Quick-release shell assembly and electronic product

Through the sliding connection and limit structure of the quick-disassembly housing assembly, the complex and damage problems of electronic product disassembly are solved, and the rapid disassembly and durability is achieved, which is suitable for battery repair and recycling of electronic products.

CN120547801APending Publication Date: 2025-08-26HUIZHOU TONLY ELECTRONICS LTD
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Patent Information

Application Number
CN202510675466.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-08-26

AI Technical Summary

Technical Problem

Existing electronic products are complex, time-consuming and easy to damage during disassembly, resulting in difficulty in repairing and recycling, affecting product stability and life.

Method used

The quick-removal housing assembly is adopted, and the slidingly connected bottom box and box cover design is designed to achieve quick disassembly and assembly by using the clamping or disengagement of the first and second locking parts to avoid fatigue damage from traditional snaps and screw locks. The limiting structure of the button and top support is combined to simplify operation.

Benefits of technology

It improves the durability and disassembly of the housing assembly, reduces structure damage, extends product life, facilitates battery repair and recycling, and reduces environmental impact.

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Abstract

The invention discloses a quick-release shell assembly and an electronic product, the quick-release shell assembly comprises a bottom box and a box cover, a containing cavity with an opening is formed in the bottom box, a first locking piece is arranged in the containing cavity, the box cover covers the opening and is in sliding connection with the periphery of the opening, a second locking piece used for being connected with the first locking piece in a clamped mode is arranged on the box cover, and the second locking piece is connected with the first locking piece in a clamped mode. And the box cover is configured to slide back and forth along the periphery of the opening, so that the first locking piece and the second locking piece are clamped or separated.
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Description

Technical Field

[0001] The present invention relates to the technical field of electronic product housings, and in particular to a quick-release housing assembly and an electronic product. Background Art

[0002] With the widespread use and rapid replacement of electronic products worldwide, the problem of e-waste is becoming increasingly serious and has become an urgent environmental challenge. To promote sustainable development, countries around the world have introduced policies encouraging electronics manufacturers to consider the repairability and recyclability of their products during design and production. For example, European regulations require that subsequent electronic products have replaceable batteries to reduce e-waste. The implementation of this regulation reflects the global pursuit of green environmental protection and is prompting innovation and reform in product design within the electronics industry.

[0003] Currently, most electronic products on the market are assembled using a combination of buckles and screws and nuts. While this structure can meet product stability requirements to a certain extent, it presents numerous issues during disassembly. Using a screw-nut assembly, on the one hand, often requires specialized tools such as screwdrivers and tweezers, making disassembly complex and time-consuming, and increasing the difficulty of repairs and battery replacements. On the other hand, screws can easily be lost during disassembly, making it impossible to fully restore the product. Improper tool use can even damage the electronic housing, affecting the product's appearance and lifespan. Buckles, on the other hand, are prone to fatigue damage from repeated assembly and disassembly, resulting in poor durability.

[0004] Therefore, developing a battery housing structure that can be quickly and repeatedly disassembled and assembled to achieve the repair and recycling of batteries in electronic products and reduce the negative impact of electronic products on the environment has become a technical problem that needs to be urgently solved by those skilled in the art. Summary of the Invention

[0005] The main purpose of the present invention is to propose a quick-release housing assembly and an electronic product, aiming to improve the convenience and durability of disassembly of the housing assembly, so as to realize the repair and recycling of batteries in electronic products and reduce the negative impact of electronic products on the environment.

[0006] To achieve the above-mentioned objectives, the quick-release shell assembly proposed in the present invention includes a base box and a box cover, a accommodating cavity with an opening is formed in the base box, a first locking piece is provided in the accommodating cavity, the box cover is arranged on the opening and is slidably connected to the periphery of the opening, a second locking piece is provided on the box cover for engaging with the first locking piece, and the box cover is configured to slide back and forth along the periphery of the opening so that the first locking piece is engaged or disengaged with the second locking piece.

[0007] The present invention further provides an electronic product, comprising a battery and the above-mentioned quick-release housing assembly, wherein the battery is accommodated in the accommodating cavity. BRIEF DESCRIPTION OF THE DRAWINGS

[0008] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0009] Figure 1 An exploded schematic diagram of an embodiment of a quick-release housing assembly provided by the present invention;

[0010] Figure 2 for Figure 1 Schematic diagram of the structure of the midsole box;

[0011] Figure 3 for Figure 1 Schematic diagram of the structure of the middle box cover;

[0012] Figure 4 A cross-sectional view of the quick-release housing assembly provided by the present invention in an unlocked state;

[0013] Figure 5 for Figure 4 A partial enlarged view of point A in the middle;

[0014] Figure 6 A cross-sectional view of the quick-release housing assembly provided by the present invention in a locked state;

[0015] Figure 7 for Figure 6 A partial enlarged view of point B in the middle;

[0016] Figure 8 for Figure 1 A schematic diagram of the cutaway and exploded structure of the middle button and the fixing sleeve;

[0017] Figure 9 for Figure 1 Schematic diagram of the structure of the middle top support member;

[0018] Figure 10 for Figure 1 Schematic diagram of the structure of the shrapnel;

[0019] Figure 11 for Figure 1 Schematic diagram of the structure of the middle bracket.

