CN113395848B - Terminal control equipment for computer network equipment - Google Patents

Terminal control equipment for computer network equipment Download PDF

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Publication number
CN113395848B
CN113395848B CN202110081983.6A CN202110081983A CN113395848B CN 113395848 B CN113395848 B CN 113395848B CN 202110081983 A CN202110081983 A CN 202110081983A CN 113395848 B CN113395848 B CN 113395848B
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dustproof cloth
plate
cooling
dustproof
groove
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CN113395848A (en
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宋维明
宋林书
王浩
杨超
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Beijing Forestry University
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Beijing Forestry University
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0052Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with filtering elements moving during filtering operation
    • B01D46/0053Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with filtering elements moving during filtering operation with vibrating filtering elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/10Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K5/00Casings, cabinets or drawers for electric apparatus
    • H05K5/02Details
    • H05K5/0217Mechanical details of casings

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The invention belongs to the technical field of computer control equipment, in particular to terminal control equipment of computer network equipment, which comprises a working unit, a cooling unit and a dustproof unit, wherein the working unit comprises an equipment body, a protective shell, a supporting plate, a circuit socket and a control screen; according to the invention, the cooling unit and the dustproof unit are arranged on the control equipment, and the control equipment enables the cooling fan to start to generate cooling air to act on a circuit inside the equipment by executing a market integrated measuring and calculating program written by python, so that the inside of the control equipment is timely radiated; and the cooling wind flowing upwards blows the second dustproof cloth in the first ventilating groove on the cooling cover, so that the second dustproof cloth swings under pressure, the gap between the second dustproof cloth is increased, heat dissipation is facilitated, dust attached to the second dustproof cloth is removed, and the terminal control equipment can normally run a market integration measuring and calculating program written by python.

Description

Terminal control equipment for computer network equipment
Technical Field
The invention belongs to the technical field of computer control equipment, and particularly relates to terminal control equipment of computer network equipment.
Background
Network devices and components are physical entities connected into a network. The variety of network devices is great and increasing. The basic network devices are: computers (whether personal computers or servers), hubs, switches, bridges, routers, gateways, Network Interface Cards (NICs), Wireless Access Points (WAPs), printers and modems, fiber optic transceivers, fiber optic cables, and the like. Almost all network devices with network management possess a large number of display commands. The display command can directly acquire detailed information of the network device, such as: configuration, interface, etc. When the script program is operated, the terminal control equipment can open different virtual serial ports through the operation program to be connected to control consoles of different equipment, so that the automatic operation of the terminal control equipment can be realized, and various equipment managed by the terminal control equipment can be automatically operated; usually, a network maintenance person can input a market integration measuring and calculating program written by python into the terminal control device, so that the terminal control device automatically operates and controls various managed devices, and executes commands written by the market integration measuring and calculating program.
In the process of automatically operating the market integrated measuring and calculating program, the control circuit in the terminal control equipment often generates a large amount of heat, so that the control equipment is often provided with a heat dissipation groove; however, a large amount of dust is scattered in the air, and static electricity is easily generated inside the control equipment to attract the dust during operation; therefore, in the working process of the terminal control equipment, dust in the outside air easily enters the control equipment through the heat dissipation groove, and on one hand, the dust is easily attached to a circuit and causes short-circuit failure; on the other hand, dust is attached to the heat dissipation groove to influence the air permeability of the heat dissipation groove, so that the inside of the control device is difficult to effectively dissipate heat, and the terminal control device is difficult to normally run an automatic market integration measuring and calculating program written by python.
In view of the above, the cooling unit and the dustproof unit are arranged on the control device, and the control device starts the cooling fan to generate cooling air to act on a circuit inside the device by executing an automatic market integration measuring and calculating program written by python, so that the inside of the control device is timely radiated; and the cooling wind flowing upwards blows the second dustproof cloth in the first ventilating groove on the cooling cover, so that the second dustproof cloth swings under pressure, the gap between the second dustproof cloth is increased, heat dissipation is facilitated, dust attached to the second dustproof cloth is removed, and the terminal control equipment can normally run a market integration measuring and calculating program written by python.
Disclosure of Invention
In order to make up the defects of the prior art, the problem that dust in the outside air easily enters the control equipment through the heat dissipation groove and causes short-circuit faults in the operation process of the conventional network equipment terminal control equipment is solved; dust is attached to the heat dissipation groove to influence the air permeability of the heat dissipation groove, so that the network equipment terminal control equipment is difficult to work normally; the invention provides a terminal control device of computer network equipment.
