Active voltage stabilization protection device in water cooling system

Through the fluid replenishment and breathing components of the active pressure stabilization protection device, combined with the magnetic part design, the pressure instability problem caused by temperature changes in the water-cooling system is solved, the stable monitoring of liquid level and the adjustable air pressure are achieved, and the stability and safety of the system are improved.

CN223245080UActive Publication Date: 2025-08-19GUANGLING COUNTY GUOCHANG NEW ENERGY CO LTD
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Patent Information

Application Number
CN202422269465.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-08-19
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The volume of cooling liquid in water-cooled systems expands or contracts due to temperature changes, resulting in unstable pressure inside the system, affecting cooling efficiency and possibly damaging the equipment.

Method used

Active pressure stabilization protection device is adopted, including liquid replenishment components, liquid level sensors and breathing components. By monitoring the liquid level in real time and automatically adjusting, combined with magnetic parts to replace traditional elastic parts, the adjustability of air pressure control is achieved and the system pressure balance is ensured.

Benefits of technology

The stability and safety of the liquid level of the water-cooled system are achieved, and the system failure or overflow caused by too low or too high liquid level is avoided, which extends the service life of the equipment and improves the stability and safety of the system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an active pressure stabilizing protection device in a water cooling system, which relates to the technical field of auxiliary devices of water cooling systems and comprises a main body, a pressure stabilizing device and a pressure stabilizing device. The liquid supplementing assembly is arranged in the main body and used for supplementing liquid into the water cooling system; the breathing assembly is arranged at the top of the main body. According to the device, through cooperation of the liquid supplementing assembly and the liquid level sensor, the liquid level of cooling liquid can be monitored and adjusted in real time while liquid supplementing balance pressure stabilization is conducted on the water cooling system, it is guaranteed that the system cannot lose efficacy due to the too low liquid level, meanwhile, overflow or other safety problems caused by the too high liquid level cannot happen, and the safety of the system is improved. The design of the breathing assembly allows air to enter and exit freely according to needs, pressure balance in the system is kept, pressure fluctuation caused by volume change of cooling liquid due to temperature change is avoided, a magnetic piece replaces a traditional elastic piece to generate repulsive force, and air pressure control of the device can be adjusted.
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Description

Technical Field

[0001] The utility model relates to the technical field of auxiliary devices for water cooling systems, in particular to an active voltage stabilizing protection device in a water cooling system. Background Art

[0002] With the development of science and technology, the demand for heat dissipation for more and more high-performance electronic devices such as servers and high-performance computers is increasing. At the same time, converter cooling also requires a larger cooling system to ensure its practicality. Traditional air cooling can no longer meet the heat dissipation needs of high-density, high-power electronic devices. Therefore, water cooling systems have gradually become mainstream due to their high efficiency.

[0003] However, water cooling systems have some inherent problems, such as the expansion or contraction of the coolant volume due to temperature changes, which may cause unstable internal pressure of the system, thereby affecting cooling efficiency and even damaging the equipment. Therefore, water cooling systems also require a pressure stabilizing protection device to maintain the stability of its water pressure to prevent damage or pressure fluctuations. Utility Model Content

[0004] The present invention aims to solve the shortcomings of the background technology and provide an active voltage stabilizing protection device in a water cooling system, which can assist the traditional water cooling system in active voltage stabilization and improve the overall stability of the system.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an active voltage-stabilizing protection device in a water cooling system, comprising: a main body, which is arranged in a can-shaped structure as a whole; a fluid replenishing component, which is arranged inside the main body and is used to replenish fluid inside the water cooling system; a breathing component, which is arranged at the top of the main body and is used to assist the main body in replenishing and discharging air when entering and exiting water, while preventing dust from entering and exiting; and an installation component, which is arranged at the bottom of the main body and is used to fix the main body on the top of the water cooling system for auxiliary pressure stabilization protection.

[0006] Furthermore, the fluid replenishment component includes: a loading chamber opened inside the main body, a liquid inlet pipe opened on one side of the top of the main body for injecting water into the loading chamber; a liquid outlet pipe provided on one side of the bottom of the main body, a control valve provided inside the liquid outlet pipe.

[0007] Furthermore, the breathing component includes: a breathing port opened at the top of the main body, the breathing port is connected to the inside of the loading chamber; an air inlet pipe and an air outlet pipe opened between the breathing port and the loading chamber, and a base is provided inside the air inlet pipe and the air outlet pipe; a guide rod is provided on one side of the base, and the guide rods in the air inlet pipe and the air outlet pipe are arranged in opposite directions; an electromagnet is provided on the base facing the side of the closing block, and a magnet that repeles the electromagnet is provided inside the closing block.

