Office table screen supporting piece

By using threaded connectors and flange design to adjust the clamping slack, the problem of existing screen support components being unable to adapt to screens of different materials is solved, achieving stable support and quick installation, and improving applicability and safety.

CN224206397UActive Publication Date: 2026-05-08ZHEJIANG GUANCHEN TIANHE INTELLIGENT FURNITURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG GUANCHEN TIANHE INTELLIGENT FURNITURE CO LTD
Filing Date
2025-04-09
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing screen support components cannot be flexibly adjusted and adapted to the differences in physical properties of screens made of different materials, resulting in unstable or incompatible support, which limits the scope of application and installation efficiency, increases the difficulty of selection and installation, and poses safety hazards.

Method used

The first and second mating parts are connected by threaded connectors, and the clamping slack is adjusted by adjusting the screwing in and out of the threaded connectors to adapt to the support requirements of screens of different materials and thicknesses. The first and second flanges are used for support to limit the horizontal position and achieve rapid installation.

Benefits of technology

It achieves stable support for screens made of different materials, improves installation efficiency, reduces selection difficulty and safety hazards, and enhances the applicability and safety of the support components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an office table screen supporting piece, belongs to the field of office furniture parts, and provides an office table screen supporting piece aiming at the problem that an existing screen supporting piece is poor in adjusting capacity and cannot support screens made of different materials. Two first blocking edges are arranged on the first matching piece, and the two first blocking edges are vertically and oppositely arranged; the second matching piece is connected with the first matching piece through a threaded connecting piece; the threaded connecting piece is connected to the lower parts of the first matching piece and the second matching piece; a second blocking edge is arranged on the second matching piece, and when the first matching piece is connected with the second matching piece, the second blocking edge is located on the outer side of the first blocking edge; the containing space used for containing the screen is defined by the first matching piece and the second matching piece, the clamping looseness of the first matching piece and the second matching piece is adjusted by adjusting screwing-in and screwing-out of the threaded connecting piece, and therefore the supporting requirements of screens of different materials and thicknesses are met.
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Description

Technical Field

[0001] This utility model belongs to the field of office furniture parts, and specifically relates to a desk screen support component. Background Technology

[0002] In modern office environments, screens are often used as partitions to create a relatively independent and focused work atmosphere. This design not only effectively divides work areas but also protects the privacy of office workers to a certain extent and improves work efficiency. However, the design and structure of existing screen support components have obvious limitations and cannot meet diverse office needs.

[0003] As is well known, screens come in a wide variety of materials, including wood, glass, metal, and plastic. These different materials have significantly different physical properties such as density, weight, and hardness, resulting in varying requirements for their support components. For example, wooden screens may vary considerably in weight and hardness depending on the type of wood and its moisture content; glass screens, while aesthetically pleasing, are fragile and heavy, requiring support components with good stability and cushioning properties; metal screens are sturdy and durable, but their greater weight may place higher demands on the load-bearing capacity of their support components; and plastic screens are relatively lightweight, but the flexibility of the material may necessitate specific support methods during installation and use.

[0004] However, existing screen support structures lack sufficient flexibility and adaptability in terms of material selection, support methods, and adjustment mechanisms. Regarding material selection, most support components are made of a single material, making it impossible to optimize combinations based on the characteristics of different screen materials. In terms of support methods, fixed patterns are often used, making it difficult to adjust according to the actual situation of the screen. Furthermore, the adjustment mechanisms are relatively simple and cannot precisely adapt to the various needs of screens made of different materials during installation and use.

[0005] More importantly, the existing support structure fails to fully consider the differences in physical properties of screens made of different materials, nor has it been optimized to address these differences. This results in the inability to provide reliable, stable, and suitable support for screens made of different materials in practical applications. For heavier screens, the support components may deform or be damaged due to insufficient load-bearing capacity; for lighter or softer screens, the support components may not be able to provide sufficient fixing force, causing the screen to sway or become unstable.

[0006] This inability to effectively support screens made of different materials not only limits the application range of screen support components, making them suitable only for screens of certain specific materials and failing to meet the diverse needs of the market, but also brings many inconveniences to users when matching screens made of different materials. Office workers often need to consider the compatibility of the support components when choosing screens, which increases the difficulty and cost of selection. Moreover, during installation, due to incompatible support components, additional tools or accessories may be required to assist in installation, which not only reduces installation efficiency but may also affect the safety and stability of the screen during use due to improper installation, posing certain safety hazards. Utility Model Content

[0007] To address the problem that existing screen support components have poor adjustability and cannot support screens made of different materials, this utility model provides a desk screen support component that connects a first mating component and a second mating component via a threaded connector, and adjusts the slack of the two components.

