Coil pipe structure capable of preventing liquid leakage and efficiently dissipating heat
By designing cross-heat-dissipation copper tubes and connection sealing mechanisms in the liquid-cooled cooling system, the problem of insufficient leakage protection and heat dissipation efficiency of the liquid-cooled cooling system is solved, and efficient and leak-proof heat dissipation effect is achieved.
Patent Information
- Application Number
- CN202421808779.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The existing liquid-cooled heat dissipation system has shortcomings in liquid leakage prevention and heat dissipation efficiency, especially the welding or threaded connection of pipeline joints can easily lead to leakage and inconvenient use.
A coil structure with high efficiency of leakage-proof and efficient heat dissipation is designed. Crossed heat dissipation copper tubes are arranged inside the equipment liquid tank filled with non-conductive dielectric, and connected to the connecting sealing mechanism through the outer-inch connection wire head. The sealing is achieved by using a structure such as the sealing sleeve and the pushing ring block to avoid leakage.
It effectively prevents liquid leakage, improves heat dissipation efficiency, reduces the flow resistance of coolant, is simple and fast to operate and easy to use.
Smart Images

Figure CN222852547U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of heat dissipation of electronic equipment, and in particular to a coil structure that is leak-proof and highly efficient in heat dissipation. Background Art
[0002] With the development of electronic equipment and other technologies, the demand for heat dissipation systems is getting higher and higher. The traditional air-cooled heat dissipation system has certain limitations in heat dissipation efficiency, while the liquid-cooled heat dissipation system is valued for its high efficiency heat dissipation capacity. However, the existing liquid-cooled heat dissipation system still has room for improvement in terms of leakage prevention and heat dissipation efficiency. The utility model provides a coil structure with leakage prevention and high efficiency heat dissipation.
[0003] Existing liquid cooling achieves the effect of cooling electronic equipment by flowing liquid inside pipes, but the pipes for liquid circulation are mostly welded, which may cause leakage, and the pipe joints are mostly welded or threaded. Long-term use may cause thread slippage and leakage, which is inconvenient to use.
[0004] Therefore, the present application provides a coil structure that prevents liquid leakage and efficiently dissipates heat to solve the above problems. Utility Model Content
[0005] The present application provides a coil structure that is leak-proof and has high efficiency in heat dissipation, and is intended to solve the problems raised in the background technology that most of the existing liquid circulation pipes are welded and may leak, and that most of the pipe joints are welded or threaded, and that after long-term use, the threads may slip and cause leakage, which is inconvenient to use.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical solutions: a coil structure with anti-leakage and efficient heat dissipation, comprising at least one group of cross-arranged heat dissipation copper tubes arranged inside a liquid pool of an equipment filled with a non-conductive medium, one end of the bottom of the plurality of groups of heat dissipation copper tubes being welded with an external inch connecting thread head, and one end of the two groups of external inch connecting thread heads extending to the outside of the liquid pool being provided with a connecting sealing mechanism;
[0007] Preferably, in order to solve the problem that most of the pipes for liquid circulation are welded and may leak, and most of the pipe joints are welded or threaded, long-term use may lead to thread slippage and leakage, which is inconvenient to use, the connecting sealing mechanism includes a connecting pipe fixedly connected to the two groups of the external inch connecting thread heads, the interior of the connecting pipe extending to the outside of the liquid pool is provided with a threaded connecting groove, and the exterior of the connecting pipe extending to the outside of the liquid pool is provided with a sealing sleeve, the sealing sleeve is slidably connected to the connecting pipe, and the connecting pipe is threadedly connected to the external device through the threaded connecting groove provided in the connecting pipe, and then the sealing sleeve is pushed to move outside the connecting pipe, and the sealing sleeve is moved to the connection sealing position between the connecting pipe and the external device, and the connection is secondary sealed by the sealing sleeve to avoid connection leakage. The operation is simple and fast, and the use is convenient.
