A comprehensive distribution box

By installing a motor-driven scraper and fan system in the distribution box, combined with moisture-absorbing cotton and desiccant, the problem of condensation removal at the top of the distribution box is solved, preventing malfunctions caused by water vapor backflow and water seepage coupling, thus achieving the protective effect of the distribution box.

CN121149810BActive Publication Date: 2026-06-26ZHEJIANG YONGLANG ELECTRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-13
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

Existing outdoor distribution boxes lack condensation removal devices at the top when protecting electrical components, leading to backflow of water vapor, condensation and water seepage coupling, and causing device failure.

Method used

The motor drives the rotating shaft to rotate, which in turn drives the bidirectional lead screw and scraper to move via a belt pulley. This, combined with the moisture-absorbing cotton, absorbs moisture, and the fan accelerates air circulation. The desiccant also absorbs moisture, preventing condensation and dripping.

Benefits of technology

It effectively prevents condensation from dripping and damaging electrical appliances, suppresses moisture condensation and backflow caused by temperature differences between inside and outside, prevents device failure, and ensures a dry environment inside and outside the distribution box.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a comprehensive distribution box, the front side of the dehumidification assembly is provided with a driving assembly for driving the dehumidification assembly to rotate, the front side of the driving assembly is provided with a humidity detection sensor for detecting the humidity in the distribution box body, the scraping device comprises an adjusting assembly arranged in the distribution box body and connected with the driving assembly, and a scraping assembly for scraping the condensation on the top cover is threadedly connected to the rod body of the adjusting assembly; thus, the rotation of the rotating shaft is driven by the motor, the transmission belt of pulleys one and four drives the bidirectional screw rod to rotate, the condensation on the scraping plate is effectively removed, meanwhile, the transmission of pulleys two and three drives the transmission shaft to synchronously rotate, the fan is driven to accelerate the air circulation in the box, and the moisture is discharged; through the multi-stage protection mechanism, the condensation directly dropping to damage the electrical appliances is avoided, the moisture condensation and backflow phenomenon caused by the temperature difference between the inside and the outside is inhibited, and the equipment failure caused by the condensation and water seepage coupling is effectively prevented.
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Description

Technical Field

[0001] This invention relates to the field of distribution boxes, and in particular to a comprehensive distribution box. Background Technology

[0002] The integrated distribution box is a new type of integrated control box that integrates power distribution, metering, protection, control, and reactive power compensation. It is mainly suitable for three-phase four-wire systems in municipal power distribution, temporary power, industrial and commercial parks, and street light / charging branch lines.

[0003] Existing outdoor distribution boxes generally use stainless steel enclosures and conventional sealing to protect electrical components from short circuits caused by sun exposure and rainwater infiltration, while drainage holes are used to dissipate heat from the distribution box.

[0004] However, when using distribution boxes to protect electrical components, the lack of a device to remove condensation at the top of the distribution box can cause water vapor to backflow due to temperature differences and air pressure fluctuations inside and outside the box, leading to device failure caused by the coupling of condensation and water seepage. Summary of the Invention

[0005] Therefore, this invention proposes an integrated distribution box. A motor drives a rotating shaft, which in turn drives a bidirectional lead screw via pulleys one and four. This causes the threaded sleeve on the scraper to move left and right along the lead screw. Combined with the guiding action of the fixed sleeve on the slide rod, this effectively removes condensation from the top cover, and absorbs moisture through absorbent cotton. Simultaneously, pulleys two and three drive the transmission shaft to rotate synchronously, driving a fan to accelerate air circulation within the box and expel moisture. A partition plate on the inner wall of the box cavity can hold a desiccant to further absorb residual moisture. Through this multi-level protection mechanism, it prevents condensation from directly dripping and damaging electrical appliances, and also suppresses moisture condensation and backflow caused by temperature differences between the inside and outside, effectively preventing equipment failures caused by condensation and water seepage.