[0008] The technical solution adopted by this utility model is as follows: A desk partition support component, comprising:

[0009] The first mating component is L-shaped; the first mating component is provided with two first flanges, which are arranged vertically opposite to each other;

[0010] The second mating component is connected to the first mating component via a threaded connector; the threaded connector is connected to the lower part of the first and second mating components; the second mating component is provided with a second flange, and when the first and second mating components are connected, the second flange is located outside the first flange.

[0011] The first and second mating parts form a receiving space for accommodating the screen. By adjusting the screwing in and out of the threaded connector, the clamping slack of the first and second mating parts can be adjusted.

[0012] The first and second mating parts form a receiving space. In actual use, the screen is inserted into the receiving space from top to bottom and is supported by the first and second flanges to ensure the stability of the screen. The first and second flanges can limit the horizontal position of the first and second mating parts, facilitating quick installation.

[0013] Furthermore, the first mating component is provided with a threaded connection hole located above the support platform, and the second mating component is provided with a through hole. The threaded connector passes through the through hole and is mated with the threaded connection hole to realize the connection between the first mating component and the second mating component.

[0014] Furthermore, the bottom of the first mating component is provided with a horizontally extending support platform, and the support platform is provided with a connecting hole so that the first mating component can be fixed downward on the desk by a connector that can engage with the connecting hole. When the first mating component and the second mating component are connected, the support platform is located at the bottom of the second mating component. The inner wall of the first mating component is recessed to form a receiving cavity for accommodating the support platform, and the inner wall of the first mating component is inclined to form a guide surface for guiding movement.

[0015] Furthermore, the support platform is perpendicular to and integrally connected with the first flange. Preferably, two second flanges are provided and arranged vertically opposite each other. By providing the first and second flanges, the horizontal movement distance of the first and second mating parts is limited.

[0016] Furthermore, a groove is formed between the first retaining flange and the contour edge of the first mating part, and the groove can accommodate the second retaining flange. The groove further prevents the second mating part from shaking, and also facilitates quick matching of the threaded connection hole and the through hole position, assisting in the rapid assembly of the first and second mating parts.

[0017] Furthermore, the outer side of the first mating part is provided with a first receiving groove, and the first end cap is fitted into the first receiving groove. The outline edge of the first end cap fits against the inner wall of the first receiving groove to prevent the first end cap from being exposed and forming a sharp corner that could cause scratches.

[0018] Furthermore, the first end cap is provided with a first insert strip, and the first receiving groove is provided with a first insertion hole. Through the cooperation of the first insert strip and the first insertion hole, the first end cap and the first mating part are tightly fitted together. The connection between the first end cap and the first mating part relies on the reliable connection formed by the first insert strip and the first insertion hole, effectively preventing the first end cap from falling off. During disassembly, applying force to the gap between the first end cap and the first receiving groove can separate the first end cap from the first mating part.

[0019] Furthermore, the second mating part is provided with a second receiving groove on its outer side, and the second end cap is fitted into the second receiving groove. The outline edge of the second end cap fits into the inner wall of the second receiving groove to prevent the second end cap from being exposed and forming a sharp corner that could cause scratches.

[0020] Furthermore, the second end cap is provided with a second insert, and the second receiving groove is provided with a second insertion hole. Through the cooperation of the second insert and the second insertion hole, the second end cap and the second mating part are tightly fitted together. The connection between the second end cap and the second mating part relies on the second insert and the second insertion hole to form a reliable connection, effectively preventing the second end cap from falling off. During disassembly, applying force to the gap between the second end cap and the second receiving groove can separate the second end cap from the second mating part, making disassembly convenient.

[0021] Furthermore, the first and second mating parts are respectively provided with a first auxiliary hole and a second auxiliary hole that are adapted to each other in position. The first auxiliary hole is located above the threaded connection hole, and the second auxiliary hole is located above the through hole. The purpose of providing the first and second auxiliary holes is to facilitate the connection of screens with softer materials.

