A combination screen-style height-adjustable office desk

By optimizing the support component structure and setting up a protective shell component, the problems of uneven support of the desktop board and easy damage to the embedded slot were solved, thereby improving stability and aesthetics and meeting the needs of multi-workstation combinations.

CN224268703UActive Publication Date: 2026-05-26JIANGSU AOMEILI INDUSTRIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU AOMEILI INDUSTRIAL CO LTD
Filing Date
2025-07-14
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The uneven support of the desktop of existing intelligent height-adjustable desks causes jamming during the lifting process, and the embedded slots are easily damaged during disassembly and installation, affecting the aesthetics.

Method used

The support component structure is optimized by adopting a triangular force-bearing structure and a protective shell component. The support connecting rod is fixed on the inner side of the support cantilever to increase the lateral force-bearing surface of the desktop board, and a protective shell component is set outside the embedded groove to protect the panel module.

Benefits of technology

It enhances the stability of the desktop panel, avoids lifting and jamming and panel wear, maintains aesthetics and service life, and meets the needs of flexible multi-workstation combinations.

✦ Generated by Eureka AI based on patent content.

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Abstract

This case relates to a combined screen-type height-adjustable desk, including a height-adjustable screen assembly, a desk assembly, and a partition panel. The screen panel is composed of multiple panel modules, with embedded slots formed between them in the vertical direction to allow the supporting cantilever to connect to an internal lifting mechanism via these slots. A protective shell assembly is provided within the embedded slots. Based on existing structures, this case optimizes the supporting cantilever of the desktop panel into a supporting assembly. The supporting cantilever, supporting rod, and supporting beam form a triangular load-bearing structure, further enhancing the load-bearing capacity of the supporting assembly and expanding the load-bearing points from both sides to multiple nodes, effectively distributing the load pressure. The protective shell assembly wraps around the edges of the panel modules, preventing scratches and damage during disassembly, installation, and lifting, extending their service life and maintaining their aesthetic appearance. The circuit module is built into the screen panel, reducing external wiring and improving desktop tidiness.
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Description

Technical Field

[0001] This utility model relates to the field of office equipment, specifically a combination screen-type height-adjustable desk. Background Technology

[0002] Intelligent height-adjustable desks, as a new type of smart office equipment, are increasingly popular among young people. These desks allow for standing work, avoiding lumbar discomfort caused by prolonged sitting. Currently, to maximize office space utilization, protect privacy among employees, and maintain a neat office environment, partition desks have become the preferred choice for multi-person workspaces. Integrating height-adjustable components with partitions to design an intelligent height-adjustable desk with partitions can be assembled into multiple workstations, offering good privacy while still meeting users' standing work needs. For example, the applicant's existing patents CN222149349U and CN217337743U are height-adjustable desks based on partition designs, but there are still many areas that require continuous improvement and optimization. For instance, the desktop support is problematic; the desktop is only fixed by support arms on both sides, and uneven force distribution can cause the height adjustment process to stall when the desktop is overloaded. Furthermore, the recessed grooves of the decorative panel are easily damaged during disassembly and installation, affecting usability and aesthetics. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model designs a protective component for the embedded groove on the screen partition and optimizes the connection structure of the desktop panel, resulting in a more stable combined screen-type height-adjustable desk.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A combination screen-style height-adjustable desk, including

[0006] The lifting screen assembly includes a hollow screen panel, a circuit module built into the screen panel, and at least two lifting mechanisms.

[0007] A tabletop assembly, including a tabletop and a support assembly; and a partition panel disposed on both sides of the screen panel to form a semi-enclosed space;

[0008] The screen panel is composed of multiple panel modules. In the vertical direction, the panel modules form an embedding groove so that the supporting cantilever can be connected to the internal lifting mechanism through the embedding groove. The embedding groove is provided with a protective shell assembly. The protective shell assembly includes bent parts symmetrically arranged on both sides of the embedding groove, decorative edge strips and decorative pieces snapped onto the bent parts. The bent parts partially cover the lifting mechanism and partially protrude from the embedding groove, with the protruding part forming an embedding opening with a semi-arc groove structure. The decorative edge strip has a corresponding sliding strip.

[0009] Furthermore, the circuit module includes a controller, a socket module, and an electronic switch.

[0010] Furthermore, the support assembly includes a support cantilever that is motorly connected to the lifting mechanism, at least two sets of support links that are snapped between the support cantilever, and a support crossbeam that is fixedly connected to the support links; the desktop is fixed to the support crossbeam.

[0011] Furthermore, the two ends of the support link have snap-fit ​​pieces; the four vertices of the snap-fit ​​pieces extend outward to form right-angle inserts; the support cantilever has corresponding insertion holes for the right-angle inserts to be inserted; and the support cantilever is also covered with a cantilever panel.