The technical scheme adopted by the invention for solving the technical problems is as follows: the invention relates to a computer network equipment terminal control device, which comprises a working unit, a cooling unit and a dustproof unit, wherein the working unit comprises an equipment body, a protective shell, a supporting plate, a circuit socket and a control screen, the protective shell is arranged on the outer surface of the equipment body and used for protecting circuit equipment in the equipment body, the supporting plate is symmetrically arranged on the bottom surface of the protective shell, the circuit sockets are uniformly arranged on the outer surface of the protective shell, and the circuit sockets are connected with circuits in the equipment body; the control screen is arranged on the surface of the protective shell and used for controlling the work of the equipment body;
the cooling unit comprises a temperature sensor, a cooling cover, a cooling fan, a first ventilation groove, a second ventilation groove and a third ventilation groove, the temperature sensor is installed inside the equipment body, the cooling cover is installed on the top of the protective shell, the cooling fan is uniformly arranged inside the cooling cover, and the cooling fan is controlled by the control screen; the top of the cooling cover is uniformly provided with a first ventilating groove, the top of the protection shell is uniformly provided with a second ventilating groove, and the part of the bottom of the protection shell between the support plates is uniformly provided with a third ventilating groove;
the dustproof unit comprises a first dustproof cloth, a second dustproof cloth and a first elastic rope, the first dustproof cloth is arranged on the side wall of the supporting plate, and the first dustproof cloth is detachably connected with the supporting plate; the second dustproof cloth is symmetrically arranged on the side wall of the first ventilating groove; the ends of the second dustproof cloth which are symmetrically arranged are contacted with each other and are connected through a first elastic rope which is uniformly arranged at the end of the second dustproof cloth.
When the terminal control device works, the device body of the terminal control device starts to run a market integration measuring and calculating program written by python, and heat generated by a control circuit in the device body flows out of the second ventilation groove along with air and flows to the outside through the first ventilation groove on the cooling cover, so that the temperature of the device body is effectively controlled, and the normal work of the terminal control device is ensured; the external dust is blocked by the first dustproof cloth and the second dustproof cloth, so that the dust in the air is difficult to enter the protective shell, the cleanness of the interior of the protective shell is guaranteed, and the normal work of the equipment body is further guaranteed; when the terminal control equipment runs the market integrated measuring and calculating program for a long time in hot days, a large amount of heat accumulated inside the equipment body is difficult to dissipate in time, and the temperature inside the equipment body is overhigh; the temperature sensor detects that the temperature inside the equipment body is too high, and transmits temperature information to the control screen in time, the control screen gives an alarm to maintenance personnel on one hand, and the cooling fan is started automatically according to a program command on the other hand, so that the cooling fan acts on the inside of the equipment body; the started cooling fan acts on the inside of the cooling cover, so that air in the cooling cover is subjected to upward flowing force and flows out of a first ventilation groove at the top of the cooling cover; meanwhile, air below the supporting plate flows in from the third ventilating groove between the supporting plates under pressure due to the reduction of the air pressure in the protective shell and flows into the cooling cover through the gap between the equipment bodies, so that continuous upward flowing cooling air is formed in the protective shell, heat generated by the internal work of the equipment bodies is dissipated in time, and the influence of the internal work of the equipment bodies on the normal work of the control terminal due to the fault caused by overheating is avoided; the air flowing into the protective shell is filtered by the first dustproof cloth on the supporting plate, so that the dust flowing into the air is removed under the action of obstruction, and the cleanness of the interior of the equipment body is ensured; when cooling air flows out, the second dustproof cloth in the first ventilating groove is impacted, on one hand, the first elastic rope between the second dustproof cloth is stressed to extend, so that the gap between the end parts of the second dustproof cloth is increased, cooling air flows out favorably, and heat dissipation in the equipment body is accelerated; on the other hand, the second dustproof cloth vibrates violently under the impact action of the cooling air, so that dust attached to the second dustproof cloth is effectively removed, and the normal work of the second dustproof cloth is guaranteed; in addition, when more dust is accumulated on the dustproof cloth, a maintainer can replace the dustproof cloth and clean the dust on the dustproof cloth, so that the dustproof cloth can normally play a role, and the terminal control equipment can normally run a market integration measuring and calculating program written by python.
Preferably, a first groove is uniformly formed in the side wall of the first ventilating groove below the second dustproof cloth, and the end of the first groove is inclined upwards; a first pressing plate is embedded in the first groove and connected with the inner surface of the first groove through a spring, a driving plate is arranged in the middle of the first pressing plate, the surface of the driving plate is parallel to the top surface of the cooling cover, and a first plate is arranged on the lower surface of the second dustproof cloth and the position corresponding to the end part of the first pressing plate; when the driving plate on one plate is impacted by cooling wind flowing upwards, the driving plate is pressed upwards, and therefore the one plate slides along the one groove under the action of the driving plate; because the end part of the first groove is inclined upwards, the end part of the first plate slides upwards and extrudes the first plate on the lower surface of the second dustproof cloth, so that the first plate is pressed and drives the second dustproof cloth to rotate upwards; therefore, the gap between the ends of the second dustproof cloth symmetrically arranged in the first ventilating groove is further increased, and cooling air can more smoothly pass through the first ventilating groove to accelerate the cooling of the equipment body; and the swing range of the second dustproof cloth is increased under the pushing action of the first pressing plate, so that the dust attached to the second dustproof cloth is further removed under the violent swing, the air permeability reduced by the overlarge dust attached to the second dustproof cloth is avoided, and the heat dissipation of the protective shell is influenced.
