IDC machine room cooling device
By designing a deformable gas filter mechanism and a temperature-regulating bearing mechanism in the IDC room cooling device, the automatic cleaning of the filter structure and multiple cooling are achieved, solving the problem of frequent manual maintenance of traditional devices, and improving the user experience and cooling effect.
Patent Information
- Application Number
- CN202510494331.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-04-21
AI Technical Summary
The traditional IDC computer room cooling device cannot clean the filter structure by itself, resulting in frequent manual maintenance by users, affecting the user experience.
An IDC room cooling device including a deformable gas filter mechanism and a temperature-regulating bearing mechanism is designed. The deformable gas filter mechanism realizes automatic cleaning of the dust filter column through a movable sealing tube and an adjustable speed power drive member. The temperature control load bearing mechanism uses flowable temperature control liquid and conical air jet metal pipe for multiple cooling.
The automatic cleaning of the filter structure is realized, which reduces the need for manual maintenance, improves the user experience of the cooling device, and improves the cooling effect of the computer room through multiple cooling methods.
Smart Images

Figure CN120035103A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of computer room cooling devices, and in particular relates to an IDC computer room cooling device. Background Art
[0002] IDC refers to Internet Data Center, where telecommunications departments use existing Internet communication lines and bandwidth resources to establish a standardized telecommunications professional-grade computer room environment to provide enterprises and governments with a full range of services such as server hosting, leasing, and related value-added services. IDC computer rooms need to be equipped with corresponding cooling devices; The conventional cooling device includes structures such as a housing, a connecting pipe, a fixing plate, a ventilation slot, a guide slot, a slider, a filter plate, a fixing block, a push block, a sealing pad, a gasket, a movable slot and a spring rod. The advantage of the cooling device is that the air can be filtered by using the filter plate; However, the traditional cooling device cannot perform self-cleaning on the filter structure, which requires users to frequently perform manual cleaning and maintenance on the filter plate. Frequent manual maintenance is time-consuming and labor-intensive, which affects the user experience of the cooling device and urgently needs to be improved. Summary of the invention
[0003] The object of the present invention is to provide an IDC room cooling device to solve the problems raised in the above background technology.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an IDC room cooling device, comprising a protective metal shell, an air inlet end of the protective metal shell is provided with a deformable air filter mechanism, the air inlet end of the protective metal shell is detachably connected with a detachable dust-proof lifting plate for supporting the deformable air filter mechanism, the detachable dust-proof lifting plate is slidably connected to the deformable air filter mechanism, the detachable dust-proof lifting plate is slidably connected to the protective metal shell, the air outlet end of the protective metal shell is provided with a temperature adjustment bearing mechanism, a plurality of first dust discharge holes are provided at the bottom of the side surface of the protective metal shell, the temperature adjustment bearing mechanism comprises a liquid storage metal temperature adjustment box, the interior of the liquid storage metal temperature adjustment box is filled with a flowable temperature adjustment liquid, a plurality of first material conveying members are provided at the bottom of the side surface of the liquid storage metal temperature adjustment box, and the first material conveying members penetrate the liquid storage metal temperature adjustment box The side wall is arranged, the first material conveying part is fixedly connected to the liquid storage metal temperature regulating box, a plurality of second material conveying parts are arranged on the side top of the liquid storage metal temperature regulating box, the second material conveying parts penetrate the side wall of the liquid storage metal temperature regulating box, the second material conveying part is fixedly connected to the liquid storage metal temperature regulating box, a limited support air storage hood is arranged on the side of the liquid storage metal temperature regulating box facing the protective metal shell, the limited support air storage hood is fixedly connected to the liquid storage metal temperature regulating box, the limited support air storage hood is fixedly connected to the protective metal shell, a plurality of conical jet metal tubes for cooling the air are arranged on the side of the limited support air storage hood away from the protective metal shell, a plurality of conical jet metal tubes are arranged at intervals on the liquid storage metal temperature regulating box, the conical jet metal tubes penetrate the liquid storage metal temperature regulating box, and the conical jet metal tubes are fixedly connected to the liquid storage metal temperature regulating box.
