An IDC computer room cooling device

By designing an IDC computer room cooling device with automated filtering and cleaning systems, the problem of frequent manual maintenance of traditional devices is solved, and the cooling effect and user experience is improved.

CN120035103BActive Publication Date: 2025-07-08BEILIAN TECH CO LTD
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Patent Information

Application Number
CN202510494331.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-07-08
Estimated Expiration
2045-04-21

AI Technical Summary

Technical Problem

The traditional IDC computer room cooling device cannot clean the filter structure itself, resulting in frequent manual maintenance of users, affecting the user experience.

Method used

An IDC room cooling device including a deformable gas filter mechanism, a temperature control load mechanism and an automated cleaning system was designed. Through the cooperation of structures such as detachable dust-proof hoisting plate, a deformable dust filter and a conical jet metal pipe, automated filtration and cleaning are realized, and the cooling effect is improved in combination with multiple cooling methods.

Benefits of technology

The automatic cleaning of the filter structure is realized, which improves the user experience, and improves the cooling effect of the computer room through multiple cooling methods, simplifies the maintenance process.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses an IDC computer room cooling device, belonging to the technical field of computer room cooling devices, including a protective metal housing. A deformable air filtering mechanism is arranged at the air inlet end of the protective metal housing. A detachable dust-proof lifting plate for supporting the deformable air filtering mechanism is detachably connected to the air inlet end of the protective metal housing. The detachable dust-proof lifting plate is slidably connected to the deformable air filtering mechanism and is also slidably connected to the protective metal housing. A temperature regulating and bearing mechanism is arranged at the air outlet end of the protective metal housing. A plurality of first dust exhaust holes are opened at the bottom side of the protective metal housing. The temperature regulating and bearing mechanism includes a liquid storage metal temperature regulating box. Through the mutual cooperation of multiple structures, air is filtered and dust is removed, and through the mutual cooperation of multiple structures, automatic cleaning of the filtering structure is realized, so that manual maintenance by staff is not required, and the user experience of the cooling device is improved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of computer room cooling devices, and particularly relates to an IDC computer room cooling device. Background Art

[0002] IDC refers to the Internet Data Center. The telecommunications department uses the existing Internet communication lines and bandwidth resources to establish a standardized telecommunications professional-level computer room environment to provide comprehensive services such as server hosting, leasing, and related value-added services for enterprises and governments. The IDC computer room needs to be equipped with corresponding cooling devices;

[0003] Traditional cooling devices include structures such as a housing, connecting pipes, fixing plates, ventilation grooves, guide grooves, sliders, filter plates, fixing blocks, push blocks, gaskets, washers, movable grooves, and spring rods. The advantage of this cooling device is that it can filter air through the use of the filter plate;

[0004] However, the traditional cooling device cannot self-clean the filtering structure, resulting in the user needing to manually clean and maintain the filter plate frequently. Frequent manual maintenance is time-consuming and laborious, affecting the user experience of the cooling device, and there is an urgent need for improvement. Summary of the Invention

[0005] The purpose of the present invention is to provide an IDC computer room cooling device to solve the problems raised in the above background art.

[0006] To achieve the above object, the present invention provides the following technical solution: An IDC computer room cooling device includes a protective metal housing. A deformable air filtering mechanism is provided at the air inlet end of the protective metal housing. A detachable dust-proof lifting plate for supporting the deformable air filtering mechanism is detachably connected to the air inlet end of the protective metal housing. The detachable dust-proof lifting plate is slidably connected to the deformable air filtering mechanism and slidably connected to the protective metal housing. A temperature regulating and bearing mechanism is provided at the air outlet end of the protective metal housing. A plurality of first dust exhaust holes are opened at the bottom side of the protective metal housing. The temperature regulating and bearing mechanism includes a liquid storage metal temperature regulating box filled with a flowable temperature regulating liquid inside. A plurality of first material conveying members are provided at the bottom side of the liquid storage metal temperature regulating box. The first material conveying members penetrate through the side wall of the liquid storage metal temperature regulating box and are fixedly connected to the liquid storage metal temperature regulating box. A plurality of second material conveying members are provided at the top side of the liquid storage metal temperature regulating box. The second material conveying members penetrate through the side wall of the liquid storage metal temperature regulating box and are fixedly connected to the liquid storage metal temperature regulating box. A limiting support air storage cover is provided on the side of the liquid storage metal temperature regulating box facing the protective metal housing. The limiting support air storage cover is fixedly connected to the liquid storage metal temperature regulating box and fixedly connected to the protective metal housing. A plurality of conical jet metal pipes for cooling air are provided on the side of the limiting support air storage cover away from the protective metal housing. The plurality of conical jet metal pipes are arranged at intervals on the liquid storage metal temperature regulating box. The conical jet metal pipes penetrate through the liquid storage metal temperature regulating box and are fixedly connected to the liquid storage metal temperature regulating box.