[0006] To achieve the above objectives, the present invention proposes an integrated distribution box, comprising a distribution box body, a top cover fixedly installed on the top of the distribution box body, a dehumidification device for dehumidifying the distribution box body, and a scraping device for scraping off condensation on the top cover. The dehumidification device includes a dehumidification component disposed on the distribution box body for dehumidification, a drive component for driving the dehumidification component to rotate disposed on the front side of the dehumidification component, and a humidity detection sensor for detecting the humidity inside the distribution box body disposed on the front side of the drive component. The scraping device includes an adjustment component disposed inside the distribution box body for connecting to the drive component, and a scraping component for scraping off condensation on the top cover is threadedly connected to the rod of the adjustment component.

[0007] In addition, the integrated distribution box proposed above according to this application may also have the following additional technical features:

[0008] Specifically, a partition plate is fixedly installed inside the distribution box body to insulate the distribution box body in conjunction with the top cover, wherein the distribution box body uses a 2.0mm thick material. Made of 304 stainless steel to prevent rust, the top cover and partition form a double-layer heat insulation structure. The partition has grooves to ensure natural convection between the top cover and the partition. Moisture-absorbing cotton is installed at the top of the partition, allowing for the removal of condensation from the top cover using a scraping device and the absorption of moisture by the cotton. A fixing plate for replacing the moisture-absorbing cotton is located on the right end of the distribution box. The fixing plate is bolted to the right end of the distribution box and connected to the right end of the distribution box via a rubber ring to prevent rainwater from entering the distribution box through the gap between the fixing plate and the distribution box. Therefore, when the moisture-absorbing cotton needs to be replaced, it can be quickly removed by loosening the bolts on the fixing plate and replacing the cotton on the partition.

[0009] Specifically, the front and rear ends of the distribution box body are provided with exhaust slots for ventilation and heat dissipation. There are several exhaust slots arranged in a linear array at the front and rear ends of the distribution box body, ensuring ventilation and heat dissipation. Rain covers are fixedly installed on the left and right ends of the distribution box body to protect the exhaust slots from rain, preventing rainwater from entering the distribution box body and causing short circuits. A partition plate for placing desiccant is installed inside the cavity of the distribution box body. The partition plate allows desiccant to be placed on the inner wall of the cavity, absorbing moisture from the distribution box body. The partition plate is bolted to the inner wall of the distribution box body.

[0010] Specifically, the front end of the distribution box body is movably connected to three doors for sealing the distribution box body. The three doors are arranged in a linear array on the front side of the distribution box body. The panels of the three doors have three-cavity labyrinth folded edges, and composite rubber strips are fitted around the four sides of the doors to achieve sealing of the distribution box body. A three-section hinge + three-point door lock + anti-pry structure is set between the door and the distribution box body: three-section stainless steel hinges, a special three-point positioning door lock, a rainproof protective cover for the lock cylinder, and hidden anti-pry ribs built into the door edge. The door and the distribution box body, and the movable panel and the distribution box body are electrically equipotentially connected by 6mm² copper braided strips.

[0011] Specifically, the drive assembly includes a rotating shaft that passes through the main body of the distribution box for rotation. The rotating shaft is connected to the main body of the distribution box via a bearing, thus facilitating the rotation of the shaft. A motor for driving the rotation of the rotating shaft is fixedly installed at the left end of the rotating shaft. The output shaft of the motor is connected to the rotating shaft via a coupling. The motor is connected to a humidity detection sensor, which has its own processor. Therefore, when the humidity detection sensor detects excessive humidity inside the distribution box, it can drive the motor to work.

[0012] Specifically, a pulley 1 for driving the adjustment component to rotate is fixedly installed on the shaft of the rotating shaft, and the pulley 1 is located outside the main body of the distribution box. A pulley 2 for driving the scraping component to rotate is fixedly installed on the shaft of the rotating shaft, and the pulley 2 is located inside the cavity of the main body of the distribution box.

[0013] Specifically, the dehumidification component includes a fan mounted on the main body of the distribution box to accelerate the airflow of the main body of the distribution box, a drive shaft for driving the fan to rotate is fixedly mounted on the right end of the fan, and a pulley three for connecting with pulley two via a belt is fixedly mounted on the right end of the drive shaft.