[0020] Description of Figure Numbers:

[0021] 100. Quick release housing assembly;

[0022] 1. Bottom box; 1a. Accommodation cavity; 1b. Opening; 11. First protrusion;

[0023] 2. Box cover; 21. Second protrusion; 21a. Snap-fit ​​notch;

[0024] 3. Stopper; 3a. First avoidance hole; 3b. Second avoidance hole;

[0025] 4. Button; 4a. Transmission slot; 41. Ratchet teeth; 41a. Avoidance slot;

[0026] 5. Top support member; 51. Elastic connecting portion; 52. Top support portion;

[0027] 6. Spring piece; 61. Fixing portion; 62. Bow-shaped bending portion; 63. Abutting portion;

[0028] 7. Fixed sleeve; 71. Limiting rib;

[0029] 8. Bracket; 81. Clamping jaws;

[0030] 200. Battery.

[0031] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0033] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0034] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited to "first" and "second" may explicitly or implicitly include at least one of such features. In addition, if "and / or" or "and / or" appears in the full text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions that satisfy both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0035] The present invention provides a quick-release housing assembly 100 .

[0036] See also Figures 1 to 3 In one embodiment of the present invention, the quick-release housing assembly 100 includes a base box 1 and a box cover 2. A receiving cavity 1a with an opening 1b is formed in the base box 1, and a first locking member is provided in the receiving cavity 1a; the box cover 2 is covered with the opening 1b and is slidably connected to the periphery of the opening 1b, and a second locking member for engaging with the first locking member is provided on the box cover 2; the box cover 2 is configured to slide back and forth along the periphery of the opening 1b to engage or disengage the first locking member with the second locking member.

[0037] In this embodiment, the shape of the accommodating chamber 1a within the bottom box 1 can be adjusted to the shape of the battery 200 to ensure that the battery 200 can be securely placed within the accommodating chamber 1a. For example, it can be designed into a rectangular or cylindrical shape. The shape of the lid 2 is compatible with the opening 1b of the bottom box 1 and is slightly larger than the opening 1b to ensure that the lid 2 can completely cover the opening 1b. When the lid 2 is placed over the opening 1b, the bottom wall of the lid 2 slides against the periphery of the opening 1b. Optionally, the first locking member is a slot provided on the side wall of the accommodating chamber 1a. The slot is L-shaped. Specifically, the first section of the L-shaped slot extends from the bottom wall of the accommodating chamber 1a to the opening 1b and communicates with the opening 1b. The second section of the L-shaped slot is aligned with the direction in which the lid 2 slides relative to the bottom box 1 along the periphery of the opening 1b. The second locking member is a protrusion provided on the bottom wall of the lid 2. The protrusion first extends toward the bottom wall of the accommodating chamber 1a and then bends to extend toward the side wall of the accommodating chamber 1a. The shape of the end of the protrusion away from the box cover 2 is matched with the shape of the draw-in slot, and its size and shape ensure that it can fit tightly with the draw-in slot. When the box cover 2 moves along the opening 1b to the bottom wall of the accommodating chamber 1a, the box cover 2 closes the opening 1b and the end of the protrusion away from the box cover 2 slides into the first section of the L-shaped draw-in slot. When the box cover 2 slides relative to the bottom box 1 along the periphery of the opening 1b, the protrusion slides into the second section of the L-shaped draw-in slot. In this way, the box cover 2 can no longer be separated from the bottom box 1 along the direction from the bottom wall of the accommodating chamber 1a to the opening 1b. At this time, the box cover 2 and the bottom box 1 are in a locked state. When it is necessary to unlock, it is only necessary to slide the box cover 2 in the opposite direction along the periphery of the opening 1b relative to the bottom box 1, so that the protrusion slides out of the second section of the L-shaped draw-in slot. At this time, the box cover 2 and the bottom box 1 are in an unlocked state. The box cover 2 can move along the bottom wall of the accommodating chamber 1a to the opening 1b to separate the protrusion from the first section of the L-shaped draw-in slot. Alternatively, the first locking member is a slot provided on the side wall of the lid 2, the slot being shaped like an inverted L. Specifically, the first section of the inverted L-shaped slot extends from the bottom wall to the top wall of the lid 2, and the second section of the inverted L-shaped slot is aligned with the direction in which the lid 2 slides relative to the bottom box 1 along the periphery of the opening 1b. The second locking member is a protrusion provided on the side wall of the accommodating chamber 1a, the protrusion being shaped to match the shape of the slot, and its size and shape ensure a close fit with the slot. When the lid 2 moves along the opening 1b to the bottom wall of the accommodating chamber 1a, the lid 2 closes the opening 1b and can partially extend into the opening 1b and the accommodating chamber 1a, so that the protrusion on the side wall of the accommodating chamber 1a can slide into the first section of the inverted L-shaped slot. In order to achieve that the box cover 2 closes the opening 1b and can partially extend into the opening 1b and the accommodating cavity 1a, the side wall of the box cover 2 can be configured as a step, with the step portion located outside the opening 1b and slidingly abutting against the periphery of the opening 1b, and the other portion of the step extending into the accommodating cavity 1a. The side wall of the step extending into the accommodating cavity 1a is provided with the above-mentioned inverted L-shaped slot. When the box cover 2 slides relative to the base box 1 along the periphery of the opening 1b, the protrusion further slides into the second section of the L-shaped slot.In this way, the box cover 2 can no longer be separated from the bottom box 1 along the direction from the bottom wall of the accommodating cavity 1a to the opening 1b. At this time, the box cover 2 and the bottom box 1 are in a locked state. When unlocking is required, it is only necessary to slide the box cover 2 in the opposite direction along the periphery of the opening 1b relative to the bottom box 1, so that the protrusion slides out of the second section of the inverted L-shaped slot. At this time, the box cover 2 and the bottom box 1 are in an unlocked state, and the box cover 2 can move along the direction from the bottom wall of the accommodating cavity 1a to the opening 1b to disengage the protrusion from the first section of the inverted L-shaped slot.

