CN113659456A - Outdoor power distribution cabinet - Google Patents

Outdoor power distribution cabinet Download PDF

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Publication number
CN113659456A
CN113659456A CN202110933727.5A CN202110933727A CN113659456A CN 113659456 A CN113659456 A CN 113659456A CN 202110933727 A CN202110933727 A CN 202110933727A CN 113659456 A CN113659456 A CN 113659456A
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CN
China
Prior art keywords
rod
limiting
switch board
fixing device
gear
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Pending
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CN202110933727.5A
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Chinese (zh)
Inventor
许素珠
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Individual
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Individual
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Priority to CN202110933727.5A priority Critical patent/CN113659456A/en
Publication of CN113659456A publication Critical patent/CN113659456A/en
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/26Casings; Parts thereof or accessories therefor
    • H02B1/30Cabinet-type casings; Parts thereof or accessories therefor
    • H02B1/303Bases or feet
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/26Casings; Parts thereof or accessories therefor
    • H02B1/28Casings; Parts thereof or accessories therefor dustproof, splashproof, drip-proof, waterproof or flameproof
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/54Anti-seismic devices or installations
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/56Cooling; Ventilation
    • H02B1/565Cooling; Ventilation for cabinets

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Patch Boards (AREA)

Abstract

The invention discloses an outdoor power distribution cabinet, which relates to the technical field of power equipment, and structurally comprises a heat dissipation cover, a cabinet body, a voltmeter, a voltage button, a power distribution reinforcing device, air pressure cylinders and a driving knob.

