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CN112987878A - Cloud server case with multi-type heat dissipation function - Google Patents

Cloud server case with multi-type heat dissipation function Download PDF

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Publication number
CN112987878A
CN112987878A CN202110521076.9A CN202110521076A CN112987878A CN 112987878 A CN112987878 A CN 112987878A CN 202110521076 A CN202110521076 A CN 202110521076A CN 112987878 A CN112987878 A CN 112987878A
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China
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cavity
fan
wheel
transmission
cloud server
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CN202110521076.9A
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CN112987878B (en
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李芳�
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Guangdong Haiji Electromechanical Equipment Co ltd
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Guangzhou Hongyi Information Technology Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/20Cooling means

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The invention discloses a cloud server case with multi-type heat dissipation functions, which comprises a cold air box, a main frame cavity, an air inlet cavity, a distribution frame cavity, a fan cavity, an air exchange cavity and a dust separation net. The air conditioner is connected with the air inlet cavity through a pipeline, the air inlet cavity, the main frame cavity, the distribution frame cavity, the fan cavity and the ventilation cavity are sequentially assembled in a combined mode, adjusting mechanisms are arranged inside the air inlet cavity and the ventilation cavity, the fan cavity is connected with the adjusting mechanisms, the air inlet cavity and the ventilation cavity through a linkage mechanism, the dust separation net is arranged inside the air inlet cavity, and a cleaning mechanism is arranged on one side, close to the fan cavity, of the dust separation net. The invention can monitor the change of the ambient temperature difference value of the server host in real time and make adaptive adjustment so as to ensure that the cold air in the case flows uniformly; in addition, the dust-isolating net is arranged at the air inlet part, so that external dust is prevented from entering the interior of the case and causing adverse effects on the operation of the cloud server, and meanwhile, the dust-isolating net is provided with the cleaning mechanism, so that dust accumulation is prevented from hindering the circulation of cold air.

Description

Cloud server case with multi-type heat dissipation function
Technical Field
The invention relates to the technical field of cloud server cases, in particular to a cloud server case with multiple types of heat dissipation functions.
Background
The cloud server is based on a large-scale distributed computing system, integrates resources through a virtualization technology, and provides internet infrastructure for various industries. Compared with a traditional server, the cloud server can quickly construct a more stable and safe application, and the difficulty in developing operation and maintenance and the cost of the whole computing system are reduced. Generally, the cloud server is sequentially installed in a machine room, a plurality of server hosts are arranged in a machine box, and wires are additionally arranged, so that inconvenience is caused during installation, movement or expansion. In addition, the cloud server host can release a large amount of heat energy when operating simultaneously, and corresponding high-power cooling equipment needs to be arranged, so that space and energy are wasted.
The invention provides a cloud server case with multi-type heat dissipation functions, which can monitor the change of the ambient temperature difference of a server host in real time and make adaptive adjustment on the sizes of openings of an air inlet valve and an air outlet valve so as to ensure that cold air in the case flows uniformly; in addition, the case is directly communicated with the cold air box, and the fan is arranged in the case, so that the circulation flow of the cold air in the case is enhanced, and the heat dissipation and exchange efficiency of the case is greatly improved; the dust-isolating net is arranged at the air inlet part, so that external dust is prevented from entering the interior of the case and causing adverse effects on the operation of the cloud server, and meanwhile, the cleaning mechanism is arranged at the dust-isolating net, a fan is used as a driving force, so that dust accumulation is prevented from blocking meshes, the circulation of cold air is prevented from being disturbed, and the heat dissipation efficiency is ensured.
Disclosure of Invention
The invention aims to provide a cloud server case with multiple types of heat dissipation functions, so as to solve the problems in the background art.
In order to solve the technical problems, the invention provides the following technical scheme: the utility model provides a high in clouds server machine case with polymorphic type heat dissipation function, includes air conditioning cabinet, main frame chamber, air inlet chamber, distribution frame chamber, fan chamber, ventilation chamber, dust removal net, the air conditioning cabinet links to each other with the pipeline with the air inlet chamber, main frame chamber, distribution frame chamber, fan chamber, ventilation chamber assemble according to the sequence combination in proper order, the intracavity portion of admitting air is equipped with a set of adjustment mechanism, the inside adjustment mechanism that is equipped with of ventilation chamber, the fan chamber passes through link gear and links to each other with air inlet chamber, ventilation chamber respectively, the dust removal net is located one side that the fan chamber kept away from air inlet chamber, and one side that the dust removal net is close to the fan chamber is equipped with cleans the mechanism.
Further, the adjusting mechanism comprises monitoring assemblies, and the monitoring assemblies are arranged at intervals in the vertical direction. The purpose that the monitoring subassembly set up lies in playing the real-time supervision effect to the peripheral environment of admitting air chamber, air exchange chamber to transmit the instruction in other subassemblies under different situation, thereby realize the effect. The monitoring assembly comprises a monitoring cavity, a screw rod, a pneumatic block, a limiting block and a heat conducting plate. The monitoring chamber penetrates in the horizontal direction, and the screw rod is arranged in the monitoring chamber in the horizontal direction. Two ends of the screw rod are respectively connected with the monitoring cavity through sealing bearings, and one end of the screw rod penetrates through the monitoring cavity and extends into the fan cavity. The pneumatic block vertically penetrates through the screw rod and is connected with the screw rod in a threaded manner, and can generate relative displacement with the screw rod according to the temperature change at two ends of the monitoring cavity. The limiting block is symmetrically arranged on the inner side wall of the monitoring cavity, the opposite surfaces of the limiting block are respectively provided with a first electric contact sheet, and the two sides of the pneumatic block respectively correspond to the first electric contact sheets and are provided with a second electric contact sheet. The purpose that first electric contact piece, second electric contact piece set up is in order to realize dangerous signal's transmission with the distance standard, avoids the inside further damage of parts because of the radiating effect is not good of high in the clouds server machine case. The heat conducting plates are symmetrically and attached to the side walls at two ends inside the monitoring cavity, and the heat exchange effect between the periphery of the monitoring cavity and the internal environment of the monitoring cavity is achieved.
