Heat dissipation type liquid cooling pipeline assembly
Through the design of adjustable cooling plates and longitudinal bolts, the adaptation problem of liquid-cooled pipelines in the changing angle installation space is solved, and flexible installation adaptability and detachability are achieved to meet different thickness requirements.
Patent Information
- Application Number
- CN202421955827.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-08-13
AI Technical Summary
During the installation process, existing liquid-cooled pipelines can only adapt to fixed installation angles and sizes, and cannot adapt to the installation space of changing and adjusting angles, and need to be customized to produce adapted cooling plates.
The adjustable steering structure of the adjustable cooling plate is adopted, and the angle adjustment is completed in combination with the liquid-cooled pipeline. Through the design of the detachable cooling plate and longitudinal bolt, the adaptation of different thickness requirements is achieved.
The adjustable installation of the liquid-cooled pipeline in the installation space of the changing angle is realized, which avoids customized production and improves the flexibility and adaptability of installation.
Smart Images

Figure CN223261811U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of liquid cooling equipment, and in particular relates to a heat dissipation type liquid cooling pipeline component. Background Art
[0002] Liquid cooling technology stems from the ongoing search for efficient heat dissipation solutions. As electronic devices become increasingly integrated, heat dissipation has become a bottleneck limiting their performance. Traditional air cooling methods are no longer sufficient for the heat dissipation requirements of high-power density devices, leading to the emergence of liquid cooling technology. Wave cooling utilizes liquid as a cooling medium, dissipating heat through a piping system. It offers advantages such as high heat dissipation efficiency, low noise, and excellent stability.
[0003] Conventional liquid cooling pipes are installed inside the panel during installation, with the panel installed in a designated area to complete the installation and pipe protection process. However, a single set of liquid cooling panels and pipes can only be installed at a fixed angle and in a fixed size assembly space. Therefore, it is necessary to produce liquid cooling panels and pipes of different sizes and installation angles to adapt to new assembly spaces.
[0004] In summary, the present application provides a heat dissipation type liquid cooling pipe assembly, which adopts an adjustable steering structure of an adjustable cooling plate, and cooperates with the liquid cooling pipe installed inside the cooling plate to complete the angle adjustment process, so that it can adapt to the installation space that requires angle adjustment to complete the installation process. It solves the technical problem that the same group of plates cannot be installed in one step in the installation space where the adjustment angle needs to be changed. It also solves the technical problem that the installation space that needs to be installed according to the need to adjust the angle needs to be customized and produced to adapt to the cooling plate. The detachable cooling plate structure can realize the replacement of the liquid cooling plate, and the addition of longitudinal bolts of different thicknesses to change the liquid cooling plate with different thickness requirements. Summary of the Invention
[0005] In order to achieve the above-mentioned purpose, the technical solution of the present utility model is as follows:
[0006] A heat dissipation type liquid cooling pipeline assembly includes a liquid cooling plate; the liquid cooling plate is an embedded installation structure, and the liquid cooling plate is installed in the installation groove of the fixed plate and the movable plate;
[0007] Two sets of limiting flanges are fixedly installed at the tail of the fixed plate, and longitudinal bolts are vertically installed in the central through holes of the two sets of limiting flanges. The movable ring in the middle section of the longitudinal bolt is synchronously connected with the movable plate;
[0008] The liquid infusion port and the liquid discharge port of the liquid cooling plate are respectively connected to the circulation pipeline input port and the circulation pipeline output port for liquid supply.
[0009] Furthermore, the thickness of the fixed plate is greater than that of the movable plate, and a fault-tolerant groove is provided in the middle of the fixed plate, and the fault-tolerant groove is in partial fault-tolerant contact with the movable plate.
[0010] Furthermore, two sets of guide filling layers are installed along the contact end surfaces of the movable plates on the two sets of limiting flanges, and the guide filling layers are made of rubber material.
[0011] Furthermore, the fixed plate and the movable plate are installed with pipeline docking ends along the installation groove, and the output ports of the pipeline docking ends are connected to the circulation pipeline input port and the circulation pipeline output port for liquid supply;
[0012] The two sets of built-in ports of the pipe docking ends are respectively connected to the input port and the output port of the liquid cooling plate for liquid supply.
[0013] Furthermore, the longitudinal bolts are encapsulated with mounting wedges at the intersections along the top limiting flanges.
[0014] The beneficial effects of the utility model are:
[0015] Compared with the prior art, the present application provides a heat dissipation type liquid cooling pipe assembly, which adopts an adjustable steering structure of an adjustable cooling plate, and cooperates with the liquid cooling pipe installed inside the cooling plate to complete the angle adjustment process, so that it can adapt to the installation space that requires angle adjustment to complete the installation process. It solves the technical problem that the same group of plates cannot be installed in one step in the installation space where the adjustment angle needs to be changed. It also solves the technical problem that the installation space that needs to be installed according to the need to adjust the angle needs to be customized and produced to adapt to the cooling plate. The detachable cooling plate structure can realize the replacement of the liquid cooling plate, and the addition of longitudinal bolts of different thicknesses to change the liquid cooling plate with different thickness requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a top view of a heat dissipation type liquid cooling pipe assembly in a bent state according to the present invention.
[0017] Figure 2 This is a front view of a heat dissipation type liquid cooling pipeline assembly of the utility model.
[0018] List of Figure Symbols:
[0019] 1 is the circulation pipeline input port, 2 is the fixed plate, 3 is the installation wedge, 4 is the longitudinal bolt, 5 is the limit flange, 6 is the movable plate, 7 is the pipeline docking end, 8 is the installation groove, 9 is the liquid cooling plate, 10 is the fault-tolerant groove, 11 is the guide filling layer, 12 is the movable ring, and 13 is the circulation pipeline output port. DETAILED DESCRIPTION
[0020] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments. It should be understood that the following specific embodiments are only used to illustrate the present invention and are not used to limit the scope of the present invention.