[0005] As a further solution of the present invention: the deformable air filtering mechanism includes a first hollow air delivery installer, which is arranged to penetrate the side wall of the limit support air storage hood, and the first hollow air delivery installer is sealed and slidably connected to the limit support air storage hood; a deformable dust filter is arranged inside the first hollow air delivery installer, and an adjustable speed dust-proof blower is arranged at one end of the first hollow air delivery installer away from the limit support air storage hood; a plurality of second dust exhaust holes corresponding to the deformable dust filter are opened at one end of the first hollow air delivery installer close to the limit support air storage hood; a movable sealing tube for sealing the second dust exhaust holes is slidably connected to the first hollow air delivery installer; a first deformable position changing part is arranged on one side of the first hollow air delivery installer, one end of the first deformable position changing part is fixedly connected to the limit support air storage hood, and the other end of the first deformable position changing part is arranged with a first metal transmission part corresponding to the movable sealing tube.
[0006] As a further solution of the present invention: a deformable sealing tube is arranged inside the movable sealing tube, the deformable sealing tube is sealingly and slidingly connected to the first hollow air transmission installer, the deformable sealing tube is fixedly connected to the movable sealing tube, a dust filter guard net is arranged at the 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 sealing tube.
[0007] As a further solution of the present invention: the deformable dust filter includes a dust filter mesh column, and a second limit installation reinforcement plate for reinforcing the first hollow gas transmission installer is arranged on the side of the dust filter mesh column away from the adjustable speed dust-proof blower, the second limit installation reinforcement plate is sealingly and slidingly connected to the first hollow gas transmission installer, and a second hollow gas transmission installer connected to the dust filter mesh column is arranged in the middle of the second limit installation reinforcement plate, the second hollow gas transmission installer passes through the second limit installation reinforcement plate, the second hollow gas transmission installer is rotatably connected to the second limit installation reinforcement plate, and the second hollow gas transmission installer is fixedly connected to the dust filter mesh column.
[0008] As a further solution of the present invention: a third limit mounting reinforcement plate is arranged at one end of the dust filter net column close to the adjustable speed dust-proof blower, and the third limit mounting reinforcement plate is fixedly connected to the dust filter net column, and an adjustable speed power drive component for cooperating with the third limit mounting reinforcement plate to drive the dust filter net column to rotate is arranged on the side of the second limit mounting reinforcement plate away from the temperature control bearing mechanism, and the output end of the adjustable speed power drive component is fixedly connected to the third limit mounting reinforcement plate.
[0009] As a further solution of the present invention: a first limit mounting reinforcement plate is provided at one end of the adjustable speed power drive component close to the adjustable speed dust-proof blower, the first limit mounting reinforcement plate is fixedly connected to the adjustable speed power drive component, the first limit mounting reinforcement plate is detachably connected to the first hollow gas supply installer, and a plurality of gas supply pressure relief holes are provided on the side of the adjustable speed power drive component away from the dust filter net column, the gas supply pressure relief holes penetrate the first limit mounting reinforcement plate, and a plurality of gas supply pressure relief holes are arranged in a circular array on the first limit mounting reinforcement plate.
[0010] As a further solution of the present invention: a plurality of adjustable cleaning parts for cleaning the dust filter net column are arranged on the side of the second limit installation reinforcement plate facing the adjustable speed dustproof blower, and the plurality of adjustable cleaning parts are arranged in a ring array on the outside of the dust filter net column, and 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, and 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 part, and the second metal transmission part is fixedly connected to the second deformable position changing part.