[0022] The beneficial effects of this utility model are as follows: This application is for a desk screen support component. The screen is inserted into the receiving space from top to bottom. By adjusting the screwing in and out of the threaded connector, the clamping slack of the first and second mating components can be adjusted to adapt to the support requirements of screens of different materials and thicknesses. The screen is supported by the first and second flanges to ensure its stability. The first and second flanges can limit the horizontal position of the first and second mating components, which facilitates quick installation. Attached Figure Description

[0023] Figure 1 A schematic diagram of the overall structure of the office desk partition support components;

[0024] Figure 2 This is a schematic diagram of the assembly structure of the office desk partition support components;

[0025] Figure 3 This is a structural schematic diagram of the first mating component;

[0026] Figure 4 This is a structural schematic diagram of the second mating component;

[0027] Figure 5 This is a schematic diagram of the assembly structure of the second mating component;

[0028] Wherein: 1-First mating part; 11-Threaded connection hole; 12-First flange; 13-Support platform; 14-Connecting hole; 15-First auxiliary hole; 16-Groove; 17-First receiving groove; 18-First insertion hole; 2-Second mating part; 21-Through hole; 22-Second flange; 23-Receiving chamber; 24-Guide surface; 25-Second receiving groove; 26-Second insertion hole; 27-Second auxiliary hole; 3-First end cap; 31-First insertion strip; 4-Second end cap; 41-Second insertion strip. Detailed Implementation

[0029] The technical solutions of the embodiments of this utility model will be explained and described below with reference to the accompanying drawings. However, the following embodiments are only preferred embodiments of this utility model and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments in the implementation methods without creative effort are all within the protection scope of this utility model.

[0030] A type of office desk partition support component, such as Figures 1 to 5 As shown, it includes:

[0031] The first mating part 1 is L-shaped so that it can be stably mounted on the surface of the desk; the first mating part 1 is provided with two first flanges 12, which are arranged vertically opposite to each other;

[0032] The second mating part 2 is connected to the first mating part 1 via a threaded connector; the threaded connector is connected to the lower part of the first mating part 1 and the second mating part 2; the second mating part 2 is provided with a second flange 22, and when the first mating part 1 and the second mating part 2 are connected, the second flange 22 is located outside the first flange 12; in this embodiment, two second flanges 22 are provided and are arranged vertically opposite each other, and by setting the first flange 12 and the second flange 22, the horizontal movement distance of the first mating part 1 and the second mating part 2 is limited;

[0033] The first mating part 1 and the second mating part 2 form a receiving space for accommodating the screen. By adjusting the screwing in and out of the threaded connector, the clamping slack of the first mating part 1 and the second mating part 2 can be adjusted, thereby accommodating the support of various screen materials. The use of the threaded connector not only enables the connection of the first mating part 1 and the second mating part 2, but also allows for the adjustment of the connection slack.

[0034] The screen is inserted into the receiving space from top to bottom. By adjusting the screw-in and screw-out of the threaded connector, the clamping slack of the first mating part 1 and the second mating part 2 is adjusted to accommodate the support and clamping requirements of screens of different materials and thicknesses. The first mating part 1 and the second mating part 2 form the receiving space. In actual use, the screen is inserted into the receiving space from top to bottom and is supported by the first flange 12 and the second flange 22 to ensure the stability of the screen. The first flange 12 and the second flange 22 can limit the horizontal position of the first mating part 1 and the second mating part 2, facilitating quick installation.

[0035] The first mating part 1 is provided with a threaded connection hole 11, and the second mating part 2 is provided with a through hole 21. The threaded connection is passed through the through hole 21 and mated with the threaded connection hole 11 to realize the connection between the first mating part 1 and the second mating part 2.

[0036] The bottom of the first mating component 1 is provided with a horizontally extending support platform 13. The support platform 13 is provided with a connecting hole 14 so that the first mating component 1 can be fixed downward on the desk by a connector that can fit into the connecting hole 14. When the first mating component 1 and the second mating component 2 are connected, the support platform 13 is located at the bottom of the second mating component 2. The inner wall of the first mating component 1 is recessed to form a receiving chamber 23 for accommodating the support platform 13. The inner wall of the first mating component 1 is inclined to form a guide surface 24 for guiding movement.

[0037] The support platform 13 is perpendicular to and connected to the first retaining flange 12 as a whole.

[0038] A groove 16 is formed between the first retaining flange 12 and the contour edge of the first mating part 1, and the groove 16 can accommodate the second retaining flange 22. The groove 16 further prevents the second mating part 2 from shaking, and also facilitates the quick matching of the threaded connection hole 11 and the through hole 21, assisting the first mating part 1 and the second mating part 2 to achieve rapid assembly.

[0039] The first mating part 1 has a first receiving groove 17 on its outer side, and the first end cap 3 is fitted in the first receiving groove 17. The outline of the first end cap 3 is fitted with the inner wall of the first receiving groove 17 to prevent the first end cap 3 from being exposed and forming a sharp corner that could cause scratches.

