Heat dissipation air duct structure of immersed all-in-one machine

The air duct main body design, which combines slide rails, springs, and telescopic motors, solves the problems of cumbersome maintenance and dust prevention in the heat dissipation air duct structure of immersion integrated units, enabling rapid maintenance and automatic dust prevention, and improving the operating efficiency and lifespan of the equipment.

CN223912751UActive Publication Date: 2026-02-13ZHEJIANG KANGSHENG HEAT EXCHANGER CO LTD
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Patent Information

Application Number
CN202423268556.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2026-02-13
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The existing immersion all-in-one heat dissipation duct structure is cumbersome to operate during maintenance, requiring the use of a screwdriver to remove bolts, which affects maintenance efficiency. In addition, it lacks dust and debris protection components, which allow dust and debris to enter, affecting heat dissipation and equipment lifespan.

Method used

The main body of the air duct adopts a slide rail and spring structure, combined with a telescopic motor and sealing plate, to achieve quick disassembly and automatic sealing of the main body of the air duct. The cooperation of slide rail and spring simplifies the maintenance process and automatically seals the air intake when the fan stops working to prevent dust and debris from entering.

Benefits of technology

It improved maintenance efficiency, reduced manpower consumption, ensured a clean working environment for the equipment, and extended the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a heat dissipation air duct structure of an immersed all-in-one machine, and relates to the technical field of the heat dissipation air duct structure of the immersed all-in-one machine, the heat dissipation air duct structure of the immersed all-in-one machine comprises an equipment shell, the inner wall surface of the equipment shell is fixedly connected with two supporting blocks, the upper surfaces of the two supporting blocks are fixedly connected with sliding rails, the outer surfaces of the two sliding rails are sleeved with connecting pieces, and the connecting pieces are fixedly connected with the equipment shell. The opposite surfaces of the two connecting pieces are fixedly connected with an air duct body. When maintenance is needed, the air duct body is pulled upwards, the air duct body drives the two connecting pieces to move synchronously, the two connecting pieces slide on the outer surfaces of the two sliding rails and extrude the two springs, the two springs compress the stroke and absorb kinetic energy, after the two springs reach the designated position, the cooling fan in the air duct body is maintained, and after the maintenance operation is completed, the cooling fan in the air duct body is taken out. And when the air duct main body is released, the spring pushes the two connecting pieces, so that the two connecting pieces drive the air duct main body to reset along the outer surfaces of the two sliding rails, a screwdriver does not need to be used for disassembly, and the overhauling efficiency is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the heat dissipation air duct structure technical field of immersion type all -in -one, especially to a kind of heat dissipation air duct structure of immersion type all -in -one. BACKGROUND

[0002] Immersion type all-in-one is a kind of electronic equipment, especially high-power electronic components, such as server, computer hardware, immersion in special coolant, heat dissipation by liquid heat exchange technology, this cooling system is widely used in high-performance computing, big data center, artificial intelligence training and other fields, in immersion type all-in-one, although coolant itself provides higher efficient heat dissipation performance, but good heat dissipation air duct structure is still the key factor to ensure long time stable operation of system.

[0003] But in prior art, the heat dissipation air duct structure of immersion type all-in-one is usually half exposed, the cover plate of half shielding heat dissipation fan and other components is fixed by bolt, when overhauling and maintaining, bolt needs to be disassembled circle by circle using screwdriver wrench tool, after overhauling is completed, bolt is screwed again circle by circle, it is tedious to operate, need a lot of time and manpower, seriously affect the overhauling efficiency of equipment, and the heat dissipation air duct structure of immersion type all-in-one is half exposed, lack necessary dustproof and impurity component, when heat dissipation fan stops working, dust and impurities are easy to enter, in turn affect heat dissipation effect and equipment life. UTILITY MODEL CONTENTS

[0004] The utility model aims at solving the technical problem in prior art that the heat dissipation air duct structure of immersion type all-in-one is usually half exposed, the cover plate of half shielding heat dissipation fan and other components is fixed by bolt, when overhauling and maintaining, bolt needs to be disassembled circle by circle using screwdriver wrench tool, after overhauling is completed, bolt is screwed again circle by circle, it is tedious to operate, need a lot of time and manpower, seriously affect the overhauling efficiency of equipment, and the heat dissipation air duct structure of immersion type all-in-one is half exposed, lack necessary dustproof and impurity component, when heat dissipation fan stops working, dust and impurities are easy to enter, in turn affect heat dissipation effect and equipment life, and propose a kind of heat dissipation air duct structure of immersion type all-in-one.

[0005] To achieve the above object, the utility model adopts the following technical scheme: a kind of heat dissipation air duct structure of immersion type all-in-one, including equipment shell, the inner wall surface of the equipment shell is fixedly connected with two support blocks, the upper surface of two support blocks is fixedly connected with slide rail, the outer surface of two slide rails is all set with connecting piece, the opposite surface of two connecting pieces is fixedly connected with air duct main body, the outer surface of air duct main body is embedded in the inner wall surface of equipment shell, the upper surface of two connecting pieces is fixedly connected with spring, the upper end of two springs is fixedly connected with support plate, the upper of equipment shell is provided with cover plate.