Further, the adjusting mechanism comprises an executing assembly, and the executing assembly is arranged right below the monitoring assembly. The purpose of the execution component is to receive the instruction of the monitoring component and make adaptive adjustment in time, so as to ensure that the cold air in the case is uniform and circulated. The execution assembly comprises a valve body, a valve cover, a valve rod, an execution wheel and an execution belt. The two ends of the valve body are respectively communicated with the outside, and the valve cover is movably assembled at the upper end of the valve body. The valve rod penetrates through the valve cover in the vertical direction and extends into the valve body, and the valve rod is connected with the valve body in a threaded mode. The valve body is internally provided with check blocks in central symmetry, and one ends of the check blocks, which are far away from the valve body, are connected with the valve rod. The execution wheels are arranged on two sides of the valve rod in an axial symmetry manner, the execution wheels are meshed with the valve cover, and the execution wheels are in transmission connection with the screw rod through an execution belt.
Furthermore, the fan cavity comprises fan components, the fan components are arranged in the fan cavity at intervals in the vertical direction, and the fan components are connected with the monitoring component through a linkage mechanism. The purpose of fan unit setting is in order to strengthen the air conditioning of each inside cavity of high in the clouds server machine case and flow, has improved the heat dissipation heat exchange efficiency of quick-witted case greatly. The fan assembly comprises a driving motor, a driving shaft, a driving wheel, a speed changing wheel, a rotating shaft, a rotating fan blade and a driven wheel. The driving motor is fixedly arranged on the inner side wall of the fan cavity, and the driving shaft is assembled with the acting end of the driving motor. The driving wheel and the variable speed wheel are respectively arranged on the driving shaft in a penetrating way, and the variable speed wheels are symmetrically arranged on two sides of the driving wheel, so that the effect of switching different transmission speeds is realized. The rotating shaft is parallel and arranged right above the driving shaft, the rotating fan blades and the driven wheel are respectively arranged on the rotating shaft in a penetrating mode, the rotating fan blades are located at one end, away from the driving motor, of the driven wheel, when the ambient temperatures on the two sides of the air inlet cavity are equal, the driven wheel is meshed with the driving wheel, and when the ambient temperatures on the two sides of the air inlet cavity are different, the driven wheel is meshed with the speed change wheel.
Furthermore, the link gear includes branch, slide rail, slider, elasticity even area, support, telescopic link and compression spring. One end of the supporting rod is sleeved on one side, away from the monitoring cavity, of the screw rod, and the other end of the supporting rod is movably connected with the rotating shaft. The slide rail is fixed on the inside wall of the fan cavity, and the slide block is connected with the slide rail in a sliding manner. The rotating shaft is connected with the sliding block through an elastic connecting belt, and the elastic connecting belt plays a role in ensuring the meshing connection relationship between the driving wheel and the driven wheel and between the variable speed wheel and the driven wheel. The support is located under the slider and with the inside wall fixed connection in fan chamber, the one end of telescopic link links to each other with the slider, the other end of telescopic link links to each other with the support, compression spring wears to locate on the telescopic link.
Further, the supporting rod comprises a first supporting rod, a second supporting rod, a spiral spring and a traction rope. The first supporting rod is sleeved on the screw rod and connected with the screw rod in a threaded mode, one end of the second supporting rod is sleeved on the rotating shaft, and the other end of the second supporting rod penetrates into the first supporting rod from the end, far away from the screw rod, of the first supporting rod and extends inwards. The inner circle of the screw rod sleeved with the first support rod is used as a shaft collar winding device of the volute spring, one end of the volute spring is fixedly connected with the side wall of the inner circle of the first support rod, and the other end of the volute spring is connected with the traction rope. One end of the traction rope, which is far away from the volute spring, is connected with one end of the second supporting rod, which is far away from the rotating shaft.
Further, the fan chamber further comprises a transmission assembly, and the transmission assembly is arranged to transmit and convert the driving force source of the fan into other functions. The transmission assembly comprises a transmission wheel, a transmission belt, a connecting rod, a transmission rack, a rack guide rail and a transmission gear. The transmission wheel is connected to the inner side wall of the fan cavity in a rotating mode, and the transmission wheel is connected with the driving shaft in a transmission mode through a transmission belt. One end of the connecting rod is connected with the eccentric part of the driving wheel, and the other end of the connecting rod is connected with the driving rack. The rack guide rail is fixed on the inner side wall of the fan cavity, the transmission rack is connected with the rack guide rail in a sliding mode, and the transmission gear is meshed and connected with the transmission rack.
