A screen detachable office desk
Patent Information
- Application Number
- CN202610898793.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-22
- Publication Date
- 2026-08-21
AI Technical Summary
[0003]本发明的目的是提供一种屏风可拆卸的办公桌,以解决现有办公桌屏风安装拆卸繁琐、无法调节位置及刚性连接易致伤的问题
通过设置可被磁吸力吸附的屏风底座条与可产生磁吸力的锁定部件,并在两者之间形成悬浮间距,该结构实现了多重有益效果:当屏风板受到左或右方向且小于设定阈值的作用力时,会因悬浮间距的存在发生逐渐衰弱的左右摇摆,最终恢复竖立状态,避免了刚性碰撞导致的用户受伤风险,显著提升了办公环境的安全性;当受到不小于设定阈值的作用力时,屏风板可克服磁吸力向受力方向倾倒,此时锁定部件与底座条分离,用户无需借助工具即可轻松拆卸屏风板,操作简便快捷;安装时仅需将屏风板竖立放置在底座条上,磁吸力便会自动吸附固定,实现“即放即稳”的快速安装,省去了传统螺钉连接的繁琐步骤(如对齐孔位、旋拧螺丝等),大幅提升了使用便捷性与空间布局的灵活性。
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Figure CN122604178A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a desk with a detachable screen, belonging to the technical field of office furniture. Background Technology
[0002] In existing office desks, partition panels are typically detachably connected to the base strip using screws and other fasteners. This rigid connection method has several drawbacks: First, both disassembly and installation require tools and involve tedious steps such as aligning holes and tightening screws, making the process time-consuming and laborious, especially when frequent adjustments to the office layout or cleaning of the partitions are needed, resulting in extremely low efficiency. Second, once the partition panel is fixed with fasteners, its position is locked and cannot be moved or adjusted along the base strip, making it difficult to meet users' requirements for dynamically adjusting the partition position according to immediate needs (such as temporary collaboration or expanding personal space). Third, because the partition panel and base strip are rigidly connected, there is a lack of cushioning mechanism, making users highly susceptible to accidental collisions with the hard edges of the partition during daily activities (such as turning around or retrieving items), causing abrasions, bumps, and other injuries, posing a significant safety hazard. These problems collectively restrict the user experience and safety of office desks, necessitating a safer, more convenient, and flexible partition connection solution. Summary of the Invention
[0003] The purpose of this invention is to provide a desk with a detachable screen to solve the problems of cumbersome installation and disassembly of existing desk screens, inability to adjust their position, and the risk of injury due to rigid connections.
[0004] The present invention is achieved through the following technical solution.
[0005] A desk with a detachable partition, comprising a desk body and a partition panel; The tabletop has a screen base strip extending in the front-to-back direction, and the screen base strip is constructed as a component that can be magnetically attracted. The screen panel stands upright with its bottom edge set on the screen base strip. At least one locking component is provided on the bottom edge of the screen panel. The locking component is constructed to generate magnetic attraction and to attract each other to the screen base strip. A floating gap is formed between the locking component and the screen base strip, which is suitable for the screen panel to gradually sway left and right until it returns to upright when subjected to a force in the left or right direction that is less than a set threshold, and to tilt to the left or right when subjected to a force in the left or right direction that is not less than a set threshold.
[0006] As a further improvement of the present invention, a guide rail is provided on the base strip of the screen, which extends along its length and is recessed; the screen panel has a manually adjustable component that can be raised and lowered, and the adjustable component is equipped with a guide slider that can be raised and lowered and can be inserted into or removed from the guide rail, which is suitable for manually sliding the position of the screen panel along the guide rail when the guide slider is in the state of being inserted into the guide rail.
[0007] As a further improvement of the present invention, the adjustment assembly has a vertically arranged guide rod that vertically passes through the locking component and is connected to the guide slider.