[0006] Further, the lower surfaces of the two support plates are fixedly connected to the upper ends of the two slide rails, and the outer surface of the equipment shell is fixedly connected with a protective plate.

[0007] Further, the outer surfaces of the two protective plates are fixedly connected with telescopic motors, and the output ends of the two telescopic motors are fixedly connected with support frames.

[0008] Further, the outer surfaces of the two support frames are fixedly connected with a plurality of sealing pieces, and the outer surfaces of the plurality of sealing pieces are embedded in the interior of the protective plate.

[0009] Further, the inner wall surfaces of the two springs are sleeved on the outer surfaces of the two slide rails.

[0010] Further, the lower surfaces of the air duct body are rotatably connected with two supporting legs through pivots, and the two supporting legs are mirror images.

[0011] Compared with the prior art, the advantages and positive effects of the utility model lie in,

[0012] 1、 in the utility model, when needing to be overhauled, the air duct body is pulled upward, the air duct body drives two connecting pieces to move synchronously, the two connecting pieces slide on the outer surfaces of the two slide rails and press two springs, the two springs are compressed in stroke, kinetic energy is absorbed, after reaching the specified position, the heat dissipation fan in the air duct body is overhauled, after the overhauling operation is completed, the air duct body is released, the spring pushes the two connecting pieces, so that the two connecting pieces drive the air duct body to reset along the outer surfaces of the two slide rails, without using a screwdriver to disassemble, the efficiency during overhauling is effectively improved.

[0013] 2、 in the utility model, when the heat dissipation fan in the air duct body works, the telescopic motor pushes the support frame, so that the sealing pieces fixed to the outer surface of the support frame are separated from the air inlet holes of the protective plate, when the heat dissipation fan in the air duct body stops working, the output end of the telescopic motor drives the support frame to be attached to one side surface of the protective plate, so that the plurality of sealing pieces fill the air inlet holes of the protective plate, avoid the entry of sundries and dust, ensure the working environment and service life of the equipment, the two slide rails limit the stroke of the spring when the two springs are stressed, avoid the bending deformation of the spring, ensure the normal work of the spring, after the air duct body moves to the specified position, the supporting leg is rotated, so that the projection of the supporting leg and the upper end of the equipment shell coincide, the supporting leg provides supporting force for the air duct body. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the heat dissipation air duct structure of the immersion type all-in-one machine provided by the utility model;

[0015] Figure 2The utility model provides a kind of heat dissipation air duct structure of immersion integrated machine's stereoscopic structure schematic diagram of rear view of protective plate.

[0016] Figure 3 The utility model provides a kind of heat dissipation air duct structure of immersion integrated machine's stereoscopic structure schematic diagram of protective plate.

[0017] Figure 4 The utility model provides a kind of heat dissipation air duct structure of immersion integrated machine's stereoscopic structure schematic diagram of protective plate.

[0018] Figure 5 The utility model provides a kind of heat dissipation air duct structure of immersion integrated machine's stereoscopic structure schematic diagram of support leg.

[0019] Legend: 1, equipment shell;2, cover plate;3, protective plate;4, support block;5, sliding rail;6, connecting piece;7, spring;8, support plate;9, air duct main body;10, support frame;11, sealing sheet;12, telescopic motor;13, support leg. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0021] Embodiment 1

[0022] As Figures 1-5 The utility model provides technical scheme: a kind of heat dissipation air duct structure of immersion integrated machine, including equipment shell 1, the inner wall surface of equipment shell 1 is fixedly connected with two support blocks 4, the upper surface of two support blocks 4 is fixedly connected with sliding rail 5, the outer surface of two sliding rails 5 is all set with connecting piece 6, the opposite surface of two connecting pieces 6 is fixedly connected with air duct main body 9, the outer surface of air duct main body 9 is embedded in the inner wall surface of equipment shell 1, the upper surface of two connecting pieces 6 is fixedly connected with spring 7, the upper end of two springs 7 is fixedly connected with support plate 8, the upper portion of equipment shell 1 is provided with cover plate 2, the lower surface of two support plates 8 is fixedly connected to the upper end of two sliding rails 5, and the outer surface of equipment shell 1 is fixedly connected with protective plate 3.

[0023] In this embodiment, when maintenance is needed, pull the air duct body 9 upwards, the air duct body 9 drives the two connecting pieces 6 to move synchronously, the two connecting pieces 6 slide on the outer surfaces of the two slide rails 5 and press the two springs 7, the two springs 7 are compressed in stroke, absorb kinetic energy, after reaching the specified position, the maintenance work of the cooling fan inside the air duct body 9 is carried out, after the maintenance work is completed, release the air duct body 9, the spring 7 pushes the two connecting pieces 6, so that the two connecting pieces 6 drive the air duct body 9 to reset along the outer surfaces of the two slide rails 5, without using screwdriver to disassemble, effectively improving the efficiency during maintenance.

