An immersed liquid-cooled server cabinet structure
By employing a partitioned cooling design for liquid cooling components, monitoring components, and control components in the immersion liquid-cooled server rack, the problem of uneven server heat dissipation is solved, achieving low-energy-consumption and high-efficiency heat dissipation and thermal isolation between servers, thus improving the overall performance of the equipment.
Patent Information
- Application Number
- CN202510075985.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2045-01-17
AI Technical Summary
In existing immersion liquid-cooled server racks, uneven server heat dissipation leads to high energy consumption for coolant circulation, and high-heat servers affect the heat dissipation of surrounding servers.
It employs liquid cooling components, monitoring components, and control components. High heat dissipation server areas are separated by partitions, and the temperature is monitored by a temperature control box to control the operation of the liquid cooling components to achieve zoned cooling and avoid heat interference between adjacent servers.
It achieves low-energy partitioned cooling, ensuring the server's heat dissipation effect while avoiding impact on other servers, thus improving the overall performance of the equipment.
Smart Images

Figure CN119767648B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of liquid-cooled server cabinets, and particularly relates to an immersed liquid-cooled server cabinet structure. BACKGROUND
[0002] The immersed liquid-cooled server is a technology for realizing efficient heat dissipation by completely immersing a server in cooling liquid. The technology directly contacts electronic elements in the server with the cooling liquid, utilizes the heat conduction and heat convection characteristics of the liquid, and rapidly removes heat generated in the server during operation, so that efficient heat dissipation is realized.
[0003] The application of the immersed liquid-cooled server cabinet structure disclosed in the publication No. CN117156780A can facilitate the disassembly of the server cabinet, but the heat dissipation rates of the servers in the cabinet are inconsistent, so that the cooling liquid in the entire cabinet needs to be circulated when heat is dissipated in the cabinet, which not only increases the energy consumption of the cooling liquid circulation, but also the servers with high heat dissipation rates affect the surrounding servers, thereby reducing the use effect. Therefore, there is an urgent need to design an immersed liquid-cooled server cabinet structure. SUMMARY
[0004] The application aims to solve the problems in the prior art and provides an immersed liquid-cooled server cabinet structure.
[0005] In order to achieve the above-mentioned purpose, the application adopts the following technical scheme:
[0006] The immersed liquid-cooled server cabinet structure comprises a cabinet body, the cabinet body is internally provided with a server, and further comprises:
[0007] A liquid cooling assembly is arranged in the cabinet body, and the liquid cooling assembly is used for dissipating heat of the server in the cabinet body.
[0008] Four partition plates are uniformly distributed in the cabinet body.
[0009] Two sealing plates are rotatably arranged at the bottom of the cabinet body, and each sealing plate is located between two corresponding partition plates.
[0010] A bottom cover is fixedly arranged at the bottom of the cabinet body.
[0011] A monitoring assembly is arranged in the bottom cover and the cabinet body, and the monitoring assembly is used for monitoring the temperature in the cabinet body.
[0012] A control assembly is arranged in the bottom cover, the control assembly is connected with the monitoring assembly, and the control assembly is used for controlling the working of the liquid cooling assembly.
[0013] As a further technical scheme of the present application, the liquid cooling assembly comprises: a heat exchanger installed outside the cabinet body, and a liquid pump communicated and installed on the side of the heat exchanger, and an L-shaped pipe communicated and installed on the side of the heat exchanger and the end of the liquid pump, and three communicating pipes communicated and installed on the horizontal edge of each L-shaped pipe, and an electromagnetic valve installed on the surface of each communicating pipe, and each communicating pipe communicated with the inside of the cabinet body.
[0014] As a further technical scheme of the present application, the monitoring assembly comprises: three temperature control boxes, and the three temperature control boxes are uniformly installed on the inner wall of the cabinet body, and a piston plate is slidingly arranged in each temperature control box, and mercury is arranged between the piston plate and the inner bottom of the temperature control box, a fourth spring rod is vertically installed on the top of the piston plate and the inner top of the temperature control box, a connecting rod is vertically and fixedly installed on the bottom of the piston plate, and the end of the connecting rod penetrates through the temperature control box and the bottom of the cabinet body, and a strip plate is fixedly installed on the end of the connecting rod.