[0008] As a further improvement of the present invention, the guide slider is configured as a component that can be magnetically attracted, so that the guide slider can be magnetically attracted by the locking component and detached from the guide rail.
[0009] As a further improvement of the present invention, the bottom of the locking component has a groove that matches the shape of the guide slider, which is suitable for the guide slider to be magnetically attracted by the locking component and embedded in the groove.
[0010] As a further improvement of the present invention, the interior of the screen panel has a hollow interlayer and an opening is formed at its top edge. The adjustment assembly also has an adjustment plate that is vertically slidably disposed in the hollow interlayer. The top end of the guide rod is connected to the bottom of the adjustment plate and vertically penetrates the part of the screen panel corresponding to the lower part of the hollow interlayer. Part of the adjustment plate is exposed through the opening, which is suitable for manual control of pressing down the adjustment plate.
[0011] As a further improvement of the present invention, a guide sleeve is provided on the part of the screen panel through which the guide rod passes vertically, and the guide sleeve is slidably sleeved on the guide rod.
[0012] As a further improvement of the present invention, the two ends of the opening near the top edge of the screen panel make the portion of the adjustment plate exposed through the opening form an extension portion of the screen panel.
[0013] As a further improvement of the present invention, the portion of the bottom edge of the screen panel corresponding to the locking component has a recessed receiving groove, the locking component is fixed to the top wall of the receiving groove, and there is a gap between the bottom of the locking component and the bottom edge of the screen panel, so that the locking component is suspended above the screen base strip.
[0014] As a further improvement of the present invention, the bottom edge of the screen panel without the receiving groove is provided with a partition groove extending along the length direction of the screen panel, so that the two sides of the partition groove respectively form support feet supporting the screen base strip.
[0015] The beneficial effects of this invention are: By incorporating a magnetically attracted base strip and a magnetically attracted locking component, with a floating gap between them, this structure achieves multiple beneficial effects: When the screen panel is subjected to a force less than a set threshold in the left or right direction, it will gradually sway left and right due to the floating gap, eventually returning to an upright position, avoiding the risk of user injury from rigid collisions and significantly improving the safety of the office environment; When subjected to a force not less than the set threshold, the screen panel can overcome the magnetic attraction and tilt in the direction of the force, at which point the locking component separates from the base strip, allowing users to easily disassemble the screen panel without tools, making the operation simple and quick; During installation, simply place the screen panel upright on the base strip, and the magnetic attraction will automatically attract and fix it, achieving quick installation with "instant stability," eliminating the tedious steps of traditional screw connections (such as aligning holes and tightening screws), greatly improving ease of use and flexibility of spatial layout. Attached Figure Description
[0016] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings to aid in understanding the objectives and advantages of the present invention, wherein: Figure 1 This is a structural diagram of an office desk; Figure 2 for Figure 1 A magnified view of a portion of the image; Figure 3 This is a structural schematic diagram of the screen panel; Figure 4 for Figure 3 A magnified view of a portion of the image; Figure 5 This is an exploded diagram of the screen panel; Figure 6 for Figure 5 A magnified view of a portion of the image. Detailed Implementation
[0017] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0018] The directional terms such as up, down, left, right, front, back, front, back, top, and bottom mentioned or possibly used in this specification are defined relative to the construction shown in the accompanying drawings. The terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively. These are relative concepts and may therefore vary depending on their location and usage. Therefore, these or other directional terms should not be interpreted as restrictive.