[0008] Furthermore, the mounting assembly includes: a support platform provided at the bottom of the main body, the support platform being in a truncated cone-shaped structure as a whole; and two mounting plates provided at the bottom of the support platform.

[0009] Furthermore, a detection tube is provided on one side of the loading chamber, the interior of the detection tube is communicated with the interior of the loading chamber, and an upper liquid level sensor and a lower liquid level sensor are respectively provided on the top and bottom of the detection tube.

[0010] Furthermore, a filter is provided inside the breathing port, and the filter is a high-density filter with a mesh size of 800.

[0011] Furthermore, a support plate is provided on one side of the bottom of the mounting plate, and an "L"-shaped structure is formed between the support plate and the mounting plate.

[0012] Furthermore, a control panel is provided on one side of the main body, and the control panel is electrically connected to the control valve, the upper liquid level sensor, the lower liquid level sensor and the electromagnet respectively.

[0013] The utility model provides an active voltage stabilizing protection device in a water cooling system, which has the following beneficial effects:

[0014] The advantage of the present invention is that, through the cooperation of the liquid filling component and the liquid level sensor, it can simultaneously perform liquid filling and pressure stabilization for the water cooling system and also monitor and adjust the coolant level in real time, thereby ensuring that the system will not fail due to too low a liquid level, and will not cause overflow or other safety problems due to too high a liquid level.

[0015] Secondly, the design of the breathing component allows air to flow in and out freely as needed, maintaining the pressure balance within the system and avoiding pressure fluctuations caused by changes in coolant volume due to temperature changes. The repulsive force generated by magnetic parts instead of traditional elastic parts can make the air pressure control of the device adjustable. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the utility model.

[0017] Figure 2 It is a cross-sectional view of the overall structure of the utility model.

[0018] Figure 3 This is a schematic diagram of the mounting plate structure of the present utility model.

[0019] Figure 4 This is a schematic diagram of the closed block structure of the present utility model.

[0020] Figure 5 For the utility model Figure 2A schematic diagram of the structure at point A in FIG.

[0021] Figure 1-5 Middle: 1-main body; 101-loading chamber; 102-liquid outlet pipe; 103-control valve; 104-liquid inlet pipe; 105-detection tube; 106-upper liquid level sensor; 107-lower liquid level sensor; 2-support platform; 201-mounting plate; 202-support plate; 203-mounting port; 3-breathing port; 301-filter; 302-inlet pipe; 303-outlet pipe; 304-base; 305-electromagnet; 306-guide rod; 307-closing block; 308-magnet; 4-control panel. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts are within the scope of protection of this application.

[0023] The disclosure below provides many different embodiments or examples for realizing different structures of the present application. In order to simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, they are merely examples and are not intended to limit the present application. In addition, the present application may repeat reference numbers and / or reference letters in different examples, and such repetition is for the purpose of simplicity and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present application provides examples of various specific processes and materials, but those of ordinary skill in the art will appreciate the application of other processes and / or the use of other materials.

[0024] An embodiment of the present application provides an active voltage-stabilizing protection device in a water-cooling system. The active voltage-stabilizing protection device in the water-cooling system can be realized through the cooperation of a fluid replenishment component and a liquid level sensor. While replenishing the fluid and balancing the pressure for the water-cooling system, it can also monitor and adjust the liquid level of the coolant in real time to ensure that the system will not fail due to a too low liquid level, and will not cause overflow or other safety problems due to a too high liquid level. The design of the breathing component allows air to freely enter and exit as needed, maintaining the pressure balance inside the system, and avoiding pressure fluctuations caused by changes in the volume of the coolant caused by temperature changes. The repulsive force generated by the magnetic component instead of the traditional elastic component can make the air pressure control of the device adjustable. The following is a detailed description of the active voltage-stabilizing protection device in the water-cooling system. It should be noted that the description order of the following embodiments does not limit the preferred order of the embodiments.

[0025] The present application is described in detail below with reference to the accompanying drawings and specific implementation methods.

