Outdoor electric power cabinet with remote transmission monitoring function

The sliding door opens the drying plate by detecting rainfall by the water collection container, switching the fan mode and internal circulation fan, and combining the water-cooled pipe to dissipate heat, the outdoor power cabinet is solved, effectively drying and moisture-proof, and ensuring the safety and stability of the device in extreme weather.

CN120357296APending Publication Date: 2025-07-22SHANGRAO MASU INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510665923.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-07-22

AI Technical Summary

Technical Problem

In the rainy weather of existing outdoor power cabinets, the increase in air humidity causes moisture inside the cabinet, which may damage the circuit components and cannot effectively prevent moisture and dryness.

Method used

The rainfall is detected through the water collection container, the sliding door is controlled to open the drying plate for drying, the fan mode is switched for drying and internal circulation, combined with the water-cooled pipe for heat dissipation, the self-locking cabinet door prevents water inlet, and the use of the drying plate and the internal circulation fan to improve moisture-proof effect.

Benefits of technology

On rainy days, effectively dry the inside of the cabinet, extend the life of the drying plate, prevent humid air from entering, ensure the safety and stability of the device in extreme weather, and maintain the heat dissipation effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses an outdoor electric power cabinet with a remote monitoring function, and relates to the technical field of electric power engineering, the outdoor electric power cabinet comprises a cabinet body, the front end of the cabinet body is rotatably provided with a cabinet door, the bottom of the cabinet body is fixedly provided with a bottom support, the top of the cabinet body is fixedly provided with an inclined top surface, and the side surface of the inclined top surface is fixedly provided with a water collecting channel. A water collecting hose is fixedly connected to the bottom of the water collecting channel, a water collecting container is slidably installed on the side face of the cabinet body, a gear rotating shaft rotationally penetrates through the side face of the cabinet body, and the rainfall is detected through the weight of the water collecting container and whether the sliding door is opened or not is controlled so that the drying plate can be put into use to dry the interior of the cabinet body; the interior of the cabinet body is dried only in rainy days, the service life of a drying plate is prolonged, meanwhile, an air inlet fan is switched, air entering the cabinet body is air dried by the drying plate, and the overall damp-proof effect of the device is further improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of power engineering, and particularly to an outdoor power cabinet with a remote monitoring function. Background Art

[0002] An outdoor power cabinet with a remote monitoring function is usually used for power cabinets in outdoor operations where environmental factors are variable. The purpose is to be able to monitor various data inside the power cabinet in real time, so that abnormal situations inside the power cabinet can be discovered and solved in time.

[0003] The patent with the patent announcement number CN221633162U relates to the technical field of power cabinets, and particularly to an outdoor power cabinet with a remote monitoring function, including a machine body. A rotating mechanism is provided at the upper end inside the machine body, and a heat dissipation mechanism is provided in the middle at the lower end inside the machine body. This patent can drive a remote monitoring head to move in a circle above the outdoor power cabinet, so that the remote monitoring head can remotely and real-time monitor the surface and surroundings of the outdoor power cabinet. When the outdoor power cabinet is damaged, it can be discovered in time, and rainwater can be prevented from entering the outdoor power cabinet through the ventilation openings, avoiding the internal short circuit damage of the outdoor power cabinet caused by rainwater entering, thereby improving the safety of the outdoor power cabinet. In the above patent, there are many beneficial effects. While the monitoring function is perfect, it can avoid rainwater entering the device and causing damage. However, in rainy weather, due to the increase in moisture in the air, if the inside of the cabinet cannot be dried in time, the device may become damp inside, resulting in damage to circuit components. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides an outdoor power cabinet with a remote monitoring function, solving the problems raised in the above background art.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: an outdoor power cabinet with remote monitoring function, including a cabinet body, a cabinet door is rotatably installed at the front end of the cabinet body, a bottom support is fixedly installed at the bottom of the cabinet body, an inclined top surface is fixedly installed at the top of the cabinet body, a water collection channel is fixedly installed on the side of the inclined top surface, a water collection hose is fixedly connected to the bottom of the water collection channel, a water collection container is slidably installed on the side of the cabinet body, a gear shaft is rotatably penetrated through the side of the cabinet body, a drying box is arranged inside the cabinet body, a sliding door is slidably installed on the side of the drying box, a drying plate is slidably installed on the bottom of the drying box, a switch conductor 1 is rotatably installed on the side of the cabinet body, a drying fan is arranged on the side of the cabinet body, a switch conductor 2 is rotatably installed on the side of the cabinet body, a heat dissipation fan is arranged on the side of the cabinet body, and the A detection assembly is arranged inside the cabinet, and the detection assembly includes a detection module and a remote transmission module. A rack 1 is fixedly installed on the top of the water collecting container, a gear 1 is fixedly installed on the right side of the gear shaft, a gear 2 is fixedly installed on the left side of the gear shaft, and a rack 2 is fixedly installed on the rear of the sliding door. The rainfall is detected by the weight of the water collecting container and whether to open the sliding door is controlled so that the drying plate is put into use to dry the inside of the cabinet, thereby achieving drying of the inside of the cabinet only on rainy days and extending the service life of the drying plate. At the same time, the air intake fan is switched so that the air entering the cabinet is air dried by the drying plate, further improving the overall moisture-proof effect of the device. The detection module is used to detect indicators such as the temperature and humidity inside the cabinet, and the remote transmission module is used to transmit the detected data to the remote terminal.

