Support structure

By designing the bracket structure of the integrated socket, the problem of poor cleanliness of the equipment to be installed is solved, and a smaller installation space occupation and cleaner cable wiring is achieved.

CN223019889UActive Publication Date: 2025-06-24BESTQI INNOVATION TECH (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202421739430.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-06-24
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The use environment of the equipment to be installed is poor, mainly because the cables are prone to chaos and the socket structure occupies a large installation space.

Method used

A bracket structure is designed, including a column, a socket structure and an installation arm. The socket structure is integrated on the outer facade of the column, the mounting arms are arranged at the column spaced apart, and the cable plug can be directly plugged into the socket structure on the outer facade of the column.

Benefits of technology

By integrating the socket structure into the facade of the column, the installation space occupied by the socket structure is reduced, the wiring length of the cable is reduced, and the neatness and aesthetics of the use environment of the equipment to be installed is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is suitable for the technical field of equipment installation, and provides a support structure which comprises a stand column, a socket structure and a plurality of installation arms. The stand column is provided with a plurality of outer vertical faces which are sequentially distributed in the circumferential direction, and every two adjacent outer vertical faces are bent oppositely. The socket structure is arranged on at least one outer vertical face. The plurality of mounting arms are arranged on the stand column at intervals and are arranged at intervals with the socket structure. Compared with an existing external socket structure, the support structure integrates the socket structure on the outer vertical face of the stand column, so that the installation space occupied by the socket structure is smaller. Meanwhile, the cable plug is directly connected with the socket structure on the outer vertical face of the stand column in an inserted mode, so that the cable does not need to be arranged to be of a long structure in the wiring process, the installation space occupied by the cable is reduced, and the cleanliness of the using environment of the equipment to be installed is improved.
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Description

Technical Field

[0001] This application belongs to the technical field of equipment installation, and more specifically, relates to a bracket structure. Background Art

[0002] The bracket structure is used to install devices to be installed such as monitors and tablets. When in use, the user can install the device to be installed on the bracket structure, plug the cable plug of the device to be installed into an external socket structure, and then plug the socket structure into the power supply to supply power to the device to be installed. Based on this, when wiring, the cable needs to be set to a relatively long length to facilitate plugging into the external socket structure, which makes the cables prone to chaos, and the cables and the socket structure occupy a relatively large installation space, thereby resulting in a poor cleanliness of the usage environment of the device to be installed. Summary of the Utility Model

[0003] One of the purposes of the embodiments of this application is to provide a bracket structure, aiming to solve the technical problem of poor cleanliness of the usage environment of the device to be installed in the related art.

[0004] To solve the above technical problem, the technical solution adopted in the embodiments of this application is:

[0005] A bracket structure is provided, including:

[0006] A column, provided with a plurality of outer surfaces distributed in sequence along the circumference, and two adjacent outer surfaces are bent relatively;

[0007] A socket structure, arranged on at least one of the outer surfaces;

[0008] A plurality of mounting arms, arranged on the column at intervals and arranged at intervals with the socket structure.

[0009] In some embodiments, in the axial direction of the column, the position of at least one of the mounting arms on the column is set to be adjustable.

[0010] In some embodiments, a slide rail extending along the axial direction of the column is provided on the outer surface, the mounting arm is provided with a sliding member, and the sliding member slides on the slide rail; the bracket structure further includes a first adjusting member, and the first adjusting member has a locking state for locking the sliding member on the slide rail and an unlocking state for unlocking the sliding member from the slide rail.

[0011] In some embodiments, along a first direction, the first adjusting member passes through the sliding member and is configured to approach or move away from the sliding rail under an external force; in the locked state, the first adjusting member abuts against the sliding rail along the first direction to lock the sliding member on the sliding rail; in the unlocked state, the first adjusting member disengages from the sliding rail to unlock the sliding member from the sliding rail; the axial direction of the column intersects with the first direction.

