A server heat dissipation support for computer room

By designing a server cooling bracket that includes a heat dissipation frame and airflow adjustment components, and utilizing temperature sensors and PLC controllers in conjunction with exhaust fans and guide components, the problem of existing technologies being unable to provide targeted cooling and adapt to different server sizes has been solved, achieving efficient heat dissipation and stable installation.

CN119325208BActive Publication Date: 2025-10-17HANGZHOU DASSAULT TIMES TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411113755.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-10-17
Estimated Expiration
2044-08-14

AI Technical Summary

Technical Problem

Existing server cooling brackets cannot provide targeted cooling for high-temperature areas in different working areas of the server, resulting in wasted airflow and an inability to be adjusted according to the size of the server.

Method used

A server cooling bracket including a heat dissipation frame and an airflow adjustment component was designed. By using a temperature sensor and a PLC controller in conjunction with an exhaust fan and a guide component, targeted heat dissipation is achieved at high-temperature areas of the server. The airflow adjustment component optimizes the airflow to adapt to different server sizes.

Benefits of technology

It achieves targeted heat dissipation at high-temperature areas of the server, avoids wasting airflow, improves heat dissipation efficiency, and can adapt to the installation needs of servers of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a computer room server heat dissipation support, and relates to the technical field of server heat dissipation supports, comprising a heat dissipation frame and a wind volume adjusting assembly; the heat dissipation frame is provided with two heat dissipation frames, the upper end of the two heat dissipation frames is fixedly connected with a limiting strip, the side surface of the heat dissipation frame is fixedly connected with uniformly distributed guide frames, all the guide frames correspond to each other in pairs, a supporting net box is arranged between the two heat dissipation frames at the lower side, an opening is formed in the middle part of the supporting net box, a connecting barrel is fixedly connected in the opening, four corresponding fixing holes are formed in the upper side of the supporting net box, an air inlet barrel is fixedly connected in the fixing hole, an air outlet is formed on the circumferential surface of the air inlet barrel, and a connecting frame is fixedly connected in the air outlet, so that the high-temperature part of the server can be subjected to targeted heat dissipation, wind power waste is avoided, the size of the server can be adjusted, and the server is convenient to install.
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Description

TECHNICAL FIELD

[0001] The application relates to a server heat dissipation support in the technical field of server heat dissipation supports. BACKGROUND

[0002] A server is the core of IT industry operation, and the operation and closed nature of the server can easily cause the server to rapidly heat up, and if the temperature exceeds the safe operation temperature of the server, the system can be crashed or the service life can be damaged, the normal work of the server components is affected, and therefore, a heat dissipation structure must be added to reduce the temperature of the server.

[0003] The server heat dissipation support for a computer room disclosed by the authorized announcement No. CN 212970510U relates to the technical field of server heat dissipation system equipment, and comprises a box body, an opening is formed in one side of the box body perpendicular to the ground, two slide rods that are parallel to each other and located on the same horizontal plane are fixed between the inner walls of the box body, a slide block is slidably connected to each of the two slide rods, a partition plate perpendicular to the slide rods is fixedly connected between the top portions of the two slide blocks, and a fixing assembly for fixing the position of the slide block is arranged on the slide rod close to the opening of the box body.

[0004] The above scheme can dissipate heat through the cooperation of the heat dissipation support and the fan, but the heat generated by the server in different working areas such as the CPU and the graphics card is different, and the above scheme only uses the fan to uniformly dissipate heat, and cannot dissipate heat according to the high temperature of the server, which can easily cause wind waste, and therefore, the application provides a server heat dissipation support for a computer room. SUMMARY

[0005] The application aims to overcome the defects of the prior art and provide a server heat dissipation support for a computer room, which can dissipate heat according to the high temperature of the server, avoid wind waste, can be adjusted according to the size of the server, is convenient for server installation, and can effectively solve the problems in the background art.

[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: a server heat dissipation support for a computer room, comprising a heat dissipation frame and a wind volume adjusting assembly.

[0007] The heat dissipation frame is provided with two heat dissipation frames, the upper end of the two heat dissipation frames is fixed with a limiting strip, the side of the heat dissipation frame is fixed with uniformly distributed guide frames, all the guide frames correspond to each other, a support net cage is arranged between the two heat dissipation frames on the lower side, an opening is formed in the middle of the support net cage, a connecting barrel is fixed in the opening, four corresponding fixing holes are formed in the upper side of the support net cage, an air inlet barrel is fixed in the fixing hole, an air outlet is formed on the circumference of the air inlet barrel, a connecting frame is fixed in the air outlet, an air exhaust pipe is fixed at the lower end of the connecting barrel, an air inlet hole is arranged in the middle of the upper end of the air inlet barrel, a detection assembly is installed on the end surface of the air inlet barrel, an air exhaust hole blocking assembly and an air exhaust assembly are installed in the connecting barrel, the air exhaust hole blocking assembly and the air exhaust assembly are matched, an induction assembly is installed at the upper end of the connecting barrel, the lower end of the installation assembly is matched with the air exhaust hole blocking assembly, two corresponding guide assemblies are installed on the left and right sides of the support net cage, the two guide assemblies are slidingly connected in the two guide frames on the lower side, and the front side of the two heat dissipation frames is provided with a blocking assembly.