[0006] According to the above technical solution, the gear 1 is meshed with the rack 1, the gear 2 is meshed with the rack 2, and the fan switch 1, fan switch 2 and fan switch 3 are arranged on the right side of the inner wall of the cabinet. The fan switch 1 is electrically connected to the heat dissipation fan, and the fan switch 2 and fan switch 3 are electrically connected to the drying fan. A reset spring is arranged between the water collecting container and the cabinet, a spiral spring 1 is arranged between the switch conductor 1 and the cabinet, and a spiral spring 2 is arranged between the switch conductor 2 and the cabinet. The cooperation between each switch conductor and the fan switch realizes the switching and starting between the fans, so as to maximize the drying efficiency of the drying plate while extending its service life as much as possible. Fan switch 1 is used to control the start and stop of the heat dissipation fan, and fan switch 2 and fan switch 3 are used to control the start and stop of the drying fan.

[0007] According to the above technical solution, a trapezoidal top block is fixedly installed on the left side of the drying plate, a downward pressure pulley is fixedly installed at the front end of the sliding door, an internal circulation fan is fixedly installed on the top inner wall of the drying box, a fan switch four is arranged on the right side of the internal circulation fan, a bidirectional conductor is slidably installed on the top inner wall of the drying box, a reversing push rod is rotatably installed at the bottom of the bidirectional conductor, and the reversing push rod is rotatably installed on the front inner wall of the drying box through a rotating shaft. The bidirectional conductor realizes starting the internal circulation fan while closing all intake fans, and the air circulation and drying inside the cabinet realizes the maximum moisture-proof effect inside when it rains outside.

[0008] According to the above technical solution, a telescopic lever one penetrates through the right inner wall of the cabinet in a rotating manner, a fan baffle is slidably installed at the bottom right of the drying fan, a telescopic lever two is rotatably installed on the right side of the cabinet, the front end of the telescopic lever two is rotatably installed at the rear of the water collection container, and a water cooling pipe is fixedly connected to the bottom of the water collection container. The water cooling pipe realizes using rainwater to cool and dissipate heat inside the cabinet, so that the overall device does not affect the internal heat dissipation effect while closing the air inlet for internal circulation.

[0009] According to the above technical solution, the trapezoidal top block is located on the movement track of the downward pressure pulley, the fan switch three is electrically connected to the drying fan, the fan switch four is electrically connected to the internal circulation fan, the reversing push rod is located on the movement track of the drying plate, the fan baffle is located on the movement track of the telescopic lever one, and the fan baffle is located on the movement track of the telescopic lever two. The sliding of the drying plate drives the fan baffle to close the air inlet of the fan, avoiding the decrease of the drying efficiency inside the cabinet caused by the fan introducing humid air from the outside when it rains outside. The fan switch three is used to control the start and stop of the drying fan, and the fan switch four is used to control the start and stop of the internal circulation fan.

