Battery cover structure and electronic equipment

The sliding battery cover structure solves the problem of existing alarm battery covers needing to be pressed and fastened, enabling convenient disassembly and installation and improving the user experience.

CN223911792UActive Publication Date: 2026-02-13X-SENSE INNOVATIONS CO LTD
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Patent Information

Application Number
CN202520078442.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-02-13
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

The existing alarm battery cover has a snap-on design that requires the user to press the battery cover clip to open it, which damages the product's appearance and reduces the user experience.

Method used

Design a sliding battery cover structure, including battery cover A and battery cover B. Battery cover B can be slidably connected to battery cover A. Convenient disassembly and installation are achieved through guide rails and spring structure, improving user experience.

Benefits of technology

Users can open the battery cover without pressing the cover clip, improving the user experience and maintaining the consistency and integrity of the product's appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a battery cover structure and electronic equipment, the battery cover structure comprises a battery compartment and a battery cover assembly, the battery cover assembly comprises a battery cover piece A and a battery cover piece B, the battery cover piece A is connected with the battery cover piece B, the battery cover piece A is a fixed part, the battery cover piece B is a slidable part, and the battery cover piece A is connected with the battery cover piece B; the battery compartment and the battery cover assembly are detachably connected, the battery compartment is provided with an accommodating space, the accommodating space is provided with at least one battery jar, the battery jar is used for placing a battery, the battery cover assembly is used for being fixed on the battery compartment, and the battery cover piece B can be close to the battery cover piece A in a sliding mode. And the accommodating space is used for accommodating the battery cover B piece so as to open the battery cover assembly and is positioned below the battery cover B piece. According to the structural design of the battery cover, a user does not need to break the buckling position with a fingertip, so that the experience feeling of the user is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic device technical field especially relates to a battery cover structure and electronic equipment. BACKGROUND

[0002] With the improvement of people's living standards, the continuous pursuit of beauty, the product structure design requires the product to maintain the overall and consistency with the appearance, and enhance the feel of use. At present, most of the alarm battery cover on the market uses the form of buckling with the product through the buckle position, and the user needs to press the battery cover buckle every time to open the battery cover. This form needs to press the structure of the battery cover buckle to make a large area of buckle position avoidance structure on the product, which seriously damages the appearance of the product. In addition, the buckling type battery cover needs the user to use the fingertips to pry the buckle position. This structure seriously reduces the user experience.

[0003] Therefore, how to design the battery cover structure of the alarm to improve the user experience needs to be solved urgently. UTILITY MODEL CONTENT

[0004] The utility model embodiment provides a battery cover structure and electronic equipment, and designs the battery cover structure of the alarm to improve the user experience.

[0005] The utility model embodiment provides a battery cover structure, the battery cover structure includes battery compartment and battery cover component, the battery cover component includes battery cover A piece and battery cover B piece, the battery cover A piece connects the battery cover B piece, the battery cover A piece is fixed part, and the battery cover B piece is slidable part, the battery compartment and the battery cover component are detachable connection, and wherein:

[0006] The battery compartment has a containing space, and the containing space has at least one battery slot, and the battery slot is used for placing a battery.

[0007] The battery cover component is used for fixing the battery compartment, wherein the battery cover B piece can be in sliding mode close to the battery cover A piece to open the battery cover component, and the containing space is located below the battery cover B piece.

[0008] Further, the battery cover A piece includes: first guide rail and second guide rail, the first guide rail and the second guide rail are parallelly arranged along the opposite sides of the battery cover A piece, and the first guide rail and the second guide rail are used to control the sliding direction of the battery cover B piece.

[0009] The first side of the battery cover A is provided with a first fixing platform and a second fixing platform, the first fixing platform and the second fixing platform are arranged in parallel, and the first fixing platform and the second fixing platform are used for fixing the battery cover assembly on the battery compartment.

[0010] Further, the battery cover A further comprises a first convex bone and a second convex bone, the first convex bone and the second convex bone are arranged opposite to each other along two second sides of the battery cover A, and the first convex bone is arranged above and below the first guide rail, and the second convex bone is arranged above and below the second guide rail.

[0011] Further, the back of the battery cover B is provided with a first boss, and the first boss is arranged at the middle position of the back, and the first boss is used for controlling the sliding distance of the battery cover B on the battery cover A; the first side of the back is provided with a third fixing platform, and the second side of the back is provided with a fourth fixing platform, the third fixing platform and the fourth fixing platform are arranged in parallel, and the third fixing platform and the fourth fixing platform are used for fixing the battery cover assembly on the battery compartment.

