Water-cooled pump head with telescopic screen mounting structure and computer water-cooled radiator

By combining a multi-section sleeve housing and a universal ball joint, the height and angle of the water-cooled pump head screen can be adjusted, solving the problems of non-adjustable installation and single angle in existing technologies, thus improving the user experience and display effect.

CN224536414UActive Publication Date: 2026-07-21HUIZHOU XUNSHUO TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU XUNSHUO TECH CO LTD
Filing Date
2025-09-19
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing water-cooled pump head display module has an adjustable installation height, is prone to interference with internal components of the chassis, has a limited display angle, and lacks interactive effects, making it difficult to meet users' needs for personalized and immersive experiences.

Method used

The telescopic structure, consisting of a multi-section sleeve shell, combined with a universal ball joint and locking mechanism, enables the adjustment of the height and angle of the screen module, and provides a stereoscopic display effect through a double-sided naked-eye 3D screen.

Benefits of technology

It enables flexible adjustment of the height and angle of the screen mounting section, avoiding interference with internal components of the chassis, improving installation compatibility and visual interaction experience, and providing an immersive display effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water -cooled pump head and computer water -cooled radiator of area telescopic screen mounting structure, including pump head body and screen module, the shell of pump head body is telescopic multisection sleeve shell, and the top of inmost layer sleeve monomer is equipped with screen mounting part. The locking mechanism is arranged between adjacent sleeve monomers, including anti -drop out subassembly and anti -slip subassembly, is respectively used for preventing sleeve monomer complete drop out and realizes multi -gear positioning. Screen module is connected with universal ball head through ball seat, can realize angle adjustment on height adjustment foundation, and can be fixed through locking piece. Screen wire passes through ball head through -hole and sleeve monomer cavity and hides the layout. Under the preferred condition, sleeve monomer is hexagonal prism, and anti -slip point position is in two layers distribution, and screen module is double -sided naked eye 3D screen. This structure can avoid with the interference of case internal element, promotes the installation compatibility, guarantees telescopic mechanism stability, and strengthens display effect and user interactive experience.
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Description

Technical Field

[0001] This utility model relates to the field of heat sinks, specifically a water-cooled pump head with a telescopic screen mounting structure and a computer water-cooled heat sink. Background Technology

[0002] With the continuous improvement of computer hardware performance, liquid cooling systems have become the mainstream heat dissipation method for high-performance PCs. Among these systems, the water-cooling pump head, as one of the core components of a liquid cooling radiator, often integrates a display module to show temperature, fan speed, images, or user-defined content. The addition of a display module not only enhances the product's practicality but also improves the visual appeal and interactive experience. Especially in DIY PC building among younger users, the pump head display module has gradually become a significant selling point.

[0003] However, most water-cooled pump head display modules currently on the market adopt a fixed installation structure, which has the following problems: First, the screen height is not adjustable. In common side-panel cases, the display screen is often blocked by other hardware or does not match the user's viewing angle, affecting visibility and experience. Second, the fixed screen position is prone to spatial interference with components such as memory and heat sinks, resulting in poor installation compatibility. Third, although existing technical solutions use a spherical universal structure to achieve screen angle adjustment, the problem of non-adjustable screen height has not been solved, resulting in insufficient adaptability. Fourth, most existing screens are single-sided displays, with limited interaction and immersive effects, making it difficult to meet users' needs for personalized and immersive experiences.

[0004] Therefore, there is an urgent need for a new water-cooled pump head structure that allows the screen mounting section to be flexibly adjusted in height, accommodates multi-angle display adjustment, and further improves the visual effect and long-term operational reliability of the display module, thereby addressing the shortcomings of existing technologies and meeting market demands. Utility Model Content

[0005] The purpose of this utility model is to provide a water-cooled pump head and a computer water-cooled radiator with a telescopic screen mounting structure, in order to solve the problems of existing water-cooled pump head display modules having non-adjustable mounting height, easy interference with internal components of the chassis, single display angle, and insufficient interactive effects.