[0026] Example 1

[0027] See also Figure 1-5 In this embodiment, an active voltage stabilizing protection device in a water cooling system is provided, comprising: a main body 1, which is configured as a can-shaped structure; a liquid replenishing component, which is arranged inside the main body 1 and is used to replenish liquid inside the water cooling system; a breathing component, which is arranged on the top of the main body 1 and is used to assist the main body 1 in replenishing and discharging air when entering and exiting water, while preventing dust from entering and exiting; and a mounting component, which is arranged on the bottom of the main body 1 and is used to fix the main body 1 on the top of the water cooling system for auxiliary voltage stabilizing protection;

[0028] During use, the device uses the main body 1 as an overall can-shaped structure, with a rehydration component, a breathing component and an installation component provided inside. The rehydration component is responsible for injecting water into the loading chamber 101 when the water cooling system needs it to ensure the stability of the system's liquid level. The breathing component automatically adjusts the air in and out during the process of water in and out to maintain internal pressure balance and prevent dust from entering. The device can effectively maintain the stability of the liquid level of the water cooling system and avoid failures caused by too low a liquid level. The design of the breathing component improves the sealing of the system and extends the service life of the equipment.

[0029] Furthermore, the liquid replenishing assembly includes: a loading chamber 101 provided inside the main body 1, a liquid inlet pipe 104 provided on one side of the top of the main body 1 for injecting water into the loading chamber 101; a liquid outlet pipe 102 provided on one side of the bottom of the main body 1, a control valve 103 provided inside the liquid outlet pipe 102;

[0030] During use, the loading chamber 101 is connected to an external water source via a liquid inlet pipe 104, allowing users to easily add water. The liquid outlet pipe 102 is equipped with a control valve 103, which can be opened or closed as needed to control the flow of liquid. This height difference provides a certain static pressure for the system. When the system water temperature rises, the coolant expands and enters the high-level water tank. When the system water temperature drops, the coolant contracts, and the coolant in the high-level water tank is replenished and enters the system. Because the liquid level changes minimally when the coolant expands or contracts, the high-level water tank can provide a stable static pressure for the system.

[0031] Furthermore, a detection tube 105 is provided on one side of the loading chamber 101. The interior of the detection tube 105 is in communication with the interior of the loading chamber 101. An upper liquid level sensor 106 and a lower liquid level sensor 107 are provided at the top and bottom of the detection tube 105, respectively.

[0032] During use, the detection tube 105 is connected to the loading chamber 101, and the liquid level sensors 106 and 107 monitor the liquid level in real time. When the liquid level is too high or too low, the sensor will send a signal. After receiving the signal, the control panel 4 can automatically control the opening and closing of the control valve 103 and issue a warning to prevent excessive liquid accumulation or too little water inside. The real-time monitoring and feedback mechanism is used to improve the safety of the system and reduce the risk of human operational errors.

[0033] Furthermore, the breathing assembly includes: a breathing port 3 opened at the top of the main body 1, the breathing port 3 being in communication with the interior of the loading chamber 101; an air inlet pipe 302 and an air outlet pipe 303 opened between the breathing port 3 and the loading chamber 101, each of which is provided with a base 304; a guide rod 306 provided on one side of the base 304, the guide rods 306 in the air inlet pipe 302 and the air outlet pipe 303 being arranged in opposite directions; an electromagnet 305 provided on the base 304 facing the side of the closing block 307, the closing block 307 being provided with a magnet 308 that magnetically repels the electromagnet 305;

[0034] During use, the breathing port 3 is connected to the loading chamber 101 to ensure that air can flow in and out smoothly when liquid is injected or discharged. The two oppositely arranged bases 304 cooperate with the sealing block 307 to seal the air inlet pipe 302 and the air outlet pipe 303. When the internal air pressure is too low, that is, when there is too little water inside, the external air pressure will squeeze the sealing block 307 in the air inlet pipe 302, causing it to move towards the electromagnet 305 and open the air inlet pipe 302, allowing the external air to enter the loading chamber 101 through the air inlet pipe 302. On the contrary, when there is too much liquid inside the loading chamber 101 and the internal air pressure is too high, the sealing block 307 in the air outlet pipe 303 will move upward and resist the repulsive force of the electromagnet 305, opening the air outlet pipe 303 to discharge part of the internal high-pressure air, thereby preventing the internal air pressure of the device from being too high or too low and being damaged. Using the electromagnet 305 instead of the traditional spring for cooperative pushing can prevent the occurrence of insufficient pressure due to aging of the spring. At the same time, using the electromagnet 305 instead of the spring can also provide an adjustable repulsive force, thereby improving the adjustability of the device.

[0035] Furthermore, a filter 301 is provided inside the breathing port 3. The filter 301 is a high-density filter with an 800-mesh size. During use, the filter 301 can filter the air in and out of the breathing port 3 to prevent external dust from entering the device and damaging the water flow system.

