Rotary wall-mounted support

By designing an inclined hanging arm and guide plate structure on the rotating wall mount bracket, combined with an elastic compression head, the problems of difficult blind hanging operation and poor stability are solved, achieving a convenient and stable rotation effect, and avoiding power cord pulling.

CN224135637UActive Publication Date: 2026-04-17DONGGUAN XINGHAISHENG PRECISION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN XINGHAISHENG PRECISION TECH CO LTD
Filing Date
2025-06-09
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing rotating wall-mounted devices are difficult to operate blindly, have poor stability, complex structure, and the power cord is easily pulled.

Method used

A rotating wall-mounted bracket was designed, which adopts an inclined hanging arm and guide plate structure, combined with an elastic compression head, to achieve simple and stable blind hanging operation, and avoids power cord pulling by the collar.

Benefits of technology

It improves the convenience and stability of blind hanging operation, reduces shaking, simplifies the structure, and avoids the power cord being pulled when rotating.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary wall hanging support which comprises a rotary frame, a hanging frame and a fixed frame, and the rotary frame is installed on the fixed frame through a rotary mechanism to form a rotatable structure. A left hanging arm and a right hanging arm are arranged on the front face of the rotating frame, and hanging grooves are formed between the hanging arms and the rotating frame. The two hanging arms are obliquely arranged to form a contraction structure which is gradually narrowed in the hanging direction of the hanging rack; the two sides of the hanging frame are provided with side wings extending outwards, the side wings on the two sides correspond to the two hanging arms and are of a structure gradually widening from the head to the tail, and the head of the hanging frame faces forwards, so that the side wings are inserted into hanging grooves behind the hanging arms to be fixedly connected with the rotating frame in a hanging mode. Therefore, the blind hanging operation is more convenient and easier, meanwhile, the supporting performance of the structure is better, and the stability of a product during rotation can be improved. And through the elastic extrusion head, the extrusion head abuts against the surface of the rotating frame, so that the screen is more stable and not prone to shaking when touched, and meanwhile disassembly is more convenient.
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Description

Technical Field

[0001] This utility model relates to the field of electronic device bracket technology, and in particular to a rotating wall mount bracket for electronic devices with touch screen functionality such as monitors, all-in-one computers, and tablets. Background Technology

[0002] With the rise of short videos and other media, the demand for vertical screen and touch screen functions is increasing. To address this, wall-mounted brackets with vertical screen rotation capabilities have been designed. For example, Chinese invention patent CN202011421334.8 discloses a rotating wall-mounting device and a wall-mounted display device. This device can be fixed to the wall via a rotating wall-mounting device. When switching between horizontal, vertical, or any viewing angle, the wall-mounted display device can be manually rotated, allowing for timely adjustments based on the user's viewing needs. However, existing devices of this type still have some problems. For instance, blind hanging is difficult because the mounting points are not visible; also, the gap between the mounting and rotating components, which requires relative movement, results in poor stability of the mounting components, causing wobbling when touching the screen. Furthermore, the aforementioned rotating wall-mounting devices have many parts and a relatively complex structure. Utility Model Content

[0003] This utility model addresses the shortcomings of existing technologies by providing a rotating wall-mounted bracket with a simpler structure, more reasonable design, more convenient blind-hanging operation, and higher stability.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: a rotating wall-mounted bracket, including a rotating frame, a hanging frame, and a fixed frame. The rotating frame is mounted on the fixed frame through a rotating mechanism to form a rotatable structure, and the hanging frame is hooked and fixed to the rotating frame. Two hanging arms are provided on the front of the rotating frame, forming a hanging groove between the hanging arms and the rotating frame. Both hanging arms are inclined to form a tapering structure that gradually narrows along the hanging direction of the hanging frame. The hanging frame has outwardly extending side wings on both sides, and the side wings on both sides are configured to gradually widen from the head to the tail of the two hanging arms. The hanging frame is hooked and fixed to the rotating frame by inserting the side wings into the hanging grooves behind the hanging arms with its head forward.

