Power supply aging detection cabinet convenient for ventilation and heat dissipation
By using a condenser tube and an oblique sponge plate structure in the power aging detection cabinet to cool down the gas, and equipped with a cleaning device and a pipe cleaning mechanism, the problem of temperature rise and dust blockage of the detection cabinet is solved, and safety and efficiency are improved.
Patent Information
- Application Number
- CN202510849303.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-07-22
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing power aging detection cabinet is prone to safety hazards due to sharp rise in temperature after long-term use, and particles such as dust can easily clog the ventilation system, affecting ventilation efficiency.
The condensing pipe and oblique sponge plate structure are used to cool the gas, and the dust is cleaned through the cleaning device and the pipe cleaning mechanism to prevent dust accumulation and ensure the normal operation of the ventilation system.
Effectively prevent the internal temperature of the detection cabinet from rising sharply, reduce safety hazards, and maintain efficient operation of the ventilation system, prevent dust clogging, and improve equipment safety and efficiency.
Smart Images

Figure CN120352799A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power aging detection cabinets, and particularly relates to a power aging detection cabinet facilitating ventilation and heat dissipation. Background Art
[0002] A power aging detection cabinet is a device specifically used to detect the aging condition of power products (such as power adapters, switching power supplies, etc.). The cabinet body is generally made of metal material, having good electromagnetic shielding performance to prevent the influence of external electromagnetic interference on the test results. At the same time, the outer shell of the cabinet body can protect the internal test circuit and the safety of the operator. Power aging refers to the phenomenon that the performance of internal electronic components of a power supply (such as a power adapter, a switching power supply, etc.) gradually declines during long-term use or under specific working conditions. This decline is mainly due to the combined action of multiple factors such as electricity, heat, and mechanical stress on the electronic components. During the repeated charge and discharge process, the internal dielectric of the power supply will gradually age; Existing detection cabinets are prone to problems such as power aging after long-term use. After power aging, it will cause unstable output voltage and insufficient output current of the device. In severe cases, it will even lead to circuit short-circuit and overload, causing the device to heat up sharply and leading to fire, posing a safety hazard. Therefore, we propose a power aging detection cabinet facilitating ventilation and heat dissipation. Summary of the Invention
[0003] To solve the above technical problems, the present invention provides a power aging detection cabinet facilitating ventilation and heat dissipation, including: A cabinet body, with a cabinet door provided on the inner side of the cabinet body; A high-pressure air pump, which is used to drive the gas inside the cabinet body to flow for ventilation and air exchange; A ventilation and heat dissipation device, which quickly dissipates heat from the inside of the cabinet body by cooling the gas about to enter the cabinet body, preventing the temperature inside the detection cabinet from rising sharply when the aging power supply inside works for a long time, which may affect the working efficiency and easily cause safety hazards; A cleaning device, which is used to clean the dust and other particulate impurities intercepted by the ventilation and heat dissipation device in the gas, preventing the dust and other particulate impurities intercepted by the components in the ventilation and heat dissipation device from being too many after long-term use, causing congestion and affecting the ventilation efficiency; The inner side of the cabinet body is rotatably connected to the top of the cabinet door through a rotating bolt. The top of the cabinet body is communicated with the bottom of the high-pressure air pump. One side of the ventilation and heat dissipation device penetrates through one side of the cabinet body and is fixedly connected to the cabinet body. There are two ventilation and heat dissipation devices, and the two ventilation and heat dissipation devices are respectively distributed on both sides of the cabinet body. The inner side of the cleaning device is slidably connected to the outer side of the ventilation and heat dissipation device; Among them, the ventilation and heat dissipation device includes: A condenser tube, which is used to quickly cool the gas about to enter the cabinet. By arranging the condenser tube between two inclined sponge plates, the temperature of the gas about to enter the interior of the cabinet is reduced, preventing the temperature of the aging power supply inside the detection cabinet from rising sharply during long-term operation, which not only affects the working efficiency but also easily causes potential safety hazards. The ventilation and heat dissipation device further includes a side connection plate. One side of the side connection