A remotely controlled intelligent ring main cabinet with explosion-proof function
By introducing explosion-proof mechanisms and dehumidification mechanisms into the intelligent ring cage, the problem of short condensation time of inert gas is solved, efficient condensation and explosion-proof cooling are achieved, and the explosion-proof performance of the device is enhanced and the safety in rainy and snowy weather is safe.
Patent Information
- Application Number
- CN202210784101.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-28
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2042-06-28
AI Technical Summary
The existing intelligent ring network cabinets have problems with short condensation time and poor effect in the explosion-proof function, which affects the practicality of the device.
A remotely controlled intelligent ring cage is designed, including an explosion-proof mechanism, a protective mechanism and a dehumidification mechanism. Through the cooperation of exhaust components and circulation components, efficient circulating condensation of inert gas and explosion-proof cooling in the cabinet body are achieved. In rainy and snowy weather, electric push rods and flexible connectors are used to prevent rainwater from penetration, and a dehumidification mechanism is set to keep the inside of the cabinet body dry.
It improves the condensation effect of inert gas, extends the cooling time, enhances explosion-proof performance, avoids safety hazards in rainwater penetration and humid environments, and improves the practicality and safety of the device.
Smart Images

Figure CN114937935B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent ring network boxes, and in particular to a remotely controlled intelligent ring network box with explosion-proof function. Background Art
[0002] A ring main box is a group of electrical transmission and distribution equipment installed in a metal or non-metallic insulating cabinet or made into an assembled interval ring main power supply unit. Its core parts use load switches and fuses. It has the advantages of simple structure, small size and low price, as well as the ability to improve power supply parameters and performance as well as power supply safety. It is widely used in distribution stations and box-type substations in load centers such as urban residential areas, high-rise buildings, large public buildings and factories and enterprises.
[0003] Based on the above, the inventors have found the following problems. For example, an intelligent ring network cabinet with explosion-proof function and a method of using the same disclosed in the specification relate to the technical field of intelligent ring network cabinets, solve the problem that some outdoor ring network cabinets do not have explosion-proof function when in use, so that the ring network cabinet may have electrical explosion caused by high temperature or electric sparks, which reduces the safety of the ring network cabinet when in use. The invention relates to the technical field of intelligent ring network cabinets, especially an intelligent ring network cabinet with explosion-proof function and a method of using the same, including an intelligent ring network cabinet, a supporting device, a protective device and an explosion-proof device. The inner side of the intelligent ring network cabinet is provided with a supporting device, the front end of the intelligent ring network cabinet is hinged with a sealing door, the outer side of the intelligent ring network cabinet is provided with a protective device, and the rear end of the intelligent ring network cabinet is provided with an explosion-proof device. In the present invention, by setting a condenser , air pump and inert gas tank. This arrangement cooperates with the connection between the air pump and the condenser, the connection between the bottom end of the tee and the screw sleeve, and the spiral connection between the screw sleeve and the head of the inert gas tank. When the device is used, the cooled inert gas can be circulated and pumped into the intelligent ring network cabinet, thereby having a good cooling and flame retardant effect on the device, avoiding the occurrence of electrical explosions caused by high temperature or electric sparks to the greatest extent, playing a good explosion-proof role, and ensuring the safety of the device during use. In this invention patent, the top of the air pump is connected to the condenser through a connecting pipe, and there is a problem of short condensation time and poor effect of the extracted inert gas. At the same time, in this invention, the inert gas is discharged and extracted through the tee pipe, and a part of the just-exhausted gas will be directly drawn back, which reduces the circulating cooling effect of the inert gas and affects the practicality of the device. Summary of the Invention
[0004] In response to the shortcomings of the existing technology, the present invention provides a remote-controlled intelligent ring network box with explosion-proof function, which has the advantages of good explosion-proof effect, etc., and solves the problems of short condensation time and poor effect of the extracted inert gas in the existing intelligent ring network cabinet with explosion-proof function.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a remotely controlled intelligent ring network box with explosion-proof function, comprising a base, a box body fixed to the upper surface of the base, an electrical cabinet fixed to the inner bottom wall of the box body, an explosion-proof mechanism provided on the inner bottom wall of the electrical cabinet, an installation box fixed to the upper surface of the box body, a protective mechanism provided on the inner bottom wall of the installation box, and a dehumidification mechanism provided on the lower surface of the installation box;
[0006] The explosion-proof mechanism includes an exhaust component and a circulation component, the exhaust component includes an explosion-proof frame fixed to the inner bottom wall of the electrical cabinet, an air box is fixed to the inner bottom wall of the explosion-proof frame, the upper surface of the air box is connected to an exhaust pipe, the left end of the exhaust pipe is connected to an exhaust pump, the air outlet end of the exhaust pump is connected to an air supply pipe, the right end of the air supply pipe is connected to a control valve, the lower surface of the control valve is connected to a connecting pipe, an air guide pipe is fixed between the left and right inner walls of the electrical cabinet, and the lower surface of the air guide pipe is connected to an exhaust pipe;
[0007] The protective mechanism includes an electric push rod fixed to the inner bottom wall of the installation box, the output shaft of the electric push rod passes through and extends to the top of the installation box and is fixed with a flexible connector, adjustment plates are fixed on the left and right sides of the flexible connector, telescopic rods are fixed to the inner bottom wall of the installation box and on the left and right sides of the electric push rod, the top ends of the two telescopic rods are respectively fixedly connected to the lower surfaces of the two adjustment plates, and two articulated frames are fixed to the upper surface of the installation box, and the upper surfaces of the two articulated frames are respectively fixedly connected to the lower surfaces of the two adjustment plates.