[0014] Specifically, a support ring is fitted onto the shaft of the drive shaft to support it, and a support plate is fixedly installed on the ring to support the support ring. When the humidity sensor detects excessive moisture inside the distribution box, the motor drives the shaft to rotate, connecting pulley one to the scraping device via a belt. This allows the scraping device to remove condensation from the top cover, preventing condensation dripping and causing short circuits in the electrical components inside the distribution box. Simultaneously, the belt connection between pulley two and pulley three allows the drive shaft to rotate synchronously with the shaft, driving the fan to operate and accelerating air circulation inside the distribution box, thus expelling moisture. Furthermore, a desiccant can be placed on the inner wall of the cavity of the distribution box using a partition plate, thereby absorbing moisture from inside the distribution box.

[0015] Specifically, the adjustment assembly includes a bidirectional lead screw disposed within the distribution box body for driving the scraping assembly to reciprocate left and right. The left and right ends of the bidirectional lead screw are connected to the box body via bearings, facilitating its rotation. A pulley four is fixedly mounted on the left end of the bidirectional lead screw and connected to pulley one via a belt. Therefore, when the motor drives the shaft to rotate, and with the belt connection between pulley one and pulley four, the bidirectional lead screw can rotate, thus controlling the scraping assembly to reciprocate left and right along the bidirectional lead screw, thereby scraping away the condensation condensed on the top cover. A sliding rod is also provided within the distribution box body to assist the movement of the scraping assembly.

[0016] Specifically, the scraping assembly includes a scraper mounted on the absorbent cotton for scraping the top cover. A threaded sleeve is fixedly installed at the front end of the scraper for threaded connection with a bidirectional lead screw, and a fixed sleeve is fixedly installed at the rear end of the scraper for mounting on a slide rod. Therefore, when the motor drives the rotating shaft to rotate, and the belt connection between pulley one and pulley four drives the bidirectional lead screw to rotate, the threaded sleeve on the scraper can move left and right along the bidirectional lead screw, while the fixed sleeve on the scraper moves along the slide rod. This allows the condensation on the top cover to be scraped off, and the absorbent cotton absorbs the moisture from the scraped condensation. This prevents condensation from dripping onto the electrical components of the distribution box.

[0017] In summary, the present invention provides an integrated power distribution box with the following beneficial effects:

[0018] By incorporating a dehumidification and scraping device, when the humidity sensor detects excessive moisture inside the distribution box, a motor is driven to rotate the shaft. This, coupled with the belt connection between pulleys one and four, drives a double-acting screw. This causes the threaded sleeve on the scraper to move left and right along the screw, while the fixed sleeve on the scraper moves along a sliding rod. This effectively scrapes away the condensation on the top cover, and the absorbent cotton absorbs the moisture from the scraped condensation. This prevents condensation from dripping onto the surface. On the electrical components of the distribution box body; simultaneously, with the belt connection between pulley two and pulley three, the drive shaft can rotate synchronously with the rotating shaft, which can drive the fan to work, thereby accelerating the air circulation inside the distribution box body and expelling moisture from the distribution box body; at the same time, the desiccant can be placed on the inner wall of the cavity of the distribution box body using the partition plate, thus absorbing moisture inside the distribution box body; this prevents water vapor backflow caused by temperature difference and air pressure fluctuation inside and outside the distribution box body, which can lead to condensation and water seepage coupling and device failure.

[0019] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0020] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, wherein:

[0021] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 This is a partial sectional view of the power distribution box body of the present invention;

[0023] Figure 3 This is a schematic diagram of the dehumidification device of the present invention;

[0024] Figure 4 This is a schematic diagram of the drive component structure of the present invention;

[0025] Figure 5 This is a schematic diagram of the dehumidification component structure of the present invention;

[0026] Figure 6 This is a schematic diagram of the scraping device of the present invention;

[0027] Figure 7 For the present invention Figure 6 Enlarged view of point A in the middle.