plate is provided with a rectangular ventilation hole. One side of the side connection plate is fixedly connected with an inclined sponge plate. When the gas enters between the two inclined sponge plates and contacts the surface of the inclined sponge plate, the dust and other particulate impurities carried by the gas when it contacts the surfaces of the two inclined sponge plates will also be trapped in the small holes of the sponge itself, preventing a large amount of dust and other particulate impurities from being carried by the gas flow when the external air environment is relatively harsh from entering the cabinet and adhering to the power supply after entering the cabinet. A dust screening round hole is provided on the outer side of the inclined sponge plate. By providing the dust screening round hole, the ventilation effect of the inclined sponge plate is increased to facilitate the gas to come into contact with the surface of the inclined sponge plate over a large area, preventing a large amount of gas from pouring in from between the two inclined sponge plates, resulting in some gas entering the cabinet without being dust screened. A side sealing inclined plate is fixedly connected to the bottom of the inclined sponge plate. The two side sealing inclined plates provided at the bottom of the inclined sponge plate cover both sides of the inclined sponge plate, preventing a large amount of gas from directly entering the rectangular ventilation hole from both sides of the inclined sponge plate and making it difficult to contact the condenser tube for temperature reduction. One side of the side sealing inclined plate penetrates and is threadedly connected with a threaded rod, and one end of the threaded rod is fixedly connected with a circular sleeve. One side of the side connection plate penetrates one side of the cabinet and is fixedly connected with the cabinet. The outer side of the inclined sponge plate is slidably connected with the inner side of the cleaning device. The side sealing inclined plate is sleeved on the cleaning device and is slidably connected with the cleaning device. A plurality of the rectangular ventilation holes are provided, and the plurality of rectangular ventilation holes are evenly distributed on one side of the side connection plate. One side of the side sealing inclined plate is fixedly connected with one side of the side connection plate. The circular sleeve is sleeved on the outer side of the condenser tube and is slidably connected with the condenser tube. A plurality of the inclined sponge plates are provided, and the plurality of inclined sponge plates are evenly distributed on the side of the side connection plate close to the side sealing inclined plate. A plurality of the dust screening round holes are provided, and the plurality of dust screening round holes are evenly distributed on the outer side of the inclined sponge plate.
[0004] Furthermore, the cleaning device includes a concave long plate. A convex arc block is fixedly connected to the bottom of the concave long plate. A pipe cleaning mechanism is rotatably connected to the outer side of the convex arc block. Thin smooth rods are fixedly connected to both sides of the concave long plate. Side inclined rods are fixedly connected to both sides of the concave long plate. The moving side inclined rods perform scraping cleaning on the surface of the inclined sponge plate, preventing a large amount of dust and other particulate debris from accumulating on the surface of the inclined sponge plate and being easily blown into the cabinet interior by the wind. When the dust and other particulate debris being cleaned are pushed by the side inclined rods, they move downward along the inclined surface until they fall off the inclined sponge plate, preventing the dust and other particulate debris that have accumulated on the inclined sponge plate from being easily reattached and difficult to be quickly discharged from the surface of the inclined sponge plate. An arc-shaped barbed strip is fixedly connected to the top of the concave long plate. The moving arc-shaped barbed strip pierces into the dust screening round holes, preventing the dust screening round holes from being blocked by a large amount of dust and other particulate debris during long-term dust blocking, resulting in a decrease in the ventilation efficiency of the inclined sponge plate. A dense brush is fixedly connected to the outer side of the arc-shaped barbed strip. When the dense brush moves, it sweeps the dust in the sponge small holes of the inclined sponge plate itself, preventing the dust and other particulate debris in the sponge small holes of the inclined sponge plate itself from being difficult to be cleaned by the side inclined rods because they are not on the same horizontal plane as the outer side of the inclined sponge plate. The inner side of the concave long plate is slidably connected to the outer side of the inclined sponge plate. One end of the thin smooth rod penetrates through the side sealing plate and is slidably connected to the side sealing plate. Multiple side inclined rods are provided, and the multiple side inclined rods are evenly distributed on both sides of the concave long plate. Multiple arc-shaped barbed strips are provided, and the multiple arc-shaped barbed strips are evenly distributed on the top of the concave long plate.