[0024] Embodiment 2

[0025] As shown in Figures 1-5 The outer surfaces of the two protective plates 3 are fixedly connected with telescopic motors 12, the output ends of the two telescopic motors 12 are fixedly connected with support frames 10, one side surfaces of the two support frames 10 are fixedly connected with a plurality of sealing sheets 11, the outer surfaces of the plurality of sealing sheets 11 are embedded in the interiors of the protective plates 3, the inner wall surfaces of the two springs 7 are sleeved on the outer surfaces of the two slide rails 5, the lower surfaces of the air duct bodies 9 are rotationally connected with two supporting legs 13 through rotating shafts, and the two supporting legs 13 are mirror image arranged.

[0026] In this embodiment, when the cooling fan inside the air duct body 9 works, the telescopic motor 12 pushes the support frame 10, so that the sealing sheet 11 fixed to the outer surface of the support frame 10 is separated from the air inlet hole of the protective plate 3, when the cooling fan inside the air duct body 9 stops working, the output end of the telescopic motor 12 drives the support frame 10 to be attached to one side surface of the protective plate 3, so that the plurality of sealing sheets 11 fill the air inlet hole of the protective plate 3, avoid the entry of sundries and dust, ensure the working environment of the equipment, the two slide rails 5 limit the stroke of the spring 7 when the two springs 7 are stressed, avoid the bending deformation of the spring 7, ensure the normal work of the spring 7, after the air duct body 9 moves to the specified position, rotate the supporting leg 13, so that the projection of the supporting leg 13 coincides with the upper end of the equipment shell 1, the supporting leg 13 provides supporting force for the air duct body 9.

[0027] Working principle: as Figures 1-5As shown, when maintenance is needed, the air duct body 9 is pulled upward, the air duct body 9 drives the two connecting pieces 6 to move synchronously, the two connecting pieces 6 slide on the outer surfaces of the two slide rails 5 and press the two springs 7, the two springs 7 are compressed in stroke, kinetic energy is absorbed, after the air duct body 9 moves to the designated position, the rotating support leg 13 is rotated, so that the projection of the support leg 13 coincides with the upper end of the equipment shell 1, the support leg 13 provides support force for the air duct body 9, the maintenance operation of the cooling fan in the air duct body 9 is carried out, after the maintenance operation is completed, the air duct body 9 is released, the spring 7 pushes the two connecting pieces 6, so that the two connecting pieces 6 drive the air duct body 9 to reset along the outer surfaces of the two slide rails 5, when the cooling fan in the air duct body 9 works, the telescopic motor 12 pushes the support frame 10, so that the sealing sheet 11 fixed to the outer surface of the support frame 10 is separated from the air inlet hole of the protective plate 3, when the cooling fan in the air duct body 9 stops working, the output end of the telescopic motor 12 drives the support frame 10 to be attached to one side surface of the protective plate 3, so that the multiple sealing sheets 11 fill the air inlet hole of the protective plate 3, the two slide rails 5 limit the stroke of the spring 7 when the two springs 7 are stressed.

[0028] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made according to the technical essence of the present application to the above embodiments still falls within the protection scope of the present application.

Claims

1. A heat dissipation air duct structure of an all-in-one submerged computer, comprising a device shell (1), characterized in that: The inner wall surface of the equipment shell (1) is fixedly connected with two supporting blocks (4), the upper surfaces of the two supporting blocks (4) are fixedly connected with slide rails (5), the outer surfaces of the two slide rails (5) are sleeved with connecting pieces (6), the opposite surfaces of the two connecting pieces (6) are fixedly connected with air duct bodies (9), the outer surfaces of the air duct bodies (9) are embedded in the inner wall surface of the equipment shell (1), the upper surfaces of the two connecting pieces (6) are fixedly connected with springs (7), the upper ends of the two springs (7) are fixedly connected with supporting plates (8), and the upper portion of the equipment shell (1) is provided with a cover plate (2).

2. The immersion-type integrated machine heat dissipation air duct structure according to claim 1, characterized in that: The lower surfaces of the two supporting plates (8) are fixedly connected with the upper ends of the two slide rails (5), and the outer surface of the equipment shell (1) is fixedly connected with a protective plate (3).

3. The immersion-type integrated machine heat dissipation air duct structure according to claim 2, characterized in that: The outer surfaces of the two protective plates (3) are fixedly connected with telescopic motors (12), and the output ends of the two telescopic motors (12) are fixedly connected with supporting frames (10).

4. The immersion-type integrated machine heat dissipation air duct structure according to claim 3, characterized in that: The side surfaces of the two supporting frames (10) are fixedly connected with a plurality of sealing sheets (11), and the outer surfaces of the plurality of sealing sheets (11) are embedded in the interior of the protective plate (3).

5. The immersion-type integrated computer heat dissipation air duct structure of claim 1, wherein: The inner wall surfaces of the two springs (7) are sleeved with the outer surfaces of the two slide rails (5).

6. The immersion-type integrated computer heat dissipation air duct structure of claim 1, wherein: The lower surfaces of the air duct bodies (9) are rotatably connected with two supporting legs (13) through rotating shafts, and the two supporting legs (13) are mirror images.