[0036] Furthermore, a control panel 4 is provided on one side of the main body 1, and the control panel 4 is electrically connected to the control valve 103, the upper liquid level sensor 106, the lower liquid level sensor 107 and the electromagnet 305 respectively. The control panel 4 can be used to control the control valve 103, the upper liquid level sensor 106, the lower liquid level sensor 107 and the electromagnet 305, thereby improving the convenience of use of the device.

[0037] Example 2

[0038] Based on Example 1, the installation component includes: a support platform 2 provided at the bottom of the main body 1, and the support platform 2 is an overall truncated cone-shaped structure; two mounting plates 201 provided at the bottom of the support platform 2. The installation component fixes the main body 1 on the top of the water cooling system through the support platform 2 and the mounting plate 201, ensuring stability, easy installation and maintenance, and improving the user experience.

[0039] Furthermore, a support plate 202 is provided on one side of the bottom of the mounting plate 201, and an "L"-shaped structure is formed between the support plate 202 and the mounting plate 201. During use, the "L"-shaped structure of the support plate 202 enhances the overall stability and disperses gravity. The strengthened structural design ensures the stability of the device during operation and reduces the risk of damage caused by vibration.

[0040] In the above embodiments, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0041] The above is a detailed introduction to an active voltage stabilizing protection device in a water cooling system provided in an embodiment of the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the technical solutions and core ideas of the present application. Ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. An active voltage stabilizing protection device in a water cooling system, characterized in that: include: A main body (1), wherein the main body (1) is configured as a can-shaped structure; A fluid replenishing component, which is arranged inside the main body (1) and is used to replenish fluid inside the water cooling system; A breathing assembly is provided on the top of the main body (1) and is used to assist the main body (1) in replenishing and discharging air when entering and exiting water, while preventing dust from entering and exiting; and An installation component is provided at the bottom of the main body (1) and is used to fix the main body (1) on the top of the water cooling system for voltage stabilization and auxiliary protection.

2. The active voltage stabilizing protection device in the water cooling system according to claim 1, characterized in that: The fluid infusion component includes: A loading chamber (101) is provided inside the main body (1), and a liquid inlet pipe (104) is provided on one side of the top of the main body (1) for injecting water into the loading chamber (101); A liquid outlet pipe (102) is provided on one side of the bottom of the main body (1), and a control valve (103) is provided inside the liquid outlet pipe (102).

3. The active voltage stabilizing protection device in the water cooling system according to claim 2, characterized in that: The breathing assembly comprises: A breathing port (3) is provided on the top of the main body (1), and the breathing port (3) is in communication with the interior of the loading chamber (101); An air inlet pipe (302) and an air outlet pipe (303) are provided between the breathing port (3) and the loading chamber (101), and a base (304) is provided inside the air inlet pipe (302) and the air outlet pipe (303); A guide rod (306) is provided on one side of the base (304), and the guide rods (306) in the air inlet pipe (302) and the air outlet pipe (303) are arranged in opposite directions; An electromagnet (305) is provided on the base (304) facing the side of the closing block (307), and a magnet (308) is provided inside the closing block (307) to repel the electromagnet (305) magnetically.

4. The active voltage stabilizing protection device in a water cooling system according to claim 1, characterized in that: The installation components include: A support platform (2) is provided at the bottom of the main body (1), and the support platform (2) is provided in a truncated cone-shaped structure as a whole; Two mounting plates (201) are provided at the bottom of the support platform (2).

5. The active voltage stabilizing protection device in the water cooling system according to claim 2, characterized in that: A detection tube (105) is provided on one side of the loading chamber (101), the interior of the detection tube (105) is communicated with the interior of the loading chamber (101), and an upper liquid level sensor (106) and a lower liquid level sensor (107) are provided on the top and bottom of the detection tube (105), respectively.

6. The active voltage stabilizing protection device in a water cooling system according to claim 3, characterized in that: A filter screen (301) is provided inside the breathing port (3), and the filter screen (301) is a high-density filter screen with 800 meshes.

7. The active voltage stabilizing protection device in a water cooling system according to claim 4, characterized in that: A support plate (202) is further provided on one side of the bottom of the mounting plate (201), and an "L"-shaped structure is formed between the support plate (202) and the mounting plate (201).

8. The active voltage stabilizing protection device in a water cooling system according to claim 2, characterized in that: A control panel (4) is provided on one side of the main body (1), and the control panel (4) is electrically connected to the control valve (103), the upper liquid level sensor (106), the lower liquid level sensor (107) and the electromagnet (305) respectively.