Large Model Edge Box Based on Electric Power Safety Operations
By introducing a combined structure of the heat dissipation fan and air supply duct into the power safety operation edge box, the heat dissipation problem during high-load operation is solved, and rapid heat dissipation and dust removal are achieved to ensure the stable operation of the equipment.
Patent Information
- Application Number
- CN202510445317.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2045-04-10
AI Technical Summary
The existing power safety operation edge box has poor heat dissipation effect during high load calculations, resulting in excessive internal temperature and affecting equipment performance.
The combined structure of the heat dissipation fan and the air supply duct is adopted to remove heat through high-speed air flow, and the heat dissipation effect is enhanced by disturbing the heat dissipation fins. At the same time, the dust removal mesh plate and scraper plate are installed to clean up dust to prevent clogging.
It realizes rapid heat dissipation and dust removal of edge boxes, avoids high temperature abnormalities, and extends the service life of the equipment.
Smart Images

Figure CN119967791B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of large model edge boxes, specifically a large model edge box based on electric power safety operations. Background Art
[0002] The edge intelligent box for electric power safety operations is an edge computing device integrating an artificial intelligence large model, designed specifically for the safety monitoring and management of on-site operations in the electric power industry. By locally deploying the large model capabilities, this device enables real-time safety monitoring, risk early warning, and intelligent decision-making support for the electric power operation site.
[0003] The edge intelligent box for electric power safety operations is an intelligent safety monitoring device based on edge computing technology, mainly used for the safety guarantee of the electric power operation site. When in use, it collects on-site data in real time through multi-source sensors, and uses the collected data in cooperation with the internally installed AI to conduct real-time analysis and preliminary judgment on the site, enabling users to conduct real-time on-site monitoring and hazard prevention remotely. By sinking the computing power to the site through the edge box, low-latency safety monitoring is achieved, while reducing the burden on the cloud.
[0004] When the edge intelligent box conducts real-time data analysis and data calculation, during the high-speed operation of the internally installed processor, the temperature inside the entire edge box will gradually rise. Usually, heat dissipation is carried out through the heat dissipation fins provided on the edge box. This heat dissipation effect is relatively slow, and it is easy for the heat dissipation effect to be far lower than the speed of temperature rise inside the edge box, resulting in the situation that the processor inside the edge box becomes abnormal and its performance decreases under high temperature conditions eventually. Summary of the Invention
[0005] (I) Technical Problems to be Solved
[0006] Aiming at the deficiencies of the existing technology, the present invention provides a large model edge box based on electric power safety operations, which has the function of quickly dissipating heat from the high temperature state that occurs when the edge box is in operation. Under the action of the provided heat dissipation fan and air supply pipe, external air enters the entire edge box interior in a state of high-speed flow, carries heat and is sent out of the entire edge box. At the same time, the exhausted air will disturb the surface of the entire heat dissipation fin, so that under the airflow disturbance, the surface of the heat dissipation fin improves the overall heat dissipation effect.
[0007] (II) Technical Solutions
[0008] To achieve the above object, the present invention provides the following technical solution: A large model edge box based on electric power safety operations, including a box body, a placement groove is opened on one side of the box body, a heat dissipation fan is arranged inside the placement groove, and a heat dissipation component is arranged on the side of the heat dissipation fan close to the box body;
[0009] The heat dissipation component includes a dust removal bin arranged inside the placement groove, and the dust removal bin is located between the heat dissipation fan and the box body. A dust removal net plate is movably arranged inside the dust removal bin. A conveying pipeline is arranged inside the dust removal net plate. A fixing cylinder is arranged on the side of the dust removal net plate away from the dust removal bin. An air supply pipe is arranged on the side of the fixing cylinder away from the dust removal net plate, and one end of the fixing cylinder extends into the inner cavity of the air supply pipe. An air outlet is arranged on the side of the air supply pipe away from the fixing cylinder. A cleaning component is arranged on the dust removal net plate, and the cleaning component is used to clean the dust impurities filtered on the dust removal net plate. A collection component is arranged inside the dust removal bin;
[0010] The cleaning component includes a scraping plate movably arranged outside the dust removal net plate. A U-shaped frame is arranged on the side of the scraping plate close to the fixing cylinder. A fixing ring plate is arranged at one end of the U-shaped frame inside the dust removal net plate, and the fixing ring plate is in contact with the dust removal net plate. A sealed sliding plate is arranged on the side of the U-shaped frame close to the fixing cylinder, and the sealed sliding plate is located inside the dust removal net plate. A limiting rod is arranged on the fixing ring plate. A limiting groove is opened on the fixing cylinder, and the limiting groove is in snap-fit sliding connection with the U-shaped frame;
[0011] The collection component includes a collection bottom plate arranged inside the dust removal bin. Limiting square plates are symmetrically arranged on the collection bottom plate. Upper cover plates are symmetrically arranged outside the scraping plate. A pushing plate is movably arranged on the upper cover plates. Sliding grooves are symmetrically opened on the upper cover plates. Fixing rods are symmetrically arranged on the pushing plate, and the fixing rods are in snap-fit sliding connection with the sliding grooves. Collection ports are symmetrically opened on the collection bottom plate.
