Ultrathin stretching television hanger
By designing the socket limiting component and the elastic plug component, the problem of traditional stretch TV wall mounts being laborious when the damping force is too large and unstable when the damping force is too small is solved, thus achieving an organic unity of portability and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional stretchable TV wall mounts are difficult to operate when the hinge damping force is too large, and the TV is not stable enough when the damping force is too small, posing a safety hazard.
The system employs a sleeve-type limiting component and an elastic plug-in component. The sleeve-type limiting component releases the limit on the rotating end of the connecting component, while the rigid connection ensures stability and avoids relying solely on the damping force of the rotating shaft.
It achieves a balance between ease of angle adjustment and reliability after positioning, avoiding the contradiction of effort and instability in traditional damping adjustment, and ensuring that the TV remains stable after adjustment.
Smart Images

Figure CN224065216U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of TV wall mount technology, and specifically relates to an ultra-thin stretchable TV wall mount. Background Technology
[0002] The extendable TV wall mount is a TV installation device that combines flexibility and practicality. Its core design lies in the extendable cantilever structure, which supports the TV to be extended forward and backward in the vertical direction of the wall. At the same time, the TV can be adjusted up and down to meet the viewing needs of users in different scenarios.
[0003] When adjusting the vertical angle of a TV, the angle between the TV and the wall mount is mainly fixed by the damping force of the hinge. When the damping force of the hinge is too large, the user needs to apply extra force to overcome the resistance, which may lead to operator fatigue or even wear and tear on the hinge components, especially in the case of frequent adjustments or large-screen TVs. When the damping force is too small, the TV is prone to angle drift due to gravity, external touch, or environmental vibration after the angle adjustment is completed. This may affect the viewing experience or, in severe cases, cause the wall mount connection to loosen due to long-term shaking, posing a safety hazard. Utility Model Content
[0004] To address the issues that when the damping force of the hinge is large, it is difficult to rotate the TV, and when the damping force of the hinge is small, the overall stability of the TV after adjustment cannot be guaranteed, this utility model proposes an ultra-thin stretchable TV wall mount to overcome the above-mentioned technical problems existing in the existing related technologies.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is an ultra-thin stretchable TV wall mount, including a storage component, a telescopic component on the back of the storage component, a connecting component between the telescopic component and the storage component, a sleeve limiting component on the outer side of the connecting component corresponding to the rotating end, and an elastic insertion component on the back of the storage component corresponding to the sleeve limiting component.
[0007] The storage component is used to store and support the television. The telescopic component is used to move the storage component away from the wall. The elastic plug component is used to lock the socket limiting component so that the connecting component drives the television to rotate up and down through the storage component. The socket limiting component is used to limit the position of the connecting component.
[0008] Furthermore, the storage component includes a storage frame, a limiting frame is fixedly installed on the outer side of the storage frame, and a heat dissipation groove is formed at the bottom of the inner wall of the storage frame.
[0009] Furthermore, the telescopic component includes a mounting frame disposed on the back of the storage frame. A first rotating rod is rotatably connected inside the mounting frame, and a second rotating rod is rotatably connected to one end of the first rotating rod. Two first and second rotating rods are symmetrically arranged.
[0010] Furthermore, the connecting component includes a connecting frame, a connecting plate fixedly connected to the back of the connecting frame, one end of the second rotating rod rotatably connected to the connecting plate, rotating shafts rotatably connected to both sides of the inner wall of the connecting frame, a connecting block fixedly connected between the two rotating shafts, and the connecting block fixedly connected to the back of the storage frame.
[0011] Furthermore, the sleeve limiting assembly includes a mounting cylinder, which is fixedly mounted on one side of the connecting frame. A locking gear is provided inside the mounting cylinder. The other end of the rotating shaft extends into the interior of the mounting cylinder and is fixedly connected to the locking gear. A locking toothed cylinder is provided inside the mounting cylinder. The locking gear and the locking toothed cylinder mesh together. A T-shaped pull rod is movably connected to one end of the mounting cylinder. One end of the T-shaped pull rod extends into the interior of the mounting cylinder and is fixedly connected to the locking toothed cylinder.
[0012] Furthermore, a limiting groove is formed on the inner wall of the mounting cylinder, and a limiting strip is movably connected inside the limiting groove. The limiting strip is fixedly connected to the outer surface of the locking toothed cylinder, and a locking spring is fixedly connected between one end of the locking toothed cylinder and the inner wall of the mounting cylinder.