[0012] Furthermore, the ends of the decorative strip taper inward to form a skirt; the bottom of the decorative piece has an insert strip for insertion into the insert opening.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: Based on the existing structure, this application optimizes the support cantilever of the desktop panel into a support component. By fixing two sets of support connecting rods to the inner side of the two sets of support cantilever, the horizontal force-bearing surface of the desktop panel is increased. Then, a support beam is set and snapped onto the support connecting rod, with its length approaching the width of the desktop panel, forming a triangular force-bearing structure. This further enhances the load-bearing capacity of the support component, expands the load-bearing points from both sides to multiple nodes, effectively disperses the load pressure, and eliminates the problems of lifting and lowering jamming and desktop panel shaking. In addition, this application also sets a protective shell component outside the embedded groove to wrap the edge of the panel module, avoiding scratches and damage to the panel module during disassembly, installation, and lifting, extending its service life and maintaining its aesthetic appearance. The circuit module is built into the screen panel, and the socket module is arranged in multiple positions to meet power needs, reduce external wiring, and improve the cleanliness of the desktop. The partition board and screen component can be flexibly combined to realize the rapid switching between single-station, dual-station, and multi-station operations, improving space utilization. Attached Figure Description

[0014] Figure 1 This is a structural diagram of a combination screen-type height-adjustable office desk.

[0015] Figure 2 This is a partially exploded view of a combination screen-style height-adjustable desk.

[0016] Figure 3 This is a schematic diagram of the internal structure of a combination screen-style height-adjustable desk.

[0017] Figure 4 This is an exploded view of the support components of a modular height-adjustable desk.

[0018] Figure 5 This is an exploded view of the protective shell assembly for a combined screen-type height-adjustable office desk.

[0019] In the diagram: 100, Lifting screen assembly; 110, Screen panel; 111, Panel module; 112, Embedding slot; 120, Lifting mechanism; 130, Protective shell assembly; 131, Bending piece; 1311, Embedding opening; 132, Decorative edge strip; 1321, Sliding strip; 1322, Skirt; 133, Decorative piece; 1331, Embedding strip; 141, Controller; 142, Socket module; 143, Electrical switch; 200, Tabletop assembly; 210, Tabletop; 220, Support assembly; 221, Support cantilever; 2211, Insertion hole; 222, Support connecting rod; 223, Support beam; 224, Clip-on piece; 2241, Right-angle insert; 225, Cantilever panel; 300, Partition panel. Detailed Implementation

[0020] The technical solution of this utility model will be clearly and completely described below with reference to the embodiments. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0021] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0022] Example 1: As Figure 1-4 As shown, a combination screen-type height-adjustable desk includes...

[0023] The lifting screen assembly 100 includes a hollow screen panel 110, a circuit module built into the screen panel 110, and at least two lifting mechanisms 120. The lifting mechanism 120 described in this application adopts existing technology, such as the applicant's patent CN217337743U, and its detailed structure will not be described in detail in this application.

[0024] The tabletop assembly 200 includes a tabletop 210 and a support assembly 220; and a partition panel 300, which is disposed on both sides of the screen panel 110 to form a semi-enclosed space. Figure 1 As shown, the partition panels 300 form a set at the front and back of the screen panel 110, thereby constituting a double-workstation desk, reducing the floor space occupied and improving efficiency. Furthermore, the screen panels 110 can be assembled and spliced ​​using a circumferential connecting mechanism to form a four- or more-workstation desk. The circumferential connecting mechanism employs existing technology, such as the applicant's patent CN112524128B.

[0025] like Figure 2 As shown, the screen panel 110 is composed of multiple panel modules 111. These modules can be customized according to customer needs, cut into multiple sections for easy transportation and on-site assembly. Different colors, patterns, and panel materials can also be customized for specific parts of the module according to customer requirements, making assembly more flexible and adaptable to meet the aesthetic and practical needs of different customers. Vertically, the panel modules 111 form an embedding groove 112 to allow the support cantilever 221 to connect to the internal lifting mechanism 120 via this groove. In actual assembly and use, it has been found that the panel modules 111 experience wear and tear during the assembly and vertical movement of the support cantilever 221.

[0026] To address this issue, a protective shell assembly 130 is provided in the embedded slot 112 in this application; such as Figure 4 As shown, the protective shell assembly 130 includes bent members 131 symmetrically arranged on both sides of the embedding groove 112, a decorative edge strip 132 and a decorative piece 133 snapped onto the bent members 131; the bent members 131 partially cover the lifting mechanism 120 and partially protrude from the embedding groove 112, with the protruding portion forming an embedding opening 1311 with a semi-arc groove structure; the decorative edge strip 132 has a corresponding slide strip 1321. The end of the decorative edge strip 132 is tapered inward to form a skirt 1322; the bottom of the decorative piece 133 has an embedding strip 1331 inserted into the embedding opening 1311. The bent piece 131 is fixed on the lifting mechanism 120. The panel module 111 is located between the bent piece 131 and the decorative edge strip 132. The decorative edge strip 132 and the bent piece 131 are engaged by the slide strip 1321 and the insertion slot 1311 to fix the panel module 111 therein, which improves the stability of the panel module 111. At the same time, the part of the bent piece 131 that protrudes from the insertion slot 112 effectively covers the edge of the panel module 111, which plays a protective role.

