CN215490567U - Load budget group control device based on unit operating efficiency - Google Patents

Load budget group control device based on unit operating efficiency Download PDF

Info

Publication number
CN215490567U
CN215490567U CN202122340792.5U CN202122340792U CN215490567U CN 215490567 U CN215490567 U CN 215490567U CN 202122340792 U CN202122340792 U CN 202122340792U CN 215490567 U CN215490567 U CN 215490567U
Authority
CN
China
Prior art keywords
switch board
device based
pipe
fixedly connected
control cabinet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202122340792.5U
Other languages
Chinese (zh)
Inventor
李林
闫娜
雷帆
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Haorun Boyuan Beijing Technology Co ltd
Original Assignee
Haorun Boyuan Beijing Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Haorun Boyuan Beijing Technology Co ltd filed Critical Haorun Boyuan Beijing Technology Co ltd
Priority to CN202122340792.5U priority Critical patent/CN215490567U/en
Application granted granted Critical
Publication of CN215490567U publication Critical patent/CN215490567U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Cleaning By Liquid Or Steam (AREA)

Abstract

The utility model discloses a load budget group control device based on unit operation efficiency, which comprises: the control cabinet is used as a bearing foundation of the device, a cabinet door is connected onto the control cabinet, and a control panel is embedded in the cabinet door; the slide, fixed connection be in switch board one side, slide sliding connection is in the slide rail, internal thread pipe female connection has the threaded rod, the terminal fixedly connected with servo motor of threaded rod, servo motor fixed connection is on the hollow tube inner wall. This load budget crowd accuse device based on unit operating efficiency, it grabs the rotation to drive the threaded rod through servo motor, make internal thread pipe push control cabinet along both sides slide rail rebound, thereby the height-adjusting of being convenient for, transfer gear plate to withdraw from or insert from the slot through rotatory toothed disc, and then be convenient for with the heating panel installation or dismantle at logical inslot, through starting the electromagnetic pulse valve, make the air in the gas bag get into the shower nozzle in the twinkling of an eye, and spout, thereby be convenient for clear up the ash floating that is infected with in the switch board.