[0008] The air volume adjusting assembly comprises a mounting ring, a connecting ring, a connecting rod, a first gear ring, a blocking piece and a first inner tooth ring, the inside of the air inlet barrel is provided with a mounting ring, the upper end of the mounting ring is fixed with a connecting ring, the connecting ring is fixed at the upper end in the air inlet barrel, four corresponding rotating holes are formed in the edge of the mounting ring, the connecting rod is rotatably connected in the rotating hole, the lower end of the connecting rod is fixed with a blocking piece, the upper end of the circumference of the connecting rod is fixed with a first gear ring, the upper end of the mounting ring is rotatably connected with a first inner tooth ring, the first inner tooth ring is meshed with the four first gear rings, the air volume adjusting assembly is arranged, so that the first motor can be started according to the temperature measured by the temperature sensor during heat dissipation, the first inner tooth ring rotates after the first motor is started, the four first gear rings meshed with the first inner tooth ring rotate, the four connecting rods in the four first gear rings rotate, and the four blocking pieces fixed at the lower end of the four connecting rods move to adjust the hole diameter of the air inlet hole arranged in the middle of the upper end of the air inlet barrel. After adjustment, the air volume of the air inlet hole is changed, so that the heat dissipation is more efficient.

[0009] Further, the detection assembly comprises a temperature sensor, a first motor and a first gear, four corresponding installation grooves are formed in the upper end of the air inlet barrel, the temperature sensor is installed in the installation groove, the first motor is installed at the upper end in the air inlet barrel, the output shaft of the first motor is fixed with the first gear, the first gear is engaged with the first internal gear ring, the temperature sensor is bidirectionally electrically connected with the external PLC controller, the input end of the first motor is electrically connected with the output end of the external PLC controller, the temperature sensor is uniformly distributed in the use process, the temperature sensor can continuously monitor the positions of the server bottom, and the detected real-time data is sent to the external PLC controller, so that the external PLC controller can conveniently perform targeted heat dissipation on the server according to the temperature of the server, the heat dissipation efficiency is improved, and the waste of the air power of the air extractor fan can be effectively avoided.

[0010] Further, the air extraction assembly comprises a mounting strip, an air extractor fan and an air extraction hole, the mounting strip is fixed at the lower end in the connecting barrel, the air extractor fan is installed on the upper side of the mounting strip, four corresponding air extraction holes are formed in the circumferential surface of the connecting barrel, four connecting frames are respectively fixed in the four air extraction holes, the air extractor fan can be started in the use process through the air extraction assembly, the air extractor fan starts to extract air in the four connecting barrels, the heat generated by the server enters the four connecting frames through the four connecting barrels in the air extraction process, then passes through the four first air guide holes to enter the connecting barrel, and the high-temperature gas in the connecting barrel is discharged through the exhaust pipeline, so that the temperature of the server placed on the upper end of the support net box can be effectively reduced, and the server can be prevented from being damaged due to high temperature.

[0011] Further, the air extraction hole blocking assembly comprises a rotating barrel, a first air guide hole, a second air guide hole, a second motor, a second gear and a second internal gear ring, the inside of the connecting barrel is rotationally connected with the rotating barrel, four corresponding first air guide holes are arranged on the circumferential surface of the rotating barrel, the first air guide holes correspond to the air extraction holes, a second air guide hole is arranged on the circumferential surface of the rotating barrel, the second air guide hole is located between the two first air guide holes on the left side, the upper side of the mounting strip is mounted with the second motor, the output shaft of the second motor is fixed with the second gear, the upper end of the inside of the rotating barrel is fixed with the second internal gear ring, the second internal gear ring is engaged with the second gear, and the input end of the second motor is electrically connected with the output end of the external PLC controller. By arranging the air extraction hole blocking assembly, the external PLC controller can automatically control the second motor to work according to the temperature data measured by the temperature sensor during use, the second motor drives the second gear to rotate, the second gear drives the second internal gear ring to rotate, the second internal gear ring drives the rotating barrel to rotate, and the rotating barrel drives the second air guide hole to rotate to the connecting frame connected with the connecting barrel at the high-temperature position, so that the connecting barrel and the connecting frame can be used to conduct targeted heat dissipation on the corresponding high-temperature position of the server, and the heat dissipation efficiency is greatly improved.

[0012] Further, the sensing assembly comprises a rotating disc, a reflecting block and an infrared sensor, the upper end of the connecting barrel is provided with a rotating hole, the inside of the rotating hole is rotationally connected with a rotating shaft, the upper end of the rotating shaft is fixed in the rotating barrel, the upper end of the rotating shaft is fixed with the rotating disc, the left end of the circumferential surface of the rotating disc is fixed with the reflecting block, the upper end of the connecting barrel is provided with four corresponding grooves, the inside of the grooves is mounted with the infrared sensor, the infrared sensor corresponds to the connecting frame, the infrared sensor cooperates with the reflecting block, the reflecting block corresponds to the second air guide hole, and the infrared sensor is bidirectionally electrically connected with the external PLC controller. By arranging the sensing assembly, the rotating barrel can also drive the rotating disc to rotate during rotation, the rotating disc drives the reflecting block to rotate, the reflecting block reflects the infrared rays emitted by the working infrared sensor when the reflecting block moves to the position corresponding to the working infrared sensor during rotation, the reflected infrared rays are received by the working infrared sensor, the external PLC controller automatically closes the second motor after receiving, the second air guide hole corresponds to the working infrared sensor at this time, and the connecting frame corresponding to the infrared sensor is also corresponded, so that the air extraction fan can conveniently conduct targeted heat dissipation on the corresponding position.

[0013] Further, the guiding assembly comprises guiding blocks, guiding strips and guiding wheels, the left and right sides of the support net cage are fixed with two corresponding guiding strips and two corresponding guiding blocks, the two guiding blocks are located behind the two guiding strips, the upper and lower sides of the guiding strips are rotationally connected with four corresponding guiding wheels, all the guiding wheels and the two blocks are located inside the two guiding frames on the lower side, by arranging the guiding assembly, when the support net cage is installed, the guiding blocks and the guiding strips on the left and right sides of the support net cage can be inserted into the inside of the corresponding guiding frames, during the insertion process, all the guiding wheels can effectively improve the stability of the installation of the support net cage.