[0011] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a simple structure and is easy to use. When in use, the air is filtered and dusted through the cooperation of multiple structures, and the automatic cleaning of the filtering structure is achieved through the cooperation of multiple structures, thereby eliminating the need for manual maintenance by staff, and improving the user experience of the cooling device. Secondly, the present invention can perform multiple cooling of the air through the cooperation of multiple structures, thereby improving the cooling effect of the cooling device on the computer room through the cooperation of multiple cooling methods. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a structural schematic diagram of an IDC room cooling device; Figure 2 It is a structural schematic diagram of a temperature control bearing mechanism in an IDC room cooling device; Figure 3 This is a structural cross-sectional view of a liquid storage metal temperature regulating box in an IDC room cooling device; Figure 4 It is a structural exploded diagram of a deformable air filter mechanism in an IDC room cooling device; Figure 5 This is a structural exploded diagram of a deformable dust filter in an IDC room cooling device; Figure 6 This is a schematic diagram of the structure of a dust filter column in an IDC room cooling device; In the figure: 1-protective metal shell, 2-temperature adjustment bearing mechanism, 3-deformable air filter mechanism, 4-detachable dust-proof drag plate, 5-first dust discharge hole, 20-first material conveying member, 21-liquid storage metal temperature adjustment box, 22-second material conveying member, 23-limiting support gas storage cover, 24-conical jet metal pipe, 25-flowable temperature adjustment liquid, 30-speed adjustable dust-proof blower, 31-first metal transmission member, 32-first deformable position change member, 33-first hollow gas transmission installer, 34- Movable sealing tube, 35-deformable sealing tube, 36-second dust exhaust hole, 37-deformable dust filter, 39-dust filter net, 370-first limit installation reinforcement plate, 371-dust filter net column, 372-second hollow gas transmission installer, 373-second limit installation reinforcement plate, 374-adjustable speed power drive part, 375-gas transmission pressure relief hole, 376-third limit installation reinforcement plate, 377-adjustable cleaning part, 378-second deformable position change part, 379-second metal transmission part. DETAILED DESCRIPTION
[0013] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0014] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected" and "set" should be understood in a broad sense. For example, it can be fixedly connected or set, or it can be detachably connected or set, or integrally connected or set.
[0015] For those skilled in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0016] See also Figure 1 The present embodiment provides an IDC room cooling device, comprising a protective metal shell 1, an air inlet end of the protective metal shell 1 is provided with a deformable air filter mechanism 3, the air inlet end of the protective metal shell 1 is detachably connected with a detachable dust-proof lifting plate 4 for supporting the deformable air filter mechanism 3, the detachable dust-proof lifting plate 4 is slidably connected to the deformable air filter mechanism 3, the detachable dust-proof lifting plate 4 is slidably connected to the protective metal shell 1, a temperature adjustment bearing mechanism 2 is provided at the air outlet end of the protective metal shell 1, and a plurality of first dust exhaust holes 5 are opened at the bottom of the side of the protective metal shell 1, and the dust discharged from the deformable air filter mechanism 3 is discharged through the first dust exhaust holes 5 when in use.
[0017] See also Figure 1 , Figure 2 and Figure 3In one embodiment, in order to make the use of the temperature adjustment carrying mechanism 2 more reliable, in this embodiment, preferably, the temperature adjustment carrying mechanism 2 includes a liquid storage metal temperature adjustment box 21, the interior of the liquid storage metal temperature adjustment box 21 is filled with a flowable temperature adjustment liquid 25, the flowable temperature adjustment liquid 25 is water, and a plurality of first material conveying members 20 are arranged at the bottom of the side of the liquid storage metal temperature adjustment box 21, the first material conveying members 20 penetrate the side wall of the liquid storage metal temperature adjustment box 21, and the first material conveying members 20 are fixedly connected to the liquid storage metal temperature adjustment box 21, and a plurality of second material conveying members 22 are arranged at the top of the side of the liquid storage metal temperature adjustment box 21, the second material conveying members 22 penetrate the side wall of the liquid storage metal temperature adjustment box 21, and the second material conveying members 22 are fixedly connected to the liquid storage metal temperature adjustment box 21, and the first material conveying members 20 and the second The material conveying parts 22 are all steel pipes. A limited support air storage hood 23 is arranged on the side of the liquid storage metal temperature regulating box 21 facing the protective metal shell 1. The limited support air storage hood 23 is fixedly connected to the liquid storage metal temperature regulating box 21. The limited support air storage hood 23 is fixedly connected to the protective metal shell 1. A plurality of conical jet metal tubes 24 for cooling the air are arranged on the side of the limited support air storage hood 23 away from the protective metal shell 1. The plurality of conical jet metal tubes 24 are arranged at intervals on the liquid storage metal temperature regulating box 21. The conical jet metal tube 24 penetrates the liquid storage metal temperature regulating box 21. The conical jet metal tube 24 is fixedly connected to the liquid storage metal temperature regulating box 21. The conical jet metal tube 24 is a copper tube. The diameter of the air inlet port of the conical jet metal tube 24 is larger than the diameter of the air outlet port, thereby realizing the injection of air.