[0038] Compared to traditional snap fasteners, this sliding unlocking arrangement in this embodiment effectively prevents buckle fatigue damage caused by repeated assembly and disassembly, thereby improving the durability of the housing assembly. Furthermore, compared to traditional screw fastening arrangements, disassembly is more convenient and quicker, and no holes are drilled in the lid 2 or bottom box 1 to install the screws. This ensures structural integrity and avoids structural damage, further extending the product's service life and ease of maintenance.

[0039] Further, see Figures 1 to 3 In one embodiment of the present invention, one of the first locking member and the second locking member is a first protrusion 11, and the other of the first locking member and the second locking member is a second protrusion 21, and the second protrusion is provided with a snap-fitting notch 21a; the box cover 2 is configured to slide back and forth along the periphery of the opening 1b so that the first protrusion 11 is snap-fitted or disengaged with the inner wall of the snap-fitting notch 21a.

[0040] In this embodiment, optionally, the first locking member is a first protrusion 11 provided on the side wall of the accommodating cavity 1a, and the second locking member is a second protrusion 21 provided on the side of the box cover 2 facing the bottom box 1, and the side wall of the second protrusion 21 is provided with a snap-fit ​​notch 21a. For example, the second protrusion 21 is provided in an L-shape or an inverted T-shape, and the box cover 2 is configured to slide back and forth along the periphery of the opening 1b so that the first protrusion 11 is engaged with or disengaged from the inner wall of the snap-fit ​​notch 21a. Specifically, the box cover 2 is entirely located outside the accommodating chamber 1a and is slidably connected to the periphery of the opening 1b. The second protrusion 21 extends into the accommodating chamber 1a. The sidewall of the accommodating chamber 1a is provided with a first protrusion 11, the size and shape of which are designed according to the required locking strength. For example, the shape of the first protrusion 11 is rectangular or semicircular. The first protrusion 11 can be set as a non-detachable structure with the bottom box 1, or it can be set as a detachable structure. For example, the first protrusion 11 and the bottom box 1 are an integrally molded structure, for example, the first protrusion 11 is connected to the bottom box 1 by screws. The side of the box cover 2 facing the bottom box 1 is provided with a second protrusion 21, which extends along the bottom wall of the accommodating chamber 1a to the opening 1b. The sidewall of the second protrusion 21 is provided with a snap-fit ​​notch 21a. The shape and size of the snap-fit ​​notch 21a are designed to match the shape of the first protrusion 11, so that the first protrusion 11 can be tightly embedded in the snap-fit ​​notch 21a. Optionally, the snap-in notch 21a can be set to face the side wall of the accommodating cavity 1a where the first protrusion 11 is located. Optionally, the snap-in notch 21a can be set to face the other side wall of the accommodating cavity 1a adjacent to the side wall where the first protrusion 11 is located. When the box cover 2 needs to be installed on the bottom box 1, the box cover 2 is aligned with the opening 1b of the bottom box 1, so that the second protrusion 21 is inserted into the accommodating cavity 1a and the snap-in notch 21a is aligned with the first protrusion 11. Then, the box cover 2 is pushed along the periphery of the opening 1b, so that the first protrusion 11 gradually slides into the snap-in notch 21a. When the first protrusion 11 is completely embedded in the snap-in notch 21a, the box cover 2 and the bottom box 1 are in a locked state, and the box cover 2 cannot slide away from the bottom box 1 along the periphery of the opening 1b. At this time, a sealed accommodating space is formed between the box cover 2 and the bottom box 1, which can effectively protect the internal battery 200 from the influence of the external environment. When the box cover 2 needs to be removed, it is only necessary to push the box cover 2 in the opposite direction along the periphery of the opening 1b so that the first protrusion 11 slides out of the engaging notch 21a, thereby unlocking the box cover 2 and the bottom box 1. At this time, the box cover 2 can slide away from the bottom box 1 along the periphery of the opening 1b.