Furthermore, clean the mechanism and be connected with drive assembly with chain drive, clean the mechanism and include screw rod, hair roller, support frame, gyro wheel and clean the rack. The screw rods are symmetrically arranged on two sides of the dust separation net in the vertical direction, the screw rods are connected in a transmission mode, and the screw rods are connected with the transmission gear through a chain in a transmission mode. The wool roller is rotationally connected to the supporting frame, the outer circle side wall of the wool roller is in contact with the dust-proof net, and a plurality of furs are arranged on the wool roller and are main parts for cleaning the dust-proof net. One end of the support frame, which is far away from the hair roller, is sleeved on the screw rod and is connected with the screw rod in a threaded manner, and the roller is connected to one side of the support frame, which is far away from the hair roller, in a switching manner and is coaxially connected with the hair roller. The cleaning rack is fixedly arranged in the vertical direction, is positioned on one side of the dust-proof net close to the fan cavity and is meshed and connected with the roller.
Furthermore, the four corners of the bottom of the main frame cavity, the air inlet cavity, the distribution frame cavity, the fan cavity and the air exchange cavity are provided with universal wheels, and the arrangement aims to facilitate the overall movement of the cloud server case, and the assembly, movement, maintenance or expansion of each cavity.
Further, all be equipped with seal structure between chamber, main frame chamber, distribution frame chamber, fan chamber, the chamber of taking a breath, the aim at that sets up makes the high in the clouds server machine case assembly accomplish the back, forms a closed isolation space, conveniently carries out control such as temperature, humidity to the inside of high in the clouds server machine case, has both saved area, can reduce energy loss again.
Compared with the prior art, the invention has the following beneficial effects: the invention discloses a cloud server case with multi-type heat dissipation function,
1. the adjusting mechanism is arranged to monitor the change of the ambient temperature difference value around the main frame cavity in real time and make adaptive adjustment on the sizes of the valve openings of the air inlet cavity and the air exchange cavity, so that the circulation and uniformity of cold air in the case are ensured.
2. The purpose that the link gear set up lies in: firstly, the fan cavity is linked with the air inlet cavity and changes according to the change of the adjusting mechanism, so that the circulation and uniformity of cold air are ensured; secondly, the fan cavity is linked with the ventilation cavity, and the inner components of the fan cavity are adaptively adjusted according to the change of the adjusting mechanism, so that the circulation time of the cold air in the case is prolonged, and the heat dissipation efficiency is effectively improved.
3. The cleaning mechanism is arranged to realize the cleaning function of the dust separation net by taking the fan as the driving force, so as to avoid the dust from accumulating to block meshes and prevent the circulation of cold air from being disturbed, thereby ensuring the heat dissipation efficiency.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic diagram illustrating an internal connection relationship of a cloud server chassis with multiple types of heat dissipation functions according to the present invention;
fig. 2 is a schematic position diagram of an adjusting mechanism of a cloud server chassis with multiple types of heat dissipation functions according to the present invention;
fig. 3 is a schematic diagram illustrating structural connections among various mechanisms of the cloud server chassis with multi-type heat dissipation functions according to the present invention;
fig. 4 is a schematic structural diagram of an execution component of a cloud server chassis with multiple types of heat dissipation functions according to the present invention;
fig. 5 is a first schematic diagram illustrating a working state of a linkage mechanism and a fan assembly of a cloud server chassis with multiple types of heat dissipation functions according to the present invention;
FIG. 6 is a cross-sectional structural view of the strut of FIG. 5 in this state;
fig. 7 is a schematic diagram illustrating a working state of the link mechanism and the fan assembly of the cloud server chassis with multiple types of heat dissipation functions according to the present invention;
FIG. 8 is a cross-sectional structural view of the strut of FIG. 7 in this state;
fig. 9 is a top view of the cleaning mechanism of the cloud server chassis with multi-type heat dissipation function according to the present invention;
in the figure: 1. an adjustment mechanism; 2. the linkage mechanism comprises a linkage mechanism 21, a support rod 211, a first support rod 212, a second support rod 213, a spiral spring 214, a traction rope 22, a sliding rail 23, a sliding block 24, an elastic connecting belt 25, a support frame 26, a telescopic rod 27 and a compression spring; 3. the cleaning mechanism 31, the screw rod 32, the wool roller 33, the support frame 34, the roller 35 and the cleaning rack; 41. the device comprises a monitoring chamber 42, a screw rod 43, a pneumatic block 44, a limiting block 45, a first electric contact sheet 46, a second electric contact sheet 47 and a heat conducting plate; 51. the valve body 52, the valve cover 53, the valve rod 54, the execution wheel 55, the execution belt 56 and the stop block; 61. the device comprises a driving motor 62, a driving shaft 63, a driving wheel 64, a speed changing wheel 65, a rotating shaft 66, rotating fan blades 67 and driven wheels; 71. a transmission wheel 72, a transmission belt 73, a connecting rod 74, a transmission rack 75, a rack guide rail 76 and a transmission gear; 8. a chain; 9. a dust-proof net.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 9, the present invention provides a technical solution: the utility model provides a high in clouds server machine case with polymorphic type heat dissipation function, includes air conditioning cabinet, main frame chamber, air inlet chamber, distribution frame chamber, fan chamber, ventilation chamber, dust separation net 9, the air conditioning cabinet links to each other with the pipeline with the air inlet chamber, main frame chamber, distribution frame chamber, fan chamber, ventilation chamber assemble according to the combination in proper order, inside is equipped with a set of adjustment mechanism 1, ventilation chamber inside is equipped with another set of adjustment mechanism 1, the fan chamber passes through link gear 2 and links to each other with air inlet chamber, ventilation chamber respectively, dust separation net 9 is located the fan chamber and is kept away from one side in air inlet chamber, and one side that dust separation net 9 is close to the fan chamber is equipped with cleans mechanism 3.
