and the second elastic plate 420 is fixedly provided at the end of the first elastic plate 410 away from the end connected to the frame 101. The first elastic plate 410 and the second elastic plate 420 are integrally formed.

[0040] When the snap-fit ​​component 400 is snapped into the slot 210, in the direction in which the first elastic plate 410 and the second elastic plate 420 are unfolded, the space of the slot 210 is less than the length of the first elastic plate 410 and the second elastic plate 420 in their unfolded state. Therefore, when the first elastic plate 410 and the second elastic plate 420 need to extend into the slot 210 for limiting snap-fit ​​installation, the second elastic plate 420 needs to abut against the inner wall of the slot 210. At this time, the second elastic plate 420 and the first elastic plate 410 need to move closer to each other and retract to adapt to the space of the slot 210. At this time, the elastic force generated by the retraction of the first elastic plate 410 and the second elastic plate 420 will make the second elastic plate 420 tightly abut against the inner wall of the slot 210 to achieve position limiting.

[0041] To prevent the first elastic plate 410 and the second elastic plate 420 from shrinking and generating large stress at their connection point, causing them to break, the first elastic plate 410 and the second elastic plate 420 are rounded at the connection point to reduce stress and increase the degree of expansion and contraction, thereby meeting the space size requirements of the slot 210.

[0042] For example, both the first elastic plate 410 and the second elastic plate 420 can be made of plastic and have a certain degree of elasticity. The specific type and material of the plastic are not limited here.

[0043] In one embodiment, the shape formed by the first elastic plate 410 and the second elastic plate 420 is a "U" shape or a "V" shape.

[0044] In some embodiments, the end of the second elastic plate 420 opposite to the end connected to the first elastic plate 410 is provided with an extension plate 430, which is disposed in the clearance groove 220.

[0045] Please see Figure 5 and Figure 6 As shown, in order to facilitate the disengagement of the second elastic plate 420 and the first elastic plate 410 from the slot 210, an extension plate 430 is integrally provided at the end of the second elastic plate 420. When the first elastic plate 410 and the second elastic plate 420 are in the slot 210, the extension plate 430 is in the clearance groove 220. During disassembly, force is applied to the extension plate 430 located in the clearance groove 220, and then the force is transmitted to the second elastic plate 420 and the first elastic plate 410 through the extension plate 430. At the same time, the tilting and moving frame 101 is used to disengage the first elastic plate 410 and the second elastic plate 420 from the slot 210 to complete the disassembly action.

[0046] It should be noted that the shape of the extension plate 430 is adapted to the shape of the clearance groove 220, and the extension plate 430 is plate-shaped and laid on the inner bottom wall of the clearance groove 220. In this embodiment, the clearance groove 220 is arc-shaped, and the corresponding extension plate 430 is also arc-shaped. In other examples, the clearance groove 220 and the extension plate 430 can also be square or other shapes. The specific shape is not limited here.

[0047] In some embodiments, the cross-section of the connector 300 gradually decreases along the direction of the plate 102 toward the first limiting member 100, and at least one side of the connector 300 is inclined. The inclined surface of the connector 300 forms an angle α with the surface perpendicular to the periphery of the frame 101, satisfying: 2°≤α≤5°.

[0048] Please see Figure 7 and Figure 8As shown, in order to fully insert the connector 300 into the slot 110, the side of the connector 300 is set as a slope, that is, the cross section of the end of the connector 300 facing the slot 110 is smaller than the cross section of the end away from the slot 110, so that the connector 300 can be more easily inserted into the slot 110. In this embodiment, the connector 300 and the slot 110 are interference-fitted to improve the reliability of the insertion.

[0049] In other embodiments, the left side of the connector 300 is an inclined surface, or the right side of the connector 300 is an inclined surface.

[0050] In one embodiment, the left and right sides of the connector 300 are both inclined surfaces, and the angle between the inclined surface and the surface perpendicular to the periphery of the frame 101 is between 2° and 5°. For example, the angle can be 2°, 3°, 4°, 5°, etc. The specific value can be selected according to actual needs and is not limited here.