[0005] Furthermore, the pigging mechanism includes an annular plate. The pulling thin and smooth rod drives the annular plate to move to a position close to the side-sealing inclined plate through the convex arc block and covers the threaded rod on one side of the circular housing, preventing dust and other particulate impurities attached when a part of the gas enters between the two inclined sponge plates from adhering to the thread surface and affecting its thread adjustment. An annular sliding groove is formed on the outer side of the annular plate, and a waste-discharging round hole is formed on the outer side of the annular plate. By rotating the waste-discharging round hole to the bottom position of the annular plate, it is convenient for the accumulated dust and other particulate impurities inside to be discharged, preventing a part of the dust and other particulate impurities cleaned by the annular arc piece from continuously accumulating inside the annular plate and being difficult to discharge to the outside. Both sides of the annular plate are fixedly connected with annular arc pieces. The moving annular arc pieces constantly scrape and clean the surface of the condensing pipe, preventing the surface of the condensing pipe from being covered by a large amount of dust and other particulate impurities after long-term use, which makes it difficult for the gas to directly contact its surface for cooling. An arc-shaped square hole is formed on the outer side of the annular arc piece. The multiple arc-shaped square holes formed on the outer side of the annular arc piece facilitate the passage of the cleaned dust and other particulate impurities, preventing a large amount of the dust and other particulate impurities cleaned by the annular arc piece from accumulating inside the annular arc piece and being difficult to discharge to the outside. The inner wall of the annular sliding groove is rotationally connected with the outer side of the convex arc block. A plurality of waste-discharging round holes are provided, and the plurality of waste-discharging round holes are distributed on the outer side of the annular plate. A plurality of arc-shaped square holes are provided, and the plurality of arc-shaped square holes are evenly distributed on the outer side of the annular arc piece.
[0006] The beneficial effects of the present invention are as follows: 1. In the present invention, a condensing pipe is arranged between the two inclined sponge plates to cool the gas about to enter the cabinet body, preventing the temperature of the aging power supply inside the detection cabinet from rising sharply during long-term operation, which affects the working efficiency and is prone to potential safety hazards. The moving side inclined rod scrapes and cleans the surface of the inclined sponge plate, preventing a large amount of dust and other particulate impurities from adhering to the surface of the inclined sponge plate and being easily blown into the cabinet body by the wind. The moving annular arc piece constantly scrapes and cleans the surface of the condensing pipe, preventing the surface of the condensing pipe from being covered by a large amount of dust and other particulate impurities after long-term use, which makes it difficult for the gas to directly contact its surface for cooling.
[0007] 2. By providing a ventilation and heat dissipation device in the present invention, when the gas comes into contact with the surfaces of the two inclined sponge plates, the dust and other particulate impurities carried by the gas will also be trapped in the small holes of the sponge, preventing a large amount of dust and other particulate impurities from adhering to the power supply after entering the cabinet when the external air environment is relatively harsh during gas flow. By opening dust screening round holes, the ventilation effect of the inclined sponge plates is increased to facilitate the large-area contact of the gas with the surfaces of the inclined sponge plates, preventing a large amount of gas from surging in from between the two inclined sponge plates and causing some gas to enter the cabinet without being screened by dust. By covering both sides of the inclined sponge plates with two side-sealing inclined plates provided at the bottom of the inclined sponge plates, preventing a large amount of gas from directly entering the rectangular ventilation holes from both sides of the inclined sponge plates and making it difficult to contact the condensing pipe for cooling. By providing a condensing pipe between the two inclined sponge plates to cool the gas about to enter the interior of the cabinet, preventing the temperature of the aging power supply inside the detection cabinet from rising sharply during long-term operation, which affects the working efficiency and is prone to causing potential safety hazards.
[0008] 3. By providing a cleaning device in the present invention, the moving side-mounted inclined rod scrapes and cleans the surface of the inclined sponge plate, preventing a large amount of dust and other particulate impurities from accumulating on the surface of the inclined sponge plate and being easily blown into the interior of the cabinet by the wind after being fully attached. When the dust and other particulate impurities being cleaned are pushed by the side-mounted inclined rod, they move downward along its inclined surface until they fall off the inclined sponge plate, preventing a large amount of dust and other particulate impurities accumulated on the inclined sponge plate from being easily reattached and difficult to be quickly discharged from the surface of the inclined sponge plate. The moving arc-shaped barbs pierce into the interior of the dust screening round holes, preventing the dust screening round holes from being filled with a large amount of dust and other particulate impurities during long-term dust blocking, resulting in blockage and a decrease in the ventilation efficiency of the inclined sponge plates. When the dense brush moves, it sweeps the dust in the small sponge holes of the inclined sponge plate, preventing the dust and other particulate impurities trapped in the small sponge holes of the inclined sponge plate from being at the same horizontal plane as the outer side of the inclined sponge plate and being difficult to be cleaned by the side-mounted inclined rod.