[0007] As a further solution of the present invention: The deformable air filtering mechanism includes a first hollow air conveying installer that penetrates through the side wall of the limiting support air storage cover and is hermetically slidably connected to the limiting support air storage cover. A deformable dust filter is arranged inside the first hollow air conveying installer. An adjustable-speed dust-proof blower is provided at the end of the first hollow air conveying installer away from the limiting support air storage cover. A plurality of second dust exhaust holes corresponding to the deformable dust filter are opened at the end of the first hollow air conveying installer close to the limiting support air storage cover. A movable hole-sealing pipe for blocking the second dust exhaust holes is slidably connected to the first hollow air conveying installer. A first deformable position changing member is arranged on one side of the first hollow air conveying installer. One end of the first deformable position changing member is fixedly connected to the limiting support air storage cover, and the other end of the first deformable position changing member is provided with a first metal transmission member corresponding to the movable hole-sealing pipe.

[0008] As a further solution of the present invention: a deformable plugging pipe is arranged inside the movable plugging pipe. The deformable plugging pipe is hermetically and slidably connected to the first hollow air conveying installer, and the deformable plugging pipe is fixedly connected to the movable plugging pipe. A dust filtering guard net is arranged at one end of the adjustable-speed dust-proof blower away from the deformable dust filter. The first metal transmission part is fixedly connected to the first deformable position changing part, and the first metal transmission part is fixedly connected to the movable plugging pipe.

[0009] As a further solution of the present invention: the deformable dust filter includes a dust filtering net column. A second limit installation and reinforcement disk for strengthening the first hollow air conveying installer is arranged on one side of the dust filtering net column away from the adjustable-speed dust-proof blower. The second limit installation and reinforcement disk is hermetically and slidably connected to the first hollow air conveying installer. A second hollow air conveying installer communicated with the dust filtering net column is arranged in the middle of the second limit installation and reinforcement disk. The second hollow air conveying installer penetrates through the second limit installation and reinforcement disk, and the second hollow air conveying installer is rotatably connected to the second limit installation and reinforcement disk. The second hollow air conveying installer is fixedly connected to the dust filtering net column.

[0010] As a further solution of the present invention: a third limit installation and reinforcement disk is arranged at one end of the dust filtering net column close to the adjustable-speed dust-proof blower. The third limit installation and reinforcement disk is fixedly connected to the dust filtering net column. An adjustable-speed power driving part for cooperating with the third limit installation and reinforcement disk to drive the dust filtering net column to rotate is arranged on one side of the second limit installation and reinforcement disk away from the temperature control bearing mechanism. The output end of the adjustable-speed power driving part is fixedly connected to the third limit installation and reinforcement disk.

[0011] As a further solution of the present invention: a first limit installation and reinforcement disk is arranged at one end of the adjustable-speed power driving part close to the adjustable-speed dust-proof blower. The first limit installation and reinforcement disk is fixedly connected to the adjustable-speed power driving part. The first limit installation and reinforcement disk is detachably connected to the first hollow air conveying installer. A plurality of air conveying and pressure relief holes are arranged on one side of the adjustable-speed power driving part away from the dust filtering net column. The air conveying and pressure relief holes penetrate through the first limit installation and reinforcement disk, and the plurality of air conveying and pressure relief holes are arranged in an annular array on the first limit installation and reinforcement disk.

[0012] As a further solution of the present invention: a plurality of adjustable cleaning parts for cleaning the dust filtering net column are arranged on one side of the second limit installation and reinforcement disk facing the adjustable-speed dust-proof blower. The plurality of adjustable cleaning parts are arranged in an annular array on the outside of the dust filtering net column. A plurality of second deformable position changing parts are arranged at both ends of the adjustable cleaning parts. The second deformable position changing parts are fixedly connected to the adjustable cleaning parts. A second metal transmission part for limiting and supporting the adjustable cleaning parts is arranged at one end of the second deformable position changing part away from the adjustable cleaning parts. The second metal transmission part is fixedly connected to the second deformable position changing parts.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is simple and easy to use. During use, the air is filtered and dust-removed through the mutual cooperation of multiple structures, and through the mutual cooperation of multiple structures, the automatic cleaning of the filtering structure is realized, so that there is no need for manual maintenance by staff, improving the user experience of the cooling device. Secondly, the present invention can perform multiple cooling of the air through the mutual cooperation of multiple structures, thereby improving the cooling effect of the cooling device on the computer room through the mutual cooperation of various cooling methods. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic structural diagram of an IDC computer room cooling device;