[0012] Further, the battery cover B comprises a first guide rail sleeve and a second guide rail sleeve, the first guide rail sleeve is arranged on the third fixing platform, the second guide rail sleeve is arranged on the fourth fixing platform, and the first guide rail sleeve and the second guide rail sleeve are arranged in parallel; the first guide rail sleeve, the second guide rail sleeve and the first guide rail, the second guide rail are correspondingly connected; the battery cover B further comprises a first elastic bone and a second elastic bone, the first elastic bone and the second elastic bone are arranged on the first guide rail sleeve and the second guide rail sleeve respectively, and the first elastic bone and the second elastic bone are arranged opposite to each other, and the first elastic bone and the second elastic bone make the battery cover B have a hand feeling when moving on the battery cover A.

[0013] Further, the first elastic bone comprises a yielding structure, and the yielding structure is used for ensuring that the first convex bone has a hand feeling during sliding through the position of the first elastic bone.

[0014] Further, the front of the battery cover B is provided with an anti-skid structure.

[0015] Further, the battery compartment is provided with a first limiting portion and a second limiting portion, the first limiting portion is arranged corresponding to the battery cover A, and the second limiting portion is arranged corresponding to the battery cover B; when the battery cover assembly is combined with the battery compartment cover, the first limiting portion and / or the second limiting portion abuts against or fixes the battery cover assembly.

[0016] Further, the battery compartment comprises a third limiting part and a fourth limiting part arranged oppositely on two sides, and the first limiting part, the third limiting part, the second limiting part and the fourth limiting part are sequentially connected to fix the battery cover assembly.

[0017] Further, the first limiting part comprises a first groove and a second groove, the first groove is matched with the first fixed platform, and the second groove is matched with the second fixed platform; the second limiting part comprises a third groove and a fourth groove, the third groove is matched with the third fixed platform, and the fourth groove is matched with the fourth fixed platform.

[0018] The utility model embodiment provides still a kind of electronic equipment, and the electronic equipment includes the battery cover structure described in any one of the above.

[0019] It can be seen that, by implementing the embodiments of the present application, the battery cover is designed as an assembly, which includes a battery cover A piece and a battery cover B piece. The battery cover A piece is a fixed piece, and the battery cover B piece is a moving piece. The battery cover B piece can slide on the battery cover A piece. According to the sliding structure designed for the battery cover assembly, when the battery cover assembly is installed in the battery compartment, only the battery cover B piece needs to be pushed forward. When the battery compartment needs to be opened, only the battery cover B piece needs to be slid backward. The user no longer needs to press the battery cover buckle to open the battery cover. At the same time, the alarm product does not need to make a large area of buckle position avoidance position at the part of pressing the battery cover buckle structure. Therefore, the user experience is improved. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed in the embodiment description. Obviously, the drawings described below are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creating any creative labor.

[0021] Figure 1 is a battery cover structure combination schematic diagram provided by the embodiment of the present application;

[0022] Figure 2 is a battery cover assembly structure assembly schematic diagram provided by the embodiment of the present application;

[0023] Figure 3 is a battery compartment structure schematic diagram provided by the embodiment of the present application;

[0024] Figure 4 is a battery compartment assembly scene schematic diagram provided by the embodiment of the present application

[0025] Figure 5 is a battery cover A piece structure schematic diagram provided by the embodiment of the present application;

[0026] Figure 6 is a battery cover B piece structure schematic diagram provided by an embodiment of the application. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are some of the embodiments of the application but not all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.

[0028] The terms "first", "second", "third", and "fourth" and the like in the specification and claims of the application and the drawings are used to distinguish different objects, and are not used to describe a particular order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product or device.

[0029] Reference to "an embodiment" in this document means that a particular feature, result or characteristic described in connection with an embodiment can be included in at least one embodiment of the application. The appearance of this phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0030] The electronic device in the utility model can include any battery cover structure electronic device, for example, the electronic device can include an alarm.

[0031] Please refer to Figure 1 , Figure 1 is a battery cover structure combination schematic diagram 10 provided by an embodiment of the application, including a battery compartment 11, a battery cover A piece 12 and a battery cover B piece 13, the battery cover A piece 12 and the battery cover B piece 13 are combined into a battery cover assembly, and the battery cover is fixed on the battery compartment 11.