[0041] Alternatively, the sidewall of the box cover 2 is stepped and partially extends into the accommodating chamber 1a. A portion of the step is located outside the opening 1b and slides against the periphery of the opening 1b to close the opening 1b, while the other portion extends into the accommodating chamber 1a. The sidewall of the step extending into the accommodating chamber 1a is provided with a second locking member, which is a first protrusion 11. The sidewall of the accommodating chamber 1a is provided with the first locking member, which is a second protrusion 21. The sidewall of the second protrusion 21 is provided with a snap-fitting notch 21a. For example, the second protrusion 21 is C-shaped or inverted L-shaped. The second protrusion 21 can be configured as a non-detachable structure with the bottom box 1, or it can be configured as a detachable structure, for example, the second protrusion 21 is integrally formed with the bottom box 1, for example, the second protrusion 21 is connected to the bottom box 1 by screws. As the portion of the step located outside the opening 1b slides along the periphery of the opening 1b, the first protrusion 11 can slide into the snap-fitting notch 21a.

[0042] This embodiment achieves locking and unlocking through the snap-fit ​​engagement of the first protrusion 11 with the snap-fit ​​notch 21a, resulting in a simple structure and convenient and quick operation. Compared to conventional snap fasteners, this effectively avoids the problem of snap fastener fatigue damage caused by repeated assembly and disassembly, thereby improving the durability of the housing assembly. Furthermore, compared to conventional screw-locking arrangements, the disassembly process is more convenient and quicker, and the installation of screws eliminates the need for holes in the lid 2 and base box 1, thereby ensuring structural integrity and avoiding structural damage, further increasing the product's service life and ease of maintenance. Furthermore, compared to the previous embodiment, the need for slotting the base box 1 can be avoided, ensuring the structural strength of the base box 1.

[0043] Further, see Figures 4 to 7 In one embodiment of the present invention, the quick-release housing assembly 100 further includes a stopper 3, a button 4, and a top support 5; the stopper 3 is provided on the side of the box cover 2 facing the bottom box 1 and is spaced apart from the side wall of the accommodating cavity 1a, the button 4 is slidably penetrated through the side wall of the accommodating cavity 1a and is located in the sliding direction of the box cover 2, and the top support 5 is partially located between the stopper 3 and the button 4 and is rotatably connected to the inner wall of the accommodating cavity 1a or the stopper 3; the button 4 is configured to push the top support 5 to rotate so that the two ends of the top support 5 respectively abut against the side wall of the accommodating cavity 1a and the stopper 3.

[0044] In this embodiment, the shape and structure of the stopper 3 can be designed according to actual needs, and its main function is to cooperate with the top support member 5 to prevent the box cover 2 from sliding. For example, the stopper 3 can be a wall parallel to the side wall of the accommodating cavity 1a, one end of which is connected to the box cover 2, and the other end extends into the accommodating cavity 1a. The size of the stopper 3 is designed according to the size of the accommodating cavity 1a and the position of the top support member 5 to ensure that it can closely cooperate with the top support member 5 to achieve effective locking of the box cover 2. This embodiment does not limit the shape and size of the stopper 3. The stopper 3 can be set to be detachably connected or non-detachably connected to the box cover 2. For example, the stopper 3 and the box cover 2 are an integrally formed structure. For example, the stopper 3 and the box cover 2 are connected by screws.