[0014] Further, the guiding assembly comprises guiding blocks, guiding strips and guiding wheels, the left and right sides of the support net cage are fixed with two corresponding guiding strips and two corresponding guiding blocks, the two guiding blocks are located behind the two guiding strips, the upper and lower sides of the guiding strips are rotationally connected with four corresponding guiding wheels, all the guiding wheels and the two blocks are located inside the two guiding frames on the lower side, by arranging the guiding assembly, when the support net cage is installed, the guiding blocks and the guiding strips on the left and right sides of the support net cage can be inserted into the inside of the corresponding guiding frames, during the insertion process, all the guiding wheels can effectively improve the stability of the installation of the support net cage.

[0015] Further, the guiding assembly comprises guiding blocks, guiding strips and guiding wheels, the left and right sides of the support net cage are fixed with two corresponding guiding strips and two corresponding guiding blocks, the two guiding blocks are located behind the two guiding strips, the upper and lower sides of the guiding strips are rotationally connected with four corresponding guiding wheels, all the guiding wheels and the two blocks are located inside the two guiding frames on the lower side, by arranging the guiding assembly, when the support net cage is installed, the guiding blocks and the guiding strips on the left and right sides of the support net cage can be inserted into the inside of the corresponding guiding frames, during the insertion process, all the guiding wheels can effectively improve the stability of the installation of the support net cage.

[0016] Further, the blocking assembly comprises a blocking grid, a connecting column, a clamping strip and a clamping rod, the front side of the left heat dissipation frame is connected with the blocking grid through two hinges, the right end of the blocking grid is fixed with the connecting column, the right end of the connecting column is rotationally connected with the clamping strip, the rear end of the lower side of the clamping strip is provided with a clamping groove, the right side of the right heat dissipation frame is fixed with the clamping rod, and the clamping rod is clamped in the inside of the clamping groove. By setting the blocking assembly, the blocking grid can be closed after the server is installed, then the clamping groove provided at the lower end of the clamping strip is clamped on the surface of the clamping rod by rotating the clamping strip on the right side, and the blocking grid can be fixed after clamping. After fixing, the blocking grid can protect the server, so as to avoid damage.

[0017] Further, the rear side of the two heat dissipation frames is fixed with a protection grid, the rear side of the protection grid is provided with a strip-shaped bayonet, the exhaust duct is located in the inside of the strip-shaped bayonet, and the rear side of the protection grid is provided with uniformly distributed heat dissipation holes. By setting the protection grid, the rear of the server is protected, and the rear of the server is conveniently heat-dissipated.

[0018] Compared with the prior art, the computer room server heat dissipation support has the following advantages:

[0019] 1. By setting the support net box, the server can be placed above the support net box during use, and after placement, the air extractor fan is started. After the air extractor fan is started, the inside of the four connecting barrels is exhausted. During the air extraction process, the heat generated by the server will enter the inside of the four connecting frames through the four connecting barrels, then pass through the four first air guide holes into the inside of the connecting barrels, and the high-temperature gas in the connecting barrels will be discharged through the exhaust duct. In this way, the temperature of the server can be effectively reduced, and the server can be prevented from being damaged due to high temperature.

[0020] 2、By setting the detection assembly makes in the process of use will be placed to the support net box above the server will be located in the upper end of the four connecting barrels, at this time start the temperature sensor located in the upper end of the four connecting barrels detects the temperature of the server bottom everywhere, when the temperature of a place is too high, the external PLC controller will automatically control the infrared sensor corresponding to the connecting barrel to work, after the infrared sensor works, the external PLC controller automatically controls the second motor to work, the second motor works to drive the second gear to rotate, the second gear rotates to drive the second inner gear ring to rotate, the second inner gear ring rotates to drive the rotating barrel to rotate, the rotating barrel rotates to drive the rotating disc to rotate, the rotating disc rotates to drive the reflecting block to rotate, when the reflecting block moves to the position corresponding to the working infrared sensor during rotation, it will reflect the infrared rays emitted by the working infrared sensor, the reflected infrared rays will be received by the working infrared sensor, after receiving, the external PLC controller will automatically turn off the second motor, at this time the second air guide hole will correspond to the working infrared sensor, so as to correspond to the connecting frame corresponding to the infrared sensor, at this time starting the exhaust fan can exhaust the hot air in the connecting barrel connected with the connecting frame, in this case, the high temperature part of the server can be targeted for heat dissipation, greatly improving the efficiency of heat dissipation;

[0021] 3、By setting the air volume adjusting assembly, the first motor can be started according to the temperature measured by the temperature sensor during heat dissipation, the first motor is started to make the first inner gear ring rotate, the first inner gear ring rotates to drive the four first gear rings meshed with it to rotate, the four first gear rings rotate to drive the four connecting rods inside them to rotate, the four connecting rods rotate to drive the four blocking pieces fixed at their lower ends to move to adjust the aperture of the air inlet hole arranged in the middle of the upper end of the air inlet barrel, after adjustment, the air inlet hole can change the air volume, so that the heat dissipation is more efficient;

[0022] 4、By setting the guide frame, when installing the server, the two threaded rods can be rotated to move forward, so that the two T-shaped pull ropes move forward to pull the two clamping heads away from the two clamping holes opened in the rear side of the two guide frames on the lower side, then pull the support net box forward to pull it out of the inside of the two guide frames on the lower side, then insert the support net box into the inside of the two guide frames of appropriate height according to the size of the server, then rotate the two threaded rods to move backward, so that the T-shaped pull ropes return to their original positions, at this time the four clamping heads will enter the corresponding two clamping holes under the action of the four springs, in this case, the support net box can be fixed, after fixing, servers of different sizes can be installed; BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is the front side structure schematic diagram of the present application;

[0024] Figure 2 Structure diagram of the support net cage of the present application;

[0025] Figure 3 Structure diagram of the exhaust pipeline of the present application;

[0026] Figure 4 Structure diagram of the air extraction hole blocking assembly of the present application;

[0027] Figure 5 Structure diagram of the air volume adjustment assembly of the present application;

[0028] Figure 6 Structure diagram of the induction assembly of the present application;

[0029] Figure 7 Structure diagram of the blocking piece of the present application;

[0030] Figure 8 Structure diagram of the guiding assembly of the present application;

[0031] Figure 9 Structure diagram of the guiding block fixing assembly of the present application.

