An immersion liquid cooling device
By using an automated lifting structure and a circulating cooling system, the problems of inconvenient material loading and unloading and high coolant temperature in existing liquid cooling structures have been solved, achieving efficient and convenient material cooling.
Patent Information
- Application Number
- CN202410677950.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2044-05-29
AI Technical Summary
Existing liquid cooling structures require materials to be retrieved from inside the liquid during loading and unloading operations, and the high temperature of the coolant affects the cooling effect of the materials, resulting in inconvenience and low efficiency.
It adopts an automated lifting structure and a circulating cooling system. The automatic loading and unloading of materials is achieved through an agitator motor and a circulating pump. The temperature of the coolant is controlled by an internal baffle plate and a condensation pipe, so as to achieve the recycling of the coolant.
It achieves convenient and efficient material cooling process, stable control of coolant temperature, and improves cooling efficiency and ease of operation.
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Figure CN118548649B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of liquid cooling, in particular to an immersion liquid cooling device. BACKGROUND
[0002] Cooling refers to the process of reducing the temperature of a hot object without changing its phase.
[0003] For the current liquid cooling structure in use, since it is just a single tank filled with cooling liquid, the material is put into the tank, and the material is immersed in the liquid for cooling operation. When loading and unloading, it needs to be salvaged from the inside of the liquid. At the same time, during multiple cooling processes, the temperature of the cooling liquid is high, which affects the subsequent material cooling use, which is not conducive to the current material liquid cooling use. SUMMARY
[0004] The purpose of the present application is to provide an immersion liquid cooling device to solve the problem of the current liquid cooling structure in use, since it is just a single tank filled with cooling liquid, the material is put into the tank, and the material is immersed in the liquid for cooling operation. When loading and unloading, it needs to be salvaged from the inside of the liquid. At the same time, during multiple cooling processes, the temperature of the cooling liquid is high, which affects the subsequent material cooling use, which is not conducive to the current material liquid cooling use.
[0005] To achieve the above purpose, the present application provides the following technical scheme:
[0006] The utility model provides an immersion liquid cooling device, including processing box, the bottom surface of processing box is butt joint with support bottom block even, one side of processing box is fixedly connected with control panel, the both sides of processing box are fixedly connected with lifting cylinder, the both sides of processing box are vertically and symmetrically provided with vertical outer pole, the side fixed block is welded on the side away from processing box of vertical outer pole, the top of vertical outer pole is welded with top connecting block, the bottom surface of top connecting block is welded with inner vertical pole vertically downward, one side of processing box is fixedly inserted with feed pipe, the bottom surface of processing box is evenly provided with bottom screw hole, the top of support bottom block is fixedly inserted with connecting screw rod, the bottom surface of processing box is fixedly provided with bottom box body symmetrically, the inner side of bottom box body is fixedly provided with agitating motor, the inner bottom surface of processing box is symmetrically provided with bottom clamping hole, the inner side of bottom clamping hole is clamped with bottom clamping block, the inner bottom surface of processing box is horizontally clamped with agitating bottom plate, the side of processing box is inserted with discharge pipeline, the inner side of processing box is vertically and symmetrically provided with inner limiting slot, the side of inner vertical pole is welded with side clamping strip vertically, the both sides of inner vertical pole are fixedly provided with fixed frame body horizontally, the inner side of fixed frame body is fixedly provided with support net plate, the inner side wall of control panel is fixedly clamped with control mainboard, the side of processing box is fixedly provided with cooling box body away from control panel, the side of processing box is symmetrically provided with side through groove, the inner side of cooling box body is fixedly provided with circulating pump body symmetrically, one end of circulating pump body is fixedly provided with cooperation box body horizontally, the both sides of cooperation box body are fixedly provided with buffer box body, the side of buffer box body is fixedly provided with inner box body, the top and bottom surface of buffer box body is symmetrically provided with cooperation hole, the inner side of inner box body is fixedly provided with cooling liquid tank, the inner side of inner box body is fixedly provided with inner pump body, the inner side of inner box body is fixedly provided with compressor, the inner side of buffer box body is evenly welded with inner baffle plate, the inner side wall of inner baffle plate is horizontally clamped with transmission pipe, the both sides of inner baffle plate are evenly inserted with condensing pipeline.