[0012] In some embodiments, the column is provided with a set of mounting positions, the set of mounting positions includes a plurality of mounting positions spaced apart along the axial direction of the column, the mounting arm is detachably mounted on the mounting position, and the plurality of mounting positions are configured to selectively mount the mounting arm.

[0013] In some embodiments, the socket structure includes a plurality of plug-in components, and the plurality of plug-in components are provided on the outer surfaces.

[0014] In some embodiments, the socket structure includes a DC plug-in component and an AC plug-in component, and the DC plug-in component and the AC plug-in component are respectively disposed on two of the outer surfaces.

[0015] In some embodiments, the column includes a first column body and a second column body, the first column body is rotatably connected to the second column body, and a rotation plane in which the first column body rotates relative to the second column body is perpendicular to the axial direction of the column; the first column body is provided with a plurality of the outer surfaces sequentially distributed along the circumferential direction, and a plurality of the mounting arms are spaced apart on the second column body.

[0016] In some embodiments, the outer surface is provided with windows spaced apart from the mounting arms; the socket structure is disposed inside the column; the socket structure is provided with jacks for plugging in cables, and the jacks are exposed at the windows.

[0017] In some embodiments, the bracket structure further includes a mounting component, and the mounting component includes:

[0018] A connecting member, including a first connecting portion connected to the column and a second connecting portion connected to the column, the first connecting portion and the second connecting portion are spaced apart;

[0019] A second adjusting member, connected to the first connecting portion and capable of moving relative to the first connecting portion toward or away from the second connecting portion to jointly clamp at a mounting position with the second connecting portion;

[0020] Alternatively, the bracket structure further includes a base, the column is disposed on the base, and the base is configured to support the column.

[0021] The beneficial effects of the bracket structure provided by the embodiments of the present application are as follows:

[0022] The bracket structure provided by the embodiment of the present application, when in use, a user can install a device to be installed on the mounting arm. Since a plurality of mounting arms are spaced apart on the column, and the socket structure is arranged on at least one outer facade of the column, the cable plug of the device to be installed can be directly plugged into the socket structure on the outer facade of the column to achieve electrical connection between the device to be installed and the socket structure. Compared with the existing external socket structure, the bracket structure of the present application integrates the socket structure on the outer facade of the column, so that the installation space occupied by the socket structure is smaller. At the same time, the cable plug is directly plugged into the socket structure on the outer facade of the column, so that the cable does not need to be set into a longer structure during wiring, thereby reducing the installation space occupied by the cable and improving the neatness of the usage environment of the device to be installed. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0024] Figure 1 is a schematic perspective view of the bracket structure provided by some embodiments of the present application;

[0025] Figure 2 is Figure 1 a schematic exploded view of the provided bracket structure;

[0026] Figure 3 is Figure 2 an enlarged view of part A in

[0027] Figure 4 is a schematic perspective view of the bracket structure provided by some other embodiments of the present application.

[0028] Wherein, each reference numeral in the figure:

[0029] 10 - column; 11 - outer facade; 12 - mounting position; 121 - mounting hole; 13 - slide rail; 14 - window; 20 - socket structure; 21 - plug-in component; 22 - jack; 23 - power cord; 30 - mounting arm; 31 - sliding member; 40 - first adjusting member; 50 - base; X - first direction; Z - axial direction of the column. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] Embodiments of the present application will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where like or similar reference numerals denote like or similar elements or elements having like or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present application, and should not be construed as limiting the present application.

[0031] In the description of the present application, it should be understood that the orientation or positional relationships indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present application.

[0032] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features.

[0033] In the description of the present application, "a plurality of" means more than two. Unless otherwise specifically defined, "more than two" includes two. Correspondingly, "a plurality of groups" means more than two groups, including two groups.

[0034] In the present application, unless otherwise clearly specified and defined, terms such as "install", "connect", "couple", "fix", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0035] The following will be described in detail with reference to specific drawings and embodiments:

[0036] It can be understood that the bracket structure provided by the embodiments of the present application is used to install a device to be installed at an external installation position. Among them, the device to be installed may be a display, a tablet, a projector, etc. The installation position may be a wall, a table, a platform, etc. As an example, the device to be installed is a display and the target position is a table, that is, the bracket structure is used to install the display on the table for use. The following will be described taking the device to be installed as a display as an example.