Description

Outdoor power distribution cabinet
Technical Field
The invention relates to a power distribution cabinet, in particular to an outdoor power distribution cabinet.
Background
The switch board is motor control center's general name, and the switch board uses in the more dispersion of load, the less occasion of return circuit, and motor control center is used for the load to concentrate, the more occasion in return circuit, and building site need use a large amount of switch boards, because the switch board need regularly remove the transport, can not carry out cement pouring to the distribution cabinet base on the factory and fix, and current building site user outer switch board has following defect:
1. due to the unevenness of the ground, the power distribution cabinet is easy to incline when standing on the ground, and is easy to shake in storms and typhoons, so that the fixity of the power distribution cabinet is reduced, and the power distribution cabinet is easy to collapse;
2. when the switch board imbeds ground, because the comparatively hard ground leads to need boring to hit for a long time when the embedding easily for the switch board needs a large amount of time when embedding ground is fixed.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide an outdoor power distribution cabinet to solve the problems that the power distribution cabinet is easy to incline when standing on the ground due to unevenness of the ground, the power distribution cabinet is easy to shake in stormy weather and typhoon, so that the fixity of the power distribution cabinet is reduced, the power distribution cabinet is easy to collapse, and when equipment is embedded into the ground, long-time drilling is needed while embedding due to the fact that the ground is hard, and a large amount of time is needed when the equipment is embedded into the ground for fixing.
In order to achieve the purpose, the invention is realized by the following technical scheme:
an outdoor power distribution cabinet structurally comprises a power distribution cabinet, a voltmeter, a voltage button, a power distribution reinforcing device, an air pressure cylinder, a driving knob and a balance weight stabilizing device, wherein the lower end of the power distribution cabinet is connected with the power distribution reinforcing device, the two sides of the power distribution reinforcing device are matched with the air pressure cylinder, the voltmeter is installed on the power distribution cabinet, the voltage button is arranged at the lower end of the voltmeter, the driving knob is arranged on the right side of the voltage button, the balance weight stabilizing device is installed on the power distribution cabinet and is arranged above the power distribution reinforcing device, the air pressure cylinder is connected with a guide rod, the power distribution reinforcing device comprises a lower cabinet body, a power receiving body, a partition plate, a power receiving device, an air inlet device, a fixing device, a guide block and a guide wire, the lower cabinet body is connected with the cabinet body, the power receiving body is installed on the partition plate, and the two sides of the partition plate are connected with the inner wall of the lower cabinet body, the power distribution and reinforcement device comprises a lower cabinet body, an air inlet device and a fixing device, wherein the lower cabinet body is connected with the cabinet body, the guide block is connected with a guide wire, the guide wire penetrates through a partition plate and is connected with the power distribution body, the power distribution and reinforcement device comprises the lower cabinet body, the air inlet device and the fixing device, the lower cabinet body is connected with the cabinet body, the fixing device is arranged in the lower cabinet body, the air inlet device is arranged on two sides above the fixing device and movably matched with the lower cabinet body, the air inlet device is connected with an air pressure cylinder, and the lower cabinet body is connected with the cabinet body.
The air inlet device further comprises an air inflating groove, a shell, a connecting cylinder, a sealing ring, a guide rod, a sleeve and an air outlet hole, wherein the air inflating groove is formed in the shell, the connecting cylinder is arranged in the air inflating groove, one side of the connecting cylinder is vertically connected with the guide rod, the guide rod penetrates through the sleeve and is in transition fit with the sleeve, the sleeve is connected with one side of the shell, the sealing ring is nested on the connecting cylinder, and the air outlet hole is formed in the shell and is of an integrated structure.
The punching fixing device comprises a hole rotating ring, outer blades, inner blades, punching rotating rods and chip removing holes, wherein the punching rotating rods penetrate through the hole rotating ring and are connected with connecting columns, the outer blades are arranged on one side of the hole rotating ring, the inner blades are arranged in eight circular shapes, the inner blades are arranged on the inner wall of the hole rotating ring, the chip removing holes penetrate through one side of the outer wall of the hole rotating ring, and the outer blades are arranged in eight circular shapes.