[0006] The objective of this utility model is achieved through the following technical solution:

[0007] A water-cooled pump head with a telescopic screen mounting structure includes a pump head body and a screen module. The outer shell of the pump head body is a telescopic multi-sleeve shell, which is formed by at least two sleeve units coaxially sleeved together. The multi-sleeve shell is preferably a hexagonal prism structure, including an outermost outer sleeve unit and two intermediate sleeve units. The outer sleeve unit serves as the main shell of the pump head body, and the top of the innermost intermediate sleeve unit is integrally provided with a screen mounting part for mounting the screen module. Through the relative sliding and sleeve connection of the sleeve units, the screen mounting part can be flexibly adjusted in the height direction to meet the needs of the internal space of the chassis and the user's viewing angle.

[0008] To ensure the safety and stability of the telescopic adjustment, a locking mechanism is provided between two adjacent sleeve units. In the two adjacent sleeve units, the one located on the outside is the outer sleeve unit, and the one located on the inside is the inner sleeve unit. The locking mechanism includes multiple sets of mating parts, each set consisting of an anti-disengagement component and an anti-slip component. The anti-disengagement component consists of an anti-disengagement buckle located at the bottom of the inner sleeve unit and an anti-disengagement limiting protrusion located at the top of the inner wall of the outer sleeve unit, which cooperates to prevent the inner sleeve unit from accidentally and completely disengaging during telescopic adjustment. The anti-slip component consists of an anti-slip protrusion located on the inner wall of the outer or middle sleeve unit and an anti-slip recess located on the outer wall of the corresponding inner sleeve unit, used to lock the relative sliding position of adjacent sleeve units. Preferably, the anti-slip protrusion has six points along the axial direction of the sleeve unit, distributed in upper and lower layers. The upper layer points correspond to the sleeve unit when stretched to its longest position, and the lower layer points correspond to the sleeve unit when compressed to its shortest position, thereby achieving reliable positioning at multiple positions.

[0009] With the chassis in its normal position and the motherboard vertically mounted, the water-cooling pump head is in a side-mounted position. The weight of the screen is mainly borne by the side wall of the pump head's outer shell. The anti-slip protrusions on the telescopic sleeve primarily serve for positioning and limiting, without directly bearing the weight of the screen. This design effectively reduces the stress on the positioning structure and further improves the durability and long-term stability of the telescopic mechanism.

[0010] The screen mounting section is a ball joint structure. The bottom of the screen module has a universal ball joint that mates with the ball joint and is movably housed within it. The ball joint is equipped with a universal locking component, which can selectively lock or release the universal ball joint. This allows for multi-directional angle adjustment of the screen module beyond just height adjustment, ensuring that users can adjust to the optimal viewing angle according to the placement of the computer case and their viewing habits.

[0011] To achieve both aesthetic appeal and safety in wiring, the universal ball joint has an axial through hole inside, and each sleeve unit has a cavity inside. The wires of the screen module extend through the through hole and the cavity to the inside or outside of the pump head body, thereby forming a concealed wiring channel to avoid exposure and affect the overall appearance.

[0012] Furthermore, the screen module preferably adopts a dual-sided naked-eye 3D screen structure. This screen has two display surfaces connected by a curved surface. With the computer case in its normal position, combined with height adjustment and omnidirectional angle adjustment functions, it can maintain a fixed and suitable viewing position. Users can directly obtain a naked-eye 3D stereoscopic display effect without additional equipment when using the computer, thus significantly improving the visual experience and interactive effects.

[0013] In addition, the multi-section sleeve shell forms a multi-layered heat insulation barrier in its structure, which can effectively block the heat generated by the computer motherboard from being transferred to the screen, thereby ensuring the long-term reliable operation of the display module.

[0014] On the other hand, this utility model also proposes a computer water cooling radiator, including a heat sink, a water cooling pipe and a screen module. The water cooling radiator includes a water cooling pump head with a telescopic screen mounting structure as described above. The screen module is mounted on the screen mounting part, thereby improving the adjustability and visual effect of the display module while ensuring heat dissipation performance.

[0015] The beneficial effects of this utility model are:

[0016] This utility model, by adopting the above-mentioned technical solution, achieves height adjustment of the screen mounting part through a telescopic structure composed of multi-section sleeve shells, avoiding interference with internal components of the chassis and improving installation compatibility; through the universal ball joint and ball seat structure, the screen module can be adjusted in multiple directions, enhancing the visibility of the displayed content and the interactive experience; through the setting of anti-detachment and anti-slip components, the safety and stability of the telescopic process are ensured; through the wiring design of through holes and cavities, the screen wires can be concealed, and the overall structure is beautiful and neat; through the double-sided naked-eye 3D screen, a stereoscopic display effect is achieved, and the stacked structure of the sleeve unit also forms an effective heat insulation barrier, thus giving this utility model excellent compatibility, reliability and user interactive experience. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is an exploded view of the present invention.