[0010] According to the above technical solution, a grooved top rod is slidably installed on the right inner wall of the cabinet, an arc-shaped groove is formed at the top of the grooved top rod, a positioning straight rod is fixedly installed on the right inner wall of the cabinet, a bolt is slidably installed at the front of the cabinet, and a bolt groove is fixedly installed at the rear of the cabinet door. The bolt is driven by the grooved top rod to realize the self-locking of the cabinet door, avoiding the cabinet door being opened due to factors such as wind force in rainy weather and causing water to enter the cabinet.

[0011] According to the above technical solution, a cylindrical button penetrates through the front end of the cabinet door in a sliding manner, a deflecting top rod is slidably installed on the right inner wall of the cabinet, a reciprocating top rod is slidably installed on the right inner wall of the cabinet, a traction hook is rotatably installed at the top rear of the cabinet door, a sector-shaped shield is rotatably installed on the top inner wall of the cabinet, and a hook groove is fixedly installed at the bottom of the sector-shaped shield. The traction hook drives the sector-shaped shield to rotate together with the cabinet door, realizing that when the cabinet door is opened for maintenance in special circumstances, the sector-shaped shield shields the top of the cabinet door, and to a certain extent, avoiding rainwater from entering the cabinet.

[0012] According to the above technical solution, the grooved ejector rod is located on the movement track of the sliding door, the positioning straight rod is located on the movement track of the arc groove of the grooved ejector rod, the pin slot is located on the movement track of the bolt, the deflecting ejector rod is located on the movement track of the cylindrical button, the grooved ejector rod is located on the movement track of the deflecting ejector rod, the reciprocating ejector rod is located on the movement track of the grooved ejector rod, the towing hook is located on the movement track of the reciprocating ejector rod, the hook slot is located on the movement track of the towing hook, a second return spring is arranged between the bolt and the cabinet body, and the anti-misoperation device prevents the cabinet door from being opened due to improper operation, and ensures that the cabinet door can be opened only under special circumstances as much as possible.

[0013] The present invention provides an outdoor power cabinet with a remote monitoring function, having the following beneficial effects: (1) In this invention, the rainfall is detected by the weight of the water collecting container and whether to open the sliding door is controlled to enable the drying plate to be put into use to dry the interior of the cabinet body, so as to realize drying the interior of the cabinet body only on rainy days, extend the service life of the drying plate, and at the same time switch the intake fan so that the air entering the interior of the cabinet body is the air dried by the drying plate, further improving the overall moisture-proof effect of the device.

[0014] (2) In this invention, when the rainfall exceeds a certain threshold, the sliding door pushes the drying plate to close the intake fan and drives the fan baffle to block the fan at the same time, preventing rainwater from entering the interior of the cabinet body from the intake hole in heavy rain weather. At the same time, the device switches the fan to the internal circulation mode, avoiding external humid air from entering the cabinet body and circulating and drying the air inside the cabinet body, and introducing rainwater into the interior of the cabinet body through the water cooling pipe to perform water cooling and heat dissipation on the internal components, realizing further moisture-proofing without reducing the heat dissipation effect of the device.