[0012] Preferably, ventilation holes are arrayed on the side of the air supply pipe close to the inside of the box body.
[0013] Preferably, spiral grooves are opened on the surface of the conveying pipeline, and the spiral grooves are in snap-fit sliding connection with the limiting rods. A conveying hole is opened on the side of the conveying pipeline away from the fixing ring plate. A first spring is arranged inside the fixing cylinder, and the first spring is located between the fixing cylinder and the sealed sliding plate.
[0014] Preferably, a partition plate is arranged inside the placement groove, and the partition plate is in contact with one side of the air supply pipe. Guide rails are symmetrically arranged on the side of the partition plate away from the air supply pipe. A collection box is arranged on the side of the partition plate close to the guide rails.
[0015] Preferably, abutting plates are symmetrically and movably arranged on the side of the collection box close to the collection ports, and the abutting plates are integrally embedded inside the collection box. A second spring is arranged on the side of the abutting plate close to the collection box, and the second spring is located inside the whole collection box.
[0016] Preferably, a clamping pull rod is arranged on one side of the collection box. Telescopic square rods are symmetrically arranged on the partition plate.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0018] 1. In the present invention, a heat dissipation fan with an integrated one-way valve function is provided to suck the external air into the inside of the box body, increasing the air in the dust removal bin and thus increasing the pressure inside the whole. Under the action of the pressure, the flow channel on the conveying pipeline is opened, allowing high-speed gas to enter the inside of the box body. The gas carrying the heat inside the box body is carried along and finally discharged from the air outlet, forming heat dissipation and cooling for the inside of the box body. At the same time, the discharged gas will blow the air at the heat dissipation fins provided on the box body to cause turbulence, thereby enhancing the heat dissipation effect of the whole heat dissipation fins. Through the combination of air cooling and the self-cooling effect of the heat dissipation fins, double heat dissipation for the entire edge box is achieved, avoiding the situation of overheating of the edge box during operation.
[0019] 2. Meanwhile, during the whole air supply process, in order to prevent dust and impurities in the air from adhering to the dust removal mesh plate and causing blockage during long-term use, the scraping plate and the U-shaped frame will move up and down reciprocally, and at the same time, the dust removal mesh plate itself will rotate reciprocally, so that some dust adhering to the dust removal mesh plate can be scraped and cleaned under the action of the scraping plate and the U-shaped frame. Through continuous cleaning, the service life of the dust removal mesh plate can be extended.
[0020] 3. The dust cleaned and the dust scattered inside the dust removal bin will gradually have their space compressed during the downward movement of the upper cover plate. As a result, under the action of the pushing plate contacting the inclined surface of the limiting square plate, the dust will move and be pushed to the collection port, allowing these dust to fall into the collection box placed below the collection port under their own gravity for collection, avoiding the dust staying in the whole dust removal bin for a long time and re-adhering to the dust removal mesh plate when external air enters. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the whole device of the present invention.
[0022] Figure 2 It is a schematic side view of the exploded structure of the whole device of the present invention.
[0023] Figure 3 It is a schematic diagram of the partial exploded structure of the connecting components inside the placement groove of the device of the present invention.