[0032] The battery cover A 12 includes a first fixed platform 123, a second fixed platform 124, a first guide rail 122, a second guide rail 125, a first convex bone 121, and a second convex bone 126. The first fixed platform 123 and the second fixed platform 124 are in the form of a convex block structure, which can be a cuboid structure, a prism structure, a columnar structure, etc. The first guide rail 122 and the second guide rail 125 are arranged at the other end of the first fixed platform 123 and the second fixed platform 124, respectively, and the length of the first guide rail 122 and the second guide rail 125 is set according to the shape of the battery. The length and shape of the first guide rail 122 and the second guide rail 125 are consistent. For example, for a button cell, the length of the first guide rail 122 can be half of the battery cover A 12; for a cylindrical battery, the length of the first guide rail 122 can be two-thirds of the battery cover A. In addition, the first convex bone 121 and the second convex bone 126 are arranged at the upper part of the first guide rail 122 and the second guide rail 125, respectively. The first convex bone 121 is at a certain distance from one end of the first guide rail 122, and the distance is determined according to the length of the guide rail. The second convex bone 126 is opposite to the first convex bone 121, and the first convex bone 121 and the second convex bone 126 are in the form of a prism, which has a certain angle with the base, which can be between 15° and 45°.

[0033] The battery cover B 13 includes a first elastic bone 131, a second elastic bone 135, a first guide rail sleeve 132, a second guide rail sleeve 136, a third fixed platform 133, a fourth fixed platform 137, and a first convex platform 134. The first guide rail sleeve 132 and the second guide rail sleeve 136 can be in the form of a "7" or a "T", and the first guide rail sleeve 132 and the second guide rail sleeve 136 are arranged on the back of the battery cover B 13. The first guide rail sleeve 132 cooperates with the first guide rail 122, and the second guide rail sleeve 136 cooperates with the second guide rail 125. In addition, one end of the first guide rail sleeve 132 and the second guide rail sleeve 136 is provided with a slope. The first convex platform 134 is arranged at the middle position of the back of the battery cover B 13, and is used to limit the sliding distance of the battery cover B 13. The first convex platform can be in the form of a cuboid, a cylinder, or a "U" shape, which is not limited herein. The third fixed platform 133 and the fourth fixed platform 137 are arranged at the end of the first guide rail sleeve 132 and the second guide rail sleeve 136 with a slope, respectively. The third fixed platform 133 and the fourth fixed platform 137 can be in the form of a three-prism structure.

[0034] In one possible embodiment, the first protrusion 134 restricts the battery cover B 13 to the battery cover A 12, ensuring that the battery cover B 13 can only move back and forth on the battery cover A 12 without falling off. When the battery cover B 13 is pushed forward, the first protrusion 134 on the battery cover B 13 moves onto the battery cover A 12, thereby restricting the battery cover B 13 from moving forward further, ensuring that the battery cover B 13 will not be pushed out of the battery cover A 12. When the battery cover assembly is installed in the battery compartment 11, the first fixing platform 123 and the second fixing platform 124 on the battery cover assembly A 12 are precisely inserted into the first groove and the second groove of the battery compartment 11. Figure 1 (Not marked in the text) This ensures that the battery cover assembly can be used normally. While pushing the battery cover B part 13 forward, the first protrusion 121 and the second protrusion 126 on the battery cover A part 12, together with the first elastic bone 131 and the second elastic bone 135 of the battery cover B part 13, adjust the feel of the movement of the battery cover B part 13, thereby ensuring that the battery cover B part 13 has a clear feel when it is pushed over the protrusion structure. Conversely, when the battery cover assembly needs to remove the battery compartment 11, the battery cover B part 13 is pushed backward.

[0035] Please see Figure 2 , Figure 2 This is a schematic diagram 20 illustrating the assembly structure of a battery cover assembly according to an embodiment of this application. Battery cover A and battery cover B are combined to form a battery cover assembly. The front and rear views of the battery cover assembly are shown below. Figure 2 As shown, the left image is a front view of the assembled battery cover assembly, and the right image is a back view of the assembled battery cover assembly. It can be seen that battery cover A 21 and battery cover B 22 cooperate with each other. Battery cover B 22 can slide on battery cover A 21. Battery cover B 22 has an anti-slip structure, which can be raised parallel lines or raised dots; this is not limited here. The structure is diagonally distributed, primarily to increase the friction between the user and battery cover B 22.