[0019] This embodiment illustrates a desk with a detachable partition, solving the problems of cumbersome installation, inconvenient adjustment, and potential injury associated with the rigid connection of traditional desk partitions. (Refer to...) Figures 1-6Specifically, the desk includes a desk body 2 and a partition panel 1. A partition base strip 21 extending in the front-to-back direction is fixedly installed on the desktop of the desk body 2. The partition base strip 21 is made of a material that can be magnetically attracted, or its surface is covered with such a material layer to ensure stable magnetic response characteristics. The partition panel 1 is installed vertically, with its bottom edge directly resting on the partition base strip 21. At least one locking component 11 is disposed on the bottom edge of the partition panel 1. The locking component 11 is constructed to generate magnetic attraction, such as a permanent magnet or electromagnet module, and its magnetic pole distribution and magnetic field strength are set to generate a stable mutual attraction force with the partition base strip 21. Notably, a floating gap is formed between the locking component 11 and the partition base strip 21. This structure allows the screen panel 1 to sway slightly left and right when subjected to a force from the left or right during daily use. If the force is less than a preset threshold (this threshold is set by the combination of magnetic attraction and suspension distance, such as the force corresponding to minor daily bumps or leaning), the screen panel 1 will sway slightly left and right. Due to the restoring effect of the magnetic attraction and the damping design, this swaying will gradually weaken and eventually restore the screen panel 1 to an upright state, thus avoiding damage caused by rigid collisions. Conversely, if the force is not less than the preset threshold (such as the force applied when the user intentionally disassembles or adjusts the screen panel), the screen panel 1 will overcome the magnetic attraction and tilt in the direction of the force. At this time, the locking component 11 will separate from the screen base strip 21, and the screen panel 1 can be easily removed from the table 2. By setting up a magnetically attached locking component 11 and a screen base strip 21 and precisely controlling the suspension distance between them, not only is the screen panel 1 able to withstand slight touches and sway, effectively avoiding the risk of user injury from accidental collisions with the hard, fixed edge of the screen, but the safety of the office environment is greatly improved. At the same time, when the screen panel 1 needs to be disassembled for cleaning, moving, or rearranging, the user does not need any tools. They only need to apply a sufficiently large push to one side to tilt it down to complete the disassembly, which is extremely simple and quick. During installation, the tedious steps of aligning holes and tightening screws are eliminated. The screen panel 1 is simply placed roughly upright on the screen base strip 21, and the magnetic attraction generated by the locking component 11 will automatically attract and fix it, achieving quick installation with "instant stability upon placement", which significantly improves the convenience of use and the flexibility of spatial layout.
[0020] In this embodiment, to further enhance the positional adjustability of the screen panel 1, a guide rail 211 extending along its entire length is provided on the upper surface of the screen base strip 21. This guide rail 211 is preferably configured as a groove 111 with a smooth inner wall or lined with a low-friction coefficient material to ensure smooth sliding. Correspondingly, the screen panel 1 integrates a manually adjustable component that controls the raising and lowering of a matching guide slider 121. The shape of the guide slider 121 matches the cross-sectional shape of the guide rail 211. During operation, the user can manually press the adjustment component to move the guide slider 121 downwards and embed it into the guide rail 211, thereby establishing a sliding connection between the screen panel 1 and the screen base strip 21. This configuration allows the user to easily push and pull the screen panel 1 manually along the extension direction of the guide rail 211 while the guide slider 121 is embedded in the guide rail 211, achieving stepless or stepped adjustment of its position on the desktop. The cooperation between the guide rail 211 and the guide slider 121 provides precise linear guidance, ensuring that the partition panel 1 will not tilt or twist during adjustment, and always maintains parallelism or a predetermined angle with the edge of the table 2, ensuring the neat and aesthetically pleasing division of office spaces. Secondly, the guide rail 211 transmits the lateral force on the partition panel 1 to the sturdy table 2, enhancing the overall stability of the partition panel 1 after adjustment and preventing it from shaking. Furthermore, the sliding adjustment method is much more efficient than disassembly and reinstallation. Users can quickly complete layout fine-tuning according to immediate needs, such as pulling the partition closer for temporary collaboration or pushing the partition further away when more personal space is needed, greatly improving the dynamic adaptability and usability of the office space.