Preferably, the joint between the first pressure plate and the driving plate is made of an elastic material, and the driving plate is positioned on one side, close to the cooling fan, of the first pressure plate; when the driving plate is pressed to rotate upwards when being blown by cooling wind, the first plate is further pressed and drives the second dustproof cloth to rotate upwards; when the device works, when the driving plate is pressed under the action of cooling air, because the joint part of the first pressing plate and the driving plate is made of elastic materials, the driving plate is pressed and drives the joint part of the first pressing plate and the driving plate to deform, so that the parts, above the driving plate, of the driving plate and the first pressing plate rotate upwards, the first plate on the second dustproof cloth is further pressed and swung, the gap between the end parts of the second dustproof cloth is increased, and the cooling of the device body is accelerated; and the end part of the first pressing plate is contacted with the first plate and simultaneously swings under the action of the driving plate, so that the first plate drives the second dustproof cloth to further swing, and the dust on the second dustproof cloth is removed more thoroughly.
Preferably, the lower surface of the first plate is uniformly provided with anti-skid grooves, the end part of the first pressing plate is arc-shaped, and the width of the end part of the first pressing plate is greater than that of the anti-skid grooves; under the action of the anti-slip groove, the first pressing plate drives the second dustproof cloth to vibrate and remove dust attached to the second dustproof cloth; when the pressure plate moves upwards under the action of the driving plate and is in contact with the lower surface of a first plate, the end part of the first pressure plate slides on the lower surface of the first plate; because the width of a clamp plate tip is greater than the width in antiskid groove, consequently gliding clamp plate tip is pressed rapidly after embedding antiskid groove and is broken away from antiskid groove, at the in-process of a clamp plate tip and the contact of antiskid inslot surface, antiskid groove pressurized drives a board and violently vibrates, make the adnexed dust break away from No. two dustproof cloths under the vibration, and receive the cooling air effect and keep away from a ventilation duct, the dust on No. two dustproof cloths has been reduced, the gas permeability of No. two dustproof cloths has been guaranteed.
Preferably, the second dustproof cloth is arranged in a double-layer mode, and the double-layer second dustproof cloth is connected through the end portion; a second elastic rope is arranged in a gap between the two layers of second dustproof cloth, a second plate is uniformly arranged on the second elastic rope, the end part of the second elastic rope penetrates through the second dustproof cloth and is connected with the end part of the first elastic rope, and a limiting block is arranged at the part, close to the end part, of the second elastic rope; when the cooling fan works, the second dustproof cloth is arranged in a double-layer mode, so that when the cooling fan is not started, the filtering effect of the second dustproof cloth on inflowing air is enhanced, and dust attached to the air flowing into the protective shell is removed more thoroughly; when the cooling fan is started, the second dustproof cloth is subjected to the blowing action of cooling air and the extrusion action of the first pressing plate, so that the first elastic rope between the second dustproof cloth is stretched in a tensile mode, the second elastic rope in a gap between the double layers of the second dustproof cloth is stretched simultaneously when being pulled by the first elastic rope, the stretched second elastic rope pulls the second dustproof cloth through the limiting block, the end portion of the double layers of the second dustproof cloth is vibrated in a tensile mode, the wrinkles on the surface of the second dustproof cloth tend to be flat under the pulling action, and dust is prevented from being attached between the wrinkles of the second dustproof cloth and being difficult to remove; and drive No. two boards and slide when No. two elastic cord elongates to act on No. two dustproof cloth internal surfaces, further eliminate the fold on No. two dustproof cloth.
Preferably, conical blocks are uniformly arranged on the upper surface of the second plate, and the end parts of the conical blocks are in close contact with second dustproof cloth positioned on the upper side; the second plate is pulled to slide in a gap between the two layers of second dustproof cloth by the compression of the second elastic rope, so that dust attached to the second dustproof cloth positioned on the upper side is further removed; when the double-layer second dustproof cloth works, the dustproof cloth close to the upper side is closer to the outside, so when the outside air flows in, the second dustproof cloth close to the upper side is firstly contacted with the air and filters out dust in the air, and more dust is attached to the second dustproof cloth close to the upper side; and when No. two boards slided along with No. two elastic cord, the toper piece tip that No. two board upper surfaces evenly set up and No. two dustproof cloth internal surface contact of upside for frictional force between No. two board upper surfaces and the No. two dustproof cloth internal surfaces of upside increase, consequently drive the violent vibration of No. two dustproof cloth of upside when No. two boards slide, make the dust that is located on No. two dustproof cloth of upside clear away more thoroughly.
