Novel electric control cabinet for power system based on power internet of things

By designing conductive components and storage components in the electrical control cabinet, the rapid replacement of moisture-absorbing materials is achieved, which solves the problems of failure of wire insulation layer and inconvenient replacement of moisture-absorbing materials in humid environments, and improves the drying effect inside the electrical control cabinet.

CN119994661AInactive Publication Date: 2025-05-13江苏方洋能源科技有限公司
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Patent Information

Application Number
CN202510421806.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing electrical control cabinets are prone to failure of wire insulation layer in humid environments, which increases the risk of short circuits and is inconvenient to replace moisture-absorbing materials.

Method used

A new electrical control cabinet for power system based on the Internet of Things was designed, using conductive components and storage components. The lifting rod and the feeding table were driven up through the driving roller, transmission belt and electronically controlled drive motor, and the moisture-absorbing material was quickly loaded to the moisture-absorbing orifice plate to achieve rapid replacement of moisture-absorbing material.

Benefits of technology

It improves the replacement efficiency of moisture-absorbing materials, ensures that the interior of the electrical control cabinet shell is dry, and reduces the time and labor to replace moisture-absorbing materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of power supply shells, in particular to a novel electric control cabinet for an electric power system based on the electric power internet of things, which comprises an electric control cabinet shell, a material storage box for placing a moisture absorption material is fixedly connected inside the electric control cabinet shell, and a moisture absorption pore plate for unfolding the moisture absorption material is fixedly connected outside the material storage box. And a conduction assembly used for rapidly feeding a moisture absorption material into the moisture absorption pore plate is arranged outside the material storage box, and the conduction assembly and the storage assembly are arranged, so that the used moisture absorption waste located in the moisture absorption pore plate is collected by the storage assembly; a lifting rod and a material jacking table are driven to ascend through cooperation with a conduction assembly to feed a moisture absorption material located in a material storage box into a material transferring box, so that the moisture absorption material located in a moisture absorption pore plate is rapidly replaced, and then the replacement efficiency of the moisture absorption material in the electric control cabinet shell is improved; and the drying effect in the electric control cabinet shell is ensured in time.
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Description

Technical Field

[0001] The present invention relates to the technical field of power supply casings, and in particular to an electric control cabinet for a novel power system based on power Internet of Things. Background Art

[0002] The electric control cabinet is mainly a device used for intelligent control of the circuit system. By connecting the circuit wires to the internal control panel of the electric control cabinet, the electric control cabinet can centrally control the circuit, and the electric control cabinet can reasonably allocate the electric energy, so as to achieve the purpose of energy saving and environmental protection. The electric control cabinet is mostly installed and used outdoors. During the long-term use of the electric control cabinet, when the outdoor weather is humid, the moisture will make the inside of the electric control cabinet moist, and the humid environment will make the insulation layer on the surface of the wire fail, thereby reducing the resistance of the wire and increasing the risk of short circuit in the wire line. At present, moisture-absorbing materials are mostly placed to absorb moisture in the electric control cabinet. Due to the long-term absorption of moisture, after observing that the effect of the moisture-absorbing material disappears, it is necessary to re-equip, take out and replace the moisture-absorbing material, which is time-consuming and labor-intensive, and it is not convenient to replace the moisture-absorbing material in a timely and rapid manner. Summary of the invention

[0003] In order to overcome the shortcomings of the prior art, the present invention provides an electric control cabinet for a new power system based on the power Internet of Things.