[0015] Figure 2 is a schematic structural diagram of a temperature-regulating bearing mechanism in an IDC computer room cooling device;

[0016] Figure 3 is a structural sectional view of a liquid storage metal temperature-regulating box in an IDC computer room cooling device;

[0017] Figure 4 is an exploded view of a deformable air-filtering mechanism in an IDC computer room cooling device;

[0018] Figure 5 is an exploded view of a deformable dust filter in an IDC computer room cooling device;

[0019] Figure 6 is a schematic structural diagram of a dust filter net column in an IDC computer room cooling device;

[0020] In the figure: 1 - protective metal housing, 2 - temperature-regulating bearing mechanism, 3 - deformable air-filtering mechanism, 4 - detachable dust-proof lifting plate, 5 - first dust discharge hole, 20 - first material conveyor, 21 - liquid storage metal temperature-regulating box, 22 - second material conveyor, 23 - limit support air storage cover, 24 - conical jet metal pipe, 25 - flowable temperature-regulating liquid, 30 - adjustable-speed dust-proof blower, 31 - first metal transmission part, 32 - first deformable position-changing part, 33 - first hollow air transmission installer, 34 - movable sealing pipe, 35 - deformable sealing pipe, 36 - second dust discharge hole, 37 - deformable dust filter, 39 - dust filter net, 370 - first limit installation and reinforcement disc, 371 - dust filter net column, 372 - second hollow air transmission installer, 373 - second limit installation and reinforcement disc, 374 - adjustable-speed power driving part, 375 - air transmission and pressure relief hole, 376 - third limit installation and reinforcement disc, 377 - adjustable cleaning part, 378 - second deformable position-changing part, 379 - second metal transmission part. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0022] In the description of the present application, it should be noted that, unless otherwise clearly defined and limited, the terms "installation", "connection", "connection", and "setting" should be understood in a broad sense. For example, it can be fixedly connected and set, or detachably connected and set, or integrally connected and set.

[0023] For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.

[0024] Please refer to Figure 1 , this embodiment provides an IDC computer room cooling device, including a protective metal shell 1. A deformable air filtering mechanism 3 is arranged at the air inlet end of the protective metal shell 1. A detachable dust-proof lifting plate 4 for supporting the deformable air filtering mechanism 3 is detachably connected to the air inlet end of the protective metal shell 1. The detachable dust-proof lifting plate 4 is slidably connected to the deformable air filtering mechanism 3 and slidably connected to the protective metal shell 1. A temperature adjustment and bearing mechanism 2 is arranged at the air outlet end of the protective metal shell 1. A plurality of first dust discharge holes 5 are opened at the bottom of the side surface of the protective metal shell 1. During use, the dust discharged by the deformable air filtering mechanism 3 is discharged through the first dust discharge holes 5.

[0025] Please refer to Figure 1 , Figure 2 and Figure 3, in one embodiment, to make the use of the temperature-regulating bearing mechanism 2 more reliable, in this embodiment, preferably, the temperature-regulating bearing mechanism 2 includes a liquid storage metal temperature-regulating box 21. The inside of the liquid storage metal temperature-regulating box 21 is filled with a flowable temperature-regulating liquid 25. The flowable temperature-regulating liquid 25 is water. A number of first material conveying members 20 are provided at the bottom of the side of the liquid storage metal temperature-regulating box 21. The first material conveying members 20 penetrate through the side wall of the liquid storage metal temperature-regulating box 21 and are fixedly connected to the liquid storage metal temperature-regulating box 21. A number of second material conveying members 22 are provided at the top of the side of the liquid storage metal temperature-regulating box 21. The second material conveying members 22 penetrate through the side wall of the liquid storage metal temperature-regulating box 21 and are fixedly connected to the liquid storage metal temperature-regulating box 21. The first material conveying members 20 and the second material conveying members 22 are both steel pipes. A limiting support air storage cover 23 is provided on the side of the liquid storage metal temperature-regulating box 21 facing the protective metal housing 1. The limiting support air storage cover 23 is fixedly connected to the liquid storage metal temperature-regulating box 21 and is fixedly connected to the protective metal housing 1. A number of conical jet metal pipes 24 for cooling the air are provided on the side of the limiting support air storage cover 23 away from the protective metal housing 1. The number of conical jet metal pipes 24 are arranged at intervals on the liquid storage metal temperature-regulating box 21. The conical jet metal pipes 24 penetrate through the liquid storage metal temperature-regulating box 21 and are fixedly connected to the liquid storage metal temperature-regulating box 21. The conical jet metal pipes 24 are copper pipes. The inlet diameter of the conical jet metal pipes 24 is larger than the outlet diameter thereof, so as to realize the jet of air.