[0015] As a further technical scheme of the present application, the control assembly comprises: a control mechanism and a main gear, and two main gears are symmetrically arranged below the cabinet body, and a rotating rod is vertically fixed on the top of each main gear, and the top end of each rotating rod is rotatably installed on the bottom of the cabinet body, and the top end of each rotating rod is fixedly installed on the bottom center of the sealing plate through a connecting shaft, and four control mechanisms are arranged on the three strip plates, two control mechanisms are symmetrically arranged on the middle strip plate, and the other two control mechanisms are arranged on the opposite ends of the two side strip plates.
[0016] As a further technical scheme of the present application, the control mechanism comprises: an L-shaped tooth plate horizontally arranged below the cabinet body, and the L-shaped tooth plate and the corresponding main gear are engaged when the L-shaped tooth plate and the corresponding main gear are in contact, a horizontal groove is formed in the short edge of the L-shaped tooth plate, and a movable block is slidingly installed in the horizontal groove, a first spring rod is horizontally fixedly installed on the end face of the movable block, a movable rod is rotatably installed on the side of the first spring rod, a horizontal rod is rotatably installed on the other end side of the movable rod, and the other end of the horizontal rod is fixedly installed on the end face of the corresponding strip plate.
[0017] As a further technical scheme of the present application, a limiting plate is vertically fixedly installed on the top end of the first spring rod, a sliding groove is formed in the bottom of the cabinet body, a sliding block is slidingly installed in the sliding groove, a first touch switch is installed on the top end of the sliding block and the inner top of the sliding groove, a second touch switch is installed on the end of the sliding block and the inner end of the sliding groove, and the two first touch switches and the two second touch switches are electrically connected with the corresponding electromagnetic valves.
[0018] As a further technical scheme of the present application, the long side top of the L-shaped tooth plate is vertically rotatably provided with a slide column, the bottom of the cabinet body is provided with a concave groove, the top end of the slide column is slidably arranged in the concave groove, the long side top of the L-shaped tooth plate is also vertically fixedly provided with a stop block, the side of the strip-shaped plate is horizontally fixedly provided with a strip plate, the top of the strip plate is vertically fixedly provided with a third spring rod, and the fixed end of the third spring rod is fixedly arranged at the bottom of the cabinet body.
[0019] As a further technical scheme of the present application, the bottom of the cabinet body is vertically fixed with two second spring rods, the fixed end and the telescopic end of each second spring rod are connected through spline sliding, the bottom of the telescopic end of each second spring rod is vertically fixedly provided with a sleeve, the bottom of each sleeve is sleeved with a sleeve rod through spline sliding, and the two sleeve rods are symmetrically arranged, and the end of each sleeve rod is provided with an inclined slope.
[0020] As a further technical scheme of the present application, the surface of the telescopic end of each second spring rod is horizontally fixedly sleeved with a first baffle and a second baffle, the top of the strip plate is vertically fixedly provided with a top block, and the top block is located below the end of the first baffle.
[0021] As a further technical scheme of the present application, the end of the second baffle is vertically fixedly provided with a first rack, the bottom of the cabinet body is rotatably provided with a rotating shaft, the bottom of the cabinet body is vertically fixedly provided with a limiting block, the surface of the rotating shaft is rotatably arranged in the limiting block, the end of the rotating shaft is fixedly sleeved with a first gear engaged with the first rack, the top end of the rotating shaft is fixedly sleeved with a one-way bearing, the outer ring of the one-way bearing is fixedly sleeved with a second gear, the top of the strip plate is vertically fixedly provided with a fixed plate, and the side of the fixed plate is vertically fixedly provided with a second rack engaged with the second gear.
[0022] The present application has the following advantages:
[0023] Firstly, the present application can separate the high-heat-dissipation server by setting the liquid cooling assembly, the monitoring assembly and the control assembly, and the circulating cooling energy consumption of the cooling liquid in the separated area is low, which ensures the heat dissipation effect of the server and avoids affecting other servers, thereby improving the use effect of the equipment.
[0024] Secondly, the present application can control whether the cabinet body needs to be partitioned according to the temperature of the area where the temperature control box is located, and can automatically release the partition after the cooling liquid in the partition is cooled, which ensures the cooling effect of the overall cooling liquid in the cabinet body, thereby improving the use effect of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 The present application provides a structure diagram of an immersed liquid cooling server cabinet structure.
