Multi-screen rotating structure of water-cooled radiator

CN224758985UActive Publication Date: 2026-09-15GUANGDONG LINGSHENG COMPUTER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522104034.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-09-15
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

然而,现有技术中的水冷头显示结构普遍存在以下不足:首先,显示组件通常采用固定式安装,无法根据用户的观察角度或使用场景进行灵活调整,导致显示内容可视范围有限,用户体验较为单一;其次,多数显示组件仅配备单块或双块屏幕,缺乏立体感和多视角同步展示能力,难以实现沉浸式视觉效果;此外,现有结构在安装、拆卸及维护方面往往较为繁琐,不利于用户自行更换或升级显示单元

Benefits of technology

通过在水冷头与显示组件之间设置可相对旋转的定位组件,使用户能够根据实际使用需求自由调整显示组件的朝向,突破传统固定安装方式的局限,极大提升了显示内容的适应性和可视范围;采用三块两两垂直设置的液晶屏幕构成显示组件,配合联动控制技术,可在不同方向上同步展示内容,形成立体化、多视角的视觉体验,显著提升显示的沉浸感和科技感;过磁吸式定位槽与定位柱的配合设计,不仅实现了显示组件的快速安装与稳定连接,还支持多档位角度调节,满足不同安装环境下的使用需求。

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Abstract

The utility model provides a kind of multi-screen rotating structure of water-cooled radiator, including water cooling head and display component, display component is equipped with two two vertically arranged screen one, screen two and screen three, water cooling head is equipped with rotating surface, rotating surface is equipped with first positioning component, display component is equipped with the second positioning component of rotating surface; Second positioning component is rotatable angle relative to first positioning component and is connected with cooperation, so that display component relatively rotates on rotating surface, to change the display angle of screen one, screen two and screen three;By setting the positioning component relatively rotatable between water cooling head and display component, user can freely adjust the orientation of display component according to actual use demand, break through the limitation of traditional fixed installation mode, greatly improve the adaptability and visual range of display content;Adopt three two two vertically arranged liquid crystal screens to form display component, can synchronously show content in different directions, form three-dimensional, multi-view visual experience.
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Description

Technical Field

[0001] This utility model belongs to the field of radiator technology, specifically relating to a multi-screen rotating structure for a water-cooled radiator. Background Technology

[0002] With the continuous improvement of computer hardware performance, especially the increasing power consumption of core components such as the central processing unit (CPU) and graphics processing unit (GPU), traditional air cooling methods are no longer sufficient to meet the demand for efficient heat dissipation. Therefore, water cooling systems have gradually become the mainstream choice for high-performance computers. To enhance the visual appeal and user experience of products, most water cooling blocks on the market have begun to integrate display components to display system status, custom images, or animations. However, existing water cooling block display structures generally have the following shortcomings: First, the display components are usually fixedly installed, unable to be flexibly adjusted according to the user's viewing angle or usage scenario, resulting in a limited visible range and a relatively monotonous user experience; second, most display components are only equipped with a single or dual screen, lacking the ability to create a three-dimensional effect and multi-view simultaneous display, making it difficult to achieve an immersive visual effect; in addition, the existing structure is often cumbersome in terms of installation, disassembly, and maintenance, making it difficult for users to replace or upgrade the display unit themselves. Therefore, there is an urgent need for a display structure with multi-screen linkage, adjustable angles, and convenient installation to overcome the above-mentioned shortcomings of existing technologies. Utility Model Content

[0003] (1) Technical problems to be solved This invention provides a multi-screen rotating structure for a water-cooled radiator, aiming to solve the above-mentioned problems.

[0004] (2) Technical solution This utility model provides a multi-screen rotating structure for a water-cooled radiator, including a water-cooling head and a display component. The display component has a screen 1, a screen 2, and a screen 3 arranged vertically in pairs. The water-cooling head has a rotating surface, and a first positioning component is provided on the rotating surface. The display component has a second positioning component facing the rotating surface. The second positioning component is rotatable relative to the first positioning component and is connected in cooperation, so that the display component rotates relative to the rotation surface to change the display angle of the first screen, the second screen and the third screen.