[0045] The sidewall of the accommodating chamber 1a is provided with a through hole. The button 4 is inserted into the through hole and slidably connected to the inner wall or periphery of the through hole, with its sliding direction being consistent with the sliding direction of the lid 2. The supporting member 5 is a lever structure, connected to the sidewall of the accommodating chamber 1a where the button 4 is located, or to the stopper 3. Optionally, the supporting member 5 is rotatably connected to the inner wall of the accommodating chamber 1a or the stopper 3 via a rotating shaft. The supporting member 5 has a free end that rotates about the rotating shaft. When unlocked, the free end is located between the button 4 and the stopper 3 and in the sliding path of the button 4. When the lid 2 is to be installed on the bottom box 1, the lid 2 is aligned with the opening 1b of the bottom box 1, and the stopper 3 is inserted into the accommodating chamber 1a. At this point, the supporting member 5 is in its initial position, with a certain gap between its free end and the stopper 3. When the lid 2 is to be locked, the button 4 is pressed, and the button 4 pushes the supporting member 5 to rotate about the rotating shaft. The free end of the top support member 5 gradually approaches the stop member 3 and finally abuts against the stop member 3. At this time, the other end of the top support member 5 away from the free end abuts against the side wall of the accommodating chamber 1a, forming a stable support structure, preventing the box cover 2 from sliding along the periphery of the opening 1b, thereby achieving the locking of the box cover 2 and the bottom box 1. When the box cover 2 needs to be removed, it is only necessary to slide the button 4 in the opposite direction so that the button 4 no longer abuts against the top support member 5, and the free end of the top support member 5 can be separated from the stop member 3. At this time, the top support member 5 can be restored to its initial position and no longer exerts force on the stop member 3. Then push the box cover 2 along the periphery of the opening 1b so that the box cover 2 is unlocked from the bottom box 1 along the sliding direction. In addition, the top support member 5 can also be rotatably connected to the side wall of the accommodating chamber 1a or the stop member 3 by means of an elastic connection. Furthermore, in order to ensure that the support member 5 can be reset when the button 4 slides in the opposite direction and away from the stop member 3, the button 4 and the support member 5 can be connected by a flexible connecting member, so that the button 4 slides in the opposite direction and away from the stop member 3, which drives the support member 5 to reset.

[0046] This embodiment utilizes the cooperation of button 4, support member 5, and stopper 3 to limit and release the sliding movement of lid 2, thereby maintaining and releasing the lock between lid 2 and base box 1. The structure is simple and the operation is convenient and quick. The sliding arrangement of button 4 effectively prevents fatigue damage caused by repeated pressing, thereby improving the durability of the housing assembly.

[0047] Further, see Figures 4 to 7 、 Figure 9 In one embodiment of the present invention, the supporting member 5 includes an elastic connecting portion 51 and a supporting portion 52 connected to each other, the elastic connecting portion 51 is connected to the inner wall of the accommodating cavity 1a or the stopper 3, and the supporting portion 52 is partially located between the stopper 3 and the button 4; the button 4 is configured to push the supporting portion 52 to rotate so that the two ends of the supporting portion 52 respectively abut against the side wall of the accommodating cavity 1a and the stopper 3.

[0048] In this embodiment, the supporting member 5 includes an elastic connecting portion 51 and a supporting portion 52 that are interconnected. The elastic connecting portion 51 is made of an elastic material, such as an elastic plastic sheet or a metal spring sheet, one end of which is fixedly connected to the inner wall of the accommodating cavity 1a or the stopper 3, and the other end is connected to the supporting portion 52. The design of the elastic connecting portion 51 allows the supporting member 5 to undergo elastic deformation when subjected to an external force, thereby enabling the supporting portion 52 to rotate flexibly and automatically return to its initial position after the force disappears. The supporting portion 52 is lever-shaped, and its size and shape are designed according to the size of the accommodating cavity 1a and the position of the stopper 3. The free end of the supporting portion 52 is located between the stopper 3 and the button 4. When the button 4 is pressed, the pushing portion of the button 4 directly acts on the supporting portion 52, pushing it to rotate around the elastic connecting portion 51. The two ends of the supporting portion 52 are designed to be in close contact with the side wall of the accommodating cavity 1a and the stopper 3, respectively, to ensure that the box cover 2 cannot slide away from the bottom box 1 along the periphery of the opening 1b when locked.

[0049] When the lid 2 needs to be locked, the button 4 is pressed, which pushes the supporting portion 52 to rotate about the connection with the elastic connecting portion 51. The elastic connecting portion 51 itself deforms and rotates, and finally the two ends of the supporting portion 52 respectively abut the side wall of the accommodating cavity 1a and the stopper 3. When the button 4 slides back to reset, the supporting portion 52 rotates in the opposite direction under the elastic restoring force of the elastic connecting portion 51, and its two ends are released from the abutment state with the side wall of the accommodating cavity 1a and the stopper 3, thereby unlocking the lid 2.

[0050] This design, through the coordination of the elastic connection portion 51 and the support portion 52, makes the locking and unlocking process smoother, reduces wear between mechanical components, and improves the durability of the housing assembly. Furthermore, the elastic restoring force of the elastic connection portion 51 ensures that the support portion 52 automatically returns to its original position after unlocking, further enhancing operational convenience and reliability. Furthermore, this design can accommodate certain manufacturing and assembly errors, improving the overall product performance and user experience. Furthermore, compared to a connection via a rotating shaft, the design of the elastic connection portion 51 in this embodiment is simpler and easier to assemble.