The adjusting mechanism 1 comprises monitoring components which are arranged at intervals in the vertical direction and comprise a monitoring chamber 41, a screw rod 42, a pneumatic block 43, a limiting block 44 and a heat conducting plate 47, the monitoring chamber 41 penetrates through the fan cavity in the horizontal direction, the screw rod 42 is arranged inside the monitoring chamber 41 in the horizontal direction, two ends of the screw rod 42 are respectively connected with the monitoring chamber 41 through sealed bearings, one end of the screw rod 42 penetrates through the monitoring chamber 41 and extends to the inside of the fan cavity, the pneumatic block 43 vertically penetrates through the screw rod 42 and is connected with the screw rod 42 in a threaded manner, the limiting blocks 44 are symmetrically arranged on the inner side wall of the monitoring chamber 41, the opposite surfaces of the limiting blocks 44 are respectively provided with a first electric contact sheet 45, the pneumatic block 43 is provided on both sides thereof with first electric contact pads 45 and with second electric contact pads 46, the heat conducting plates 47 are symmetrically and closely attached to the two side walls inside the monitoring chamber 41.
The adjusting mechanism 1 further comprises an executing assembly, the executing assembly is arranged right below the monitoring assembly, the executing assembly comprises a valve body 51, a valve cover 52, a valve rod 53, an executing wheel 54 and an executing belt 55, two ends of the valve body 51 are respectively communicated with the outside, the valve cover 52 is movably assembled at the upper end of the valve body 51, the valve rod 53 penetrates through the valve cover 52 in the vertical direction and extends into the valve body 51, the valve rod 53 is connected with the valve body 51 in a threaded manner, a stop block 56 is symmetrically arranged in the valve body 51 in the center, one end, far away from the valve body 51, of the stop block 56 is connected with the valve rod 53, the executing wheel 54 is symmetrically arranged on two sides of the valve rod 53 in the axial direction, the executing wheel 54 is meshed with the valve cover 52, and the executing wheel 54 is in.
The fan cavity comprises fan components which are arranged in the fan cavity at intervals in the vertical direction, and the fan components are connected with the monitoring component through a linkage mechanism 2; the fan assembly comprises a driving motor 61, a driving shaft 62, a driving wheel 63, a speed change wheel 64, a rotating shaft 65, rotating fan blades 66 and a driven wheel 67, the driving motor 61 is fixedly arranged on the inner side wall of a fan cavity, the driving shaft 62 is assembled with the acting end of the driving motor 61, the driving wheel 63 and the speed change wheel 64 are respectively arranged on the driving shaft 62 in a penetrating mode, the speed change wheel 64 is arranged on two sides of the driving wheel 63 in a symmetrical mode, the rotating shaft 65 is parallel to and arranged right above the driving shaft 62, the rotating fan blades 66 and the driven wheel 67 are respectively arranged on the rotating shaft 65 in a penetrating mode, the rotating fan blades 66 are arranged at one end, far away from the driving motor 61, of the driven wheel 67, and the driving wheel 63 is meshed and connected with the driven wheel.
Link gear 2 includes branch 21, slide rail 22, slider 23, elasticity and takes 24, support 25, telescopic link 26 and compression spring 27 together, lead screw 42 is located to the pot head of branch 21 one side of keeping away from control chamber 41, and the other end and the rotation axis 65 swing joint of branch 21, slide rail 22 is fixed in on the inside wall in fan chamber, slider 23 slides with slide rail 22 and links to each other, rotation axis 65 links to each other through elasticity and takes 24 with slider 23, support 25 locates slider 23 under and with the inside wall fixed connection in fan chamber, the one end of telescopic link 26 links to each other with slider 23, and the other end and the support 25 of telescopic link 26 link to each other, compression spring 27 wears to locate on telescopic link 26.
The support rod 21 comprises a first support rod 211, a second support rod 212, a scroll spring 213 and a traction rope 214, wherein the first support rod 211 is sleeved on the screw rod 42 and is connected with the screw rod 42 in a threaded manner, one end of the second support rod 212 is sleeved on the rotating shaft 65, the other end of the second support rod 212 is penetrated and extends inwards by one end of the first support rod 211 far away from the screw rod 42, the scroll spring 213 is wound by taking the inner circle of the first support rod 211 sleeved on the screw rod 42 as a collar, one end of the scroll spring 213 is fixedly connected with the inner circular side wall of the first support rod 211, the other end of the scroll spring 213 is connected with the traction rope 214, and one end of the traction rope 214 far away from the scroll spring 213 is connected with one end of the second support rod 212 far away from the rotating shaft 65.
The fan cavity further comprises a transmission assembly, the transmission assembly comprises a transmission wheel 71, a transmission belt 72, a connecting rod 73, a transmission rack 74, a rack guide rail 75 and a transmission gear 76, the transmission wheel 71 is connected to the inner side wall of the fan cavity in a switching mode, the transmission wheel 71 is in transmission connection with the driving shaft 62 through the transmission belt 72, one end of the connecting rod 73 is connected with the eccentric position of the transmission wheel 71, the other end of the connecting rod 73 is connected with the transmission rack 74, the rack guide rail 75 is fixed to the inner side wall of the fan cavity, the transmission rack 74 is in sliding connection with the rack guide rail 75, and the transmission gear 76 is meshed with the transmission rack 74.
Cleaning mechanism 3 and drive assembly are connected with the transmission of chain 8, and cleaning mechanism 3 includes screw rod 31, hair roller 32, support frame 33, gyro wheel 34 and cleans rack 35, the both sides of dust-separation net 9 are located with vertical direction symmetry to screw rod 31, and the transmission links to each other between the screw rod 31, and screw rod 31 passes through the transmission of chain 8 with drive gear 76 and links to each other, hair roller 32 switching is on support frame 33, and the excircle lateral wall of hair roller 32 contacts with dust-separation net 9, the one pot head that hair roller 32 was kept away from to support frame 33 is located on screw rod 31 and is met with screw rod 31 with the screw thread form, gyro wheel 34 switching is in one side that hair roller 32 was kept away from to support frame 33 and with hair roller 32 coaxial coupling, clean rack 35 with the fixed setting of vertical direction, clean rack 35 be located one side that dust-separation net 9 is close to the fan chamber and.
The universal wheels are arranged at four corners of the bottom end of the main frame cavity, the air inlet cavity, the distribution frame cavity, the fan cavity and the air exchange cavity, and the universal wheels are arranged to facilitate the overall movement of the cloud server case, the assembly, the movement, the maintenance or the expansion of each cavity and the like.
All be equipped with seal structure between chamber, main frame chamber, distribution frame chamber, fan chamber, the chamber of taking a breath of admitting air, the aim at who sets up makes the high in the clouds server machine case assembly accomplish the back, forms a closed isolation space, conveniently carries out control such as temperature, humidity to the inside of high in the clouds server machine case, has both saved area, can reduce energy loss again.
The working principle of the invention is as follows: 1. the power supply is connected, the cold air box starts to work, cold air enters the cloud server case from the pipeline through the air inlet cavity, sequentially passes through the main frame cavity and the distribution frame cavity, and is finally discharged from the air exchange cavity, so that the heat dissipation effect is achieved;
2. in the process, the driving motor 61 drives the driving shaft 62 to move, the driving wheel 63 rotates along with the driving shaft 62, the driving wheel 63 is meshed with the driven wheel 67, the driven wheel 67 drives the rotating shaft 65 to move, and the rotating shaft 65 drives the rotating fan blades 66 to rotate, so that the function of enhancing the flow of cold air is achieved;
3. the driving shaft 62 simultaneously drives the transmission wheel 71 to rotate through the transmission belt 72, the transmission wheel 71 drives the connecting rod 73 to move, the connecting rod 73 drives the transmission rack 74 to generate relative displacement on the rack guide rail 75, and the transmission gear 76 and the transmission rack 74 perform meshing motion;
the transmission gear 74 drives the screw rod 31 to rotate through the chain 8, the support frame 33 and the screw rod 31 move relatively to drive the wool roller 32 and the roller 34 to generate relative displacement, and the roller 34 and the cleaning rack 35 do meshing motion in the displacement process, so that the wool roller 32 rotates, the dust separation net 9 is cleaned through the process, dust is prevented from being accumulated to block meshes, circulation of cold air is prevented, and heat dissipation efficiency is guaranteed.
The working principle of the adjusting mechanism of the invention is as follows:
1. because the ambient temperatures of the two sides of the air inlet cavity always have a difference value, the adjusting mechanism 1 positioned in the air inlet cavity acts in real time, specifically, the ambient temperatures of the air inlet cavity are respectively transmitted to the inside of the monitoring cavity 41 by the heat conducting plate 47, the air at one end of the monitoring cavity 41 does work due to heat absorption, so that the pneumatic block 43 is pushed to move in the horizontal direction, and the screw rod 42 generates rotary motion due to relative motion with the pneumatic block 43;
2. the screw rod 42 drives the actuating wheel 54 to move through the actuating belt 55, the actuating wheel 54 is respectively engaged with the valve cover 52, and the valve rod 53 moves relative to the valve cover 52 to generate vertical linear displacement, so that one end of the valve rod 53 positioned in the valve body 51 generates relative displacement with the stop block 56, and the effect of controlling the cold air to flow uniformly is achieved;
3. particularly, when the pneumatic block 43 moves to the position of the limit block 44, that is, when the first electrical contact sheet 45 and the second electrical contact sheet 46 are combined with each other, it is indicated that the environmental temperature of the cloud server chassis is abnormal, a dangerous electrical signal is immediately sent to the cloud server, the power supply is cut off, and further damage to each component of the cloud server chassis is avoided;
4. similarly, because the ambient temperature of chamber both sides of taking a breath can appear the difference all the time, be located the inside adjustment mechanism 1 real-time effect in chamber of taking a breath, play the long effect of the air conditioning circulation of control high in the clouds server machine incasement portion.