[0026] Figure 2 A cabinet body sectional view structure schematic diagram of an immersed liquid cooling server cabinet structure proposed by the present application;
[0027] Figure 3 A bottom view structure schematic diagram of an immersed liquid cooling server cabinet structure proposed by the present application;
[0028] Figure 4 A Figure 3 enlarged schematic diagram of part A;
[0029] Figure 5 A structure schematic diagram of an immersed liquid cooling server cabinet structure proposed by the present application after removing the bottom cover;
[0030] Figure 6 A Figure 5 enlarged schematic diagram of part B;
[0031] Figure 7 A structure schematic diagram of an immersed liquid cooling server cabinet structure proposed by the present application after removing the cabinet body and the bottom cover;
[0032] Figure 8 A schematic diagram of a strip-shaped plate and L-shaped toothed plate connecting structure of an immersed liquid cooling server cabinet structure proposed by the present application;
[0033] Figure 9 A Figure 8 enlarged schematic diagram of part C.
[0034] In the figure: 1, cabinet body; 2, partition plate; 3, sealing plate; 4, L-shaped pipe; 5, heat exchanger; 6, liquid pump; 7, communication pipe; 8, electromagnetic valve; 9, temperature control box; 10, piston plate; 11, connecting rod; 12, bottom cover; 13, strip-shaped plate; 14, main gear; 15, L-shaped toothed plate; 16, limiting plate; 17, sliding groove; 18, sliding block; 19, first touch switch; 20, second touch switch; 21, sliding column; 22, concave groove; 23, rotating rod; 24, cross rod; 25, movable rod; 26, first spring rod; 27, transverse groove; 28, second spring rod; 29, sleeve; 30, sleeve rod; 31, stop block; 32, first baffle; 33, second baffle; 34, strip plate; 35, top block; 36, first rack; 37, rotating shaft; 38, first gear; 39, second gear; 40, one-way bearing; 41, second rack; 42, fixed plate. DETAILED DESCRIPTION
[0035] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application is further described below in combination with specific embodiments.
[0036] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application.
[0037] Please refer to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application. Figure 1 - the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application. Figure 9 A submerged liquid cooling server cabinet structure, comprising a cabinet body 1, the server is arranged inside the cabinet body 1, further comprising: liquid cooling assembly, partition 2, sealing plate 3, bottom cover 12, monitoring assembly and control assembly, liquid cooling assembly is arranged in the inside of cabinet body 1, liquid cooling assembly is used to heat dissipation for the server in the inside of cabinet body 1, partition 2 has four, four partitions 2 are evenly distributed in the inside of cabinet body 1, sealing plate 3 has two, two sealing plates 3 are rotatably installed in the bottom of cabinet body 1, and each sealing plate 3 is located between the corresponding two partitions 2, bottom cover 12 is fixedly installed at the bottom of cabinet body 1, monitoring assembly is arranged in the inside of bottom cover 12 and the inside of cabinet body 1, monitoring assembly is used to monitor the temperature in the inside of cabinet body 1, control assembly is arranged in the inside of bottom cover 12, control assembly is further connected with monitoring assembly, and control assembly is used to control the work of liquid cooling assembly;
[0038] The above-mentioned can be separated for the server with high heat dissipation, and the circulating cooling energy consumption of the cooling liquid in the separated area is low, which ensures the heat dissipation effect of the server, and avoids affecting other servers.
[0039] Please refer to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application. Figure 1 - the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application. Figure 4 In a preferred embodiment, the liquid cooling assembly comprises: a heat exchanger 5, the heat exchanger 5 is installed outside the cabinet body 1, and the heat exchanger 5 side is communicated and installed with a liquid pump 6, the heat exchanger 5 side and the end of the liquid pump 6 are communicated and installed with L-shaped pipes 4, each L-shaped pipe 4 transverse edge is communicated and installed with three communication pipes 7, and each communication pipe 7 surface is installed with an electromagnetic valve 8, each communication pipe 7 is communicated with the inside of the cabinet body 1.