[0015] (3) In this invention, the sliding door pushes the grooved ejector rod to drive the bolt to insert into the pin slot, realizing that the device automatically locks the cabinet door in rainy weather, preventing the cabinet door from being opened due to wind force and causing water to enter the interior of the cabinet body. If an emergency occurs, that is, when maintenance is required on a rainy day, the cabinet door is unlocked by pressing the cylindrical button to drive the deflecting ejector rod, and at the same time, the towing hook is driven to pull the hook slot, causing the sector-shaped shielding plate and the cabinet door to rotate together, realizing that the sector-shaped shielding plate pops out to shelter from rain when the cabinet door is opened on a rainy day, preventing water from entering the interior of the device and not affecting the maintenance operation under special circumstances. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the positional structure between the cabinet body and the water collecting container of the present invention; Figure 3 is a schematic diagram of the internal structure of the cabinet body of the present invention; Figure 4 Schematic diagram of the internal structure of the drying box of the present invention; Figure 5 Schematic diagram of the structure of the internal circulation fan and the drying fan of the present invention; Figure 6 Schematic diagram of the structure of the bidirectional conductor and the downward pressure pulley of the present invention; Figure 7 Schematic diagram of the structure of the fan baffle and the cooling fan of the present invention; Figure 8 Schematic diagram of the structure of the grooved ejector rod and the sector-shaped shutter of the present invention; Figure 9 Schematic diagram of the structure of the towing hook and the hook groove of the present invention.

[0017] In the figure: 1, cabinet body; 2, cabinet door; 3, bottom support; 4, inclined top surface; 5, water collecting channel; 601, water collecting hose; 602, water collecting container; 603, gear rotating shaft; 604, sliding door; 605, drying plate; 606, switch conductor 1; 607, drying fan; 608, switch conductor 2; 701, downward pressure pulley; 702, internal circulation fan; 703, bidirectional conductor; 704, telescopic lever 1; 705, fan baffle; 706, telescopic lever 2; 707, water cooling pipe; 8, cooling fan; 901, grooved ejector rod; 902, bolt; 903, bolt groove; 904, cylindrical button; 905, deflecting ejector rod; 906, towing hook; 907, sector-shaped shutter; 10, detection assembly. Specific embodiments

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0019] Please refer to Figures 1-9, An outdoor power cabinet with remote monitoring function, including a cabinet body 1, a cabinet door 2 is rotatably installed at the front end of the cabinet body 1, a bottom support 3 is fixedly installed at the bottom of the cabinet body 1, an inclined top surface 4 is fixedly installed at the top of the cabinet body 1, a water collecting channel 5 is fixedly installed on the side of the inclined top surface 4, a water collecting hose 601 is fixedly connected to the bottom of the water collecting channel 5, a water collecting container 602 is slidably installed on the side of the cabinet body 1, a gear rotating shaft 603 rotatably penetrates through the side of the cabinet body 1, a drying box is arranged inside the cabinet body 1, a sliding door 604 is slidably installed on the side of the drying box, a drying plate 605 is slidably installed at the bottom inside the drying box, a switch conductor one 606 is rotatably installed on the inner side of the cabinet body 1, a drying fan 607 is arranged on the side of the cabinet body 1, a switch conductor two 608 is rotatably installed on the inner side of the cabinet body 1, a heat dissipation fan 8 is arranged on the side of the cabinet body 1, a detection assembly 10 is arranged inside the cabinet body 1, the detection assembly 10 includes a detection module and a remote transmission module, the detection module is electrically connected to the remote transmission module, a rack one is fixedly installed at the top of the water collecting container 602, a gear one is fixedly installed on the right side of the gear rotating shaft 603, a gear two is fixedly installed on the left side of the gear rotating shaft 603, a rack two is fixedly installed at the rear of the sliding door 604, the rainfall is detected by the weight of the water collecting container 602 and whether to open the sliding door 604 is controlled so that the drying plate 605 is put into use to dry the inside of the cabinet body 1, realizing drying the inside of the cabinet body 1 only on rainy days, prolonging the service life of the drying plate 605, and at the same time switching the intake fan so that the air entering the inside of the cabinet body 1 is the air dried by the drying plate 605, further improving the overall moisture-proof effect of the device. The detection module is used to detect indexes such as the temperature and humidity inside the cabinet body 1, and the remote transmission module is used to transmit the detected data to a remote terminal.