[0036] The battery compartment 11 has a battery slot inside, which can hold batteries. These batteries can be primary or secondary batteries, with no limitation on the type. They can be cylindrical, prismatic, button batteries, etc., with no limitation on the type of battery. Cylindrical batteries can be standard size D, AA, or AAA batteries, or non-standard cylindrical batteries, with no limitation on the type of battery. Furthermore, the edges of the battery compartment 11 may have a ribbed structure to enhance its structural strength and prevent damage from external impacts during daily use.

[0037] The structural design of the battery cover assembly described in the above embodiment first, through the accurate guide rail and fixed platform design, ensures the convenience of battery cover installation and disassembly, and facilitates the user to replace the battery. Secondly, the cooperation between the convex bone structure on the battery cover A piece and the elastic bone structure on the battery cover B piece makes the user have a paragraph feeling when sliding the battery cover B piece. Finally, the combined design of the battery cover A piece and the B piece can effectively realize the sealing protection of the battery compartment, and ensure that the battery equipment can run stably in different use environments.

[0038] Please refer to Figure 3 , Figure 3 is a battery compartment structure schematic diagram provided by the embodiment of the application, the battery compartment 30 comprises: a first groove 31, a second groove 32, a third groove 33, a fourth groove 34, a first limiting part 35, a second limiting part 36, a third limiting part 37 and a fourth limiting part 38.

[0039] Among them, the battery compartment 30 has a battery slot inside, which is in the shape of a rectangular frame. The battery compartment 30 has a plurality of parallel partition plates inside, which can be used to separate different battery areas, or to support the battery components placed inside. Among them, the battery components placed inside can be different in appearance, such as cuboid, cylinder, which is not limited here.

[0040] Among them, the first groove 31 and the second groove 32 are respectively matched with the first fixed platform and the second fixed platform of the battery cover A piece, so that the battery cover A piece is fixed on the battery compartment 30; the third groove 33 and the fourth groove 34 are respectively matched with the third fixed platform and the fourth fixed platform of the battery cover B piece, so that the battery cover B piece is fixed on the battery compartment 30, wherein the first limiting part 35 and the second limiting part 36 are oppositely arranged, in a possible embodiment, the first limiting part 35 comprises the first groove 31 and the second groove 32, when the battery cover assembly is assembled to the battery compartment 30, the side of the battery cover A piece with the first fixed platform and the second fixed platform is abutted with the first limiting part 35, and the first fixed platform is matched with the first groove 31, and the second groove 32 is matched with the second fixed platform; the second limiting part 36 comprises the third groove 33 and the fourth groove 34, when the battery cover assembly is assembled to the battery compartment 30, the side of the battery cover B piece with the third fixed platform and the fourth fixed platform is abutbed with the second limiting part 36, and the third fixed platform is matched with the third groove 33, and the fourth fixed platform is matched with the fourth groove 34.

[0041] Among them, the third limiting part 37 and the fourth limiting part 38 are oppositely arranged, and the third limiting part 37 and the fourth limiting part 38 are respectively used to limit the movement direction of the battery cover A piece and the sliding direction of the battery cover B piece. In a possible embodiment, the first limiting part 35, the third limiting part 37, the second limiting part 36 and the fourth limiting part 38 are sequentially connected to surround and fix the battery cover assembly (such asFigure 4 )。

[0042] Please refer to Figure 4 , Figure 4 is a battery compartment assembly scene diagram 40 provided by an embodiment of the application, wherein 41 is a battery compartment assembly front view, 42 is a battery compartment assembly left view, 43 is a schematic diagram when the battery cover assembly is in use, and 44 is a schematic diagram when the battery cover assembly is in an open state. When the battery cover assembly is in use, the first limiting portion 35, the third limiting portion 37, the second limiting portion 36, and the fourth limiting portion 38 in the above-mentioned battery compartment surround and fix the battery cover assembly; as shown in the schematic diagram 44 when the battery cover assembly is in an open state, the battery cover B can slide on the battery cover A, and the third limiting portion 37 and the fourth limiting portion 38 respectively limit the transverse movement of the battery cover B, so that the battery cover B can only keep longitudinal sliding with the battery cover A.