[0032] In the figure: 1 heat dissipation frame, 2 support net cage, 3 detection assembly, 31 temperature sensor, 32 first motor, 33 first gear, 4 air volume adjustment assembly, 41 mounting ring, 42 connecting ring, 43 connecting rod, 44 first gear ring, 45 blocking piece, 46 first inner tooth ring, 5 air extraction hole blocking assembly, 51 rotating barrel, 52 first air guide hole, 53 second air guide hole, 54 second motor, 55 second gear, 56 second inner tooth ring, 6 induction assembly, 61 rotating disc, 62 reflecting block, 63 infrared sensor, 7 guiding assembly, 71 guiding block, 72 guiding strip, 73 guiding wheel, 8 guiding block fixing assembly, 81 T-shaped hole, 82 T-shaped pull rope, 83 spring, 84 clamping head, 85 fixing ring, 9 pulling assembly, 91 threaded rod, 92 rotating disc, 10 blocking assembly, 101 blocking grid, 102 connecting column, 103 clamping strip, 104 clamping rod, 11 air extraction assembly, 111 mounting strip, 112 air extraction fan, 113 air extraction hole, 12 connecting barrel, 13 connecting frame, 14 exhaust pipeline, 15 guiding frame, 16 protective grid, 17 strip-shaped clamping opening, 18 heat dissipation opening, 19 air inlet barrel, 20 limiting strip. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0034] See Figures 1-9 The embodiment provides a technical scheme: a server heat dissipation support for computer room, which comprises a heat dissipation frame 1 and a wind volume adjusting assembly 4.

[0035] The heat dissipation frame 1 is provided with two heat dissipation frames 1, the upper end of the two heat dissipation frames 1 is fixed with a limiting strip 20, the side of the heat dissipation frame 1 is fixed with uniformly distributed guide frames 15, all the guide frames 15 correspond to each other, the lower two heat conduction frames 15 are provided with a support net box 2, the middle part of the support net box 2 is provided with an opening, the inside of the opening is fixed with a connecting barrel 12, the upper side of the support net box 2 is provided with four corresponding fixing holes, the inside of the fixing hole is fixed with an air inlet barrel 19, the circumferential surface of the air inlet barrel 19 is provided with an air outlet, the inside of the air outlet is fixed with a connecting frame 13, the lower end of the connecting barrel 12 is fixed with an air outlet pipeline 14, the middle part of the upper end of the air inlet barrel 19 is provided with an air inlet hole, the end surface of the air inlet barrel 19 is installed with a detection assembly 3, the inside of the connecting barrel 12 is installed with an air suction hole blocking assembly 5 and an air suction assembly 11, the air suction hole blocking assembly 5 and the air suction assembly 11 are matched, the upper end of the connecting barrel 12 is installed with a sensing assembly 6, the lower end of the installation assembly 6 is matched with the air suction hole blocking assembly 5, the left and right sides of the support net box 2 are installed with two corresponding guide assemblies 7, the two guide assemblies 7 are slidingly connected in the inside of the lower two guide frames 15, the front side of the two heat dissipation frames 1 is installed with a blocking assembly 10,

[0036] The two heat dissipation frames 1 are arranged to protect the installed server, avoid damage, and the limiting strip 20 fixed in the upper end of the two heat dissipation frames 1 is attached to the upper side of the server during use, and the limiting strip 20 can limit the position of the server after attachment, so that the stability of the server during use is ensured.

[0037] The wind volume adjusting assembly 4 comprises an installation ring 41, a connecting ring 42, a connecting rod 43, a first gear ring 44, a blocking piece 45 and a first inner gear ring 46, the inside of the air inlet barrel 19 is provided with the installation ring 41, the upper end of the installation ring 41 is fixed with the connecting ring 42, the connecting ring 42 is fixed to the upper end in the inside of the air inlet barrel 19, the edge of the installation ring 41 is provided with four corresponding rotating holes, the rotating hole is rotatably connected with the connecting rod 43, the lower end of the connecting rod 43 is fixed with the blocking piece 45, the upper end of the circumferential surface of the connecting rod 43 is fixed with the first gear ring 44, the upper end of the installation ring 41 is rotatably connected with the first inner gear ring 46, and the first inner gear ring 46 is engaged with the four first gear rings 44.

[0038] The air volume adjusting assembly is arranged, so that the first motor 32 can be started according to the temperature measured by the temperature sensor 31 during heat dissipation, the first motor 32 is started to drive the first inner tooth ring 46 to rotate, the first inner tooth ring 46 drives the four first gear rings 44 meshed therewith to rotate, the four first gear rings 44 drive the four connecting rods 43 inside them to rotate, the four connecting rods 43 drive the four blocking pieces 45 fixed at the lower ends to move to adjust the hole diameter of the air inlet hole arranged at the middle of the upper end of the air inlet barrel 19, and the air volume of the air inlet hole is adjusted to make the heat dissipation more efficient.