[0020] The gear one meshes with the rack one, the gear two meshes with the rack two, a fan switch one, a fan switch two and a fan switch three are arranged on the right side inner wall of the cabinet body 1, the fan switch one is electrically connected to the heat dissipation fan 8, the fan switch two and the fan switch three are electrically connected to the drying fan 607, a return spring is arranged between the water collecting container 602 and the cabinet body 1, a scroll spring one is arranged between the switch conductor one 606 and the cabinet body 1, a scroll spring two is arranged between the switch conductor two 608 and the cabinet body 1, the cooperation between each switch conductor and the fan switch realizes the switching start of the fans, maximizing the drying efficiency of the drying plate 605 and prolonging its service life as much as possible. The fan switch one is used to control the start and stop of the heat dissipation fan 8, and the fan switch two and the fan switch three are used to control the start and stop of the drying fan 607.

[0021] On the left side of the drying plate 605, a trapezoidal top block is fixedly installed. At the front end of the sliding door 604, a downward pressure pulley 701 is fixedly installed. At the top of the inner wall of the drying box, an internal circulation fan 702 is fixedly installed. On the right side of the internal circulation fan 702, there is a fan switch four. At the top of the inner wall of the drying box, a bidirectional conductor 703 is slidably installed. At the bottom of the bidirectional conductor 703, a reversing push rod is rotatably installed. The reversing push rod is rotatably installed at the front part of the inner wall of the drying box through a rotating shaft. The bidirectional conductor 703 realizes starting the internal circulation fan 702 while closing all intake fans, and the air circulation drying inside the cabinet 1 achieves the maximum moisture-proof effect inside when it rains outside.

[0022] The telescopic lever one 704 rotatably penetrates through the right inner wall of the cabinet 1. At the right bottom of the drying fan 607, a fan damper 705 is slidably installed. The telescopic lever two 706 is rotatably installed on the right side of the cabinet 1. The front end of the telescopic lever two 706 is rotatably installed at the rear of the water collection container 602. The bottom of the water collection container 602 is fixedly connected with a water-cooled pipe 707. The water-cooled pipe 707 realizes water-cooled heat dissipation for the inside of the cabinet 1 by using rainwater, so that the overall device can close the air inlet and perform internal circulation without affecting the internal heat dissipation effect.

[0023] The trapezoidal top block is located on the movement track of the downward pressure pulley 701. The fan switch three is electrically connected to the drying fan 607. The fan switch four is electrically connected to the internal circulation fan 702. The reversing push rod is located on the movement track of the drying plate 605. The fan damper 705 is located on the movement track of the telescopic lever one 704. The fan damper 705 is located on the movement track of the telescopic lever two 706. The sliding of the drying plate 605 drives the fan damper 705 to close the air inlet of the fan, avoiding the reduction of the drying efficiency inside the cabinet 1 caused by the fan introducing humid air from the outside when it rains outside. The fan switch three is used to control the start and stop of the drying fan 607, and the fan switch four is used to control the start and stop of the internal circulation fan 702.

[0024] On the right side of the inner wall of the cabinet 1, a grooved top rod 901 is slidably installed. An arc groove is opened at the top of the grooved top rod 901. A positioning straight rod is fixedly installed on the right side of the inner wall of the cabinet 1. A bolt 902 is slidably installed at the front part of the cabinet 1. A pin slot 903 is fixedly installed at the rear of the cabinet door 2. The bolt 902 is driven by the grooved top rod 901 to realize the self-locking of the cabinet door 2, avoiding the cabinet door 2 being opened due to factors such as wind force in rainy weather and causing water to enter the inside of the cabinet 1.

[0025] A cylindrical button 904 slides through the front end of the cabinet door 2. A deflecting ejector rod 905 is slidably installed on the right side of the inner wall of the cabinet body 1. A reciprocating ejector rod is slidably installed on the right side of the inner wall of the cabinet body 1. A traction hook 906 is rotatably installed at the top of the rear end of the cabinet door 2. A sector-shaped shielding plate 907 is rotatably installed at the top of the inner wall of the cabinet body 1. A hook groove is fixedly installed at the bottom of the sector-shaped shielding plate 907. The traction hook 906 drives the sector-shaped shielding plate 907 to rotate together with the cabinet door 2, realizing that when the cabinet door 2 is opened for maintenance under special circumstances, the sector-shaped shielding plate 907 shields the top thereof, to a certain extent avoiding rainwater from entering the interior of the cabinet body 1.