[0028] Explanation of reference numerals in the attached figures:

[0029] 100. Distribution box body; 001. Box door; 101. Top cover; 102. Partition; 103. Moisture-absorbing cotton; 104. Fixing plate; 105. Exhaust duct; 106. Rain cover; 107. Partition plate; 200. Dehumidification device; 210. Drive assembly; 211. Motor; 212. Shaft; 213. Pulley 1; 214. Pulley 2; 220. Dehumidification assembly; 221. Drive shaft; 222. Pulley 3; 223. Support ring; 224. Support plate; 225. Fan; 230. Humidity detection sensor; 300. Scraping device; 310. Adjustment assembly; 311. Two-way lead screw; 312. Pulley 4; 313. Slide rod; 320. Scraping assembly; 321. Scraper; 322. Threaded sleeve; 323. Fixing sleeve. Detailed Implementation

[0030] Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the invention, and should not be construed as limiting the invention. Rather, embodiments of the invention include all variations, modifications, and equivalents falling within the spirit and scope of the appended claims.

[0031] The following description, in conjunction with the accompanying drawings, describes an embodiment of the integrated power distribution box of the present invention.

[0032] like Figures 1-7As shown, an embodiment of the present invention provides a comprehensive distribution box, which may include a distribution box body 100. A top cover 101 is fixedly installed on the top of the distribution box body 100. A dehumidification device 200 for dehumidifying the distribution box body 100 is provided inside the distribution box body 100, and a scraping device 300 for scraping off condensation on the top cover 101 is provided inside the distribution box body 100. The dehumidification device 200 includes a dehumidification component 220 disposed on the distribution box body 100 for dehumidification, and a device for driving the dehumidification component 220 is disposed on the front side of the dehumidification component 220. The rotating drive assembly 210 has a humidity detection sensor 230 on its front side for detecting the humidity inside the distribution box body 100. The scraping device 300 includes an adjustment assembly 310 installed inside the distribution box body 100 for connecting to the drive assembly 210. A scraping assembly 320 for scraping condensation off the top cover 101 is threaded onto the rod of the adjustment assembly 310. Thus, when the humidity detection sensor 230 detects excessive humidity inside the distribution box body 100, the motor 211 can be driven to rotate the shaft 212. The belt connection between pulley 213 and pulley 312 drives the bidirectional screw 311 to rotate, thus allowing the threaded sleeve 322 on the scraper 321 to move left and right along the bidirectional screw 311. Simultaneously, the fixed sleeve 323 on the scraper 321 moves along the slide rod 313, scraping away the condensation on the condensation top cover 101. The moisture-absorbing cotton 103 absorbs the scraped condensation, preventing it from dripping onto the electrical components of the distribution box body 100. Meanwhile, the belt connection between pulley 214 and the belt... With the belt connection between the three wheels 222, the drive shaft 221 can rotate synchronously with the rotating shaft 212, which can drive the fan 225 to work, thereby accelerating the air circulation inside the distribution box body 100 and expelling moisture from the distribution box body 100. At the same time, the desiccant can be placed on the inner wall of the cavity of the distribution box body 100 by using the partition plate 107, thus absorbing moisture inside the distribution box body 100. This prevents water vapor backflow caused by temperature difference and air pressure fluctuation inside and outside the distribution box body 100, which could lead to condensation and water seepage coupling and device failure.