The invention has the following beneficial effects:
1. according to the terminal control device of the computer network equipment, the cooling unit and the dustproof unit are arranged on the control device, and the control device enables the cooling fan to be started to generate cooling air to act on a circuit inside the device by executing an automatic market integration measuring and calculating program written by python, so that the inside of the control device is timely radiated; and the cooling wind flowing upwards blows the second dustproof cloth in the first ventilating groove on the cooling cover, so that the second dustproof cloth swings under pressure, the gap between the second dustproof cloth is increased, heat dissipation is facilitated, dust attached to the second dustproof cloth is removed, and the terminal control equipment can normally run a market integration measuring and calculating program written by python.
2. According to the computer network equipment terminal control equipment, the first groove is uniformly formed in the part, located below the second dustproof cloth, of the side wall of the first ventilating groove, the first pressing plate is embedded in the first groove, when a driving plate on the first plate is impacted by cooling air flowing upwards, the first plate slides along the first groove under the action of the driving plate and extrudes the first plate on the lower surface of the second dustproof cloth, so that gaps between the ends of the second dustproof cloth symmetrically arranged in the first ventilating groove are further increased, and the cooling of an equipment body is accelerated; and dust attached to the second dustproof cloth is further removed under the violent swing.
Drawings
The invention will be further explained with reference to the drawings.
FIG. 1 is a perspective view of the present invention;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is an enlarged view of a portion of FIG. 1 at B;
FIG. 4 is an enlarged view of a portion of FIG. 3 at C;
FIG. 5 is an enlarged view of a portion of FIG. 3 at D;
FIG. 6 is a partial enlarged view at E in FIG. 4;
in the figure: work unit 1, protective housing 11, backup pad 12, circuit socket 13, control screen 14, cooling unit 2, cooling jacket 21, cooling fan 22, No. one ventilation groove 23, No. two ventilation grooves 24, No. three ventilation groove 241, dustproof unit 3, No. one dustproof cloth 31, No. two dustproof cloth 32, No. one board 321, antiskid groove 322, No. two elastic rope 323, No. two board 324, stopper 325, toper piece 326, No. one elastic rope 33, No. one groove 34, a clamp plate 35, drive plate 351.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
As shown in fig. 1 to 6, the terminal control device for computer network equipment according to the present invention includes a working unit 1, a cooling unit 2 and a dustproof unit 3, where the working unit 1 includes an equipment body, a protective casing 11, a supporting plate 12, circuit sockets 13 and a control screen 14, the protective casing 11 is installed on an outer surface of the equipment body to protect circuit equipment inside the equipment body, the supporting plate 12 is symmetrically installed on a bottom surface of the protective casing 11, the circuit sockets 13 are uniformly installed on an outer surface of the protective casing 11, and the circuit sockets 13 are connected to circuits inside the equipment body; the control screen 14 is arranged on the surface of the protective shell 11 and used for controlling the work of the equipment body;
the cooling unit 2 comprises a temperature sensor, a cooling cover 21, a cooling fan 22, a first ventilating groove 23, a second ventilating groove 24 and a third ventilating groove 241, the temperature sensor is installed inside the equipment body, the cooling cover 21 is installed on the top of the protective shell 11, the cooling fan 22 is evenly arranged inside the cooling cover 21, and the cooling fan 22 is controlled by the control screen 14; a first ventilating groove 23 is uniformly formed in the top of the cooling cover 21, a second ventilating groove 24 is uniformly formed in the top of the protective shell 11, and a third ventilating groove 241 is uniformly formed in the bottom of the protective shell 11 between the support plates 12;
the dustproof unit 3 comprises a first dustproof cloth 31, a second dustproof cloth 32 and a first elastic rope 33, the first dustproof cloth 31 is installed on the side wall of the support plate 12, and the first dustproof cloth 31 is detachably connected with the support plate 12; the second dustproof cloth 32 is symmetrically arranged on the side wall of the first ventilating groove 23; the ends of the second dustproof cloth 32 which are symmetrically arranged are contacted with each other and are connected through a first elastic rope 33 which is uniformly arranged at the end of the second dustproof cloth 32.