[0005] Furthermore, the first positioning component includes at least one positioning groove, and the second positioning component includes at least one positioning post that aligns with the positioning groove, wherein the positioning groove and the positioning post are detachably connected.

[0006] Furthermore, a first magnetic attractor is embedded in the positioning groove, and a second magnetic attractor that cooperates with the first magnetic attractor is embedded in the positioning post. The positioning groove and the positioning post are magnetically connected.

[0007] Furthermore, the positioning post is hollow and has a magnetic groove inside, and the second magnetic attractor is embedded in the magnetic groove.

[0008] Furthermore, both the positioning groove and the positioning post have circular cross-sectional shapes.

[0009] Furthermore, there are four positioning slots and four positioning posts, which are connected in sequence in a square shape, and any one of the positioning posts is connected to any one of the positioning slots.

[0010] Furthermore, the display component also includes a display frame, which has two perpendicular mounting holes, a second mounting hole and a third mounting hole, which are respectively aligned and installed with the first screen, the second screen and the third screen.

[0011] Furthermore, both the third mounting hole and the third screen are parallel to the rotation surface, while the first mounting hole, the second mounting hole, the first screen, and the second screen are all perpendicular to the rotation surface.

[0012] Furthermore, the three sides of the mounting hole extend toward the rotating surface to form a side plate, the side plate encloses to form a mounting groove, and a positioning plate facing the rotating surface is provided in the mounting groove, and the second positioning component is integrally formed with the positioning plate.

[0013] Furthermore, the positioning plate and the mounting groove are detachably connected.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: By incorporating a rotatable positioning component between the water-cooling head and the display unit, users can freely adjust the orientation of the display unit according to their actual needs, overcoming the limitations of traditional fixed installation methods and greatly improving the adaptability and viewing range of the displayed content. The display unit consists of three vertically arranged LCD screens in pairs, coupled with linkage control technology, enabling simultaneous display of content from different directions, creating a three-dimensional, multi-view visual experience that significantly enhances the immersive and technological feel of the display. The combination of magnetic positioning slots and positioning posts not only achieves rapid installation and stable connection of the display unit but also supports multi-level angle adjustment to meet the needs of different installation environments. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model.

[0016] Figure 2 This is an exploded view of the present invention.

[0017] Figure 3 This is a schematic diagram of the positioning post and positioning groove of this utility model.

[0018] Figure 4 This is a cross-sectional view of the connection between the positioning post and the positioning groove of this utility model.

[0019] Figure 5 For the present utility model Figure 4 Enlarged image.

[0020] Figure 6 This is a schematic diagram of the display stand of this utility model. Figure 1 .

[0021] Figure 7 This is a schematic diagram of the display stand of this utility model. Figure 2 .

[0022] Figure 8 This is an installation diagram of the positioning plate of this utility model.

[0023] Reference numerals: 1-Water cooling head, 11-Rotating surface, 2-Display component, 21-Screen 1, 22-Screen 2, 23-Screen 3, 3-First positioning component, 31-Positioning groove, 32-First magnetic suction component, 4-Second positioning component, 41-Positioning column, 411-Magnetic groove, 42-Second magnetic suction component, 5-Display frame, 51-Mounting hole 1, 52-Mounting hole 2, 53-Mounting hole 3, 54-Side plate, 55-Mounting groove, 6-Positioning plate. Detailed Implementation

[0024] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0025] like Figure 1-2 As shown, this utility model provides a multi-screen rotating structure for a water-cooled radiator, including a water-cooling head 1 and a display component 2 detachably connected to the water-cooling head 1. The display component 2 has a pair of vertically arranged screens 21, 22 and 23, which are connected together. Multi-screen linkage can be achieved through APP control, and the pair of vertical arrangements allows the screens 21, 22 and 23 to jointly display a three-dimensional effect. The water cooling head 1 has a rotating surface 11, on which a first positioning component 3 is provided. The display component 2 has a second positioning component 4 facing the rotating surface 11. The second positioning component 4 can rotate at different angles relative to the first positioning component 3 and can be connected to each other. When the second positioning component 4 rotates, it drives the display component 2 to rotate relative to the rotating surface 11 of the water cooling head 1. This rotation structure can change the display angle of the display component 2, that is, change the display angle and display effect of the first screen 21, the second screen 22 and the third screen 23, so that the user can adjust it arbitrarily according to the specific usage scenario.