[0026] In another embodiment, in order to make the use of the temperature-adjusting bearing mechanism 2 more reliable, in this embodiment, preferably, the temperature-adjusting bearing mechanism 2 includes a liquid storage metal temperature-adjusting box 21. The inside of the liquid storage metal temperature-adjusting box 21 is filled with a flowable temperature-adjusting liquid 25. The flowable temperature-adjusting liquid 25 is mineral oil. A number of first material conveying members 20 are provided at the bottom of the side surface of the liquid storage metal temperature-adjusting box 21. The first material conveying members 20 penetrate through the side wall of the liquid storage metal temperature-adjusting box 21 and are fixedly connected to the liquid storage metal temperature-adjusting box 21. A number of second material conveying members 22 are provided at the top of the side surface of the liquid storage metal temperature-adjusting box 21. The second material conveying members 22 penetrate through the side wall of the liquid storage metal temperature-adjusting box 21 and are fixedly connected to the liquid storage metal temperature-adjusting box 21. The first material conveying members 20 and the second material conveying members 22 are both plastic pipes. A limiting support air storage cover 23 is provided on the side of the liquid storage metal temperature-adjusting box 21 facing the protective metal housing 1. The limiting support air storage cover 23 is fixedly connected to the liquid storage metal temperature-adjusting box 21 and is fixedly connected to the protective metal housing 1. A number of conical jet metal pipes 24 for cooling air are provided on the side of the limiting support air storage cover 23 away from the protective metal housing 1. The conical jet metal pipes 24 are arranged at intervals on the liquid storage metal temperature-adjusting box 21. The conical jet metal pipes 24 penetrate through the liquid storage metal temperature-adjusting box 21 and are fixedly connected to the liquid storage metal temperature-adjusting box 21. The conical jet metal pipes 24 are steel pipes. The inlet diameter of the conical jet metal pipes 24 is larger than the outlet diameter thereof, so as to realize the jet of air.

[0027] Please refer to Figure 1 and Figure 4, in one embodiment, to make the use of the deformable air filtering mechanism 3 more reliable, preferably, the deformable air filtering mechanism 3 includes a first hollow air conveying installer 33, the first hollow air conveying installer 33 is a steel pipe, the first hollow air conveying installer 33 penetrates through the side wall of the limit support air storage cover 23, the first hollow air conveying installer 33 is hermetically and slidably connected with the limit support air storage cover 23, a deformable dust filter 37 is arranged inside the first hollow air conveying installer 33, an adjustable-speed dust-proof blower 30 is arranged at one end of the first hollow air conveying installer 33 far away from the limit support air storage cover 23, a plurality of second dust discharge holes 36 corresponding to the deformable dust filter 37 are formed at one end of the first hollow air conveying installer 33 close to the limit support air storage cover 23, a movable hole-sealing pipe 34 for plugging the second dust discharge holes 36 is slidably connected to the first hollow air conveying installer 33, a first deformable position-changing member 32 is arranged on one side of the first hollow air conveying installer 33, the first deformable position-changing member 32 is an electric telescopic rod, one end of the first deformable position-changing member 32 is fixedly connected with the limit support air storage cover 23, and a first metal transmission member 31 corresponding to the movable hole-sealing pipe 34 is arranged at the other end of the first deformable position-changing member 32, and the first metal transmission member 31 is a steel plate;

[0028] Please refer to Figure 4 , in one embodiment, to make the functions of the deformable air filtering mechanism 3 more abundant, preferably, a deformable hole-sealing pipe 35 is arranged inside the movable hole-sealing pipe 34, the deformable hole-sealing pipe 35 is a rubber pipe, the deformable hole-sealing pipe 35 is hermetically and slidably connected with the first hollow air conveying installer 33, the deformable hole-sealing pipe 35 is fixedly connected with the movable hole-sealing pipe 34, a dust filtering protection net 39 is arranged at one end of the adjustable-speed dust-proof blower 30 far away from the deformable dust filter 37, the dust filtering protection net 39 is a steel wire net, the first metal transmission member 31 is fixedly connected with the first deformable position-changing member 32, and the first metal transmission member 31 is fixedly connected with the movable hole-sealing pipe 34;