[0019] Figure 2 This is a three-dimensional diagram of the tensile state of this practical application.

[0020] Figure 3 This is a cross-sectional view of the tensile state of this utility model.

[0021] Figure 4 This is a three-dimensional diagram of the contracted state of this utility model.

[0022] Figure 5 This is a sectional view of the folded state of this utility model.

[0023] Figure 6 for Figure 5 Enlarged view of point A.

[0024] Figure 7 For the intermediate sleeve single unit three-dimensional Figure 1 .

[0025] Figure 8 For the intermediate sleeve single unit three-dimensional Figure 2 .

[0026] Figure 9 It is a single intermediate sleeve unit with a screen mounting section.

[0027] The numbers in the diagram represent: 1. Pump head body; 2. Screen module; 3. Multi-section sleeve shell; 4. Screen mounting part; 5. Outer sleeve unit; 6. Middle sleeve unit; 7. Anti-detachment buckle; 8. Anti-detachment limiting protrusion; 9. Anti-slip protrusion; 10. Universal ball joint; 11. Universal locking part; 12. Screen wire; 13. Water cooling pipe; 14. Detailed Implementation

[0028] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. The drawings illustrate preferred embodiments of this utility model. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0029] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0031] Please refer to the embodiments of this utility model. Figures 1 to 9 :

[0032] A water-cooled pump head with a telescopic screen mounting structure includes a pump head body 1 and a screen module 2. The outer shell of the pump head body 1 is a telescopic multi-sleeve outer shell 3, which is formed by at least two sleeve units coaxially sleeved together. A screen mounting part 4 is fixed to the top of the innermost sleeve unit of the multi-sleeve outer shell 3 and is used to mount the screen module 2. A locking mechanism is provided on the sleeve unit and is used to selectively lock or release the relative position of each sleeve unit. By adjusting the relative sleeve length between each sleeve unit, the screen mounting part 4 can be raised and lowered, thereby realizing flexible adjustment of the height of the screen module 2.

[0033] By adopting the above technical solution, the height of the screen mounting part 4 can be adjusted, thereby avoiding interference with the internal components of the chassis. At the same time, the screen position can be flexibly adjusted according to the user's viewing needs, improving installation compatibility and user experience.

[0034] Preferably, the multi-section sleeve housing 3 includes an outer sleeve unit 5 as the outermost fixed structure and at least one intermediate sleeve unit 6 that can be housed therein, the outer sleeve unit 5 constituting the main housing structure of the pump head body 1.

[0035] By adopting the above technical solutions, the outer sleeve unit 5 ensures the overall strength and stability of the pump head body 1, while the design of the multi-layer intermediate sleeve unit 6 provides a larger lifting stroke; the preferred hexagonal prism shape further improves the torsional resistance and overall rigidity, achieving a balance between structural stability and flexible adjustment.

[0036] Preferably, the locking mechanism includes multiple sets of mating parts, each set of mating parts being disposed between two adjacent sleeve units; the mating parts include an anti-disengagement component and an anti-slip component, the anti-disengagement component restricting the inner sleeve unit from completely disengaging from the outer sleeve unit, and the anti-slip component locking the relative sliding position of the inner sleeve unit and the outer sleeve unit through a concave-convex interlocking structure.

[0037] By adopting the above technical solution, it is possible to ensure smooth telescopic adjustment while preventing the sleeve from coming off. The water-cooling pump head installed on the chassis is placed on the side, and the screen can be well fixed by using a high-strength anti-dislodgement component with a larger buckle. The multi-section sleeve shell 3 is reliably fixed in the set position through the positioning structure to control the telescopic length, thereby improving safety and stability of use.

[0038] Preferably, the anti-detachment component includes an anti-detachment buckle 7 disposed at the bottom of the inner sleeve unit and an anti-detachment limiting protrusion 8 disposed at the top of the inner wall of the outer sleeve unit that is directly sleeved thereon, wherein the anti-detachment buckle 7 is adapted to the anti-detachment limiting protrusion 8.

[0039] By adopting the above technical solution, an effective limit can be formed when the sleeve unit is stretched to its limit, preventing the sleeve unit from completely coming out, thereby improving the reliability of the telescopic mechanism.