[0043] In addition, Figure 4 The assembly diagram of the battery compartment and the battery cover assembly is also shown, including a battery compartment assembly front view 41 and a battery compartment assembly left view 42. In the battery compartment assembly front view 41, it includes a battery compartment 410 and a battery cover A 411 and a battery cover B 412, the battery cover A 411 and the battery cover B 412 are installed on the top of the battery compartment 410, in a possible embodiment, the shape of the battery compartment 410 is regular, there is a frame around the periphery, and there is a space inside for placing a battery. The battery cover A 411 and the battery cover B 412 cover the top of the battery compartment 410, and the two are tightly fitted to ensure the sealing of the battery compartment. In addition, the battery compartment 410 can have a clamping groove or support structure inside to fix the battery, so as to prevent the battery from moving during use, and the battery cover A 411 and the battery cover B 412 can have a handle or groove structure for easy opening and closing, and the frame of the battery compartment 410 can have a reinforcing rib or other reinforcing structure to enhance the overall strength of the battery compartment and prevent deformation when subjected to external force. In the battery compartment assembly left view 42, it can be seen that it is the side structure of the battery compartment 420, and the side can have holes or grooves for installing or fixing the battery compartment 420, which is not limited here.

[0044] Please refer to Figure 5 , Figure 5 is a battery cover A structure diagram 50 provided by an embodiment of the application, including a battery cover A front view 51 and a battery cover A back view 52, and the battery cover A cooperates with the battery cover B to form a battery cover assembly.

[0045] In the battery cover A front view 51, it can be seen that the battery cover A has a fifth groove 511, the two ends of which are a first end 512 and a second end 513 respectively, and the fifth groove 511 is used to cooperate with the first boss 134 (see Figure 1In conjunction with the battery cover B, it is used to limit the sliding distance of the battery cover B. The fifth groove 511 can be a cuboid structure, a cylindrical structure, or a "U"-shaped structure, and is not limited here.

[0046] In the rear view of battery cover A (Figure 52), it can be seen that battery cover A includes: a first fixing platform 522, a second fixing platform 523, a first guide rail 525, a second guide rail 526, a first protrusion 527, and a second protrusion 528. In battery cover A, the first side is 524 in the rear view of battery cover A, and the second side is 529 in the rear view of battery cover A. In one possible embodiment, battery cover A includes: a first guide rail 525 and a second guide rail 526, which are arranged parallel to each other along opposite sides of battery cover A. The first guide rail and the second guide rail are used to control the sliding direction of battery cover B. The first side 524 of battery cover A is provided with a first fixing platform 522 and a second fixing platform 523, which are arranged in parallel. Both the first fixing platform 522 and the second fixing platform 523 are used to fix the battery cover assembly to the battery compartment.

[0047] In one possible embodiment, the battery cover A further includes a first protrusion 527 and a second protrusion 528, the first protrusion 527 and the second protrusion 528 being disposed opposite to each other along the two second side surfaces 529 of the battery cover A, and the first protrusion 527 being arranged vertically with the first guide rail 525, and the second protrusion 528 being arranged vertically with the second guide rail 526.

[0048] Among them, the first protrusion 527 and the second protrusion 528 are protrusion structures for adjusting the feel, and are intended to cooperate with the first spring 131 and the second spring 135 on the battery cover B (see above). Figure 1 The structure adjusts the tactile feel of the movement of the battery cover B component. The first guide rail 525 and the second guide rail 526 are designed to mate with the first guide rail sleeve 132 and the second guide rail sleeve 136 on the battery cover B component (see...). Figure 1 The first fixed platform 522 and the second fixed platform 523 are used to ensure that the battery cover B can move back and forth. The fifth groove 511 is a stroke control structure, which is used to control the movement distance of the battery cover B and ensure that the battery cover B can only move between the first end 512 and the second end 513.

[0049] Please see Figure 6 , Figure 6is a battery cover B piece structure schematic diagram 60 provided by an embodiment of the application, including a battery cover B piece front view 61 and a battery cover B piece back view 62, the battery cover B piece cooperates with the battery cover A piece to form a battery cover assembly, and the battery cover B piece slides on the battery cover A piece.

