Liquid water cooling device
By designing a liquid water cooling device that includes cooling components, water supply components and water circulation pump components, the problem of the water heat not being discharged quickly is solved, and efficient heat dissipation effect and normal use of the device are achieved.
Patent Information
- Application Number
- CN202422402133.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In existing liquid water cooling devices, the heat of the water cannot be discharged quickly, resulting in poor cooling effect and may cause the module to be overheated and short-circuited.
A liquid water cooling device is designed, including cooling components, water supply components and water circulation water pump components. The cooling water is sent into the cooling components through the circulating water pump and discharged directly outside the container to avoid hot water circulation. Metal water supply pipes and water pump components are used to improve heat dissipation efficiency.
It realizes efficient heat dissipation of the water-cooled device, avoids module overheating, and ensures the normal use of the device and the cooling effect of electronic products.
Smart Images

Figure CN223157481U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water-cooled heat dissipation equipment, in particular to a liquid water-cooling device. Background Art
[0002] When electronic products are working, they will generate a certain amount of heat inside. In the traditional situation, heat is dissipated naturally through the ventilation openings. However, with the improvement of the performance of electronic products, the power consumption and heat generated are getting higher and higher. In some cases where extreme heat dissipation requirements are needed, traditional air-cooled heat dissipation sometimes cannot meet the requirements, so some external heat dissipation devices need to be used to assist heat dissipation. For example, in Chinese Patent CN211720297U, a water-cooled cooling charging device supporting wireless charging function mainly includes a water-cooling module, a wireless charging coil module, a wireless charging circuit module, a housing, a water container with a water pump for circulation, and a water pipe. The wireless charging coil module arranged in the water-cooling module is used to wirelessly charge a mobile phone or a tablet, and the water-cooling module is used to cool down the mobile phone or the tablet.
[0003] When the above structure is used for heat dissipation and cooling of electronic products, water is sent to the water-cooling module through the circulating water container, and the heat generated by the electronic products is transferred to the water through the water-cooling module. Subsequently, the water is sent back to the circulating water container through the water-cooling module. In this way, the water with heat will be continuously circulated in the circulating water container and the water-cooling module, which will cause the heat in the water body to be continuously transferred to the two modules, and the heat in the water body cannot be quickly discharged to the outside, thus affecting the cooling effect of the water-cooling device on the electronic products. Moreover, it will also cause the two modules to continuously heat up, and it is easy to have problems such as overheating and short circuit, which will affect the normal use of the water-cooling device. Summary of the Utility Model
[0004] In order to overcome the defects existing in the prior art, the utility model provides a liquid water-cooling device.
[0005] The technical solution adopted by the utility model to solve its technical problems is: a liquid water-cooling device, including a cooling component, an interface is arranged on the side of the cooling component, a water delivery component is arranged in the interface, a first water delivery pipe and a second water delivery pipe are arranged inside the water delivery component, one ends of the first water delivery pipe and the second water delivery pipe are communicated with the cooling component, a water circulation water pump component is arranged at the end of the water delivery component far away from the cooling component, an inlet cavity and an outlet cavity are opened inside the water circulation water pump component, and the other ends of the first water delivery pipe and the second water delivery pipe extend into the water circulation water pump component and are respectively communicated with the inlet cavity and the outlet cavity.
[0006] It should be noted that the cooling component includes a housing and a water delivery pipe. The water delivery pipe is arranged inside the housing. The water inlet of the water delivery pipe is connected to the water outlet end of the first water delivery pipe, and the water outlet of the water delivery pipe is connected to the interface of the second water delivery pipe. Both the housing and the water delivery pipe are made of metal.
[0007] For a further description of this solution, the water circulation pump component includes a housing and a water pump. The housing is arranged at one end of the water delivery component away from the cooling component. An inlet chamber and an outlet chamber are opened inside the housing. The inlet chamber and the outlet chamber are separated by a water blade cover. The water pump is arranged inside the inlet chamber. A first through hole and a second through hole are opened on one side surface of the housing away from the water delivery component. The first through hole is communicated with the inlet chamber, and the second through hole is communicated with the outlet chamber.
[0008] Specifically, a first opening is opened on the bottom surface of the water blade cover, and the first opening is communicated with the inlet chamber;
[0009] For a further description of this solution, a face cover is arranged on one side of the housing away from the water delivery component. A partition is arranged on the inner surface of the face cover. The top end of the partition abuts against the bottom surface of the water blade cover to form a water guiding chamber, and the water guiding chamber is communicated with the outlet chamber.