The invention further provides a counterweight stabilizing device, which comprises a cross frame, a limiting rotary plate, a connecting rod fixing spring, a counterweight sliding block, a movable plate, a limiting vertical rod, a counterweight mechanism, an inclined rail and a limiting cross rod, wherein a connecting rod is arranged at the center of the cross frame, the connecting rod and the cross frame are in sliding fit, the upper end of the connecting rod is provided with the limiting rotary plate, the limiting rotary plate and the connecting rod are in threaded fit, the fixing spring is arranged below the limiting rotary plate, the bottom of the fixing spring is vertically fixed on the cross frame, the top of the fixing spring is movably connected with the limiting rotary plate, the front end and the rear end of the cross frame are in an axial symmetry structure and are provided with two inclined rails, the upper ends of the inclined rails are fixed on the cross frame, the U-shaped structure of the inclined rails is provided, the two open ends of the opening are fixed on the cross frame, and the front end and the rear end of the cross frame are respectively provided with one inclined rail to form an isosceles trapezoid structure with the cross frame, be equipped with the counter weight slider on the inclined rail, the counter weight slider adopts sliding fit with the inclined rail, the inclined rail lower end be equipped with spacing horizontal pole, spacing horizontal pole and inclined rail looks lock, crossbearer below central point put and be equipped with counter weight mechanism, counter weight mechanism and connecting rod cooperate, counter weight mechanism fix between two inclined rails, parallel equidistance in counter weight mechanism top be equipped with two spacing pole settings, spacing pole setting weld perpendicularly in counter weight mechanism, spacing pole setting top be equipped with the fly leaf, fly leaf and spacing pole setting swing joint.
The invention further provides a counterweight mechanism which comprises a front rack, a driven rack, a gear limiting rack, a fixed cross rod, a steel wire, a rear rack and a gear, wherein the fixed cross rod is welded and fixed between two inclined rails, the center of the fixed cross rod is provided with the rear rack, the rear rack is in sliding fit with a sliding groove arranged at the front end of the fixed cross rod, the front end of the rear rack is provided with the gear, the gear is meshed with the rear rack, two gear limiting racks are arranged on two sides of the gear in an axial symmetry structure, the gear limiting rack is in sliding fit with a circular groove arranged on the side edge of the gear, the gear is fixed on the fixed cross rod through the gear limiting rack, the top end of the rear rack is provided with the driven rack, the driven rack is vertically fixed at the top end of the rear rack, the driven rack U is in a shape structure, and two ends of an opening are movably connected with a movable plate on one corresponding side through a pin shaft, the front end of the gear is provided with a front rack, the front rack is meshed with the rear rack through the gear, the upper end of the front rack is welded with the connecting rod, the lower end of the front rack is provided with a steel wire, and the steel wire is connected with the front rack.
Advantageous effects
The outdoor power distribution cabinet has the following beneficial effects:
1. the power distribution reinforcing device is arranged on the ground, when the power distribution cabinet is used, the equipment can be arranged on the ground, the air pressure cylinders on the two sides are used for extrusion, so that the sealing slide block is pressed downwards by air through the slide rail, the perforation fixing device is inserted into the ground for fixing in the pressing process of the sealing slide block, the firmness of the power distribution cabinet is improved, and the power distribution cabinet is prevented from shaking.
2. The invention is provided with the perforation fixing device, when in use, the impact rotating rod connected on the perforation fixing device is pushed downwards by the connecting column to be embedded into the ground, and the outer blade and the inner blade are embedded together under the action of the rotating hole ring, so that the resistance of the device is greatly reduced and the device is firmer when being embedded into the ground, and the device can be prevented from collapsing in typhoon weather.