[0040] Specifically, the liquid pump 6 can circulate and heat the cooling liquid in the inside of the cabinet body 1 after being blocked through the L-shaped pipe 4 and the heat exchanger 5.
[0041] Please refer to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application. Figure 1 - the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the scope of protection of the present application. Figure 4In a preferred embodiment, the monitoring assembly comprises three temperature control boxes 9 which are evenly arranged on the inner wall of the cabinet body 1. Each temperature control box 9 is internally slidably provided with a piston plate 10. Mercury is arranged between the piston plate 10 and the inner bottom of the temperature control box 9. A fourth spring rod is vertically arranged on the top of the piston plate 10 and the inner top of the temperature control box 9. A connecting rod 11 is vertically fixedly arranged on the bottom of the piston plate 10 and penetrates through the temperature control box 9 and the bottom of the cabinet body 1. A strip plate 13 is fixedly arranged on the end of the connecting rod 11.
[0042] Further, when the servers are running and emitting a large amount of heat, the mercury in the temperature control box 9 is heated and expanded, which further drives the piston plate 10 and the connecting rod 11 to move upward, so as to automatically separate the servers when the temperature is too high, thereby ensuring the running effect of the servers.
[0043] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 9In an preferred embodiment, the control assembly comprises: control mechanisms and main gears 14, the main gears 14 are two, and the two main gears 14 are symmetrically arranged below the cabinet body 1, the top of each of the two main gears 14 is vertically fixed with a rotating rod 23, and the top of each of the two rotating rods 23 is rotatably installed at the bottom of the cabinet body 1, and the top of each of the two rotating rods 23 is fixedly installed at the bottom center of the sealing plate 3 through a connecting shaft, the control mechanisms are four, and the four control mechanisms are respectively installed on the three strip-shaped plates 13, two symmetrically arranged control mechanisms are installed on the middle strip-shaped plate 13, and the other two control mechanisms are installed on the opposite ends of the two side strip-shaped plates 13, in an preferred embodiment, the control mechanism comprises: an L-shaped toothed plate 15, the L-shaped toothed plate 15 is horizontally arranged below the cabinet body 1, and the L-shaped toothed plate 15 and the corresponding main gear 14 are engaged when they are in contact, the short side of the L-shaped toothed plate 15 is provided with a horizontal groove 27, and a movable block is slidably installed in the horizontal groove 27, a first spring rod 26 is horizontally fixedly installed on the end surface of the movable block, an active rod 25 is rotatably installed on the side surface of the first spring rod 26, a cross rod 24 is rotatably installed on the other end side surface of the active rod 25, the other end of the cross rod 24 is fixedly installed on the end surface of the corresponding strip-shaped plate 13, a limiting plate 16 is vertically fixedly installed on the top end of the first spring rod 26, a sliding groove 17 is formed in the bottom of the cabinet body 1, a sliding block 18 is slidably installed in the sliding groove 17, a first touch switch 19 is installed on the top end of the sliding block 18 and the inner top end of the sliding groove 17, a second touch switch 20 is installed on the end of the sliding block 18 and the inner end of the sliding groove 17, the two first touch switches 19 and the two second touch switches 20 are electrically connected with the corresponding electromagnetic valves 8, a sliding column 21 is vertically rotatably installed on the top of the long side of the L-shaped toothed plate 15, a concave groove 22 is formed in the bottom of the cabinet body 1, the top end of the sliding column 21 is slidably installed in the concave groove 22, a stop block 31 is vertically fixedly installed on the top of the long side of the L-shaped toothed plate 15, a strip plate 34 is horizontally fixedly installed on the side surface of the strip-shaped plate 13, a third spring rod is vertically fixedly installed on the top of the strip plate 34, the fixed end of the third spring rod is fixedly installed on the bottom of the cabinet body 1, two second spring rods 28 are vertically fixed on the bottom of the cabinet body 1, the fixed end and the telescopic end of the two second spring rods 28 are slidably connected through keys, a sleeve 29 is vertically fixedly installed on the bottom of the telescopic end of each second spring rod 28, a sleeve rod 30 is slidably sleeved on the bottom of each sleeve 29, the two sleeve rods 30 are symmetrically arranged, an inclined slope is formed on the end of each sleeve rod 30, a first baffle 32 and a second baffle 33 are horizontally fixedly sleeved on the surface of the telescopic end of the two second spring rods 28 respectively, a top block 35 is vertically fixedly installed on the top of the strip plate 34, the top block 35 is below the end of the first baffle 32, a first rack 36 is vertically fixedly installed on the end of the second baffle 33, a rotating shaft 37 is rotatably installed below the cabinet body 1, a limiting block is vertically fixedly installed on the bottom of the cabinet body 1, the surface of the rotating shaft 37 is rotatably installed in the limiting block,The end of the rotating shaft 37 is fixedly sleeved with a first gear 38 engaged with the first rack 36, and the top end of the rotating shaft 37 is fixedly sleeved with a one-way bearing 40, the outer ring of the one-way bearing 40 is fixedly sleeved with a second gear 39, the top of the strip plate 34 is vertically fixedly installed with a fixed plate 42, and the side of the fixed plate 42 is vertically fixed with a second rack 41 engaged with the second gear 39,
[0044] Preferably, the interior of the cabinet body 1 is partitioned and controlled, so that heat interference between adjacent servers is avoided.
