Electronic equipment
By setting a combined structure of the first slide rail and the second slide rail in the electronic device, combining the slider and the limiting member, the problem of easy loss of the fixed structure when the functional components are replaced is solved, and the effect of simplified structure and convenient replacement is achieved.
Patent Information
- Application Number
- CN202422409650.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-30
AI Technical Summary
When replacing functional components in electronic equipment, existing fixed structures are easily lost, resulting in inconvenient disassembly and installation processes.
The support is provided with a first slide rail and a plurality of second slide rails communicating therewith. The slider can slide between different slide rails, combining the connecting member and the limiting member to achieve preliminary and further limiting of the target functional member and simplify the structural design.
It reduces the risk of loss of fixed structures, simplifies the structure of electronic equipment, and improves the convenience and stability of functional parts replacement.
Smart Images

Figure CN223245063U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of electronic devices, and in particular to an electronic device. Background Art
[0002] Different functional components are provided in the electronic device so that the electronic device has different functions.
[0003] When replacing a functional component in an electronic device between different sizes, it is necessary to remove the fixing structure that fixes the current functional component and re-fix the replaced functional component with the fixing structure.
[0004] However, the disassembled fixing structure is easy to be lost. Utility Model Content
[0005] The present disclosure provides an electronic device, the technical solution of which is as follows:
[0006] The present disclosure provides an electronic device, which may include: a supporting member, a connecting member and a sliding member, wherein the supporting member is provided with a first slide rail and a plurality of second slide rails, the second slide rails are connected to the first slide rail, and the second slide rails and the first slide rail have different extension directions; the connecting member is used to connect a target functional member; the sliding member can slide from the first slide rail to any of the second slide rails and maintain the second slide rail after sliding, so as to limit the target functional member between the connecting member and the sliding member.
[0007] In some embodiments, one side of the support member is provided with an assembly space extending along a preset direction, and the angle between the extension direction of the first slide rail and the preset direction is less than 90 degrees; the connecting member is provided with a plug-in portion for plugging in the target functional member; a portion of the sliding member is located in the assembly space to cooperate with the connecting member to define a target space for assembling the target functional member in the assembly space.
[0008] In some embodiments, the extension direction of the first slide rail and the preset direction meet a parallel condition; the extension direction of the second slide rail and the preset direction meet a perpendicular condition.
[0009] In some embodiments, the plurality of second slide rails are located on the same side or different sides of the extending direction of the first slide rail.
[0010] In some embodiments, the second slide rail has a first limiting portion to limit the sliding member when the sliding member slides to the second slide rail.
[0011] In some embodiments, the first slide rail and the second slide rail are recessed on one side of the support member corresponding to the assembly space, and the second slide rail has a first inner side wall and a second inner side wall relative to each other; the first inner side wall is protruded with the first elastic limiting portion, and a limiting space for the sliding member is formed between the first limiting portion and the end of the second slide rail away from the first slide rail.
[0012] In some embodiments, one end of the first limiting portion is connected to the first inner wall, and the other end extends toward the second inner wall away from one end of the first slide rail, and the first inner wall is recessed at a position corresponding to the other end of the first limiting portion to allow the other end of the first limiting portion to rebound.
[0013] In some embodiments, the sliding member includes: a main body and a second limiting portion, the second limiting portion being connected to one axial end of the main body and protruding from the circumferential surface of the main body; wherein, part of the main body is located in the assembly space, the main body passes through the first slide rail and abuts the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail, and the second limiting portion abuts the surface of the support member facing away from the assembly space; or, part of the main body is located in the assembly space, the main body extends into the first slide rail and abuts the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail, and the second limiting portion is located in the first limiting groove of the third inner side wall and the second limiting groove of the fourth inner side wall, and the sliding member can slide along the third inner side wall, the fourth inner side wall, the first limiting groove and the second limiting groove.
[0014] In some embodiments, a connecting hole is recessed at one end of the main body away from the second limiting portion, and the connecting hole is used to connect a screw with a brim or a pin with a brim; when the connecting hole is connected to the screw or the pin, the brim protrudes from the peripheral side surface of the main body.
[0015] In some embodiments, an inlet and outlet connected to the sliding space of the first slide rail are provided at one end of the first slide rail along the preset direction, the size of the inlet and outlet is larger than the size of the second limiting portion, and the support member extends an elastic extension arm toward the inlet and outlet.
[0016] The above description is only an overview of the technical solution of the present disclosure. In order to more clearly understand the technical means of the present disclosure and to implement them according to the contents of the specification, the following is a detailed description of the preferred embodiments of the present disclosure with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the present disclosure or 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 disclosure. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0018] Figure 1 A schematic diagram of a partial structure of an electronic device provided by the present disclosure (without the target functional component assembled);
[0019] Figure 2 A schematic diagram of a partial structure of an electronic device (equipped with a target functional component) provided by the present disclosure;
[0020] Figure 3 A schematic diagram of a partial structure of an electronic device (equipped with another target functional component) provided by the present disclosure;
[0021] Figure 4 A schematic structural diagram of a sliding member of an electronic device provided by the present disclosure.