The working principle of the linkage mechanism of the invention is as follows:
1. the support rod 21 drives the rotating shaft 65, the driven wheel 67 and the rotating fan blades 66 to integrally generate displacement due to the relative movement with the screw rod 42 until the driven wheel 67 and the change wheel 64 are meshed with each other, the torque is changed, the change gear ratio is changed, and therefore the rotating speed adjusting effect of the rotating fan blades 66 is achieved;
2. in the process, under the action of the elastic connecting belt 24, the telescopic rod 26 and the compression spring 27 are adapted to move relatively to the slide rail 22, and in addition, due to the self-characteristics of the spiral spring 213, the winding or releasing action of the spiral spring 213 drives the traction rope 214 to move, so that the relative position between the first support rod 211 and the second support rod 212 is changed, and the meshing connection relationship between the driving wheel 63 and the driven wheel 67 or between the speed change wheel 64 and the driven wheel 67 is ensured.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1.一种具有多类型散热功能的云端服务器机箱,其特征在于:所述云端服务器机箱包括冷气箱、主机架腔、进气腔、配线架腔、风扇腔、换气腔、隔尘网(9),所述冷气箱与进气腔以管道相连,所述进气腔、主机架腔、配线架腔、风扇腔、换气腔按组合依次装配,所述进气腔内部设有一组调节机构(1),所述换气腔内部设有另一组调节机构(1),所述风扇腔通过一组联动机构(2)分别与进气腔、换气腔相连,所述隔尘网(9)设于风扇腔远离进气腔的一侧,隔尘网(9)靠近风扇腔的一侧设有清扫机构(3);1. A cloud server case with multi-type heat dissipation functions, characterized in that: the cloud server case comprises a cold air box, a main rack cavity, an air intake cavity, a wiring rack cavity, a fan cavity, an air exchange cavity, and a dust filter. (9), the cold air box is connected with the air inlet cavity by a pipe, the air inlet cavity, the main frame cavity, the wiring frame cavity, the fan cavity, and the ventilation cavity are assembled in sequence according to the combination, and the air inlet cavity is provided with a A set of adjustment mechanisms (1), another set of adjustment mechanisms (1) are arranged inside the ventilation cavity, and the fan cavity is respectively connected with the air intake cavity and the ventilation cavity through a set of linkage mechanisms (2). The dust screen (9) is arranged on the side of the fan cavity away from the air inlet cavity, and the side of the dust screen (9) close to the fan cavity is provided with a cleaning mechanism (3); 所述调节机构(1)包括监测组件,所述监测组件以竖直方向间隔排布,监测组件包括监控腔室(41)、丝杆(42)、气动块(43)、限位块(44)和导热板(47),所述监控腔室(41)以水平方向贯穿,所述丝杆(42)以水平方向设于监控腔室(41)内部,丝杆(42)的两端分别与监控腔室(41)以密封轴承相连,丝杆(42)的一端穿过监控腔室(41)并延伸至风扇腔内部,所述气动块(43)以竖直穿设于丝杆(42)上并与丝杆(42)以螺纹形式相接,所述限位块(44)以对称形式设于监控腔室(41)的内侧壁上,限位块(44)的相对面分别设有第一电接触片(45),所述气动块(43)的两侧分别对应第一电接触片(45)并设有第二电接触片(46),所述导热板(47)以对称并贴合设于监控腔室(41)内部的两端侧壁上。The adjustment mechanism (1) includes monitoring components, the monitoring components are arranged at intervals in the vertical direction, and the monitoring components include a monitoring chamber (41), a screw (42), a pneumatic block (43), and a limit block (44) ) and a heat-conducting plate (47), the monitoring chamber (41) runs through the monitoring chamber (41) in a horizontal direction, the screw rod (42) is arranged inside the monitoring chamber (41) in a horizontal direction, and the two ends of the screw rod (42) are respectively It is connected with the monitoring chamber (41) by a sealed bearing, one end of the screw rod (42) passes through the monitoring chamber (41) and extends to the inside of the fan chamber, and the pneumatic block (43) is vertically penetrated through the screw rod (43). 42) and connected with the screw rod (42) in the form of threads, the limit block (44) is symmetrically arranged on the inner side wall of the monitoring chamber (41), and the opposite faces of the limit block (44) are respectively A first electrical contact piece (45) is provided, two sides of the pneumatic block (43) correspond to the first electrical contact piece (45) and a second electrical contact piece (46) respectively, and the heat conducting plate (47) It is symmetrical and fitted on the side walls of both ends inside the monitoring chamber (41). 2.根据权利要求1所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述调节机构(1)还包括执行组件,所述执行组件设于监测组件的正下方,执行组件包括阀体(51)、阀盖(52)、阀杆(53)、执行轮(54)和执行带(55),所述阀体(51)的两端分别与外界相连通,所述阀盖(52)活动装配于阀体(51)的上端,所述阀杆(53)以竖直方向穿过阀盖(52)并延伸至阀体(51)内部,阀杆(53)与阀体(51)以螺纹形式相接,所述阀体(51)内部以中心对称设有挡块(56),所述挡块(56)远离阀体(51)的一端与阀杆(53)相接,所述执行轮(54)以轴对称设于阀杆(53)的两侧,执行轮(54)与阀盖(52)啮合相接,执行轮(54)与丝杆(42)通过执行带(55)传动相连。2 . The cloud server chassis with multi-type heat dissipation functions according to claim 1 , wherein the adjustment mechanism ( 1 ) further comprises an execution component, and the execution component is arranged directly below the monitoring component, and executes the operation. 