[0033] In one embodiment of the present invention, such as Figure 2As shown, a partition plate 102 is fixedly installed inside the distribution box body 100 to insulate the distribution box body 100 in conjunction with the top cover 101. The distribution box body 100 is made of 2.0mm 304 stainless steel to prevent rust. The top cover 101 and the partition plate 102 form a double-layer insulation structure. The partition plate 102 has a through groove, which ensures a natural convection channel between the top cover 101 and the partition plate 102. A moisture-absorbing cotton 103 is provided at the top of the partition plate 102. Therefore, the condensation on the top cover 101 can be scraped off by the scraping device 300, and the moisture-absorbing cotton 103 can absorb the moisture. A moisture-absorbing cotton 103 is provided at the right end of the distribution box body 100. The fixing plate 104 is used for replacement. The fixing plate 104 can be fixed to the right end of the distribution box body 100 by bolts. The fixing plate 104 can be connected to the right end of the distribution box body 100 by a rubber ring to prevent rainwater from entering the distribution box body 100 through the gap between the fixing plate 104 and the distribution box body 100. Therefore, when it is necessary to replace the moisture-absorbing cotton 103, the fixing plate 104 can be loosened by unscrewing the bolts and removed, so that the moisture-absorbing cotton 103 on the partition 102 can be quickly replaced.

[0034] Furthermore, the front and rear ends of the distribution box body 100 are provided with exhaust slots 105 for maintaining ventilation and heat dissipation of the distribution box body 100. There are several exhaust slots 105, arranged in a linear array at the front and rear ends of the distribution box body 100. Therefore, the ventilation and heat dissipation of the distribution box body 100 can be ensured by connecting the several exhaust slots 105 at the front and rear ends of the distribution box body 100. Rainproof covers for the exhaust slots 105 are fixedly installed at the left and right ends of the distribution box body 100. The rain cover 106 is used to prevent rainwater from entering the distribution box body 100 along the exhaust channel 105 and causing short circuits in electrical appliances. A partition plate 107 for placing desiccant is provided in the cavity of the distribution box body 100. The desiccant can be placed on the inner wall of the cavity of the distribution box body 100 by the partition plate 107, so as to absorb moisture in the distribution box body 100. At the same time, the partition plate 107 can be fixed to the inner wall of the distribution box body 100 by bolts.

[0035] In one embodiment of the present invention, such as Figure 1As shown, the front end of the distribution box body 100 is movably connected to a door 001 for sealing the distribution box body 100. There are three doors 001, which are arranged in a linear array on the front side of the distribution box body 100. The panels of the three doors 001 have three-cavity labyrinth folded edges, and composite rubber strips are fitted around the four sides of the doors 001 to achieve sealing of the distribution box body 100. A three-section hinge + three-point door lock + anti-pry structure is set between the door 001 and the distribution box body 100: three-section stainless steel hinge, special three-point positioning door lock, lock cylinder with rainproof protective cover, and hidden anti-pry ribs built into the door edge. The door 001 and the distribution box body 100, and the movable panel and the distribution box body 100 are electrically equipotentially connected by a 6mm² copper braided strip.

[0036] In one embodiment of the present invention, such as Figures 3-5 As shown, the drive assembly 210 includes a rotating shaft 212 that passes through the distribution box body 100 for rotation. The rotating shaft 212 can be connected to the distribution box body 100 via bearings, thus facilitating the rotation of the rotating shaft 212. A motor 211 for driving the rotating shaft 212 is fixedly installed at the left end of the rotating shaft 212. The output shaft of the motor 211 is connected to the rotating shaft 212 via a coupling. The motor 211 is connected to a humidity detection sensor 230, which has its own processor. Therefore, when the humidity detection sensor 230 detects that the humidity inside the distribution box body 100 exceeds the standard, it can drive the motor 211 to work.

[0037] Furthermore, a pulley 213 for driving the adjustment assembly 310 to rotate is fixedly installed on the shaft of the rotating shaft 212, and the pulley 213 is located outside the distribution box body 100. A pulley 214 for driving the scraping assembly 320 to rotate is fixedly installed on the shaft of the rotating shaft 212, and the pulley 214 is located inside the cavity of the distribution box body 100.

[0038] Furthermore, the dehumidification component 220 includes a fan 225 mounted on the distribution box body 100 to accelerate the airflow of the distribution box body 100. A drive shaft 221 for driving the fan 225 to rotate is fixedly mounted on the right end of the fan 225. A pulley 222 for connecting to the pulley 214 via a belt is fixedly mounted on the right end of the drive shaft 221.

[0039] Furthermore, a support ring 223 is fitted onto the shaft of the drive shaft 221 to support the drive shaft 221, and a support plate 224 is fixedly installed on the ring of the support ring 223 to support the support ring 223; thus, when the humidity detection sensor 230 detects that the humidity inside the distribution box body 100 exceeds the standard, the motor 211 can be driven to rotate the shaft 212, so that the pulley 213 is connected to the scraping device 300 through the belt, thereby driving the scraping device 300 to scrape off the condensation on the top cover 101. To prevent condensation from dripping and causing short circuits in the electrical components inside the distribution box 100; simultaneously, the belt connection between pulley 214 and pulley 222 allows the drive shaft 221 to rotate synchronously with the rotating shaft 212, which in turn drives the fan 225 to work, thereby accelerating air circulation inside the distribution box 100 and expelling moisture from inside the distribution box 100; at the same time, the partition plate 107 allows desiccant to be placed on the inner wall of the cavity of the distribution box 100, thus absorbing moisture inside the distribution box 100.

[0040] In one embodiment of the present invention, such as Figure 6 and Figure 7 As shown, the adjustment component 310 includes a bidirectional lead screw 311 disposed within the distribution box body 100 for driving the scraping component 320 to move back and forth. The left and right ends of the bidirectional lead screw 311 are connected to the box body 100 via bearings, thus facilitating the rotation of the bidirectional lead screw 311. A pulley 312 is fixedly installed at the left end of the bidirectional lead screw 311 for connecting to pulley 213 via a belt. Therefore, when the motor 211 drives the rotating shaft 212 to rotate, and the belt connection between pulley 213 and pulley 312 drives the bidirectional lead screw 311 to rotate, the scraping component 320 can be controlled to move back and forth along the bidirectional lead screw 311, thereby scraping away the condensation condensed on the top cover 101. A slide rod 313 is disposed within the distribution box body 100 to assist the movement of the scraping component 320.

[0041] Furthermore, the scraping assembly 320 includes a scraper 321 disposed on the moisture-absorbing cotton 103 for scraping the top cover 101. The front end of the scraper 321 is fixedly mounted with a threaded sleeve 322 for threaded connection with the bidirectional lead screw 311, and the rear end of the scraper 321 is fixedly mounted with a fixed sleeve 323 for fitting onto the slide rod 313. Therefore, when the motor 211 drives the rotating shaft 212 to rotate, and under the belt connection between the pulley 1 213 and the pulley 4 312, the bidirectional lead screw 311 can be driven to rotate. Thus, the threaded sleeve 322 on the scraper 321 can move left and right along the bidirectional lead screw 311, while the fixed sleeve 323 on the scraper 321 moves along the slide rod 313, thereby scraping off the condensation on the top cover 101, and the moisture-absorbing cotton 103 absorbs the moisture from the scraped condensation. Therefore, it can prevent the condensation from dripping onto the electrical appliances of the distribution box body 100.

[0042] In summary, the integrated distribution box of this invention, when the humidity detection sensor 230 detects excessive moisture inside the distribution box body 100, can drive the motor 211 to rotate the shaft 212. Under the belt connection between pulley 213 and pulley 312, the bidirectional lead screw 311 can rotate, thus causing the threaded sleeve 322 on the scraper 321 to move left and right along the bidirectional lead screw 311. Simultaneously, the fixed sleeve 323 on the scraper 321 moves along the slide rod 313, thereby scraping off the condensation on the top cover 101. The moisture-absorbing cotton 103 then absorbs the scraped condensation. Therefore, it can... To prevent condensation from dripping onto the electrical components of the distribution box body 100; simultaneously, the belt connection between pulley 214 and pulley 222 allows the drive shaft 221 to rotate synchronously with the rotating shaft 212, thereby driving the fan 225 to work, accelerating air circulation inside the distribution box body 100, and expelling moisture from the distribution box body 100; at the same time, the partition plate 107 allows desiccant to be placed on the inner wall of the cavity of the distribution box body 100, thus absorbing moisture inside the distribution box body 100; this prevents backflow of water vapor due to temperature differences and air pressure fluctuations inside and outside the distribution box body 100, which could lead to condensation and water seepage coupling and device failure.