[0022] Description of reference numerals:
[0023] 10. Electronic device; 11. Support member; 111. First slide rail; 1111. Inlet and outlet; 1112. Elastic extension arm; 112. Second slide rail; 1121. First limiting portion; 1122. Limiting space; 113. Assembly space; 12. Connecting member; 13. Sliding member; 131. Main body; 132. Second limiting portion; 14. Target functional member. DETAILED DESCRIPTION
[0024] The following embodiments of the present disclosure are further described in detail with reference to the accompanying drawings and examples. The detailed description of the following examples and the accompanying drawings are intended to illustrate the principles of the present disclosure, but are not intended to limit the scope of the present disclosure. The present disclosure can be implemented in many different forms and is not limited to the specific embodiments disclosed herein, but rather includes all technical solutions within the scope of the claims.
[0025] The present disclosure provides these embodiments in order to make this disclosure thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that: unless otherwise specifically stated, the relative arrangement of parts and steps, the composition of materials, numerical expressions and numerical values set forth in these embodiments should be interpreted as merely exemplary, and not as limiting.
[0026] It should be noted that, in the description of this disclosure, unless otherwise specified, "plurality" means greater than or equal to two; terms such as "upper," "lower," "left," "right," "inner," and "outer" indicating directions or positional relationships are intended solely to facilitate and simplify the description of this disclosure, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this disclosure. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly.
[0027] In addition, the terms "first," "second," and similar terms used in this disclosure do not denote any order, quantity, or importance, but are merely used to distinguish different parts. "Perpendicular" does not mean perpendicular in the strict sense, but rather means within the tolerance range. "Parallel" does not mean parallel in the strict sense, but rather means within the tolerance range. "Include" or "comprising" and similar terms mean that the elements preceding the term include the elements listed after the term, and do not exclude the possibility of also including other elements.
[0028] It should also be noted that, in the description of this disclosure, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to direct connections or indirect connections through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in this disclosure depending on the specific circumstances. When a specific device is described as being located between a first device and a second device, there may or may not be an intervening device between the specific device and the first or second device.
[0029] All terms used in this disclosure have the same meaning as understood by one of ordinary skill in the art to which this disclosure belongs, unless otherwise specifically defined. It should also be understood that terms defined in, for example, common dictionaries should be interpreted as having a meaning consistent with their meaning in the context of the relevant art, and should not be interpreted in an idealized or highly formal sense, unless explicitly defined as such herein.
[0030] Technologies, methods, and equipment known to ordinary technicians in the relevant art may not be discussed in detail, but where appropriate, the technologies, methods, and equipment should be considered part of the specification.
[0031] In the related art, a separate limiting structure needs to be provided in the electronic device to limit the slider at the position after sliding, which makes the structure of the electronic device complicated.
[0032] In view of this, the present disclosure provides an electronic device 10, which can be provided with a first slide rail 111 and a second slide rail 112. The slider 13 can slide along the first slide rail 111 to define target spaces of different sizes, so that target functional parts 14 of different sizes (such as solid-state drives, heat dissipation modules, etc.) can be assembled. The second slide rail 112 can be connected to the first slide rail 111 and have a different sliding direction from the first slide rail 111, so that after the slider 13 initially limits the target functional part 14, it can slide from the first slide rail 111 to the second slide rail 112, so that the position of the slider 13 can be further limited by the second slide rail 112 extending in a different direction from the first slide rail 111. In this way, during the process of replacing target functional parts 14 of different sizes, the slider 13 is connected to the electronic device 10, so that the probability of the fixing structure that fixes the target functional part 14 being lost can be reduced.
[0033] See also Figures 1 to 3 As shown, the electronic device 10 may include: a support member 11, a connector 12 and a sliding member 13. The support member 11 may be provided with a first slide rail 111 and multiple second slide rails 112. The second slide rail 112 may be connected to the first slide rail 111, and the second slide rail 112 may have an extension direction different from that of the first slide rail 111. The connector 12 may be used to connect the target functional member 14. The sliding member 13 may be able to slide from the first slide rail 111 to any second slide rail 112 and may be maintained on the second slide rail 112 after sliding, so as to be able to limit the target functional member 14 between the connector 12 and the sliding member 13.