[0008] Furthermore, the explosion-proof frame and the air box are both in the shape of a hollow rectangular parallelepiped, the front of the air box is connected to an inflation connector, and the number of the exhaust pipes is no less than two and is evenly distributed on the lower surface of the air duct.
[0009] Furthermore, the circulation component includes a circulation fan fixed on the top wall of the explosion-proof frame, an air guide hood is fixed to the air inlet end of the circulation fan, an air duct is fixed to the air outlet end of the circulation fan, the bottom end of the air duct is connected to a gas condenser, and the lower surface of the gas condenser is connected to the air box through a one-way tube.
[0010] Furthermore, the right side of the gas condenser is connected to a condensed water discharge pipe, and the other end of the condensed water discharge pipe passes through and extends to the outside of the electrical cabinet.
[0011] Furthermore, a hydrophobic plate is fixed on the upper surface of the two adjustment plates, and the size of the hydrophobic plate is equal to that of the adjustment plate.
[0012] Furthermore, the dehumidification mechanism includes a drying component and an insulating component, the drying component includes a drying fan fixed on the lower surface of the installation box, the air inlet end of the drying fan is fixed with an air inlet pipe, the air outlet end of the drying fan is fixed with an air supply pipe, the right end of the air supply pipe is connected to a drying box, the interior of the drying box is fixed with drying cotton, and the right side of the drying box is connected to an exhaust pipe.
[0013] Furthermore, a partition is fixed between the left and right inner walls of the box body, two fixing holes are opened on the lower surface of the partition, and the air inlet pipe and the air exhaust pipe are respectively located inside the two fixing holes.
[0014] Furthermore, the insulating assembly includes an insulating layer fixed to the outside of the box, and a protective plate is fixed to the inner peripheral wall of the box.
[0015] Furthermore, a heat dissipation outlet is opened on the right inner wall of the box body, a blocking frame is fixed between the four inner walls of the heat dissipation outlet, and a filter is fixed between the four inner walls of the heat dissipation outlet and on the left side of the blocking frame.
[0016] Compared with the existing technology, the technical solution of this application has the following beneficial effects:
[0017] 1. The remote-controlled intelligent ring network box with explosion-proof function is equipped with an explosion-proof mechanism. Through the cooperation between the exhaust component and the circulation component, the inert gas can be extracted and discharged from the top, so that it falls to fill the entire cabinet, which saves filling time and improves the explosion-proof effect. After the inert gas falls to the bottom and fills the cabinet, the circulation mechanism extracts the gas into the gas condenser. After the gas is completely cooled, it returns to the gas box and is extracted and discharged again. The cooling time is long and the condensation effect is good, which is convenient for circulation explosion-proof cooling in the electrical cabinet.