[0045] The working principle of the present application is that the service machine is placed in the cabinet body 1, and the interior of the cabinet body 1 is filled with cooling liquid, so that the server can be efficiently cooled, and the operation efficiency of the server is ensured.
[0046] When the server generates a large amount of heat, the mercury in the temperature control box 9 will be heated and expanded, further causing the piston plate 10 to drive the connecting rod 11 to move upwards and generate elastic force of the fourth spring rod, the connecting rod 11 drives the strip plate 13 to move upwards, the strip plate 13 drives the horizontal rod 24 and the strip plate 34 connected thereto to move upwards and generate elastic force of the third spring rod.
[0047] The horizontal rod 24 drives the movable rod 25 to move, the movable rod 25 drives the fixed end of the first spring rod 26 and the limiting plate 16 to move horizontally, the limiting plate 16 drives the sliding block 18 to move, the sliding block 18 drives the first touch switch 19 and the second touch switch 20 connected thereto to move, and since the sleeve rod 30 blocks the stop block 31 at this time, the stop block 31, the L-shaped tooth plate 15, the movable block and the telescopic end of the first spring rod 26 will not move, so that the fixed end of the first spring rod 26 moves and the first spring rod 26 generates tension, realizing positive force storage.
[0048] The strip plate 34 moves upward to drive the fixed plate 42 and the top block 35 to move upward. When the top block 35 and the first baffle plate 32 are in contact and continue to move upward, the first baffle plate 32 is driven to move upward, and the extension end of the second spring rod 28 and the sleeve 29 and the sleeve rod 30 are driven to move upward. At this time, the corresponding sleeve rod 30 will no longer hinder the block 31, and the two first touch switches 19 are in contact, so that the corresponding two electromagnetic valves 8 and the liquid pump 6 are opened. The pulling force generated by the first spring rod 26 will make the extension end move, and the movement of the extension end of the first spring rod 26 drives the movement of the movable block and the L-shaped toothed plate 15. The movement of the L-shaped toothed plate 15 drives the movement of the slide column 21. Due to the setting of the concave groove 22, the slide column 21 will move along the concave groove 22 as the path, and further make the L-shaped plate move and engage with the main gear 14 and drive the main gear 14 to rotate by ninety degrees. The rotation of the main gear 14 drives the sealing plate 3 to rotate by ninety degrees through the rotating rod 23. It should be noted that the L-shaped toothed plate 15 drives the main gear 14 to rotate by ninety degrees and then separates from the main gear 14 again. The sealing plate 3 can abut against the corresponding two partitions 2 to separate the cabinet body 1, so as to avoid the influence of the high-heat-dissipation server on other servers. Finally, the block 31 will pass through the two sleeve rods 30, and the liquid pump 6 can circulate the cooling liquid in the rear cabinet body 1 through the L-shaped pipe 4 and the heat exchanger 5 for heat dissipation. It should be noted that the upward movement of the fixed plate 42 drives the upward movement of the second rack 41, and the upward movement of the second rack 41 drives the rotation of the second gear 39. Due to the setting of the one-way bearing 40, the rotation of the second gear 39 at this time will not drive the rotation of the rotating shaft 37 through the one-way bearing 40.