[0051] In this embodiment, the connector 300 is plate-shaped and its size is adapted to the slot 110.

[0052] In some embodiments, the connector 300 is provided with a cutout area 310.

[0053] Please see Figure 6 and Figure 7 As shown, since the connector 300 and the slot 110 are interference-fitted, in order to increase the deformation of the connector 300 and reduce the pressure between the side wall of the connector 300 and the inner side wall of the slot 110, thereby reducing the wear of the connector 300, a hollow area 310 is provided on the connector 300 and a through hole is opened in the central area of ​​the connector 300. The through hole increases the deformation of the connector 300 under force, thereby reducing the wear generated when in contact with the inner wall of the slot 110.

[0054] In this embodiment, the hollow area 310 is an elongated through groove.

[0055] In some embodiments, the edge of the connector 300 facing and / or away from the side of the plate 102 is provided with a stepped surface 320.

[0056] See Figure 7 and Figure 8 As shown, the side of the connector 300 facing the plate 102 is its lower surface, and the side of the connector 300 away from the plate 102 is its upper surface.

[0057] In another embodiment, the stepped surface 320 is disposed on the left and right edges of the upper surface of the connector 300, or the stepped surface 320 is disposed on the left and right edges of the lower surface of the connector 300.

[0058] In this embodiment, stepped surfaces 320 are provided at both the upper and lower edges of the connector 300. This structural design aims to reduce stress on both sides and improve service life.

[0059] This application embodiment also provides a battery, which includes a battery cell 103 and a frame 101. The frame 101 has at least one plug-in member 300 and at least one snap-fit ​​member 400 respectively disposed on its periphery. The plug-in member 300 is used to be inserted into a slot 110 on a plate 102, and the snap-fit ​​member 400 is used to be snapped into a second limiting member 200 on the plate 102. The frame 101 includes a shell 1011, which has a first opening and a second opening. A first cover plate 1012 is disposed at the first opening, and a second cover plate 1013 is disposed at the second opening. The shell 1011, the first cover plate 1012, and the second cover plate 1013 surround to form an installation space, and the battery cell 103 is disposed in the installation space.

[0060] Please see Figure 2 and Figure 10 As shown, the battery mainly consists of an external frame 101 and battery cells 103 located inside it. When the battery needs to be installed, the frame only needs to be installed onto the plate 102 to achieve the installation and fixation of the entire battery. The frame 101 is engaged with the first limiting member 100 of the plate 102 through the insertion member 300 and the second limiting member 200 of the plate 102 through the snap-fit ​​member 400, thereby fixing the frame 101 containing the battery cells 103 onto the plate 102, completing the battery installation. Specifically, the lower opening of the outer casing 1011 is the first opening, and the upper opening of the outer casing 1011 is the second opening. A first cover plate 1012 and a second cover plate 1013 are respectively provided at the first opening and the second opening. The first cover plate 1012 closes the first opening, and the second cover plate 1013 closes the second opening, thereby forming an installation space under the enclosure of the outer casing 1011, the first cover plate 1012, and the second cover plate 1013. This installation space is used to install and fix the battery cell 103.

[0061] This application also provides an electronic device that includes the battery fixing assembly described above.

[0062] It is understood that the electronic device can be a laptop, tablet computer, or other device that can use the fixed component. The specific type of electronic device is not limited, as long as the fixed component of this application can be used, it is within the protection scope of this application.

[0063] In this embodiment, a laptop computer is used as an example of an electronic device. The board 102 is the shell part of the laptop computer. When installing the frame 101 which houses the battery cell 103, the frame 101 is fixed to the board 102 by a fixing component to prevent the frame 101 from separating from the board 102. The plug-in component 300 and the snap-fit ​​component 400 can be integrally formed with the frame 101. Specifically, the plug-in component 300, the snap-fit ​​component 400 and the frame 101 can be integrally formed by injection molding to improve the connection strength.

[0064] Please see Figure 9 As shown, when fixing the frame 101 to the plate 102 using the fixing components, the frame 101 is first tilted so that the connector 300 is inserted into the slot 110. Then, the frame 101 is pressed down on the side away from the first limiting member 100. As the pressing of the frame 101 continues, the snap-fit ​​member 400 is pressed into the second limiting member 200, so that the snap-fit ​​member 400 is snapped into the slot 210. At this time, if no unlocking force is applied to the frame 101, the frame 101 is restricted in the first direction X, the second direction Y, and the third direction Z, thereby completing the fixing of the frame 101. When disassembling, the extension plate 430 is lifted upward through the clearance groove 220 to transmit the force to the second elastic plate 420 and the first elastic plate 410 to disengage from the slot 210. Then, the frame 101 can be tilted and moved to disengage the connector 300 from the slot 110, thereby completing the disassembly of the frame 101.

[0065] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0066] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.

Claims

1. A battery fixing assembly, characterized in that, The battery fixing assembly includes a frame (101), and at least one plug-in member (300) and at least one snap-fit ​​member (400) are respectively provided on the periphery of the frame (101). A plate (102) is provided on one side of the frame (101). A first limiting member (100) and a second limiting member (200) are provided on the plate (102). The first limiting member (100) and the second limiting member (200) form an accommodating space. The frame (101) is disposed in the accommodating space. A slot (110) is opened on the side of the first limiting member (100) facing the frame (101). The plug-in member (300) is inserted into the slot (110), and the snap-fit ​​member (400) is snapped into the second limiting member (200).

2. The battery fixing assembly according to claim 1, characterized in that, The second limiting member (200) has a slot (210) on the side facing the frame (101), and the snap-fit ​​member (400) is snapped into the slot (210).

3. The battery fixing assembly according to claim 2, characterized in that, The slot (210) has a clearance groove (220) on the side opposite to the plate (102), and the clearance groove (220) is connected to the slot (210).

4. The battery fixing assembly according to claim 3, characterized in that, The snap-fit ​​component (400) includes a first elastic plate (410) and a second elastic plate (420) that are both inclined. The first elastic plate (410) is fixedly disposed on the periphery of the frame (101), and the ends of the first elastic plate (410) and the second elastic plate (420) that are close to each other are connected by a rounded transition.

5. The battery fixing assembly according to claim 4, characterized in that, The second elastic plate (420) is provided with an extension plate (430) at the end opposite to the end connected to the first elastic plate (410), and the extension plate (430) is disposed in the clearance groove (220).

6. The battery fixing assembly according to claim 1, characterized in that, The cross section of the connector (300) gradually decreases along the direction of the plate (102) toward the first limiting member (100); the connector (300) is inclined on at least one side, and the inclined surface of the connector (300) forms an angle α with the surface perpendicular to the periphery of the frame (101), satisfying: 2°≤α≤5°.

7. The battery fixing assembly according to claim 1, characterized in that, The connector (300) has a hollow area (310).

8. The battery fixing assembly according to claim 1, characterized in that, The plug (300) has a stepped surface (320) on the edge facing and / or away from the side of the plate (102).

9. A battery, characterized in that, include: Battery cell (103); A frame (101) is provided with at least one plug-in member (300) and at least one snap-fit ​​member (400) on its periphery. The plug-in member (300) is used to be inserted into a slot (110) on a plate (102), and the snap-fit ​​member (400) is used to be snapped into a second limiting member (200) on a plate (102). The frame (101) includes a shell (1011) having a first opening and a second opening. A first cover plate (1012) is provided at the first opening, and a second cover plate (1013) is provided at the second opening. The shell (1011), the first cover plate (1012), and the second cover plate (1013) surround each other to form an installation space, and the battery cell (103) is disposed in the installation space.

10. An electronic device, characterized in that, Includes the battery fixing assembly according to any one of claims 1 to 8.