[0018] 2. The remote-controlled intelligent ring network box with explosion-proof function is equipped with a protective mechanism. When encountering rainy and snowy weather, the electric push rod is used to push the flexible connector to change its angle, so that rainwater will not accumulate on the top of the box, avoiding the accumulation of rainwater in rainy and snowy weather and infiltration into the box, causing safety hazards. At the same time, a dehumidification mechanism is set up to dry and dehumidify the air inside the box, avoiding the generation of moisture and water accumulation inside the box, which is convenient for the use of the intelligent ring network box in humid environments. The insulating component prevents the leakage inside the box from being transmitted to the box and causing harm to the surrounding people, and reduces the damage to the box in the event of an internal explosion, thereby increasing the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the structure of the present invention;
[0020] Figure 2 This is a schematic diagram of the explosion-proof mechanism of the present invention;
[0021] Figure 3 This is a schematic diagram of the explosion-proof mechanism circulation assembly of the present invention;
[0022] Figure 4 Schematic diagram of the protection mechanism of the present invention;
[0023] Figure 5 Schematic diagram of the dehumidification mechanism of the present invention;
[0024] Figure 6 This is a schematic diagram of the drying component of the dehumidification mechanism of the present invention.
[0025] In the figure: 1 base, 2 box, 3 electrical cabinet, 4 explosion-proof mechanism, 401 explosion-proof frame, 402 gas box, 403 exhaust pipe, 404 exhaust pump, 405 gas supply pipe, 406 control valve, 407 connecting pipe, 408 air duct, 409 exhaust pipe, 410 circulation fan, 411 air duct, 412 air duct, 413 gas condenser, 5 installation box, 6 protection mechanism, 601 electric push rod, 602 flexible connector, 603 adjustment plate, 604 telescopic rod, 605 articulated frame, 606 hydrophobic plate, 7 dehumidification mechanism, 701 drying fan, 702 air inlet pipe, 703 air supply pipe, 704 drying box, 705 drying cotton, 706 exhaust pipe, 707 partition, 708 insulation layer, 709 protection plate, 710 heat dissipation vent, 711 blocking frame, 712 filter. DETAILED DESCRIPTION
[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0027] See also Figure 1 In this embodiment, a remote-controlled intelligent ring network box with explosion-proof function includes a base 1, which is used for installation and fixation between the ground, etc. A box body 2 is fixed on the upper surface of the base 1, an electrical cabinet 3 is fixed on the inner bottom wall of the box body 2, and an explosion-proof mechanism 4 is provided on the inner bottom wall of the electrical cabinet 3. An installation box 5 is fixed on the upper surface of the box body 2, and a protective mechanism 6 is provided on the inner bottom wall of the installation box 5. A dehumidification mechanism 7 is provided on the lower surface of the installation box 5.
[0028] It should be noted that the remote-controlled intelligent ring network box with explosion-proof function can be remotely controlled to adjust, control and detect the intelligent ring network box, and it is an existing technology and will not be described in detail elsewhere in this article.
[0029] See also Figure 2-3In order to prevent explosion and cool down the inside of the intelligent ring network box, the explosion-proof mechanism 4 in this embodiment includes an exhaust component and a circulation component. The exhaust component includes an explosion-proof frame 401 fixed to the inner bottom wall of the electrical cabinet 3. The inner bottom wall of the explosion-proof frame 401 is fixed with an air box 402 for storing inert gas to prevent the inert gas from leaking. The upper surface of the air box 402 is connected with an exhaust pipe 403, and the left end of the exhaust pipe 403 is connected with an exhaust pump 404. During the use of the electrical sealing inside the electrical cabinet 3, the exhaust pump 404 is started to extract the inert gas inside the air box 402 through the exhaust pipe 403. The air outlet end of the exhaust pump 404 is connected with an air supply pipe 405, and the right end of the air supply pipe 405 is connected to the There is a control valve 406 for adjusting the opening and closing of the valve port and the start and stop of the exhaust pump 404 to keep the inert gas inside the electrical cabinet 3 filled. The lower surface of the control valve 406 is connected to a connecting pipe 407. An air duct 408 is fixed between the left and right inner walls of the electrical cabinet 3. The extracted inert gas flows through the air supply pipe 405 via the exhaust pipe 403. The control valve 406 is opened to discharge the inert gas from the inside of the air duct 408. The inert gas further enters the air duct 408 and is discharged to the inside of the electrical cabinet 3 at the same time through multiple exhaust pipes 409. The inert gas is discharged to fill the entire cabinet. The lower surface of the air duct 408 is connected to the exhaust pipe 409.