[0027] In this embodiment, the circuit module includes a controller 141, a socket module 142, and an electric control switch 143. The operation panel of the electric control switch 143 is located on the top right side of the screen panel 110, conforming to ergonomic design. Multiple sets of socket modules 142 can be configured according to customer needs; socket modules 142 can be installed on both the upper and lower parts of the screen panel 110 to meet the power requirements of different electronic devices or small appliances. The electric control switch 143 has commands such as rising, falling, and speed adjustment, which can be selected according to user needs to control the desktop panel 210, achieving intelligent control.

[0028] In the applicant's previous product design, the desktop was directly fixed to the support cantilever, with the stress points on both sides of the desktop. When there were many items on the desktop, the different weight distribution on both sides could easily cause the lifting process to stall and the desktop to wobble. To solve this problem, the applicant optimized the support cantilever by using a reinforced structure to connect the support cantilever on both sides to form a support assembly. Figure 3 As shown, the support assembly 220 includes a support cantilever 221 motorly connected to the lifting mechanism 120, at least two sets of support connecting rods 222 snapped between the support cantilever 221, and a support beam 223 fixedly connected to the support connecting rods 222. Each support connecting rod 222 has snap-fit ​​pieces 224 at both ends; the four vertices of the snap-fit ​​pieces 224 extend outwards to form right-angle inserts 2241; the support cantilever 221 has corresponding insertion holes 2211 for the right-angle inserts 2241 to be inserted; the snap-fit ​​method for fixing the support connecting rods 222 and support cantilever 221 provides higher stability than direct welding. The two sets of support connecting rods 222 are fixedly connected to both ends of the support cantilever 221, distributing the stress points and improving stability. The support cantilever 221 is also covered with a cantilever panel 225, providing double protection. The bottom surface of the support beam 223 is engaged with the support rod 222, and its length is close to the width of the desktop 210. The desktop 210 is fixed on the support beam 223, which further enhances its load-bearing capacity and can effectively reduce the swaying of the desktop 210 during the lifting process.

[0029] The modular height-adjustable desk described in this case offers high stability, excellent privacy, and a sleek, modern design, enhancing office comfort. It also integrates a power outlet module, eliminating the need for extension cords and maintaining a tidy workspace.

[0030] Although the embodiments of this utility model have been disclosed above, they are not limited to the applications listed in the specification and embodiments. They can be applied to various fields suitable for this utility model. For those skilled in the art, other modifications can be easily made. Therefore, without departing from the general concept defined by the claims and their equivalents, this utility model is not limited to the specific details.

Claims

1. A combination screen-type height-adjustable desk, characterized in that, include The lifting screen assembly (100) includes a hollow screen panel (110), a circuit module built into the screen panel (110), and at least two lifting mechanisms (120). A tabletop assembly (200) includes a tabletop (210) and a support assembly (220); the support assembly (220) includes a support cantilever (221); and A partition panel (300) is provided on both sides of the screen panel (110) to form a semi-enclosed space; The screen panel (110) is composed of multiple panel modules (111). In the vertical direction, the panel modules (111) form an embedding groove (112) so that the supporting cantilever (221) can be connected to the internal lifting mechanism (120) through the embedding groove (112). The embedding groove (112) is provided with a protective shell assembly (130). The protective shell assembly (130) includes a bent piece (131) symmetrically arranged on both sides of the embedding groove (112), a decorative edge strip (132) and a decorative piece (133) snapped onto the bent piece (131). The bent piece (131) partially covers the lifting mechanism (120) and partially protrudes from the embedding groove (112). The protruding part forms an embedding opening (1311) with a semi-arc groove structure. The decorative edge strip (132) has a corresponding slide strip (1321).

2. The combined screen-type height-adjustable desk as described in claim 1, characterized in that, The circuit module includes a controller (141), a socket module (142), and an electric switch (143).

3. The combined screen-type height-adjustable desk as described in claim 1, characterized in that, The support assembly (220) includes a support cantilever (221) that is motorly connected to the lifting mechanism (120), at least two sets of support links (222) that are snapped between the support cantilever (221), and a support beam (223) that is fixedly connected to the support links (222); the desktop (210) is fixed to the support beam (223).

4. The combined screen-type height-adjustable desk as described in claim 3, characterized in that, The two ends of the support link (222) have snap-fit ​​pieces (224); the four vertices of the snap-fit ​​pieces (224) extend outward to form right-angle inserts (2241); the support cantilever (221) is provided with insertion holes (2211) for the right-angle inserts (2241) to be inserted at corresponding positions; the support cantilever (221) is also covered with a cantilever panel (225).

5. The combined screen-type height-adjustable desk as described in claim 1, characterized in that, The decorative strip (132) is tapered inward at the end to form a skirt (1322); the decorative piece (133) has an insert strip (1331) at the bottom for inserting into the insert (1311).