[0049] With the liquid pump 6 makes cooling liquid through heat exchanger 5, so that the temperature of the cooling liquid decreases, the mercury volume inside the temperature control box 9 will decrease, further the elastic force generated by the fourth spring rod will make the piston plate 10 drive the connecting rod 11 and the strip plate 13 to move down, the strip plate 13 moves down to drive the strip plate 34 and the cross rod 24 to move down, the cross rod 24 moves down to drive the fixed end of the first spring rod 26 and the limiting plate 16 to move horizontally through the movable rod 25, as can be known from the above, at this time the stop block 31 will be hindered by another sleeve rod 30, so that the first spring rod 26 generates elastic force, realizes reverse force storage, the strip plate 34 moves down to drive the fixed plate 42 and the second rack 41 to move down, the second rack 41 moves down to drive the second gear 39 to rotate, at this time the second gear 39 rotates to drive the rotating shaft 37 to rotate through the one-way bearing 40, the rotating shaft 37 rotates to drive the first gear 38 to rotate, the first gear 38 rotates to drive the first rack 36 to move up, the first rack 36 moves up to drive the second baffle 33, the corresponding second spring rod 28, the sleeve 29 and the sleeve rod 30 to move up, then the sleeve rod 30 will be released from the limiting of the stop block 31, further the elastic force generated by the first spring rod 26 will make the L-shaped tooth plate 15 move along the concave groove 22, as can be known from the above, when the L-shaped tooth plate 15 moves along the concave groove 22, the main gear 14 will rotate reversely by ninety degrees, so that the inside of the cabinet body 1 is connected, and the two first touch switches 19 are in contact with the closed corresponding electromagnetic valve 8 and the liquid pump 6;
[0050] As can be known from the above, the inside of the cabinet body 1 can be controlled by reciprocating in sequence, which avoids the heat interference between adjacent servers, and further improves the use effect of the equipment.
[0051] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that can be understood by those skilled in the art.
Claims
1. An immersion liquid-cooled server rack structure, comprising a rack body (1), wherein a server is disposed inside the rack body (1), characterized in that, Also includes: Liquid cooling assembly, which is disposed inside the rack body (1), is used to dissipate heat from the server inside the rack body (1); There are four partitions (2), which are evenly distributed inside the cabinet body (1). There are two sealing plates (3), both of which are rotatably installed at the bottom of the cabinet body (1), and each sealing plate (3) is located between two corresponding partitions (2); The bottom cover (12) is fixedly installed at the bottom of the cabinet body (1); The monitoring component is located inside the bottom cover (12) and inside the cabinet body (1). The monitoring component is used to monitor the temperature inside the cabinet body (1). The control component is located inside the bottom cover (12), and is also connected to the monitoring component. The control component is used to control the operation of the liquid cooling component.
2. The immersion liquid-cooled server rack structure according to claim 1, characterized in that, The liquid cooling assembly includes: a heat exchanger (5), which is installed outside the cabinet body (1), and a liquid pump (6) is connected to the side of the heat exchanger (5). L-shaped pipes (4) are connected to the side of the heat exchanger (5) and the end of the liquid pump (6). Three connecting pipes (7) are connected to the transverse side of each L-shaped pipe (4), and a solenoid valve (8) is installed on the surface of each connecting pipe (7). Each connecting pipe (7) is connected to the inside of the cabinet body (1).
3. The immersion liquid-cooled server rack structure according to claim 2, characterized in that, The monitoring component includes: a temperature control box (9), there are three temperature control boxes (9), and the three temperature control boxes (9) are evenly installed on the inner wall of the cabinet body (1). A piston plate (10) is slidably arranged inside each temperature control box (9), and mercury is provided between the piston plate (10) and the bottom of the temperature control box (9). A fourth spring rod is vertically installed on the top of the piston plate (10) and the top of the temperature control box (9). A connecting rod (11) is vertically fixedly installed on the bottom of the piston plate (10), and the end of the connecting rod (11) passes through the temperature control box (9) and the bottom of the cabinet body (1). A strip plate (13) is fixedly installed on the end of the connecting rod (11).