[0043] In the description of this specification, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this invention, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0044] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0045] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A comprehensive distribution box, comprising a distribution box body (100), characterized in that: A top cover (101) is fixedly installed on the top of the distribution box body (100). A dehumidification device (200) for dehumidifying the distribution box body (100) is provided inside the distribution box body (100). A scraping device (300) for scraping off condensation on the top cover (101) is also provided inside the distribution box body (100). The dehumidification device (200) includes a dehumidification component (220) for dehumidifying the distribution box body (100). A front side of the dehumidification component (220) is provided with... A drive assembly (210) for driving the dehumidification assembly (220) to rotate is provided on the front side of the drive assembly (210) for detecting the humidity inside the distribution box body (100). The scraping device (300) includes an adjustment assembly (310) provided inside the distribution box body (100) for connecting with the drive assembly (210). A scraping assembly (320) for scraping condensation off the top cover (101) is threaded onto the rod of the adjustment assembly (310). The distribution box body (100) is fixedly installed with a partition (102) for heat insulation of the distribution box body (100) in cooperation with the top cover (101). The top of the partition (102) is provided with moisture-absorbing cotton (103) for absorbing moisture. The right end of the distribution box body (100) is provided with a fixing plate (104) for replacing the moisture-absorbing cotton (103). The drive assembly (210) includes a rotating shaft (212) that passes through the main body (100) of the distribution box for rotation, and a motor (211) for driving the rotating shaft (212) to rotate is fixedly installed at the left end of the rotating shaft (212). A pulley (213) for driving the adjustment assembly (310) to rotate is fixedly installed on the shaft of the rotating shaft (212), and the pulley (213) is located outside the main body of the distribution box (100). A pulley (214) for driving the scraping assembly (320) to rotate is fixedly installed on the shaft of the rotating shaft (212), and the pulley (214) is located inside the cavity of the main body of the distribution box (100). The dehumidification assembly (220) includes a fan (225) mounted on the distribution box body (100) to accelerate the airflow of the distribution box body (100). A drive shaft (221) for driving the fan (225) to rotate is fixedly mounted on the right end of the fan (225). A pulley (222) for connecting to the pulley (214) via a belt is fixedly mounted on the right end of the drive shaft (221). The drive shaft (221) is fitted with a support ring (223) for supporting the drive shaft (221), and a support plate (224) for supporting the support ring (223) is fixedly installed on the ring body of the support ring (223). The adjustment assembly (310) includes a bidirectional lead screw (311) disposed in the power distribution box body (100) for driving the scraping assembly (320) to move back and forth. The left end of the bidirectional lead screw (311) is fixedly installed with a pulley four (312) for connecting with pulley one (213) via a belt. The power distribution box body (100) is provided with a slide rod (313) for assisting the movement of the scraping assembly (320). The scraping assembly (320) includes a scraper (321) disposed on the absorbent cotton (103) for scraping the top cover (101). The front end of the scraper (321) is fixedly mounted with a threaded sleeve (322) for threaded connection with the bidirectional lead screw (311), and the rear end of the scraper (321) is fixedly mounted with a fixing sleeve (323) for fitting onto the slide bar (313).

2. The integrated distribution box according to claim 1, characterized in that: The front and rear ends of the distribution box body (100) are provided with exhaust slots (105) for maintaining ventilation and heat dissipation of the distribution box body (100). The left and right ends of the distribution box body (100) are fixedly installed with rain cover (106) for protecting the exhaust slots (105) from rain. The cavity of the distribution box body (100) is provided with a partition plate (107) for placing desiccant.

3. The integrated distribution box according to claim 1, characterized in that: The front end of the distribution box body (100) is movably connected to a door (001) for sealing the distribution box body (100), and there are three doors (001), which are arranged in a linear array on the front side of the distribution box body (100).

Citation Information

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