When the terminal control device works, the device body of the terminal control device starts to run a market integration measuring and calculating program written by python, and heat generated by a control circuit in the device body flows out of the second ventilating slot 24 along with air and flows to the outside through the first ventilating slot 23 on the cooling cover 21, so that the temperature of the device body is effectively controlled, and the normal work of the terminal control device is ensured; moreover, the external dust is blocked by the first dustproof cloth 31 and the second dustproof cloth 32, so that the dust in the air is difficult to enter the protective shell 11, the cleanness inside the protective shell 11 is ensured, and the normal work of the equipment body is further ensured; when the terminal control equipment runs the market integrated measuring and calculating program for a long time in hot days, a large amount of heat accumulated inside the equipment body is difficult to dissipate in time, and the temperature inside the equipment body is overhigh; at the moment, the temperature sensor detects that the internal temperature of the equipment body is too high, and transmits temperature information to the control screen 14 in time, the control screen 14 gives an alarm to maintenance personnel on one hand, and on the other hand, the cooling fan 22 is started automatically according to a program command, so that the cooling fan 22 acts on the internal part of the equipment body; the started cooling fan 22 acts on the inside of the cooling cover 21, so that air in the cooling cover 21 is subjected to upward flowing force and flows out from a first ventilation groove 23 at the top of the cooling cover 21; meanwhile, air below the supporting plates 12 flows in from the third ventilating grooves 241 between the supporting plates 12 under pressure due to the reduction of the air pressure in the protective shell 11, and flows into the cooling cover 21 through the gap between the equipment bodies, so that continuous upward flowing cooling air is formed in the protective shell 11, heat generated by the operation inside the equipment bodies is dissipated in time, and the normal operation of the control terminal is prevented from being influenced by the fault caused by overheating in the equipment bodies; the air flowing into the protective shell 11 is filtered by the first dustproof cloth 31 on the supporting plate 12, so that the dust in the air flowing into the protective shell is removed by the blocking action, and the cleanness of the inside of the equipment body is ensured; when the cooling air flows out, the second dustproof cloth 32 in the first ventilating groove 23 is impacted, on one hand, the first elastic rope 33 between the second dustproof cloth 32 is stressed to extend, so that the gap between the end parts of the second dustproof cloth 32 is increased, the cooling air flows out favorably, and the heat dissipation in the equipment body is accelerated; on the other hand, the second dust-proof cloth 32 vibrates violently under the impact of the cooling air, so that dust attached to the second dust-proof cloth 32 is effectively removed, and the normal work of the second dust-proof cloth 32 is ensured; in addition, when dust is accumulated on the first dustproof cloth 31, a maintenance worker can replace the first dustproof cloth 31 and clean the dust on the first dustproof cloth 31, and the first dustproof cloth 31 can normally play a role, so that the terminal control device can normally run a market integration measuring and calculating program written by python.
As an embodiment of the invention, a first groove 34 is uniformly formed in a part of the side wall of the first ventilating groove 23, which is located below the second dustproof cloth 32, and the end of the first groove 34 is inclined upwards; a first pressure plate 35 is embedded in the first groove 34, the first pressure plate 35 is connected with the inner surface of the first groove 34 through a spring, a driving plate 351 is arranged in the middle of the first pressure plate 35, the surface of the driving plate 351 is parallel to the top surface of the cooling cover 21, and a first plate 321 is arranged on the lower surface of the second dustproof cloth 32 corresponding to the end part of the first pressure plate 35; in operation, when the driving plate 351 on one plate 321 is impacted by the cooling wind flowing upwards, the driving plate 351 is pressed upwards, and therefore the one plate 321 slides along the one groove 34 under the action of the driving plate 351; because the end of the first groove 34 is inclined upwards, the end of the first plate 321 slides upwards and presses the first plate 321 on the lower surface of the second dust cloth 32, so that the first plate 321 is pressed and drives the second dust cloth 32 to rotate upwards; therefore, the gap between the ends of the second dustproof cloth 32 symmetrically arranged in the first ventilating groove 23 is further increased, and cooling air can more smoothly pass through the first ventilating groove 23 to accelerate the cooling of the equipment body; and the swing amplitude of the second dustproof cloth 32 under the pushing action of the first pressing plate 35 is increased, so that dust attached to the second dustproof cloth 32 is further removed under the violent swing, and the phenomenon that the air permeability is reduced due to the fact that the dust attached to the second dustproof cloth 32 is too large is avoided, and the heat dissipation of the protective shell 11 is affected.
As an embodiment of the present invention, a joint between the first pressure plate 35 and the driving plate 351 is made of an elastic material, and the driving plate 351 is located on one side of the first pressure plate 35 close to the cooling fan 22; when the driving plate 351 is pressed to rotate upwards when being subjected to the action of cooling wind, the first plate 321 is further pressed and drives the second dustproof cloth 32 to rotate upwards; when the device works, when the driving plate 351 is pressed under the action of cooling air, because the joint part of the first pressing plate 35 and the driving plate 351 is made of elastic materials, the driving plate 351 is pressed and drives the joint part of the first pressing plate 35 and the driving plate 351 to deform, so that the parts, above the driving plate 351, of the driving plate 351 and the first pressing plate 35 rotate upwards, the first plate 321 on the second dustproof cloth 32 is further pressed and swung, the gap between the end parts of the second dustproof cloth 32 is increased, and the cooling of the device body is accelerated; and the end of the first pressing plate 35 is contacted with the first plate 321 and simultaneously swings under the action of the driving plate 351, so that the first plate 321 drives the second dustproof cloth 32 to further swing, and the dust on the second dustproof cloth 32 is removed more thoroughly.