3. According to the counterweight stabilizing device, when the counterweight sliding block is not used, the counterweight sliding block is slidably moved to the top of the movable plates, the gravity of the counterweight sliding block is concentrated at the central position of the power distribution cabinet under the limiting action of the movable plates, so that the impact rotating rod can stably drill into the soil, when the impact rotating rod drills into the soil, the two movable plates arranged on two sides of the driven frame contract towards the central position of the rear rack in a splayed manner, at the moment, the movable plates do not limit the counterweight sliding block, the counterweight sliding block rapidly slides to the lower end of the inclined rail, two gravity flows are generated at the front end and the rear end of the power distribution cabinet, and the counterweight sliding block is matched with the impact rotating rod and the auxiliary socket, so that the power distribution cabinet cannot be inclined and collapsed in bad weather or typhoon, and the use safety of the power distribution cabinet can be improved.
Drawings
Other features, objects and advantages of the present invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the attached drawings.
Fig. 1 is a schematic front view of an outdoor power distribution cabinet according to the present invention.
Fig. 2 is a schematic structural diagram of the distribution reinforcement device of the present invention.
Fig. 3 is a schematic structural view of the fixing device of the present invention.
Fig. 4 is a schematic sectional structure view of the air intake device of the present invention.
Fig. 5 is a schematic perspective view of the air intake device of the present invention.
Fig. 6 is a schematic perspective view of the perforation fixture of the present invention.
Fig. 7 is a schematic side view of the weight stabilizer of the present invention.
Fig. 8 is a schematic side view of the counterweight mechanism of the present invention.
In the figure: a power distribution cabinet-2, a voltmeter-3, a voltage button-4, a power distribution reinforcing device-5, a pneumatic cylinder-6, a driving knob-7, a counterweight stabilizing device-8, a lower cabinet-S, an air inlet device-R, a fixing device-T, a sliding rail-561, a movable guide rod-562, a connecting rod-563, a moving block-564, a connecting rod-565, an auxiliary socket-566, a perforation fixing device-567, a connecting spring-568, a connecting column-569, a sealing slide block-560, an inflating groove-551, a shell-552, a connecting cylinder-553, a sealing ring-554, a guide rod-555, a sleeve-556, an air outlet-557, a rotating hole ring-671, an outer blade-672, an inner blade-673, an impact rotating rod-674, a rotating rod-553, A chip removal hole-675, a cross frame-81, a limit rotating plate-82, a connecting rod-83, a fixed spring-84, a counterweight sliding block-85, a movable plate-86, a counterweight mechanism-87, a limit vertical rod-88, an inclined rail-89, a limit cross rod-810, a front rack-88 a, a driven rack-88 b, a gear limit rack-88 c, a fixed cross rod-88 d, a steel wire-88 e and a rear rack-88 f.
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.
Example 1
As shown in fig. 1-4, the present invention provides a technical solution for an outdoor power distribution cabinet: its structure includes switch board 2, voltmeter 3, voltage button 4, distribution reinforcing apparatus 5, an atmospheric pressure section of thick bamboo 6, drive knob 7, counter weight stabilising arrangement 8, 2 lower extremes of switch board are connected with distribution reinforcing apparatus 5, distribution reinforcing apparatus 5's both sides all cooperate with an atmospheric pressure section of thick bamboo 6, voltmeter 3 is the square and is equipped with three, voltmeter 3 is installed on switch board 2, voltmeter 4 is located voltmeter 3 lower extremes, drive knob 7 is located the right side of voltage button 4, counter weight stabilising arrangement 8 is installed on switch board 2, and locates distribution reinforcing apparatus 5 top, atmospheric pressure section of thick bamboo 6 is connected with guide arm 562.
Distribution reinforcing apparatus 5 includes cabinet body S, air inlet unit R, fixing device T down, cabinet body S is connected with switch board 2 down, the inside of cabinet body S is equipped with fixing device T down, fixing device T' S top both sides all are equipped with air inlet unit R, air inlet unit R and cabinet body S clearance fit down, air inlet unit R is connected with pneumatic tube 6, cabinet body S is connected with switch board 2 down.
The fixing device T comprises a sliding rail 561, a moving guide rod 562, a connecting rod 563, a moving block 564, a connecting rod 565, an auxiliary socket 566, a perforation fixing device 567, a connecting spring 568, a connecting column 569 and a sealing slider 560, wherein the sliding rail 561 is internally provided with the sealing slider 560, the sealing slider 560 is vertically connected with the connecting column 569, the connecting column 569 is connected with the perforation fixing device 567 through the connecting spring 568, the two moving guide rods 562 are arranged, the perforation fixing device 567 is arranged between the two moving guide rods 562, one end of each moving guide rod 562 is connected with the lower cabinet body 51, the two connecting rods 563 are arranged, the connecting rod 563 is connected with one side of the sealing slider 560 through the moving guide rod 562, the moving block 564 is arranged on the connecting rod 565, the moving block 564 is connected with the connecting rod 563, and the connecting rod 565 is connected with the auxiliary socket 566, when the device is used, the bottom of the device can be moved through the connecting column 569 to embed the perforation fixing device 567 into the ground, so that the fixing effect is achieved.
