Dismounting structure and electronic equipment

By using threaded connections and snap-fit ​​structures to disassemble components, the problem of difficult disassembly caused by component adhesion or snap-fit ​​is solved, achieving a fast and convenient disassembly effect.

CN223810028UActive Publication Date: 2026-01-16HEFEI LCFC INFORMATION TECH
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Patent Information

Application Number
CN202423191866.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-01-16
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

In complex disassembly scenarios, the adhesion or snap-fit ​​structure of components makes disassembly time-consuming and laborious, affecting disassembly efficiency.

Method used

The disassembly assembly uses a threaded connection to lock the component, and moves the component during disassembly to form a predetermined gap. The snap-fit ​​structure between the holding component and the threaded post enables quick disassembly.

Benefits of technology

It enables time-saving and labor-saving disassembly operations, improving disassembly efficiency and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a dismounting structure and electronic equipment, and relates to the technical field of electronic equipment, the dismounting structure comprises a first part, a second part and a dismounting assembly, the second part covers the first part, one end of the dismounting assembly penetrates through the first part and then is in threaded connection with the second part, and the other end of the dismounting assembly abuts against the first part; the dismounting assembly is used for locking the first component to the second component and further used for driving the first component to move to form a gap with a preset distance between the first component and the second component when the first component is dismounted. Thus, during the dismounting operation, the dismounting assembly drives the first part to move to form the gap with the preset distance between the first part and the second part, so that the first part and the second part are loosened, an operator can conveniently and quickly push the first part and the second part aside along the gap, the dismounting operation is time-saving and labor-saving, the operation is convenient and quick, and the dismounting efficiency is improved. Therefore, the dismounting efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of electronic devices, and in particular, to a disassembly structure and an electronic device. BACKGROUND

[0002] In a disassembly operation, screws between two components installed together need to be removed to achieve disassembly between the two components; however, in some complex disassembly scenarios, for example, due to the long-time abutment of the two components installed together, causing adhesion between the two components, or the structure of the two components being fixed through a clamping structure, after the screws between the two components are removed, the two components still cannot be disassembled, and the two components still need to be pried apart, resulting in time-consuming and laborious disassembly operation and complex operation, affecting disassembly efficiency. CONTENT OF THE UTILITY MODEL

[0003] The present disclosure provides a disassembly structure and an electronic device to at least solve the above problems in the prior art.

[0004] To achieve the above-mentioned purpose, the present disclosure provides the following technical solution: a disassembly structure, comprising:

[0005] a first component;

[0006] a second component, which is combined with the first component;

[0007] a disassembly assembly, one end of the disassembly assembly is threadedly connected to the second component after penetrating through the first component, and the other end of the disassembly assembly abuts against the first component; wherein,

[0008] the disassembly assembly is used to lock the first component to the second component, and also used to drive the first component to move to a predetermined gap distance from the second component when disassembling the first component.

[0009] In an implementable manner, the disassembly assembly comprises:

[0010] a disassembly piece, one end of the disassembly piece is threadedly connected to the second component after penetrating through the first component, to lock the first component to the second component;

[0011] an abutting piece, which is arranged between the first component and the second component and clamped to the disassembly piece; wherein,

[0012] when the disassembly piece disassembles the first component, the disassembly piece drives the first component to move along the axial direction of the disassembly piece to a predetermined gap distance from the first component through the abutting piece.

[0013] In an embodiment, the dismounting member comprises:

[0014] a head for abutting against one side of the first component away from the second component;

[0015] a threaded column, one end of which is connected to the head and clamped to the abutting member, and the other end of which has a threaded segment, the threaded column being threadedly connected to the second component through the threaded segment.

[0016] In an embodiment, the length of the threaded segment is 2-5 mm.

[0017] In an embodiment, the head is provided with a T-shaped slot or a cross-shaped slot at an end away from the threaded column.

[0018] In an embodiment, one side of the first component away from the second component is provided with a counterbore, a through hole is formed in the bottom wall of the counterbore, the head is at least partially received in the counterbore, and the threaded column penetrates the first component along the through hole.

[0019] In an embodiment, one end of the threaded column towards the head is provided with a clamping slot, and the abutting member is clamped to the threaded column through the clamping slot.

[0020] In an embodiment, the first component comprises:

[0021] a main body provided with a through hole, the dismounting member penetrating the main body through the threaded hole;

[0022] a limiting slot, the transverse section of which is in a circular arc structure and coaxially arranged with the through hole, and the abutting member is received in the limiting slot.