[0026] The grooved ejector rod 901 is located on the movement track of the sliding door 604. The positioning straight rod is located on the movement track of the arc groove of the grooved ejector rod 901. The pin slot 903 is located on the movement track of the bolt 902. The deflecting ejector rod 905 is located on the movement track of the cylindrical button 904. The grooved ejector rod 901 is located on the movement track of the deflecting ejector rod 905. The reciprocating ejector rod is located on the movement track of the grooved ejector rod 901. The traction hook 906 is located on the movement track of the reciprocating ejector rod. The hook groove is located on the movement track of the traction hook 906. A second return spring is arranged between the bolt 902 and the cabinet body 1. The anti-misoperation device avoids the cabinet door 2 being opened due to improper operation, and as much as possible ensures that the cabinet door 2 can be opened only under special circumstances.

[0027] During operation: When it rains outside, the rainwater slides down to both sides under the action of gravity when it reaches the top of the inclined top surface 4 and then gathers in the water collecting channel 5. The rainwater in the water collecting channel 5 is collected into the water collecting container 602 through the water collecting hose 601 under the action of gravity. When the weight of the rainwater collected in the water collecting container 602 reaches a certain threshold, the entire water collecting container 602 slides downward under the action of gravity to compress the return spring, and the sliding of the water collecting container 602 drives the rack one to slide downward together. The downward sliding of the rack one drives the gear one to rotate. The rotation of the gear one drives the gear two to rotate through the gear rotating shaft 603. The rotation of the gear two drives the rack two to slide downward. The downward sliding of the rack two drives the sliding door 604 to slide downward together. After the sliding door 604 slides downward, the drying plate 605 is exposed to the air to dry the air inside the cabinet body 1. At the same time, when the sliding door 604 slides downward, the switch conductor one 606 rotates clockwise under the rebounding force of the scroll spring one. After the switch conductor one 606 rotates, its rear end disengages from the fan switch one to turn off the cooling fan 8. At the same time, the switch conductor two 608 rotates counterclockwise under the rebounding force of the scroll spring two. After the switch conductor two 608 rotates, its front end contacts the fan switch two, and since the initial position of the fan switch three is on, the rotation of the switch conductor two 608 starts the drying fan 607. It realizes that when it rains outside, the drying plate 605 is exposed to the air for drying while the intake fan is switched to the drying fan 607. Since the drying fan 607 is close to the drying plate 605, the air entering from the outside by the drying fan 607 will first pass through the drying plate 605 and then enter the cabinet body 1, thus realizing timely drying of the air entering the cabinet body 1, avoiding the cooling fan 8 from introducing humid air from the outside, improving the moisture-proof effect inside the device. At the same time, the downward sliding of the water collecting container 602 drives the telescopic lever two 706 to rotate, thus driving the fan baffle 705 to slide upward, realizing the protection of the air inlet of the cooling fan 8 while turning off the cooling fan 8 when it rains outside.

[0028] When the external rainfall gradually increases until another larger threshold, the downward sliding distance of the water collection container 602 increases, which causes the downward sliding distance of the sliding door 604 to increase. At the same time, the sliding of the sliding door 604 drives the downward pressure pulley 701 to slide downward together. When the downward pressure pulley 701 slides downward, the circumferential surface of its pulley contacts the inclined surface of the trapezoidal top block, thereby driving the trapezoidal top block to slide to the right. The sliding of the trapezoidal top block to the right pushes the drying plate 605 to slide to the right together. When the drying plate 605 slides to the right, its top drives the reversing push rod to rotate counterclockwise through contact. The rotation of the reversing push rod drives the bidirectional conductor 703 to slide to the left. After the bidirectional conductor 703 slides to the left, its right side is separated from the fan switch three and its left side contacts the fan switch four, thus realizing the closing of the drying fan 607 and the starting of the internal circulation fan 702. At the same time, the sliding of the drying plate 605 drives the contact expansion lever one 704 to rotate counterclockwise through contact. The rotation of the expansion lever one 704 causes its right side to contact the bottom of the fan baffle 705, thereby driving the fan baffle 705 to slide upward. After the fan baffle 705 slides, it blocks the air inlet of the drying fan 607, thus preventing external rainwater from entering the cabinet 1 through the air inlet. At the same time, after switching the fan to the internal circulation fan 702, the air inside the cabinet 1 is circulated and dried to prevent internal dampness caused by external rain to the greatest extent. At the same time, since the air inlets are all closed, heat accumulates inside the cabinet 1. At this time, the rainwater inside the water collection container 602 flows into the cabinet 1 through the water cooling pipe 707 to cool the components inside, realizing internal circulation drying inside the device without reducing the internal heat dissipation effect.