[0021] In this embodiment, to further improve the structural compactness and transmission reliability of the adjustment assembly, a vertically arranged guide rod 122 is provided inside the adjustment assembly. These guide rods 122 are preferably made of high-strength metal (such as stainless steel) or engineering plastic, and their surfaces are polished or chrome-plated to reduce friction. The guide rod 122 is vertically inserted through the locking component 11, and its lower end is fixedly connected to the aforementioned guide slider 121. When the adjustment assembly is activated, the driving force acts on the guide rod 122, causing the guide slider 121 to rise and fall synchronously. This structure integrates the locking component 11, the guide slider 121, and the core components of the adjustment assembly, making the entire structure very compact. This not only reduces the number of parts and the assembly complexity, but also ensures that the guide rod 122, due to its rigid connection to the locking component 11 and the guide slider 121, maintains precise alignment in space, avoiding the problem of the guide slider 121 deviating from the guide rail 211 and failing to engage due to long-term use. Meanwhile, the vertical through-type setting of the guide rod 122 enables the locking component 11 to maintain a very high degree of straightness when moving up and down, ensuring its parallelism with the adsorption surface of the screen base strip 21, thereby maintaining the uniformity and stability of the magnetic attraction force, and further improving the stability of the screen panel 1 after installation and the consistency of swing recovery.
[0022] In this embodiment, to further optimize the control logic and reset mechanism of the guide slider 121, the guide slider 121 itself is constructed as a component that can be magnetically attracted, for example, by embedding an iron insert inside or by being made entirely of a magnetically conductive material. The locking component 11 itself acts as a magnetic source, and its magnetic field acts on the guide slider 121 directly below, generating an upward magnetic attraction force. This magnetic attraction force is sufficient to overcome the gravity of the guide slider 121 itself, attracting and holding it on the locking component 11, thereby preventing the guide slider 121 from accidentally drooping or shaking when impacted, ensuring the stability of the adjustment component in the non-adjustment state. More importantly, this magnetic attraction naturally constitutes the "reset" mechanism of the guide slider 121. When the user completes the position adjustment of the screen panel 1 and releases the adjustment component, the guide slider 121 will be automatically and precisely pulled back and fit against the locking component 11 under the action of magnetic attraction. In addition, it should be noted that the magnetic attraction provided by the locking component 11 not only enables the screen panel 1 to be installed on the screen base strip 21, but also enables the guide slider 121 to be reset. It has a good degree of functional integration, and there is no need to configure a separate reset component such as a spring for the guide slider 121. This not only saves costs, but also optimizes the utilization of the small space inside the screen panel 1.
[0023] In this embodiment, to further enhance the positioning accuracy and connection rigidity of the guide slider 121 when it is attracted, a groove 111 precisely matching the shape of the guide slider 121 is machined at the bottom of the locking component 11. The guide slider 121 is square, and the groove 111 is a corresponding square recess. The depth of the groove 111 is slightly less than the height of the guide slider 121, so that when the guide slider 121 is attracted by the magnetic force of the locking component 11, it can be precisely embedded in the groove 111. The snap-fit provides precise radial positioning, restricts any movement of the guide slider 121 relative to the locking component 11 in the horizontal plane, eliminates any possible small gaps, and makes the movement of the entire adjustment assembly more precise and free of play. The cooperation between the groove 111 and the guide slider 121 plays a self-centering role, ensuring that the guide slider 121 is in the same ideal position after each attraction, thus guaranteeing the repeatability of the adjustment assembly.