[0051] Further, see Figures 4 to 7 In one embodiment of the present invention, the quick-release housing assembly 100 further includes a reset elastic member, which is disposed on the inner wall of the accommodating cavity 1 a or the stopper 3 and is connected to the button 4 .

[0052] In this embodiment, the main function of the reset elastic member is to provide a restoring force for the button 4 so that it can automatically return to its initial position after the operation is completed. It should be noted that this design is significantly different from the elastic connector. The elastic connector is mainly used for elastic support and restoration of the supporting member 5, while the reset elastic member is used for the reset operation of the button 4. The reset elastic member can adopt a variety of structural forms, such as a spring, an elastic plastic sheet or other materials with elastic recovery function. Optionally, the reset elastic member is a spring, one end of which is fixed to the inner wall of the accommodating chamber 1a or the stopper 3, and the other end is connected to the end of the button 4 extending into the accommodating chamber 1a. When the button 4 is pressed, the spring is compressed and stores elastic potential energy. When the button 4 slides in the opposite direction to move away from the stopper 3, the elastic restoring force of the spring pushes the button 4 back to its initial position, thereby achieving automatic reset. In this way, the user does not need to manually push the button 4 back to its initial position, which significantly improves the convenience of operation.

[0053] Further, see Figures 4 to 7 、 Figure 10 In one embodiment of the present invention, the reset elastic member is a spring 6, which includes a fixing portion 61, an arched bending portion 62 and a contact portion 63 connected in sequence. The fixing portion 61 is connected to the inner wall of the accommodating cavity 1a or the stopper 3, and the contact portion 63 abuts against the button 4.

[0054] In this embodiment, the spring piece 6 is made of a highly elastic material, such as metal or highly elastic plastic, and its shape and size are designed according to the structure of the inner wall of the accommodating cavity 1a or the stopper 3. The fixing portion 61 can be connected to the inner wall of the accommodating cavity 1a or the stopper 3 by means of screws, snaps, welding or bonding. The bow-shaped bending portion 62 is the core part of the spring piece 6 and can provide the elastic potential energy required for elastic deformation. The abutment portion 63 is located at the other end of the bow-shaped bending portion 62, and its shape and size are designed according to the structure of the button 4 to ensure that it can tightly abut against the end of the button 4 close to the stopper 3. The surface of the abutment portion 63 that abuts against the button 4 can be anti-slip treated or have an increased friction coefficient to improve the contact stability with the button 4.

[0055] When button 4 is pressed, it contacts the abutment 63 of spring 6, exerting pressure that causes the arcuate bend 62 to elastically deform, storing elastic potential energy. At this point, the abutment 63 of spring 6 is pressed against the stopper 3. When button 4 slides back away from the stopper 3, the elastic restoring force of the arcuate bend 62 quickly pushes the abutment 63 back to its initial position, automatically resetting button 4. This design of spring 6 not only provides a stable elastic restoring force but also offers the advantages of a compact structure and rapid response, making it particularly suitable for electronic products with limited space.

[0056] Further, see Figure 3 、 Figure 5 and Figure 7 In one embodiment of the present invention, a first avoidance hole 3a is provided on the side of the stopper 3 facing the button 4 for the button 4 and the supporting member 5 to extend into. The button 4 is configured to push the supporting member 5 to rotate so that the two ends of the supporting member 5 respectively abut against the side wall of the accommodating cavity 1a and the bottom wall of the first avoidance hole 3a.

[0057] In this embodiment, a first avoidance hole 3a is provided on the side of the stopper 3 facing the button 4. The shape and size of the first avoidance hole 3a match the button 4 and the top support 5, allowing the button 4 and the top support 5 to extend into the hole at the same time. For example, the first avoidance hole 3a can be designed to be square or rectangular to adapt to the shape of the button 4. When the button 4 extends into the first avoidance hole 3a, the top support 5 can also extend into the first avoidance hole 3a. The accommodating cavity 1a on the side of the stopper 3 facing away from the button 4 is used to accommodate the battery 200. When the box cover 2 needs to be locked, the button 4 is pressed, and the button 4 pushes the top support 5 to rotate and extend into the first avoidance hole 3a, so that the two ends of the top support 5 respectively abut the side wall of the accommodating cavity 1a and the bottom wall of the first avoidance hole 3a. In this way, the distance between the stopper 3 and the side wall of the accommodating cavity 1a where the button 4 is set can be reduced, and the space for accommodating the battery 200 can be expanded.