[0037] Please refer to Figure 1 and Figure 2, the bracket structure includes a column 10, a socket structure 20, and a plurality of mounting arms 30. The column 10 is provided with a plurality of outer surfaces 11, and the plurality of outer surfaces 11 are sequentially distributed along the circumferential direction. Two adjacent outer surfaces 11 are arranged to be bent relative to each other. The socket structure 20 is provided on at least one outer surface 11. The plurality of mounting arms 30 are spaced on the column 10. The plurality of mounting arms 30 and the socket structure 20 are arranged at intervals.

[0038] The outer surface 11 refers to the surface of the outer periphery of the column 10, and the plurality of outer surfaces 11 sequentially distributed along the circumferential direction constitute the outer peripheral wall of the column 10.

[0039] Specifically, two adjacent outer surfaces 11 are arranged to be bent relative to each other, so that the cross-section of the column 10 in the direction perpendicular to its own axis is non-circular. Based on this, the column 10 can be set as a columnar structure in the shape of a quadrangular prism, a hexagonal prism, etc.

[0040] In a possible design, the plurality of mounting arms 30 can be provided on one of the outer surfaces 11 of the column 10 and are spaced apart on the above-mentioned one outer surface 11; or, in another possible design, the plurality of mounting arms 30 can also be respectively provided on a plurality of different outer surfaces 11, and any number of mounting arms 30 can be spaced on any one of the outer surfaces 11.

[0041] One mounting arm 30 is usually used to mount one display. Based on this, any one of the plurality of mounting arms 30 can mount one display, so that the bracket structure can select the number of mounting arms 30 according to actual needs to mount a plurality of displays at the same time. Of course, in some other embodiments, there may also be a situation where a plurality of mounting arms 30 are used to mount one display at the same time, or one mounting arm 30 is used to mount a plurality of displays, which is not limited here.

[0042] Among them, the mounting arm 30 can be mounted on the outer surface 11 of the column 10, or the mounting arm 30 can also be provided on other surfaces or inside the column 10 that are not the outer surface 11.

[0043] The bracket structure provided by the embodiment of the present application, when in use, the user can install the display on the mounting arm 30. Since multiple mounting arms 30 are spaced on the column 10, and the socket structure 20 is arranged on at least one outer facade 11 of the column 10, the cable plug of the display can be directly inserted into the socket structure 20 on the outer facade 11 of the column 10 to realize the electrical connection between the display and the socket structure 20. Compared with the existing external socket structure 20, the bracket structure of the present application integrates the socket structure 20 on the outer facade 11 of the column 10, so that the installation space occupied by the socket structure 20 is smaller. At the same time, the cable plug is directly inserted into the socket structure 20 on the outer facade 11 of the column 10, so that the cable does not need to be set as a longer structure during wiring, thereby reducing the installation space occupied by the cable and improving the neatness and aesthetics of the display use environment. In addition, the socket structure 20 is arranged on at least one outer facade 11, so that the installation position of the socket structure 20 is more flexible. For example, when the bracket structure is in use, when there is not enough space around one or several outer facades 11 of the column 10 to insert and connect the cable plug, the user can also set the socket structure 20 on other outer facades 11 of the column 10 with space for inserting and connecting the cable plug. In this way, the setting position of the socket structure 20 has high flexibility, which is convenient for the smooth insertion and extraction of the cable plug.

[0044] In some embodiments, the socket structure 20 has a power cord 23 and a plurality of plug-in components 21 for the cable plug of the display to be inserted. The power cord 23 has a plug for the socket structure 20 to be plugged into the power supply to supply power to the socket structure 20.

[0045] In some embodiments, please refer to Figure 1 and Figure 2 , in the axial direction Z of the column 10, the position of at least one mounting arm 30 on the column 10 is set to be adjustable.