[0024] Figure 4 It is a partial schematic diagram inside the dust removal bin of the device of the present invention.
[0025] Figure 5 It is a semi-sectional schematic diagram of the internal structure of the dust removal bin of the device of the present invention.
[0026] Figure 6Explosion schematic diagram of the internal connection structure of the dust removal mesh plate of the device of the present invention.
[0027] Figure 7 Enlarged explosion structure diagram of the partial connection of the collection component of the device of the present invention.
[0028] Figure 8 Schematic diagram of the placement structure of the partition plate and the collection box of the device of the present invention.
[0029] Figure 9 For the device of the present invention Figure 2 Partial enlarged schematic diagram at position A.
[0030] Figure 10 Explosion schematic diagram of the internal connection structure of the collection box of the device of the present invention.
[0031] In the figure: 1. Box body; 11. Placement groove; 2. Heat dissipation fan; 3. Heat dissipation component; 31. Dust removal bin; 32. Dust removal mesh plate; 33. Conveying pipeline; 331. Spiral groove; 332. Conveying hole; 34. Fixed cylinder; 341. Limiting groove; 342. First spring; 35. Air supply pipe; 351. Ventilation hole; 36. Air outlet; 4. Cleaning component; 41. Scraping plate; 42. U-shaped frame; 43. Fixed ring plate; 431. Limiting rod; 44. Sealed sliding plate; 5. Collection component; 51. Collection bottom plate; 511. Collection port; 52. Limiting square plate; 53. Upper cover plate; 531. Sliding groove; 54. Pushing plate; 541. Fixed rod; 6. Partition plate; 61. Guide rail; 62. Collection box; 621. Clamping pull rod; 63. Tightening plate; 64. Second spring; 65. Telescopic square rod. Detailed implementation manners
[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention. Embodiment
[0033] Please refer to Figures 1 to 6, which is the first embodiment of the present invention, provides a technical solution: a large model edge box based on electric power safety operation, including a box body 1. A placement groove 11 is opened on one side of the box body 1. The placement groove 11 is overall square and is located on the inner wall of one side of the box body 1. Through this placement groove 11, sufficient positions are provided for installing and placing the heat dissipation component 3 and the collection component 5. A heat dissipation fan 2 is arranged inside the placement groove 11. The heat dissipation fan 2 realizes the function of an integrated one-way valve through an internally installed valve flap, enabling air to only flow unidirectionally. The heat dissipation fan 2 is used to inhale external air into the box body 1 to dissipate heat inside the box body 1, and cooperate with the heat dissipation fin heat dissipation plate provided on the box body 1 to improve the heat dissipation effect of the entire box body 1. A heat dissipation component 3 is arranged close to one side of the box body 1 of the heat dissipation fan 2;
[0034] The heat dissipation component 3 includes a dust removal bin 31 disposed inside the placement groove 11, and the dust removal bin 31 is located between the heat dissipation fan 2 and the box body 1. The dust removal bin 31 is used to allow the outside air to enter the inside of the dust removal bin 31 when the heat dissipation fan 2 sucks in the outside air. The dust in the air is filtered by the dust removal mesh plate 32 provided on the dust removal bin 31 to prevent the dust from entering the inside of the box body 1 and affecting the electronic components inside the box body 1. The dust removal mesh plate 32 is movably disposed inside the dust removal bin 31 and is used to filter the dust in the air. A conveying pipe 33 is provided inside the dust removal mesh plate 32, and the conveying pipe 33 is fixedly connected to the dust removal mesh plate 32. Due to the engagement between the spiral groove 331 formed on the surface of the conveying pipe 33 and the limiting rod 431 provided on the fixed ring plate 43, when the sealed sliding plate 44 moves under the action of gas pressure, the set fixed ring plate 43 will move synchronously, thereby driving the dust removal mesh plate 32 and the conveying pipe 33 to rotate, so that the dust attached to the dust removal mesh plate 32 can be scraped off and removed. A fixed cylinder 34 is provided on the side of the dust removal mesh plate 32 away from the dust removal bin 31. A air supply pipe 35 is provided on the side of the fixed cylinder 34 away from the dust removal mesh plate 32, and one end of the fixed cylinder 34 extends into the internal cavity of the air supply pipe 35. The air supply pipe 35 has an internal cavity. When the outside air enters the internal air flow channel through the dust removal mesh plate 32 and reaches the inside of the air supply pipe 35, the air will flow inside the air supply pipe 35. The flowing air entraps the relatively static air carrying heat inside the box body 1, so that the air carrying heat will be driven by the outside air to flow together with the outside air, and finally be discharged to the outside environment from the air outlet 36 provided on the other side of the air supply pipe 35. The air supply pipe 35 is provided with an air outlet 36 on the side away from the fixed cylinder 34. The air outlet 36 is in the shape of a grille, and a waterproof and breathable membrane is embedded inside it. The material used for the waterproof and breathable membrane is ePTFE membrane. In a rainy environment, the outside rainwater will not enter the inside of the box body 1 through the air outlet 36. At the same time, through the grille design of the air outlet 36, the discharged air can directly disturb the air around the heat dissipation fins on the box body 1, increasing the heat dissipation effect of the entire heat dissipation fins.