[0039] The detection assembly 3 comprises a temperature sensor 31, a first motor 32 and a first gear 33, four corresponding installation grooves are arranged at the upper end of the air inlet barrel 19, the temperature sensor 31 is arranged in the installation groove, the first motor 32 is arranged at the upper end inside the air inlet barrel 19, the output shaft of the first motor 32 is fixed with the first gear 33, the first gear 33 is meshed with the first inner tooth ring 46, the temperature sensor 31 is bidirectionally electrically connected with the external PLC controller, and the input end of the first motor 32 is electrically connected with the output end of the external PLC controller.

[0040] The detection assembly 3 is arranged, so that the uniformly distributed temperature sensor 31 can continuously monitor the temperature of each position of the server bottom during use, and send the detected real-time data to the external PLC controller, so that the external PLC controller can conveniently perform targeted heat dissipation on the server according to the temperature of each position of the server, improve the heat dissipation efficiency, and effectively avoid the waste of the air volume of the air suction fan 112.

[0041] The air suction assembly 11 comprises an installation strip 111, an air suction fan 112 and air suction holes 113, the installation strip 111 is fixed at the lower end inside the connecting barrel 12, the air suction fan 112 is arranged on the upper side of the installation strip 111, four corresponding air suction holes 113 are arranged on the circumferential surface of the connecting barrel 12, and the four connecting frames 13 are fixed in the four air suction holes 113 respectively.

[0042] The air suction assembly 11 is arranged, so that the air suction fan 112 can be started during use, the air suction fan 112 is started to suck air into the four connecting barrels 19, the heat generated by the server enters the four connecting barrels 19 during the air suction process, then passes through the four first air guide holes 52 to enter the inside of the connecting barrel 12, and the high-temperature gas in the connecting barrel 12 is discharged through the exhaust pipeline 14, so that the temperature of the server placed on the upper end of the support net box 2 can be effectively reduced to avoid damage of the server due to high temperature.

[0043] The air extraction hole blocking assembly 5 comprises a rotating barrel 51, first air guide holes 52, second air guide holes 53, a second motor 54, a second gear 55, and a second inner gear ring 56. The rotating barrel 51 is rotatably connected to the inside of the connecting barrel 12. Four corresponding first air guide holes 52 are formed on the circumferential surface of the rotating barrel 51. The first air guide holes 52 correspond to the air extraction holes 113. Second air guide holes 53 are formed on the circumferential surface of the rotating barrel 51. The second air guide holes 53 are located between the two first air guide holes 52 on the left side. The second motor 54 is installed on the upper side of the mounting strip 111. The output shaft of the second motor 54 is fixedly connected with the second gear 55. The upper end of the inside of the rotating barrel 51 is fixedly connected with the second inner gear ring 56. The second inner gear ring 56 is in mesh with the second gear 55. The input end of the second motor 54 is electrically connected with the output end of the external PLC controller.

[0044] The air extraction hole blocking assembly 5 is arranged to enable the external PLC controller to automatically control the operation of the second motor 54 according to the temperature data measured by the temperature sensor 31 during use. The operation of the second motor 54 drives the rotation of the second gear 55, which in turn drives the rotation of the second inner gear ring 56. The rotation of the second inner gear ring 56 drives the rotation of the rotating barrel 51, which in turn drives the rotation of the second air guide holes 53 to the connecting frame 13 connected to the high-temperature connecting barrel 19. The connecting barrel 19 and the connecting frame 13 can then be used to specifically cool the corresponding high-temperature position of the server, greatly improving the cooling efficiency.

[0045] The induction assembly 6 comprises a rotating disc 61, a reflecting block 62, and an infrared sensor 63. A rotating hole is formed on the upper end of the connecting barrel 12. A rotating shaft is rotatably connected to the inside of the rotating hole. The rotating shaft is fixedly connected to the upper end of the rotating barrel 51. The upper end of the rotating shaft is fixedly connected with the rotating disc 61. The left end of the circumferential surface of the rotating disc 61 is fixedly connected with the reflecting block 62. Four corresponding grooves are formed on the upper end of the connecting barrel 12. The infrared sensor 63 is installed in the inside of the groove. The infrared sensor 63 corresponds to the connecting frame 13. The infrared sensor 63 cooperates with the reflecting block 62. The reflecting block 62 corresponds to the second air guide hole 53. The infrared sensor 63 is bidirectionally electrically connected with the external PLC controller.

[0046] The induction assembly 6 is arranged to enable the rotating barrel 51 to rotate during use, which in turn drives the rotation of the rotating disc 61. The rotation of the rotating disc 61 drives the rotation of the reflecting block 62. When the reflecting block 62 moves to the position corresponding to the working infrared sensor 63 during rotation, it reflects the infrared rays emitted by the working infrared sensor 63. The reflected infrared rays are received by the working infrared sensor 63. After receiving, the external PLC controller automatically turns off the second motor 54. At this time, the second air guide hole 53 corresponds to the working infrared sensor 63, and the connecting frame 13 corresponding to the infrared sensor 63. In this case, the air extraction fan 112 can conveniently perform targeted cooling on the corresponding position.

[0047] The guiding assembly 7 comprises guiding blocks 71, guiding strips 72 and guiding wheels 73. Two corresponding guiding strips 72 and two corresponding guiding blocks 71 are fixed to the left and right sides of the supporting net cage 2. The two guiding blocks 71 are located behind the two guiding strips 72. Four corresponding guiding wheels 73 are rotatably connected to the upper and lower sides of the guiding strips 72. All the guiding wheels 73 and the two blocks 71 are located inside the two lower guiding frames 15.

[0048] The guiding assembly 7 can make the guiding blocks 71 and the guiding strips 72 on the left and right sides of the supporting net cage 2 inserted into the corresponding guiding frames 15 during the installation of the supporting net cage 2. All the guiding wheels 73 can effectively improve the stability of the installation of the supporting net cage 2 during the insertion process.