[0046] During actual use, the axial direction Z of the column 10 is substantially parallel to the height direction of the column 10. In this way, the position of the mounting arm 30 on the column 10 is set to be adjustable, that is, the height of the mounting arm 30 on the column 10 is adjustable.

[0047] Among them, the mounting arm 30 can be installed on the outer facade 11 of the column 10, and the position of the mounting arm 30 on the outer facade 11 is set to be adjustable. Or, the mounting arm 30 can also be arranged on other surfaces or inside the column 10 that are not the outer facade 11, and the position is adjustable at the above-mentioned parts that are not the outer facade 11.

[0048] For example, the user can drive one of the multiple mounting arms 30 to move along the axial direction Z of the column 10 to adjust the position of one mounting arm 30 on the column 10; or, the user can also drive more than two mounting arms 30 among the multiple mounting arms 30 to move along the axial direction Z of the column 10 at the same time to synchronously adjust the positions of the multiple mounting arms 30 on the column 10.

[0049] In this way, in actual use, the user can individually adjust the position of any mounting arm 30, so that when the shapes and sizes of the displays installed on different mounting arms 30 are inconsistent, the user can adjust the displays on multiple mounting arms 30 to align with each other, thereby improving the flexibility of use of the bracket structure and improving the user's viewing experience.

[0050] In some embodiments, see Figures 1 to 3 , a slide rail 13 is provided on the facade 11, and the slide rail 13 is extended along the axial direction Z of the column 10. The mounting arm 30 is provided with a sliding member 31. The sliding member 31 is slidably arranged on the slide rail 13. The bracket structure also includes a first adjusting member 40. The first adjusting member 40 has a locked state and an unlocked state. In the locked state of the first adjusting member 40, the first adjusting member 40 is used to lock the sliding member 31 on the slide rail 13. In the unlocked state of the first adjusting member 40, it is used to unlock the sliding member 31 from the slide rail 13.

[0051] The first adjusting member 40 may be a ratchet structure provided on the sliding member 31, and a slot engaged with the ratchet is provided on the sliding rail 13. When the sliding member 31 slides to the desired position, the first adjusting member 40 can be engaged in the slot of the sliding rail 13 to limit the position of the sliding member 31 along the axial direction of the column 10, and lock the sliding member 31 on the sliding rail 13. When the first adjusting member 40 is released from the slot, the sliding member 31 can be unlocked from the sliding rail 13. Alternatively, the first adjusting member 40 may also be a baffle structure, and a slot engaged with the baffle is provided on the sliding rail 13. When the sliding member 31 slides to the set position, the first adjusting member 40 can be inserted into the slot and block the sliding member 31 from sliding along the axial direction of the column 10, so as to lock the sliding member 31 on the sliding rail 13. The sliding member 31 can be unlocked from the sliding rail 13 by removing the first adjusting member 40. The configuration of the first adjusting member 40 is not limited to the above two types, and may also be other forms, which will not be elaborated herein.

[0052] The sliding cooperation between the sliding member 31 and the slide rail 13 realizes the sliding of the mounting arm 30 on the facade 11, thereby realizing the position adjustment of the display on the column 10. This sliding connection mode is simple in design and has strong operability. After the adjustment is completed, the sliding member 31 is locked by the first adjustment member 40, which avoids the sliding member 31 from sliding along the slide rail 13 again after the adjustment is completed as much as possible, making the fixing and movement of the mounting arm 30 on the column 10 more stable and reliable.

[0053] In some embodiments, referring to Figures 1 to 3 , along the first direction X, the first adjusting member 40 passes through the sliding member 31 and is used to approach or move away from the slide rail 13 under an external force. In the locked state, the first adjusting member 40 abuts against the slide rail 13 along the first direction X to lock the sliding member 31 on the slide rail 13. In the unlocked state, the first adjusting member 40 disengages from the slide rail 13 to unlock the sliding member 31 from the slide rail 13. Among them, the axial direction Z of the column 10 intersects with the first direction X.