[0007] As a preferred embodiment of the utility model: the top of processing box is provided with opening, the number of support bottom block is four, and four support bottom blocks are arranged in parallel, the top of four support bottom blocks is correspondingly connected with the bottom opening end of bottom screw hole, the inside of control panel and the inside of control mainboard are electrically connected.
[0008] As a preferred embodiment of the present application: the number of lifting cylinders is two, and the two lifting cylinders are arranged in parallel with each other, and the two lifting cylinders are vertically fixed at the bottom end of the middle line of the two sides of the treatment box body, and the output end of the two lifting cylinders is fixedly connected to the bottom surface center of the side fixing block vertically upward, and the vertical outer rods are arranged in parallel and symmetrically, and the vertical outer rods are arranged vertically at the middle line of the two sides of the treatment box body.
[0009] As a preferred embodiment of the present application: the side fixing block is horizontally fixed at the bottom end of the side of the vertical outer rod, the bottom surface of the top connecting block is horizontally butted at the top surface of the treatment box body, the top end of the inner vertical rod is fixed at the end of the bottom surface of the top connecting block away from the vertical outer rod, and the inner vertical rod and the vertical outer rod are arranged in parallel with each other, and the side of the inner vertical rod is vertically butted at the middle line of the inner side of the treatment box body.
[0010] As a preferred embodiment of the present application: one end of the feeding pipe is inserted into the inner side of the cooling box body, and the other end of the feeding pipe is inserted into the middle line of the side of the treatment box body close to the top end, and the bottom screw holes are uniformly opened in the bottom surface of the treatment box body close to the four corners, and the top end of the connecting screw rod is fixedly connected to the inner side of the bottom screw hole, and the bottom box body is fixedly arranged symmetrically on the bottom surface of the treatment box body close to the middle line of the two ends.
[0011] As a preferred embodiment of the present application: the output end of the stirring motor extends vertically upward to the inner bottom surface center of the bottom clamping hole, and the extended top end is fixedly connected to the bottom end center of the bottom clamping block, the bottom clamping hole is symmetrically opened in the inner bottom surface of the treatment box body close to the middle line of the two ends, the top end of the bottom clamping block is fixedly welded to the bottom surface center of the stirring bottom plate, and the top surface of the stirring bottom plate is uniformly provided with a screw blade structure, one end of the discharge pipe is connected to the output end of one circulating pump body, and the other end is inserted into the side of the treatment box body close to the bottom end.
[0012] As a preferred embodiment of the present application: the side clamping strip is vertically clamped in the inner side of the inner limiting groove, the side center of the fixed frame body is fixedly arranged at the bottom end of the side of the inner vertical rod, the side through groove is symmetrically and throughly opened in the middle line of the side of the treatment box body close to the two ends, the circulating pump bodies are symmetrically fixed to the inner side of the cooling box body close to the top surface and the bottom surface, the inner part of the matching box body is connected to the input end of the circulating pump body, and the opening of the matching hole is butted at the opening end of the matching box body.
[0013] As a preferred embodiment of the present application: the cooling liquid tank, the inner pump body and the compressor are connected through pipelines, the number of the inner baffles is multiple, the multiple inner baffles are arranged in a stacked parallel manner, the multiple inner baffles are made of metal plates, and the multiple inner baffles are arranged in a staggered manner.
[0014] As a preferred embodiment of the present application: the transmission pipe is arranged in an S shape on the inner side wall of the inner baffle, the transmission pipe is connected to the output end of the compressor, and the condensing pipes are arranged in parallel and connected to the sides of the transmission pipe.