[0040] Preferably, the anti-slip assembly includes matching anti-slip protrusions 9 and anti-slip recesses 10; the anti-slip protrusions 9 are disposed on the outer wall of the inner sleeve unit, and the anti-slip recesses 10 are correspondingly disposed on the inner wall of the outer sleeve unit that is directly sleeved therewith; or, the anti-slip protrusions 9 are disposed on the inner wall of the outer sleeve unit, and the anti-slip recesses 10 are correspondingly disposed on the outer wall of the inner sleeve unit that is directly sleeved therewith, and the anti-slip protrusions 9 are distributed in at least two rows along the axial direction of the sleeve unit.

[0041] By adopting the above technical solution, stable positioning can be achieved at different extension and compression positions of the sleeve unit. Users can quickly select the extension or compression level according to their needs. The operation is convenient and the adjustment is flexible. Preferably, each sleeve unit has six points along the circumference, with two rows of points corresponding to the most extended position and the most compressed position, which is convenient for fixing.

[0042] Preferably, with the chassis in normal placement and the motherboard vertically installed, the water-cooling pump head is side-mounted, and the weight of the screen is mainly borne by the side wall of the pump head body 1 shell. The anti-slip protrusions in the telescopic structure only serve as positioning components and do not need to directly bear the weight of the screen.

[0043] By adopting the above technical solution, the stress burden on the positioning components is significantly reduced, and the durability and long-term stability of the telescopic structure are improved.

[0044] Preferably, the screen module 2 is a dual-sided naked-eye 3D screen.

[0045] By adopting the above technical solution, the screen can provide a naked-eye 3D display effect in a fixed installation state, allowing users to obtain an immersive visual experience without additional equipment, further enhancing the display effect and interactive performance.

[0046] Preferably, the screen mounting part 4 is an integrally formed ball seat at the top of the innermost sleeve unit; the bottom of the screen module 2 is provided with a universal ball head 11 adapted to the ball seat; the universal ball head 11 is movably accommodated in the ball seat, so that the screen module 2 can be adjusted in multiple degrees of freedom.

[0047] By adopting the above technical solution, the screen can not only be height adjusted, but also flexibly change the angle according to the user's viewing needs, thereby achieving the best viewing angle adaptation.

[0048] Preferably, the water-cooled pump head also includes a universal locking member 12; the universal locking member 12 cooperates with the ball seat to selectively lock or release the universal ball head 11 to fix or adjust the viewing angle of the screen module 2.

[0049] By adopting the above technical solution, the screen position can be fixed when needed to ensure display stability, and it is also convenient to make flexible adjustments in different usage scenarios.

[0050] Preferably, the universal ball joint 11 has a through hole along the axial direction inside, the multi-section sleeve housing 3 has a cavity inside, the screen is connected to a screen wire 13, and the screen wire 13 extends through the through hole and the cavity to the inside or outside of the pump head body 1.

[0051] By adopting the above technical solution, the screen wires 13 can be concealed, avoiding exposure that affects the overall appearance, reducing the risk of interference and damage, and improving the aesthetics and reliability of the structure.

[0052] A computer water-cooled radiator includes a water-cooled pump head with a telescopic screen mounting structure as described in the foregoing technical solution, wherein the screen module 2 is mounted on the screen mounting part 4.

[0053] By adopting the above technical solution, the water-cooled pump head can be easily applied to computer water-cooled radiators. It utilizes a telescopic structure to achieve extremely high installation compatibility, ensuring heat dissipation while providing flexible display adjustment functions and good visual effects.

[0054] Working Principle: The water-cooled pump head of this invention achieves height adjustment of the screen mounting part 4 on the innermost sleeve unit through the relative expansion and contraction of the multi-section sleeve housing 3. An anti-detachment component prevents the sleeve unit from completely detaching, and an anti-slip component provides positioning through protrusions and grooves. With the chassis normally placed, the pump head is mounted on its side, and the weight of the screen is mainly borne by the side wall of the housing; the expansion and contraction protrusions only serve a positioning function. The screen is connected to the universal ball joint 11 via a ball seat, allowing for flexible angle adjustment based on height and fixation with locking components. The screen wires 13 are concealed within the sleeve unit cavity through through holes, resulting in an aesthetically pleasing design. A double-sided naked-eye 3D screen is preferably used, combined with expansion and angle adjustment functions, providing excellent stereoscopic display effects and interactive experience.