[0029] Please refer to Figure 4 , Figure 5 and Figure 6, in one embodiment, in order to make the use of the deformable dust filter 37 more reliable, in this embodiment, preferably, the deformable dust filter 37 includes a dust filter net column 371 made of a steel mesh. On the side of the dust filter net column 371 away from the adjustable-speed dust-proof blower 30, there is a second limit installation and reinforcement disk 373 for strengthening the first hollow air delivery installer 33. The second limit installation and reinforcement disk 373 is in sealed sliding connection with the first hollow air delivery installer 33. In the middle of the second limit installation and reinforcement disk 373, there is a second hollow air delivery installer 372 connected to the dust filter net column 371. The second hollow air delivery installer 372 is a steel pipe and penetrates through the second limit installation and reinforcement disk 373. The second hollow air delivery installer 372 is rotatably connected to the second limit installation and reinforcement disk 373 and fixedly connected to the dust filter net column 371. At one end of the dust filter net column 371 close to the adjustable-speed dust-proof blower 30, there is a third limit installation and reinforcement disk 376 fixedly connected to the dust filter net column 371. On the side of the second limit installation and reinforcement disk 373 away from the temperature-adjusting bearing mechanism 2, there is an adjustable-speed power driving member 374 for cooperating with the third limit installation and reinforcement disk 376 to drive the dust filter net column 371 to rotate. The adjustable-speed power driving member 374 is a motor, and the output end of the adjustable-speed power driving member 374 is fixedly connected to the third limit installation and reinforcement disk 376;

[0030] Please refer to Figure 5 and Figure 6, in one embodiment, in order to enrich the functions of the deformable dust filter 37, preferably, a first limit installation reinforcement plate 370 is provided at one end of the adjustable speed power driving member 374 close to the adjustable speed dust-proof blower 30. The first limit installation reinforcement plate 370 is fixedly connected to the adjustable speed power driving member 374, and the first limit installation reinforcement plate 370 is detachably connected to the first hollow air conveying installer 33. A number of air conveying and pressure relief holes 375 are provided on the side of the adjustable speed power driving member 374 away from the dust filter column 371. The air conveying and pressure relief holes 375 penetrate through the first limit installation reinforcement plate 370, and a number of air conveying and pressure relief holes 375 are arranged in a circular array on the first limit installation reinforcement plate 370. A number of adjustable cleaning members 377 for cleaning the dust filter column 371 are provided on the side of the second limit installation reinforcement plate 373 facing the adjustable speed dust-proof blower 30. The adjustable cleaning members 377 are steel pipes, and a number of adjustable cleaning members 377 are arranged in a circular array on the outside of the dust filter column 371. A number of second deformable position changing members 378 are provided at both ends of the adjustable cleaning member 377. The second deformable position changing members 378 are springs, and the second deformable position changing members 378 are fixedly connected to the adjustable cleaning member 377. A second metal transmission member 379 for limiting and supporting the adjustable cleaning member 377 is provided at one end of the second deformable position changing member 378 away from the adjustable cleaning member 377. The second metal transmission member 379 is a steel plate, and the second metal transmission member 379 is fixedly connected to the second deformable position changing member 378. The second metal transmission member 379 at one end of the adjustable cleaning member 377 close to the adjustable speed power driving member 374 is fixedly connected to the third limit installation reinforcement plate 376, and the second metal transmission member 379 at one end of the adjustable cleaning member 377 away from the adjustable speed power driving member 374 is fixedly connected to the second hollow air conveying installer 372.