[0023] In an embodiment, the number of the dismounting assemblies is multiple, the multiple dismounting assemblies are arranged at intervals, the dismounting assemblies are used for locking the first component to the second component, and are also used for moving the first component to a gap with a predetermined distance from the second component when the first component is dismounted.

[0024] The present disclosure also provides the following technical solutions: an electronic device comprising the above-described dismounting structure.

[0025] The first component is locked to the second component by the thread of the disassembling assembly to realize the fixation between the first component and the second component, to realize the assembly between the first component and the second component, and when the disassembling operation is performed, the first component is moved to the gap with a predetermined distance from the second component by the disassembling assembly, so that the first component and the second component are loosened, so that the operator can quickly separate the first component and the second component along the gap, so that the disassembling operation is time-saving and labor-saving, and the operation is convenient and fast, thereby improving the disassembling efficiency.

[0026] It should be understood that the content described in this part is not intended to identify key or important features of the embodiments of the present disclosure, nor is it used to limit the scope of the present disclosure. Other features of the present disclosure will become apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS

[0027] The above and other objects, features and advantages of the exemplary embodiments of the present disclosure will be more apparent from the following detailed description read in conjunction with the accompanying drawings, in which:

[0028] In the drawings, identical or corresponding reference numerals indicate identical or corresponding parts.

[0029] Figure 1 A structural schematic view of a disassembling structure in an embodiment of the present disclosure is shown;

[0030] Figure 2 A sectional view along the II-II direction of the disassembling structure in Figure 1 is shown;

[0031] Figure 3 A structural schematic view of the disassembling assembly in Figure 1 is shown;

[0032] Figure 4 An exploded structural schematic view of the disassembling assembly in Figure 4 is shown.

[0033] Explanation of reference numerals in the drawings:

[0034] In the drawings: 11, first component; 111, main body; 112, limiting groove; 113, counterbore; 114, through hole; 12, second component; 13, disassembling assembly; 131, disassembling piece; 1311, head; 1312, threaded column; 1313, clamping groove; 132, abutting piece; 1321, notch; 1322, through hole. DETAILED DESCRIPTION

[0035] In order to enable the purposes, features and advantages of the present disclosure to be more obvious and easy to understand, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present disclosure.

[0036] It should be understood that the steps shown above can be reordered, added or deleted. For example, the steps described in the present disclosure can be executed in parallel, sequentially or in different orders, as long as the desired results of the technical solutions of the present disclosure can be achieved, which is not limited herein.

[0037] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present disclosure, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0038] The embodiments of the present utility model are described below with reference to the drawings.

[0039] Please refer to Figure 1 The present disclosure provides a disassembly structure, which comprises a first component 11, a second component 12 and a disassembly assembly 13. The second component 12 is covered on the first component 11. One end of the disassembly assembly 13 is screwed to the second component 12 after passing through the first component 11, and the other end of the disassembly assembly 13 abuts against the first component 11. The disassembly assembly 13 is used to lock the first component 11 to the second component 12, and also used to drive the first component 11 to move to a gap with a predetermined distance between the first component 11 and the second component 12 when disassembling the first component 11. Exemplarily, the first component 11 can be a D shell of a notebook computer, and correspondingly, the second component 12 can be a C shell of the notebook computer.

[0040] In the above disassembly structure, the first component 11 is locked to the second component 12 by the thread of the disassembly assembly 13, so as to realize the fixation between the first component 11 and the second component 12, realize the assembly between the first component 11 and the second component 12, and when disassembling, the first component 11 is driven to move to a gap with a predetermined distance between the first component 11 and the second component 12 by the disassembly assembly 13, so that the first component 11 and the second component 12 are loosened, so that the operator can quickly separate the first component 11 and the second component 12 along the gap, so that the disassembly operation is time-saving and labor-saving, and the operation is convenient and fast, thereby improving the disassembly efficiency.

[0041] Please refer to Figure 2 and Figure 3 In some embodiments, the disassembling assembly 13 comprises a disassembling piece 131 and an abutting piece 132, one end of the disassembling piece 131 is screwed to the second component 12 through the first component 11, for locking the first component 11 to the second component 12, the abutting piece 132 is arranged between the first component 11 and the second component 12 and clamped to the disassembling piece 131, when the disassembling piece 131 disassembles the first component 11, the disassembling piece 131 drives the first component 11 to move along the axial direction of the disassembling piece 131 to a predetermined gap between the first component 11 through the abutting piece 132.

[0042] Please refer to Figure 3 Further, the end of the threaded column 1312 towards the head 1311 is provided with a clamping groove 1313, the abutting piece 132 is clamped and connected with the threaded column 1312 through the clamping groove 1313, so as to quickly clamp the abutting piece 132 to the clamping groove 1313 of the threaded column 1312, which is convenient and time-saving.

[0043] Please refer to Figure 4 Specifically, the abutting piece 132 is a sheet structure, the middle part of the abutting piece 132 is provided with a through hole 1322, and the outer circumferential surface of the abutting piece 132 is provided with a notch 1321, the notch 1321 is communicated with the through hole, when clamping, first align the notch 1321 on the abutting piece 132 with the clamping groove 1313 on the threaded column 1312, then push the abutting piece 132, so that the threaded column 1312 enters the through hole 1322 along the notch 1321, thereby making the abutting piece 132 clamped into the clamping groove 1313 of the threaded column 1312, which is convenient and fast, and the clamping structure formed by the abutting piece 132 and the threaded column 1312 is simple and the processing cost is low.

[0044] Please refer to Figure 3 In some embodiments, the disassembling piece 131 comprises a head 1311 and a threaded column 1312, the head 1311 is used to abut against the side of the first component 11 away from the second component 12, one end of the threaded column 1312 is connected to the head 1311 and clamped to the abutting piece 132, the other end of the threaded column 1312 has a threaded segment, the threaded column 1312 is screwed to the second component 12 through the threaded segment.

[0045] When processing the disassembling piece 131, the disassembling piece 131 can be directly processed on the basis of the locking screw used to lock the first component 11 and the second component 12, so that the processing of the disassembling piece 131 is simple and convenient, and the cost is low, and at the same time, the disassembling piece 131 is combined with the locking screw having the locking function, so that the disassembling piece 131 has both the locking function and the function of separating the first component 11 and the second component 12 when disassembling, which makes the operation more convenient and the assembly efficiency higher.

[0046] Further, the length of the threaded segment is 2mm-5mm, so that the length of the threaded segment controls the distance of the predetermined gap between the first component 11 and the second component 12.

[0047] Further, the vertical distance between the head 1311 of the dismounting piece 131 and the abutting piece 132 clamped on the threaded column 1312 and the axial length of the through hole 114 is N1, the length of the threaded segment on the threaded column 1312 is N2, the predetermined distance of the gap between the first component 11 and the second component 12 is N, and the formula N=N2-N1 is satisfied.

[0048] For example, N1 can be 0, 0.1mm, 0.2mm, 0.3mm, 0.4mm, 0.5mm; when N1 is 0, it means that the vertical distance between the head 1311 of the dismounting piece 131 and the abutting piece 132 clamped on the threaded column 1312 is equal to the axial length of the through hole 114, and the length of the threaded segment at this time is the predetermined distance of the gap.

[0049] In this way, when the length N of the threaded segment is 2mm-5mm, the predetermined distance of the gap can be calculated according to the formula to be 1.5mm-4.5mm, so that when the predetermined distance of the gap is less than 1.5mm, the gap between the first component 11 and the second component 12 is too small, which affects the dismounting, and when the predetermined distance of the gap is greater than 4.5mm, the deformation of the first component 11 or the second component 12 is too large, which causes the first component 11 or the second component 12 to be easily damaged due to the too large deformation, and when the predetermined distance of the gap is 1.5mm-4.5mm, the deformation range of the first component 11 or the second component 12 is always within the elastic deformation range, so as to ensure that the gap has a sufficient predetermined distance and also avoid damage to the first component 11 or the second component 12.

[0050] Further, the end of the head 1311 away from the threaded column 1312 is provided with a T-shaped slot or a cross-shaped slot, so as to facilitate the rotation of the dismounting piece 131 by a screwdriver, so as to dismount or lock and fix the first component 11 and the second component 12.

[0051] Please refer to Figure 2 Further, the side of the first component 11 away from the second component 12 is provided with a counterbore 113, the bottom wall of the counterbore 113 is provided with a through hole 114, the head 1311 is at least partially received in the counterbore 113, and the threaded column 1312 penetrates the first component 11 along the through hole 114, so as to facilitate the reception of the head 1311 in the counterbore 113, and facilitate the reception and protection of the dismounting piece 131.

[0052] Please refer to Figure 2In some embodiments, the first component 11 comprises a main body 111 and a limiting groove 112, the main body 111 is provided with a through hole 114, the dismounting piece 131 penetrates the main body 111 through the threaded hole, the limiting groove 112 has a circular arc structure in the lateral section and is coaxially arranged with the through hole 114, and the abutting piece 132 is accommodated in the limiting groove 112, so as to facilitate the accommodation and protection of the abutting piece 132.

[0053] In some embodiments, the number of dismounting assemblies 13 is multiple groups, the multiple groups of dismounting assemblies 13 are arranged at intervals, the dismounting assembly 13 is used for locking the first component 11 to the second component 12, and is also used for moving the first component 11 to form a gap with the second component 12 at a predetermined distance when the first component 11 is dismounted.

[0054] In this way, by arranging multiple groups of dismounting assemblies 13, the gap at a predetermined distance between the first component 11 and the second component 12 is formed at different positions, so that the dismounting of the first component 11 and the second component 12 is more convenient.

[0055] The working principle of the above dismounting structure is as follows:

[0056] First, one end of the dismounting piece 131 penetrates the through hole 114 on the first component 11, then the notch 1321 on the abutting piece 132 is aligned with the clamping groove 1313 on the threaded column 1312, and the abutting piece 132 is pushed, so that the threaded column 1312 enters the through hole 1322 along the notch 1321, so that the abutting piece 132 is clamped into the clamping groove 1313 of the threaded column 1312, thereby realizing the clamping connection between the abutting piece 132 and the threaded column 1312, at this time, the first component 11 is limited between the head 1311 of the dismounting piece 131 and the abutting piece 132;

[0057] When locking the first component 11 and the second component 12, the second component 12 is covered on the first component 11, and the dismounting piece 131 is screwed by an external screwdriver, the head 1311 of the dismounting piece 131 abuts against the side of the first component 11 away from the second component 12, so that when the threads of the dismounting piece 131 are screwed with the threads on the second component 12, the first component 11 and the second component 12 are close to each other, until the first component 11 abuts against the second component 12, to complete the locking action;

[0058] When dismounting the first component 11 and the second component 12, the dismounting piece 131 is reversely screwed by an external screwdriver, the abutting piece 132 clamped on the dismounting piece 131 abuts against the side of the first component 11 facing the second component 12, and drives the first component 11 to move to form a gap with the second component 12 at a predetermined distance.

[0059] The embodiments of the present disclosure further provide an electronic device, which comprises the dismounting structure described above. For example, the electronic device can be a notebook computer.

[0060] The above merely provides the specific implementation of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present disclosure, which should be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A disassembly structure, characterized by, The dismounting structure comprises: a first component; a second component, which covers the first component; a dismounting assembly, one end of which is screwed to the second component through the first component, and the other end of which abuts against the first component; wherein the dismounting assembly is used for locking the first component to the second component, and also used for moving the first component to a predetermined gap from the second component when dismounting the first component.

2. The dismounting structure according to claim 1, characterized in that The dismounting assembly comprises: a dismounting piece, one end of which is screwed to the second component through the first component, for locking the first component to the second component; an abutting piece, which is arranged between the first component and the second component and clamped to the dismounting piece; wherein when dismounting the first component, the dismounting piece moves the first component to a predetermined gap from the first component through the abutting piece in the axial direction of the dismounting piece.

3. The dismounting structure according to claim 2, characterized in that The dismounting piece comprises: a head, which is used for abutting against one side of the first component away from the second component; a threaded column, one end of which is connected to the head and clamped to the abutting piece, and the other end of which has a threaded segment, which is screwed to the second component through the threaded segment.

4. The dismounting structure according to claim 3, wherein the length of the threaded segment is 2-5 mm.

5. The dismounting structure according to claim 3, wherein one end of the head away from the threaded column is provided with a T-shaped slot or a cross-shaped slot.

6. The dismounting structure according to claim 3, wherein one side of the first component away from the second component is provided with a counterbore, a through hole is formed in the bottom wall of the counterbore, the head is at least partially received in the counterbore, and the threaded column penetrates the first component along the through hole.

7. The dismounting structure according to claim 3, wherein one end of the threaded column towards the head is provided with a clamping groove, and the abutting piece is clamped to the threaded column through the clamping groove.

8. The disassembly structure according to claim 2, wherein The first component comprises: a main body, which is provided with a through hole, and the dismounting piece penetrates the main body through the through hole; a limiting groove, which has a circular arc structure in the transverse section and is coaxially arranged with the through hole, and the abutting piece is received in the limiting groove.

9. The dismounting structure according to claim 1, wherein a plurality of sets of the dismounting assembly are arranged at intervals, which are used for locking the first component to the second component, and also used for moving the first component to a predetermined gap from the second component when dismounting the first component.

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