[0009] 4. By providing a condensing pipe cleaning mechanism in the present invention, the moving annular arc plate constantly scrapes and cleans the surface of the condensing pipe, preventing the surface of the condensing pipe from being covered with a large amount of dust and other particulate impurities after long-term use, which makes it difficult for the gas to directly contact the surface for cooling. The multiple arc-shaped square holes opened on the outer side of the annular arc plate facilitate the passage of the cleaned dust and other particulate impurities, preventing a large amount of dust and other particulate impurities cleaned by the annular arc plate from accumulating inside the annular arc plate and being difficult to be discharged to the outside. The annular plate moves to a position close to the side-sealing inclined plate and covers the threaded rod on one side of the circular housing, preventing the dust and other particulate impurities carried by a part of the gas when it enters between the two inclined sponge plates from adhering to the threaded surface and affecting its thread adjustment. By rotating the impurity discharge round hole to the bottom position of the annular plate, it is convenient for the accumulated dust and other particulate impurities inside to be discharged, preventing a part of the dust and other particulate impurities cleaned by the annular arc plate from continuously accumulating inside the annular plate and being difficult to be discharged to the outside. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 This is a schematic structural diagram of the power aging detection cabinet of the present invention; Figure 2 This is a schematic bottom structure diagram of the power aging detection cabinet of the present invention; Figure 3 This is a schematic structural diagram of the ventilation and heat dissipation device of the present invention; Figure 4 This is a schematic side sectional structure diagram of the ventilation and heat dissipation device of the present invention; Figure 5 This is a schematic side structure diagram of the cleaning device of the present invention; Figure 6 This is a schematic bottom structure diagram of the cleaning device of the present invention; Figure 7 This is a schematic side sectional structure diagram of the pipe cleaning mechanism of the present invention; Figure 8 This is a schematic bottom structure diagram of the pipe cleaning mechanism of the present invention; In the figure: 1, cabinet body; 2, cabinet door; 3, high-pressure air pump; 4, ventilation and heat dissipation device; 5, cleaning device; 401, side connection plate; 402, rectangular ventilation hole; 403, inclined sponge plate; 404, dust screening round hole; 405, side sealing inclined plate; 406, threaded rod; 407, circular sleeve; 408, condensation pipe; 501, concave long plate; 502, convex arc block; 503, pipe cleaning mechanism; 504, thin sliding rod; 505, side inclined rod; 506, arc-shaped thorn strip; 507, dense brush; 5031, annular plate; 5032, annular sliding groove; 5033, waste discharging round hole; 5034, annular arc piece; 5035, arc-shaped square hole. Specific embodiments
[0011] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for the purpose of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.