[0030] Among them, the circulation component includes a circulation fan 410 fixed on the top wall of the explosion-proof frame 401, and an air guide hood 411 is fixed to the air inlet end of the circulation fan 410. When the inert gas circulates to dissipate heat, the circulation fan 410 starts, and the air guide hood 411 is used to draw the inert gas at the bottom of the electrical cabinet 3 into the air duct 412, and flows into the interior of the gas condenser 413 through the air duct 412. The air outlet end of the circulation fan 410 is fixed with an air duct 412, and the bottom end of the air duct 412 is connected to the gas condenser 413. This is existing technology and will not be repeated elsewhere in the text. The lower surface of the gas condenser 413 is connected to the air box 402 through a one-way tube.
[0031] In this embodiment, the explosion-proof frame 401 and the air box 402 are both in the shape of a hollow rectangular parallelepiped. The front of the air box 402 is connected to an inflation connector, which is used to facilitate the safe filling of the inert gas inside the air box 402. The number of exhaust pipes 409 is no less than two, and they are evenly distributed on the lower surface of the air guide pipe 408. After the gas condenser 413 condenses the internal inert gas to meet the use requirements, it is discharged back to the air box 402 through a one-way pipe, and then extracted and discharged by the exhaust pump 404 to achieve circulating cooling use. The right side of the gas condenser 413 is connected to a condensate discharge pipe, and the other end of the condensate discharge pipe passes through and extends to the outside of the electrical cabinet 3, and can be connected to the collector, which is used to discharge the condensate separated during the condensation process of the gas condenser 413 to the outside of the box body 2.
[0032] It should be noted that due to the inertness of inert gas and its good insulation effect, the distribution equipment can be isolated from each other and operate stably, without being affected by external conditions and other environments, thus having a good explosion-proof effect.
[0033] See also Figure 4 In order to protect the smart ring network box, the protection mechanism 6 in this embodiment includes an electric push rod 601 fixed to the bottom wall of the installation box 5. When encountering rainy and snowy weather, the electric push rod 601 is started, so that the output shaft extends upward, further pushing the flexible connector 602 to move upward. The output shaft of the electric push rod 601 passes through and extends to the top of the installation box 5 and is fixed with the flexible connector 602. This is a prior art and will not be described elsewhere in the text. Adjustment plates 603 are fixed on both sides of the flexible connector 602. When the flexible connector 602 is connected, both sides drive one side of the adjustment plate 603 to move, and the other side of the adjustment plate 603 is connected to the The articulated frame 605 is fixed and can change its angle when it moves on one side, so that it eventually forms a triangular shape. Telescopic rods 604 are fixed to the inner bottom wall of the installation box 5 and on the left and right sides of the electric push rod 601. The top ends of the two telescopic rods 604 are fixedly connected to the lower surfaces of the two adjustment plates 603 respectively. When rainwater and the like drip onto the top of the ring network box, the hydrophobic plate 606 and the like discharge the water to the ground, preventing rainwater and the like from accumulating above the box body 2 and penetrating into the interior of the box body 2, causing safety hazards. Two articulated frames 605 are fixed to the upper surface of the installation box 5, and the upper surfaces of the two articulated frames 605 are fixedly connected to the lower surfaces of the two adjustment plates 603 respectively.
[0034] In this embodiment, a hydrophobic plate 606 is fixed to the upper surface of each of the two adjustment plates 603 , and the size of the hydrophobic plate 606 is equal to that of the adjustment plate 603 .
[0035] See also Figure 5-6 704 , the dehumidification mechanism 705 is fixed inside the drying box 704. The air inside the drying box 704 passes through the drying cotton 705 to dry the water vapor in the air. The dried air is discharged back to the inside of the drying box 2 through the exhaust pipe 706. Multiple cycles keep the air inside the drying box 2 dry. The right side of the drying box 704 is connected to the exhaust pipe 706.
[0036] Among them, the insulating component includes an insulating layer 708 fixed on the outside of the box body 2. The insulating layer 708 can prevent the leakage inside the box body 2 from being transmitted to the box body 2 and causing harm to the surrounding people. A protective plate 709 is fixed on the inner wall of the box body 2. When an explosion occurs inside the box body 2, the protective plate 709 can reduce the damage to the inside of the box body 2 caused by explosion fragments.
[0037] In this embodiment, a partition 707 is fixed between the left and right inner walls of the box 2, and two fixing holes are provided on the lower surface of the partition 707, and the air inlet pipe 702 and the exhaust pipe 706 are respectively located inside the two fixing holes. A heat dissipation port 710 is provided on the right inner wall of the box 2. During the use of the intelligent ring network box, ventilation is performed through the heat dissipation port 710. A blocking frame 711 is fixed between the four inner walls of the heat dissipation port 710. The blocking frame 711 can prevent mice and the like from entering the interior of the box 2 and affecting the internal components. A filter 712 is fixed between the four inner walls of the heat dissipation port 710 and on the left side of the blocking frame 711. The filter 712 filters out impurities in the air entering the interior of the box 2, making it convenient to use.