[0010] Specifically, a water outlet is opened on the outer surface of the face cover, and the water outlet is communicated with the water guiding chamber. An inlet is opened on the bottom surface of the face cover, and the inlet faces the first opening. A plurality of strip-shaped inlets are also opened on the bottom surface of the face cover;
[0011] Subsequently, a convex block is arranged on the outer surface of the housing, and a clamping position opening corresponding to the convex block is opened on the outer surface of the face cover. The clamping position opening and the convex block are clamped with each other.
[0012] Preferably, a plurality of sucker parts are arranged on one side surface of the face cover away from the housing.
[0013] The beneficial effects of the present utility model are as follows: When this device is in use, first place the cooling component on the back of the electronic product, so that the heat generated by the electronic product can be transferred into the cooling component. Subsequently, put the water circulation water pump component into a container filled with water, and then start the water circulation water pump component, so that the water in the container can be sent into the water delivery component through the water circulation water pump component. Subsequently, send the cooling water into the cooling component through the first water delivery pipe of the water delivery component, so that the cooling component with heat can be cooled by the cooling water, thereby realizing the heat dissipation operation of the electronic product. Subsequently, the water can be sent back into the interior of the water circulation water pump component through the second water delivery pipe of the water delivery component, and then the water is discharged outside the water circulation water pump component in the water outlet cavity. Subsequently, repeat the above operations, so that the water in the container filled with water can be continuously circulated to the cooling component. By adopting this method, the water with heat can be directly discharged into the container filled with water, and the heat in the water body can be quickly discharged to the outside, ensuring the cooling effect of the water cooling device on the electronic product. At the same time, it can also prevent the water with heat from continuously circulating in the cooling component and the water circulation water pump component, avoiding the situation that the cooling component and the water circulation water pump component have too high temperatures, and ensuring the normal use of the water cooling device. Brief Description of the Drawings
[0014] Figure 1 It is a schematic diagram of the overall structure of the liquid water cooling device of the present utility model;
[0015] Figure 2 It is a cross-sectional view of the overall structure of the liquid water cooling device of the present utility model;
[0016] Figure 3 It is a water flow direction diagram of the liquid water cooling device of the present utility model;
[0017] Figure 4 It is a schematic diagram of the overall structure of the water circulation water pump component, the face cover and the suction cup component of the present utility model;
[0018] Figure 5 It is an exploded view of the overall structure of the water circulation water pump component, the face cover and the suction cup component of the present utility model;
[0019] Figure 6 It is a schematic diagram of the structure of the water circulation water pump component of the present utility model;
[0020] Figure 7 It is a schematic diagram of the internal structure of the water circulation water pump component of the present utility model;
[0021] Figure 8 It is a schematic diagram of the structure of the face cover of the present utility model Figure 1 ;
[0022] Figure 9 It is a schematic diagram of the structure of the face cover of the present utility model Figure 2 。
[0023] As shown in the figure: cooling component 1, housing 11, water delivery pipe 12, water supply component 2, first water delivery pipe 21, second water delivery pipe 22, water circulation pump component 3, housing 31, bump 311, water pump 32, water blade cover 33, first opening 331, first through hole 34, second through hole 35, water inlet chamber 4, water outlet chamber 5, face cover 6, water outlet 61, water inlet 62, strip-shaped water inlet 63, clamping port 64, partition 65, water guiding chamber 7, suction cup component 8, interface 9. Detailed implementation manners
[0024] The following further describes the detailed implementation manners of the present utility model with reference to the accompanying drawings. It should be noted here that the description of these implementation manners is for helping to understand the present utility model, but does not constitute a limitation to the present utility model. In addition, the technical features involved in the various implementation manners of the present utility model described below can be combined with each other as long as they do not conflict with each other.
[0025] As shown in the attached Figure 1 , 2 As shown in Figures 3, 4 and 5, a liquid water cooling device provided by the present utility model includes a cooling component 1. An interface 9 is provided on the side of the cooling component 1. A water supply component 2 is provided at the interface 9. A first water delivery pipe 21 and a second water delivery pipe 22 are provided inside the water supply component 2. One ends of the first water delivery pipe 21 and the second water delivery pipe 22 are connected to the cooling component 1 in a communicating manner. A water circulation pump component 3 is provided at the end of the water supply component 2 away from the cooling component 1. An inlet chamber 4 and an outlet chamber 5 are formed inside the water circulation pump component 3. The other ends of the first water delivery pipe 21 and the second water delivery pipe 22 extend into the water circulation pump component 3 and are respectively connected to the inlet chamber 4 and the outlet chamber 5 in a communicating manner.