Description

Load budget group control device based on unit operating efficiency
Technical Field
The utility model relates to the technical field of unit control, in particular to a load budget group control device based on unit operation efficiency.
Background
When a unit is controlled and internal components of the unit work orderly, a load budget group control device, namely a control cabinet, needs to be used, and the existing load budget group control device has certain defects when in use, for example;
for example, the central air conditioning unit group control device based on load prediction of the publication number CN206222606U comprises a cold air generating device, a refrigerating unit and a control cabinet, wherein the left end and the right end of the cold air generating device are respectively provided with a cold air outlet and a fresh air inlet, the refrigerating unit is respectively connected with the cold air generating device and a cooling tower in a sealing way through pipelines, the refrigerating unit is arranged between the cold air generating device and the cooling tower, the cold air generating device and the refrigerating unit are fixedly connected through a frozen water pump and a pipeline, the lower end of the cooling tower is hermetically connected with the right end of the refrigerating unit through a cold water pump and a pipeline, the cold air generating device, the frozen water pump, the refrigerating unit and the cold water pump are respectively electrically connected with the control cabinet through power supply control lines, and a temperature sensor, a humidity sensor and a pressure sensor are sequentially arranged at the left end of the cold air outlet from left to right, so that the intelligent air conditioning system has the advantages of energy conservation, environmental protection and intelligent adjustment;
this prior art solution also presents the following problems when in use:
1. the height of the control cabinet is not convenient to adjust according to the requirement;
2. the heat dissipation plate is inconvenient to mount and dismount;
3. the floating ash in the interior is not convenient to clean;
improvements are needed to address the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a load budget group control device based on unit operation efficiency, and aims to solve the problems that the load budget group control device in the current market proposed by the background technology is inconvenient to adjust the height of a control cabinet according to requirements, install and detach a heat dissipation plate and clean floating ash in the control cabinet.
In order to achieve the purpose, the utility model provides the following technical scheme: a load budget group control device based on unit operation efficiency comprises:
the control cabinet is used as a bearing foundation of the device, a cabinet door is connected to the control cabinet, a control panel is embedded in the cabinet door, a microcomputer is connected in the control cabinet, a through groove is formed in the back of the control cabinet, and a heat dissipation plate is clamped and connected in the through groove;
the slide, fixed connection is in switch board one side, slide sliding connection is in the slide rail, slide rail fixed connection is in the base top, the base sets up in the switch board below, fixedly connected with hollow tube on the base, the block is connected with the internal thread pipe in the hollow tube, internal thread pipe top fixed connection is in the switch board below, internal thread pipe female connection has the threaded rod, the terminal fixedly connected with servo motor of threaded rod, servo motor fixed connection is on the hollow tube inner wall.
Preferably, slide rail, hollow tube, internal thread pipe, threaded rod and servo motor constitute the altitude mixture control structure, and the high sum of internal thread pipe and hollow tube is less than the height of slide rail, grabs the rotation through servo motor drive threaded rod, makes the internal thread pipe promote switch board along both sides slide rail rebound to be convenient for adjust the switch board height.
Preferably, the through groove includes:
the recess is seted up on leading to the inslot wall, fixedly connected with bearing in the recess, fixedly connected with pivot in the bearing, pivot one end fixedly connected with toothed disc, the inboard fixedly connected with torsional spring of toothed disc, torsional spring one end fixed connection is on the bearing, the toothed disc below is connected with the toothed plate, toothed plate below fixedly connected with deflector, the deflector is connected in the spout, the spout is seted up in the recess, toothed plate one end block is connected in the slot, the slot is seted up in heating panel one side, moves the toothed plate through rotatory toothed disc and withdraws from or insert from the slot, and then is convenient for install the heating panel or dismantle at leading to the inslot.
Preferably, the toothed disc is connected with the toothed plate meshing, and deflector and spout sliding connection to the length of toothed plate, deflector and spout equals, makes the toothed plate when removing, can be restricted by the deflector, and then more stable when making the toothed plate remove.
Preferably, the control cabinet comprises:
the snap ring, fixed connection are in on the switch board inner wall, the snap ring intra-annular block is connected with back the venturi tube, it inlays and is equipped with the shower nozzle to return venturi tube one side, the shower nozzle sets up in the switch board, it is connected with the closed tube to return venturi tube top, closed tube one end fixedly connected with electromagnetic pulse valve, electromagnetic pulse valve one end is connected with the gas bag, the gas bag is connected in the switch board top, through starting electromagnetic pulse valve, makes the air in the gas bag get into the shower nozzle in the twinkling of an eye to the blowout to be convenient for clear up the ash on superficial that is infected with in the switch board.
Preferably, the spray head is provided with eight groups in the return pipe, the return pipe and the communicating pipe are made of polyethylene, and the return pipe and the communicating pipe are prevented from contacting with an internal wire to cause electric leakage.
Compared with the prior art, the utility model has the beneficial effects that: this load budget crowd accuse device based on unit operating efficiency, it grabs the rotation to drive the threaded rod through servo motor, make internal thread pipe push control cabinet along both sides slide rail rebound, thereby be convenient for adjust the switch board height, transfer gear plate to withdraw from or insert from the slot through rotatory gear disc, and then be convenient for with the heating panel installation or dismantle at logical inslot, through starting the electromagnetic pulse valve, make the air in the gas bag get into the shower nozzle in the twinkling of an eye, and spout, thereby be convenient for clear up the ash floating that is infected with in the switch board.
1. Firstly, a servo motor is started, the servo motor drives a threaded rod to rotate, the top end of an internal thread pipe is fixedly connected below a control cabinet, and two sides of the control cabinet are in sliding connection with sliding rails on two sides through sliding plates, so that the internal thread pipe cannot rotate along with the rotation of the threaded rod when the threaded rod rotates, but moves upwards along a hollow pipe under the rotation of the threaded rod, and then the control cabinet is pushed to move upwards along the sliding rails on two sides, and the height of the control cabinet is convenient to adjust;