[0026] With the development of computer component technology, the power consumption of computer components is also increasing. Conventional air coolers can no longer meet the needs of some high-end components, so water coolers with better heat dissipation have become the choice of more and more people. In order to increase the selling point, water coolers on the market will set the display component 2 on the water block 1. However, the display component 2 on the market is fixed relative to the water block 1. In addition, most of the display components 2 are equipped with only one or two screens, resulting in a very limited display angle and effect. To solve this problem, this application sets the first positioning component 3 and the second positioning component 4 on the water block 1 and the display component 2 respectively. The second positioning component 4 can rotate relative to the first positioning component 3 and connect in coordination to realize the multi-angle display of the display component 2. At the same time, the three-dimensional effect is achieved by the two perpendicular screens 21, 22 and 3. The rotatable positioning component expands the playability and enriches the display effect of the display component 2.

[0027] Specifically, such as Figure 2-3 As shown, in one embodiment of this utility model, the rotating surface 11 is provided with an axis L, the first positioning component 3 includes four cylindrical positioning grooves 31, the display component 2 is provided with a positioning plate 6 facing the rotating surface 11, the second positioning component 4 is disposed on the positioning plate 6, and the second positioning component 4 includes four cylindrical positioning posts 41 that are aligned and cooperate with the positioning grooves 31. This structural design allows the positioning posts 41 and the positioning grooves 31 to be detachably connected along the axis L. During installation, the four positioning posts 41 are embedded in the four positioning grooves 31 to ensure that the display component 2 is stably connected to the water cooling head 1 along the circumferential direction of the axis L, preventing loosening.

[0028] Furthermore, such as Figure 4-5 As shown, this configuration only applies when the rotating surface 11 is horizontal. When the rotating surface 11 is vertical or inclined, the positioning post 41 is prone to detaching from the positioning groove 31 along the axis L. To solve this problem, a first magnetic attractor 32 is embedded at the bottom of the positioning groove 31. The positioning post 41 is hollow and has an upward-facing magnetic groove 411 inside. A second magnetic attractor 42 is embedded in the magnetic groove 411. Both the first magnetic attractor 32 and the second magnetic attractor 42 are magnets. This structural design allows the positioning post 41 to be magnetically connected when embedded in the positioning groove 31, ensuring that the water cooling head 1 and the display component 2 can be stably connected at any installation angle and will not fall off.

[0029] Furthermore, such as Figure 2-3As shown, there are four positioning slots 31 and four positioning posts 41 connected in a square shape. This structural design allows any one of the positioning posts 41 to connect with any one of the positioning slots 31. Specifically, after the display component 2 is rotated by 90 degrees, 180 degrees and 270 degrees, all four positioning posts 31 can be magnetically connected with the four positioning slots 41, realizing that the display component 2 can be rotated 360 degrees in four adjustable levels.

[0030] In other embodiments, there are four positioning slots 31 and four positioning posts 41, and the cross-sectional shape of the positioning slots 31 and the positioning posts 41 is triangular or rectangular, which can achieve the above-mentioned effect.

[0031] In other embodiments, the number of positioning slots 31 and positioning posts 41 are three, connected in sequence in a triangular shape. When the triangle is an equilateral triangle, the display component 2 can rotate 360 ​​degrees in three adjustable levels.