[0026] It should be noted that the cooling component 1 of the present device includes a housing 11 and a water delivery pipe 12. The water delivery pipe 12 is arranged inside the housing 11. The water inlet of the water delivery pipe 12 is connected to the outlet end of the first water delivery pipe 21. The water outlet of the water delivery pipe 12 is connected to the interface of the second water delivery pipe 22. Both the housing and the water delivery pipe are made of metal materials.
[0027] When this device is in use, place the cooling component 1 on the back of the electronic product. When the electronic product is in use, the heat generated by the electronic product can be transferred to the cooling component 1. Subsequently, throw the water circulation pump component 3 into a water-filled container. By starting the water circulation pump component 3, the cooling water in the container can be pumped into the water delivery component 2 through the water circulation pump component 3. Subsequently, the cooling water is sent into the water delivery pipeline 12 inside the cooling component 1 through the first water delivery pipe 21 of the water delivery component 2. In this way, the entire cooling component 1 with heat can be cooled by the cooling water, thereby realizing the heat dissipation operation of the electronic product. Subsequently, the cooling water with heat can be sent back into the water circulation pump component 3 through the second water delivery pipe of the water delivery component 2, and then discharged outside the water circulation pump component 3 through the water outlet cavity 5. Subsequently, by continuously repeating the above operations, the water in the water-filled container can be continuously circulated into the cooling component 1. By adopting this method, the water with heat can be directly discharged into the water-filled container, and the heat in the water body can be quickly discharged to the outside, ensuring the cooling effect of the water cooling device on the electronic product. At the same time, it can also prevent the water with heat from continuously circulating in the cooling component 1 and the water circulation pump component 3, avoiding the situation where the cooling component 1 and the water circulation pump component 3 have too high a temperature and ensuring the normal use of the water cooling device.
[0028] As shown in Figure 1 , 2 , 3, 4, 5, 6, 7, 8 and 9, the water circulation pump component 3 includes a housing 31 and a water pump 32. The housing 31 is arranged at one end of the water delivery component 2 away from the cooling component 1. The water inlet cavity 4 and the water outlet cavity 5 are opened inside the housing 31. The water inlet cavity 4 and the water outlet cavity 5 are separated by a water blade cover 33. The water pump 32 is arranged inside the water inlet cavity 4. A first through hole 34 and a second through hole 35 are opened on one side surface of the housing 31 away from the water delivery component 2. The first through hole 34 is communicated with the water inlet cavity 4, and the second through hole 35 is communicated with the water outlet cavity 5. A first opening 331 is opened on the bottom surface of the water blade cover 33, and the first opening 331 is communicated with the water inlet cavity 4;
[0029] Subsequently, a face cover 6 is arranged on one side of the housing 31 away from the water delivery component 2. A partition 65 is arranged on the inner surface of the face cover 6. The top end of the partition 65 abuts against the bottom surface of the water blade cover 33, thereby forming a water guide cavity 7. The water guide cavity 7 is communicated with the water outlet cavity 5. A water outlet 61 is opened on the outer surface of the face cover 6, and the water outlet 61 is communicated with the water guide cavity 7. A water inlet 62 is opened on the bottom surface of the face cover 6, and the water inlet 62 faces the first opening 331. A plurality of strip-shaped water inlets 63 are also opened on the bottom surface of the face cover 6.