[0034] Here, the slider 13 can slide along the first slide rail 111 to define target spaces of different sizes, so that target functional parts 14 of different sizes (such as solid state drive 2280, solid state drive 2242, etc.) can be installed, and the second slide rail 112 can be connected to the first slide rail 111 and have a different sliding direction from the first slide rail 111, so that after the slider 13 preliminarily limits the target functional part 14, it can slide from the first slide rail 111 to the second slide rail 112, so that the position of the slider 13 can be further limited by the second slide rail 112 extending in a different direction from the first slide rail 111. In this way, a separate limiting structure is no longer required, thereby simplifying the structure of the electronic device 10. In addition, the target functional part 14 installed in the target space can be connected to the connector 12 to realize the mutual transmission of data between the target functional part 14 and the connector 12.
[0035] The support member 11 can form an assembly space 113 so as to define a target space for assembling the target functional part 14 in the assembly space 113 after the sliding member 13 slides. The assembly space 113 formed by the support member 11 can be a space corresponding to the supporting surface side of the support member 11. In this way, the support member 11 can be a plate structure integrally formed to have a supporting surface, or a structure with a supporting surface formed by the cooperation of multiple electronic components or non-electronic components in the electronic device 10, or other settings. The first slide rail 111 can be as follows Figure 1 The second rail 112 may be a bar-shaped groove track structure as shown in FIG. Figure 1 The strip groove type track structure shown in the figure, and the groove spaces of the first slide rail 111 and the second slide rail 112 are connected at an angle, so that the sliding member 13 can slide from the first slide rail 111 to the second slide rail 112, and can slide from the second slide rail 112 to the first slide rail 111. When the sliding member 13 slides to the position of the first slide rail 111 corresponding to the second slide rail 112, the position of the sliding member 13 corresponds to the boundary of the target space. At this time, the sliding member 13 can be slid to the second slide rail 112. Since the sliding member 13 sliding to the second slide rail 112 cannot slide in the extension direction parallel to the first slide rail 111, the position of the sliding member 13 and the size of the target space can be fixed. The number of second rails 112 can be set according to the number of target functional components 14 of different sizes, and the position of the second rails 112 can be set according to the size of the target functional components 14 of different sizes. For example, if there are two target functional components 14, namely, the solid-state drive 2280 and the solid-state drive 2242, then the number of sliding members 13 can be two, respectively limiting the position of the solid-state drive 2280 and the solid-state drive 2242. The width of the first rail 111 along its sliding direction (e.g., the distance between the third inner sidewall and the fourth inner sidewall below) can be greater than, less than, or equal to the width of the second rail 112 along its sliding direction (e.g., the distance between the first inner sidewall and the second inner sidewall below).
[0036] The connector 12 can be connected to a target functional component 14 that is confined within the target space to enable data transmission between the connector 12 and the target functional component 14. The connection between the connector 12 and the target functional component 14 can be a plug-in connection. For example, the connector 12 can be recessed with a socket, and the target functional component 14 can be provided with a plug connector that can be plugged into the socket and electrically connected to the socket to enable data transmission between the connector 12 and the target functional component 14. The connection between the connector 12 and the target functional component 14 can also be via a connecting wire or other connection methods.
[0037] The slider 13 can slide back and forth along the first slide rail 111 and can slide from the first slide rail 111 to any of the second slide rails 112 to define a target space within the assembly space 113. To ensure smoother sliding between the slider 13 and the first and second slide rails 111, 112, the surfaces of the slider 13 that contact the first and second slide rails 111, 112 are smooth.
[0038] In one example, the electronic device 10 can be a computer, and the electronic device 10 can include: a support member 11, a connecting member 12 and a sliding member 13. The support member 11 can be plate-shaped, with an assembly space 113 on one side thereof, and the side of the support member 11 corresponding to the assembly space 113 can be recessed with a first strip-groove-type slide rail 111 and multiple second slide rails 112. The second slide rail 112 can be connected to the first slide rail 111, and the second slide rail 112 can have a different extension direction from the first slide rail 111; the connecting member 12 is opposite to one end of the first slide rail 111 along its sliding direction, and can be plugged into the target functional member 14; the sliding member 13 can slide from the first slide rail 111 to any second slide rail 112 and can maintain the second slide rail 112 after sliding, so as to limit the target functional member 14 between the connecting member 12 and the sliding member 13.
[0039] In one example, the electronic device 10 can be a computer, and the electronic device 10 can include: a support member 11, a connecting member 12 and a sliding member 13. The support member 11 can be plate-shaped, with an assembly space 113 on one side thereof, and a first strip-groove-type slide rail 111 and multiple second slide rails 112 can be recessed on the side of the support member 11 corresponding to the assembly space 113. The second slide rail 112 can be connected to the first slide rail 111, and the second slide rail 112 can have a different extension direction from the first slide rail 111; the first structural member in the electronic device 10 is opposite to one end of the first slide rail 111 along its sliding direction; the connecting member 12 is opposite to one side of the first slide rail 111 along its sliding direction, and can be plugged into the target functional member 14; the sliding member 13 can slide from the first slide rail 111 to any second slide rail 112 and can be maintained on the second slide rail 112 after sliding, so as to limit the target functional member 14 between the first structural member, the connecting member 12 and the sliding member 13.