As an embodiment of the present invention, the anti-slip grooves 322 are uniformly formed on the lower surface of the first plate 321, the end of the first pressing plate 35 is arc-shaped, and the width of the end of the first pressing plate 35 is greater than the width of the anti-slip grooves 322; through the action of the anti-slip groove 322, the first pressing plate 35 enables the first plate 321 to drive the second dustproof cloth 32 to vibrate and remove dust attached to the second dustproof cloth 32; in operation, when the end of the first pressing plate 35 moves up under the action of the driving plate 351 and contacts with the lower surface of the first plate 321, the end of the first pressing plate 35 slides on the lower surface of the first plate 321; because the width of the end of the first pressing plate 35 is greater than the width of the anti-slip groove 322, the end of the sliding first pressing plate 35 is quickly pressed to be separated from the anti-slip groove 322 after being embedded into the anti-slip groove 322, and in the process of the contact between the end of the first pressing plate 35 and the inner surface of the anti-slip groove 322, the anti-slip groove 322 is pressed and drives the first plate 321 to vibrate violently, so that the dust attached to the second dust cloth 32 is separated from the second dust cloth 32 under the vibration effect, and is kept away from the first ventilation groove 23 under the cooling air effect, the dust on the second dust cloth 32 is reduced, and the air permeability of the second dust cloth 32 is ensured.
As an embodiment of the present invention, the second dust-proof cloth 32 is provided in a double layer, and the double layers of the second dust-proof cloth 32 are connected by an end portion; a second elastic rope 323 is arranged in a gap between the two layers of second dustproof cloth 32, a second plate 324 is uniformly arranged on the second elastic rope 323, the end part of the second elastic rope 323 penetrates through the second dustproof cloth 32 to be connected with the end part of the first elastic rope 33, and a position, close to the end part, of the second elastic rope 323 is provided with a limiting block 325; in operation, because the second dust cloth 32 is provided in double layers, when the cooling fan 22 is not started, the filtering effect of the second dust cloth 32 on the inflowing air is enhanced, so that the dust attached to the air flowing into the protective casing 11 is removed more thoroughly; when the cooling fan 22 is started, the second dustproof cloth 32 is subjected to the blowing action of cooling air and the squeezing action of the first pressing plate 35, so that the first elastic rope 33 between the second dustproof cloth 32 is stretched in a tensile manner, the second elastic rope 323 positioned in the gap between the double layers of the second dustproof cloth 32 is stretched in a tensile manner while being pulled by the first elastic rope 33, the stretched second elastic rope 323 pulls the second dustproof cloth 32 through the limiting block 325, the end part of the double layers of the second dustproof cloth 32 is vibrated in a tensile manner, and the wrinkles on the surface of the second dustproof cloth 32 tend to be flat under the pulling action, so that dust is prevented from being attached between the wrinkles of the second dustproof cloth 32 and being difficult to remove; and the second plate 324 is driven to slide while the second elastic rope 323 is stretched, and acts on the inner surface of the second dustproof cloth 32, so that the wrinkles on the second dustproof cloth 32 are further eliminated.
As an embodiment of the present invention, the second plate 324 is uniformly provided with tapered blocks 326 on the upper surface, and the ends of the tapered blocks 326 are in close contact with the second dust cloth 32 located on the upper side; the second plate 324 is pulled to slide in the gap between the double layers of second dustproof cloths 32 by the compression of the second elastic rope 323, so that the dust attached to the second dustproof cloth 32 on the upper side is further removed; when the double-layer second dustproof cloth 32 works, the dustproof cloth close to the upper side is closer to the outside, so when the outside air flows in, the second dustproof cloth 32 close to the upper side is firstly contacted with the air and filters out dust in the air, and more dust is attached to the second dustproof cloth 32 close to the upper side; when the second plate 324 slides along with the second elastic rope 323, the end of the tapered block 326 uniformly arranged on the upper surface of the second plate 324 contacts with the inner surface of the second dustproof cloth 32 on the upper side, so that the friction between the upper surface of the second plate 324 and the inner surface of the second dustproof cloth 32 on the upper side is increased, and therefore, when the second plate 324 slides, the second dustproof cloth 32 on the upper side is driven to vibrate violently, so that the dust on the second dustproof cloth 32 on the upper side is removed more thoroughly.