[0008] Preferably, in order to improve the sealing performance of the sealing sleeve, a placement groove is opened inside the sealing sleeve, and a sealing ring is arranged inside the placement groove. The placement groove arranged inside the sealing sleeve can facilitate the disassembly and installation of the sealing ring, thereby facilitating the replacement of the sealing ring. The sealing ring is made of soft rubber material, and the sealing performance of the sealing sleeve can be improved by the arranged sealing ring.
[0009] Preferably, in order to solve the problem of fixing the sealing sleeve, the sealing sleeve is fixedly connected with a pushing ring block on one side close to the external inch connecting thread head, and the pushing ring block is fixedly connected with elastic plug-in blocks on both ends of the side close to the external inch connecting thread head. Two groups of positioning blocks are fixedly connected on both sides of the two groups of elastic plug-in blocks. By sliding the ring block, the pushing ring block pushes the elastic plug-in blocks arranged on both sides to move, so that the elastic plug-in blocks are plugged into the fixing grooves arranged inside the fixed ring block, and the positioning blocks arranged on both sides of the elastic plug-in block are clamped with the positioning grooves inside the fixing grooves. The positioning blocks and the positioning grooves are both arranged in an arc shape, which is convenient for fixing the pushing ring block to the side of the fixing ring block, and can facilitate secondary sealing of the connection after threaded connection with the external device to avoid connection leakage. The operation is simple and fast, and it is easy to use.
[0010] Preferably, in order to solve the problem of convenient operation, a fixed ring block is fixedly connected to the outside of one end of the connecting tube close to the outer inch connecting thread head, and fixing grooves compatible with the elastic plug-in blocks are provided on both sides of the interior of the fixing ring block, and positioning grooves compatible with the positioning blocks are provided inside the two groups of fixing grooves. The pushing ring block pushes the elastic plug-in blocks arranged on both sides to move, so that the elastic plug-in blocks are plugged into the fixing grooves arranged inside the fixing ring block, and the positioning blocks arranged on both sides of the elastic plug-in block are clamped with the positioning grooves inside the fixing grooves. The positioning blocks and the positioning grooves are both arranged in an arc shape, which is convenient for fixing the pushing ring block to the side of the fixing ring block.
[0011] Preferably, the elastic plug-in block is plugged into the fixing groove, and the positioning block is snap-fitted into the positioning groove.
[0012] The connection sealing mechanism connects the connection pipe with the external device through a threaded connection groove provided inside the connection pipe, and then pushes the sealing sleeve to move outside the connection pipe, moves the sealing sleeve to the connection sealing position between the connection pipe and the external device, and performs secondary sealing on the connection position through the sealing sleeve to avoid connection leakage. The operation is simple and fast, and the use is convenient. The heat dissipation copper tubes are arranged in an S shape, and the heat dissipation copper tubes are connected in parallel and arranged crosswise, which can improve the heat dissipation efficiency. At the same time, due to the curved structure of the heat dissipation copper tubes, the flow resistance of the coolant can be effectively reduced, and the heat dissipation effect can be improved.
[0013] The connection sealing mechanism pushes the ring block by sliding, so that the pushing ring block pushes the elastic plug-in blocks arranged on both sides to move, so that the elastic plug-in blocks are plugged into the fixing grooves arranged inside the fixing ring block, and the positioning blocks arranged on both sides of the elastic plug-in block are clamped into the positioning grooves inside the fixing grooves. The positioning blocks and the positioning grooves are both arranged in an arc shape, which is convenient for fixing the pushing ring block to the side of the fixing ring block, and can facilitate secondary sealing of the connection after the threaded connection with the external device to avoid connection leakage. The operation is simple and fast, and it is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a three-dimensional structural schematic diagram of a coil structure that prevents liquid leakage and efficiently dissipates heat;
[0015] Figure 2 For this utility model Figure 1 Schematic diagram of the structure at A in the middle;
[0016] Figure 3 A schematic diagram of the three-dimensional structure of a sealed sleeve of a coil structure that prevents liquid leakage and efficiently dissipates heat;
[0017] Figure 4 It is a schematic diagram of a top view of a coil structure that prevents liquid leakage and efficiently dissipates heat;
[0018] Figure 5 The side view schematic diagram of a coil structure that prevents liquid leakage and efficiently dissipates heat.