[0035] The air supply pipe 35 is provided with ventilation holes 351 arrayed on the side close to the inside of the box body 1. The ventilation holes 351 are used to connect the air outlet 36 with the inside of the box body 1, so that the heat inside the box body 1 can be taken out and discharged to the outside environment. A cleaning component 4 is provided on the dust removal mesh plate 32. The cleaning component 4 is used to clean the dust impurities filtered on the dust removal mesh plate 32. Through the cleaning of the cleaning component 4, it is avoided that the dust impurities accumulated on the dust removal mesh plate 32 cause blockage of the dust removal mesh plate 32, resulting in poor ventilation effect. A collection component 5 is provided inside the dust removal bin 31. The collection component 5 is used to collect the dust cleaned down.
[0036] The cleaning component 4 includes a scraping plate 41 movably arranged outside the dust removal net plate 32. The scraping plate 41 is used to scrape the dust on the dust removal net plate 32 to prevent the dust accumulated on the dust removal net plate 32 from causing blockage and affecting the circulation of the entire air. On one side of the scraping plate 41 close to the fixed cylinder 34, there is a U-shaped frame 42. The U-shaped frame 42 is used to fixedly connect the scraping plate 41 with a fixed ring plate 43 on the other side of the dust removal net plate 32. At the same time, through a sealed sliding plate 44 arranged at the position of the U-shaped frame 42 inside the dust removal net plate 32, the upper area of the cavity of the entire dust removal net plate 32 forms a sealed environment with the arranged dust removal bin 31. When the outside air continuously enters, the internal pressure is increased. Under the action of the pressure, the sealed sliding plate 44 descends, so as to reach the air circulation part of the conveying pipeline 33 and finally enter the inside of the air supply pipe 35;
[0037] At one end of the U-shaped frame 42 inside the dust removal net plate 32, there is a fixed ring plate 43, and the fixed ring plate 43 is in contact with the dust removal net plate 32. On one side of the U-shaped frame 42 close to the fixed cylinder 34, there is a sealed sliding plate 44, and the sealed sliding plate 44 is located inside the dust removal net plate 32. The sealed sliding plate 44 is used to form upper and lower separate cavities inside the dust removal net plate 32 and the fixed cylinder 34, so that the sealed sliding plate 44 can be driven to descend under the action of the gas pressure, and the descending sealed sliding plate 44 synchronously drives the entire U-shaped frame 42 to move.
[0038] On the fixed ring plate 43, there is a limiting rod 431. The limiting rod 431 is used to form a clamping and sliding connection with a spiral groove 331 opened on the conveying pipeline 33. When the fixed ring plate 43 descends, it drives the entire conveying pipeline 33 and the dust removal net plate 32 to rotate, so as to facilitate the scraping plate 41 and the arranged U-shaped frame 42 to clean the surface of the dust removal net plate 32. On the fixed cylinder 34, there is a limiting groove 341, and the limiting groove 341 is in clamping and sliding connection with the U-shaped frame 42. The limiting groove 341 is used to prevent the whole U-shaped frame 42 from rotating when the U-shaped frame 42 descends, so as to avoid the situation that the conveying pipeline 33 and the dust removal net plate 32 fail to rotate.