[0050] In the battery cover B piece front view 61, it can be seen that the front of the battery cover B piece is 612, and the front 612 of the battery cover B piece includes an anti-skid structure 611. In a possible embodiment, the front of the battery cover B piece is provided with the anti-skid structure 611. Specifically, the anti-skid structure 611 can be a group of parallel lines, which are distributed in a diagonal direction, forming a sawtooth-like pattern. Through the design of the anti-skid structure 611, the surface friction can be increased, so that the friction is improved during the sliding process of the battery cover B piece.

[0051] In the battery cover B piece back view 62, it can be seen that the battery cover B piece includes a third fixed platform 621, a fourth fixed platform 622, a first guide rail sleeve 623, a second guide rail sleeve 624, a first elastic bone 625, a second elastic bone 626, and a first boss 627, wherein the third end of the first boss 627 is 628 and the fourth end is 629. In a possible embodiment, the back of the battery cover B piece has a first boss 627, and the first boss 627 is arranged at the middle position of the back. The first boss 627 is used to control the sliding distance of the battery cover B piece on the battery cover A piece. The first side of the back is provided with a third fixed platform 621, and the second side of the back is provided with a fourth fixed platform 622. The third fixed platform 621 and the fourth fixed platform 622 are arranged in parallel, and both are used for fixing the battery cover assembly on the battery compartment.

[0052] In a possible embodiment, the battery cover B piece includes a first guide rail sleeve 623 and a second guide rail sleeve 624. The first guide rail sleeve 623 is arranged on the third fixed platform 621, and the second guide rail sleeve 624 is arranged on the fourth fixed platform 622. The first guide rail sleeve 623 and the second guide rail sleeve 624 are arranged in parallel. The first guide rail sleeve 623, the second guide rail sleeve 624, the first guide rail 525, and the second guide rail 526 are correspondingly connected (see the above description Figure 5 ). The battery cover B piece further includes a first elastic bone 625 and a second elastic bone 626. The first elastic bone 625 and the second elastic bone 626 are arranged on the first guide rail sleeve 623 and the second guide rail sleeve 624 respectively, and the first elastic bone 625 and the second elastic bone 626 are arranged opposite to each other. The first elastic bone 625 and the second elastic bone 626 make the battery cover B piece have a hand feeling when moving on the battery cover A piece.

[0053] In one possible embodiment, the first elastic bone 625 includes a yielding structure to ensure that the first convex bone has a tactile feel during sliding through the first elastic bone position; the second elastic bone 626 also includes a yielding structure to ensure that the second convex bone has a tactile feel during sliding through the first elastic bone position.

[0054] As can be seen, the battery cover B is limited on the battery cover A by the first guide rail sleeve 623 and the second guide rail sleeve 624 on the battery cover B and the first guide rail 525 and the second guide rail 526 on the battery cover A (see Figure 5 ), which together ensure that the battery cover B can only move forward and backward on the battery cover A without falling off. The fifth groove 511 on the front of the battery cover A and the first boss 627 on the battery cover B work together to control the forward and backward movement of the battery cover B. When the battery cover B is pushed forward, the fourth end 629 of the first boss 627 on the battery cover B moves to the second end 513 of the fifth groove 511 on the battery cover A, and the battery cover B is stopped by the second end 513 structure on the battery cover A, thereby limiting the forward movement of the battery cover B, and ensuring that the battery cover B cannot be pushed out of the battery cover A. When the battery cover assembly is installed in the battery compartment, and when the battery cover B is pushed to the closed position (at this time, the third end 628 of the first boss 627 structure on the battery cover B moves to the first end 512 of the fifth groove 511 on the battery cover A, which is stopped by the first end 512 structure on the battery cover A), the third fixed platform 621 and the fourth fixed platform 622 on the battery cover B are just fitted into the third groove 33 and the fourth groove 34 (see Figure 3 ) of the battery compartment, thereby ensuring that the battery cover assembly can be used normally. At the same time that the battery cover B is pushed forward, the first convex bone 527 and the second convex bone 528 (see Figure 5 ) on the battery cover A adjust the movement of the battery cover B together with the first elastic bone 625 and the second elastic bone 626 on the battery cover B, thereby ensuring that the battery cover B has a clear tactile feel when it is pushed through the elastic bone position, and vice versa. When the battery cover assembly is removed from the battery compartment, the battery cover B is pushed backward to the position where the third end 628 of the first boss 627 on the battery cover B is stopped by the second end 513 of the fifth groove 511 on the battery cover A, which is just enough to ensure that the third fixed platform 621 and the fourth fixed platform 622 on the battery cover B can be completely fitted into the first guide rail 525 and the second guide rail 526 on the battery cover A.