[0019] In the figure:
[0020] 1. Heat dissipation copper tube; 2. External inch connecting thread head; 3. Connection sealing mechanism; 31. Connecting tube; 32. Threaded connection groove; 33. Sealing sleeve; 34. Placement groove; 35. Sealing sleeve ring; 36. Push ring block; 37. Elastic plug-in block; 38. Positioning block; 39. Fixed ring block; 40. Fixed groove; 41. Positioning groove. DETAILED DESCRIPTION
[0021] 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 described embodiments 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 ordinary technicians in this field without creative work are within the scope of protection of this application.
[0022] Example 1
[0023] This embodiment provides a coil structure that prevents liquid leakage and has high efficiency in heat dissipation, such as Figure 1-5 As shown, the coil structure with anti-leakage and efficient heat dissipation includes at least one group of cross-arranged heat dissipation copper tubes 1 arranged inside a liquid pool of a device filled with a non-conductive medium, one end of the bottom of the multiple groups of heat dissipation copper tubes 1 is welded with an external inch connecting thread head 2, and one end of the two groups of external inch connecting thread heads 2 extending to the outside of the liquid pool is provided with a connecting sealing mechanism 3;
[0024] When in use, the heat dissipation copper tube 1 is arranged in an S shape, and the heat dissipation copper tube 1 is connected in parallel and arranged crosswise, which can improve the heat dissipation efficiency. At the same time, due to the curved structure of the heat dissipation copper tube 1, the flow resistance of the coolant can be effectively reduced, and the heat dissipation effect is improved. The single heat dissipation copper tube 1 is made of a copper tube without welding points, and multiple groups of parallel heat dissipation copper tubes 1 are welded with external inch connecting thread heads 2. Two groups of external inch connecting thread heads 2 are respectively connected to the inlet and outlet of the heat dissipation copper tube 1 to avoid liquid leakage. Through the connection sealing mechanism 3 that is set, the connection after threaded connection with the external device can be conveniently sealed for secondary sealing to avoid connection leakage. The operation is simple and fast, and it is easy to use.
[0025] Specifically, the connection sealing mechanism 3 includes a connection pipe 31 fixedly connected to the two sets of external inch connection thread heads 2, a threaded connection groove 32 is provided inside the end of the connection pipe 31 extending to the outside of the liquid pool, and a sealing sleeve 33 is sleeved outside the end of the connection pipe 31 extending to the outside of the liquid pool, and the sealing sleeve 33 is slidably connected to the connection pipe 31;
[0026] When in use, the connecting tube 31 is threadedly connected to the external device through the threaded connection groove 32 opened inside the connecting tube 31, and then the sealing sleeve 33 is pushed to move outside the connecting tube 31, and the sealing sleeve 33 is moved to the sealing position where the connecting tube 31 and the external device are connected. The connection is secondary sealed by the sealing sleeve 33 to avoid connection leakage. The operation is simple, fast and easy to use.
[0027] Furthermore, a placement groove 34 is opened inside the sealing sleeve 33, and a sealing ring 35 is arranged inside the placement groove 34. The placement groove 34 arranged inside the sealing sleeve 33 can facilitate the removal and installation of the sealing ring 35, thereby facilitating the replacement of the sealing ring 35. The sealing ring 35 is made of soft rubber material. The sealing performance of the sealing sleeve 33 can be improved by setting the sealing ring 35.