[0055] During installation, extend and retract the screen of the heatsink to a suitable position and install it inside the chassis. Connect the cables, and you can freely swing and extend the screen to experience an immersive visual experience.

[0056] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A water-cooled pump head with a telescopic screen mounting structure, comprising a pump head body (1) and a screen module (2), characterized in that: The outer shell of the pump head body (1) is a telescopic multi-section sleeve shell (3), which is formed by at least two sleeve units coaxially sleeved together. The screen mounting part (4) is fixed to the top of the innermost sleeve unit in the multi-section sleeve shell (3) and is used to install the screen module (2). A locking mechanism, disposed on the sleeve unit, is used to selectively lock or release the relative positions of each sleeve unit section; By adjusting the relative sleeve length between each sleeve unit, the screen mounting part (4) can be raised and lowered, thereby realizing flexible adjustment of the height of the screen module (2).

2. A water-cooled pump head with a telescopic screen mounting structure according to claim 1, characterized in that: The multi-section sleeve shell (3) includes an outer sleeve unit (5) as the outermost fixed structure and at least one intermediate sleeve unit (6) that can be housed therein. The outer sleeve unit (5) constitutes the main shell structure of the pump head body (1).

3. A water-cooled pump head with a telescopic screen mounting structure according to claim 2, characterized in that: The locking mechanism includes multiple sets of mating parts, each set of mating parts being disposed between two adjacent sleeve units; The mating components include an anti-disengagement component and an anti-slip component. The anti-disengagement component restricts the inner sleeve unit from completely disengaging from the outer sleeve unit. The anti-slip component locks the relative sliding position of the inner sleeve unit and the outer sleeve unit through a concave-convex interlocking structure.

4. A water-cooled pump head with a telescopic screen mounting structure according to claim 3, characterized in that: The anti-detachment component includes an anti-detachment buckle (7) disposed at the bottom of the inner sleeve unit and an anti-detachment limiting protrusion (8) disposed at the top of the inner wall of the outer sleeve unit that is directly sleeved thereon. The anti-detachment buckle (7) and the anti-detachment limiting protrusion (8) are adapted to each other.

5. A water-cooled pump head with a telescopic screen mounting structure according to claim 3, characterized in that: The anti-slip assembly includes matching anti-slip protrusions (9) and anti-slip recesses (10); the anti-slip protrusions (9) are disposed on the outer wall of the inner sleeve unit, and the anti-slip recesses (10) are correspondingly disposed on the inner wall of the outer sleeve unit that is directly sleeved therewith; or, the anti-slip protrusions (9) are disposed on the inner wall of the outer sleeve unit, and the anti-slip recesses (10) are correspondingly disposed on the outer wall of the inner sleeve unit that is directly sleeved therewith, and the anti-slip protrusions (9) are distributed in at least two rows along the axial direction of the sleeve unit.

6. A water-cooled pump head with a telescopic screen mounting structure according to claim 1, characterized in that: The screen module (2) is a naked-eye 3D screen with double-sided display.

7. A water-cooled pump head with a telescopic screen mounting structure according to claim 1, characterized in that: The screen mounting part (4) is an integrally formed ball seat at the top of the innermost sleeve unit; the bottom of the screen module (2) is provided with a universal ball head (11) adapted to the ball seat; the universal ball head (11) is movably housed in the ball seat, so that the screen module (2) can be adjusted in multiple degrees of freedom.

8. A water-cooled pump head with a telescopic screen mounting structure according to claim 7, characterized in that: It also includes a universal locking element (12); The universal locking member (12) cooperates with the ball seat to selectively lock or release the universal ball head (11) to fix or adjust the viewing angle of the screen module (2).

9. A water-cooled pump head with a telescopic screen mounting structure according to claim 7, characterized in that: The universal ball head (11) has an axial through hole inside, the multi-section sleeve shell (3) has a cavity inside, the screen is connected to a screen wire (13), and the screen wire (13) extends through the through hole and the cavity to the inside or outside of the pump head body (1).

10. A computer water-cooled radiator, comprising a heat sink, a water-cooling conduit (14), and a screen module (2), characterized in that: The water-cooled pump head with a telescopic screen mounting structure as described in any one of claims 1 to 9 is provided, wherein the screen module (2) is mounted on the screen mounting part (4).