[0054] In a possible design, the first adjusting member 40 is a bolt, and the first adjusting member 40 can rotate under the condition of being manually screwed by the user to approach or move away from the slide rail 13. When the adjusting member abuts against the slide rail 13, the first adjusting member 40 has a certain pressure on the slide rail 13, so that there is a certain frictional force between the first adjusting member 40 and the slide rail 13. In this way, the sliding member 31 can be fixed on the slide rail 13 under the action of the frictional force and is not easy to slide along the axial direction Z of the column 10. Among them, the abutting force of the first adjusting member 40 on the slide rail 13 can be adjusted according to actual needs. When the adjusting member disengages from the slide rail 13, the frictional force between the first adjusting member 40 and the slide rail 13 is cancelled, and then the sliding member 31 can slide along the axial direction Z of the column 10.

[0055] During use, the user can first adjust the first adjusting member 40 to the unlocked state, so that the user can drive the mounting arm 30 to move through manual driving or other means, and then drive the sliding member 31 to slide on the slide rail 13. When the mounting arm 30 is adjusted to the required position, the user then adjusts the first adjusting member 40 to the locked state. At this time, the sliding member 31 will not slide along the slide rail 13, and the display can be stably fixed at the adjusted position for use.

[0056] The first direction X and the axial direction Z of the column 10 intersect, which means that the first direction X and the axial direction Z of the column 10 can form an angle greater than 0° and less than 180°, that is, the first direction X and the axial direction Z of the column 10 are not parallel. Among them, the first direction X and the axial direction Z of the column 10 can be perpendicular to each other or not perpendicular. The first direction X and the axial direction Z of the column 10 can be directions intersecting in the same plane, or can be directions on planes that are skew to each other, and the projection of the axial direction Z of the column 10 on the plane where the first direction X is located can intersect with the first direction X.

[0057] As an example, the first direction X is perpendicular to the axial direction Z of the column 10. As Figure 1As shown, the first direction is parallel to the X-axis, and the axial direction of the column 10 is parallel to the Z-axis. It should be noted here that the X-axis, Y-axis, and Z-axis form a spatial coordinate system. The X-axis, Y-axis, and Z-axis are the three coordinate axes of the spatial coordinate system. The X-axis is perpendicular to the Y-axis, the X-axis is perpendicular to the Z-axis, and the Y-axis is perpendicular to the Z-axis.

[0058] Through the above solution, the user only needs to adjust the first adjusting member 40 closer to or farther away from the slide rail 13 to realize the switching between the locked state and the unlocked state of the first adjusting member 40. The structure is simple, the processing cost is relatively low, and the adjustment operation of the first adjusting member 40 is relatively simple.

[0059] In some embodiments, please refer to Figure 4 , the column 10 is provided with an installation position group. The installation position group includes a plurality of installation positions 12, and the plurality of installation positions 12 are spaced along the axial direction Z of the column 10. The mounting arm 30 is detachably mounted on the mounting position 12. The plurality of mounting positions 12 are used to selectively mount the mounting arm 30.

[0060] Among them, the mounting position 12 can be arranged on the outer facade 11 and spaced along the axial direction Z of the column 10 on the outer facade 11; or, the mounting position 12 can also be arranged on other surfaces or inside the column 10 that are not the outer facade 11.

[0061] In a possible design, the mounting position 12 is provided with a buckle, and the mounting arm 30 is provided with a slot for snap connection therewith. Along the axial direction Z of the column 10, the plurality of buckles are used to selectively snap into the slots of the mounting arm 30. Or, in another possible design, the bracket structure further includes a fastener. The mounting position 12 is provided with a mounting hole 121. The fastener is mounted on the mounting arm 30 and can be selectively mounted in each mounting hole 121. When the fastener is disengaged from the mounting hole 121, the mounting arm 30 can move relative to the column 10. When the fastener is inserted and fixed in the mounting hole 121, the mounting arm 30 can be fixed on the column 10.