[0031] In another embodiment, in order to make the use of the deformable air filtering mechanism 3 more reliable, preferably, the deformable air filtering mechanism 3 includes a first hollow air delivery installer 33, which is an aluminum alloy tube. The first hollow air delivery installer 33 penetrates through the side wall of the limit support air storage cover 23 and is fixedly connected to the limit support air storage cover 23. A deformable dust filter 37 is arranged inside the first hollow air delivery installer 33. An adjustable-speed dust-proof blower 30 is arranged at one end of the first hollow air delivery installer 33 away from the limit support air storage cover 23. A plurality of second dust discharge holes 36 corresponding to the deformable dust filter 37 are opened at one end of the first hollow air delivery installer 33 close to the limit support air storage cover 23. A movable hole-sealing tube 34 for blocking the second dust discharge holes 36 is slidably connected to the first hollow air delivery installer 33. A first deformable position-changing member 32 is arranged on one side of the first hollow air delivery installer 33. The first deformable position-changing member 32 is a cylinder. One end of the first deformable position-changing member 32 is fixedly connected to the limit support air storage cover 23, and a first metal transmission member 31 corresponding to the movable hole-sealing tube 34 is arranged at the other end of the first deformable position-changing member 32. The first metal transmission member 31 is a steel plate;

[0032] In another embodiment, in order to make the functions of the deformable air filtering mechanism 3 more diverse, preferably, a deformable hole-sealing tube 35 is arranged inside the movable hole-sealing tube 34. The deformable hole-sealing tube 35 is a silica gel tube. The deformable hole-sealing tube 35 is hermetically and slidably connected to the first hollow air delivery installer 33 and is fixedly connected to the movable hole-sealing tube 34. A dust filter net 39 is arranged at one end of the adjustable-speed dust-proof blower 30 away from the deformable dust filter 37. The dust filter net 39 is a nylon net. The first metal transmission member 31 is fixedly connected to the first deformable position-changing member 32 and is fixedly connected to the movable hole-sealing tube 34;

[0033] In another embodiment, in order to make the use of the deformable dust filter 37 more reliable, in this embodiment, preferably, the deformable dust filter 37 includes a dust filter net column 371 made of copper mesh. On the side of the dust filter net column 371 away from the adjustable-speed dust-proof blower 30, there is a second limit installation and reinforcement plate 373 for strengthening the first hollow air delivery installer 33. The second limit installation and reinforcement plate 373 is fixedly connected to the first hollow air delivery installer 33. In the middle of the second limit installation and reinforcement plate 373, there is a second hollow air delivery installer 372 connected to the dust filter net column 371. The second hollow air delivery installer 372 is an aluminum alloy pipe. The second hollow air delivery installer 372 penetrates through the second limit installation and reinforcement plate 373 and is fixedly connected to the second limit installation and reinforcement plate 373. The second hollow air delivery installer 372 is rotatably connected to the dust filter net column 371. At one end of the dust filter net column 371 close to the adjustable-speed dust-proof blower 30, there is a third limit installation and reinforcement plate 376 fixedly connected to the dust filter net column 371. On the side of the second limit installation and reinforcement plate 373 away from the temperature-adjusting bearing mechanism 2, there is an adjustable-speed power driving member 374 for cooperating with the third limit installation and reinforcement plate 376 to drive the dust filter net column 371 to rotate. The adjustable-speed power driving member 374 is a pneumatic motor, and the output end of the adjustable-speed power driving member 374 is fixedly connected to the third limit installation and reinforcement plate 376;

[0034] In another embodiment, in order to enrich the functions of the deformable dust filter 37, in this embodiment, preferably, a first limit installation and reinforcement disc 370 is arranged at one end of the adjustable-speed power driving member 374 close to the adjustable-speed dust-proof blower 30. The first limit installation and reinforcement disc 370 is fixedly connected to the adjustable-speed power driving member 374, and the first limit installation and reinforcement disc 370 is detachably connected to the first hollow air delivery installer 33. A plurality of air delivery and pressure relief holes 375 are arranged on the side of the adjustable-speed power driving member 374 away from the dust filter column 371. The air delivery and pressure relief holes 375 penetrate through the first limit installation and reinforcement disc 370. The plurality of air delivery and pressure relief holes 375 are arranged in a circular array on the first limit installation and reinforcement disc 370. A plurality of adjustable cleaning members 377 for cleaning the dust filter column 371 are arranged on the side of the second limit installation and reinforcement disc 373 facing the adjustable-speed dust-proof blower 30. The adjustable cleaning members 377 are aluminum rods. The plurality of adjustable cleaning members 377 are arranged in a circular array on the outer side of the dust filter column 371. A plurality of second deformable position-changing members 378 are arranged at both ends of the adjustable cleaning members 377. The second deformable position-changing members 378 are metal elastic sheets. The second deformable position-changing members 378 are fixedly connected to the adjustable cleaning members 377. A second metal transmission member 379 for limiting and supporting the adjustable cleaning members 377 is arranged at the end of the second deformable position-changing members 378 away from the adjustable cleaning members 377. The second metal transmission member 379 is a steel plate. The second metal transmission member 379 is fixedly connected to the second deformable position-changing members 378. The second metal transmission member 379 at one end of the adjustable cleaning member 377 close to the adjustable-speed power driving member 374 is fixedly connected to the third limit installation and reinforcement disc 376. The second metal transmission member 379 at one end of the adjustable cleaning member 377 away from the adjustable-speed power driving member 374 is fixedly connected to the second hollow air delivery installer 372.