The equipment body of the terminal control equipment starts to run the market integration measuring and calculating program written by python, and heat generated by a control circuit in the equipment body flows out of the second ventilation groove 24 along with air and flows to the outside through the first ventilation groove 23 on the cooling cover 21, so that the temperature of the equipment body is effectively controlled, and the normal running of the market integration measuring and calculating program of the terminal control equipment is ensured; moreover, the external dust is blocked by the first dustproof cloth 31 and the second dustproof cloth 32, so that the dust in the air is difficult to enter the protective shell 11, the cleanness inside the protective shell 11 is ensured, and the normal work of the equipment body is further ensured; when the terminal control equipment runs a program for a long time in hot days, a large amount of heat accumulated inside the equipment body is difficult to dissipate in time, and the temperature inside the equipment body is overhigh; at the moment, the temperature sensor detects that the temperature inside the equipment body is too high, and transmits temperature information to the control screen 14 in time, the control screen 14 gives a warning to maintenance personnel on one hand, and on the other hand, the cooling fan 22 is automatically started according to a command of a market integration measuring and calculating program, so that the cooling fan 22 acts on the inside of the equipment body; the started cooling fan 22 acts on the inside of the cooling cover 21, so that air in the cooling cover 21 is subjected to upward flowing force and flows out from a first ventilation groove 23 at the top of the cooling cover 21; meanwhile, air below the supporting plates 12 flows in from the third ventilating grooves 241 between the supporting plates 12 under pressure due to the reduction of the air pressure in the protective shell 11, and flows into the cooling cover 21 through the gap between the equipment bodies, so that continuous upward flowing cooling air is formed in the protective shell 11, heat generated by the operation inside the equipment bodies is dissipated in time, and the normal operation of the control terminal is prevented from being influenced by the fault caused by overheating in the equipment bodies; the air flowing into the protective shell 11 is filtered by the first dustproof cloth 31 on the supporting plate 12, so that the dust in the air flowing into the protective shell is removed by the blocking action, and the cleanness of the inside of the equipment body is ensured; when the cooling air flows out, the second dustproof cloth 32 in the first ventilating groove 23 is impacted, on one hand, the first elastic rope 33 between the second dustproof cloth 32 is stressed to extend, so that the gap between the end parts of the second dustproof cloth 32 is increased, the cooling air flows out favorably, and the heat dissipation in the equipment body is accelerated; on the other hand, the second dust-proof cloth 32 vibrates violently under the impact of the cooling air, so that dust attached to the second dust-proof cloth 32 is effectively removed, and the normal work of the second dust-proof cloth 32 is ensured; in addition, when a lot of dust is accumulated on the first dustproof cloth 31, a maintainer can replace the first dustproof cloth 31 and clean the dust on the first dustproof cloth 31, so that the first dustproof cloth 31 can normally play a role, the terminal control equipment can be ensured to normally run a market integration measuring and calculating program written by python, and a fault part can be quickly found out; when the driving plate 351 on one plate 321 is impacted by the cooling wind flowing upwards, the driving plate 351 is pressed upwards, so that the one plate 321 slides along the one groove 34 under the action of the driving plate 351; because the end of the first groove 34 is inclined upwards, the end of the first plate 321 slides upwards and presses the first plate 321 on the lower surface of the second dust cloth 32, so that the first plate 321 is pressed and drives the second dust cloth 32 to rotate upwards; therefore, the gap between the ends of the second dustproof cloth 32 symmetrically arranged in the first ventilating groove 23 is further increased, and cooling air can more smoothly pass through the first ventilating groove 23 to accelerate the cooling of the equipment body; the swinging amplitude of the second dustproof cloth 32 is increased under the pushing action of the first pressing plate 35, so that dust attached to the second dustproof cloth 32 is further removed under the severe swinging action, and the phenomenon that the air permeability is reduced due to the overlarge dust attached to the second dustproof cloth 32 is avoided, so that the heat dissipation of the protective shell 11 is influenced; when the end of the first pressing plate 35 moves up by the driving plate 351 and contacts the lower surface of the first plate 321, the end of the first pressing plate 35 slides on the lower surface of the first plate 321; because the width of the end of the first pressing plate 35 is greater than the width of the anti-slip groove 322, the end of the sliding first pressing plate 35 is quickly pressed to be separated from the anti-slip groove 322 after being embedded into the anti-slip groove 322, and in the process that the end of the first pressing plate 35 is contacted with the inner surface of the anti-slip groove 322, the anti-slip groove 322 is pressed and drives the first plate 321 to vibrate violently, so that dust attached to the second dustproof cloth 32 is separated from the second dustproof cloth 32 under the vibration effect, and is far away from the first ventilation groove 23 under the cooling air effect, the dust on the second dustproof cloth 32 is reduced, and the air permeability of the second dustproof cloth 32 is ensured; because the second dust cloth 32 is provided in a double layer, when the cooling fan 22 is not activated, the filtering effect of the second dust cloth 32 on the inflowing air is enhanced, so that the dust attached to the air flowing into the protective housing 11 is removed more thoroughly; when the cooling fan 22 is started, the second dustproof cloth 32 is subjected to the blowing action of cooling air and the squeezing action of the first pressing plate 35, so that the first elastic rope 33 between the second dustproof cloth 32 is stretched in a tensile manner, the second elastic rope 323 positioned in the gap between the double layers of the second dustproof cloth 32 is stretched in a tensile manner while being pulled by the first elastic rope 33, the stretched second elastic rope 323 pulls the second dustproof cloth 32 through the limiting block 325, the end part of the double layers of the second dustproof cloth 32 is vibrated in a tensile manner, and the wrinkles on the surface of the second dustproof cloth 32 tend to be flat under the pulling action, so that dust is prevented from being attached between the wrinkles of the second dustproof cloth 32 and being difficult to remove; and the second plate 324 is driven to slide while the second elastic rope 323 is stretched, and acts on the inner surface of the second dustproof cloth 32, so that the wrinkles on the second dustproof cloth 32 are further eliminated.