[0005] Furthermore, forward-bending guide plates are installed at the entrances of the two hanging arms, and the bending of the guide plates makes the entrance opening of the hanging groove larger than the internal space of the hanging groove.

[0006] Furthermore, the hanging arm has several inclined sections to form a guide inclined wall, and the outer wall of the side wing has the same inclined structure as the hanging arm, so that the side wing fits into the corresponding hanging arm after being inserted into the hanging groove.

[0007] Furthermore, several extrusion heads are provided on the side wing. The extrusion heads are connected to the body of the side wing through elastic arms to form an elastic structure that protrudes backward. After the hanger and the rotating frame are fixed together, the extrusion heads are pressed against the surface of the rotating frame.

[0008] Furthermore, the extrusion heads on both sides form a symmetrical structure, and the extrusion heads are connected to the body of the side wing as an integral structure through the spring arm.

[0009] Furthermore, a ring is placed at the center of the rotating mechanism, and the power cord passes through the hole in the ring. This routing of the cable through the center of rotation avoids pulling on the power cord when the screen rotates vertically.

[0010] Furthermore, it also includes a back panel, with the fixing bracket fixed to the back panel by screws, and the rotating bracket and hanging bracket protruding from the front of the back panel.

[0011] Furthermore, a groove is provided in the center of the back plate, and the fixing frame is embedded in the groove. This allows the thickness of the back plate to accommodate the fixing frame, thereby reducing the overall thickness of the support.

[0012] This invention features a hanging structure on a rotating frame that gradually narrows as it is hung, and a guide plate at the entrance. This makes blind hanging easier and more convenient, while also providing better support and improving the product's stability during rotation. Furthermore, the elastic pressing head, pressed against the surface of the rotating frame, ensures a more stable grip on the touchscreen, reducing wobbling and facilitating disassembly. Attached Figure Description

[0013] Figure 1 This is a structural diagram of the present invention;

[0014] Figure 2 This is a structural diagram of the present invention after the back panel has been removed;

[0015] Figure 3 This is a structural diagram of the present invention from another angle after the back panel has been removed;

[0016] Figure 4 This is an exploded structural diagram of the main body of this utility model;

[0017] Figure 5 This is a structural diagram of the mounting bracket.

[0018] In the diagram, 1 is the rotating frame, 11 is the hanging arm, 12 is the guide ramp, 13 is the guide plate, 2 is the hanging bracket, 21 is the side wing, 22 is the extrusion head, 23 is the spring arm, 3 is the fixed frame, 4 is the rotating mechanism, 41 is the collar, 5 is the power cord, and 6 is the back plate. Detailed Implementation

[0019] In this embodiment, refer to Figures 1-5 (All in an inverted state), the rotating wall-mounted bracket includes a rotating frame 1, a hanging bracket 2, and a fixed frame 3. The rotating frame 1 is mounted on the fixed frame 3 via a rotating mechanism 4 to form a rotatable structure. The hanging bracket 2 is hooked and fixed to the rotating frame 1. Two hanging arms 11 are provided on the front of the rotating frame 1, forming a hanging groove between the hanging arms 11 and the rotating frame 1. Both hanging arms 11 are inclined to form a tapering structure that gradually narrows along the hanging direction of the hanging bracket 2, similar to an inverted V-shape. The hanging bracket 2 has outwardly extending side wings 21 on both sides. The side wings 21 are configured to gradually widen from the head to the tail of the two hanging arms 11. The hanging bracket 2 moves its head forward so that the side wings 21 are inserted into the hanging grooves behind the hanging arms 11 to achieve hooking and fixing with the rotating frame. Pulling them outwards achieves disassembly.

[0020] A forward-bending guide plate 13 is provided at the entrance of each of the two hanging arms 11. The bending of the guide plate 13 makes the entrance opening of the hanging slot larger than the internal space of the hanging slot. This makes it easier to align the hanging bracket 2 when it is hung in the hanging slot, making blind hanging operation more convenient.