[0035] Working principle and usage process of the present invention: When in use, the cooling device is installed on the wall of the LED computer room, and the cooling device penetrates through the wall. The air outlet end (the end where the temperature adjustment and bearing mechanism 2 is located) of the cooling device is located inside the computer room. When in use, the power supply of the adjustable-speed dust-proof blower 30 is turned on. The adjustable-speed dust-proof blower 30 is used to extract cooling air and deliver it into the first hollow air delivery installer 33. At this time, the air is filtered and dust-removed by the dust filter column 371. The dust-removed air enters the limit support air storage cover 23 after being delivered by the second hollow air delivery installer 372, and then the air is sprayed through the conical jet metal pipe 24. Through the spraying, the temperature of the air is further reduced (it can be known according to Bernoulli's principle and the law of conservation of energy), so as to further improve the cooling effect of the cooling device on the computer room. At the same time, the flowable temperature adjustment liquid 25 cooperates with the conical jet metal pipe 24 to cool the air by water, so as to further improve the cooling effect of the cooling device on the computer room.

[0036] When it is necessary to clean the dust filter column 371, control the first deformable position changing member 32 to contract to release the sealing of the second dust exhaust hole 36 by the deformable hole-sealing pipe 35, and then intermittently drive the dust filter column 371 to rotate at a high speed through the adjustable-speed power driving member 374, so that the dust accumulated on the outer surface of the dust filter column 371 falls off by centrifugal force. At the same time, through the intermittent high-speed rotation of the dust filter column 371, the adjustable cleaning member 377 intermittently knocks the dust filter column 371 under the dual limiting action of centrifugal force and the second deformable position changing member 378, and the dust accumulated on the dust filter column 371 falls off by knocking. At this time, the fallen dust is discharged through the second dust exhaust hole 36 by the air blowing of the adjustable-speed dust-proof blower 30, and then the air carrying the dust is discharged to the outside of the machine room through the first dust exhaust hole 5. After the cleaning is completed, stop the driving of the adjustable-speed power driving member 374, and control the first deformable position changing member 32 to extend so that the deformable hole-sealing pipe 35 seals the second dust exhaust hole 36;

[0037] Thus, the air is filtered and dust-removed through the mutual cooperation of multiple structures, and through the mutual cooperation of multiple structures, the automatic cleaning of the filtering structure is realized, so that it is not necessary for the staff to manually maintain, improving the user experience of using the cooling device. Secondly, the present invention can perform multiple cooling of the air through the mutual cooperation of multiple structures, so as to improve the cooling effect of the cooling device on the machine room through the mutual cooperation of various cooling methods. In addition, the structure of the present invention is simple, easy to use and convenient for maintenance.