[0015] Compared with the prior art, the present application has the following advantages:
[0016] 1. The liquid for cooling is poured into the inside of the treatment box, and after being added to a specified height, the adding operation is stopped, then the material is placed on the top surface of the support net plate, and after the control panel on the side is controlled, the output end of the lifting cylinder outside is controlled to retract, the side fixed block is driven downward, the vertical outer rod drives the top connecting block and the inner vertical rod to move downward, the side clamping strip on the side is limited by the inner limiting groove, the movement of the inner vertical rod is more stable, the support net plate with the material moves downward to the inside of the treatment box close to the bottom, the stirring motor at the bottom rotates, the output end drives the bottom clamping block to rotate in the bottom clamping hole, the stirring plate at the bottom rotates to stir the cooling liquid in the inside of the treatment box, and the immersed material is cooled by the flowing cooling liquid.
[0017] 2. The inside of the treatment box is cooled by the cooling liquid entering the inside of the cooling box through the discharge pipeline under the extraction of the circulating pump body on the side, the cooling liquid entering the inside is cooled by the multiple inner baffles and the condensing pipes under the cooperation of the cooling liquid tank, the inner pump body and the compressor on the side, the cooled liquid is re-injected into the inside of the treatment box through the feeding pipe under the extraction of the circulating pump body on the top for repeated use, the automatic lifting structure makes the feeding and discharging more convenient and efficient, and the circulating cooling replacement structure makes the temperature control of the cooling liquid more stable, so that the cooling treatment is more efficient. BRIEF DESCRIPTION OF DRAWINGS
[0018] Other features, objects and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments with reference to the attached drawings:
[0019] Figure 1It is a three-dimensional connection detail structure diagram of an immersion liquid cooling device;
[0020] Figure 2 It is a structure diagram of a processing box front view cross-section connection detail of an immersion liquid cooling device;
[0021] Figure 3 It is a structure diagram of a processing box side view cross-section connection detail of an immersion liquid cooling device;
[0022] Figure 4 It is a structure diagram of a processing box top view cross-section connection detail of an immersion liquid cooling device;
[0023] Figure 5 It is a structure diagram of a cooling box side view cross-section connection detail of an immersion liquid cooling device;
[0024] Figure 6 It is a structure diagram of a buffer box side view cross-section connection detail of an immersion liquid cooling device.
[0025] In the figure: 1, processing box; 2, support bottom block; 3, control panel; 4, lifting air cylinder; 5, vertical outer rod; 6, side fixed block; 7, top connecting block; 8, inner vertical rod; 9, feeding pipe; 10, bottom screw hole; 11, connecting screw; 12, bottom box body; 13, stirring motor; 14, bottom clamping hole; 15, bottom clamping block; 16, stirring bottom plate; 17, discharge pipeline; 18, inner limiting groove; 19, side clamping strip; 20, fixed frame body; 21, support net plate; 22, control mainboard; 23, cooling box; 24, side through groove; 25, circulating pump body; 26, matching box body; 27, buffer box body; 28, inner box body; 29, matching hole; 30, cooling liquid tank; 31, inner pump body; 32, compressor; 33, inner blocking plate; 34, transmission pipe; 35, condensing pipeline. DETAILED DESCRIPTION
[0026] Please refer to Figure 1The embodiment of the application discloses an immersion liquid cooling device, which comprises a processing box body 1, the bottom surface of the processing box body 1 is uniformly butt-jointed with supporting bottom blocks 2, one side edge of the processing box body 1 is fixedly connected with a control panel 3, the top surface of the processing box body 1 is provided in an open shape, the number of the supporting bottom blocks 2 is four, the four supporting bottom blocks 2 are arranged in parallel with each other, the top ends of the four supporting bottom blocks 2 are correspondingly butt-jointed with the bottom opening ends of bottom screw holes 10, the inside of the control panel 3 and the inside of a control mainboard 22 are electrically connected with each other, the two side edges of the processing box body 1 are fixedly connected with lifting air cylinders 4, the two side edges of the processing box body 1 are vertically and symmetrically provided with vertical outer rods 5, the number of the lifting air cylinders 4 is two, the two lifting air cylinders 4 are arranged in parallel with each other, the