[0030] When the pumping operation is required: Place the water circulation pump component 3 into the water-containing container. Subsequently, by starting the water pump 32, the water pump 32 can pump water from the bottom surface of the face cover 6 into the water inlet 62 and then into the first opening 331 of the water blade cover 33. Subsequently, it is sent into the first through hole 34 from the first opening 331 and finally enters the water inlet cavity 4. The water inlet cavity 4 is connected to the first water pipe 21, so that the cooling water can be sent to the outlet of the first water pipe 21. Subsequently, the water can be sent into the water delivery pipe 12 inside the cooling component 1 through the first water pipe 21;
[0031] Subsequently, the water can flow back into the second water pipe 22 from the water delivery pipe 12. Subsequently, it is discharged into the water outlet cavity 5 through the water outlet end of the second water pipe 22. The water guide cavity 7 is connected to the water outlet cavity 5, so that the water flow can enter the water guide cavity 7. Finally, the water outlet 61 is connected to the water guide cavity 7, so that the water can be discharged from the water outlet 61 of the face cover 6, and thus the water can flow back into the container, and the heated water can be directly discharged into the water-containing container, and the heat in the water body can be quickly discharged to the outside, ensuring the cooling effect of the water cooling device on the electronic product.
[0032] The outer surface of the housing 31 is provided with a convex block 311, and a clamping position opening 64 corresponding to the convex block 311 is opened on the outer surface of the face cover 6. The clamping position opening 64 and the convex block 311 are clamped with each other. The face cover 6 can be quickly disassembled by using the clamping method, so that the internal parts of the water circulation pump component 3 can be conveniently overhauled.
[0033] Preferably, a plurality of sucker parts 8 are arranged on the side surface of the face cover 6 away from the housing 31, so that the water circulation pump component 3 can be adsorbed to the inner wall of the container through the plurality of sucker parts 8, which is more convenient for the water circulation pump component 3 to work.
[0034] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the described embodiments. For those skilled in the art, without departing from the principle and spirit of the present invention, various changes, modifications, substitutions and variations of these embodiments still fall within the protection scope of the present invention.
Claims
1. A liquid water cooling device, comprising a cooling assembly (1), characterized in that: An interface (9) is provided on the side of the cooling component (1), and a water supply component (2) is provided at the interface (9). A first water pipe (21) and a second water pipe (22) are arranged inside the water supply component (2). One ends of the first water pipe (21) and the second water pipe (22) are communicated with the cooling component (1). A water circulation pump component (3) is provided at the end of the water supply component (2) away from the cooling component (1). An inlet chamber (4) and an outlet chamber (5) are formed inside the water circulation pump component (3). The other ends of the first water pipe (21) and the second water pipe (22) extend into the water circulation pump component (3) and are respectively communicated with the inlet chamber (4) and the outlet chamber (5).
2. The liquid water cooling device according to claim 1, characterized in that: The water circulation pump component (3) includes a housing (31) and a water pump (32). The housing (31) is arranged at the end of the water supply component (2) away from the cooling component (1). The inlet chamber (4) and the outlet chamber (5) are formed inside the housing (31). The inlet chamber (4) and the outlet chamber (5) are separated by a water blade cover (33). The water pump (32) is arranged inside the inlet chamber (4). A first through hole (34) and a second through hole (35) are formed on one side surface of the housing (31) away from the water supply component (2). The first through hole (34) is communicated with the inlet chamber (4), and the second through hole (35) is communicated with the outlet chamber (5).
3. The liquid water cooling device according to claim 2, characterized in that: A first opening (331) is formed on the bottom surface of the water blade cover (33), and the first opening (331) is communicated with the inlet chamber (4).
4. A liquid water cooling device according to claim 2, characterized in that: A face cover (6) is arranged on one side of the housing (31) away from the water supply component (2). A partition plate (65) is arranged on the inner surface of the face cover (6). The top end of the partition plate (65) abuts against the bottom surface of the water blade cover (33), thereby forming a water guide chamber (7). The water guide chamber (7) is communicated with the outlet chamber (5).
5. A liquid water cooling device according to claim 4, characterized in that: An outlet (61) is formed on the outer surface of the face cover (6), and the outlet (61) is communicated with the water guide chamber. An inlet (62) is formed on the bottom surface of the face cover (6), and the inlet (62) faces the first opening (331). A plurality of strip-shaped inlets (63) are also formed on the bottom surface of the face cover (6).
6. A liquid water cooling device according to claim 4, characterized in that: A convex block (311) is arranged on the outer surface of the housing (31). A clamping position opening (64) corresponding to the convex block (311) is formed on the outer surface of the face cover (6), and the clamping position opening (64) is clamped with the convex block (311).
7. The liquid water cooling device according to claim 5, characterized in that: A plurality of suction cup components (8) are arranged on one side surface of the face cover (6) away from the housing (31).
Citation Information
Patent Citations
Water-cooling charging device supporting wireless charging function
CN211720297U