[0029] At the same time, when the sliding door 604 slides downward to a certain distance, its bottom contacts the rear end of the slotted top rod 901 and drives the slotted top rod 901 to slide forward. The sliding of the slotted top rod 901 drives it to slide to the left by contacting the latch 902. After the latch 902 slides, its side contacts the inner wall of the pin groove 903. Since the pin groove 903 is fixedly installed at the rear of the cabinet door 2, the cabinet door 2 is self-locked by the latch 902 and the pin groove 903 when it rains outside, avoiding the cabinet door 2 from being locked due to the The wind and other factors cause the cabinet door 2 to open, resulting in water entering the interior, further improving the safety and stability of the device in extreme weather. If an emergency occurs, such as when maintenance is required on a rainy day, the maintenance personnel press the cylindrical button 904 to slide it backward. The sliding of the cylindrical button 904 drives it to slide upward by contacting the deflection push rod 905. Since the movement trajectory of the inner wall of the arc groove of the fixed slotted push rod 901 contacts the circumferential surface of the positioning straight rod, when the slotted push rod 901 slides forward a certain distance, the positioning straight rod no longer limits it, that is, the slotted push rod 901 can rotate, then the top of the deflection push rod 905 drives it to deflect upward by contacting the bottom of the slotted push rod 901. After the slotted push rod 901 is deflected, its front end is out of contact with the rear end of the latch pin 902. After the contact is broken, the latch pin 902 returns to its initial position under the rebound force of the reset spring 2 and breaks contact with the pin groove 903, that is, it contacts the self-locking state of the cabinet door 2. The bottom of the reciprocating top rod is touched to drive it to slide upward. During the upward sliding process of the reciprocating top rod, it is driven to rotate by contacting the bottom of the traction hook 906. After the traction hook 906 rotates, its top contacts the rear end of the hook groove. At this time, when the cabinet door 2 is opened, the cabinet door 2 drives the hook groove and the fan-shaped baffle 907 to rotate together through the traction hook 906, that is, the fan-shaped baffle 907 pops out to shelter from rain when maintenance is carried out under special circumstances, thereby avoiding water entering the cabinet body 1 during maintenance and causing damage to internal components.

[0030] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An outdoor power cabinet with remote monitoring function, including a cabinet body, characterized in that: A cabinet door is rotatably installed at the front end of the cabinet body. A bottom support is fixedly installed at the bottom of the cabinet body. An inclined top surface is fixedly installed at the top of the cabinet body. A water collection channel is fixedly installed on the side surface of the inclined top surface. A water collection hose is fixedly connected to the bottom of the water collection channel. A water collection container is slidably installed on the side surface of the cabinet body. A gear rotating shaft penetrates through the side surface of the cabinet body in a rotating manner. A drying box is arranged inside the cabinet body. A sliding door is slidably installed on the side surface of the drying box. A drying plate is slidably installed at the bottom inside the drying box. A switch conductor one is rotatably installed on the inner side surface of the cabinet body. A drying fan is arranged on the side surface of the cabinet body. A switch conductor two is rotatably installed on the inner side surface of the cabinet body. A heat dissipation fan is arranged on the side surface of the cabinet body. A detection assembly is arranged inside the cabinet body. The detection assembly includes a detection module and a remote transmission module. A rack one is fixedly installed at the top of the water collection container. A gear one is fixedly installed on the right side of the gear rotating shaft. A gear two is fixedly installed on the left side of the gear rotating shaft. A rack two is fixedly installed at the rear of the sliding door.