[0013] Furthermore, the elastic plug-in assembly includes a storage tube, which is fixedly installed on the back of the storage frame. A T-shaped plug-in rod is movably connected to the top of the storage tube, and the bottom end of the T-shaped plug-in rod penetrates through the storage tube. A plug-in groove is formed on the outer surface of the T-shaped pull rod. A connecting plate is movably connected inside the storage tube. The connecting plate is fixedly connected to the T-shaped plug-in rod. A push spring is fixedly connected between the connecting plate and the inner wall of the storage tube. A ball bearing is rotatably connected to the bottom end of the T-shaped plug-in rod.
[0014] This utility model has the following beneficial effects:
[0015] This invention releases the limiting effect on the rotating end of the connecting component by pulling the sleeve limiting component. At this time, the rotating end can drive the storage component to rotate. When the storage component rotates to a suitable angle, the limiting end of the sleeve limiting component is connected to the rotating end again. The above setting mainly relies on the sleeve limiting component to limit the rotating end of the connecting component, rather than simply relying on the damping force of the rotating end itself. This avoids the problem of difficult adjustment due to excessive damping force, and ensures that the storage component remains stable after adjustment through the rigid connection of the sleeve limiting component. It completely solves the contradiction between "effortlessness" and "stability" in traditional damping adjustment, and achieves an organic unity between the ease of angle adjustment and the reliability after positioning.
[0016] This invention uses a T-shaped pull rod to pull the locking gear cylinder, causing the locking gear cylinder to separate from the locking gear. When the T-shaped pull rod moves to the predetermined position, the T-shaped insertion rod can move directly into the insertion slot under the push of the push spring. This ensures that when the T-shaped pull rod is released, the locking spring cannot push the locking gear cylinder. This design eliminates the need to keep pulling the T-shaped pull rod when adjusting the angle of the storage frame, making it more convenient to rotate the storage frame.
[0017] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the utility model embodiments, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the external outline structure of this utility model;
[0020] Figure 2 For the present utility model Figure 1 Rear view structural diagram;
[0021] Figure 3 This is a schematic diagram of the storage component structure of this utility model;
[0022] Figure 4 This is a schematic diagram of the elastic plug-in component structure of this utility model;
[0023] Figure 5 For the present utility model Figure 4 Enlarged structural diagram at point A in the middle;
[0024] Figure 6 This is a schematic diagram of the sleeve limiting component structure of this utility model;
[0025] Figure 7 For the present utility model Figure 6 Enlarged structural diagram at point B;
[0026] Figure 8 This is a schematic diagram of the locking gear cylinder structure of this utility model.
[0027] The attached diagram lists the components represented by each number as follows:
[0028] 1. Storage component; 101. Storage frame; 102. Limiting frame; 103. Heat dissipation groove; 2. Telescopic component; 201. Mounting bracket; 202. First rotating rod; 203. Second rotating rod; 3. Connecting component; 301. Connecting frame; 302. Connecting plate; 303. Rotating shaft; 304. Connecting block; 4. Sleeve limiting component; 401. Mounting cylinder; 402. Locking gear; 403. Locking gear cylinder; 404. T-shaped pull rod; 405. Limiting groove; 406. Limiting strip; 407. Locking spring; 5. Elastic plug-in component; 501. Storage cylinder; 502. T-shaped plug-in rod; 503. Plug-in groove; 504. Connecting plate; 505. Push spring; 506. Ball bearing. Detailed Implementation
[0029] The technical solutions of the utility model embodiments will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the utility model, and not all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the utility model.
[0030] In the description of this utility model, it should be understood that the terms "opening", "upper", "lower", "top", "middle", "inner", etc., which indicate orientation or positional relationship, are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model.
[0031] Please see Figures 1-8 As shown, this utility model is an ultra-thin stretchable TV wall mount, including a storage component 1, a telescopic component 2 is provided on the back of the storage component 1, a connecting component 3 is provided between the telescopic component 2 and the storage component 1, a sleeve limiting component 4 is provided on the outer side of the connecting component 3 corresponding to the rotating end, and an elastic insertion component 5 is provided on the back of the storage component 1 corresponding to the sleeve limiting component 4.
[0032] The storage component 1 is used to store and support the television. The telescopic component 2 is used to move the storage component 1 away from the wall. The elastic plug component 5 is used to lock the socket limiting component 4 so that the connecting component 3 drives the television to rotate up and down through the storage component 1. The socket limiting component 4 is used to limit the connecting component 3.