[0018] In another embodiment, in order to make the use of the temperature adjustment supporting mechanism 2 more reliable, in this embodiment, preferably, the temperature adjustment supporting mechanism 2 includes a liquid storage metal temperature adjustment box 21, the interior of the liquid storage metal temperature adjustment box 21 is filled with a flowable temperature adjustment liquid 25, the flowable temperature adjustment liquid 25 is mineral oil, and a plurality of first material conveying members 20 are arranged at the bottom of the side of the liquid storage metal temperature adjustment box 21, the first material conveying members 20 penetrate the side wall of the liquid storage metal temperature adjustment box 21, and the first material conveying members 20 are fixedly connected to the liquid storage metal temperature adjustment box 21, and a plurality of second material conveying members 22 are arranged at the top of the side of the liquid storage metal temperature adjustment box 21, the second material conveying members 22 penetrate the side wall of the liquid storage metal temperature adjustment box 21, and the second material conveying members 22 are fixedly connected to the liquid storage metal temperature adjustment box 21, and the first material conveying members 20 and the second The material conveying parts 22 are all plastic tubes. A limited support air storage hood 23 is arranged on the side of the liquid storage metal temperature regulating box 21 facing the protective metal shell 1. The limited support air storage hood 23 is fixedly connected to the liquid storage metal temperature regulating box 21. The limited support air storage hood 23 is fixedly connected to the protective metal shell 1. A plurality of conical jet metal tubes 24 for cooling the air are arranged on the side of the limited support air storage hood 23 away from the protective metal shell 1. The plurality of conical jet metal tubes 24 are arranged at intervals on the liquid storage metal temperature regulating box 21. The conical jet metal tube 24 runs through the liquid storage metal temperature regulating box 21. The conical jet metal tube 24 is fixedly connected to the liquid storage metal temperature regulating box 21. The conical jet metal tube 24 is a steel tube. The diameter of the air inlet port of the conical jet metal tube 24 is larger than the diameter of the air outlet port, thereby realizing the injection of air.
[0019] See also Figure 1 and Figure 4In one embodiment, in order to make the use of the deformable air filter mechanism 3 more reliable, in this embodiment, preferably, the deformable air filter mechanism 3 includes a first hollow air delivery installer 33, the first hollow air delivery installer 33 is a steel pipe, the first hollow air delivery installer 33 penetrates the side wall of the limit support air storage cover 23, the first hollow air delivery installer 33 is sealed and slidably connected with the limit support air storage cover 23, a deformable dust filter 37 is arranged inside the first hollow air delivery installer 33, an end of the first hollow air delivery installer 33 away from the limit support air storage cover 23 is provided with an adjustable speed dust blower 30, and the first hollow air delivery installer 33 is close to the limit support A plurality of second dust discharge holes 36 corresponding to the deformable dust filter 37 are provided at one end of the air storage cover 23, a movable sealing tube 34 for sealing the second dust discharge holes 36 is slidably connected to the first hollow air transmission installer 33, a first deformable position changing member 32 is provided on one side of the first hollow air transmission 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 to the limit support air storage cover 23, the other end of the first deformable position changing member 32 is provided with a first metal transmission member 31 corresponding to the movable sealing tube 34, the first metal transmission member 31 is a steel plate; See also Figure 4 In one embodiment, in order to make the function of the deformable air filtering mechanism 3 more abundant, in this embodiment, preferably, a deformable sealing tube 35 is arranged inside the movable sealing tube 34, and the deformable sealing tube 35 is a rubber tube. The deformable sealing tube 35 is sealingly and slidingly connected with the first hollow air transmission installer 33, and the deformable sealing tube 35 is fixedly connected with the movable sealing tube 34. A dust filter guard net 39 is arranged at one end of the adjustable speed dust-proof blower 30 away from the deformable dust filter 37, and the dust filter guard net 39 is a steel wire mesh. 