2. The outdoor power cabinet with remote monitoring function according to claim 1, characterized in that: The gear one meshes with the rack one, and the gear two meshes with the rack two. A fan switch one, a fan switch two, and a fan switch three are arranged on the right inner wall of the cabinet body. The fan switch one is electrically connected to the heat dissipation fan. The fan switch two and the fan switch three are electrically connected to the drying fan. A return spring is arranged between the water collection container and the cabinet body. A scroll spring one is arranged between the switch conductor one and the cabinet body. A scroll spring two is arranged between the switch conductor two and the cabinet body.

3. The outdoor power cabinet with remote monitoring function according to claim 2, characterized in that: A trapezoidal top block is fixedly installed on the left side of the drying plate. A pressing pulley is fixedly installed at the front end of the sliding door. An internal circulation fan is fixedly installed at the top inside the drying box. A fan switch four is arranged on the right side of the internal circulation fan. A two-way conductor is slidably installed at the top inside the drying box. A reversing push rod is rotatably installed at the bottom of the two-way conductor. The reversing push rod is rotatably installed at the front part of the inner wall of the drying box through a rotating shaft.

4. The outdoor power cabinet with remote monitoring function according to claim 3, characterized in that: A telescopic lever one penetrates through the right inner wall of the cabinet body in a rotating manner. A fan baffle is slidably installed at the bottom on the right side of the drying fan. A telescopic lever two is rotatably installed on the right side of the cabinet body. The front end of the telescopic lever two is rotatably installed at the rear of the water collection container. A water cooling pipe is fixedly connected to the bottom of the water collection container.

5. The outdoor power cabinet with remote monitoring function according to claim 4, characterized in that: The trapezoidal top block is located on the movement track of the pressing pulley. The fan switch three is electrically connected to the drying fan. The fan switch four is electrically connected to the internal circulation fan. The reversing push rod is located on the movement track of the drying plate. The fan baffle is located on the movement track of the telescopic lever one. The fan baffle is located on the movement track of the telescopic lever two.

6. The outdoor power cabinet with a remote monitoring function according to claim 5, wherein: A grooved ejector rod is slidably installed on the right inner wall of the cabinet body. An arc-shaped groove is formed at the top of the grooved ejector rod. A positioning straight rod is fixedly installed on the right inner wall of the cabinet body. A bolt is slidably installed at the front part of the cabinet body. A bolt groove is fixedly installed at the rear of the cabinet door.

7. The outdoor power cabinet with remote monitoring function according to claim 6, characterized in that: A cylindrical button penetrates through the front end of the cabinet door in a sliding manner. A deflecting ejector rod is slidably installed on the right inner wall of the cabinet body. A reciprocating ejector rod is slidably installed on the right inner wall of the cabinet body. A traction hook is rotatably installed at the top of the rear end of the cabinet door. A sector-shaped shutter is rotatably installed at the top of the inner wall of the cabinet body. A hook groove is fixedly installed at the bottom of the sector-shaped shutter.

8. The outdoor power cabinet with remote monitoring function according to claim 7, characterized in that: The grooved ejector rod is located on the movement track of the sliding door, the positioning straight rod is located on the movement track of the arc-shaped groove of the grooved ejector rod, the pin slot is located on the movement track of the bolt, the deflecting ejector rod is located on the movement track of the cylindrical button, the grooved ejector rod is located on the movement track of the deflecting ejector rod, the reciprocating ejector rod is located on the movement track of the grooved ejector rod, the towing hook is located on the movement track of the reciprocating ejector rod, the hook slot is located on the movement track of the towing hook, and a second return spring is arranged between the bolt and the cabinet body.

Citation Information

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