[0032] In other embodiments, the number of positioning grooves 31 and positioning posts 41 is one. When the cross-sectional shape of positioning grooves 31 and positioning posts 41 is an equilateral triangle, the display component 2 is 360-degree three-level adjustable rotation.

[0033] In other embodiments, the number of positioning slots 31 and positioning posts 41 is one. When the cross-sectional shape of positioning slots 31 and positioning posts 41 is square, the display component 2 is 360-degree four-level adjustable rotation.

[0034] Specifically, such as Figure 6 As shown, in one embodiment of this utility model, the display component 2 further includes a display frame 5. The display frame 5 is provided with two perpendicular mounting holes 51, 52, and 53, which are respectively aligned and installed with the screen 21, 22, and 23. This modular design makes it easier to repair and disassemble the screen 21, 22, and 23 when they are damaged. For example, if the screen 21 is damaged, it can be disassembled and repaired only by using the matching mounting hole 51, without disassembling the screen 22 and 23, which greatly improves the repair efficiency. At the same time, the frame formed by the display frame 5 encloses the screen 21, 22, and 23, providing good support and protection, and effectively reducing the damage rate of the screen 21, 22, and 23.

[0035] Furthermore, such as Figure 6-7As shown, the mounting hole 3 53 and the screen 3 23 are both parallel to the rotating surface 11, and the mounting hole 1 51, mounting hole 2 52, screen 1 21 and screen 2 22 are all perpendicular to the rotating surface 11. The four sides of the mounting hole 3 53 extend a distance towards the rotating surface 11 to form a side plate 54. The side plate 54 forms a mounting groove 55. The positioning plate 6 with four positioning posts 41 is set in the mounting groove 55 facing the rotating surface 11. This side plate 54 can cover the connection between the positioning plate 6 and the rotating surface 11, making the overall effect after connection more layered and without a sense of discontinuity.

[0036] Furthermore, such as Figure 8 As shown, the positioning plate 6 and the mounting groove 55 are screwed together. This detachable connection method makes it more convenient to install or replace the second magnetic suction member 42 in the positioning column 41 without disassembling or affecting the normal use of other components. At the same time, as can be seen from the figure, the area of ​​the mounting groove 55 is larger than the area of ​​the rotating surface 11. That is, the mounting groove 55 can also be used with the larger water cooling head 1. The area of ​​the rotating surface 11 will also change with the position of the four positioning grooves 31, which means that the matching positioning column 41 and positioning plate 6 also need to be replaced. The detachable design of the positioning plate 6 means that only the positioning plate 6 needs to be replaced to adapt the display component 2 to the water cooling head 1 of different sizes.

[0037] The following is a detailed explanation of the working principle of this utility model; Before use, the user must first align and install the display component with the first positioning component on the rotating surface of the water cooling head via its second positioning component. Specifically, the positioning post on the back of the display component will be embedded in the positioning groove on the water cooling head, and a stable connection will be achieved through the built-in magnetic attraction. Since the positioning groove and positioning post adopt a symmetrical layout (square array), the display component can rotate in multiple positions (such as every 90°) and can maintain reliable magnetic fixation in all positions. Once the display components are installed, users can activate the linkage display function of the three LCD screens via external control devices (such as the accompanying APP). The three screens are arranged vertically in pairs, facing different directions, and can display images, data, or animation content synchronously or asynchronously to form a three-dimensional visual effect. If the display direction needs to be adjusted, users only need to move the display components along the L-axis to disengage the positioning post from the current positioning slot and rotate it to the target angle before re-attaching and fixing it. The entire process does not require disassembling any parts, making the operation simple and quick. In terms of maintenance, if a screen malfunctions, the user can disassemble the corresponding installation module for repair or replacement without disassembling the entire display assembly, which greatly improves maintenance efficiency. In addition, the positioning plate and the display frame are connected by a detachable connection (such as screw connection), which makes it easy to adapt to water cooling heads of different sizes or replace positioning components, enhancing the product's versatility and expandability.