[0038] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0039] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only includes an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An IDC computer room cooling device, comprising a protective metal housing, characterized in that: An air inlet end of the protective metal housing is provided with a deformable air filtering mechanism. A detachable dust-proof lifting plate for supporting the deformable air filtering mechanism is detachably connected to the air inlet end of the protective metal housing. The detachable dust-proof lifting plate is slidably connected to the deformable air filtering mechanism and slidably connected to the protective metal housing. An air outlet end of the protective metal housing is provided with a temperature-regulating bearing mechanism. A plurality of first dust-discharging holes are formed in a bottom side of the protective metal housing. The temperature-regulating bearing mechanism includes a liquid storage metal temperature-regulating box filled with a flowable temperature-regulating liquid inside. A plurality of first material conveying members are arranged at a bottom side of the liquid storage metal temperature-regulating box. The first material conveying members penetrate through a side wall of the liquid storage metal temperature-regulating box and are fixedly connected to the liquid storage metal temperature-regulating box. A plurality of second material conveying members are arranged at a top side of the liquid storage metal temperature-regulating box. The second material conveying members penetrate through the side wall of the liquid storage metal temperature-regulating box and are fixedly connected to the liquid storage metal temperature-regulating box. A limiting support air storage cover is arranged at a side of the liquid storage metal temperature-regulating box facing the protective metal housing. The limiting support air storage cover is fixedly connected to the liquid storage metal temperature-regulating box and fixedly connected to the protective metal housing. A plurality of conical jet metal pipes for cooling air are arranged at a side of the limiting support air storage cover away from the protective metal housing. The plurality of conical jet metal pipes are arranged at intervals on the liquid storage metal temperature-regulating box. The conical jet metal pipes penetrate through the liquid storage metal temperature-regulating box and are fixedly connected to the liquid storage metal temperature-regulating box. The deformable air filtering mechanism includes a first hollow air conveying installer penetrating through a side wall of the limiting support air storage cover. The first hollow air conveying installer is hermetically and slidably connected to the limiting support air storage cover. A deformable dust filter is arranged inside the first hollow air conveying installer. An adjustable-speed dust-proof blower is arranged at an end of the first hollow air conveying installer away from the limiting support air storage cover. A plurality of second dust-discharging holes corresponding to the deformable dust filter are formed at an end of the first hollow air conveying installer close to the limiting support air storage cover. A movable hole-sealing pipe for blocking the second dust-discharging holes is slidably connected to the first hollow air conveying installer. A first deformable position-changing member is arranged at a side of the first hollow air conveying installer. One end of the first deformable position-changing member is fixedly connected to the limiting support air storage cover, and the other end of the first deformable position-changing member is provided with a first metal transmission member corresponding to the movable hole-sealing pipe.

2. The IDC computer room cooling device according to claim 1, wherein: A deformable hole-sealing pipe is arranged inside the movable hole-sealing pipe. The deformable hole-sealing pipe is hermetically and slidably connected to the first hollow air conveying installer and fixedly connected to the movable hole-sealing pipe. A dust-filtering protection net is arranged at an end of the adjustable-speed dust-proof blower away from the deformable dust filter. The first metal transmission member is fixedly connected to the first deformable position-changing member and fixedly connected to the movable hole-sealing pipe.

3. The IDC computer room cooling device according to claim 2, wherein: The deformable dust filter includes a dust filter net column. On the side of the dust filter net column away from the adjustable-speed dust-proof blower, there is a second limit installation and reinforcement disc for strengthening the first hollow air delivery installer. The second limit installation and reinforcement disc is hermetically and slidably connected to the first hollow air delivery installer. In the middle of the second limit installation and reinforcement disc, there is a second hollow air delivery installer connected to the dust filter net column. The second hollow air delivery installer penetrates through the second limit installation and reinforcement disc and is rotatably connected to the second limit installation and reinforcement disc and fixedly connected to the dust filter net column.

4. The IDC computer room cooling device according to claim 3, characterized in that: At one end of the dust filter net column close to the adjustable-speed dust-proof blower, there is a third limit installation and reinforcement disc fixedly connected to the dust filter net column. On the side of the second limit installation and reinforcement disc away from the temperature-adjusting bearing mechanism, there is an adjustable-speed power driving member for driving the dust filter net column to rotate in cooperation with the third limit installation and reinforcement disc. The output end of the adjustable-speed power driving member is fixedly connected to the third limit installation and reinforcement disc.

5. The IDC computer room cooling device according to claim 4, wherein: At one end of the adjustable-speed power driving member close to the adjustable-speed dust-proof blower, there is a first limit installation and reinforcement disc fixedly connected to the adjustable-speed power driving member. The first limit installation and reinforcement disc is detachably connected to the first hollow air delivery installer. On the side of the adjustable-speed power driving member away from the dust filter net column, there are several air delivery and pressure relief holes penetrating through the first limit installation and reinforcement disc, and the several air delivery and pressure relief holes are arranged in an annular array on the first limit installation and reinforcement disc.

6. The IDC computer room cooling device according to claim 5, characterized in that: On the side of the second limit installation and reinforcement disc facing the adjustable-speed dust-proof blower, there are several adjustable cleaning members for cleaning the dust filter net column. The several adjustable cleaning members are arranged in an annular array on the outside of the dust filter net column. At both ends of the adjustable cleaning member, there are several second deformable position-changing members fixedly connected to the adjustable cleaning member. At one end of the second deformable position-changing member away from the adjustable cleaning member, there is a second metal transmission member for limiting and supporting the adjustable cleaning member, and the second metal transmission member is fixedly connected to the second deformable position-changing member.

Citation Information

Patent Citations

  • Battery box body

    CN220272599U

  • Air conditioning equipment with external air filtering mechanism for machine room

    CN221580024U