[0049] The fixing block fixing assembly 8 comprises T-shaped holes 81, T-shaped pull ropes 82, springs 83, clamping heads 84 and fixing rings 85. The middle part of the guiding block 71 is provided with a T-shaped hole 81. The T-shaped hole 81 is provided with a T-shaped pull rope 82 inside. Two corresponding fixing rings 85 are fixed to the upper and lower ends inside the T-shaped hole 81. The clamping head 84 is slidably connected to the inside of the fixing ring 85. The upper and lower ends of the T-shaped pull rope 82 are fixed to the end faces of the two clamping heads 84, respectively. The surface of the clamping head 84 is sleeved with a spring 83. One end of the spring 83 is fixed to the end face of the clamping head 84. The other end of the spring 83 is fixed to the end face of the fixing ring 85. The rear side of the guiding frame 15 is provided with a clamping hole. The four clamping heads 84 are clamped in the inside of the two clamping holes on the lower side.

[0050] The guiding block fixing assembly can make the two clamping heads 84 inside the guiding block 71 enter the clamping hole provided on the rear side of the corresponding guiding frame 15 under the action of the spring 83 connected thereto after the guiding block 71 is inserted into the inside of the corresponding guiding frame 15. In this case, the two guiding blocks 71 can be fixed, and the supporting net cage 2 can be fixed, which is very convenient.

[0051] The pulling assembly 9 comprises threaded rods 91 and turntables 92. The front side of the guiding strip 72 is provided with a threaded hole. The threaded hole is threadedly connected with a threaded rod 91. The rear end of the threaded rod 91 is rotatably connected with a turntable 92. The end of the T-shaped pull rope 82 away from the two clamping heads 84 is fixed to the end face of the turntable 92.

[0052] By setting the pulling assembly 9, when installing the server, the two threaded rods 91 can be rotated forward according to the size of the server, so that the two T-shaped pulling ropes 82 move forward and pull the two clamping heads 84 away from the two clamping holes opened at the rear side of the lower two guide frames 15, then the support net cage 2 is pulled forward and taken out from the inside of the lower two guide frames 15, after the support net cage 2 is taken out, it is inserted into the inside of the two guide frames 15 with appropriate height according to the size of the server, then the two threaded rods 91 are rotated backward so that the T-shaped pulling ropes 82 return to the original position, at this time the four clamping heads 84 will enter the inside of the corresponding two clamping holes under the action of the four springs 83, which can fix the support net cage 2. After fixing, servers of different sizes can be installed.

[0053] Further, the blocking assembly 10 comprises a blocking grid 101, a connecting column 102, a clamping strip 103 and a clamping rod 104, the front side of the left heat dissipation frame 1 is connected with the blocking grid 101 through two hinges, the right end of the blocking grid 101 is fixed with the connecting column 102, the right end of the connecting column 102 is rotatably connected with the clamping strip 103, the lower rear end of the clamping strip 103 is provided with a clamping groove, the right side of the right heat dissipation frame 1 is fixed with the clamping rod 104, and the clamping rod 104 is clamped in the clamping groove.

[0054] By setting the blocking assembly 10, after installing the server, the blocking grid 101 can be closed, then the clamping groove opened at the lower end of the clamping strip 103 on the right side is clamped on the surface of the clamping rod 104, after clamping, the blocking grid 101 can be fixed, and after fixing, the blocking grid 101 can protect the server, thereby avoiding damage.

[0055] Among them: the rear side of the two heat dissipation frames 1 is fixed with a protective grid 16, the rear side of the protective grid 16 is provided with a strip-shaped clamping hole 17, the exhaust duct 14 is located in the strip-shaped clamping hole 17, and the rear side of the protective grid 16 is provided with evenly distributed heat dissipation holes 18. By setting the protective grid 16, the rear of the server is protected, and the rear of the server is conveniently cooled.