two lifting air cylinders 4 are vertically and fixedly arranged at the bottom end positions of the two side edges of the processing box body 1, the output ends of the two lifting air cylinders 4 are fixedly and vertically connected with the bottom surface center positions of side fixed blocks 6, the vertical outer rods 5 are symmetrically arranged in parallel with each other, the side edges of the vertical outer rods 5 are vertically arranged at the two side middle line positions of the processing box body 1, the side fixed blocks 6 are horizontally welded at the side edges of the vertical outer rods 5 away from the processing box body 1, the top ends of the vertical outer rods 5 are horizontally welded with top connecting blocks 7, the bottom surfaces of the top connecting blocks 7 are vertically and downward welded with inner vertical rods 8, the side fixed blocks 6 are horizontally and fixedly arranged at the side edge bottom end positions of the vertical outer rods 5, the bottom surfaces of the top connecting blocks 7 are horizontally and butt-jointed with the top surface positions of the processing box body 1, the top ends of the inner vertical rods 8 are fixedly arranged at the bottom surface positions of the top connecting blocks 7 away from the vertical outer rods 5, the inner vertical rods 8 and the vertical outer rods 5 are arranged in parallel with each other, the side edges of the inner vertical rods 8 are vertically and butt-jointed with the inside middle line positions of the processing box body 1, and a feeding pipe 9 is horizontally and fixedly inserted into one side edge of the processing box body 1.
[0027] Please refer to Figures 2-3The embodiment of the application discloses an immersion liquid cooling device, wherein the bottom surface of the processing box 1 is uniformly provided with bottom screw holes 10, the top end of the supporting bottom block 2 is fixedly inserted with connecting screw rods 11, the bottom surface of the processing box 1 is symmetrically fixedly provided with bottom box bodies 12, one end of the feeding pipe 9 is extended and inserted into the inner side of the cooling box body 23, and the extended end is fixedly connected to the output end of the circulating pump body 25; the other end of the feeding pipe 9 is horizontally inserted into the side edge middle line of the processing box 1 close to the top end position, the bottom screw holes 10 are uniformly and correspondingly provided on the bottom surface of the processing box 1 close to the four corner positions, the top end of the connecting screw rod 11 is fixedly connected to the inner side of the bottom screw hole 10, the bottom box bodies 12 are symmetrically fixedly arranged on the bottom surface of the processing box 1 close to the two end positions, the inner side of the bottom box body 12 is fixedly provided with an agitating motor 13, the inner bottom surface of the processing box 1 is symmetrically provided with bottom clamping holes 14, the inner side of the bottom clamping hole 14 is clamped with a bottom clamping block 15, the inner bottom surface of the processing box 1 is horizontally clamped with an agitating bottom plate 16, the side edge of the processing box 1 is inserted with a discharge pipe 17, the output end of the agitating motor 13 is vertically extended to the inner bottom surface center position of the bottom clamping hole 14, and the extended top end is fixedly connected to the bottom end center position of the bottom clamping block 15, the bottom clamping hole 14 is symmetrically provided on the inner bottom surface of the processing box 1 close to the two end positions, the top end of the bottom clamping block 15 is fixedly welded to the bottom surface center position of the agitating bottom plate 16, and the top surface of the agitating bottom plate 16 is uniformly provided with screw blade structures, one end of the discharge pipe 17 is in communication with the output end of a circulating pump body 25, and the other end is inserted into the side edge middle line of the processing box 1 close to the bottom end position, the inner side of the processing box 1 is vertically and symmetrically provided with inner limiting grooves 18, one side of the inner vertical rod 8 is vertically welded with a side clamping strip 19, the inner vertical rod 8 is horizontally fixedly provided with a fixed frame body 20, the side clamping strip 19 is vertically clamped into the inner side of the inner limiting groove 18, one side center position of the fixed frame body 20 is fixedly arranged at the side bottom end position of the inner vertical rod 8, the inner side of the fixed frame body 20 is horizontally fixedly provided with a supporting net plate 21, the inner side wall of the control panel 3 is fixedly clamped with a control mainboard 22, and the processing box 1 is horizontally fixedly provided with a cooling box body 23 away from the control panel 3.