[0033] By pulling the storage component 1, the telescopic component 2 rotates under the pull of the storage component 1 and the connecting component 3, thereby creating a certain distance between the storage component 1 and the wall. Then, the sleeve limiting component 4 is pulled, so that the sleeve limiting component 4 no longer limits the rotating end of the connecting component 3. Next, the storage component 1 is rotated up and down. When the storage component 1 rotates to the appropriate position, the sleeve limiting component 4 is connected to the rotating end of the connecting component 3 again, thereby preventing the rotating end of the connecting component 3 from rotating arbitrarily.
[0034] By pulling the sleeve limiting component 4, the limiting of the rotating end of the connecting component 3 is released. At this time, the rotating end can drive the storage component 1 to rotate. When the storage component 1 rotates to a suitable angle, the limiting end of the sleeve limiting component 4 is connected to the rotating end again. The above setting mainly relies on the sleeve limiting component 4 to limit the rotating end of the connecting component 3, rather than simply relying on the damping force of the rotating end itself. This avoids the problem of difficult adjustment due to excessive damping force, and ensures that the storage component 1 remains stable after adjustment through the rigid connection of the sleeve limiting component 4. It completely solves the contradiction between "effortlessness" and "stability" in traditional damping adjustment, and achieves the organic unity of the ease of angle adjustment and the reliability after positioning.
[0035] In one embodiment, the storage component 1 includes a storage frame 101, a limiting frame 102 is fixedly installed on the outer side of the storage frame 101, and a heat dissipation groove 103 is provided at the bottom of the inner wall of the storage frame 101.
[0036] By placing the television inside the storage frame 101 and then fitting the limiting frame 102 onto the front of the storage frame 101, and connecting the storage frame 101 and the limiting frame 102 together with fixing bolts, the storage frame 101 and the limiting frame 102 can enclose the television, thus preventing the television from being bumped or knocked when being adjusted. At the same time, the heat dissipation groove 103 ensures that the inside of the storage frame 101 will not overheat when the television is working inside the storage frame 101.
[0037] In one embodiment, the telescopic component 2 includes a mounting frame 201, which is disposed on the back of the storage frame 101. A first rotating rod 202 is rotatably connected inside the mounting frame 201, and a second rotating rod 203 is rotatably connected to one end of the first rotating rod 202. Two first rotating rods 202 and second rotating rods 203 are symmetrically arranged.
[0038] Mounting bracket 201 has mounting holes, through which fixing bolts secure the mounting bracket 201 to the wall. When adjusting the angle of the television inside the storage frame 101, the storage frame 101 is pulled directly. At this time, the storage frame 101 can pull the first rotating rod 202 through the second rotating rod 203, thereby increasing the distance between the first rotating rod 202 and the second rotating rod 203. At the same time, the storage frame 101 also has a certain distance from the wall. This setting ensures that the wall will not obstruct the subsequent adjustment of the angle of the storage frame 101, and the storage frame 101 will not occupy too much space when the television is not being watched. By symmetrically setting two first rotating rods 202 and two rotating rods 203, the two rotating rods can work together to better support the storage frame 101 through the connecting component 3.
[0039] In one embodiment, the connecting component 3 includes a connecting frame 301, a connecting plate 302 fixedly connected to the back of the connecting frame 301, one end of the second rotating rod 203 being rotatably connected to the connecting plate 302, and rotating shafts 303 being rotatably connected to both sides of the inner wall of the connecting frame 301. A connecting block 304 is fixedly connected between the two rotating shafts 303, and the connecting block 304 is fixedly connected to the back of the storage frame 101.
[0040] When the storage frame 101 is pulled, the storage frame 101 can pull one end of the second rotating rod 203 through the two connecting plates 302 on the connecting block 304, so that the second rotating rod 203 and the first rotating rod 202 can rotate; when the storage frame 101 is separated from the wall, the storage frame 101 is rotated, so that the storage frame 101 can drive the connecting block 304 to rotate inside the connecting frame 301, so that the tilt angle of the storage frame 101 can be adjusted.
[0041] In one embodiment, the aforementioned socket limiting assembly 4 includes a mounting cylinder 401, which is fixedly mounted on one side of the connecting frame 301. A locking gear 402 is provided inside the mounting cylinder 401. The other end of the rotating shaft 303 extends into the interior of the mounting cylinder 401 and is fixedly connected to the locking gear 402. A locking toothed cylinder 403 is provided inside the mounting cylinder 401. The locking gear 402 and the locking toothed cylinder 403 mesh together. A T-shaped pull rod 404 is movably connected to one end of the mounting cylinder 401. One end of the T-shaped pull rod 404 extends into the interior of the mounting cylinder 401 and is fixedly connected to the locking toothed cylinder 403.