2. firstly, a gear disc is rotated through a bearing and a rotating shaft, the gear disc can twist a torsion spring to deform when rotating, meanwhile, the gear plate is driven to move towards one side through the action of a guide plate and a sliding groove, then a heat dissipation plate is clamped into the through groove, when the heat dissipation plate is completely clamped into the through groove, the slot corresponds to the position of the gear plate, the gear disc is loosened, under the action of the torsion spring, the gear disc is rotated and reset, the gear plate is driven to move, the gear plate is inserted into the slot, the heat dissipation plate is fixed in the through groove, the heat dissipation plate is convenient to install, when the heat dissipation plate needs to be disassembled, the gear disc is rotated again, the gear plate is withdrawn from the slot, the heat dissipation plate can be drawn out of the through groove, and the heat dissipation plate is convenient to disassemble;
3. when the internal floating ash needs to be cleaned, the electromagnetic pulse valve is started, air in the air bag instantly enters the loop pipe along the electromagnetic pulse valve, and respectively enters the eight groups of nozzles along the loop pipe, and the high-pressure air flow is sprayed out through the nozzles to clean the internal floating ash.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the heat dissipation plate of the present invention;
FIG. 3 is a schematic view of the structure of part A of the present invention.
In the figure: 1. a control cabinet; 2. a cabinet door; 3. a control panel; 4. a microcomputer; 5. a slide plate; 6. a slide rail; 7. a hollow tube; 8. an internally threaded tube; 9. a threaded rod; 10. a servo motor; 11. a through groove; 12. a heat dissipation plate; 13. a groove; 14. a bearing; 15. a rotating shaft; 16. a gear plate; 17. a torsion spring; 18. a base; 19. a gear plate; 20. a guide plate; 21. a chute; 22. a snap ring; 23. a pipe is returned; 24. a spray head; 25. a communicating pipe; 26. an electromagnetic pulse valve; 27. air bags; 28. and (4) a slot.
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. 1-3, the present invention provides a technical solution: a load budget group control device based on unit operation efficiency comprises: switch board 1, as the device's the basis of bearing, be connected with cabinet door 2 on the switch board 1, the embedded control panel 3 that is equipped with of cabinet door 2, 1 in-connection of switch board has microcomputer 4, logical groove 11 has been seted up at 1 back of switch board, logical inslot 11 joint has heating panel 12, slide 5, fixed connection is in 1 one side of switch board, 5 sliding connection of slide is in slide 6, 6 fixed connection of slide are in 18 tops of base, base 18 sets up in 1 below of switch board, fixedly connected with hollow tube 7 on the base 18, 7 in-lock connections of hollow tube have internal thread pipe 8, 8 top fixed connection of internal thread pipe are in 1 below of switch board, 8 female connection of internal thread pipe have threaded rod 9, the terminal fixedly connected with servo motor 10 of threaded rod 9, servo motor 10 fixed connection is on 7 inner walls of hollow tube.
Slide 5, slide rail 6, hollow tube 7, internal thread pipe 8, threaded rod 9 and servo motor 10 constitute the altitude mixture control structure, and the high sum of internal thread pipe 8 and hollow tube 7 is less than the height of slide rail 6, drives threaded rod 9 through servo motor 10 and grabs the rotation, makes internal thread pipe 8 promote switch board 1 along 6 rebound of both sides slide rail to be convenient for adjust switch board 1 height.
The through groove 11 includes: recess 13, set up on leading to groove 11 inside wall, fixedly connected with bearing 14 in the recess 13, fixedly connected with pivot 15 in the bearing 14, 15 one end fixedly connected with toothed disc 16 of pivot, 16 inboard fixedly connected with torsional springs 17 of toothed disc, 17 one end fixed connection of torsional springs is on bearing 14, 16 below of toothed disc is connected with toothed plate 19, 19 below fixedly connected with deflector 20 of toothed plate, deflector 20 is connected in spout 21, spout 21 sets up in recess 13, 19 one end block of toothed plate is connected in slot 28, slot 28 sets up in heating panel 12 one side. The gear plate 16 is engaged with the gear plate 19, the guide plate 20 is slidably connected with the sliding groove 21, and the gear plate 19, the guide plate 20 and the sliding groove 21 are equal in length, so that the gear plate 19 is limited by the guide plate 20 when moving, and the gear plate 19 is more stable when moving. The gear plate 19 is moved to be withdrawn from or inserted into the slot 28 by rotating the gear plate 16, thereby facilitating the installation or removal of the heat radiating plate 12 in the through slot 11.
The control cabinet 1 includes: snap ring 22, fixed connection is on 1 inner wall of switch board, and snap joint has back venturi tube 23 in the snap ring 22, and it is equipped with shower nozzle 24 to return venturi tube 23 one side to inlay, and shower nozzle 24 sets up in switch board 1, returns venturi tube 23 top and is connected with closed tube 25, and closed tube 25 one end fixedly connected with electromagnetic pulse valve 26, and electromagnetic pulse valve 26 one end is connected with the gas bag 27, and gas bag 27 is connected in switch board 1 top. Eight groups of spray heads 24 are arranged in the clip-shaped pipe 23, and the clip-shaped pipe 23 and the communicating pipe 25 are made of polyethylene, so that the clip-shaped pipe 23 and the communicating pipe 25 are prevented from contacting with internal wires and the electric leakage phenomenon is avoided. By starting the electromagnetic pulse valve 26, air in the air bag 27 instantly enters the spray head 24 and is sprayed out, so that floating ash in the control cabinet 1 can be cleaned conveniently.
The working principle is as follows: as shown in fig. 1-3, when using the load budget group control device based on the unit operation efficiency, the device is simply known, firstly, the servo motor 10 is started, the servo motor 10 drives the threaded rod 9 to rotate, because the top end of the internal threaded tube 8 is fixedly connected below the control cabinet 1, and both sides of the control cabinet 1 are slidably connected with the slide rails 6 on both sides through the slide plates 5, when the threaded rod 9 rotates, the internal threaded tube 8 does not rotate along with the rotation of the threaded rod 9, but moves upwards along the hollow tube 7 under the rotation of the threaded rod 9, and further pushes the control cabinet 1 to move upwards along the slide rails 6 on both sides, thereby facilitating the adjustment of the height of the control cabinet 1, secondly, the gear disc 16 rotates through the bearing 14 and the rotating shaft 15, the gear disc 16 twists the torsion spring 17 to deform during the rotation, and simultaneously, through the action of the guide plate 20 and the slide groove 21, the gear plate 19 is driven to move towards one side, then the heat dissipation plate 12 is clamped into the through groove 11, when the heat dissipation plate 12 is completely clamped into the through groove 11, the slot 28 corresponds to the gear plate 19, the gear plate 16 is loosened, the gear plate 16 is rotated and reset under the action of the torsion spring 17, the gear plate 19 is driven to move, the gear plate 19 is inserted into the slot 28, the heat dissipation plate 12 is fixed in the through groove 11, the heat dissipation plate 12 is convenient to mount, when the heat dissipation plate 12 needs to be dismounted, the gear plate 16 is rotated again, the gear plate 19 is withdrawn from the slot 28, the heat dissipation plate 12 can be drawn out from the through groove 11, the heat dissipation plate 12 is convenient to dismount, then when the internal floating ash needs to be cleaned, the electromagnetic pulse valve 26 is started, the air in the air bag 27 instantly enters the return pipe 23 along the electromagnetic pulse valve 26, and respectively enters the eight groups of spray heads 24 along the return pipe 23, and high-pressure air flow is sprayed out through the spray heads 24, the cleaning of the internal fly ash, which is not described in detail in this description, is well within the skill of the art.
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 various changes in the embodiments and modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.