[0021] like Figure 1 、 Figure 2 The figure shows a heat dissipation liquid cooling pipe assembly, including a liquid cooling plate 9; the liquid cooling plate 9 is an embedded installation structure and is installed in the installation slots 8 of the fixed plate 2 and the movable plate 6. The liquid cooling plate 9 is installed in the installation slots 8 formed on the top of the fixed plate 2 and the movable plate 6. During installation, the fixed plate 2 and the movable plate 6 can serve as a plate protection structure.
[0022] Two sets of limiting flanges 5 are fixedly mounted at the rear of the fixed plate 2. Longitudinal bolts 4 are vertically mounted in the central through-holes of these two sets of limiting flanges 5. A movable collar 12 in the middle of these longitudinal bolts 4 is synchronously connected to the movable plate 6. The limiting flanges 5 are designed to cooperate with the longitudinal bolts 4 to limit the thickness of the fixed plate 2 and movable plate 6, allowing the appropriate thickness of the liquid cooling plate 9, fixed plate 2, and movable plate 6 to be selected based on installation requirements. The movable collar 12 cooperates with the movable plate 6 to achieve adaptive angle adjustment during the adjustment process.
[0023] The liquid inlet and outlet ports of the liquid cooling block 9 are connected to the circulation line input port 1 and the circulation line output port 13 for liquid supply, respectively. The circulation line input port 1 and the circulation line output port 13 are external piping structures. These two sets of piping connect to the liquid inlet and outlet ports of the liquid cooling block 9 for liquid supply, thereby achieving liquid circulation heat exchange.
[0024] like Figure 1 、 Figure 2 As shown, the thickness of the fixed plate 2 is greater than that of the movable plate 6. A tolerance groove 10 is provided in the middle of the fixed plate 2, which allows for partial tolerance of contact with the movable plate 6. The tolerance groove 10 is designed to accommodate the staggered storage of the movable plate 6 and the fixed plate 2 during angle adjustment, preventing collision between the two sets of plates.
[0025] like Figure 1 、 Figure 2 As shown, two sets of guide filling layers 11 are installed along the contact end faces of the two sets of limiting flanges 5, and the guide filling layers 11 are made of rubber. Among them, the design of the guide filling layers 11 is to prevent wear on the end faces of the movable plate 6 and the limiting flanges 5 during the rotation process.
[0026] like Figure 1 、 Figure 2As shown, the fixed plate 2 and the movable plate 6 are installed with pipe docking terminals 7 along the mounting groove 8. The output ports of these pipe docking terminals 7 are connected to the circulation line input port 1 and the circulation line output port 13 for liquid supply. The internal ports of the two sets of pipe docking terminals 7 are connected to the input port and output port of the liquid cooling plate 9 for liquid supply. The pipe docking terminals 7 serve as intermediate liquid supply terminals and can be replaced and maintained promptly if damaged.
[0027] like Figure 1 、 Figure 2 As shown, the longitudinal bolt 4 is encapsulated with a mounting wedge 3 at the intersection along the top limiting flange 5. The mounting wedge 3 serves as a mounting seal.
[0028] It should be noted that the above content only illustrates the technical idea of the utility model and cannot be used to limit the protection scope of the utility model. For ordinary technicians in this technical field, they can make several improvements and modifications without departing from the principles of the utility model. These improvements and modifications all fall within the protection scope of the claims of the utility model.
Claims
1. A heat dissipation liquid cooling pipe assembly, comprising a liquid cooling plate; characterized by: The liquid cooling plate (9) is an embedded installation structure, and the liquid cooling plate (9) is installed in the installation groove (8) of the fixed plate (2) and the movable plate (6); Two sets of limiting flanges (5) are fixedly installed at the tail of the fixed plate (2), longitudinal bolts (4) are vertically installed in the central through holes of the two sets of limiting flanges (5), and the movable collar (12) in the middle of the longitudinal bolts (4) is synchronously connected with the movable plate (6); The liquid infusion port and the liquid discharge port of the liquid cooling plate (9) are respectively connected to the circulation pipeline input port (1) and the circulation pipeline output port (13) for liquid supply.
2. The heat dissipation type liquid cooling pipe assembly according to claim 1, characterized in that: The thickness of the fixed plate (2) is greater than that of the movable plate (6); a fault-tolerant groove (10) is provided in the middle section of the fixed plate (2); and the fault-tolerant groove (10) is in partial fault-tolerant contact with the movable plate (6).
3. The heat dissipation type liquid cooling pipe assembly according to claim 1, characterized in that: Two sets of guide filling layers (11) are installed along the contact end faces of the two sets of limiting flanges (5) and the movable plate (6), and the guide filling layers (11) are made of rubber.
4. The heat dissipation type liquid cooling pipe assembly according to claim 1, characterized in that: The fixed plate (2) and the movable plate (6) are provided with pipeline docking terminals (7) along the installation groove (8), and the output port of the pipeline docking terminal (7) is connected to the circulation pipeline input port (1) and the circulation pipeline output port (13) for liquid supply; The two sets of built-in ports of the pipeline docking end heads (7) are respectively docked with the input port and the output port of the liquid cooling plate (9) for liquid supply.
5. The heat dissipation type liquid cooling pipe assembly according to claim 1, characterized in that: The longitudinal bolt (4) is encapsulated with a mounting wedge (3) at the intersection with the top limiting flange (5).