[0056] The working principle of the server heat dissipation support for computer room provided by the application is as follows: first, according to the size of the server, rotate the two threaded rods 91 to move forward so that the two T-shaped pull ropes 82 move forward and pull the two clamping heads 84 away from the two clamping holes opened in the rear side of the two guide frames 15 on the lower side, then pull the support net box 2 forward to pull it out of the inside of the two guide frames 15 on the lower side, after pulling out the support net box 2, according to the size of the server, insert it into the inside of the two guide frames 15 of the appropriate height, then rotate the two threaded rods 91 to move backward so that the T-shaped pull ropes 82 return to the original position, at this time, the four clamping heads 84 will enter the inside of the corresponding two clamping holes under the action of the four springs 83, which can fix the support net box 2, after fixing, place the server above the support net box 2, after placing, close the blocking grille 101, then rotate the clamping strip 103 on the right side to make the clamping groove opened in the lower end clamped to the surface of the clamping rod 104, after clamping, the blocking grille 101 can be fixed, after fixing, the blocking grille 101 can protect the server, so as to avoid damage, then start the air suction fan 112, after starting the air suction fan 112, the inside of the four connecting barrels 19 will be sucked, in the process of suction, the heat generated by the server will enter the inside of the four connecting frames 13 through the four connecting barrels 19, then pass through the four first air guide holes 52 to enter the inside of the connecting barrel 12, the high-temperature gas in the inside of the connecting barrel 12 will be discharged through the exhaust pipe 14, in this way, the server can be preliminarily heat-dissipated to avoid damage, after placing the server above the support net box 2, the server will be located at the upper end of the four connecting barrels 19, at this time, start the temperature sensor 31 located at the upper end of the four connecting barrels 19 to detect the temperature of each part of the bottom of the server, when the temperature of a certain part is too high, the external PLC controller will automatically control the infrared sensor 63 corresponding to the connecting barrel 19 to work, after the infrared sensor 63 works, the external PLC controller automatically controls the second motor 54 to work, the second motor 54 works to drive the second gear 55 to rotate, the second gear 55 rotates to drive the second inner gear ring 56 to rotate, the second inner gear ring 56 rotates to drive the rotating barrel 51 to rotate, the rotating barrel 51 rotates to drive the rotating disc 61 to rotate, the rotating disc 61 rotates to drive the reflecting block 62 to rotate, in the process of rotating the reflecting block 62, when it moves to the position corresponding to the working infrared sensor 63, it will reflect the infrared ray emitted by the working infrared sensor 63, the reflected infrared ray will be received by the working infrared sensor 63, after receiving, the external PLC controller will automatically turn off the second motor 54, at this time, the second air guide hole 53 will correspond to the working infrared sensor 63, so as to correspond to the connecting frame 13 corresponding to the infrared sensor 63, at this time, start the air suction fan 112 to suck out the hot air in the inside of the connecting barrel 19 connected with the connecting frame 13, in this way, the high-temperature part of the server can be heat-dissipated in a targeted manner, which greatly improves the heat dissipation efficiency.In the process of heat dissipation, the first motor 32 can be started according to the temperature measured by the temperature sensor 31, the first motor 32 is started to drive the first inner gear ring 46 to rotate, the first inner gear ring 46 drives the four first gear rings 44 engaged with it to rotate, the four first gear rings 44 drive the four connecting rods 43 inside them to rotate, the four connecting rods 43 drive the four blocking pieces 45 fixed at the lower end to move to adjust the aperture of the air inlet hole arranged at the upper middle part of the air inlet barrel 19, after adjustment, the wind power at the air inlet hole can be changed, so that the heat dissipation is more efficient, when installing the server, according to the demand and the size of the server, a proper number of support net boxes 2 can be added.

[0057] It is worth noting that the external PLC controller disclosed in the above embodiment is a specific model of Siemens S7-200, the first motor 32 and the second motor 54 can be selected as 130 motor electric motor, the infrared sensor 63, and the air suction fan 112 can be selected as BLFS01 high-speed violent fan, the external PLC controller controls the first motor 32, the second motor 54 and the air suction fan 112 to work by using the method commonly used in the prior art.

[0058] The above is only an embodiment of the present application, and does not limit the patent range of the present application, any equivalent structure or equivalent flow transformation made by using the content of the specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection range of the present application.

Claims

1. A server heat dissipation bracket for a computer room, characterized by: It comprises a heat dissipation frame (1) and an air volume adjustment component (4); Heat dissipation frames (1): two heat dissipation frames (1) are provided, and the upper ends of the two heat dissipation frames (1) are fixed with limit strips (20), and the sides of the heat dissipation frames (1) are fixed with evenly distributed guide frames (15), and all the guide frames (15) correspond to each other in pairs. A support grid box (2) is provided between the two guide frames (15) on the lower side, and an opening is provided in the middle of the support grid box (2), and a connecting barrel (12) is fixed inside the opening. Four corresponding fixing holes are provided on the upper side of the support grid box (2), and an air intake barrel (19) is fixed inside the fixing holes. An exhaust port is provided on the circumferential surface of the air intake barrel (19), and a connecting frame (13) is fixed inside the exhaust port. An exhaust port is fixed at the lower end of the connecting barrel (12). The pipe (14) is provided with an air inlet in the middle of the upper end of the air inlet barrel (19), a detection assembly (3) is installed on the end surface of the air inlet barrel (19), an air extraction hole blocking assembly (5) and an air extraction assembly (11) are installed inside the connecting barrel (12), the air extraction hole blocking assembly (5) and the air extraction assembly (11) cooperate with each other, an induction assembly (6) is installed on the upper end of the connecting barrel (12), the lower end of the induction assembly (6) cooperates with the air extraction hole blocking assembly (5), two corresponding guide assemblies (7) are installed on the left and right sides of the supporting mesh box (2), the two guide assemblies (7) are slidably connected to the inside of the two guide frames (15) on the lower side, and a blocking assembly (10) is installed on the front side of the two heat dissipation frames (1); The air volume adjustment component (4) comprises a mounting ring (41), a connecting ring (42), a connecting rod (43), a first gear ring (44), a blocking plate (45) and a first inner gear ring (46). The air intake barrel (19) is provided with a mounting ring (41). The upper end of the mounting ring (41) is fixed with a connecting ring (42). The connecting ring (42) is fixed to the upper end of the air intake barrel (19). Four corresponding rotating holes are opened on the edge of the mounting ring (41). The interior of the rotating hole is rotatably connected with a connecting rod (43). The lower end of the connecting rod (43) is fixed with a blocking plate (45). The upper end of the circumferential surface of the connecting rod (43) is fixed with a first gear ring (44). The upper end of the mounting ring (41) is rotatably connected with a first inner gear ring (46). The first inner gear ring (46) is meshed with the four first gear rings (44).

2. The server heat dissipation bracket for a computer room according to claim 1, characterized in that: The detection component (3) includes a temperature sensor (31), a first motor (32) and a first gear (33). Four corresponding mounting grooves are provided at the upper end of the air intake barrel (19). The temperature sensor (31) is installed inside the mounting groove. The first motor (32) is installed at the upper end of the air intake barrel (19). A first gear (33) is fixed on the output shaft of the first motor (32). The first gear (33) is meshed with a first inner gear ring (46). The temperature sensor (31) is bidirectionally electrically connected to an external PLC controller. The input end of the first motor (32) is electrically connected to the output end of the external PLC controller.