[0038] The innovation of this utility model lies in: Achieve flexible display from multiple angles: By setting a positioning component that can rotate relative to the water cooling head and the display component, users can freely adjust the orientation of the display component according to actual usage needs, breaking through the limitations of traditional fixed installation methods and greatly improving the adaptability and viewing range of the displayed content. Enhanced stereoscopic visual effects: The display component consists of three vertically arranged LCD screens in pairs. With the help of linkage control technology, content can be displayed synchronously in different directions, forming a stereoscopic and multi-view visual experience, which significantly enhances the immersiveness and technological feel of the display. Enhanced structural adjustability and compatibility: The combination of magnetic positioning slots and positioning columns not only enables rapid installation and stable connection of display components, but also supports multi-level angle adjustment to meet the needs of different installation environments. At the same time, the modular display frame design facilitates independent maintenance and replacement of screen units, improving the maintainability and service life of the product.

[0039] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementations that can be understood by those skilled in the art.

[0040] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A multi-screen rotating structure for a water-cooled radiator, characterized in that, It includes a water cooling head (1) and a display component (2). The display component (2) is provided with two screens (21), two screens (22) and three screens (23) arranged vertically in pairs. The water cooling head (1) is provided with a rotating surface (11). A first positioning component (3) is provided on the rotating surface (11). The display component (2) is provided with a second positioning component (4) facing the rotating surface (11). The second positioning component (4) is rotatable relative to the first positioning component (3) and is connected to it, so that the display component (2) rotates relative to the rotating surface (11) to change the display angle of the first screen (21), the second screen (22) and the third screen (23).

2. The multi-screen rotating structure of a water-cooled radiator according to claim 1, characterized in that, The first positioning component (3) includes at least one positioning groove (31), and the second positioning component (4) includes at least one positioning post (41) that aligns with the positioning groove (31). The positioning groove (31) and the positioning post (41) are detachably connected.

3. The multi-screen rotating structure of a water-cooled radiator according to claim 2, characterized in that, The positioning groove (31) is provided with a first magnetic suction member (32), and the positioning post (41) is provided with a second magnetic suction member (42) that cooperates with the first magnetic suction member (32). The positioning groove (31) and the positioning post (41) are magnetically connected.

4. The multi-screen rotating structure of a water-cooled radiator according to claim 3, characterized in that, The positioning post (41) is hollow and has a magnetic groove (411) inside. The second magnetic suction member (42) is embedded in the magnetic groove (411).

5. The multi-screen rotating structure of a water-cooled radiator according to claim 2, characterized in that, Both the positioning groove (31) and the positioning post (41) have circular cross-sectional shapes.

6. The multi-screen rotating structure of a water-cooled radiator according to claim 3, characterized in that, The number of positioning grooves (31) and positioning posts (41) are four in total, connected in sequence in a square shape, and any one of the positioning posts (31) is connected to any one of the positioning grooves (41).

7. The multi-screen rotating structure of a water-cooled radiator according to claim 1, characterized in that, The display component (2) also includes a display frame (5), which has two vertical mounting holes (51), two mounting holes (52) and three mounting holes (53) that are respectively aligned and installed with screen one (21), screen two (22) and screen three (23).

8. The multi-screen rotating structure of a water-cooled radiator according to claim 7, characterized in that, The mounting hole three (53) and the screen three (23) are both parallel to the rotating surface (11), and the mounting hole one (51), mounting hole two (52), screen one (21) and screen two (22) are all perpendicular to the rotating surface (11).

9. The multi-screen rotating structure of a water-cooled radiator according to claim 8, characterized in that, The mounting hole three (53) extends to the rotating surface (11) to form a side plate (54), the side plate (54) surrounds to form a mounting groove (55), and a positioning plate (6) facing the rotating surface (11) is provided in the mounting groove (55). The second positioning component (4) is integrally formed with the positioning plate (6).

10. The multi-screen rotating structure of a water-cooled radiator according to claim 9, characterized in that, The positioning plate (6) and the mounting groove (55) are detachably connected.