Example 2
As shown in fig. 1-6, the present invention provides a technical solution for an outdoor power distribution cabinet: its structure includes switch board 2, voltmeter 3, voltage button 4, distribution reinforcing apparatus 5, an atmospheric pressure section of thick bamboo 6, drive knob 7, counter weight stabilising arrangement 82 lower extreme and distribution reinforcing apparatus 5 of switch board, distribution reinforcing apparatus 5's both sides all cooperate with an atmospheric pressure section of thick bamboo 6, voltmeter 3 is equipped with three square structure, voltmeter 3 is installed on switch board 2, voltmeter 4 is located voltmeter 3 lower extreme, drive knob 7 locates the right side of voltage button 4, counter weight stabilising arrangement 8 is installed on switch board 2, and locates distribution reinforcing apparatus 5 top, atmospheric pressure section of thick bamboo 6 is connected with guide arm 562.
Distribution reinforcing apparatus 5 includes cabinet body S, air inlet unit R, fixing device T down, cabinet body S is connected with switch board 2 down, the inside of cabinet body S is equipped with fixing device T down, fixing device T' S top both sides all are equipped with air inlet unit R, air inlet unit R and cabinet body S clearance fit down, air inlet unit R is connected with pneumatic tube 6, cabinet body S is connected with switch board 2 down.
The air inlet device R comprises an air inflating groove 551, a shell 552, a connecting cylinder 553, a sealing ring 554, a guide rod 555, a sleeve 556 and an air outlet hole 557, wherein the air inflating groove 551 is arranged in the shell 552, the connecting cylinder 553 is arranged in the air inflating groove 551, one side of the connecting cylinder 553 is vertically connected with the guide rod 555, the guide rod 555 penetrates through the sleeve 556 and adopts transition fit with the sleeve 556 and the connecting cylinder 552, the sleeve 556 is connected with one side of the shell 552, the sealing ring 554 is nested on the connecting cylinder 553, the air outlet hole 557 is of a circular structure, the air outlet hole 557 is arranged on the shell 552 and is of an integrated structure, and the air inlet device can be pushed by the guide rod 555 to match the sealing ring 554 on the connecting cylinder 553 along the air inflating groove 551 so that internal air is extruded and discharged from the air outlet hole 557.
Fixing device T is equipped with perforation fixing device 567, perforation fixing device 567 includes circle 671, outer sword 672, interior sword 673, impact bull 674, chip removal hole 675, impact bull 674 runs through circle 671 and is connected with spliced pole 569, outer sword 672 is equipped with eight and is circular distribution, one side of circle 671 is all located to outer sword 672, interior sword 673 is equipped with eight and is circular distribution, interior sword 673 all locates circle 671 inner wall, chip removal hole 675 runs through one side of circle 671 outer wall.
Example 3
As shown in fig. 2-8, the power distribution reinforcing device 5 includes a lower cabinet body S, an air inlet device R, and a fixing device T, the lower cabinet body S is connected with the power distribution cabinet 2, the fixing device T is arranged in the lower cabinet body S, the air inlet device R is arranged on both sides of the top of the fixing device T, the air inlet device R is movably matched with the lower cabinet body S, the air inlet device R is connected with an air pressure cylinder 6, and the lower cabinet body S is connected with the power distribution cabinet 2.
The fixing device T comprises a sliding rail 561, a moving guide rod 562, a connecting rod 563, a moving block 564, a connecting rod 565, an auxiliary socket 566, a perforation fixing device 567, a connecting spring 568, a connecting column 569 and a sealing slider 560, a sealing slider 560 is arranged in the sliding rail 561, the sealing slider 560 is vertically connected with the connecting column 569, the connecting column 569 penetrates through the connecting spring 568 to be connected with the perforation fixing device 567, the perforation fixing device 567 is arranged between the moving guide rods 562, two moving guide rods 562 are arranged, one end of each moving guide rod 562 is connected with the lower cabinet body 51, two connecting rods 563 are arranged, the connecting rod 563 penetrates through one side of each moving guide rod 562 and one side of the sealing slider 560 to be connected, the moving block 564 is installed on the connecting rod 565 to be connected with the connecting rod 563, and the connecting rod 565 is connected with the auxiliary socket 566.