[0062] In this way, the mounting arm 30 can be installed and fixed at different positions of the column 10 through the installation position group to better adjust the use position of the display, improving the use flexibility of the bracket.

[0063] In some embodiments, for some of the plurality of mounting arms 30, when a slide rail 13 is provided on the outer facade 11 and a slider 31 is provided on the mounting arm 30, the position adjustment of the mounting arm 30 can be achieved by sliding the slider 31 on the slide rail 13. For some of the plurality of mounting arms 30, when the column 10 is provided with a set of mounting positions, the set of mounting positions includes a plurality of mounting positions 12, and the plurality of mounting positions 12 are spaced along the axial direction Z of the column 10, the position adjustment of the mounting arm 30 can be achieved by selectively mounting the mounting arm 30 on the plurality of mounting positions 12. Based on this, the position adjustment methods of each of the plurality of mounting arms 30 can be the same or different, which is not limited herein.

[0064] In some embodiments, please refer to Figure 1 and Figure 2 , the socket structure 20 includes a plurality of plug-in components 21. The plurality of plug-in components 21 are provided on the plurality of outer facades 11.

[0065] In this way, the user can set the plug-in components 21 on different outer facades 11 of the column 10. When in use, when the plug-in component 21 on one outer facade 11 is blocked and cannot be normally wired, the user can plug the cable plug of the display into the plug-in component 21 on another outer facade 11, which improves the plugging convenience and use flexibility of the socket structure 20.

[0066] In some embodiments, the socket structure 20 includes a DC plug-in component 21 and an AC plug-in component 21. The DC plug-in component 21 and the AC plug-in component 21 are respectively arranged on two outer facades 11.

[0067] Since the DC plug-in component 21 is used more frequently than the AC plug-in component 21 during the actual use of the display, the DC plug-in component 21 and the AC plug-in component 21 are arranged on different outer facades 11 of the column 10. When the bracket structure is installed, the user can set the frequently used DC plug-in component 21 on the outer facade 11 that is convenient for the user to operate and is not easily blocked by obstacles, thereby improving the plugging convenience of the socket structure 20. At the same time, arranging the DC plug-in component 21 and the AC plug-in component 21 on two outer facades 11 also improves the neatness and aesthetics of the display cable during plugging.

[0068] In some embodiments, please refer to Figure 1 , the column 10 includes a first column body and a second column body. The first column body is rotatably connected to the second column body. The rotation plane of the first column body relative to the second column body is perpendicular to the axial direction Z of the column 10. The first column body is provided with a plurality of outer facades 11, and the plurality of outer facades 11 are sequentially distributed along the circumferential direction. The plurality of mounting arms 30 are spaced on the second column body.

[0069] In a possible design, during use, the user can drive the first cylinder to rotate by means of electricity or manual driving, etc., and then the socket structure 20 on the first cylinder will correspondingly change its orientation. Since the mounting arm 30 is mounted on the second cylinder, the orientation of the display mounted on the mounting arm 30 remains unchanged. Based on this, the user can change the relative orientation of the socket structure 20 and the display by adjusting the rotation of the first cylinder relative to the second cylinder. Alternatively, in some other possible designs, the user can also drive the second cylinder to rotate, and then the display on the second cylinder will correspondingly change its orientation. Based on this, the user can also change the relative orientation of the socket structure 20 and the display by adjusting the rotation of the second cylinder. Alternatively, in some other possible designs, the user can also drive the first cylinder and the second cylinder to rotate simultaneously, and then both the socket structure 20 on the first cylinder and the display on the second cylinder will correspondingly change their orientations.

[0070] Among them, the second cylinder can be spaced apart from the outer facade 11; alternatively, the outer peripheral wall of the second cylinder can be docked to the outer facade 11 of the first cylinder. Among them, multiple mounting arms 30 can be arranged at intervals on the outer peripheral wall of the second cylinder, and can also be arranged inside the second cylinder or on the surfaces of other non-outer peripheral walls, etc.