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 sealing tube 34; See also Figure 4 , Figure 5 and Figure 6In 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, and the dust filter net column 371 is made of a steel net. The side of the dust filter net column 371 away from the adjustable speed dust-proof blower 30 is provided with a second limit installation reinforcement plate 373 for reinforcing the first hollow gas transmission installer 33. The second limit installation reinforcement plate 373 is sealingly and slidably connected to the first hollow gas transmission installer 33. The middle part of the second limit installation reinforcement plate 373 is provided with a second hollow gas transmission installer 372 connected to the dust filter net column 371. The second hollow gas transmission installer 372 is a steel pipe, and the second hollow gas transmission installer 372 passes through the second limit installation reinforcement plate 373 is set, the second hollow gas transmission installer 372 is rotatably connected with the second limit installation reinforcement plate 373, the second hollow gas transmission installer 372 is fixedly connected with the dust filter net column 371, the dust filter net column 371 is provided with a third limit installation reinforcement plate 376 at one end close to the adjustable speed dust-proof blower 30, the third limit installation reinforcement plate 376 is fixedly connected with the dust filter net column 371, and the second limit installation reinforcement plate 373 is provided with an adjustable speed power drive 374 for cooperating with the third limit installation reinforcement plate 376 to drive the dust filter net column 371 to rotate on the side away from the temperature control bearing mechanism 2, the adjustable speed power drive 374 is an electric motor, and the output end of the adjustable speed power drive 374 is fixedly connected with the third limit installation reinforcement plate 376; See also Figure 5 and Figure 6In one embodiment, in order to make the deformable dust filter 37 more functional, in this embodiment, preferably, the adjustable speed power drive 374 is provided with a first position-limiting mounting reinforcement plate 370 at one end close to the adjustable speed dust-proof blower 30, the first position-limiting mounting reinforcement plate 370 is fixedly connected to the adjustable speed power drive 374, the first position-limiting mounting reinforcement plate 370 is detachably connected to the first hollow air delivery mount 33, and the adjustable speed power drive 374 is away from the dust filter net column 3 A plurality of gas delivery pressure relief holes 375 are provided on one side of the first position-limiting mounting reinforcement plate 370, and the gas delivery pressure relief holes 375 are arranged in a circular array on the first position-limiting mounting reinforcement plate 370. A plurality of adjustable cleaning parts 377 for cleaning the dust filter net column 371 are provided on the side of the second position-limiting mounting reinforcement plate 373 facing the adjustable speed dust-proof blower 30. The adjustable cleaning parts 377 are steel pipes. The adjusting cleaning parts 377 are arranged in a circular array on the outside of the dust filter net column 371, and a plurality of second deformable position changing parts 378 are arranged at both ends of the adjustable cleaning parts 377. The second deformable position changing parts 378 are springs, and the second deformable position changing parts 378 are fixedly connected to the adjustable cleaning parts 377. The end of the second deformable position changing part 378 away from the adjustable cleaning part 377 is provided with a second metal transmission part 379 for limiting and supporting the adjustable cleaning part 377. The second metal transmission part 379 is a steel plate, and the second metal transmission part 379 is fixedly connected to the second deformable position changing part 378. The second metal transmission part 379 of the adjustable cleaning part 377 close to the adjustable speed power driving part 374 is fixedly connected to the third limiting installation reinforcement plate 376, and the second metal transmission part 379 of the adjustable cleaning part 377 away from the adjustable speed power driving part 374 is fixedly connected to the second hollow gas transmission installer 372.