The air inlet device R comprises an air inflating groove 551, a shell 552, a connecting cylinder 553, a sealing ring 554, a guide rod 555, a sleeve 556 and an air outlet hole 557, wherein the air inflating groove 551 is arranged in the shell 552, the connecting cylinder 553 is arranged in the air inflating groove 551, one side of the connecting cylinder 553 is vertically connected with the guide rod 555, the guide rod 555 penetrates through the sleeve 556 and adopts transition fit with the sleeve 556 and the connecting cylinder 552, the sleeve 556 is connected with one side of the shell 552, the sealing ring 554 is nested on the connecting cylinder 553, the air outlet hole 557 is of a circular structure, the air outlet hole 557 is arranged on the shell 552 and is of an integrated structure, and the air inlet device can be pushed by the guide rod 555 to match the sealing ring 554 on the connecting cylinder 553 along the air inflating groove 551 so that internal air is extruded and discharged from the air outlet hole 557.
Perforation fixing device 567 includes changes hole circle 671, outer sword 672, interior sword 673, strikes commentaries on classics pole 674, chip removal hole 675, strike commentaries on classics pole 674 and run through and change hole circle 671 and link to each other with spliced pole 569 and connect, outer sword 672 is equipped with eight and is circular distribution, one side of changeing hole circle 671 is all located to outer sword 672, interior sword 673 is equipped with eight and is circular distribution, interior sword 673 all locates and changes hole circle 671 inner wall, chip removal hole 675 runs through one side of changeing hole circle 671 outer wall.
The counterweight stabilizing device 8 comprises a transverse frame 81, a limiting rotating plate 82, a connecting rod 83, a fixed spring 84, a counterweight sliding block 85, a movable plate 86, a limiting vertical rod 87, a counterweight mechanism 88, an inclined rail 89 and a limiting transverse rod 810, wherein the transverse frame 81 is arranged inside the power distribution cabinet 2 and fixedly connected with the power distribution cabinet, the connecting rod 83 is arranged at the center of the transverse frame 81, the connecting rod 83 is in sliding fit with the transverse frame 81, the limiting rotating plate 82 is arranged at the upper end of the connecting rod 83, the limiting rotating plate 82 is in threaded fit with the connecting rod 83, a fixed spring 84 is arranged below the limiting rotating plate 82, the bottom of the fixed spring 84 is vertically fixed on the transverse frame 81, the top of the fixed spring is movably connected with the limiting rotating plate 82, two inclined rails 89 are arranged at the front end and the rear end of the transverse frame 81 in an axial symmetry structure, the upper ends of the inclined rails 89 are fixed on the transverse frame 81, the inclined rails 89 are in a U-shaped structure, two ends of the opening are fixed on the cross frame 81, and the front end and the rear end of the cross frame 81 are respectively provided with an inclined rail 89 which forms an isosceles trapezoid structure with the cross frame 81, the inclined rail 89 is provided with a counterweight sliding block 85, two sides of the counterweight sliding block 85 are in sliding fit with the inclined rail 89 in a U-shaped structure, the lower end of the inclined rail 89 is provided with a limiting cross rod 810, the limiting cross bar 810 is buckled with the inclined rail 89, a counterweight mechanism 88 is arranged at the center position below the cross frame 81, the counterweight mechanism 88 is matched with the connecting rod 83, the counterweight mechanism 88 is fixed between two inclined rails 89, two limiting upright posts 87 are arranged above the counterweight mechanism 88 in parallel at equal intervals, the limiting upright posts 87 are vertically welded on the counterweight mechanism 88, the top of the limiting upright rod 87 is provided with a movable plate 86, and the movable plate 86 is movably connected with the limiting upright rod 87.
The counterweight mechanism 88 comprises a front rack 88a, a driven frame 88b, a gear limiting frame 88c, a fixed cross rod 88d, a steel wire 88e, a rear rack 88f and a gear 88g, the fixed cross rod 88d is fixedly welded between two inclined rails 89, the fixed cross rod 88d is arranged at the bottom of a limiting upright rod 87 and is welded with the two, the center of the fixed cross rod 88d is provided with the rear rack 88f, sliding grooves arranged at the front ends of the rear rack 88f and the fixed cross rod 88d are in sliding fit, the front end of the rear rack 88f is provided with the gear 88g, the gear 88g is meshed with the rear rack 88f, two sides of the gear 88g are in an axial symmetry structure and are provided with the two gear limiting frames 88c, circular grooves arranged at the side edges of the gear limiting frame 88c and the gear 88g are in sliding fit, the gear 88g is fixed on the fixed cross rod 88d through the gear limiting frames 88c, the top end of the rear rack 88f is provided with a driven frame 88b, the driven frame 88b is vertically fixed at the top end of the rear rack 88f, the driven frame 88b is of a U-shaped structure, the two ends of an opening are movably connected with a movable plate 86 on one corresponding side through a pin shaft, the front end of the gear 88g is provided with a front rack 88a, the front rack 88a is meshed with the rear rack 88f through the gear 88g, the upper end of the front rack 88a is welded with the connecting rod 83, the lower end of the front rack 88a is provided with a steel wire 88e, the steel wire 88e is connected with the front rack 88a, and the front rack 88a is connected with the top of the sealing slide block 560 through the steel wire 88 e.