[0071] In this way, when the socket structure 20 on one side of the outer facade 11 of the bracket structure is blocked by an obstacle, the user can adjust the relative rotation of the second cylinder and the first cylinder, so that the socket structure 20 is not easily blocked by an obstacle during use, which is conducive to the normal insertion of the cable plug of the display into the socket structure 20, and improves the insertion convenience of the cable plug into the socket structure 20. When the bracket structure is in use, when there is not enough space on a certain side around the column 10 to insert and connect the cable plug, the user can also adjust the relative rotation of the first cylinder and the second cylinder to make the socket structure 20 face the side with insertion space, so as to facilitate the smooth insertion and extraction of the cable plug.

[0072] In some embodiments, please refer to Figure 1 and Figure 2 , the outer facade 11 is provided with a window 14, and the window 14 is spaced apart from the mounting arm 30. The socket structure 20 is arranged inside the column 10. The socket structure 20 is provided with a jack 22 for plugging in the cable plug. The jack 22 is exposed at the window 14.

[0073] Among them, the socket structure 20 can be set such that a part of the structure is located inside the column 10, and the other part of the structure extends out of the window 14, and the jack 22 is located in the part of the socket structure 20 outside the window 14 for the cable plug to be inserted. Alternatively, the socket structure 20 can also be such that all of its structure is located inside the column 10, and the jack 22 of the socket structure 20 is arranged corresponding to the window 14 and is exposed at the window 14 for the cable plug to be inserted.

[0074] In this way, by arranging the socket structure 20 inside the column 10, the storage performance of the bracket structure is improved, the installation space occupied by the socket structure 20 is reduced, and the neatness and aesthetics of the usage environment of the bracket structure are enhanced. At the same time, the column 10 also has a certain protective effect on the socket structure 20, such as waterproofing and dustproofing, improving the usage safety of the socket structure 20.

[0075] In some embodiments, the bracket structure further includes a mounting assembly. The mounting assembly includes a connecting member and a second adjusting member. The connecting member includes a first connecting portion and a second connecting portion. The first connecting portion is connected to the column 10, and the second connecting portion is also connected to the column 10. The first connecting portion and the second connecting portion are spaced apart. The second adjusting member is connected to the first connecting portion. The second adjusting member can move relative to the first connecting portion towards or away from the second connecting portion to jointly clamp an installation position with the second connecting portion. That is, the mounting assembly can be a structure similar to a C-shaped clamp.

[0076] The installation position can be positions such as the edge of a table, a partition, or the edge of a tea table.

[0077] The first connecting portion can be connected to the outer surface 11 of the column 10, or the first connecting portion can also be connected to other surfaces of the column 10 that are not the outer surface 11, or even connected to the inside of the column 10.

[0078] The second adjusting member can be a lead screw. The first connecting portion is provided with a threaded hole that cooperates with the lead screw. During use, the installation position is placed between the first connecting portion and the second connecting portion, and then the user can drive the lead screw to rotate, so that the distance between the lead screw and the second connecting portion changes, thereby jointly clamping the installation position by the lead screw and the second connecting portion. To improve the clamping stability, a support plate can be connected to one end of the second adjusting member close to the second connecting portion, and the contact area with the installation position is increased by arranging the support plate.

[0079] In a possible design, when the second adjusting member is close to the second connecting portion, the side of the second adjusting member facing the second connecting portion and the side of the second connecting portion facing the second adjusting member approach each other to respectively clamp on opposite sides of the external installation position, realizing the installation of the bracket structure at the installation position. When the thickness of the installation position increases, the user can adjust the second adjusting member to move away from the second connecting portion, so that the side of the second adjusting member facing the second connecting portion and the side of the second connecting portion facing the second adjusting member move away from each other. Then, the second adjusting member and the second connecting portion are aligned with the installation position, and then the second adjusting member is adjusted to be close to the second connecting portion, so that the sides of the second adjusting member and the second connecting portion facing the installation position approach each other to respectively clamp on opposite sides of the installation position.