[0020] In another embodiment, in order to make the use of the deformable air filter mechanism 3 more reliable, in this embodiment, preferably, the deformable air filter mechanism 3 includes a first hollow air delivery installer 33, the first hollow air delivery installer 33 is an aluminum alloy tube, the first hollow air delivery installer 33 passes through the side wall of the limit support air storage cover 23, the first hollow air delivery installer 33 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, and the first hollow air delivery installer 33 is close to the limit support. One end of the support gas storage hood 23 is provided with a plurality of second dust discharge holes 36 corresponding to the deformable dust filter 37, and a movable sealing tube 34 for sealing the second dust discharge holes 36 is slidably connected to the first hollow gas transmission installer 33, and a first deformable position changing member 32 is provided on one side of the first hollow gas transmission installer 33, and the first deformable position changing member 32 is a cylinder, and one end of the first deformable position changing member 32 is fixedly connected to the limit support gas storage hood 23, and the other end of the first deformable position changing member 32 is provided with a first metal transmission member 31 corresponding to the movable sealing tube 34, and the first metal transmission member 31 is a steel plate; In another embodiment, in order to make the function of the deformable air filtering mechanism 3 more abundant, in this embodiment, preferably, a deformable sealing tube 35 is arranged inside the movable sealing tube 34, the deformable sealing tube 35 is a silicone tube, the deformable sealing tube 35 is sealingly and slidingly connected to the first hollow gas transmission installer 33, the deformable sealing tube 35 is fixedly connected to the movable sealing tube 34, and a dust filter guard 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 guard net 39 is a nylon net, the first metal transmission member 31 is fixedly connected to the first deformable position changing member 32, and the first metal transmission member 31 is fixedly connected to the movable sealing tube 34; 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, the dust filter net column 371 is made of a copper mesh, and the dust filter net column 371 is provided with a second limit installation reinforcement plate 373 for reinforcing the first hollow gas transmission installer 33 on the side away from the adjustable speed dust-proof blower 30, the second limit installation reinforcement plate 373 is fixedly connected to the first hollow gas transmission installer 33, and the middle part of the second limit installation reinforcement plate 373 is provided with a second hollow gas transmission installer 372 connected to the dust filter net column 371, the second hollow gas transmission installer 372 is an aluminum alloy tube, and the second hollow gas transmission installer 372 passes through the second limit installation reinforcement plate 3 73 is set, the second hollow gas transmission installer 372 is fixedly connected to the second limit installation reinforcement plate 373, the second hollow gas transmission installer 372 is rotatably connected to the dust filter net column 371, the dust filter net column 371 is provided with a third limit installation reinforcement plate 376 at one end close to the adjustable speed dust-proof blower 30, the third limit installation reinforcement plate 376 is fixedly connected to the dust filter net column 371, and the second limit installation reinforcement plate 373 is provided with an adjustable speed power drive 374 on the side away from the temperature control bearing mechanism 2 for cooperating with the third limit installation reinforcement plate 376 to drive the dust filter net column 371 to rotate, the adjustable speed power drive 374 is a pneumatic motor, and the output end of the adjustable speed power drive 374 is fixedly connected to the third limit installation reinforcement plate 376; In another embodiment, in order to make the function of the deformable dust filter 37 more abundant, in this embodiment, preferably, the adjustable speed power drive 374 is provided with a first limit installation reinforcement plate 370 at one end close to the adjustable speed dust-proof blower 30, the first limit installation reinforcement plate 370 is fixedly connected to the adjustable speed power drive 374, the first limit installation reinforcement plate 370 is detachably connected to the first hollow air delivery mount 33, and the adjustable speed power drive 374 is away from the dust filter net column 3 A plurality of gas delivery pressure relief holes 375 are arranged on one side of the first position-limiting mounting reinforcement plate 370, and the gas delivery pressure relief holes 375 are arranged in a circular array on the first position-limiting mounting reinforcement plate 370. A plurality of adjustable cleaning parts 377 for cleaning the dust filter column 371 are arranged on the side of the second position-limiting mounting reinforcement plate 373 facing the adjustable speed dust-proof blower 30. The adjustable cleaning parts 377 are aluminum rods, and the plurality of adjustable The cleaning members 377 are arranged in a circular array on the outside of the dust filter column 371, and a plurality 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 metal spring sheets, and the second deformable position changing members 378 are fixedly connected to the adjustable cleaning member 377. The end of the second deformable position changing member 378 away from the adjustable cleaning member 377 is provided with a second metal transmission member 379 for limiting and supporting 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 of the adjustable cleaning member 377 close to the adjustable speed power driving member 374 is fixedly connected to the third limiting installation reinforcement plate 376, and the second metal transmission member 379 of the adjustable cleaning member 377 away from the adjustable speed power driving member 374 is fixedly connected to the second hollow gas transmission installer 372.