[0028] Please refer to Figures 4-6In the embodiment of the present application, a kind of immersion liquid cooling device, one side of processing box 1 is symmetrically provided with side through groove 24, the inner side of cooling box 23 is symmetrically fixed with circulating pump body 25, one end of circulating pump body 25 is horizontally fixed with cooperation box body 26, cooperation box body 26 is fixed with buffer box body 27 between side, the side of buffer box body 27 is fixed with inner box body 28, buffer box body 27 is symmetrically provided with cooperation hole 29 in top surface and bottom surface, side through groove 24 is symmetrically and through in the side edge middle line of processing box 1 close to both ends position, circulating pump body 25 is symmetrically fixed between cooling box 23 and close to top surface and bottom surface position in inner side, the inside of cooperation box body 26 and the input end of circulating pump body 25 keep through, the opening of cooperation hole 29 is connected with the opening end of cooperation box body 26, the inner side of inner box body 28 is fixed with cooling liquid tank 30, the inner side of inner box body 28 is fixed with inner pump body 31, the inner side of inner box body 28 is fixed with compressor 32, the inner side of buffer box body 27 is evenly welded with inner baffle 33, cooling liquid tank 30, inner pump body 31 and compressor 32 are all connected by pipeline, the number of inner baffle 33 is multiple, and multiple inner baffles 33 are arranged in superimposed parallel, multiple inner baffles 33 are all made of metal plate material, multiple inner baffles 33 are arranged in staggered, inner baffle 33 is horizontally clamped with transmission pipe 34, condensing pipe 35 is evenly inserted between inner baffles 33, transmission pipe 34 is arranged in S shape in the inner wall of inner baffle 33, transmission pipe 34 is connected with the output end of compressor 32, condensing pipe 35 is arranged in parallel, and the two ends of multiple condensing pipes 35 are connected with transmission pipe 34.
[0029] The components are all general standard components or components known to those skilled in the art, and their structures and principles can be known by technical personnel or obtained by conventional experimental methods.
[0030] The working principle of the present application is:
[0031] The liquid for cooling is poured into the inside of the processing box 1, and after being added to a specified height, the adding operation is stopped, and then the material is placed on the top surface of the supporting net plate 21, and after the control panel 3 on the opposite side is controlled, the output end of the lifting cylinder 4 outside is controlled to retract under the control of the control main plate 22, so that the output end drives the side fixed block 6 to move downward, and the vertical outer rod 5 drives the top connecting block 7 and the inner vertical rod 8 to move downward, and under the limiting between the side clamping strip 19 on the side and the inner limiting groove 18, the movement of the inner vertical rod 8 is more stable, and the supporting net plate 21 with the material moves downward to the inside of the processing box 1 close to the bottom position, after the stirring motor 13 at the bottom rotates, the output end drives the bottom clamping block 15 to rotate in the bottom clamping hole 14, and after the bottom stirring plate 16 rotates, the inside of the processing box 1 is stirred, and the immersed material is cooled by the flowing cooling liquid, and under the extraction of the circulating pump body 25 on the side, the cooling liquid in the inside of the processing box 1 enters the inside of the cooling box 23 through the discharge pipeline 17, and under the cooperation between the cooling liquid tank 30, the inner pump body 31 and the compressor 32 on the side, the cooling liquid entering the inside is cooled by the plurality of inner blocking plates 33 and the condensing pipeline 35 in the inside, and after being cooled, the liquid is extracted by the circulating pump body 25 on the top, and is re-injected into the inside of the processing box 1 through the feeding pipe 9 for repeated use.