[0039] On the surface of the conveying pipeline 33, there is a spiral groove 331, and the spiral groove 331 is in clamping and sliding connection with the limiting rod 431. The overall rotation angle of the spiral groove 331 is one circle. When the fixed ring plate 43 descends, through the clamping relationship between the limiting rod 431 and the spiral groove 331, the conveying pipeline 33 and the dust removal net plate 32 can rotate to the maximum extent. On one side of the conveying pipeline 33 far from the fixed ring plate 43, there is a conveying hole 332. The conveying hole 332 is used to open the internal air circulation channel of the entire conveying pipeline 33 when the conveying hole 332 is located in the upper side area of the sealed sliding plate 44 when the sealed sliding plate 44 descends;
[0040] Inside the fixed cylinder 34, a first spring 342 is provided, and the first spring 342 is located between the fixed cylinder 34 and the airtight slide plate 44. The first spring 342 is used to lift and reset the airtight slide plate 44 by the elastic force of the first spring 342 after the internal pressure weakens after the air is conveyed through the conveying hole 332, so that the entire cleaning process returns to the initial state.
[0041] During use, the external air is introduced into the dust removal chamber 31 by starting the heat dissipation fan 2. Under the action of the continuously increasing pressure inside the dust removal chamber 31, the airtight slide plate 44 on the cleaning assembly 4 will be driven to move, so that the conveying hole 332 opened in the conveying pipe 33 provided inside the dust removal net plate 32 can enter the upper area of the airtight slide plate 44, thereby opening the flow channel of the entire conveying pipe 33. At this moment, after the channel is opened, the high-speed air flow will enter the box body 1 through the air supply pipe 35. Due to the influence of different gas flow rates, when the external gas passes through the box, it will entrain the internal gas carrying heat, so that the entrained gas will follow the external air and be discharged from the air outlet 36. The discharged air can also assist in the air flow disturbance of the heat dissipation fins provided on the box body 1, enhancing the heat dissipation effect of the entire heat dissipation fins. Embodiment
[0042] Please refer to Figures 1 to 8 , which is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is:
[0043] The collection assembly 5 includes a collection bottom plate 51 provided inside the dust removal chamber 31. Symmetrically arranged limiting square plates 52 are provided on the collection bottom plate 51. The limiting square plates 52 are overall square, and both sides of the slot opened on its surface have a certain inclination angle, so that when the upper cover plate 53 provided on the scraping plate 41 descends, the push plate 54 movably provided on the upper cover plate 53 will move as a whole after being squeezed by the limiting square plate 52, thereby pushing the scraped dust to both sides for collection. Upper cover plates 53 are symmetrically arranged outside the scraping plate 41. The upper cover plates 53 are overall in the shape of an inverted square box, and a push plate 54 is slidably connected inside it. Through the contact between the fixed rod 541 provided on the push plate 54 and the limiting square plate 52, when the push plate 54 contacts the limiting square plate 52, it will move by itself, thereby pushing all the dust inside to both sides of the collection bottom plate 51 for collection. A push plate 54 is movably provided on the upper cover plate 53. The push plate 54 is in a snap-fit sliding relationship with the sliding slot 531 opened on the upper cover plate 53 through symmetrically arranged fixed rods 541, preventing the push plate 54 from falling off the upper cover plate 53. And the protruding fixed rod 541 will contact the limiting square plate 52 during the movement of the entire upper cover plate 53, thereby forming a push on the push plate 54.
[0044] Symmetric sliding grooves 531 are provided on the upper cover plate 53. Fixed rods 541 are symmetrically arranged on the pushing plate 54, and the fixed rods 541 are engaged and slidable with the sliding grooves 531. The sliding grooves 531 provided on the upper cover plate 53 are straight grooves, so that during the entire movement of the pushing plate 54, it always translates along a straight line, thus avoiding the situation where dust cannot be collected. The collection bottom plate 51 is symmetrically provided with collection ports 511, and the collection ports 511 are used to collect the dust pushed by the pushing plate 54, so that the dust can fall into the collection box 62 through the collection ports 511, thereby realizing the collection of dust.