[0028] Example 2
[0029] Different from Example 1, during the specific use process, the connecting pipe 31 needs to be installed with the external equipment. The sealing sleeve 33 is arranged on the outside of the connecting pipe 31, which will affect the operation of the staff. For this reason, the sealing sleeve 33 is fixedly connected with a push ring block 36 on the side close to the outer inch connecting thread head 2, and the two ends of the push ring block 36 on the side close to the outer inch connecting thread head 2 are fixedly connected with elastic plug-in blocks 37, and the two sides of the two groups of elastic plug-in blocks 37 are fixedly connected with two groups of positioning blocks 38. The end of the connecting pipe 31 close to the outer inch connecting thread head 2 is fixedly connected with a fixed ring block 39, and the fixing grooves 40 matched with the elastic plug-in blocks 37 are provided on both sides of the fixing ring block 39, and the positioning grooves 41 matched with the positioning blocks 38 are provided inside the two groups of fixing grooves 40.
[0030] When in use, the ring block 36 is pushed by sliding, so that the pushing ring block 36 pushes the elastic plug-in blocks 37 set on both sides to move, so that the elastic plug-in blocks 37 are plugged into the fixed grooves 40 set inside the fixed ring block 39, and the positioning blocks 38 set on both sides of the elastic plug-in block 37 are clamped with the positioning grooves 41 inside the fixed grooves 40. The positioning blocks 38 and the positioning grooves 41 are both arranged in an arc shape, which is convenient for fixing the pushing ring block 36 on the side of the fixed ring block 39, and can facilitate secondary sealing of the connection after threaded connection with the external device to avoid connection leakage. The operation is simple and fast, and it is easy to use.
[0031] Specifically, the elastic plug-in block 37 is plugged into the fixing groove 40 , and the positioning block 38 is snap-fitted into the positioning groove 41 , which is convenient for operation and use.
[0032] The above are only preferred specific implementation methods of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can make equivalent substitutions or changes based on the technical solution and concept of the present application within the technical scope disclosed in the present application, which should be covered by the protection scope of the present application.
Claims
1. A coil structure with anti-leakage and high-efficiency heat dissipation, comprising at least one group of cross-arranged heat dissipation copper tubes (1) arranged inside a liquid pool of a device filled with a non-conductive medium, and one end of the bottom of the plurality of groups of heat dissipation copper tubes (1) is welded with an external inch connecting thread head (2), characterized in that: One end of the two groups of external connecting wire heads (2) extending to the outside of the liquid pool is provided with a connecting sealing mechanism (3); The connection sealing mechanism (3) comprises a connection pipe (31) fixedly connected to the two groups of external connection thread heads (2); a threaded connection groove (32) is provided inside the end of the connection pipe (31) extending to the outside of the liquid pool; a sealing sleeve (33) is sleeved outside the end of the connection pipe (31) extending to the outside of the liquid pool; the sealing sleeve (33) is slidably connected to the connection pipe (31).
2. The coil structure with anti-leakage and high-efficiency heat dissipation according to claim 1 is characterized in that: The sealing sleeve (33) is provided with a placement groove (34) inside, and a sealing collar (35) is provided inside the placement groove (34).
3. The coil structure with anti-leakage and high-efficiency heat dissipation according to claim 1 is characterized in that: A push ring block (36) is fixedly connected to one side of the sealing sleeve (33) close to the external inch connecting thread head (2), and elastic plug-in blocks (37) are fixedly connected to both ends of one side of the pushing ring block (36) close to the external inch connecting thread head (2), and two groups of positioning blocks (38) are fixedly connected to both sides of the two groups of elastic plug-in blocks (37).
4. The coil structure with anti-leakage and high-efficiency heat dissipation according to claim 1, characterized in that: A fixing ring block (39) is fixedly connected to the outside of one end of the connecting tube (31) close to the outer connecting thread head (2), and fixing grooves (40) matching the elastic plug-in block (37) are provided on both sides of the inside of the fixing ring block (39), and positioning grooves (41) matching the positioning block (38) are provided inside the two groups of the fixing grooves (40).
5. The coil structure with anti-leakage and high-efficiency heat dissipation according to claim 4 is characterized in that: The elastic plug-in block (37) is plugged into the fixing groove (40), and the positioning block (38) is clamped into the positioning groove (41).