[0038] The working principle of the above embodiment is:
[0039] (1) When the interior of the intelligent ring network box is explosion-proof and cooled, inert gas is added to the gas box 402. When the electrical cabinet 3 is in use and the electrical cabinet is sealed, the exhaust pump 404 is started and the inert gas inside the gas box 402 is extracted through the exhaust pipe 403. The extracted inert gas flows through the gas pipe 405 through the exhaust pipe 403, and the control valve 406 is opened to discharge the inert gas into the interior of the air guide pipe 408. The inert gas further enters the air guide pipe 408 and is discharged to the interior of the electrical cabinet 3 through multiple exhaust pipes 409 at the same time. The inert gas is discharged to fill the entire cabinet. When the interior of the electrical cabinet 3 is filled, the control valve 406 is closed and the exhaust pump 404 is stopped. At this time, the interior of the electrical cabinet 3 is filled with inert gas, and the insulation effect is good because the inert gas is inactive. , so that the power distribution equipment can be well and stably isolated from each other and operate without being affected by external conditions and other environments, so as to have a good explosion-proof effect. When the inert gas circulates to dissipate heat, the circulating fan 410 is started, and the air guide cover 411 is used to extract the inert gas at the bottom of the electrical cabinet 3 into the air duct 412, and the air flows into the interior of the gas condenser 413 through the air duct 412. After the gas condenser 413 condenses the internal inert gas to meet the use requirements, it is discharged back to the air box 402 through the one-way pipe, and then extracted and discharged by the exhaust pump 404 to achieve cyclic cooling use. At the same time, the exhaust is at the top of the cabinet and the extracted gas is at the bottom of the cabinet, so that the condensed inert gas can be fully cooled, thereby improving the practicality of the device. The inflation connector is convenient for safely filling the inert gas inside the gas box 402.
[0040] (2) When protecting the intelligent ring network box, when encountering rainy and snowy weather, the electric push rod 601 is started, so that the output shaft extends upward, further pushing the flexible connector 602 to move upward. When the flexible connector 602 is connected, both sides drive the adjustment plate 603 to move on one side. The other side of the adjustment plate 603 is fixed to the hinge frame 605. When moving on one side, it can change the angle so that it eventually forms a triangular shape. When rainwater drips onto the top of the ring network box, the hydrophobic plate 606 and the like discharge the water to the ground, preventing rainwater from accumulating on the top of the box 2 and penetrating into the inside of the box 2, causing safety hazards. At the same time, the telescopic rod 604 plays a supporting role, making it convenient for the flexible connector 602 to drive the adjustment plate 603 to move. When dehumidifying the air inside the box 2, the drying fan 701 is started, and the air is discharged through the air inlet pipe 702. The air inside the box 2 is drawn in, flows through the air supply pipe 703 and enters the interior of the drying box 704, and the air inside the drying box 704 is further dried by the drying cotton 705 to dry the water vapor in the air. The dried air is discharged back to the interior of the box 2 through the exhaust pipe 706. Multiple cycles keep the air inside the box 2 dry. The insulating layer 708 can prevent the leakage inside the box 2 from being transmitted to the box 2 and causing harm to the surrounding people. When an explosion occurs inside the box 2, the protective plate 709 can reduce the damage to the interior of the box 2 by the explosion fragments. During the use of the intelligent ring network box, ventilation and heat dissipation are carried out through the heat dissipation port 710, the blocking frame 711 can prevent mice and the like from entering the interior of the box 2 and affecting the internal components, and the filter 712 filters out impurities in the air entering the interior of the box 2, making it easy to use.
[0041] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.