[0021] The working principle and use process of the present invention are as follows: when in use, the cooling device is installed on the wall of the LED room so that the cooling device is installed through the wall. The air outlet end of the cooling device (the end where the temperature control bearing mechanism 2 is located) is located inside the room. When in use, the power supply of the adjustable speed dust-proof blower 30 is turned on, and the cooling air is extracted by the adjustable speed dust-proof blower 30 and transported to the inside of the first hollow air delivery installer 33. At this time, the air is filtered and dusted by the dust filter column 371. The dust-removed air enters the limit support air storage cover 23 after being transported by the second hollow air delivery installer 372, and then the air is sprayed by the conical jet metal pipe 24. The temperature of the air is further reduced by the spraying (according to the Bernoulli principle and the law of conservation of energy), thereby further improving the cooling effect of the cooling device on the room. At the same time, the air is water-cooled by the flowing temperature control liquid 25 in combination with the conical jet metal pipe 24, thereby further improving the cooling effect of the cooling device on the room. When the dust filter column 371 needs to be cleaned, the first deformable position changing member 32 is controlled to contract to release the seal of the deformable sealing tube 35 on the second dust discharge hole 36, and then the dust filter column 371 is intermittently driven to rotate at a high speed by 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 the centrifugal force. At the same time, the dust filter column 371 is intermittently rotated at a high speed to make the adjustable cleaning member 377 rotate under the centrifugal force and the second deformable position changing member 378. Under the double limiting action of the dust filter column 371, the dust filter column 371 is intermittently knocked, and the dust accumulated on the dust filter column 371 is knocked off. At this time, the dust is discharged through the second dust discharge hole 36 by the blowing of the adjustable speed dust-proof blower 30, and then the air carries the dust through the first dust discharge hole 5 to the outside of the machine room. After cleaning, the driving of the adjustable speed power drive member 374 is stopped, and the first deformable position changing member 32 is controlled to extend so that the deformable sealing tube 35 seals the second dust discharge hole 36; Therefore, the air can be filtered and dusted through the cooperation of multiple structures, and the automatic cleaning of the filtering structure can be achieved through the cooperation of multiple structures, so that there is no need for manual maintenance by staff, thereby improving the user experience of the cooling device. Secondly, the present invention can perform multiple cooling of the air through the cooperation of multiple structures, thereby improving the cooling effect of the cooling device on the computer room through the cooperation of multiple cooling methods. In addition, the present invention has a simple structure, is easy to use, and is convenient for maintenance.
[0022] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
[0023] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. An IDC room cooling device, comprising a protective metal housing, characterized in that: The air inlet end of the protective metal shell is provided with a deformable air filtering mechanism, the air inlet end of the protective metal shell is detachably connected with a detachable dust-proof lifting plate for supporting the deformable air filtering mechanism, the detachable dust-proof lifting plate is slidably connected to the deformable air filtering mechanism, the detachable dust-proof lifting plate is slidably connected to the protective metal shell, the air outlet end of the protective metal shell is provided with a temperature adjustment bearing mechanism, a plurality of first dust discharge holes are provided at the bottom of the side surface of the protective metal shell, the temperature adjustment bearing mechanism comprises a liquid storage metal temperature adjustment box, the interior of the liquid storage metal temperature adjustment box is filled with flowable temperature adjustment liquid, a plurality of first material conveying parts are provided at the bottom of the side surface of the liquid storage metal temperature adjustment box, the first material conveying parts are arranged through the side wall of the liquid storage metal temperature adjustment box, and the first material conveying parts are connected to the liquid storage metal temperature adjustment box. The box is fixedly connected, a plurality of second material conveying parts are arranged on the top of the side of the liquid storage metal temperature regulating box, the second material conveying parts penetrate the side wall of the liquid storage metal temperature regulating box, the second material conveying parts are fixedly connected to the liquid storage metal temperature regulating box, a limited support air storage hood is arranged on the side of the liquid storage metal temperature regulating box facing the protective metal shell, the limited support air storage hood is fixedly connected to the liquid storage metal temperature regulating box, the limited support air storage hood is fixedly connected to the protective metal shell, a plurality of conical jet metal tubes for cooling the air are arranged on the side of the limited support air storage hood away from the protective metal shell, the plurality of conical jet metal tubes are arranged at intervals on the liquid storage metal temperature regulating box, the conical jet metal tubes penetrate the liquid storage metal temperature regulating box, and the conical jet metal tubes are fixedly connected to the liquid storage metal temperature regulating box.