The working principle is as follows: when the device is used, by placing the device on the ground, the guide rod 555 can be moved along the sleeve 556 by pressing the air cylinder 6, so that the sealing ring 554 on the connecting cylinder 553 can be moved along the air pumping groove 551, the air generated inside can be pressed and discharged through the air outlet hole 557, and conveyed into the slide rail 561, and the sealing slider 560 can be pushed, so that the connecting post 569 can push the perforation fixing device 567 to be inserted into the ground, and when the sealing slider 560 is moved, the connecting rod 563 can be moved at the same time, and the connecting rod 565 connected with the connecting rod 563 through the moving block 564 can be moved, so that the auxiliary socket 566 connected to the connecting rod 565 can be simultaneously embedded into the ground for reinforcement, and when the device punches and rotates the ground, the device can be contacted with the ground through the impact rotating rod 674 connected to the connecting post 569, the outer blade 672 and the inner blade 673 on the rotating hole ring 671 can extrude soil on the ground while the striking rod 674 is contacted with the ground, so that the rotating hole ring 671 can be integrally embedded into the soil, the device can be more firmly embedded with the ground, and the equipment is prevented from being blown down to the ground in typhoon weather;
because the front rack 88a is connected with the top of the sealing slider 560 through the steel wire 88e, and the sealing slider 560 is connected with the impact rotating rod 674, when the counterweight slider 85 is not used, the counterweight slider 85 slides and displaces to the top of the movable plate 86, the gravity of the counterweight slider 85 is concentrated at the central position of the power distribution cabinet 2 under the limiting action of the movable plate 86, so that the impact rotating rod 674 can stably drill into the soil, when the impact rotating rod 674 drills into the soil, the front rack 88a is pulled to displace downwards through the steel wire 88e, in the process, the connecting rod 83 moves along with the lead of the movement of the front rack 88a, so that the fixed spring 84 is stressed and compressed, through the structural arrangement that the front rack 88a is meshed with the rear rack 88f through the gear 88g, when the front rack 88a displaces upwards, the rear rack 88f displaces upwards, so that the movable plates 86 arranged at two sides of the driven frame 88b retract towards the central position of the rear rack 88f in an eight shape, at this time, the movable plate 86 does not limit the counterweight sliding block 85, the counterweight sliding block 85 rapidly slides to the lower end of the inclined rail 89, because the inclined rail 89 is in a U-shaped structure, two ends of the opening are fixed on the cross frame 81, and two inclined rails 89 are respectively installed at the front end and the rear end of the cross frame 81 to form an isosceles trapezoid structure with the cross frame 81, so that the two counterweight sliding blocks 85 are separated to generate two gravity strands at the front end and the rear end of the power distribution cabinet 2, and under the action of the isosceles trapezoid structure, the gravity generated by the counterweight sliding block 85 can play a more obvious role, and in cooperation with the use of the impact rotating rod 674 and the auxiliary socket 566, the power distribution cabinet 2 is not inclined and collapsed in bad weather or typhoon day, when the power distribution cabinet 2 needs to be moved to a position, the impact rotating rod 674 is retracted to the inside the lower cabinet body S under the control, the movable plate 86 is horizontally reset under the action of the fixed spring 84, at this time, the movable plate 86 is manually pressed downward, and simultaneously, the counterweight sliding blocks 85 slide upwards along the inclined rails 89, when the counterweight sliding blocks 85 move to the positions above the movable plate 86, the movable plate 86 is loosened, so that the counterweight sliding blocks 85 are limited above the movable plate 86, and two counterweight sliding blocks 85 form a gravity point and are concentrated at the center position of the power distribution cabinet 2.
While there have been shown and described what are at present considered the fundamental principles of the invention and its essential features and advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms of practicing the invention without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should be able to make the description as a whole, and the embodiments may be appropriately combined to form other embodiments understood by those skilled in the art.