[0042] While 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 these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A remote controlled intelligent ring network box with explosion-proof function, comprising a base (1), characterized in that: A box body (2) is fixed on the upper surface of the base (1), an electrical cabinet (3) is fixed on the inner bottom wall of the box body (2), an explosion-proof mechanism (4) is provided on the inner bottom wall of the electrical cabinet (3), an installation box (5) is fixed on the upper surface of the box body (2), a protection mechanism (6) is provided on the inner bottom wall of the installation box (5), and a dehumidification mechanism (7) is provided on the lower surface of the installation box (5); The explosion-proof mechanism (4) includes an exhaust component and a circulation component. The exhaust component includes an explosion-proof frame (401) fixed to the inner bottom wall of the electrical cabinet (3). An air box (402) is fixed to the inner bottom wall of the explosion-proof frame (401). The upper surface of the air box (402) is connected to an exhaust pipe (403). The left end of the exhaust pipe (403) is connected to an exhaust pump (404). The air outlet end of the exhaust pump (404) is connected to an air supply pipe (405). The right end of the air supply pipe (405) is connected to a control valve (406). The lower surface of the control valve (406) is connected to a connecting pipe (407). An air guide pipe (408) is fixed between the left and right inner walls of the electrical cabinet (3). The lower surface of the air guide pipe (408) is connected to an exhaust pipe (409). The protection mechanism (6) comprises an electric push rod (601) fixed to the inner bottom wall of the installation box (5); the output shaft of the electric push rod (601) passes through and extends to the top of the installation box (5) and is fixed with a flexible connector (602); adjustment plates (603) are fixed on the left and right sides of the flexible connector (602); telescopic rods (604) are fixed to the inner bottom wall of the installation box (5) and on the left and right sides of the electric push rod (601); the top ends of the two telescopic rods (604) are respectively fixedly connected to the lower surfaces of the two adjustment plates (603); two articulated frames (605) are fixed to the upper surface of the installation box (5); the upper surfaces of the two articulated frames (605) are respectively fixedly connected to the lower surfaces of the two adjustment plates (603).
2. The remote-controlled intelligent ring network box with explosion-proof function according to claim 1, characterized in that: The explosion-proof frame (401) and the air box (402) are both in the shape of a hollow cuboid. The front of the air box (402) is connected to an inflation connector. The number of the exhaust pipes (409) is not less than two and is evenly distributed on the lower surface of the air guide pipe (408).
3. The remote-controlled intelligent ring network box with explosion-proof function according to claim 1, characterized in that: The circulation assembly comprises a circulation fan (410) fixed on the inner top wall of the explosion-proof frame (401); an air guide cover (411) is fixed to the air inlet end of the circulation fan (410); an air duct (412) is fixed to the air outlet end of the circulation fan (410); the bottom end of the air duct (412) is connected to a gas condenser (413); and the lower surface of the gas condenser (413) is connected to the air box (402) through a one-way pipe.
4. The remote-controlled intelligent ring network box with explosion-proof function according to claim 3, characterized in that: The right side of the gas condenser (413) is connected to a condensed water discharge pipe, and the other end of the condensed water discharge pipe passes through and extends to the outside of the electrical cabinet (3).
5. The remote-controlled intelligent ring network box with explosion-proof function according to claim 1, characterized in that: A hydrophobic plate (606) is fixed on the upper surface of the two adjustment plates (603), and the size of the hydrophobic plate (606) is equal to that of the adjustment plate (603).
6. The remote-controlled intelligent ring network box with explosion-proof function according to claim 1, characterized in that: The dehumidification mechanism (7) includes a drying component and an insulating component. The drying component includes a drying fan (701) fixed on the lower surface of the installation box (5). The air inlet end of the drying fan (701) is fixed with an air inlet pipe (702), and the air outlet end of the drying fan (701) is fixed with an air supply pipe (703). The right end of the air supply pipe (703) is connected to a drying box (704). Dry cotton (705) is fixed inside the drying box (704). The right side of the drying box (704) is connected to an exhaust pipe (706).
7. The remote-controlled intelligent ring network box with explosion-proof function according to claim 6, characterized in that: A partition (707) is fixed between the left and right inner walls of the box body (2), and two fixing holes are provided on the lower surface of the partition (707), and the air inlet pipe (702) and the air exhaust pipe (706) are respectively located inside the two fixing holes.
8. The remote-controlled intelligent ring network box with explosion-proof function according to claim 6, characterized in that: The insulating assembly comprises an insulating layer (708) fixed on the outside of the box body (2), and a protective plate (709) is fixed on the inner peripheral wall of the box body (2).
9. The remote-controlled intelligent ring network box with explosion-proof function according to claim 8, characterized in that: A heat dissipation opening (710) is provided on the right inner wall of the box body (2), a blocking frame (711) is fixed between the four inner walls of the heat dissipation opening (710), and a filter (712) is fixed between the four inner walls of the heat dissipation opening (710) and on the left side of the blocking frame (711).
Citation Information
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