[0055] In summary, it can be seen that the battery cover assembly provided in the embodiment sufficiently enhances the experience of users, when the battery cover assembly is installed into the battery compartment, only the battery cover B needs to be slid forward, when the battery compartment needs to be opened, only the battery cover B needs to be slid backward, and then the battery cover B can be taken out through the front surface 612, thereby improving the experience of users.

[0056] The utility model also provides an electronic equipment, the electronic equipment includes above-mentioned battery cover structure.

[0057] It should be noted that all electronic components, circuits, integrated modules and materials involved in the embodiment are related technologies, and the professional technicians in the related field can implement them according to the process and principles of the utility model, and the assembly process of the utility model is not described in detail, and the protection content of the utility model does not involve the improvement of electronic components, software and the like.

[0058] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary technical personnel in the technical field, a number of improvements and replacements can be made without departing from the technical principles of the utility model, and these improvements and replacements should also be regarded as the protection range of the utility model.

Claims

1. A battery cover structure, characterized by, The battery cover structure comprises a battery compartment and a battery cover assembly, the battery cover assembly comprises a battery cover A piece and a battery cover B piece; the battery cover A piece is connected to the battery cover B piece, the battery cover A piece is a fixed component, and the battery cover B piece is a slidable component; the battery compartment and the battery cover assembly are detachably connected; wherein: The battery compartment has a receiving space, and the receiving space has at least one battery slot for placing a battery. The battery cover assembly is used to be fixed to the battery compartment, wherein the battery cover B piece can be slidably close to the battery cover A piece to open the battery cover assembly; the receiving space is located below the battery cover B piece.

2. The battery cover structure of claim 1, wherein, The battery cover A piece comprises first and second guide rails which are arranged in parallel along opposite sides of the battery cover A piece, and are used to control the sliding direction of the battery cover B piece. A first side of the battery cover A piece is provided with first and second fixed platforms which are arranged in parallel, and are both used for fixing the battery cover assembly on the battery compartment.

3. The battery cover structure of claim 2, wherein, The battery cover A piece further comprises first and second convex bones which are arranged in opposition along two second sides of the battery cover A piece respectively, and the first convex bone is arranged above the first guide rail, and the second convex bone is arranged above the second guide rail.

4. The battery cover structure of claim 3, wherein, The back of the battery cover B piece has a first boss which is arranged at the middle position of the back, and is used to control the sliding distance of the battery cover B piece on the battery cover A piece. A first side of the back is provided with a third fixed platform, and a second side of the back is provided with a fourth fixed platform, the third and fourth fixed platforms are arranged in parallel, and are both used for fixing the battery cover assembly on the battery compartment.

5. The battery cover structure of claim 4, wherein, The battery cover B piece comprises first and second guide rail sleeves, the first guide rail sleeve is arranged on the third fixed platform, the second guide rail sleeve is arranged on the fourth fixed platform, and the first and second guide rail sleeves are arranged in parallel; the first and second guide rail sleeves are correspondingly connected with the first and second guide rails; The battery cover B piece further comprises first and second elastic bones which are arranged on the first and second guide rail sleeves respectively, and are arranged in opposition, so that the battery cover B piece has a hand feeling when moving on the battery cover A piece.

6. The battery cover structure of claim 5, wherein, The first elastic bone comprises a yielding structure which is used to ensure that the first convex bone has a hand feeling when sliding through the position of the first elastic bone.

7. The battery cover structure of claim 6, wherein The front of the battery cover B piece is provided with an anti-slip structure.

8. The battery cover structure of any one of claims 1-7, wherein, The battery compartment is provided with a first limiting part and a second limiting part, the first limiting part is arranged corresponding to the battery cover A, and the second limiting part is arranged corresponding to the battery cover B; when the battery cover assembly is combined with the battery compartment cover, the first limiting part and / or the second limiting part abuts or fixes the battery cover assembly.

9. The battery cover structure of claim 8, wherein, The battery compartment includes a third limiting part and a fourth limiting part arranged opposite on two sides, and the first limiting part, the third limiting part, the second limiting part and the fourth limiting part are sequentially connected to surround and fix the battery cover assembly.

10. An electronic device, comprising: The electronic device includes the battery cover structure according to any one of claims 1-9.