3 . The assembly includes a valve body (51), a valve cover (52), a valve stem (53), an actuator wheel (54) and an actuator belt (55). Both ends of the valve body (51) are communicated with the outside world, respectively. The valve cover (52) is movably assembled on the upper end of the valve body (51), the valve stem (53) passes through the valve cover (52) in a vertical direction and extends to the inside of the valve body (51), and the valve stem (53) is connected to the valve body (51). The valve bodies (51) are connected in the form of threads, and the inside of the valve body (51) is symmetrically provided with a stopper (56) at the center. The end of the stopper (56) away from the valve body (51) is connected to the valve stem (53). ), the actuator wheel (54) is axially symmetrically arranged on both sides of the valve stem (53), the actuator wheel (54) is engaged with the valve cover (52), and the actuator wheel (54) is connected to the screw rod (42). ) are connected by the actuating belt (55). 3.根据权利要求1所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述风扇腔包括风扇组件,所述风扇组件以竖直方向间隔排布于风扇腔内部,风扇组件通过联动机构(2)与监测组件相连;所述风扇组件包括驱动电机(61)、驱动轴(62)、主动轮(63)、变速轮(64)、旋转轴(65)、旋转扇叶(66)和被动轮(67),所述驱动电机(61)固定设于风扇腔的内侧壁上,所述驱动轴(62)与驱动电机(61)的作用端相装配,所述主动轮(63)、变速轮(64)分别穿设于驱动轴(62)上,所述变速轮(64)以对称设于主动轮(63)的两侧,所述旋转轴(65)平行且设于驱动轴(62)的正上方,所述旋转扇叶(66)、被动轮(67)分别穿设于旋转轴(65)上,所述旋转扇叶(66)位于被动轮(67)远离驱动电机(61)的一端,当进气腔两侧的环境温度相等时,所述被动轮(67)与主动轮(63)啮合相接,当进气腔两侧的环境温度出现差值时,所述被动轮(67)与变速轮(64)啮合相接。3 . The cloud server chassis with multiple types of heat dissipation functions according to claim 1 , wherein the fan cavity comprises a fan assembly, the fan assemblies are arranged in the fan cavity at intervals in the vertical direction, and the fan The assembly is connected with the monitoring assembly through a linkage mechanism (2); the fan assembly includes a drive motor (61), a drive shaft (62), a driving wheel (63), a speed change wheel (64), a rotating shaft (65), and a rotating fan blade (66) and a driven wheel (67), the drive motor (61) is fixed on the inner side wall of the fan cavity, the drive shaft (62) is assembled with the action end of the drive motor (61), the drive wheel (63), the speed change wheel (64) is respectively pierced on the drive shaft (62), the speed change wheel (64) is symmetrically arranged on both sides of the driving wheel (63), and the rotation shaft (65) is parallel and set. Just above the drive shaft (62), the rotating fan blade (66) and the driven wheel (67) are respectively pierced on the rotating shaft (65), and the rotating fan blade (66) is located away from the driven wheel (67) At one end of the drive motor (61), when the ambient temperatures on both sides of the intake chamber are equal, the driven wheel (67) meshes with the driving wheel (63), and when there is a difference in ambient temperature on both sides of the intake chamber , the driven wheel (67) is engaged with the transmission wheel (64). 4.根据权利要求3所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述联动机构(2)包括支杆(21)、滑轨(22)、滑块(23)、弹性连带(24)、支架(25)、伸缩杆(26)和压缩弹簧(27),所述支杆(21)的一端套设于丝杆(42)远离监控腔室(41)的一侧,支杆(21)的另一端与旋转轴(65)活动连接,所述滑轨(22)固定于风扇腔的内侧壁上,所述滑块(23)与滑轨(22)滑动相连,所述旋转轴(65)与滑块(23)通过弹性连带(24)相连,所述支架(25)设于滑块(23)的正下方并与风扇腔的内侧壁固定连接,所述伸缩杆(26)的一端与滑块(23)相连,伸缩杆(26)的另一端与支架(25)相连,所述压缩弹簧(27)穿设于伸缩杆(26)上。4. A cloud server chassis with multiple types of heat dissipation functions according to claim 3, characterized in that: the linkage mechanism (2) comprises a support rod (21), a slide rail (22), and a slider (23) , an elastic joint (24), a bracket (25), a telescopic rod (26) and a compression spring (27), one end of the support rod (21) is sleeved on one end of the screw rod (42) away from the monitoring chamber (41) The other end of the support rod (21) is movably connected with the rotating shaft (65), the sliding rail (22) is fixed on the inner side wall of the fan cavity, and the sliding block (23) is slidably connected with the sliding rail (22). , the rotating shaft (65) is connected with the slider (23) through an elastic joint (24). One end of the telescopic rod (26) is connected with the slider (23), the other end of the telescopic rod (26) is connected with the bracket (25), and the compression spring (27) is penetrated on the telescopic rod (26). 5.根据权利要求4所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述支杆(21)包括第一支杆(211)、第二支杆(212)、蜗卷弹簧(213)和牵引绳(214),所述第一支杆(211)套设于丝杆(42)上并与丝杆(42)以螺纹形式相接,所述第二支杆(212)的一端套设于旋转轴(65)上,所述第一支杆(211)远离丝杆(42)的一端由第二支杆(212)的另一端穿入并向内延伸,所述蜗卷弹簧(213)以第一支杆(211)套设于丝杆(42)的内圆为轴环绕设置,蜗卷弹簧(213)的一端与第一支杆(211)的内圆侧壁固定连接,蜗卷弹簧(213)的另一端与牵引绳(214)相连,所述牵引绳(214)远离蜗卷弹簧(213)的一端与第二支杆(212)远离旋转轴(65)的一端相连。