[0042] When the storage frame 101 is rotated, the locking gear cylinder 403 is pulled by the T-shaped pull rod 404, so that the locking gear cylinder 403 moves inside the mounting cylinder 401 and moves out from the outside of the locking gear 402. At this time, the connecting block 304 can normally drive the rotating shaft 303 to rotate on the connecting frame 301. When the storage frame 101 rotates to a suitable angle under the drive of the connecting block 304, the locking gear cylinder 403 is pushed by the T-shaped pull rod 404, so that the locking gear cylinder 403 meshes with the locking gear 402 again, so that the rotating shaft 303 will not rotate arbitrarily on the connecting frame 301.
[0043] In one embodiment, for the mounting cylinder 401, a limiting groove 405 is formed on the inner wall of the mounting cylinder 401, a limiting strip 406 is movably connected inside the limiting groove 405, the limiting strip 406 is fixedly connected to the outer surface of the locking toothed cylinder 403, and a locking spring 407 is fixedly connected between one end of the locking toothed cylinder 403 and the inner wall of the mounting cylinder 401.
[0044] The locking spring 407 can push the locking gear cylinder 403, thereby causing the locking gear cylinder 403 to move the limiting strip 406 inside the limiting groove 405. At the same time, the locking gear cylinder 403 is pushed by the locking spring 407 and meshes with the locking gear 402. The locking spring 407 ensures that the locking gear cylinder 403 will not move arbitrarily after it is meshed with the locking gear 402. When the locking gear 402 and the locking gear cylinder 403 do not correspond, only a slight rotation of the storage frame 101 is needed. When the locking gear 402 and the locking gear cylinder 403 correspond, the locking gear cylinder 403 can directly mesh with the locking gear 402 under the push of the locking spring 407.
[0045] In one embodiment, the elastic plug-in assembly 5 includes a storage cylinder 501, which is fixedly installed on the back of the storage frame 101. A T-shaped plug-in rod 502 is movably connected to the top of the storage cylinder 501, and the bottom end of the T-shaped plug-in rod 502 penetrates through the storage cylinder 501. A plug-in groove 503 is provided on the outer surface of the T-shaped pull rod 404. A connecting plate 504 is movably connected inside the storage cylinder 501. The connecting plate 504 is fixedly connected to the T-shaped plug-in rod 502. A push spring 505 is fixedly connected between the connecting plate 504 and the inner wall of the storage cylinder 501. A ball bearing 506 is rotatably connected to the bottom end of the T-shaped plug-in rod 502.
[0046] The push spring 505 pushes the T-shaped plug rod 502 downward through the connecting plate 504, so that the ball bearing 506 at the bottom of the T-shaped plug rod 502 contacts the surface of the T-shaped pull rod 404. When the storage frame 101 is rotated, the locking toothed cylinder 403 is pulled by the T-shaped pull rod 404. When the T-shaped pull rod 404 moves to the predetermined position, the plug groove 503 on the T-shaped pull rod 404 corresponds vertically to the T-shaped plug rod 502. At this time, the T-shaped plug rod 502 can move directly into the plug groove 503 under the push of the push spring 505. Therefore, when the T-shaped pull rod 404 is released, the locking spring 407 cannot push the locking toothed cylinder 403. The above arrangement makes it unnecessary to keep pulling the T-shaped pull rod 404 when adjusting the angle of the storage frame 101.
[0047] Through the above technical solution, 1. By pulling the sleeve limiting component 4, the limiting of the rotating end of the connecting component 3 is released. At this time, the rotating end can drive the storage component 1 to rotate. When the storage component 1 rotates to a suitable angle, the limiting end of the sleeve limiting component 4 is connected to the rotating end again. The above setting mainly relies on the sleeve limiting component 4 to limit the rotating end of the connecting component 3, rather than simply relying on the damping force of the rotating end itself. This avoids the problem of difficult adjustment due to excessive damping force, and ensures that the storage component 1 remains stable after adjustment through the rigid connection of the sleeve limiting component 4. It completely solves the contradiction between "effortlessness" and "stability" in traditional damping adjustment, and achieves angle The system achieves a balance between ease of adjustment and reliability after positioning. 2. The locking gear cylinder 403 is pulled by the T-shaped pull rod 404, causing the locking gear cylinder 403 to separate from the locking gear 402. When the T-shaped pull rod 404 moves to the predetermined position, the T-shaped insertion rod 502 can move directly into the insertion slot 503 under the push of the push spring 505. This ensures that the locking spring 407 cannot push the locking gear cylinder 403 after the T-shaped pull rod 404 is released. The above configuration makes it unnecessary to keep pulling the T-shaped pull rod 404 when adjusting the angle of the storage frame 101, making it more convenient to rotate the storage frame 101.