3. The server heat dissipation bracket for a computer room according to claim 1, characterized in that: The exhaust assembly (11) comprises a mounting bar (111), an exhaust fan (112) and an exhaust hole (113); the mounting bar (111) is fixed to the lower end of the interior of the connecting barrel (12); the exhaust fan (112) is installed on the upper side of the mounting bar (111); four corresponding exhaust holes (113) are opened on the circumferential surface of the connecting barrel (12); and four connecting frames (13) are respectively fixed inside the four exhaust holes (113).

4. The server heat dissipation bracket for a computer room according to claim 3, characterized in that: The air extraction hole blocking assembly (5) comprises a rotary barrel (51), a first air guide hole (52), a second air guide hole (53), a second motor (54), a second gear (55) and a second inner gear ring (56). The interior of the connecting barrel (12) is rotatably connected to the rotary barrel (51). Four corresponding first air guide holes (52) are provided on the circumferential surface of the rotary barrel (51). The first air guide holes (52) correspond to the air extraction holes (113). The second air guide holes (55) correspond to the air extraction holes (113). The second air guide hole (53) is located between the two first air guide holes (52) on the left side. A second motor (54) is installed on the upper side of the mounting bar (111). A second gear (55) is fixed on the output shaft of the second motor (54). A second inner gear ring (56) is fixed on the upper end of the interior of the rotating barrel (51). The second inner gear ring (56) is meshed with the second gear (55). The input end of the second motor (54) is electrically connected to the output end of an external PLC controller.

5. The server heat dissipation bracket for a computer room according to claim 4, characterized in that: The sensing component (6) comprises a turntable (61), a reflective block (62) and an infrared sensor (63). A turntable hole is provided at the upper end of the connecting barrel (12). A rotating shaft is rotatably connected inside the turntable hole. The rotating shaft is fixed to the upper end of the rotating barrel (51). A turntable (61) is fixed to the upper end of the rotating shaft. A reflective block (62) is fixed to the left end of the circumferential surface of the turntable (61). Four corresponding grooves are provided at the upper end of the connecting barrel (12). An infrared sensor (63) is installed inside the groove. The infrared sensor (63) corresponds to the connecting frame (13). The infrared sensor (63) cooperates with the reflective block (62). The reflective block (62) corresponds to the second air guide hole (53). The infrared sensor (63) is bidirectionally electrically connected to an external PLC controller.

6. The server heat dissipation bracket for a computer room according to claim 1, characterized in that: The guide assembly (7) comprises a guide block (71), a guide bar (72) and a guide wheel (73). Two corresponding guide bars (72) and two corresponding guide blocks (71) are fixed on the left and right sides of the supporting net box (2). The two guide blocks (71) are located behind the two guide bars (72). Four corresponding guide wheels (73) are rotatably connected on the upper and lower sides of the guide bar (72). All the guide wheels (73) and the two guide blocks (71) are respectively located inside the two guide frames (15) on the lower side.

7. The server heat dissipation bracket for a computer room according to claim 6, characterized in that: The invention also includes a guide block fixing assembly (8), wherein the guide block fixing assembly (8) includes a T-shaped hole (81), a T-shaped pull rope (82), a spring (83), a clamp (84) and a fixing ring (85). A T-shaped hole (81) is provided in the middle of the guide block (71), a T-shaped pull rope (82) is provided inside the T-shaped hole (81), and two corresponding fixing rings (85) are fixed at the upper and lower ends of the inside of the T-shaped hole (81). The inner sliding part of the fixing ring (85) is provided with a T-shaped pull rope (82). The guide frame (15) is dynamically connected with a clamp (84), and the upper and lower ends of the T-shaped pull rope (82) are respectively fixed on the end faces of the two clamps (84). The surface of the clamp (84) is sleeved with a spring (83), one end of the spring (83) is fixed on the end face of the clamp (84), and the other end of the spring (83) is fixed on the end face of the fixing ring (85). The rear side edge of the guide frame (15) is provided with a clamping hole, and the four clamps (84) are clamped inside the two clamping holes on the lower side.

8. The server heat dissipation bracket for a computer room according to claim 7, characterized in that: The invention also includes a pulling assembly (9), wherein the pulling assembly (9) includes a threaded rod (91) and a turntable (92), a threaded hole is provided on the front side of the guide bar (72), the inner thread of the threaded hole is connected to the threaded rod (91), the rear end of the threaded rod (91) is rotatably connected to the turntable (92), and one end of the T-shaped pull rope (82) away from the two clamps (84) is fixed to the end surface of the turntable (92).

9. The server heat dissipation bracket for a computer room according to claim 1, characterized in that: The blocking assembly (10) comprises a blocking grille (101), a connecting column (102), a clamping bar (103) and a clamping rod (104); the front side of the left heat dissipation frame (1) is connected to the blocking grille (101) via two hinges; the right end of the blocking grille (101) is fixed with a connecting column (102); the right end of the connecting column (102) is rotatably connected to the clamping bar (103); a clamping slot is provided at the rear end of the lower side of the clamping bar (103); the right side of the right heat dissipation frame (1) is fixed with a clamping rod (104); the clamping rod (104) is clamped inside the clamping slot.

10. The server heat dissipation bracket for a computer room according to claim 1, characterized in that: A protective grille (16) is fixed to the rear side of the two heat dissipation frames (1), a strip-shaped bayonet (17) is provided on the rear side of the protective grille (16), the exhaust duct (14) is located inside the strip-shaped bayonet (17), and evenly distributed heat dissipation openings (18) are provided on the rear side of the protective grille (16).

Citation Information

Patent Citations

  • Server heat dissipation support for computer room

    CN212970510U

  • Fixing device facilitating installation of computer mainboard

    CN113760063A

  • Relay protection device of automatic power system

    CN117117674A