[0021] The hanging arm 11 has several inclined sections to form a guide inclined wall 12. The outer side wall of the side wing 21 has the same inclined structure as the hanging arm 11, that is, a trapezoidal structure, so that the side wing 21 fits against the corresponding hanging arm 11 after being inserted into the hanging slot, thus ensuring that the product is more stable when rotating.

[0022] Several extrusion heads 22 are provided on the side wing 21. The extrusion heads 22 are connected to the body of the side wing 21 through the spring arm 23 to form an elastic and rearward protruding structure. After the hanger 2 is fixed to the rotating frame 1, the extrusion heads 22 press against the surface of the rotating frame 1, making the touch screen more stable and easier to disassemble.

[0023] The extrusion heads 22 on both sides of the wing 21 form a symmetrical structure, and the extrusion heads 22 are connected to the body of the wing 21 as an integral structure through the spring arm 23.

[0024] A ring 41 is set at the center of the rotating mechanism 4, and the power cord 5 passes through the hole in the ring 41. This routing of the cable through the center of rotation avoids pulling on the power cord 5 when the screen is rotated vertically.

[0025] It also includes a back plate 6, a fixing bracket 3 fixed to the back plate 6 by screws, and a rotating bracket 1 and a hanging bracket 2 protruding from the front of the back plate 6.

[0026] A groove is provided in the center of the back plate 6, and the fixing bracket 3 is embedded in the groove. In this way, the thickness of the back plate 6 can be used to accommodate the fixing bracket 3, thereby reducing the overall thickness of the bracket and making the bracket lighter and thinner.

[0027] The present invention has been described in detail above. The above description is only a preferred embodiment of the present invention and should not be construed as limiting the scope of the present invention. All equivalent changes and modifications made in accordance with the scope of this application should still fall within the scope of the present invention.

Claims

1. A rotating wall-mounted bracket, comprising a rotating frame, a hanging bracket, and a fixed frame, wherein the rotating frame is mounted on the fixed frame via a rotating mechanism to form a rotatable structure, and the hanging bracket is fixedly connected to the rotating frame, characterized in that: The front of the rotating frame has two hanging arms, one on the left and one on the right, forming a hanging groove between the hanging arms and the rotating frame. Both hanging arms are inclined to form a tapering structure that gradually narrows along the hanging direction. The two sides of the hanging frame have outward-extending side wings, which are designed to gradually widen from the head to the tail of the two hanging arms. The hanging frame is fixed to the rotating frame by inserting the side wings into the hanging grooves behind the hanging arms with its head forward.

2. The swivel wall mount of claim 1, wherein: A forward-bending guide plate is installed at the entrance of the two hanging arms. The bending of the guide plate makes the entrance opening of the hanging groove larger than the internal space of the hanging groove.

3. The swivel wall mount of claim 1, wherein: The hanging arm has several inclined sections to form a guide inclined wall, and the outer side wall of the side wing has the same inclined structure as the hanging arm so that the side wing fits into the corresponding hanging arm after being inserted into the hanging slot.

4. The swivel wall mount of claim 1, wherein: Several extrusion heads are provided on the side wing. The extrusion heads are connected to the body of the side wing through elastic arms to form an elastic structure that protrudes backward. After the hanger and the rotating frame are fixed together, the extrusion heads are pressed against the surface of the rotating frame.

5. The swivel wall mount of claim 4, wherein: The extrusion heads on both sides form a symmetrical structure, and the extrusion heads are connected to the main body of the side wings as an integral structure through the spring arms.

6. The rotating wall-mounted bracket according to claim 1, characterized in that: A ring is set at the center of the rotating mechanism, and the power cord passes through the hole in the ring.

7. The swivel wall mount of claim 1, wherein: It also includes a back panel, with the mounting bracket fixed to the back panel by screws, and the rotating bracket and hanging bracket protruding from the front of the back panel.

8. The swivel wall mount of claim 7, wherein: A groove is provided in the center of the back panel, and the fixing bracket is embedded in the groove.

Citation Information

Patent Citations

  • A rotating wall-mounting device and a wall-mounted display device

    CN112483863B