The front, the back, the left, the right, the upper and the lower are all based on figure 1 in the attached drawings of the specification, according to the standard of the observation angle of a person, the side of the device facing an observer is defined as the front, the left side of the observer is defined as the left, and so on.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are merely intended to facilitate the description of the present invention and to simplify the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the scope of the present invention.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (4)

1. A computer network equipment terminal control equipment characterized in that: the device comprises a working unit (1), a cooling unit (2) and a dustproof unit (3), wherein the working unit (1) comprises an equipment body, a protective shell (11), a supporting plate (12), a circuit socket (13) and a control screen (14), the protective shell (11) is arranged on the outer surface of the equipment body and used for protecting the circuit equipment inside the equipment body, the supporting plate (12) is symmetrically arranged on the bottom surface of the protective shell (11), the circuit sockets (13) are uniformly arranged on the outer surface of the protective shell (11), and the circuit socket (13) is connected with a circuit inside the equipment body; the control screen (14) is arranged on the surface of the protective shell (11) and used for controlling the work of the equipment body;
the cooling unit (2) comprises a temperature sensor, a cooling cover (21), a cooling fan (22), a first ventilation groove (23), a second ventilation groove (24) and a third ventilation groove (241), the temperature sensor is installed inside the equipment body, the cooling cover (21) is installed at the top of the protective shell (11), the cooling fan (22) is evenly arranged inside the cooling cover (21), and the cooling fan (22) is controlled by a control screen (14); the top of the cooling cover (21) is uniformly provided with a first ventilating groove (23), the top of the protective shell (11) is uniformly provided with a second ventilating groove (24), and the bottom of the protective shell (11) between the support plates (12) is uniformly provided with a third ventilating groove (241);
the dustproof unit (3) comprises a first dustproof cloth (31), a second dustproof cloth (32) and a first elastic rope (33), the first dustproof cloth (31) is installed on the side wall of the supporting plate (12), and the second dustproof cloth (32) is symmetrically installed on the side wall of the first ventilating groove (23); the ends of the symmetrically arranged second dustproof cloth (32) are mutually contacted and are connected through a first elastic rope (33) uniformly arranged at the end of the second dustproof cloth (32);
a first groove (34) is uniformly formed in the side wall of the first ventilating groove (23) below the second dustproof cloth (32), and the end part of the first groove (34) is inclined upwards; a first pressure plate (35) is embedded in the first groove (34), the first pressure plate (35) is connected with the inner surface of the first groove (34) through a spring, a driving plate (351) is arranged in the middle of the first pressure plate (35), the surface of the driving plate (351) is parallel to the top surface of the cooling cover (21), and a first plate (321) is arranged on the lower surface of the second dustproof cloth (32) corresponding to the end part of the first pressure plate (35);
the combination part between the first pressure plate (35) and the driving plate (351) is made of elastic materials, and the driving plate (351) is positioned on one side, close to the cooling fan (22), of the first pressure plate (35); when the driving plate (351) is pressed to rotate upwards when being blown by cooling wind, the first plate (321) is further pressed and drives the second dustproof cloth (32) to rotate upwards.
2. The computer network device terminal control device according to claim 1, wherein: the lower surface of the first plate (321) is uniformly provided with anti-skidding grooves (322), the end part of the first pressing plate (35) is arc-shaped, and the width of the end part of the first pressing plate (35) is greater than that of the anti-skidding grooves (322); through the effect of the anti-skidding groove (322), the first plate (321) drives the second dustproof cloth (32) to vibrate violently and remove dust attached to the second dustproof cloth (32).
3. The computer network device terminal control device according to claim 2, wherein: the second dustproof cloth (32) is arranged in a double-layer mode, and the double-layer second dustproof cloth (32) is connected through the end portion; be equipped with No. two elasticity rope (323) in the clearance between double-deck No. two dustproof cloth (32), evenly be equipped with No. two board (324) on No. two elasticity rope (323), No. two elasticity rope (323) tip run through No. two dustproof cloth (32) with elasticity rope (33) tip links to each other, and is equipped with stopper (325) near the position of tip on No. two elasticity rope (323).
4. The computer network device terminal control device according to claim 3, wherein: conical blocks (326) are uniformly arranged on the upper surface of the second plate (324), and the end parts of the conical blocks (326) are tightly contacted with the second dustproof cloth (32) positioned on the upper side; the second plate (324) is pulled to slide in the gap between the two layers of second dustproof cloths (32) by the compression of the second elastic rope (323), so that the dust attached to the second dustproof cloth (32) on the upper side is further removed.
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