[0040] In this embodiment, the electronic device 10 may include: a support member 11, a connector 12, and a slider 13. The support member 11 may have an assembly space 113, and a first slide rail 111 and a second slide rail 112 connected to the first slide rail 111 but in a different direction may be provided on the side of the support member 11 corresponding to the assembly space 113. The connector 12 and the slider 13 may both correspond to the assembly space 113, and the slider 13 may slide along the first slide rail 111 to define target spaces of different sizes within the assembly space 113, thereby accommodating target functional components 14 of different sizes. The slider 13 may slide to the second slide rail 112 to fix the position of the target functional component 14 within the target space. In this way, a separate limiting structure may no longer be provided, thereby simplifying the structure of the electronic device 10. In addition, the target functional component 14 assembled in the target space can be connected to the connector 12 to enable mutual data transmission between the target functional component 14 and the connector 12.
[0041] In some embodiments, one side of the support member 11 may be provided with an assembly space 113 extending along a preset direction, and the extension direction of the first slide rail 111 may be at an angle less than 90 degrees to the preset direction; the connector 12 may be provided with a plug-in portion for plugging in the target functional part 14; a portion of the sliding member 13 may be located in the assembly space 113, so as to cooperate with the connector 12 in the assembly space 113 to define a target space for assembling the target functional part 14.
[0042] In the support member 11, the assembly space 113 set on one side thereof can have a first boundary and a second boundary relative to each other in a preset direction, and can have a third boundary and a fourth boundary relative to each other perpendicular to the preset direction. The support member 11 can be a solid flat plate structure, a hollow flat plate structure, or other structural settings. The angle between the extension direction of the first slide rail 111 and the preset direction is less than 90 degrees (such as: 0 degrees, 5 degrees, 10 degrees, etc.), so that the two ends of the extension direction of the first slide rail 111 can be respectively opposite to the first boundary and the second boundary. In this way, when the sliding member 13 slides back and forth along the first slide rail 111, the sliding member 13 can move in the direction close to the first boundary or the second boundary, so that target spaces of different sizes can be defined between the first boundary and the sliding member 13 or the second boundary and the sliding member 13 to limit target functional parts 14 of different sizes.
[0043] In the connector 12, the connector 12 can be set at the boundary of the assembly space 113, which can be any one of the first boundary, the second boundary, the third boundary and the fourth boundary; when the connector 12 is set at the first boundary, the sliding member 13 can slide back and forth along the first slide rail 111 to adjust the size between the sliding member 13 and the connector 12 (corresponding to the first boundary), so that target functional parts 14 of different sizes can be assembled between the connector 12 and the sliding member 13, and the target functional part 14 located between the connector 12 and the sliding member 13 can be connected to the connector 12 to realize data transmission between the two; when the connector 12 is set at the second boundary, the sliding member 13 can slide back and forth along the first slide rail 111 to adjust the size between the sliding member 13 and the connector 12 (corresponding to the second boundary The size between the first boundary (or the second boundary) can be adjusted, so that target functional parts 14 of different sizes can be assembled between the connector 12 and the sliding part 13, and the target functional part 14 located between the connector 12 and the sliding part 13 can be connected to the connector 12 to realize data transmission between the two; when the connector 12 is set at the third boundary (or the fourth boundary), the sliding part 13 can slide back and forth along the first slide rail 111 to adjust the size between the first boundary, the connector 12 and the sliding part 13, so that target functional parts 14 of different sizes can be assembled between the first boundary (or the second boundary), the connector 12 and the sliding part 13, and the target functional part 14 located between the first boundary (or the second boundary), the connector 12 and the sliding part 13 can be connected to the connector 12 to realize data transmission between the two. Here, when the target functional part 14 is assembled between the first boundary (or the second boundary), the connecting part 12 and the sliding part 13, the first boundary (or the second boundary) can be provided with a stopper to better limit the target functional part 14, and the stopper can be other structures of the electronic device 10, such as a heat dissipation structure, a shell, etc., so as to reduce the number of structures of the electronic device 10.
[0044] In this embodiment, the assembly space 113 extending along a preset direction on one side of the support member 11 can be assembled with target functional parts 14 of different sizes. The connecting member 12 and the sliding member 13 can cooperate to form a target space for assembling the target functional parts 14, and the target functional parts 14 can be plugged into the connecting member 12 to be more stable relative to the target space.
[0045] In some embodiments, the extension direction of the first slide rail 111 may be parallel to the preset direction; and the extension direction of the second slide rail 112 may be perpendicular to the preset direction.
[0046] The extension direction of the first slide rail 111 can be parallel to the preset direction. This can be achieved by paralleling the first slide rail 111 with the preset direction, or by creating a small angle between the first slide rail 111 and the preset direction, such that the angle is closer to parallelism. For example, the angle between the first slide rail 111 and the preset direction is less than 5 degrees. When the extension direction of the first slide rail 111 is parallel to the preset direction, the slider 13 slides along the first slide rail 111, causing the distance between the slider 13 and the first boundary or the second boundary to change more rapidly, thereby quickly sliding the slider 13 to the position of the target functional component 14.
[0047] The extension direction of the second slide rail 112 can be perpendicular to the preset direction. This can be done by being perpendicular to each other, or by having an angle close to 90 degrees between the extension direction and the preset direction. For example, the angle between the extension direction of the second slide rail 112 and the preset direction can be 89 degrees, 88 degrees, etc. When the extension direction of the second slide rail 112 is perpendicular to the preset direction, the slider 13 can slide from the first slide rail 111 to the second slide rail 112 with minimal displacement in the preset direction, thereby better securing the target functional component 14.
[0048] In one example, the extension direction of the first rail 111 can be parallel to the predetermined direction, with the connector 12 corresponding to the first boundary of the assembly space 113. The slider 13 slides back and forth on the first rail 111 to adjust the distance between the slider 13 and the connector 12, thereby accommodating target functional components 14 of varying sizes. The extension direction of the second rail 112 can be perpendicular to the predetermined direction, so that after the slider 13 slides from the first rail 111 to the second rail 112, the slider 13 is less likely to move in the predetermined direction, thereby better securing the target functional component 14.
[0049] In some embodiments, the plurality of second rails 112 can be located on the same side or different sides of the extension direction of the first rail 111. In other words, the plurality of second rails 112 can all be located on one side of the first rail 111 along its extension direction, or a portion of the plurality of second rails 112 can be located on one side of the first rail 111 along its extension direction, while another portion can be located on the other side of the first rail 111 along its extension direction. In this way, either arrangement can be flexibly selected.
[0050] In some embodiments, the second slide rail 112 may have a first limiting portion 1121 to limit the position of the slide member 13 when the slide member 13 slides onto the second slide rail 112. In other words, a portion of the second slide rail 112 may form the first limiting portion 1121 to limit the position of the slide member 13 when it slides onto the second slide rail 112, thereby reducing the probability of displacement of the slide member 13 when limiting the position of the target functional component 14, thereby better limiting the target functional component 14; and the first limiting portion 1121 belongs to the second slide rail 112 to distinguish it from an independently provided limiting structure, thereby ensuring the simplicity of the electronic device 10.
[0051] In some embodiments, a portion of the second slide rail 112 may have adsorption properties to form a first limiting portion 1121, so that the sliding member 13 can be adsorbed when the sliding member 13 slides to the second slide rail 112, thereby limiting the sliding member 13; for example: the end of the second slide rail 112 away from the first slide rail 111 is made of magnetic material to have adsorption properties and form a first limiting portion 1121, thereby limiting the sliding member 13 by adsorption.
[0052] In some embodiments, a first slide rail 111 and a second slide rail 112 may be recessed on one side of the support member 11 corresponding to the assembly space 113, and the second slide rail 112 may have a first inner side wall and a second inner side wall relative to each other; the first inner side wall may have a protruding elastic first limiting portion 1121, and the first limiting portion 1121 may form a limiting space 1122 of the sliding member 13 between the end of the second slide rail 112 away from the first slide rail 111.
[0053] In other words, the first slide rail 111 and the second slide rail 112 can be respectively bar-groove type slide rails, the two inner side walls of the bar groove of the first slide rail 111 can be the third inner side wall and the fourth inner side wall, and the two inner side walls of the bar groove of the second slide rail 112 can be respectively the first inner side wall and the second inner side wall, so that the sliding member 13 can slide relative to the first slide rail 111 against the third inner side wall and the fourth inner side wall, and can also slide relative to the second slide rail 112 against the first inner side wall and the second inner side wall, and can switch between the first slide rail 111 and the second slide rail 112. The first inner side wall protrudes from the elastic first limiting portion 1121, so that after the sliding member 13 slides from the first slide rail 111 to the second slide rail 112, it is first located on the side of the first limiting portion 1121 close to the first slide rail 111, and then it can continue to slide along the second slide rail 112 and squeeze the first limiting portion 1121, and after sliding to the side of the first limiting portion 1121 away from the first slide rail 111, the first limiting portion 1121 returns to its original state, so that the sliding member 13 can be limited to the side of the first limiting portion 1121 in the second slide rail 112 away from the first slide rail 111.
[0054] In this embodiment, the local protrusion of the second slide rail 112 forms a first limiting portion 1121, allowing the slider 13 to slide along the second slide rail 112. After sliding to a position on one side of the first limiting portion 1121, it presses the protrusion and continues to slide along the second slide rail 112. The slider 13 can be limited in position after sliding to the other side of the first limiting portion 1121. In this way, limiting the slider 13 by the local protrusion of the second slide rail 112 not only simplifies the structural arrangement, but also effectively limits the position of the slider 13.
[0055] In some embodiments, one end of the first limiting portion 1121 may be connected to the first inner sidewall, and the other end may extend toward the second inner sidewall away from the end of the first slide rail 111. Furthermore, a recessed space may be provided in the first inner sidewall corresponding to the other end of the first limiting portion 1121 to allow the other end of the first limiting portion 1121 to rebound. In this manner, when the slider 13 presses against the first limiting portion 1121, the other end of the first limiting portion 1121 may be squeezed into the recessed space in the first inner sidewall, thereby enabling the slider 13 to slide more smoothly.
[0056] In some embodiments, the sliding member 13 may include: a main body 131 and a second limiting portion 132, the second limiting portion 132 may be connected to one axial end of the main body 131 and protrude from the circumferential surface of the main body 131; wherein, part of the main body 131 may be located in the assembly space 113, the main body 131 may pass through the first slide rail 111 and abut the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111, and the second limiting portion 132 may abut the surface of the support member 11 away from the assembly space 113; or, part of the main body 131 may be located in the assembly space 113, the main body 131 may extend into the first slide rail 111 and abut the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111, and the second limiting portion 132 may be located in the first limiting groove of the third inner side wall and the second limiting groove of the fourth inner wall, and the sliding member 13 can slide along the third inner side wall, the fourth inner wall, the first limiting groove and the second limiting groove.
[0057] That is to say, the sliding member 13 may include: a main body 131 and a second limiting portion 132, the second limiting portion 132 can be connected to one axial end of the main body 131 and protrude from the peripheral side surface of the main body 131; wherein, part of the main body 131 can be located in the assembly space 113, the main body 131 can pass through the first slide rail 111 and abut the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111, and the second limiting portion 132 can abut the surface of the support member 11 facing away from the assembly space 113. Alternatively, the sliding member 13 may include: a main body 131 and a second limiting portion 132, the second limiting portion 132 may be connected to one axial end of the main body 131 and protrude from the circumferential surface of the main body 131; wherein, part of the main body 131 may be located in the assembly space 113, the main body 131 may extend into the first slide rail 111 and abut against the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111, and the second limiting portion 132 may be located in the first limiting groove of the third inner side wall and the second limiting groove of the fourth inner side wall, and the sliding member 13 can slide along the third inner side wall, the fourth inner side wall, the first limiting groove and the second limiting groove.
[0058] The sliding member 13 may include: a main body 131 and a second limiting portion 132, the second limiting portion 132 may be connected to one axial end of the main body 131 and protrude from the circumferential side surface of the main body 131; wherein, a portion of the main body 131 may be located in the assembly space 113, the main body 131 may pass through the first slide rail 111 and abut the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111, and the second limiting portion 132 may abut the surface of the support member 11 away from the assembly space 113, the sliding member 13 may be composed of the main body 131 and the second limiting portion 132, the main body 131 may extend axially, the second limiting portion 132 may be connected to one axial end of the main body 131, and the radial dimension of the second limiting portion 132 may be larger than the radial dimension of the main body 131, so that the main body 131 and the second limiting portion The portion 132 can be T-shaped; when the sliding member 13 is assembled to the first sliding rail 111, the end of the main body 131 away from the second limiting portion 132 can be passed through the support member 11 from the side of the support member 11 away from the assembly space 113, and a portion of the main body 131 can correspond to the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first sliding rail 111, and can slide relative to the first sliding rail 111 against the third inner side wall and the fourth inner side wall, and at the same time, a portion of the main body 131 can be located in the assembly space 113 to abut the target functional part 14, thereby limiting the target functional part 14; in addition, the second limiting portion 132 of the sliding member 13 assembled on the first sliding rail 111 can abut the surface of the support member 11 away from the assembly space 113, so as to reduce the probability of the sliding member 13 falling off from the side of the support member 11 corresponding to the assembly space 113.