[0048] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0049] The preferred embodiments of the utility model disclosed above are merely illustrative of the utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the utility model, thereby enabling those skilled in the art to better understand and utilize it. The utility model is limited only by the claims and their full scope and equivalents.
Claims
1. An ultra-thin stretch TV mount comprising a housing assembly (1), characterized in that, The back of the storage assembly (1) is provided with a telescopic assembly (2), the telescopic assembly (2) and the storage assembly (1) are provided with a connecting assembly (3), the outer side of the connecting assembly (3) is provided with a sleeving limiting assembly (4) corresponding to the rotating end, the back of the storage assembly (1) is provided with an elastic plug-in assembly (5) corresponding to the sleeving limiting assembly (4). The storage assembly (1) is used for supporting the TV set, the telescopic assembly (2) is used for driving the storage assembly (1) to move away from the wall, the elastic plug-in assembly (5) is used for locking the sleeving limiting assembly (4), so that the connecting assembly (3) drives the TV set to rotate up and down through the storage assembly (1), and the sleeving limiting assembly (4) is used for limiting the connecting assembly (3).
2. The ultra-thin wall mount of claim 1, wherein: The storage assembly (1) comprises a storage frame (101), and the outer side of the storage frame (101) is fixedly installed with a limiting frame (102).
3. The ultra-thin wall mount of claim 2, wherein: The telescopic assembly (2) comprises a mounting frame (201), the mounting frame (201) is arranged on the back of the storage frame (101), and the first rotating rod (202) is rotatably connected to the inside of the mounting frame (201).
4. The ultra-thin wall mount of claim 3, wherein: The connecting assembly (3) comprises a connecting frame (301), the back of the connecting frame (301) is fixedly connected with a connecting plate (302), one end of the second rotating rod (203) is rotatably connected with the connecting plate (302), and the inner walls of the connecting frame (301) are rotatably connected with rotating shafts (303) on both sides.
5. The ultra-thin wall mount of claim 4, wherein: The sleeving limiting assembly (4) comprises a mounting cylinder (401), the mounting cylinder (401) is fixedly installed on one side of the connecting frame (301), the inside of the mounting cylinder (401) is provided with a locking gear (402), the other end of the rotating shaft (303) extends into the inside of the mounting cylinder (401) and is fixedly connected with the locking gear (402), the inside of the mounting cylinder (401) is provided with a locking gear cylinder (403), the locking gear (402) and the locking gear cylinder (403) are meshed with each other, one end of the mounting cylinder (401) is movably connected with a T-shaped pulling rod (404), and one end of the T-shaped pulling rod (404) extends into the inside of the mounting cylinder (401) and is fixedly connected with the locking gear cylinder (403).
6. The ultra-thin wall mount of claim 5, wherein, The inner wall of the mounting cylinder (401) is provided with a limiting groove (405), the inside of the limiting groove (405) is movably connected with a limiting strip (406), the limiting strip (406) is fixedly connected with the outer surface of the locking gear cylinder (403), and one end of the locking gear cylinder (403) and the inner wall of the mounting cylinder (401) are fixedly connected with a locking spring (407).
7. The ultra-thin wall mount of claim 5, wherein: The elastic plug-in assembly (5) comprises a receiving cylinder (501), the receiving cylinder (501) is fixedly installed on the back of the receiving frame (101), the top of the receiving cylinder (501) is movably connected with a T-shaped plug-in rod (502), the bottom end of the T-shaped plug-in rod (502) penetrates the receiving cylinder (501), the outer surface of the T-shaped pull rod (404) is provided with a plug-in groove (503), the inside of the receiving cylinder (501) is movably connected with a connecting disc (504), the connecting disc (504) is fixedly connected with the T-shaped plug-in rod (502), the connecting disc (504) and the inner wall of the receiving cylinder (501) are fixedly connected with a push spring (505), and the bottom end of the T-shaped plug-in rod (502) is rotatably connected with a ball (506).