[0024] In this embodiment, the main structure of the screen panel 1 adopts a double-layer plate or frame configuration, forming a hollow interlayer 13 inside. This hollow interlayer 13 extends upward to the top edge of the screen panel 1, and forms a slender opening at the top edge. The adjustment assembly also includes an adjustment plate 123, which is vertically slidably disposed within this hollow interlayer 13. The top end of a guide rod 122 is fixedly connected to the bottom of the adjustment plate 123, and the guide rod 122 extends vertically downward, penetrating the solid portion of the screen panel 1 located below the hollow interlayer 13. A portion of the adjustment plate 123 protrudes from the top edge opening, allowing the user to press it with their fingers or palm. The user only needs to gently press down on the exposed portion of the adjustment plate 123 to drive the guide slider 121 to descend and embed into the guide rail 211 via the guide rod 122; after releasing the pressure, the adjustment plate 123 rises back to its original position under the action of magnetic force. This embodiment completely hides the complex adjustment mechanism inside the screen panel 1. From the outside, there are almost no exposed mechanisms or holes that would damage the integrity and aesthetics of the screen, maintaining the simplicity and high-end feel of the office environment. At the same time, the operation point is located at the top of the screen panel 1, which can be easily reached by the user whether standing or sitting.
[0025] In this embodiment, to ensure the smooth and precise operation of the guide rod 122 during long-term reciprocating motion, a guide sleeve 124 is provided in the solid portion of the screen panel 1. The guide sleeve 124 is preferably made of a self-lubricating material, such as a copper-based or iron-based oil-impregnated bearing, polytetrafluoroethylene (PTFE), or nylon, etc. Its inner hole precisely matches the outer diameter of the guide rod 122, forming a low-friction sliding bearing. The inner diameter of the guide sleeve 124 is slightly larger than the diameter of the guide rod 122, providing an appropriate clearance to ensure free sliding while effectively constraining the radial runout of the guide rod 122. The guide sleeve 124 provides a stable support point, ensuring the straightness of the guide rod 122's movement and preventing bending of the guide rod 122 due to deformation of the screen panel 1 material or uneven stress. This ensures the accuracy and reliability of the entire adjustment transmission chain, allowing each press adjustment to be accurately performed.
[0026] In this embodiment, to eliminate the impact of the adjustment mechanism on the appearance integrity of the screen panel 1, the opening at the top edge of the screen panel 1 is positioned near both ends of the top edge. Thus, when the adjustment plate 123 is installed inside and protrudes from its opening, the exposed portion visually and naturally constitutes an extension of the top of the screen panel 1. The exposed portion can be designed to maintain consistency in material, color, or texture with the main body of the screen panel 1 or form a harmonious match, making it appear as an integrated functional extension of the top of the screen panel 1, such as a cable tray cover or decorative strip. This design cleverly transforms the adjustment mechanism, which might otherwise be considered a "flaw" or "add-on," into an organic component of the screen panel 1's appearance, even adding a sense of design and layering to the product. It avoids the appearance of abrupt buttons, holes, or protrusions on the screen panel 1 due to the adjustment components, perfectly maintaining the simple and smooth lines of the screen panel 1, meeting the stringent aesthetic requirements of modern office environments, and embodying a perfect unity of function and form.
[0027] In this embodiment, to achieve optimized connection between the locking component 11 and the bottom edge of the screen panel 1, and to ensure the stable existence of the suspension gap, a recessed receiving groove 14 is machined on the bottom edge of the screen panel 1, corresponding to the installation position of the locking component 11. The locking component 11 is securely fixed to the top wall of the receiving groove 14 by fasteners (such as screws) or snap-fit. Crucially, after installation, the bottom plane of the locking component 11 maintains a precise distance from the bottom edge plane of the screen panel 1; this distance is the aforementioned suspension gap. The receiving groove 14 allows the locking component 11 to be partially or completely recessed into the screen panel 1, protecting the locking component 11 from side impacts and making the bottom edge of the screen panel 1 flatter.