[0059] The sliding member 13 may include: a main body 131 and a second limiting portion 132, the second limiting portion 132 may be connected to one axial end of the main body 131 and protrude from the circumferential surface of the main body 131; wherein, part of the main body 131 may be located in the assembly space 113, the main body 131 may extend into the first slide rail 111 and abut against the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111, and the second limiting portion 132 may be located in the first limiting groove of the third inner side wall and the second limiting groove of the fourth inner side wall, and the sliding member 13 can slide along the third inner side wall, the fourth inner side wall, the first limiting groove and the second limiting groove. The sliding member 13 may be composed of the main body 131 and the second limiting portion 132, the main body 131 may extend in the axial direction, the second limiting portion 132 may be connected to One end of the main body 131 in the axial direction, and the radial dimension of the second limiting portion 132 can be larger than the radial dimension of the main body 131, so that the main body 131 and the second limiting portion 132 can be T-shaped; and the sliding member 13 can extend from one end of the first slide rail 111 (such as: the inlet and outlet below) into between the third inner side wall and the fourth inner side wall, and the two ends of the second limiting portion 132 in the thickness direction can be respectively located on the third inner side wall and the first limiting groove and the fourth limiting groove of the fourth inner side wall, so that the sliding member 13 can slide along the third inner side wall, the fourth inner side wall, the first limiting groove and the second limiting groove. This arrangement can not only reduce the probability of the sliding member 13 falling off from the side of the support member 11 corresponding to the assembly space 113, but also reduce the probability of the sliding member 13 falling off from the side of the support member 11 away from the assembly space 113.
[0060] In some embodiments, a connection hole may be recessed at one end of the main body 131 away from the second limiting portion 132, and the connection hole may be used to connect a screw with a brim or a pin with a brim; when the connection hole is connected to a screw or a pin, the brim may protrude from the peripheral side surface of the main body 131.
[0061] Here, the screw (or pin) with a brim can make the screw T-shaped, for example: the screw includes: a screw column and a brim, the brim can be vertically connected to one axial end of the screw column, and the peripheral side of the brim can protrude from the surface of the peripheral side of the screw column, and after the screw column is screwed into the connecting hole of the main body 131, the peripheral side of the brim can also protrude from the peripheral side of the main body 131, so that at least part of the brim is opposite to the support member 11, so that the support member 11 can cooperate with the support member 11 to abut the side of the target functional part 14 away from the support member 11 to limit the position.
[0062] In this embodiment, the target functional part 14 can be limited in the length direction or width direction by the sliding part 13, and then by connecting screws or pins, and making the brim of the connected screws or pins press against the surface of the target functional part 14 facing away from the support part 11, so that the target functional part 14 can be limited in the thickness direction by the brim, so that the target functional part 14 can be more firmly connected to the electronic device 10.
[0063] In some embodiments, an inlet and outlet 1111 communicating with the sliding space of the first slide rail 111 may be provided at one end of the first slide rail 111 along a preset direction. The size of the inlet and outlet 1111 may be larger than the size of the second limiting portion 132, and an elastic extension arm 1112 may extend from the support member 11 toward the inlet and outlet 1111. Here, the size of the inlet and outlet 1111 may be larger than the size of the second limiting portion 132 so that the second limiting portion 132 can enter the first limiting groove and the second limiting groove through the inlet and outlet 1111. When the second limiting portion 132 enters or is removed from the inlet and outlet 1111, the elastic extension arm 1112 may elastically contract so as not to affect the entry and exit of the second limiting portion 132. At the same time, after the second limiting portion 132 enters and moves away from the inlet and outlet 1111, the elastic extension arm 1112 may prevent the second limiting portion 132 from separating from the inlet and outlet 1111, thereby preventing the sliding member 13 from separating from the first slide rail 111.
[0064] The elastic extension arm 1112 may be a structural member such as rubber or silicone, and the elastic extension arm 1112 may be a single strip, a plurality of strips, or other structures.
[0065] In one example, the electronic device 10 is a laptop computer, and the electronic device 10 may include:
[0066] The support member 11 may have an assembly space 113 extending in a preset direction on one side thereof. A first slide rail 111 and a plurality of second slide rails 112 may be recessed on the surface of the support member 11 corresponding to the assembly space 113. The extension direction of the first slide rail 111 may be parallel to the preset direction. The plurality of second slide rails 112 may be located on the same side of the extension direction of the first slide rail 111. Any second slide rail 112 may be connected to the first slide rail 111 and perpendicular to the first slide rail 111. An inlet and outlet 1111 may be provided at one end of the first slide rail 111 along the preset direction, connecting to the sliding space of the first slide rail 111. The size of the inlet and outlet 1111 may be larger than the size of the second limiting portion 132, and an elastic extension arm 1112 may extend from the support member 11 toward the inlet and outlet 1111. The second slide rail 112 can have a first inner side wall and a second inner side wall relative to each other, and the first inner side wall can be protruded with an elastic first limiting portion 1121, one end of the first limiting portion 1121 can be connected to the first inner side wall, and the other end can extend toward the second inner side wall away from the end of the first slide rail 111, and the position of the first inner side wall corresponding to the other end of the first limiting portion 1121 can be recessed to have a space for the other end of the first limiting portion 1121 to rebound, and the first limiting portion 1121 can form a limiting space 1122 of the sliding member 13 between the first limiting portion 1121 and the end of the second slide rail 112 away from the first slide rail 111.
[0067] The connector 12 may be provided with a plug-in portion for plugging into the target functional component 14 .