Claims (7)

1. The utility model provides an outdoor power distribution cabinet, its structure is including switch board (2), voltmeter (3), voltage button (4), distribution reinforcing apparatus (5), pneumatic cylinder (6), drive knob (7), counter weight stabilising arrangement (8), switch board (2) lower extreme links to each other with distribution reinforcing apparatus (5), distribution reinforcing apparatus (5) both sides all are equipped with pneumatic cylinder (6), switch board (2) are equipped with voltmeter (3), voltage button (4), drive knob (7), counter weight stabilising arrangement (8) are installed on switch board (2), its characterized in that:
the power distribution reinforcing device (5) comprises a lower cabinet body (S), an air inlet device (R) and a fixing device (T), wherein the fixing device (T) is arranged inside the lower cabinet body (S), the air inlet device (R) is arranged on both sides above the fixing device (T), the air inlet device (R) is movably matched with the lower cabinet body (S), the air inlet device (R) is connected with an air pressure cylinder (6), and the lower cabinet body (S) is connected with the power distribution cabinet (2);
the fixing device (T) comprises a sliding rail (561), a movable guide rod (562), a connecting rod (563), a movable block (564), a connecting rod (565), an auxiliary socket (566), a perforation fixing device (567), a connecting spring (568), a connecting column (569) and a sealing sliding block (560), a sealing slide block (560) connected with the connecting column (569) is arranged in the slide rail (561), the connecting column (569) is connected with the perforation fixing device (567) through a connecting spring (568), the perforation fixing device (567) is arranged between the two movable guide rods (562), the movable guide rod (562) is connected with the lower cabinet body (S), the connecting rod (563) penetrates through the movable guide rod (562) to be connected with the sealing slide block (560), the moving block (564) is installed on the engagement rod (565) to be connected with the connection rod (563), and the engagement rod (565) is connected with the auxiliary socket (566).
2. An outdoor switch board of claim 1 characterized in that: the air inlet device (R) comprises an air inflating groove (551), a shell (552), a connecting cylinder (553), a sealing ring (554), a guide rod (555), a sleeve (556) and an air outlet hole (557), the air inflating groove (551) is arranged in the shell (552), the air inflating groove (551) is provided with the connecting cylinder (553) connected with the guide rod (555), the guide rod (555) penetrates through the sleeve (556), the sealing ring (554) is nested on the connecting cylinder (553), and the air outlet hole (557) and the shell (552) are of an integrated structure.
3. An outdoor switch board of claim 1 characterized in that: the punching fixing device (567) comprises a rotary hole ring (671), an outer blade (672), an inner blade (673), an impact rotary rod (674) and a chip removal hole (675), wherein the impact rotary rod (674) penetrates through the rotary hole ring (671) to be connected with a connecting column (569), the inner blade (673) is arranged on the inner wall of the rotary hole ring (671), and the chip removal hole (675) penetrates through one side of the outer wall of the rotary hole ring (671).
4. An outdoor switch board of claim 1 characterized in that: the counterweight stabilizing device (8) comprises a transverse frame (81), a limiting rotating plate (82), a connecting rod (83), a fixed spring (84), a counterweight sliding block (85), a movable plate (86), a limiting vertical rod (87), a counterweight mechanism (88), an inclined rail (89) and a limiting transverse rod (810), wherein the connecting rod (83) is arranged at the center of the transverse frame (81), the limiting rotating plate (82) in threaded fit with the connecting rod (83) is arranged at the upper end of the connecting rod (83), the fixed spring (84) is arranged below the limiting rotating plate (82), the bottom of the fixed spring (84) is vertically fixed on the transverse frame (81), the inclined rail (89) is arranged at the front end and the rear end of the transverse frame (81), the counterweight sliding block (85) in sliding fit with the inclined rail (89) is arranged at the lower end of the inclined rail (89), the limiting transverse rod (810) is buckled with the transverse frame (81), the counterweight mechanism (88) in fit with the connecting rod (83) is arranged at the center of the lower end of the transverse frame (81), the counterweight mechanism (88) is fixed between the two inclined rails (89), a limiting vertical rod (87) is arranged above the counterweight mechanism (88), and a movable connection movable plate (86) is arranged at the top of the limiting vertical rod (87).
5. An outdoor switch board of claim 4 characterized in that: the counterweight mechanism (88) comprises a front rack (88a), a driven frame (88b), a gear limiting frame (88c), a fixed cross bar (88d), a steel wire (88e), a rear rack (88f) and a gear (88g), a rear rack (88f) is arranged at the center of the fixed cross bar (88d), a gear (88g) meshed with the rear rack (88f) is arranged at the front end of the rear rack (88f), two gear limiting frames (88c) are arranged on two sides of the gear (88g) in an axisymmetric structure, the gear (88g) is fixed on the fixed cross bar (88d) through a gear limiting frame (88c), a driven frame (88b) is arranged at the top end of the rear rack (88f), a front rack (88a) is arranged at the front end of the gear (88g), the upper end of the front rack (88a) is welded with the connecting rod (83), and the lower end of the front rack (88a) is provided with a steel wire (88 e).
6. An outdoor switch board of claim 4 characterized in that: the inclined rail (89) is of a U-shaped structure, two ends of an opening are fixed on the cross frame (81), and an inclined rail (89) and the cross frame (81) form an isosceles trapezoid structure at the front end and the rear end of the cross frame (81).
7. An outdoor switch board of claim 5 characterized in that: the driven frame (88b) is of a U-shaped structure, and two ends of the opening are movably connected with a movable plate (86) on the corresponding side through pin shafts.
CN202110933727.5A 2021-08-15 2021-08-15 Outdoor power distribution cabinet Pending CN113659456A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110933727.5A CN113659456A (en) 2021-08-15 2021-08-15 Outdoor power distribution cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110933727.5A CN113659456A (en) 2021-08-15 2021-08-15 Outdoor power distribution cabinet

Publications (1)

Publication Number Publication Date
CN113659456A true CN113659456A (en) 2021-11-16

Family

ID=78491017

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110933727.5A Pending CN113659456A (en) 2021-08-15 2021-08-15 Outdoor power distribution cabinet

Country Status (1)

Country Link
CN (1) CN113659456A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116960751A (en) * 2023-07-27 2023-10-27 埃朴励迩(北京)科技有限公司 Outdoor dustproof switch board

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116960751A (en) * 2023-07-27 2023-10-27 埃朴励迩(北京)科技有限公司 Outdoor dustproof switch board
CN116960751B (en) * 2023-07-27 2024-03-05 浙江星空电器有限公司 Outdoor dustproof switch board

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Application publication date: 20211116