Claims (6)

1. A load budget group control device based on unit operation efficiency is characterized by comprising:
the intelligent control cabinet comprises a control cabinet (1), wherein a cabinet door (2) is connected to the control cabinet (1), a control panel (3) is embedded in the cabinet door (2), a microcomputer (4) is connected in the control cabinet (1), a through groove (11) is formed in the back of the control cabinet (1), and a heat dissipation plate (12) is connected in the through groove (11) in a clamping manner;
slide (5), fixed connection be in switch board (1) one side, slide (5) sliding connection is in slide rail (6), slide rail (6) fixed connection is in base (18) top, base (18) set up in switch board (1) below, fixedly connected with hollow tube (7) on base (18), joint is connected with internal thread pipe (8) in hollow tube (7), internal thread pipe (8) top fixed connection is in switch board (1) below, internal thread pipe (8) female connection has threaded rod (9), threaded rod (9) terminal fixedly connected with servo motor (10), servo motor (10) fixed connection is on hollow tube (7) inner wall.
2. The load budget group control device based on the unit operation efficiency according to claim 1, wherein: the height adjusting mechanism comprises a sliding plate (5), a sliding rail (6), a hollow pipe (7), an internal threaded pipe (8), a threaded rod (9) and a servo motor (10), wherein the sum of the heights of the internal threaded pipe (8) and the hollow pipe (7) is smaller than the height of the sliding rail (6).
3. The load budget group control device based on the unit operation efficiency according to claim 1, wherein: the through groove (11) comprises:
recess (13), set up on leading to groove (11) inside wall, fixedly connected with bearing (14) in recess (13), fixedly connected with pivot (15) in bearing (14), pivot (15) one end fixedly connected with toothed disc (16), toothed disc (16) inboard fixedly connected with torsional spring (17), torsional spring (17) one end fixed connection is on bearing (14), toothed disc (16) below is connected with toothed plate (19), toothed plate (19) below fixedly connected with deflector (20), deflector (20) are connected in spout (21), spout (21) are set up in recess (13), toothed plate (19) one end block is connected in slot (28), slot (28) are set up in heating panel (12) one side.
4. The load budget group control device based on the unit operation efficiency according to claim 3, wherein: the gear disc (16) is meshed with the gear plate (19), the guide plate (20) is connected with the sliding groove (21) in a sliding mode, and the gear plate (19), the guide plate (20) and the sliding groove (21) are equal in length.
5. The load budget group control device based on the unit operation efficiency according to claim 1, wherein: the control cabinet (1) comprises:
snap ring (22), fixed connection are in on switch board (1) inner wall, snap ring (22) interior joint is connected with return venturi tube (23), return venturi tube (23) one side and inlay and be equipped with shower nozzle (24), shower nozzle (24) set up in switch board (1), return venturi tube (23) top and be connected with communicating pipe (25), communicating pipe (25) one end fixedly connected with electromagnetic pulse valve (26), electromagnetic pulse valve (26) one end is connected with air pocket (27), air pocket (27) are connected in switch board (1) top.
6. The load budget group control device based on the unit operation efficiency according to claim 5, wherein: eight groups of spray heads (24) are arranged in the return pipe (23), and the return pipe (23) and the communicating pipe (25) are made of polyethylene.
CN202122340792.5U 2021-09-27 2021-09-27 Load budget group control device based on unit operating efficiency Active CN215490567U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122340792.5U CN215490567U (en) 2021-09-27 2021-09-27 Load budget group control device based on unit operating efficiency