[0058] Furthermore, a second avoidance hole 3b can be provided on the bottom wall of the first avoidance hole 3a, extending through the stopper 3. The fixing portion 61 of the spring clip 6 is connected to the periphery of the first avoidance hole 3a, and the arcuate bent portion 62 and the abutting portion 63 are provided corresponding to the second avoidance hole 3b. When the button 4 pushes the abutting portion 63, the abutting portion 63 and the arcuate bent portion 62 are retracted into the second avoidance hole 3b, further reducing the space occupied by the spring clip 6 for accommodating the battery 200.

[0059] Further, see Figure 5 、 Figure 7 and Figure 8 In one embodiment of the present invention, a fixing sleeve 7 is fixedly provided on the side wall of the accommodating chamber 1a, and the button 4 is slidably penetrated through the fixing sleeve 7 and the side wall of the accommodating chamber 1a; a limiting rib 71 is formed on the inner wall of the fixing sleeve 7 at one end away from the stop member 3, and a plurality of ratchet teeth 41 distributed along the circumference of the button 4 and connected in sequence are formed on the outer wall of the button 4, and the plurality of ratchet teeth 41 are arranged toward the limiting rib 71, and a avoiding groove 41a is formed on the outer wall of the button 4, which passes through the ratchet teeth 41 along the axial direction of the button 4; the limiting rib 71 abuts between two adjacent ratchet teeth 41 or is inserted into the avoiding groove 41a.

[0060] In this embodiment, in order to keep the button 4 in the pressed state after being pressed, so that the supporting member 5 can stably abut the stop member 3 and the side wall of the accommodating chamber 1a, a fixing sleeve 7 is fixed to the side wall of the accommodating chamber 1a, and the button 4 is slidably passed through the fixing sleeve 7 and the side wall of the accommodating chamber 1a. A matching structure of a limiting rib 71 and a ratchet tooth 41 is provided between the fixing sleeve 7 and the button 4, thereby realizing stable sliding and locking of the button 4.

[0061] Specifically, the fixing sleeve 7 is attached to the sidewall of the accommodating chamber 1a by bonding, screwing, or other means. It can be made of high-strength plastic or metal to ensure structural stability and durability. The inner wall of the fixing sleeve 7 is designed with a limiting rib 71. The limiting rib 71 is located at the end of the fixing sleeve 7 away from the stopper 3. The end of the limiting rib 71, which is closer to the stopper 3, has a triangular end portion that is configured to align and abut between two adjacent ratchet teeth 41. The button 4 slides through the fixing sleeve 7 and the sidewall of the accommodating chamber 1a. Its outer wall is formed with a plurality of circumferentially distributed and sequentially connected ratchet teeth 41, which are positioned toward the limiting rib 71. The outer wall of the button 4 also has a relief groove 41a axially extending through the ratchet teeth 41. The width and depth of the relief groove 41a are designed based on the dimensions of the limiting rib 71 to ensure smooth insertion of the limiting rib 71 into the relief groove 41a. When the button 4 is not pressed, the limiting rib 71 is inserted into the avoidance groove 41a. When the button 4 is pressed, the button 4 moves close to the stopper 3, and the limiting rib 71 disengages from the avoidance groove 41a. Then the button 4 is rotated so that the limiting rib 71 can be aligned between the two ratchet teeth 41. Then the button 4 is slid in the opposite direction so that the button 4 moves away from the stopper 3, and the limiting rib 71 abuts between the two adjacent ratchet teeth 41. At this time, the button 4 keeps pushing the top support 5, so that the two ends of the top support 5 abut against the side wall of the accommodating cavity 1a and the stopper 3 respectively. Therefore, the box cover 2 cannot slide relative to the bottom box 1 and is in a locked state. When it is necessary to unlock the box cover 2, press the button 4 again to move the button 4 closer to the stopper 3 and disengage from the ratchet teeth 41, then rotate the button 4 so that the limiting rib 71 is aligned with the avoidance groove 41a, and finally slide the button 4 in the opposite direction so that the button 4 is away from the stopper 3, and the limiting rib 71 is inserted into the avoidance groove 41a, contacting the button 4 to push the top support 5, and the top support 5 is reset. At this time, the box cover 2 can slide relative to the bottom box 1 and be unlocked.

[0062] Further, see Figure 5 、 Figure 7 and Figure 8 In one embodiment of the present invention, a transmission portion is provided on the side of the button 4 facing away from the stopper 3 .

[0063] In this embodiment, the transmission portion can optionally be configured as a transmission groove 4a in a cross shape, a straight line shape, an inner hexagon shape, or the like, or as a transmission protrusion in an outer hexagon shape, or the like, so that the user can rotate the button 4 using a common tool. Alternatively, the transmission portion can be configured as a knob extending outside the bottom box 1, so that the user can directly grasp the knob to rotate the button 4. This embodiment improves the convenience of the user when rotating the button 4 by providing the transmission portion.

[0064] The present invention also provides an electronic product.