[0045] A partition plate 6 is arranged inside the placement groove 11, and the partition plate 6 is in contact with one side of the air supply pipe 35. Symmetric guide rails 61 are arranged on the side of the partition plate 6 away from the air supply pipe 35. The guide rails 61 are used to guide the placed collection box 62 when placing the collection box 62, to avoid the situation where the opening directly above the collection box 62 cannot form a fitting relationship with the collection ports 511 provided on the collection bottom plate 51. A collection box 62 is arranged on the side of the partition plate 6 close to the guide rails 61, and the collection box 62 is used to collect the dust falling from the collection ports 511.
[0046] During use, the downward movement of the sealed slide plate 44 will drive the scraping plate 41 and the fixed ring plate 43 connected to the U-shaped frame 42 on one side to descend synchronously. During the downward movement of the fixed ring plate 43, through the cooperation between the set limit rod 431 and the spiral groove 331 provided on the conveying pipe 33, the conveying pipe 33 and the dust removal net plate 32 as a whole will rotate. The rotating dust removal net plate 32 rubs against the scraping plate 41 and the side walls of the U-shaped frame 42, thereby scraping off the attached dust, avoiding the blockage of the entire dust removal net plate 32 by the attached dust and causing a decrease in the overall ventilation efficiency.
[0047] The remaining structures are the same as those in Embodiment 1. Embodiment
[0048] Please refer to Figures 1 to 10 , which is the third embodiment of the present invention. The difference between this embodiment and the first and second embodiments is:
[0049] On one side of the collection box 62 close to the collection port 511, there are symmetrically movable pressing plates 63. The pressing plates 63 are integrally embedded inside the collection box 62. The pressing plate 63 is composed of a square plate and a square elastic rubber strip. Through the elastic force of the provided elastic rubber strip and the second spring 64, the pressing plate 63 is attached to the surface of the collection port 511. A second spring 64 is arranged on the side of the pressing plate 63 close to the collection box 62, and the second spring 64 is located inside the entire collection box 62. During the telescopic process of the entire pressing plate 63, the protrusions on both sides of the pressing plate 63 and the notches inside the collection box 62 are used for limiting, so that during the extension process, the pressing plate 63 will not become detached. At the same time, the second spring 64 can provide continuous elasticity, and under the elasticity of the second spring 64, the pressing plate 63 is always in close contact with the collection port 511.
[0050] On one side of the collection box 62, there is a clamping pull rod 621. The clamping pull rod 621 is integrally L-shaped. It forms a limiting effect with the telescopic square rod 65 arranged on the partition plate 6. When the collection box 62 is completely placed inside, through the cooperation between the telescopic square rod 65 and the clamping pull rod 621, the collection box 62 is limited. The telescopic square rods 65 are symmetrically arranged on the partition plate 6. The telescopic square rods 65 are inserted into the partition plate 6. By pulling the telescopic square rods 65 into the gap between the collection box 62 and the clamping pull rod 621, a limiting effect on the entire collection box 62 is formed.
[0051] During use, when the scraping plate 41 starts to descend, the two upper cover plates 53 fixedly connected to the scraping plate 41 will descend synchronously. During the descent, the push plate 54 that is clamped and slides on the upper cover plate 53 will come into contact with the inclined surface of the limiting square plate 52 through the provided fixed rod 541, so that the limiting square plate 52 squeezes the entire push plate 54, causing the entire limiting square plate 52 to displace, and pushing the dust gathered between the collection bottom plate 51 and the upper cover plate 53. Finally, it falls through the collection port 511 opened on the collection bottom plate 51 into the collection box 62 arranged below. After enough dust is collected inside the collection box 62, by retracting the telescopic square rod 65, then the entire collection box 62 is taken out for centralized processing, and a new collection box 62 is placed, completing the replacement of the entire collection box 62.
[0052] The remaining structures are the same as those of Embodiments 1 and 2.