[0068] The sliding member 13 can slide from the first slide rail 111 to any second slide rail 112 and can be maintained on the second slide rail 112 after sliding, so as to limit the target functional component 14 between the connecting member 12 and the sliding member 13. The sliding member 13 may include: a main body 131 and a second limiting portion 132. The second limiting portion 132 can be connected to one axial end of the main body 131 and protrude from the circumferential side surface of the main body 131. A portion of the main body 131 can be located in the assembly space 113. The main body 131 can pass through the first slide rail 111 and abut against the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail 111. The second limiting portion 132 can abut against the surface of the support member 11 facing away from the assembly space 113. A connecting hole may be recessed at one end of the main body 131 away from the second limiting portion 132, and the connecting hole may be used to connect a screw with a brim or a pin with a brim. When the connecting hole is connected to a screw or a pin, the brim may protrude from the peripheral side surface of the main body 131.
[0069] Thus far, various embodiments of the present disclosure have been described in detail. To avoid obscuring the concept of the present disclosure, some details known in the art have not been described. Based on the above description, those skilled in the art can fully understand how to implement the technical solutions disclosed herein.
[0070] Although some specific embodiments of the present disclosure have been described in detail through examples, those skilled in the art will understand that the above examples are for illustrative purposes only and are not intended to limit the scope of the present disclosure. Those skilled in the art will understand that the above embodiments may be modified or some technical features may be replaced with equivalents without departing from the scope and spirit of the present disclosure. In particular, as long as there are no structural conflicts, the various technical features mentioned in the various embodiments may be combined in any manner.
Claims
1. An electronic device, characterized in that: include: A support member is provided with a first slide rail and a plurality of second slide rails, wherein the second slide rails are connected to the first slide rails and extend in a different direction from the first slide rails; Connecting parts, used to connect target functional parts; The sliding member can slide from the first sliding rail to any of the second sliding rails and remain on the second sliding rail after sliding, so as to limit the target functional component between the connecting member and the sliding member.
2. The electronic device according to claim 1, wherein One side of the support member is provided with an assembly space extending along a preset direction, and the angle between the extension direction of the first slide rail and the preset direction is less than 90 degrees; The connecting member is provided with a plug-in portion for plugging into the target functional member; Part of the sliding member is located in the assembly space to cooperate with the connecting member to define a target space for assembling the target functional component in the assembly space.
3. The electronic device according to claim 2, wherein: The extension direction of the first slide rail and the preset direction meet the parallel condition; The extending direction of the second slide rail is perpendicular to the preset direction.
4. The electronic device according to any one of claims 1 to 3, characterized in that: The plurality of second slide rails are located on the same side or different sides of the extending direction of the first slide rail.
5. The electronic device according to claim 2, wherein: The second slide rail has a first limiting portion for limiting the sliding member when the sliding member slides to the second slide rail.
6. The electronic device according to claim 5, characterized in that The first slide rail and the second slide rail are recessed on one side of the support member corresponding to the assembly space, and the second slide rail has a first inner side wall and a second inner side wall opposite to each other; The first inner side wall is protruded with the first limiting portion having elasticity, and a limiting space of the sliding member is formed between the first limiting portion and an end of the second slide rail away from the first slide rail.
7. The electronic device according to claim 6, wherein: One end of the first limiting portion is connected to the first inner wall, and the other end extends toward the second inner wall away from one end of the first slide rail, and the first inner wall is recessed at a position corresponding to the other end of the first limiting portion to provide space for the other end of the first limiting portion to rebound.
8. The electronic device according to claim 6, wherein: The sliding member includes: a main body and a second limiting portion, wherein the second limiting portion is connected to one axial end of the main body and protrudes from the peripheral side surface of the main body; Part of the main body is located in the assembly space, the main body passes through the first slide rail and abuts against the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail, and the second limiting portion abuts against the surface of the support member facing away from the assembly space; or, Part of the main body is located in the assembly space, the main body extends into the first slide rail and abuts the third inner side wall and the fourth inner side wall opposite to each other in the extension direction of the first slide rail, and the second limiting portion is located in the first limiting groove of the third inner side wall and the second limiting groove of the fourth inner side wall, and the sliding member can slide along the third inner side wall, the fourth inner side wall, the first limiting groove and the second limiting groove.
9. The electronic device according to claim 8, wherein: A connecting hole is recessed at one end of the main body away from the second limiting portion, and the connecting hole is used to connect a screw with a brim or a pin with a brim; when the connecting hole is connected to the screw or the pin, the brim protrudes from the peripheral side surface of the main body.
10. The electronic device according to claim 8, wherein An inlet and outlet communicating with the sliding space of the first slide rail are provided at one end of the first slide rail along the preset direction. The size of the inlet and outlet is larger than that of the second limiting portion, and the support member extends an elastic extension arm toward the inlet and outlet.