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122340792.5U CN215490567U (en) 2021-09-27 2021-09-27 Load budget group control device based on unit operating efficiency

Publications (1)

Publication Number Publication Date
CN215490567U true CN215490567U (en) 2022-01-11

Family

ID=79770123

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122340792.5U Active CN215490567U (en) 2021-09-27 2021-09-27 Load budget group control device based on unit operating efficiency

Country Status (1)

Country Link
CN (1) CN215490567U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114423206A (en) * 2022-02-09 2022-04-29 东营市宇彤机电设备有限责任公司 Near-bit high-stability transmitting antenna tuning device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114423206A (en) * 2022-02-09 2022-04-29 东营市宇彤机电设备有限责任公司 Near-bit high-stability transmitting antenna tuning device
CN114423206B (en) * 2022-02-09 2024-02-02 东营市宇彤机电设备有限责任公司 Near-bit high-stability transmitting antenna tuning device

Similar Documents

Publication Publication Date Title
CN215490567U (en) Load budget group control device based on unit operating efficiency
CN112018639A (en) Switchboard capable of adjusting size of heat dissipation hole based on principle of thermal expansion and cold contraction
CN206959369U (en) A kind of solar thermal collector
CN111595022B (en) Air energy water heater
CN113983688A (en) Novel heat recovery type high-energy-efficiency air source heat pump water heater
CN220017681U (en) Central air conditioner energy-saving device
CN209233273U (en) A kind of environmental protection power distribution cabinet
CN107238201A (en) A kind of air-source water heater for being provided simultaneously with storage tank and water tank
CN109253519B (en) Humidifier for energy conservation of air conditioner
CN107560228A (en) One kind scanning defrosting formula air-source gas-fired heat pump
CN113623772B (en) Energy-conserving central air conditioning convenient to installation
CN115371031A (en) Waste heat recovery type heat exchanger and use method thereof
CN109682118B (en) Industrial ultra-high temperature heat pump unit
CN207050222U (en) A kind of air-source water heater for being provided simultaneously with storage tank and water tank
CN221444876U (en) Water supplementing device of condenser
CN112728786A (en) Solar heat collection power generation light-gathering point adjusting device
CN216757540U (en) Dust removal device of water chilling unit
CN220952166U (en) Electroplating cold-hot full-effect unit for circuit board
CN216048421U (en) Constant-heat insulation equipment for space energy green constant-heat station
CN220818703U (en) Defrosting device for air bath vaporizer
CN109442789A (en) Heat source tower heat pump combined air-conditioning system
CN219977218U (en) Cleaning device of heat exchanger
CN113206631B (en) Energy-saving device of refrigeration equipment
CN220829107U (en) Cooling tower with permanent magnet direct drive motor
CN219244337U (en) Continuous bending forming heat exchanger

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant