CN114340360A - Terminal heat dissipation equipment with intelligent temperature control function for wind power generation - Google Patents
Terminal heat dissipation equipment with intelligent temperature control function for wind power generation Download PDFInfo
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- CN114340360A CN114340360A CN202210131511.1A CN202210131511A CN114340360A CN 114340360 A CN114340360 A CN 114340360A CN 202210131511 A CN202210131511 A CN 202210131511A CN 114340360 A CN114340360 A CN 114340360A
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Abstract
The invention discloses terminal heat dissipation equipment with an intelligent temperature control function for wind power generation, which comprises a monitoring box, a controller, a temperature sensor, a first motor and a second motor, wherein a closed door is installed at the front end of the monitoring box, the controller is installed on the left side of the top end of the monitoring box, an object placing plate is arranged at the bottom end of the monitoring box, and clamping plates are symmetrically arranged on the left side and the right side of the object placing plate. This terminal heat dissipation equipment for wind power generation with intelligence control by temperature change function, rotation control grip block through the adjusting plate is close to each other, and make grip block contact terminal equipment for wind power generation, because the grip block is "L" column structure setting, can the pressurized rotation after the bottom of grip block and terminal equipment for wind power generation's lateral wall laminating, make the top of grip block and terminal equipment for wind power generation top surface laminating, can realize the location centre gripping to terminal equipment for wind power generation, improve terminal equipment for wind power generation's installation stability.
Description
Technical Field
The invention relates to the technical field of wind power generation, in particular to a terminal heat dissipation device with an intelligent temperature control function for wind power generation.
Background
Wind power generation is to convert wind energy into mechanical energy, it is rotatory under the effect of wind force through the wind wheel, change the kinetic energy of wind into the mechanical energy of wind wheel, along with aerogenerator's power increase, aerogenerator's inside heat is more and more high, for the safety in utilization that guarantees the generator, consequently need use the terminal heat-sink equipment for wind power generation who has intelligent temperature control function, carry out real-time safety monitoring to aerogenerator, but the terminal heat-sink equipment for wind power generation on the market still has following problem at present:
1. the existing terminal heat dissipation equipment for wind power generation is inconvenient for stably fixing the terminal equipment for wind power generation;
2. the conventional terminal heat dissipation equipment for wind power generation is inconvenient for more comprehensively dissipating heat and cooling the terminal equipment for wind power generation, and is inconvenient for preventing the heat dissipation equipment from being blocked due to accumulation of dust on the surface of the heat dissipation equipment, so that heat is accumulated in the heat dissipation equipment, and the terminal heat dissipation equipment does not have an intelligent temperature control function;
3. the conventional terminal heat dissipation equipment for wind power generation is inconvenient for dehumidifying the terminal equipment for wind power generation, so that the terminal equipment for wind power generation cannot normally operate due to the influence of a humid environment.
Aiming at the problems, the innovative design is carried out on the basis of the original terminal heat dissipation equipment for wind power generation.
Disclosure of Invention
The invention aims to provide terminal heat dissipation equipment for wind power generation with an intelligent temperature control function, and aims to solve the problems that the terminal heat dissipation equipment for wind power generation, which is provided in the background art and is common in the market at present, is inconvenient to stably fix the terminal heat dissipation equipment for wind power generation, is inconvenient to more comprehensively dissipate heat of the terminal heat dissipation equipment for wind power generation, is inconvenient to prevent dust from accumulating on the surface of the heat dissipation equipment to cause blockage of the heat dissipation equipment, so that heat accumulates in the heat dissipation equipment, does not have the intelligent temperature control function, is inconvenient to dehumidify the terminal heat dissipation equipment for wind power generation, and causes abnormal operation of the terminal heat dissipation equipment for wind power generation due to the influence of a humid environment.
In order to achieve the purpose, the invention provides the following technical scheme: a terminal heat dissipation device with an intelligent temperature control function for wind power generation comprises a monitoring box, a controller, a temperature sensor, a first motor and a second motor, wherein a closed door is installed at the front end of the monitoring box, an observation plate is arranged inside the closed door, the controller is installed on the left side of the top end of the monitoring box, the temperature sensor is arranged at the bottom end of the controller, an object placing plate is arranged at the bottom end of the monitoring box, a rectangular groove-shaped structure is formed in the object placing plate, an adjusting plate is installed on the periphery of the lower portion of the object placing plate, an adjusting block is installed in the middle of the bottom end of the adjusting plate, an adjusting rod is installed on the right side of the adjusting block, the rear end of the adjusting rod is connected with the first motor, clamping plates are symmetrically arranged on the left side and the right side of the object placing plate, the bottom end of each clamping plate is connected with a connecting rod, and the clamping plates are connected with the clamping blocks through first springs, the right side of the clamping plate is provided with a movable plate, a limiting plate is arranged inside the movable plate, fan blades are arranged in the middle of the top end of the movable plate, a second motor is arranged behind the fan blades, the output end of the second motor is connected with an output block, a connecting band is arranged at the right end of the output block, an action plate is arranged behind the output block, an output rod is connected with the left end of the output block, a guide rod is arranged inside the output rod, the action block is arranged at the left end of the output rod, a mounting plate is arranged on the left side of the action block, a dehumidifying plate is arranged inside the mounting plate, a fixing rod is arranged inside the top end of the mounting plate, a rectangular groove-shaped structure is arranged in the middle of the bottom end of the fixing rod, the fixing rod is connected with the fixing block through a second spring, an eccentric wheel is arranged below the fixing block, and dust-proof plates are arranged at the left end and the right end of the monitoring box, and the interior of the dust guard is of a net-hole structure.
Preferably, the observation plate is connected with the closed door in an embedded manner, and the observation plate is made of transparent glass.
Preferably, the connection mode of putting thing board and monitoring box is the welding, and the connected mode of adjusting plate and putting the thing board is for rotating the connection to put the thing board and run through in the inside of adjusting plate and adjusting block, the adjusting plate is the integration setting with adjusting block fixed connection, and the connected mode of adjusting block and adjusting rod is for the meshing connection, and the adjusting block passes through the adjusting rod and constitutes revolution mechanic.
Preferably, the connecting rod is articulated with the connected mode of grip block and adjusting plate, and the grip block passes through adjusting plate and connecting rod and constitutes horizontal sliding structure to the grip block runs through inside putting the thing board, the connected mode of grip block and grip block is articulated, and the grip block is "L" column structure setting.
Preferably, the limiting plate penetrates through the inside of the movable plate, the limiting plate is symmetrically arranged in front and back of the central axis of the movable plate, and the movable plate forms a lifting structure through the output block and the action plate.
Preferably, the fan blades and the output block form a linkage mechanism through a connecting belt, a curved guide groove is arranged on the circumference of the left end of the output block, and the output block is connected with the action plate in a meshing manner.
Preferably, the output rod passes through the output piece and constitutes horizontal sliding structure in the outside of guide bar, and the inside rectangle groove-shaped structure of having seted up of output rod left end, the guide bar runs through in the inside of output rod, and both sides all closely laminate with the inside rectangle groove-shaped structure inner wall of seting up of output rod around the guide bar.
Preferably, the cross section of the right end of the output rod is in a concave structure, the output rod is connected with the action block in a sticking mode, and the action block is made of elastic rubber.
Preferably, the dehumidification board constitutes with the mounting panel and dismantles the structure, and the mounting panel is the setting of concave character form structure, the dehumidification board is the sponge material.
Preferably, the dead lever is welded with the mounting panel, and the fixed block passes through second spring and dead lever elastic connection, the eccentric wheel is connected for rotating with the connected mode of fixed lever, and is provided with the hole column structure corresponding with the fixed block about the equal angle of the axis inside of eccentric wheel to the fixed block constitutes block structure with the eccentric wheel.
Compared with the prior art, the invention has the beneficial effects that: the terminal heat dissipation equipment for wind power generation with the intelligent temperature control function,
1. the clamping blocks are controlled to be close to each other through rotation of the adjusting plate and are made to contact with the terminal equipment for wind power generation, and the clamping blocks are arranged in an L-shaped structure, so that the clamping blocks can be pressed to rotate after the bottoms of the clamping blocks are attached to the side walls of the terminal equipment for wind power generation, the top ends of the clamping blocks are attached to the top surface of the terminal equipment for wind power generation, positioning and clamping of the terminal equipment for wind power generation can be achieved, and mounting stability of the terminal equipment for wind power generation is improved;
2. the device is provided with an action plate, the temperature in the monitoring box can be monitored through a temperature sensor, a second motor can be started through a controller after the temperature exceeds a set value, the movable plate can drive the fan blades to reciprocate up and down through clockwise or anticlockwise rotation of the output block, so that the more comprehensive heat dissipation of the terminal for wind power generation can be realized, the fan blades and the output block can be driven to rotate in the same direction when the output block rotates clockwise or anticlockwise, the cold and heat circulation of air in the monitoring box can be realized through clockwise or anticlockwise rotation of the fan blades, the heat dissipation of terminal equipment for wind power generation is improved, the output rod can be extruded by a curved guide groove arranged on the surface of the output block while the output block rotates, the output rod can slide left and right in a reciprocating mode, and the action block is driven to continuously impact a dust guard, the dust accumulated on the surface of the dustproof plate is separated, so that the blockage of the dustproof plate due to the accumulation of the dust is prevented, the blockage of heat dissipation is avoided, and the device has the function of intelligent temperature control;
3. be provided with the dehumidification board, the manual eccentric wheel that rotates, make eccentric wheel extrusion dehumidification board, control dehumidification board and dust guard are closely laminated, when the eccentric wheel rotated a position, the fixed block received the extrusion of second spring, make its and the inside hole column structure block corresponding with the fixed block that sets up of eccentric wheel, thereby make the eccentric wheel fixed, and keep the extrusion to the dehumidification board, thereby prevent that outside moisture from flowing into the inside of monitoring box, prevent that terminal equipment for wind power generation from weing and influencing life.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic top view of the cross-sectional structure of the present invention;
FIG. 3 is a schematic front sectional view of the present invention;
FIG. 4 is a schematic view of the bottom connection structure of the adjusting block and the adjusting rod according to the present invention;
FIG. 5 is a schematic perspective view of a clamping plate according to the present invention;
FIG. 6 is a schematic structural view of a clamping block according to the present invention;
FIG. 7 is a schematic diagram of a side view connection structure of the output block and the connection band according to the present invention;
FIG. 8 is a schematic view of a three-dimensional connection structure of an output block and an output rod according to the present invention;
FIG. 9 is a schematic view of the side-view connection structure of the mounting plate and the dehumidifying board according to the present invention;
FIG. 10 is an enlarged view of the structure at A in FIG. 3 according to the present invention.
In the figure: 1. a monitoring box; 2. a closing door; 3. an observation plate; 4. a controller; 5. a temperature sensor; 6. a storage plate; 7. an adjustment plate; 8. an adjusting block; 9. an adjusting lever; 10. a first motor; 11. a clamping plate; 12. a connecting rod; 13. a clamping block; 14. a first spring; 15. a movable plate; 16. a limiting plate; 17. a fan blade; 18. a second motor; 19. an output block; 20. a connecting belt; 21. an action plate; 22. an output rod; 23. a guide bar; 24. an action block; 25. mounting a plate; 26. a dehumidification plate; 27. fixing the rod; 28. an eccentric wheel; 29. a fixed block; 30. a second spring; 31. a dust guard.
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. 1-6, the present invention provides a technical solution: a terminal heat dissipation device with an intelligent temperature control function for wind power generation comprises a monitoring box 1, a controller 4, a temperature sensor 5, a first motor 10 and a second motor 18, wherein in order to fix the terminal device for wind power generation, a closed door 2 is installed at the front end of the monitoring box 1, an observation plate 3 is arranged inside the closed door 2, the observation plate 3 is connected with the closed door 2 in an embedded mode, the observation plate 3 is made of transparent glass, the controller 4 is installed on the left side of the top end of the monitoring box 1, the temperature sensor 5 is arranged at the bottom end of the controller 4, an object placing plate 6 is arranged at the bottom end of the monitoring box 1, a rectangular groove-shaped structure is arranged inside the object placing plate 6, an adjusting plate 7 is installed on the lower peripheral side of the object placing plate 6, an adjusting block 8 is installed in the middle of the bottom end of the adjusting plate 7, an adjusting rod 9 is installed on the right side of the adjusting block 8, the rear end of the adjusting rod 9 is connected with a first motor 10, the connecting mode of the object placing plate 6 and the monitoring box 1 is welding, the connecting mode of the adjusting plate 7 and the object placing plate 6 is rotating connection, the object placing plate 6 penetrates through the adjusting plate 7 and the adjusting block 8, the adjusting plate 7 and the adjusting block 8 are fixedly connected and integrally arranged, the adjusting block 8 and the adjusting rod 9 are connected in a meshing connection mode, the adjusting block 8 forms a rotating structure through the adjusting rod 9, clamping plates 11 are symmetrically arranged on the left side and the right side of the object placing plate 6, the bottom end of the clamping plate 11 is connected with a connecting rod 12, the clamping plate 11 is connected with a clamping block 13 through a first spring 14, the connecting rod 12 is hinged with the clamping plate 11 and the adjusting plate 7, the clamping plate 11 forms a left sliding structure through the adjusting plate 7 and the connecting rod 12, and the clamping plate 11 penetrates through the object placing plate 6, the connected mode of grip block 13 and grip block 11 is articulated, and grip block 13 is "L" column structure and establishes, start first motor 10 control adjusting plate 7 and rotate and drive grip block 11 and be close to each other to make grip block 13 contact terminal equipment for wind power generation, because grip block 13 is "L" column structure and sets up, can the pressurized rotation after the bottom of grip block 13 and terminal equipment for wind power generation's lateral wall laminating, make the top of grip block 13 and terminal equipment for wind power generation top surface laminating, can realize the location centre gripping to terminal equipment for wind power generation.
Referring to fig. 1 to 3, 7 and 8, in order to dissipate heat and cool the terminal equipment for wind power generation, a movable plate 15 is disposed at the right side of a clamping plate 11, a position limiting plate 16 is disposed inside the movable plate 15, fan blades 17 are mounted at the middle portion of the top end of the movable plate 15, a second motor 18 is mounted behind the fan blades 17, an output block 19 is connected to the output end of the second motor 18, a connecting band 20 is disposed at the right end of the output block 19, the position limiting plate 16 penetrates inside the movable plate 15, the position limiting plate 16 is symmetrically disposed front and back about the central axis of the movable plate 15, the movable plate 15 forms a lifting structure by the output block 19 and an action plate 21, an action plate 21 is disposed behind the output block 19, an output rod 22 is connected to the left end of the output block 19, the output rod 22 forms a left-right sliding structure outside a guide rod 23 by the output block 19, and a rectangular groove-shaped structure is disposed inside the left end of the output rod 22, the guide rod 23 penetrates through the output rod 22, the front side and the rear side of the guide rod 23 are tightly attached to the inner wall of the rectangular groove-shaped structure formed in the output rod 22, the guide rod 23 is arranged in the output rod 22, the left end of the output rod 22 is provided with the action block 24, the cross section of the right end of the output rod 22 is arranged in a concave structure, the output rod 22 is connected with the action block 24 in a sticking mode, the action block 24 is made of elastic rubber, clockwise or anticlockwise rotation of the output block 19 can enable the movable plate 15 to drive the fan blades 17 to reciprocate up and down, so that more comprehensive heat dissipation of the wind power generation terminal can be realized, the fan blades 17 and the output block 19 form a linkage mechanism through the connecting belt 20, when the output block 19 rotates clockwise or anticlockwise, the fan blades 17 and the output block 19 can be driven to rotate in the same direction, so that the fan blades 17 or anticlockwise rotation is realized, thereby can realize carrying out the cold and hot circulation to the inside air of monitoring case 1, improve the heat dissipation to terminal equipment for wind power generation, in output piece 19 pivoted, can make output rod 22 receive the extrusion of the curvilinear figure guide way that output piece 19 surfaces were seted up, make output rod 22 carry out reciprocating type horizontal slip, and make the continuous striking dust guard 31 of effect piece 24, make the dust of piling up on dust guard 31 surface break away from, prevent to lead to the dust guard 31 to block up because of piling up of dust, avoid the heat dissipation to be obstructed.
Referring to fig. 2, 3, 9 and 10, in order to protect the terminal device for wind power generation from moisture, a mounting plate 25 is disposed on the left side of the action block 24, a dehumidifying plate 26 is disposed inside the mounting plate 25, a fixing rod 27 is disposed inside the top end of the mounting plate 25, the dehumidifying plate 26 and the mounting plate 25 form a detachable structure, the mounting plate 25 is disposed in a recessed structure, the dehumidifying plate 26 is made of sponge, a rectangular groove-shaped structure is disposed in the middle of the bottom end of the fixing rod 27, the fixing rod 27 is connected to a fixing block 29 through a second spring 30, an eccentric wheel 28 is disposed below the fixing block 29, dust-proof plates 31 are disposed at both left and right ends of the monitoring box 1, the dust-proof plate 31 is in a mesh-hole-shaped structure, the fixing rod 27 is welded to the mounting plate 25, the fixing block 29 is elastically connected to the fixing rod 27 through the second spring 30, the eccentric wheel 28 is rotatably connected to the fixing rod 27, and the inner part of the central axis of the eccentric wheel 28 is equiangularly provided with a hole-shaped structure corresponding to the fixed block 29, and the fixed block 29 and the eccentric wheel 28 form a clamping structure, the eccentric wheel 28 is rotated to control the eccentric wheel 28 to extrude the dehumidifying plate 26, so that the dehumidifying plate 26 and the dust-proof plate 31 are tightly attached, when the eccentric wheel 28 rotates to a certain position, the fixed block 29 is extruded by the second spring 30, so that the fixed block is clamped with the hole-shaped structure which is arranged in the eccentric wheel 28 and corresponds to the fixed block 29, the eccentric wheel 28 is fixed, the extruding of the dehumidifying plate 26 is kept, so that external moisture is prevented from flowing into the monitoring box 1 through the dust-proof plate 31, and the normal operation of the terminal equipment for wind power generation is ensured.
The working principle is as follows: when the terminal heat dissipation equipment for wind power generation with the intelligent temperature control function is used, firstly, the closed door 2 is opened, then the terminal equipment for wind power generation is placed on the object placing plate 6, the first motor 10 is started, the adjusting block 8 meshed and connected with the adjusting rod 9 is controlled to drive the adjusting plate 7 to rotate, as the connecting rod 12 is hinged with the clamping plate 11 and the adjusting plate 7, the monomer clamping plates 11 which are symmetrical left and right about the central axis of the object placing plate 6 can be driven to mutually approach through the rotation of the adjusting plate 7, when the clamping plates 11 approach to each other, the clamping block 13 can be contacted with the terminal equipment for wind power generation, as the clamping block 13 is arranged in an L-shaped structure, after the bottom of the clamping block 13 is attached to the side wall of the terminal equipment for wind power generation, the top end of the clamping block 13 is attached to the top surface of the terminal equipment for wind power generation, so that the terminal equipment for wind power generation can be positioned and clamped efficiently, the installation stability of the terminal equipment for wind power generation is improved;
when the temperature sensor 5 monitors that the temperature of the terminal equipment for wind power generation is too high, the controller 4 can be directly triggered to start the second motor 18, when the second motor 18 is started, the output block 19 can be controlled to rotate clockwise and anticlockwise, when the output block 19 rotates, the movable plate 15 can drive the fan blades 17 to stably and reciprocally lift under the limit of the limit plate 16 through the action plate 21 which is meshed and connected with the action plate 21, so that the expansion of the heat dissipation range can be realized, and because the fan blades 17 and the output block 19 form a linkage mechanism through the connecting belt 20, when the output block 19 rotates clockwise or anticlockwise, the fan blades 17 and the output block 19 can be driven to rotate in the same direction, when the fan blades 17 rotate clockwise, the heat in the monitoring box 1 can be taken out of the monitoring box 1 through the dust-proof plate 31 which is arranged in a net-hole-shaped structure, so as to dissipate the heat of the terminal equipment for wind power generation, when the fan blades 17 rotate anticlockwise, external cold air can be brought into the monitoring box 1, so that the terminal equipment for wind power generation can be cooled;
in order to prevent the unsmooth heat dissipation caused by the accumulation of external dust on the dust guard 31, the output rod 22 can be extruded by a curved guide groove formed in the surface of the output block 19 through the rotation of the output block 19, the output rod 22 can stably drive the action block 24 to slide left and right in a reciprocating manner under the guidance of the guide rod 23, and the action block 24 continuously impacts the dehumidification plate 26 and the dust guard 31 to separate the dust accumulated on the surface of the dust guard 31, so that the dust guard 31 is prevented from being blocked due to the accumulation of the dust, and the circulation of air is improved;
in order to prevent the terminal equipment for wind power generation from being affected by the damp environment and not being able to normally operate, a worker can place the dehumidifying plate 26 inside the mounting plate 25, rotate the eccentric wheel 28, control the eccentric wheel 28 to extrude the dehumidifying plate 26, so that the dehumidifying plate 26 is tightly attached to the dust-proof plate 31, when the eccentric wheel 28 rotates to a certain position, the fixing block 29 is clamped with a hole-shaped structure which is arranged inside the eccentric wheel 28 and corresponds to the fixing block 29 through the extrusion of the second spring 30, so that the eccentric wheel 28 is fixed, thereby preventing external moisture from flowing into the monitoring box 1 through the dust-proof plate 31, and preventing the terminal equipment for wind power generation from being affected by damp to affect the service life.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. The utility model provides a terminal heat dissipation equipment for wind power generation with intelligence control by temperature change function, includes monitoring box (1), controller (4), temperature sensor (5), first motor (10) and second motor (18), its characterized in that: the monitoring box is characterized in that a closed door (2) is installed at the front end of the monitoring box (1), an observation plate (3) is arranged inside the closed door (2), a controller (4) is installed on the left side of the top end of the monitoring box (1), a temperature sensor (5) is arranged at the bottom end of the controller (4), an object placing plate (6) is arranged at the bottom end of the monitoring box (1), a rectangular groove-shaped structure is arranged inside the object placing plate (6), an adjusting plate (7) is installed on the periphery of the lower portion of the object placing plate (6), an adjusting block (8) is installed in the middle of the bottom end of the adjusting plate (7), an adjusting rod (9) is installed on the right side of the adjusting block (8), a first motor (10) is connected to the rear end of the adjusting rod (9), clamping plates (11) are symmetrically arranged on the left side and the right side of the object placing plate (6), and a connecting rod (12) is connected to the bottom end of the clamping plate (11), and the clamping plate (11) is connected with the clamping block (13) through a first spring (14), the right side of the clamping plate (11) is provided with a movable plate (15), a limiting plate (16) is arranged inside the movable plate (15), fan blades (17) are installed in the middle of the top end of the movable plate (15), a second motor (18) is installed behind the fan blades (17), the output end of the second motor (18) is connected with an output block (19), a connecting belt (20) is arranged at the right end of the output block (19), an action plate (21) is arranged behind the output block (19), the left end of the output block (19) is connected with an output rod (22), a guide rod (23) is arranged inside the output rod (22), an action block (24) is installed at the left end of the output rod (22), a mounting plate (25) is arranged at the left side of the action block (24), and the internally mounted of mounting panel (25) has dehumidification board (26) to the top internally mounted of mounting panel (25) has dead lever (27), rectangle groove-like structure has been seted up at the bottom middle part of dead lever (27), and dead lever (27) are connected with fixed block (29) through second spring (30), and the below of fixed block (29) is provided with eccentric wheel (28), dust guard (31) are all installed at both ends about monitoring box (1), and the inside of dust guard (31) is the net hole column structure.
2. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: the observation plate (3) is connected with the closed door (2) in an embedded manner, and the observation plate (3) is made of transparent glass.
3. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: put thing board (6) and monitor box (1) connected mode for the welding, and adjusting plate (7) are connected for rotating with the connected mode of putting thing board (6) to put thing board (6) and run through the inside in adjusting plate (7) and adjusting block (8), adjusting plate (7) are the integration setting with adjusting block (8) fixed connection, and adjusting block (8) are connected for the meshing with the connected mode of adjusting rod (9), and adjusting block (8) pass through adjusting rod (9) and constitute rotating-structure.
4. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: connecting rod (12) are articulated with the connected mode of grip block (11) and adjusting plate (7), and grip block (11) constitute horizontal slip structure through adjusting plate (7) and connecting rod (12) to grip block (11) run through in putting thing board (6) inside, grip block (13) are articulated with the connected mode of grip block (11), and grip block (13) are "L" column structure setting.
5. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: the limiting plates (16) penetrate through the movable plate (15), the limiting plates (16) are symmetrically arranged in front and back of the central axis of the movable plate (15), and the movable plate (15) forms a lifting structure through the output block (19) and the action plate (21).
6. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: the fan blades (17) and the output block (19) form a linkage mechanism through a connecting belt (20), a curved guide groove is arranged on the circumference of the left end of the output block (19), and the output block (19) is connected with the acting plate (21) in a meshing manner.
7. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: output pole (22) constitute horizontal sliding structure in the outside of guide bar (23) through output piece (19), and the inside rectangle groove-shaped structure of having seted up of output pole (22) left end, guide bar (23) run through in the inside of output pole (22), and the front and back both sides of guide bar (23) all closely laminate with the inside rectangle groove-shaped structure inner wall of seting up of output pole (22).
8. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: the cross section of the right end of the output rod (22) is in a concave structure, the output rod (22) is connected with the action block (24) in a sticking mode, and the action block (24) is made of elastic rubber.
9. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: dehumidification board (26) and mounting panel (25) constitute and dismantle the structure, and mounting panel (25) are the setting of type of calligraphy form structure, dehumidification board (26) are the sponge material.
10. The terminal heat dissipation device with the intelligent temperature control function for wind power generation as claimed in claim 1, wherein: the connection mode of dead lever (27) and mounting panel (25) is the welding, and fixed block (29) are through second spring (30) and dead lever (27) elastic connection, eccentric wheel (28) are connected for rotating with the connection mode of dead lever (27), and are provided with the hole column structure corresponding with fixed block (29) about the equal angle in the axis inside of eccentric wheel (28), and fixed block (29) and eccentric wheel (28) constitute the block structure.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202210131511.1A CN114340360A (en) | 2022-02-14 | 2022-02-14 | Terminal heat dissipation equipment with intelligent temperature control function for wind power generation |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202210131511.1A CN114340360A (en) | 2022-02-14 | 2022-02-14 | Terminal heat dissipation equipment with intelligent temperature control function for wind power generation |
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| CN114340360A true CN114340360A (en) | 2022-04-12 |
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| CN202210131511.1A Pending CN114340360A (en) | 2022-02-14 | 2022-02-14 | Terminal heat dissipation equipment with intelligent temperature control function for wind power generation |
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