[0053] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. The large model edge box based on electric power safety operation includes a box body (1), and is characterized in that: One side of the box body (1) is provided with a placement groove (11), a heat dissipation fan (2) is arranged inside the placement groove (11), and a heat dissipation component (3) is arranged on the side of the heat dissipation fan (2) close to the box body (1); The heat dissipation component (3) includes a dust removal bin (31) arranged inside the placement groove (11), and the dust removal bin (31) is located between the heat dissipation fan (2) and the box body (1). A dust removal net plate (32) is movably arranged inside the dust removal bin (31). A conveying pipeline (33) is arranged inside the dust removal net plate (32). A fixing cylinder (34) is arranged on the side of the dust removal net plate (32) away from the dust removal bin (31). An air supply pipe (35) is arranged on the side of the fixing cylinder (34) away from the dust removal net plate (32), and one end of the fixing cylinder (34) extends into the inner cavity of the air supply pipe (35). An air outlet (36) is arranged on the side of the air supply pipe (35) away from the fixing cylinder (34). A cleaning component (4) is arranged on the dust removal net plate (32), and the cleaning component (4) is used to clean the dust impurities filtered on the dust removal net plate (32). A collection component (5) is arranged inside the dust removal bin (31); The cleaning component (4) includes a scraping plate (41) movably arranged outside the dust removal net plate (32). A U-shaped frame (42) is arranged on the side of the scraping plate (41) close to the fixing cylinder (34). A fixing ring plate (43) is arranged at one end of the U-shaped frame (42) inside the dust removal net plate (32), and the fixing ring plate (43) is in contact with the dust removal net plate (32). A sealed sliding plate (44) is arranged on the side of the U-shaped frame (42) close to the fixing cylinder (34), and the sealed sliding plate (44) is located inside the dust removal net plate (32). A limiting rod (431) is arranged on the fixing ring plate (43). A limiting groove (341) is arranged on the fixing cylinder (34), and the limiting groove (341) is in snap-fit sliding connection with the U-shaped frame (42); The collection component (5) includes a collection bottom plate (51) arranged inside the dust removal bin (31). Limiting square plates (52) are symmetrically arranged on the collection bottom plate (51). Upper cover plates (53) are symmetrically arranged outside the scraping plate (41). A push plate (54) is movably arranged on the upper cover plates (53). Sliding grooves (531) are symmetrically arranged on the upper cover plates (53). Fixing rods (541) are symmetrically arranged on the push plate (54), and the fixing rods (541) are in snap-fit sliding connection with the sliding grooves (531). Collection ports (511) are symmetrically arranged on the collection bottom plate (51).
2. The large model edge box based on electric power safety operation according to claim 1, wherein: Ventilation holes (351) are arranged in an array on the side of the air supply pipe (35) close to the inside of the box body (1).
3. The large model edge box based on electric power safety operation according to claim 2, characterized in that: The surface of the conveying pipeline (33) is provided with a spiral groove (331), and the spiral groove (331) is engaged and slidable with the limiting rod (431). A conveying hole (332) is provided on one side of the conveying pipeline (33) away from the fixed ring plate (43). A first spring (342) is arranged inside the fixed cylinder (34), and the first spring (342) is located between the fixed cylinder (34) and the airtight sliding plate (44).
4. The edge box of the large model based on electric power safety operation according to claim 1, characterized in that: A partition plate (6) is arranged inside the placement groove (11), and the partition plate (6) is in contact with one side of the air supply pipe (35). Guide rails (61) are symmetrically arranged on one side of the partition plate (6) away from the air supply pipe (35). A collection box (62) is arranged on one side of the partition plate (6) close to the guide rail (61).
5. The edge box of the large model based on electric power safety operation according to claim 4, characterized in that: Tightening plates (63) are symmetrically and movably arranged on one side of the collection box (62) close to the collection port (511), and the tightening plates (63) are integrally embedded inside the collection box (62). A second spring (64) is arranged on one side of the tightening plate (63) close to the collection box (62), and the second spring (64) is located inside the entire collection box (62).
6. The large model edge box based on electric power safety operation according to claim 5, characterized in that: A clamping pull rod (621) is arranged on one side of the collection box (62), and telescopic square rods (65) are symmetrically arranged on the partition plate (6).
Citation Information
Patent Citations
Overvoltage protection cabinet
CN116937382A