[0040] The first end cap 3 is provided with a first insert 31, and the first receiving groove 17 is provided with a first insertion hole 18. The first insert 31 and the first insertion hole 18 cooperate to make the first end cap 3 and the first mating part 1 tightly fitted. The connection between the first end cap 3 and the first mating part 1 relies on the first insert 31 and the first insertion hole 18 to form a reliable connection, which effectively prevents the first end cap 3 from falling off. When disassembling, applying force to the gap between the first end cap 3 and the first receiving groove 17 can separate the first end cap 3 from the first mating part 1.

[0041] The second fitting 2 has a second receiving groove 25 on its outer side, and the second end cap 4 fits into the second receiving groove 25. The outline of the second end cap 4 fits into the inner wall of the second receiving groove 25 to prevent the second end cap 4 from being exposed and forming a sharp corner that could cause scratches.

[0042] The second end cap 4 is provided with a second insert 41, and the second receiving groove 25 is provided with a second insertion hole 26. Through the cooperation of the second insert 41 and the second insertion hole 26, the second end cap 4 and the second mating part 2 are tightly fitted together. The connection between the second end cap 4 and the second mating part 2 relies on the second insert 41 and the second insertion hole 26 to form a reliable connection, effectively preventing the second end cap 4 from falling off. When disassembling, applying force to the gap between the second end cap 4 and the second receiving groove 25 can separate the second end cap 4 from the second mating part 2, making disassembly convenient.

[0043] The first mating component 1 and the second mating component 2 are respectively provided with a first auxiliary hole 15 and a second auxiliary hole 27 in suitable positions. The first auxiliary hole 15 is located above the threaded connection hole 11, and the second auxiliary hole 27 is located above the through hole 21. The purpose of providing the first auxiliary hole 15 and the second auxiliary hole 27 is to facilitate the connection of screens with relatively soft materials. In use, connectors (such as bolts, screws, etc.) are respectively installed in the first auxiliary hole 15 and the second auxiliary hole 27 to clamp the screen from both sides and provide reinforcement.

[0044] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Those skilled in the art should understand that this utility model includes, but is not limited to, the content described in the accompanying drawings and the specific embodiments above. Any modifications that do not depart from the functional and structural principles of this utility model will be included within the scope of the claims.

Claims

1. A desk partition support component, characterized in that, include: The first mating component is L-shaped; the first mating component is provided with two first flanges, which are arranged vertically opposite to each other; The second mating component is connected to the first mating component via a threaded connector; the threaded connector is connected to the lower part of the first and second mating components; the second mating component is provided with a second flange, and when the first and second mating components are connected, the second flange is located outside the first flange. The first and second mating parts form a receiving space for accommodating the screen. By adjusting the screwing in and out of the threaded connector, the clamping slack of the first and second mating parts can be adjusted.

2. The office desk partition support component according to claim 1, characterized in that, The first mating component has a threaded connection hole, and the second mating component has a through hole. The threaded connector passes through the through hole and is mated with the threaded connection hole to realize the connection between the first mating component and the second mating component.

3. The office desk partition support component according to claim 1 or 2, characterized in that, The bottom of the first mating component is provided with a horizontally extending support platform, and the support platform is provided with a connecting hole so that the first mating component can be fixed downward by a connector that can fit into the connecting hole. When the first mating component and the second mating component are connected, the support platform is located at the bottom of the second mating component.

4. The office desk partition support component according to claim 3, characterized in that, The support platform is perpendicular to and connected to the first retaining edge as a whole.

5. The office desk partition support component according to claim 3, characterized in that, A groove is formed between the first flange and the outline edge of the first mating member, and the groove is capable of accommodating the second flange.

6. The office desk partition support component according to claim 1, characterized in that, The first mating part has a first receiving groove on its outer side, and the first end cap is fitted into the first receiving groove, with the outline edge of the first end cap fitting against the inner wall of the first receiving groove.

7. The office desk partition support component according to claim 6, characterized in that, The first end cap is provided with a first insert strip, and the first receiving groove is provided with a first insertion hole. The first insert strip and the first insertion hole cooperate to make the first end cap and the first mating part fit tightly together.

8. The office desk partition support according to claim 1 or 6, characterized in that, The second fitting has a second receiving groove on its outer side, and the second end cap fits into the second receiving groove, with the outline of the second end cap fitting against the inner wall of the second receiving groove.

9. The office desk partition support component according to claim 8, characterized in that, The second end cap is provided with a second insert, and the second receiving groove is provided with a second insertion hole. The second end cap and the second mating part are tightly fitted together by the cooperation of the second insert and the second insertion hole.

10. The office desk partition support component according to claim 2, characterized in that, The first mating part and the second mating part are respectively provided with a first auxiliary hole and a second auxiliary hole that are adapted to each other. The first auxiliary hole is located above the threaded connection hole, and the second auxiliary hole is located above the through hole.