[0028] In this embodiment, to ensure support stability without hindering the swaying and tilting motion of the screen panel 1, at least one dividing groove 15 extending along the length of the screen panel 1 is provided on the bottom edge of the screen panel 1 where the receiving groove 14 is not provided. This dividing groove 15 divides the bottom edge of the screen panel 1 into two independent parts, which form the support feet 16 supporting the screen base strip 21. The width and depth of the dividing groove 15 are set to ensure that the two support feet 16 have sufficient strength and rigidity to support the weight of the screen panel 1, while the contact area between their roots and the screen base strip 21 is moderate, providing stable support without being too large to restrict swaying. This split support foot 16 arrangement allows the support feet 16 on both sides to alternately and slightly contact and separate from the screen base strip 21 like a seesaw when the screen panel 1 is subjected to lateral force and sways, providing the necessary space and fulcrum for swaying motion, rather than generating huge frictional resistance or jamming as with a solid bottom edge. Similarly, when the screen panel 1 is pushed to one side to tilt it, the split support leg 16 can smoothly pass over the edge of the base strip to complete the tilting action without being obstructed by the bottom edge. In addition, the partition groove 15 helps to reduce the contact area between the bottom edge of the screen panel 1 and the base strip, reduce friction, and release stress during the manufacturing process to prevent deformation of the bottom edge of the screen panel 1.
[0029] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. A desk with a detachable screen, characterized in that, Including the table body and the screen panel; The tabletop of the table is provided with a screen base strip extending in the front-to-back direction, and the screen base strip is constructed as a component that can be magnetically attracted. The screen panel is upright with its bottom edge positioned on the screen base strip. At least one locking component is disposed on the bottom edge of the screen panel. The locking component is configured to generate magnetic attraction and be attracted to the screen base strip. A suspension gap is formed between the locking component and the screen base strip, which is suitable for the screen panel to gradually sway left and right until it returns to upright when subjected to a force in the left or right direction that is less than a set threshold, and to tilt to the left or right when subjected to a force in the left or right direction that is not less than a set threshold.
2. The desk according to claim 1, characterized in that, The screen base strip has a guide rail that extends along its length and is recessed; the screen panel has a manually adjustable component that can be raised and lowered, and the adjustable component is equipped with a guide slider that can be raised and lowered and can be inserted into or removed from the guide rail, so that when the guide slider is in the state of being inserted into the guide rail, the position of the screen panel can be manually adjusted by sliding along the direction of the guide rail.
3. The office desk according to claim 2, characterized in that, The adjustment assembly has a vertically arranged guide rod that passes vertically through the locking component and is connected to the guide slider.
4. The office desk according to claim 3, characterized in that, The guide slider is configured as a magnetically adsorbable component, such that the guide slider can be magnetically adsorbed by the locking component and detached from the guide rail.
5. The office desk according to claim 4, characterized in that, The bottom of the locking component has a groove that matches the shape of the guide slider, which is suitable for the guide slider to be magnetically attracted by the locking component and then snapped into the groove.
6. The office desk according to claim 3, characterized in that, The screen panel has a hollow interlayer inside and an opening is formed at its top edge. The adjustment assembly also has an adjustment plate that is vertically slidably disposed in the hollow interlayer. The top end of the guide rod is connected to the bottom of the adjustment plate and vertically penetrates the part of the screen panel corresponding to the lower part of the hollow interlayer. Part of the adjustment plate is exposed above the opening, which is suitable for manual pressing of the adjustment plate.
7. The office desk according to claim 6, characterized in that, The portion of the screen panel through which the guide rod passes vertically is provided with a guide sleeve, which is slidably fitted onto the guide rod.
8. The office desk according to claim 6, characterized in that, The two ends of the opening near the top edge of the screen panel cause the portion of the adjustment plate exposed above the opening to form an extension of the screen panel.
9. The office desk according to claim 1, characterized in that, The bottom edge of the screen panel has a recessed receiving groove corresponding to the locking component. The locking component is fixed to the top wall of the receiving groove, and there is a gap between the bottom of the locking component and the bottom edge of the screen panel, so that the locking component is suspended above the screen base strip.
10. The office desk according to claim 9, characterized in that, The portion of the bottom edge of the screen panel that does not have the receiving groove has a dividing groove extending along the length of the screen panel, such that the two sides of the dividing groove form support feet that support the screen base strip.