2. The IDC room cooling device according to claim 1, characterized in that: The deformable air filtering mechanism includes a first hollow air delivery installer, which is arranged to penetrate the side wall of the limit support air storage hood, and the first hollow air delivery installer is sealingly and slidably connected to the limit support air storage hood. A deformable dust filter is arranged inside the first hollow air delivery installer, and an adjustable speed dust-proof blower is arranged at one end of the first hollow air delivery installer away from the limit support air storage hood. A plurality of second dust exhaust holes corresponding to the deformable dust filter are opened at one end of the first hollow air delivery installer close to the limit support air storage hood, and a movable sealing pipe for sealing the second dust exhaust holes is slidably connected to the first hollow air delivery installer, and a first deformable position changing part is arranged on one side of the first hollow air delivery installer, one end of the first deformable position changing part is fixedly connected to the limit support air storage hood, and the other end of the first deformable position changing part is arranged with a first metal transmission part corresponding to the movable sealing pipe.
3. The IDC room cooling device according to claim 2, characterized in that: A deformable sealing tube is arranged inside the movable sealing tube, the deformable sealing tube is sealingly and slidingly connected to the first hollow gas transmission installer, the deformable sealing tube is fixedly connected to the movable sealing tube, a dust filter guard net is arranged at the 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 sealing tube.
4. The IDC room cooling device according to claim 3, characterized in that: The deformable dust filter includes a dust filter mesh column, and a second limit installation reinforcement plate for reinforcing the first hollow gas transmission installer is arranged on the side of the dust filter mesh column away from the adjustable speed dust-proof blower. The second limit installation reinforcement plate is sealingly and slidingly connected to the first hollow gas transmission installer. A second hollow gas transmission installer connected to the dust filter mesh column is arranged in the middle of the second limit installation reinforcement plate. The second hollow gas transmission installer runs through the second limit installation reinforcement plate. The second hollow gas transmission installer is rotatably connected to the second limit installation reinforcement plate, and the second hollow gas transmission installer is fixedly connected to the dust filter mesh column.
5. The IDC room cooling device according to claim 4, characterized in that: A third limit mounting reinforcement plate is arranged at one end of the dust filter net column close to the adjustable speed dust-proof blower, and the third limit mounting reinforcement plate is fixedly connected to the dust filter net column. An adjustable speed power drive component is arranged on the side of the second limit mounting reinforcement plate away from the temperature control bearing mechanism, which is used to cooperate with the third limit mounting reinforcement plate to drive the dust filter net column to rotate, and the output end of the adjustable speed power drive component is fixedly connected to the third limit mounting reinforcement plate.
6. The IDC room cooling device according to claim 5, characterized in that: A first position-limiting mounting reinforcement plate is provided at one end of the adjustable-speed power drive component close to the adjustable-speed dust-proof blower, the first position-limiting mounting reinforcement plate is fixedly connected to the adjustable-speed power drive component, the first position-limiting mounting reinforcement plate is detachably connected to the first hollow gas transmission installer, a plurality of gas transmission pressure relief holes are provided on the side of the adjustable-speed power drive component away from the dust filter net column, the gas transmission pressure relief holes penetrate the first position-limiting mounting reinforcement plate, and the plurality of gas transmission pressure relief holes are arranged in a circular array on the first position-limiting mounting reinforcement plate.
7. The IDC room cooling device according to claim 6, characterized in that: A plurality of adjustable cleaning parts for cleaning the dust filter net column are arranged on the side of the second limit installation reinforcement plate facing the adjustable speed dust-proof blower, and the plurality of adjustable cleaning parts are arranged in a ring array on the outside of the dust filter net column, and a plurality of second deformable position changing parts are arranged at both ends of the adjustable cleaning parts, and the second deformable position changing parts are fixedly connected to the adjustable cleaning parts, and 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 part, and the second metal transmission part is fixedly connected to the second deformable position changing part.
Citation Information
Patent Citations
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