5. A cloud server chassis with multiple types of heat dissipation functions according to claim 4, characterized in that: the support rod (21) comprises a first support rod (211), a second support rod (212), a worm A coil spring (213) and a traction rope (214), the first support rod (211) is sleeved on the screw rod (42) and is connected with the screw rod (42) in a threaded form, the second support rod ( One end of 212) is sleeved on the rotating shaft (65), and the end of the first support rod (211) away from the screw rod (42) is penetrated and extended inward by the other end of the second support rod (212). The spiral coil spring (213) is arranged around the inner circle of the first support rod (211) sleeved on the lead screw (42) as an axis, and one end of the coil spring (213) is connected to the inner circle of the first support rod (211). The side wall is fixedly connected, and the other end of the coil spring (213) is connected with the traction rope (214), and the end of the traction rope (214) away from the coil spring (213) is connected with the second support rod (212) away from the rotation shaft ( 65) is connected to one end. 6.根据权利要求3所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述风扇腔还包括传动组件,所述传动组件包括传动轮(71)、传动带(72)、连杆(73)、传动齿条(74)、齿条导轨(75)和传动齿轮(76),所述传动轮(71)转接于风扇腔的内侧壁上,所述传动轮(71)与驱动轴(62)通过传动带(72)传动相连,所述连杆(73)的一端与传动轮(71)的偏心处相连,连杆(73)的另一端与传动齿条(74)相连,所述齿条导轨(75)固定于风扇腔的内侧壁上,所述传动齿条(74)与齿条导轨(75)滑动连接,所述传动齿轮(76)与传动齿条(74)啮合相接。6. A cloud server chassis with multiple types of heat dissipation functions according to claim 3, characterized in that: the fan cavity further comprises a transmission component, and the transmission component comprises a transmission wheel (71), a transmission belt (72), A connecting rod (73), a transmission rack (74), a rack guide rail (75) and a transmission gear (76), the transmission wheel (71) is transferred to the inner side wall of the fan cavity, and the transmission wheel (71) It is connected with the drive shaft (62) through the transmission belt (72), one end of the connecting rod (73) is connected with the eccentric part of the transmission wheel (71), and the other end of the connecting rod (73) is connected with the transmission rack (74) , the rack guide rail (75) is fixed on the inner wall of the fan cavity, the transmission rack (74) is slidably connected with the rack rail (75), and the transmission gear (76) is connected with the transmission rack (74) Engaged. 7.根据权利要求6所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述清扫机构(3)与传动组件以链条(8)传动连接,清扫机构(3)包括螺杆(31)、毛辊(32)、支撑架(33)、滚轮(34)和清扫齿条(35),所述螺杆(31)以竖直方向对称设于隔尘网(9)的两侧,螺杆(31)与传动齿轮(76)通过链条(8)传动相连,螺杆(31)之间传动相连,所述毛辊(32)转接于支撑架(33)上,毛辊(32)的外圆侧壁与隔尘网(9)相接触,所述支撑架(33)远离毛辊(32)的一端套设于螺杆(31)上并与螺杆(31)以螺纹形式相接,所述滚轮(34)转接于支撑架(33)远离毛辊(32)的一侧并与毛辊(32)同轴连接,所述清扫齿条(35)以竖直方向固定设置,清扫齿条(35)位于隔尘网(9)靠近风扇腔的一侧并与滚轮(34)啮合相接。7. The cloud server chassis with multi-type heat dissipation functions according to claim 6, characterized in that: the cleaning mechanism (3) is connected with the transmission assembly by a chain (8) transmission, and the cleaning mechanism (3) comprises a screw (31), hair roller (32), support frame (33), roller (34) and cleaning rack (35), the screw (31) is symmetrically arranged on both sides of the dust screen (9) in the vertical direction , the screw (31) is connected with the transmission gear (76) through the chain (8), the screw (31) is connected by transmission, the hair roller (32) is transferred to the support frame (33), the hair roller (32) The outer circular side wall of the hood is in contact with the dust screen (9), and the end of the support frame (33) away from the hair roller (32) is sleeved on the screw (31) and connected to the screw (31) in the form of a thread, The roller (34) is transferred to the side of the support frame (33) away from the hair roller (32) and is coaxially connected with the hair roller (32). The rack (35) is located on the side of the dust filter (9) close to the fan cavity and is engaged with the roller (34). 8.根据权利要求1所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述主机架腔、进气腔、配线架腔、风扇腔、换气腔的底端四角位置均设有万向轮。8 . The cloud server chassis with multi-type heat dissipation functions according to claim 1 , wherein the bottom four corners of the main rack cavity, the air intake cavity, the wiring rack cavity, the fan cavity, and the ventilation cavity. 9 . All locations are equipped with swivel wheels. 9.根据权利要求1所述的一种具有多类型散热功能的云端服务器机箱,其特征在于:所述进气腔、主机架腔、配线架腔、风扇腔、换气腔之间均设有密封结构。9 . The cloud server chassis with multiple types of heat dissipation functions according to claim 1 , wherein the air intake cavity, the main rack cavity, the wiring rack cavity, the fan cavity, and the ventilation cavity are all provided with 9 . Has a sealed structure.
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