[0080] In this way, through the settings of the installation components, the support structure can be installed more stably at the installation position, improving the installation stability of the support structure. In addition, by moving the second adjusting member towards or away from the second connecting portion, the support structure can be adapted to be installed at installation positions with different thicknesses through the installation components, improving the installation adaptability and installation firmness of the support structure.

[0081] Alternatively, in some other embodiments, please refer to Figure 1 , the support structure further includes a base 50. The column 10 is disposed on the base 50, and the base 50 is used to support the column 10 and the mounting arm 30.

[0082] Among them, the material of the base 50 can be but is not limited to stainless steel, glass, etc.

[0083] The base 50 is generally used to be installed at installation positions such as a desktop, the ground, etc., and the surface of the base 50 for contacting the installation position can be set to have a relatively large contact area to ensure the balance and support stability of the support structure.

[0084] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.

Claims

1. A support structure, characterized in that: include: The column is provided with a plurality of outer facades sequentially distributed along the circumferential direction, and two adjacent outer facades are bent relative to each other; A socket structure, provided on at least one of the exterior facades; A plurality of mounting arms are arranged on the column at intervals and are arranged at intervals from the socket structure.

2. The support structure according to claim 1, characterized in that: In the axial direction of the column, the position of at least one of the mounting arms on the column is adjustable.

3. The support structure according to claim 2, characterized in that: The outer facade is provided with a slide rail extending along the axial direction of the column, and the mounting arm is provided with a sliding member, which is slidably arranged on the slide rail; the bracket structure also includes a first adjusting member, which has a locking state for locking the sliding member on the slide rail, and an unlocking state for unlocking the sliding member from the slide rail.

4. The support structure according to claim 3, characterized in that: Along the first direction, the first adjusting member passes through the sliding member and is used to move closer to or away from the sliding rail under external force; in the locked state, the first adjusting member abuts against the sliding rail along the first direction to lock the sliding member on the sliding rail; in the unlocked state, the first adjusting member disengages from the sliding rail to unlock the sliding member from the sliding rail; the axial direction of the column intersects with the first direction.

5. The support structure according to claim 2, characterized in that: The column is provided with a mounting position group, which includes a plurality of mounting positions spaced apart along the axial direction of the column, the mounting arm is detachably mounted on the mounting positions, and the plurality of mounting positions are used to selectively mount the mounting arm.

6. The support structure according to any one of claims 1 to 5, characterized in that: The socket structure comprises a plurality of plug-in components, and the plug-in components are arranged on a plurality of the outer facades.

7. The support structure according to claim 6, characterized in that: The socket structure comprises a DC plug assembly and an AC plug assembly, and the DC plug assembly and the AC plug assembly are respectively arranged on the two exterior facades.

8. The support structure according to any one of claims 1 to 5, characterized in that: The column includes a first column and a second column, the first column is rotatably connected to the second column, and the rotation plane of the first column relative to the second column is perpendicular to the axial direction of the column; the first column is provided with a plurality of the outer facades distributed in sequence along the circumferential direction, and a plurality of the mounting arms are arranged on the second column at intervals.

9. The support structure according to any one of claims 1 to 5, characterized in that: The exterior facade is provided with windows spaced apart from the mounting arm, and the socket structure is arranged in the column; the socket structure is provided with a socket for plugging with a cable, and the socket is exposed in the window.

10. The support structure according to any one of claims 1 to 5, characterized in that: The support structure also includes a mounting assembly, and the mounting assembly includes: A connecting member, comprising a first connecting portion connected to the column and a second connecting portion connected to the column, wherein the first connecting portion and the second connecting portion are spaced apart; a second adjusting member connected to the first connecting portion and capable of moving relative to the first connecting portion toward or away from the second connecting portion so as to be clamped together with the second connecting portion at an installation position; Alternatively, the support structure further includes a base, the column is arranged on the base, and the base is used to support the column.