[0065] The electronic product includes a battery 200 and a quick-release housing assembly 100 as in any one of the above embodiments, and the battery 200 is accommodated in the accommodating cavity 1a. Since the electronic product adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be repeated here. Among them, the quick-release housing assembly 100 also includes a bracket 8 detachably connected to the box cover 2, and the bracket 8 and the box cover 2 are configured to be unlocked and locked by sliding. Its specific structure can refer to the sliding unlocking setting of the box cover 2 and the bottom box 1 in the above embodiments, which will not be repeated in this embodiment. The side of the bracket 8 facing away from the box cover 2 is formed with two oppositely arranged claws 81, such as Figure 11 As shown, a clamping space for clamping the battery 200 is formed between the two clamping jaws 81. In this way, the battery 200 can be first installed together with the box cover 2 through the bracket 8, and then placed in the bottom box 1. In this way, the battery 200 can be taken out at the same time as the box cover 2 is removed. Compared with the traditional method of directly placing the battery 200 in the bottom box 1, this embodiment is more convenient for removing the battery 200.

[0066] The above description is merely an exemplary embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made by utilizing the contents of the present invention's description and drawings under the technical concept of the present invention, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. A quick-release housing assembly, characterized in that: The quick-release housing assembly comprises: A bottom box, wherein a receiving cavity with an opening is formed in the bottom box, and a first locking member is provided in the receiving cavity; and a box cover, the box cover being arranged on the opening and being slidably connected to the periphery of the opening, the box cover being provided with a second locking member for engaging with the first locking member; The box cover is configured to slide back and forth along the periphery of the opening so as to engage or disengage the first locking member and the second locking member.

2. The quick-release housing assembly according to claim 1, wherein: One of the first locking member and the second locking member is a first protrusion, the other of the first locking member and the second locking member is a second protrusion, and the second protrusion is provided with a snap-fitting notch; The box cover is configured to slide back and forth along the periphery of the opening so that the first protrusion is engaged with or disengaged from the inner wall of the engaging notch.

3. The quick-release housing assembly according to claim 1, wherein: The quick-release housing assembly further includes a stopper, a button, and a top support member; The stopper is provided on a side of the box cover facing the bottom box and is spaced apart from the side wall of the accommodating cavity; the button is slidably provided through the side wall of the accommodating cavity and is located in the sliding direction of the box cover; the supporting member is located between the stopper and the button and is rotatably connected to the inner wall of the accommodating cavity or the stopper; The button is configured to push the supporting member to rotate, so that two ends of the supporting member respectively abut against the side wall of the accommodating cavity and the stop member.

4. The quick-release housing assembly according to claim 3, wherein: The supporting member includes an elastic connecting portion and a supporting portion that are connected to each other; The elastic connecting portion is connected to the inner wall of the accommodating cavity or the stopper, and the supporting portion is partially located between the stopper and the button; The button is configured to push the supporting portion to rotate, so that two ends of the supporting portion respectively abut against the side wall of the accommodating cavity and the stopper.

5. The quick-release housing assembly according to claim 3, wherein: The quick-release housing assembly further includes a reset elastic member, which is disposed on the inner wall of the accommodating cavity or the stopper and is connected to the button.

6. The quick-release housing assembly according to claim 5, wherein: The resetting elastic member is a spring sheet, which includes a fixing portion, an arched bending portion and an abutting portion connected in sequence. The fixing portion is connected to the inner wall of the accommodating cavity or the stopper, and the abutting portion abuts against the button.

7. The quick-release housing assembly according to claim 6, wherein: The stopper is provided with a first avoidance hole for the button and the top support member to extend into on one side of the button, and the button is configured to push the top support member to rotate so that the two ends of the top support member respectively abut against the side wall of the accommodating cavity and the bottom wall of the first avoidance hole.

8. The quick-release housing assembly according to any one of claims 3 to 7, wherein: A fixing sleeve is fixedly provided on the side wall of the accommodating cavity, and the button is slidably provided through the fixing sleeve and the side wall of the accommodating cavity; A limiting rib is formed on the inner wall of the fixing sleeve at one end away from the stopper, and a plurality of ratchet teeth distributed along the circumference of the button and connected in sequence are formed on the outer wall of the button, the plurality of ratchet teeth are arranged toward the limiting rib, and a avoiding groove is formed on the outer wall of the button and passes through the ratchet teeth along the axial direction of the button; The limiting rib abuts between two adjacent ratchet teeth or is inserted into the avoiding groove.

9. The quick-release housing assembly according to claim 8, wherein: A transmission part is provided on the side of the button facing away from the stopper.

10. An electronic product, characterized in that: The electronic product includes a battery and the quick-release housing assembly according to any one of claims 1 to 9, and the battery is accommodated in the accommodating cavity.

Citation Information

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