[0004] In order to solve the above technical problems, the present invention provides the following technical solutions: an electric control cabinet for a new type of power system based on the power Internet of Things, including an electric control cabinet shell, a material storage box for placing moisture-absorbing materials is fixedly connected to the interior of the electric control cabinet shell, the interior of the material storage box is hollow, and the material storage box is movably connected to a material lifting platform, the material lifting platform is used to close the lower part of the interior of the material storage box, the outside of the material lifting platform is fixedly connected to a lifting rod, the outside of the lifting rod is fixedly connected to a toothed plate, the toothed plate is L-shaped, the upper part of the outside of the material storage box is movably connected to a transfer box, the transfer box is used to close the upper part of the interior of the material storage box, the side of the transfer box close to the material storage box is open, the outside of the material storage box is fixedly connected to a moisture-absorbing orifice plate for unfolding the moisture-absorbing material, the outside of the moisture-absorbing orifice plate is fixedly connected to the outside of the material storage box A material leakage plate is connected, the interior of the material leakage plate is connected with the interior of the moisture absorption orifice plate, the interior of the material leakage plate is inclined to guide the moisture absorption material inside the storage box to fall into the moisture absorption orifice plate, a shielding plate for sealing the material is arranged below the moisture absorption orifice plate, the exterior of the shielding plate is fixedly connected with a pull ring for easy grasping, the two sides of the exterior of the shielding plate are movably connected with the moisture absorption orifice plate by means of a connecting component, the exterior of the material storage box is provided with a conduction component for quickly feeding the moisture absorption material to the interior of the moisture absorption orifice plate, the conduction component includes a top frame, the top frame is fixedly connected to the exterior of the material storage box and the material leakage plate, side notches are opened on both sides of the interior of the top frame, a short plate is slidably connected to the interior of each side notch, and the opposite sides of the two short plates are respectively fixedly connected to the two sides of the exterior of the transfer box The transfer box moves inside the top frame through two short plates, and the transfer box moves outside the material storage box and the leakage plate. The short plate on one side is fixedly connected to a seesaw plate on the outside. The transmission component also includes a first driving roller, a transmission belt, a second driving roller and an electronically controlled driving motor for driving the toothed plate to rise. The first driving roller and the second driving roller are both rotatably connected to the outside of the material storage box, and the first driving roller and the second driving roller are located at the upper and lower sides of the outside of the material storage box. The transmission belt movably sleeves on the outside of the first driving roller and the second driving roller, and the outside of the electronically controlled driving motor is fixedly connected to a connecting bracket, and the connecting bracket is fixedly connected to the outside of the material storage box. The output shaft of the electronically controlled driving motor is fixedly connected to the second driving roller, and the second driving roller rotates the belt through the output shaft of the electronically controlled driving motor The gear train is driven by the second gear and the gear is engaged with the gear plate, and the gear plate is driven by the gear train to drive the gear train and the gear plate to move upward.The material lifting platform moves upward, driving the moisture-absorbing material stored inside the material storage box to move upward to the inside of the material transfer box for storage. The second driving roller rotates while driving the transmission belt and the first driving roller to rotate. The rotation of the first driving roller drives the transmission sleeve and the pressing convex plate to rotate. The pressing convex plate rotates to contact the seesaw and push the seesaw to move the short plate and the material transfer box above the material storage box to the top of the leakage plate. At this time, the moisture-absorbing material inside the material transfer box falls into the leakage plate under gravity and continues to slide to the inside of the moisture-absorbing hole plate for unfolding and storage.

[0005] As a preferred technical solution of the present invention, a reciprocating assembly is arranged inside the side slot to assist the material transfer box in resetting, and the reciprocating assembly includes a connecting shaft, two elastic bands and two inner slots, the two inner slots are respectively opened on both sides of the inside of the side slot, the connecting shaft is fixedly connected to the inside of the short plate, the two ends of the connecting shaft are respectively movably connected to the inside of the two inner slots, the two elastic bands are respectively movably sleeved on the two ends of the outside of the connecting shaft, and one end of the elastic band away from the connecting shaft is fixedly connected to the inside of the inner slot, and the connecting shaft drives the short plate through the accumulated tension generated by the elastic band and positions the material transfer box above the outside of the storage box.

[0006] As a preferred technical solution of the present invention, each connecting assembly includes two rotating bases, the two rotating bases are fixedly connected to the outside of the moisture absorption orifice plate, the two rotating bases are rotatably connected to the opposite sides with a rotating connecting bent plate, and the end of the rotating connecting bent plate away from the two rotating bases is fixedly connected to the shielding plate, and the shielding plate is rotatably connected to the bottom of the moisture absorption orifice plate through the rotating connecting bent plate.

[0007] As a preferred technical solution of the present invention, a storage component for collecting waste is arranged below the baffle plate, and the storage component includes a waste storage box, which is fixedly connected to the outside of the storage box, and the waste storage box is located below the moisture absorption hole plate, the interior of the waste storage box is hollow, and a feed slot is provided above the outside of the waste storage box, the feed slot is connected to the interior of the waste storage box, a guide plate for guiding materials is fixedly connected to one side of the waste storage box close to the moisture absorption hole plate, the end corner of the guide plate close to the moisture absorption hole plate is inclined, and a transverse sealing plate for closing the interior of the waste storage box is provided inside the feed slot, and a through slot is provided on the outside of the waste storage box, and the through slot is connected to the feed slot The interior of the material slot is connected, and a transverse sealing plate is movably connected to the inside of the through slot. A pull rod is fixedly connected to the side of the outside of the transverse sealing plate close to the moisture absorption hole plate, and the pull rod is located below the shielding plate. Transverse slots are opened on both sides of the outside of the transverse sealing plate, and movable plates are fixedly connected on both sides of the inside of the through slot. The two movable plates are respectively slidably connected to the inside of the two transverse slots, and an elastic rope is fixedly connected to the outside of each movable plate, and one end of the elastic rope away from the movable plate is fixedly connected to the inside of the transverse slot. An outer slot is opened on the side of the outside of the waste storage box away from the material storage box, and a drawing box for receiving waste is movably connected inside the outer slot. The upper end of the drawing box is slotted, and a grab ring is fixedly connected to the outside of the drawing box.

[0008] Compared with the prior art, the present invention can achieve the following beneficial effects: By setting up a conduction component and a storage component, the storage component collects the used moisture-absorbing waste inside the moisture-absorbing orifice plate, and then cooperates with the conduction component to drive the lifting rod and the top material platform to rise to load the moisture-absorbing material inside the storage box to the inside of the transfer box. At the same time, the conduction component drives the transfer box to move above the leakage plate, and the transfer box loads the moisture-absorbing material into the leakage plate and cooperates with the leakage plate to load it into the moisture-absorbing orifice plate for unfolding and placement, so as to quickly replace the moisture-absorbing material inside the moisture-absorbing orifice plate, thereby improving the replacement efficiency of the moisture-absorbing material inside the electric control cabinet shell and timely ensuring the drying effect inside the electric control cabinet shell.

[0009] When the material transfer box is moved outside the material storage box and the leakage plate, the short plate drives the connecting shaft rod and causes the elastic band to open inside the inner groove to generate a restoring tension. When the pressing convex plate continues to rotate and separates from the rocker plate, the restoring tension generated by the elastic band drives the connecting shaft rod and causes the short plate and the material transfer box to reset inside the top frame, thereby resetting the position of the material transfer box to above the outside of the material storage box, thereby achieving the effect of re-sealing the moisture-absorbing material stored inside the material storage box after the moisture-absorbing material is loaded.

[0010] By pulling the pull rod, the transverse sealing plate is driven to move away from the material storage box. The transverse sealing plate moves and opens the inside of the feed slot. After the pull rod continues to move and separates from the baffle plate, the baffle plate is driven by gravity to rotate and the connecting bent plate rotates around the rotating base. At this time, the waste inside the moisture absorption hole plate passes downward through the feed slot and falls into the inside of the extraction box for collection. After the extraction box collects the waste, hold the grab ring and extract the extraction box from the inside of the waste storage box, thereby completing the quick cleaning of the waste. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 It is a structural schematic diagram of the material storage box of the present invention; Figure 3 It is a partial cross-sectional structural schematic diagram of the leakage plate of the present invention; Figure 4 For the present invention Figure 3 A schematic diagram of the local enlarged structure at point A in the middle; Figure 5 It is a structural schematic diagram of the material transfer box of the present invention; Figure 6 It is a structural schematic diagram of the top frame of the present invention; Figure 7 It is a structural schematic diagram of the moisture absorption orifice plate of the present invention; Figure 8 It is a structural schematic diagram of the waste storage box of the present invention; Fig. 9 It is a structural schematic diagram of the transverse sealing plate of the present invention; Fig.10 It is a structural schematic diagram of the material extraction box of the present invention; Fig.11 It is a structural schematic diagram of the material ejecting platform of the present invention.

[0012] Among them: 10, electric control cabinet housing; 11, material storage box; 12, moisture absorption hole plate; 13, leakage plate; 14, lifting rod; 15, material lifting platform; 16, tooth plate; 17, shielding plate; 18, pull ring; 19, material transfer box; 20, top frame; 21, short board; 22, sleeve gear; 23, seesaw; 24, pressing convex plate; 25, transmission sleeve; 26, first drive roller; 27, transmission belt; 28, second drive roller; 29, electric control drive motor machine; 210, connecting bracket; 211, side notch; 30, waste storage box; 31, outer notch; 32, guide plate; 33, pull rod; 34, horizontal notch; 35, horizontal sealing plate; 36, movable plate; 37, elastic rope; 38, feed notch; 39, extraction box; 310, grab ring; 311, through notch; 40, rotating base; 41, rotating connecting bent plate; 50, connecting shaft; 51, elastic belt; 52, inner notch. DETAILED DESCRIPTION

[0013] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further described below in conjunction with specific embodiments, but the following embodiments are only preferred embodiments of the present invention, not all. Based on the embodiments in the implementation mode, other embodiments obtained by those skilled in the art without creative work all belong to the protection scope of the present invention. The experimental methods in the following embodiments, unless otherwise specified, are conventional methods, and the materials, reagents, etc. used in the following embodiments, unless otherwise specified, can all be obtained from commercial channels.

[0014] Embodiment: Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Fig. 9 , Fig.10 and 11The electric control cabinet for a new type of electric power system based on the electric power Internet of Things is shown, including an electric control cabinet shell 10, a material storage box 11 for placing moisture-absorbing materials is fixedly connected to the inside of the electric control cabinet shell 10, the inside of the material storage box 11 is hollow, and a material lifting platform 15 is movably connected to the inside of the material storage box 11, and the material lifting platform 15 is used to close the lower part of the inside of the material storage box 11, and the outside of the material lifting platform 15 is fixedly connected to a lifting rod 14, and the outside of the lifting rod 14 is fixedly connected to a toothed plate 16, and the toothed plate 16 is L-shaped, and the upper part of the outside of the material storage box 11 is movably connected to a transfer box 19, and the transfer box 19 is used to close the upper part of the inside of the material storage box 11, and the side of the transfer box 19 close to the material storage box 11 is open, and the outside of the material storage box 11 is fixedly connected to a useful The moisture absorbing orifice plate 12 is used to unfold the moisture absorbing material. The outside of the moisture absorbing orifice plate 12 is fixedly connected with a leakage plate 13. The inside of the leakage plate 13 is connected with the inside of the moisture absorbing orifice plate 12. The inside of the leakage plate 13 is inclined to guide the moisture absorbing material in the storage box 11 to fall into the moisture absorbing orifice plate 12. A shielding plate 17 for sealing the material is arranged below the moisture absorbing orifice plate 12. The outside of the shielding plate 17 is fixedly connected with a pull ring 18 for easy grasping. The two sides of the outside of the shielding plate 17 are movably connected with the moisture absorbing orifice plate 12 by providing a connecting component. The outside of the storage box 11 is provided with a conducting component for quickly feeding the moisture absorbing material to the inside of the moisture absorbing orifice plate 12. The conducting component includes a top frame 20, and the top frame 20 is fixedly connected to the storage box 11. Side notches 211 are provided on both sides of the top frame 20, and each side notch 211 is slidably connected to a short plate 21. The two sides of the two short plates 21 facing each other are fixedly connected to the two sides of the outside of the transfer box 19. The transfer box 19 moves inside the top frame 20 through the two short plates 21. At the same time, the transfer box 19 moves outside the storage box 11 and the leakage plate 13. The short plate 21 on one side is fixedly connected to the outside of the seesaw 23. The transmission component also includes a first driving roller 26, a transmission belt 27, a second driving roller 28 and an electric control driving motor 29 for driving the toothed plate 16 to rise. The first driving roller 26 and the second driving roller 28 are both rotatably connected to the outside of the storage box 11, and the first driving roller 26 The second driving roller 28 is located at the upper and lower sides of the outside of the material storage box 11, and the transmission belt 27 is movably sleeved on the outside of the first driving roller 26 and the second driving roller 28. The outside of the electric control driving motor 29 is fixedly connected with a connecting bracket 210, and the connecting bracket 210 is fixedly connected to the outside of the material storage box 11. The output shaft of the electric control driving motor 29 is fixedly connected to the second driving roller 28. The second driving roller 28 is driven to rotate by the output shaft of the electric control driving motor 29. The rotation of the second driving roller 28 drives the transmission belt 27 and makes the first driving roller 26 rotate synchronously. The outside of the second driving roller 28 is fixedly connected with a sleeve tooth 22, and the sleeve tooth 22 is driven to rotate synchronously by the second driving roller 28. The sleeve tooth 22 is meshed with the tooth plate 16.The tooth plate 16 drives the lifting rod 14 and the material lifting platform 15 to rise inside the material storage box 11 through meshing transmission with the sleeve teeth 22. The outside of the first driving roller 26 is fixedly connected with a transmission sleeve 25, and the outside of the transmission sleeve 25 is fixedly connected with a pressing convex plate 24 for squeezing and pushing the rocker plate 23.

[0015] A reciprocating assembly is provided inside the side slot 211 to assist the material transfer box 19 in resetting. The reciprocating assembly includes a connecting shaft 50, two elastic bands 51 and two inner slots 52. The two inner slots 52 are respectively opened on both sides of the inside of the side slot 211. The connecting shaft 50 is fixedly connected to the inside of the short plate 21. The two ends of the connecting shaft 50 are respectively movably connected to the inside of the two inner slots 52. The two elastic bands 51 are respectively movably sleeved on the two ends of the outside of the connecting shaft 50. One end of the elastic band 51 away from the connecting shaft 50 is fixedly connected to the inside of the inner slot 52. The connecting shaft 50 drives the short plate 21 through the accumulated tension generated by the elastic band 51 and positions the material transfer box 19 above the outside of the storage box 11.

[0016] Each connecting assembly includes two rotating bases 40, and the two rotating bases 40 are fixedly connected to the outside of the moisture absorption orifice plate 12. The two rotating bases 40 are rotatably connected to the opposite sides with a rotating connecting bent plate 41. The end of the rotating connecting bent plate 41 away from the two rotating bases 40 is fixedly connected to the shielding plate 17, and the shielding plate 17 is rotatably connected to the bottom of the moisture absorption orifice plate 12 through the rotating connecting bent plate 41.

[0017] A storage assembly for collecting waste is provided below the shielding plate 17, and the storage assembly includes a waste storage box 30, which is fixedly connected to the outside of the storage box 11, and the waste storage box 30 is located below the moisture absorption hole plate 12, the interior of the waste storage box 30 is hollow, and a feed slot 38 is provided above the outside of the waste storage box 30, and the feed slot 38 is connected to the inside of the waste storage box 30, and the waste storage box 30 is close to the storage box 11. A guide plate 32 for guiding materials is fixedly connected to one side of the moisture absorption hole plate 12. The corner of the guide plate 32 near the moisture absorption hole plate 12 is inclined. A transverse sealing plate 35 for sealing the inside of the waste storage box 30 is arranged inside the feed slot 38. A through slot 311 is opened outside the waste storage box 30. The through slot 311 is connected to the inside of the feed slot 38. The transverse sealing plate 35 is movably connected to the inside of the through slot 311. The cam 33 is provided with a plurality of cams 34 disposed on the bottom of the cam 33 and a plurality of cams 35 are provided on the bottom of the cam 33. The cam 33 is provided with a plurality of cams 34 disposed on the bottom of the cam 33 and a plurality of cams 35 are provided on the bottom of the cam 33.

[0018] Working principle: When in use: the first step is to store the moisture-absorbing material in the storage box 11. When the moisture-absorbing material needs to be taken out, the electric control drive motor 29 is started to rotate its output shaft to drive the second drive roller 28 to rotate. The second drive roller 28 rotates to drive the sleeve gear 22 to mesh with the tooth plate 16 to drive the tooth plate 16 and move the lifting rod 14 and the top material platform 15 upward. The top material platform 15 moves upward to drive the moisture-absorbing material stored in the storage box 11 to move upward to the transfer box 19 for storage. The second drive roller 28 rotates while the transmission belt 27 and the first drive roller 26 are engaged. The first driving roller 26 rotates, driving the transmission sleeve 25 and the pressing convex plate 24 to rotate. The pressing convex plate 24 rotates to contact the seesaw 23 and push the seesaw 23 to move the short plate 21 and the transfer box 19 above the storage box 11 to above the leakage plate 13. At this time, the moisture-absorbing material inside the transfer box 19 falls into the leakage plate 13 due to gravity and continues to slide into the moisture-absorbing hole plate 12 for unfolding and storage. The moisture-absorbing component is unfolded inside the moisture-absorbing hole plate 12 to absorb the moisture inside the electric control cabinet housing 10, thereby achieving the effect of continuously keeping the inside of the electric control cabinet housing 10 dry.

[0019] In the second step, when the transfer box 19 is moved outside the material storage box 11 and the leakage plate 13, the short plate 21 drives the connecting shaft 50 and makes the elastic band 51 open inside the inner groove 52 to generate a restoring tension. When the pressing convex plate 24 continues to rotate and separates from the rocker 23, the restoring tension generated by the elastic band 51 drives the connecting shaft 50 and makes the short plate 21 and the transfer box 19 reset inside the top frame 20, and the position of the transfer box 19 is reset to the top of the outside of the material storage box 11, so as to achieve the effect of re-sealing the moisture-absorbing material stored in the material storage box 11 after the moisture-absorbing material is loaded.

[0020] The third step is to pull the pull rod 33 to drive the horizontal sealing plate 35 to move away from the storage box 11. The horizontal sealing plate 35 moves and opens the inside of the feed slot 38. After the pull rod 33 continues to move and separates from the baffle plate 17, the baffle plate 17 is driven by gravity to rotate the connecting bent plate 41 and rotates around the rotating base 40. At this time, the waste inside the moisture absorption hole plate 12 passes downward through the feed slot 38 and falls into the inside of the extraction box 39 for collection. After the extraction box 39 collects the waste, hold the grab ring 310 to extract the extraction box 39 from the inside of the waste storage box 30, and the waste cleaning work can be completed quickly.

[0021] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited thereto, and various changes can be made within the knowledge scope of technicians in the relevant technical field without departing from the purpose of the present invention.

Claims

1. An electric control cabinet for a new type of power system based on the power Internet of Things, comprising an electric control cabinet housing (10), characterized in that: The electric control cabinet housing (10) is fixedly connected to a storage box (11) for placing moisture-absorbing materials inside, the storage box (11) is movably connected to a material-lifting platform (15) inside, the lifting platform (15) is fixedly connected to a lifting rod (14) outside, the lifting rod (14) is fixedly connected to a toothed plate (16) outside, the storage box (11) is fixedly connected to a moisture-absorbing orifice plate (12) for unfolding the moisture-absorbing materials outside, the moisture-absorbing orifice plate (12) is fixedly connected to a material leakage plate (13) outside, and a conduction component for quickly loading the moisture-absorbing materials into the moisture-absorbing orifice plate (12) is arranged outside the storage box (11); The conducting component comprises a top frame (20), the top frame (20) being fixedly connected to the outside of the material storage box (11) and the material leakage plate (13), side notches (211) being provided on both sides of the inside of the top frame (20), a short plate (21) being slidably connected inside each side notch (211), the opposite sides of the two short plates (21) being fixedly connected to the two sides of the outside of the material transfer box (19), and a seesaw plate (23) being fixedly connected to the outside of the short plate (21) on one side; The transmission component also includes a first driving roller (26) for driving the toothed plate (16) to rise, a transmission belt (27), a second driving roller (28) and an electrically controlled driving motor (29); the first driving roller (26) and the second driving roller (28) are both rotatably connected to the outside of the material storage box (11); the transmission belt (27) is movably sleeved on the outside of the first driving roller (26) and the second driving roller (28); the outside of the electrically controlled driving motor (29) is fixedly connected to a connecting bracket (210); the connecting bracket (210) is fixedly connected to the outside of the material storage box (11); the output shaft of the electrically controlled driving motor (29) is fixedly connected to the second driving roller (28); the outside of the second driving roller (28) is fixedly connected to a sleeve tooth (22); the sleeve tooth (22) is meshingly connected to the toothed plate (16); the outside of the first driving roller (26) is fixedly connected to a transmission sleeve disc (25); the outside of the transmission sleeve disc (25) is fixedly connected to a pressing convex plate (24) for squeezing and pushing the seesaw (23).

2. According to claim 1, an electric control cabinet for a new type of power system based on the power Internet of Things is characterized in that: A reciprocating assembly for assisting the material transfer box (19) in resetting is arranged inside the side notch (211), and the reciprocating assembly comprises a connecting shaft (50), two elastic bands (51) and two inner notches (52), the two inner notches (52) being respectively arranged on both sides inside the side notch (211), the connecting shaft (50) being fixedly connected inside the short plate (21), the two ends of the connecting shaft (50) being movably connected inside the two inner notches (52), the two elastic bands (51) being movably sleeved on the two ends outside the connecting shaft (50), one end of the elastic band (51) away from the connecting shaft (50) being fixedly connected inside the inner notches (52), the connecting shaft (50) drives the short plate (21) through the accumulated tension generated by the elastic band (51) and positions the material transfer box (19) above the outside of the material storage box (11).

3. According to claim 1, an electric control cabinet for a new type of power system based on the power Internet of Things is characterized in that: A shielding plate (17) for sealing materials is provided below the moisture absorption hole plate (12); a pull ring (18) for easy grasping is fixedly connected to the outside of the shielding plate (17); and two sides of the outside of the shielding plate (17) are movably connected to the moisture absorption hole plate (12) by providing connection components.

4. The electric control cabinet for a new type of power system based on the power Internet of Things according to claim 3 is characterized in that: Each of the connection components comprises two rotating bases (40), the two rotating bases (40) are fixedly connected to the outside of the moisture absorption orifice plate (12), the two rotating bases (40) are rotatably connected to a rotating connection bent plate (41) on the opposite sides thereof, the rotating connection bent plate (41) is fixedly connected to a shielding plate (17) at one end away from the two rotating bases (40), and the shielding plate (17) is rotatably connected to the bottom of the moisture absorption orifice plate (12) via the rotating connection bent plate (41).

5. According to claim 3, an electric control cabinet for a new type of power system based on the power Internet of Things is characterized in that: A storage assembly for collecting waste is provided below the shielding plate (17), the storage assembly comprising a waste storage box (30), the waste storage box (30) is fixedly connected to the outside of the material storage box (11), and the waste storage box (30) is located below the moisture absorption hole plate (12), the interior of the waste storage box (30) is hollow, a feed slot (38) is provided above the outside of the waste storage box (30), the feed slot (38) is connected to the interior of the waste storage box (30), a guide plate (32) for guiding materials is fixedly connected to one side of the waste storage box (30) close to the moisture absorption hole plate (12), and one end corner of the guide plate (32) close to the moisture absorption hole plate (12) is inclined.

6. The electric control cabinet for a new type of power system based on the power Internet of Things according to claim 5 is characterized in that: The interior of the feed slot (38) is provided with a transverse sealing plate (35) for sealing the interior of the waste storage box (30); the exterior of the waste storage box (30) is provided with a through slot (311), the through slot (311) is communicated with the interior of the feed slot (38); the transverse sealing plate (35) is movably connected to the interior of the through slot (311); a pull rod (33) is fixedly connected to the exterior of the transverse sealing plate (35) on one side close to the moisture absorption hole plate (12); the pull rod (33) is located below the shielding plate (17).

7. The electric control cabinet for a new type of power system based on the power Internet of Things according to claim 6 is characterized in that: The transverse sealing plate (35) is provided with transverse slots (34) on both sides of the outside, and movable plates (36) are fixedly connected to both sides of the inside of the through slot (311). The two movable plates (36) are slidably connected to the inside of the two transverse slots (34), respectively. The outside of each movable plate (36) is fixedly connected to an elastic rope (37), and one end of the elastic rope (37) away from the movable plate (36) is fixedly connected to the inside of the transverse slot (34).

8. The electric control cabinet for a new type of power system based on the power Internet of Things according to claim 5 is characterized in that: An outer notch (31) is provided on a side of the waste storage box (30) away from the material storage box (11), and a material extraction box (39) for receiving waste is movably connected inside the outer notch (31), the upper end of the material extraction box (39) is slotted, and a grab ring (310) is fixedly connected to the outside of the material extraction box (39).

Citation Information

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