[0032] The above only describes the preferred embodiments of the present application, and the protection scope of the present application is not limited thereto, and any person skilled in the art can make equivalent replacements or changes to the technical solutions and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered by the protection scope of the present application.
Claims
1. An immersion liquid cooling device comprising a processing cabinet (1), characterized in that, The bottom surface of the processing box (1) is uniformly butt jointed with a supporting bottom block (2), one side of the processing box (1) is fixedly connected with a control panel (3), the two side edges of the processing box (1) are symmetrically fixedly connected with lifting cylinders (4), the two side edges of the processing box (1) are vertically and symmetrically provided with vertical outer rods (5), the vertical outer rods (5) are horizontally welded with side fixed blocks (6) away from the side edges of the processing box (1), the top ends of the vertical outer rods (5) are horizontally welded with top connecting blocks (7), the bottom surface of the top connecting block (7) is vertically and downward welded with inner vertical rods (8), one side of the processing box (1) is horizontally fixedly inserted with a feeding pipe (9), the bottom surface of the processing box (1) is uniformly provided with bottom screw holes (10), the top end of the supporting bottom block (2) is fixedly inserted with a connecting screw rod (11), the bottom surface of the processing box (1) is symmetrically fixedly provided with a bottom box body (12), the inner side edge of the bottom box body (12) is fixedly provided with an agitating motor (13), the inner bottom surface of the processing box (1) is symmetrically provided with bottom clamping holes (14), the inner side edge of the bottom clamping hole (14) is clamped with a bottom clamping block (15), the inner bottom surface of the processing box (1) is horizontally clamped with an agitating bottom plate (16), the side edge of the processing box (1) is inserted with a discharging pipe (17), the inner side edge of the processing box (1) is vertically and symmetrically provided with inner limiting grooves (18), one side of the inner vertical rod (8) is vertically welded with a side clamping strip (19), the side edges between the inner vertical rods (8) are horizontally fixedly provided with a fixed frame body (20), the inner side edge of the fixed frame body (20) is horizontally fixedly provided with a supporting mesh plate (21), the inner side wall of the control panel (3) is fixedly clamped with a control mainboard (22), the processing box (1) is horizontally fixedly provided with a cooling box body (23) away from the control panel (3), one side of the processing box (1) is symmetrically provided with a side through groove (24), the inner side edge of the cooling box body (23) is symmetrically fixedly provided with a circulating pump body (25), one end of the circulating pump body (25) is horizontally fixedly provided with a matching box body (26), the side edges between the matching box bodies (26) are fixedly provided with buffer box bodies (27), one side of the buffer box body (27) is fixedly provided with an inner box body (28), the top surface and the bottom surface of the buffer box body (27) are symmetrically provided with matching holes (29), the inner side edge of the inner box body (28) is fixedly provided with a cooling liquid tank (30), the inner side edge of the inner box body (28) is fixedly provided with an inner pump body (31), the inner side edge of the inner box body (28) is fixedly provided with a compressor (32), the inner side edges of the buffer box body (27) are uniformly welded with inner blocking plates (33), the inner side wall of the inner blocking plate (33) is horizontally clamped with a transmission pipe (34), the inner blocking plates (33) are uniformly inserted with condensing pipes (35) between the side edges.
2. The liquid immersion cooling apparatus of claim 1, wherein, The top surface of the processing box (1) is provided in an open shape, the number of support bottom blocks (2) is four, and the four support bottom blocks (2) are arranged in parallel with each other, and the top ends of the four support bottom blocks (2) are correspondingly and telescopically arranged at the bottom opening end of the bottom screw hole (10), and the inside of the control panel (3) and the inside of the control mainboard (22) are electrically connected with each other.