4. The immersion liquid-cooled server rack structure according to claim 3, characterized in that, The control components include: a control mechanism and main gears (14). There are two main gears (14), which are symmetrically arranged below the cabinet body (1). The top of each of the two main gears (14) is vertically fixed with a rotating rod (23), and the top of each rotating rod (23) is rotatably installed at the bottom of the cabinet body (1). The top of each rotating rod (23) is fixedly installed at the center of the bottom of the sealing plate (3) through a connecting shaft. There are four control mechanisms, which are installed on three strip plates (13). Two symmetrically arranged control mechanisms are installed on the middle strip plate (13), and the other two control mechanisms are installed at the opposite ends of the two side strip plates (13).
5. The immersion liquid-cooled server rack structure according to claim 4, characterized in that, The control mechanism includes an L-shaped toothed plate (15), which is horizontally positioned below the cabinet body (1). When the L-shaped toothed plate (15) and the corresponding main gear (14) are in contact, the L-shaped toothed plate (15) and the corresponding main gear (14) mesh. The short side of the L-shaped toothed plate (15) has a transverse groove (27), and a movable block is slidably installed inside the transverse groove (27). A first spring rod (26) is horizontally fixedly installed on the end face of the movable block, and a movable rod (25) is rotatably installed on the side of the first spring rod (26). A crossbar (24) is rotatably installed on the other side of the movable rod (25), and the other end of the crossbar (24) is fixedly installed on the end face of the corresponding strip plate (13).
6. The immersion liquid-cooled server rack structure according to claim 5, characterized in that, A limit plate (16) is vertically fixed at the top of the first spring rod (26), and a slide groove (17) is provided at the bottom of the cabinet body (1). A slider (18) is slidably installed inside the slide groove (17), and a first touch switch (19) is installed at the top of the slider (18) and the top of the slide groove (17). A second touch switch (20) is installed at the end of the slider (18) and the end of the slide groove (17). The two first touch switches (19) and the two second touch switches (20) are electrically connected to the corresponding solenoid valves (8).
7. The immersion liquid-cooled server rack structure according to claim 6, characterized in that, The L-shaped toothed plate (15) has a vertically rotating sliding column (21) mounted on the top of its long side. The cabinet body (1) has a concave groove (22) at its bottom, and the top of the sliding column (21) is slidably mounted inside the concave groove (22). The L-shaped toothed plate (15) also has a vertically fixed stop block (31) mounted on the top of its long side. The strip plate (13) has a horizontally fixed strip plate (34) mounted on its side, and a third spring rod is vertically fixed on the top of the strip plate (34). The fixed end of the third spring rod is fixedly mounted on the bottom of the cabinet body (1).
8. The immersion liquid-cooled server rack structure according to claim 7, characterized in that, The cabinet body (1) has two second spring rods (28) vertically fixed at the bottom. The fixed end and telescopic end of the two second spring rods (28) are slidably connected by splines. A sleeve (29) is vertically fixedly installed at the bottom of the telescopic end of each second spring rod (28). A sleeve rod (30) is slidably sleeved at the bottom of each sleeve (29) by splines. The two sleeve rods (30) are symmetrically arranged. A ramp is opened at the end of each sleeve rod (30).
9. The immersion liquid-cooled server rack structure according to claim 8, characterized in that, The telescopic ends of the two second spring rods (28) are respectively horizontally fixedly sleeved with a first baffle (32) and a second baffle (33), and a top block (35) is vertically fixedly installed on the top of the strip (34), and the top block (35) is located below the end of the first baffle (32).
10. The immersion liquid-cooled server rack structure according to claim 9, characterized in that, The second baffle (33) is vertically fixedly mounted with a first rack (36) at its end. A rotating shaft (37) is rotatably mounted below the cabinet body (1). A limit block is vertically fixedly mounted at the bottom of the cabinet body (1). The rotating shaft (37) is rotatably mounted inside the limit block. A first gear (38) meshing with the first rack (36) is fixedly sleeved at the end of the rotating shaft (37). A one-way bearing (40) is fixedly sleeved at the top of the rotating shaft (37). A second gear (39) is fixedly sleeved on the outer ring of the one-way bearing (40). A fixing plate (42) is vertically fixedly mounted at the top of the strip (34). A second rack (41) meshing with the second gear (39) is vertically fixed on the side of the fixing plate (42).
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