3. The liquid immersion cooling apparatus of claim 1, wherein, The number of lifting cylinders (4) is two, and the two lifting cylinders (4) are arranged in parallel with each other, and the two lifting cylinders (4) are vertically fixed at the bottom end position of the middle line of the two side edges of the processing box (1), and the output ends of the two lifting cylinders (4) are vertically and fixedly connected to the bottom surface center position of the side fixed block (6), and the vertical outer rods (5) are arranged in parallel and symmetrically with each other, and the vertical outer rods (5) are vertically arranged at the middle line positions of the two sides of the processing box (1).
4. The liquid immersion cooling apparatus of claim 1, wherein, The side fixed block (6) is horizontally fixed at the side edge bottom end position of the vertical outer rod (5), the bottom surface of the top connecting block (7) is horizontally and telescopically arranged at the top surface position of the processing box (1), the top end of the inner vertical rod (8) is fixedly arranged at the bottom surface of the top connecting block (7) away from the vertical outer rod (5), and the inner vertical rod (8) and the vertical outer rod (5) are arranged in parallel with each other, and the side edge of the inner vertical rod (8) is vertically and telescopically arranged at the inside middle line position of the processing box (1).
5. The liquid immersion cooling apparatus of claim 1, wherein, One end of the feeding pipe (9) is telescopically arranged at the inside edge of the cooling box (23), and the extending end is fixedly connected to the output end of the circulating pump body (25), the other end of the feeding pipe (9) is horizontally telescopically arranged at the side edge middle line near the top end position of the processing box (1), the bottom screw hole (10) is arranged at the bottom surface near the four corners of the processing box (1), the top end of the connecting screw rod (11) is fixedly connected to the inside edge of the bottom screw hole (10), and the bottom box body (12) is symmetrically fixed at the bottom surface middle line near the two end positions of the processing box (1).
6. The liquid immersion cooling apparatus of claim 1, wherein, The output end of the stirring motor (13) extends vertically upward to the inside bottom surface center position of the bottom clamping hole (14), and the extending top end is fixedly connected to the bottom end center position of the bottom clamping block (15), the bottom clamping hole (14) is symmetrically arranged at the inside bottom surface middle line near the two end positions of the processing box (1), the top end of the bottom clamping block (15) is fixedly welded to the bottom surface center position of the stirring bottom plate (16), and the top surface of the stirring bottom plate (16) is uniformly provided with a screw blade structure, one end of the discharge pipe (17) is telescopically arranged at the output end of one circulating pump body (25), and the other end is telescopically arranged at the side edge middle line near the bottom end position of the processing box (1).
7. The liquid immersion cooling apparatus of claim 1, wherein, The side clamping strip (19) is vertically clamped and arranged on the inner side of the inner limiting groove (18), one side of the fixed frame body (20) is fixedly arranged at the center position of the side edge of the inner vertical rod (8), the side through groove (24) is symmetrically and throughly arranged on the side edge of the processing box (1) near the middle line of the two ends, the circulating pump body (25) is symmetrically and fixedly arranged on the inner side of the cooling box (23) near the top surface and the bottom surface, the inside of the matching box body (26) is connected with the input end of the circulating pump body (25), and the opening of the matching hole (29) is connected with the opening end of the matching box body (26).
8. The liquid immersion cooling apparatus of claim 1, wherein, The cooling liquid tank (30), the inner pump body (31) and the compressor (32) are connected by pipelines, the number of the inner blocking plates (33) is multiple, the multiple inner blocking plates (33) are arranged in a stacked and parallel manner, the multiple inner blocking plates (33) are made of metal plates, and the multiple inner blocking plates (33) are arranged in a staggered manner.
9. The liquid immersion cooling apparatus of claim 1, wherein, The transmission pipe (34) is arranged in an S-shaped manner on the inner side wall of the inner blocking plate (33), the transmission pipe (34) is connected with the output end of the compressor (32), the condensing pipes (35) are arranged in parallel, and the two ends of the multiple condensing pipes (35) are connected with the side edges of the transmission pipe (34).
Citation Information
Patent Citations
Distribution box with efficient heat dissipation in box body
CN113690761A
Chemical raw material rapid cooling device
CN212253330U