[0012] The first embodiment, please refer to Figures 1 - 4 , the present invention is a power aging detection cabinet convenient for ventilation and heat dissipation, including: Cabinet body 1, and a cabinet door 2 is arranged inside the cabinet body 1; High-pressure air pump 3, which is used to drive the gas inside the cabinet body 1 to flow for ventilation and air change; A ventilation and heat dissipation device 4, which quickly dissipates heat from the inside of the cabinet 1 by cooling the gas about to enter the cabinet 1; A cleaning device 5, which is used to clean particulate impurities such as dust intercepted by the ventilation and heat dissipation device 4 in the gas; The inner side of the cabinet 1 is rotatably connected to the top of the cabinet door 2 through a rotating bolt. The top of the cabinet 1 is communicated with the bottom of the high-pressure air pump 3. One side of the ventilation and heat dissipation device 4 penetrates through one side of the cabinet 1 and is fixedly connected to the cabinet 1. There are two ventilation and heat dissipation devices 4, and the two ventilation and heat dissipation devices 4 are respectively distributed on both sides of the cabinet 1. The inner side of the cleaning device 5 is slidably connected to the outer side of the ventilation and heat dissipation device 4; Among them, the ventilation and heat dissipation device 4 includes: A condensing pipe 408, which is used to quickly cool the gas about to enter the cabinet 1; The ventilation and heat dissipation device 4 further includes a side connection plate 401. A rectangular ventilation hole 402 is opened on one side of the side connection plate 401. An inclined sponge plate 403 is fixedly connected to one side of the side connection plate 401. A dust screening round hole 404 is opened on the outer side of the inclined sponge plate 403. A side sealing inclined plate 405 is fixedly connected to the bottom of the inclined sponge plate 403. One side of the side sealing inclined plate 405 penetrates through and is threadedly connected to a threaded rod 406. One end of the threaded rod 406 is fixedly connected to a circular sleeve 407; One side of the side connection plate 401 penetrates through one side of the cabinet 1 and is fixedly connected to the cabinet 1. The outer side of the inclined sponge plate 403 is slidably connected to the inner side of the cleaning device 5. The side sealing inclined plate 405 is sleeved on the cleaning device 5 and is slidably connected to the cleaning device 5. There are multiple rectangular ventilation holes 402, and the multiple rectangular ventilation holes 402 are evenly distributed on one side of the side connection plate 401; One side of the side sealing inclined plate 405 is fixedly connected to one side of the side connection plate 401. The circular sleeve 407 is sleeved on the outer side of the condensing pipe 408 and is slidably connected to the condensing pipe 408; There are multiple inclined sponge plates 403, and the multiple inclined sponge plates 403 are evenly distributed on one side of the side connection plate 401 close to the side sealing inclined plate 405. There are multiple dust screening round holes 404, and the multiple dust screening round holes 404 are evenly distributed on the outside of the inclined sponge plate 403. During use, the high-pressure air pump 3 pumps air inside the cabinet body 1. The air inside the cabinet body 1 gradually decreases, enabling external air to pass through the ventilation and heat dissipation device 4 and enter the cabinet body 1 after being cooled by the ventilation and heat dissipation device 4 for heat dissipation and temperature reduction. At the same time, particulate impurities such as dust in the air will also be intercepted by the ventilation and heat dissipation device 4. After the ventilation and heat dissipation device 4 is used for a period of time, the cleaning device 5 can be manually pulled to clean the particulate impurities such as dust intercepted by the ventilation and heat dissipation device 4 in the gas. Insert one end of the condensing pipe 408 into the inner side of the circular sleeve 407 and align one end with the inner side of another circular sleeve 407. Manually rotate the threaded rod 406 to be in threaded cooperation with the side sealing inclined plate 405 to drive the circular sleeve 407 at one end to rotate and move towards the condensing pipe 408 until another circular sleeve 407 is sleeved on one end of the condensing pipe 408 to fix it. The condensing pipe 408 is disassembled and installed through the threaded cooperation between the threaded rod 406 and the side sealing inclined plate 405. When the high-pressure air pump 3 pumps air inside the cabinet body 1, a part of the external gas passes through the dust screening round holes 404 and enters between the two inclined sponge plates 403, and another part of the external gas directly enters between the two inclined sponge plates 403. The gas enters between the two inclined sponge plates 403 and comes into contact with the surface of the inclined sponge plate 403. The particulate impurities such as dust attached when the gas comes into contact with the surface of the two inclined sponge plates 403 will also be trapped in the small holes of the sponge. At the same time, the multiple dust screening round holes 404 opened on the inclined sponge plate 403 are convenient for increasing the ventilation effect of the inclined sponge plate 403. Increasing the ventilation effect of the inclined sponge plate 403 by opening the dust screening round holes 404 facilitates the gas to come into contact with the surface of the inclined sponge plate 403 over a large area. The two side sealing inclined plates 405 provided at the bottom of the inclined sponge plate 403 cover both sides of the inclined sponge plate 403. The gas entering between the two inclined sponge plates 403 comes into contact with the condensing pipe 408 and then passes through the rectangular ventilation holes 402 to dissipate heat and cool down the power supply inside the cabinet body 1. The condensing pipe 408 is provided between the two inclined sponge plates 403 to cool the gas about to enter the cabinet body 1.
[0013] For the second embodiment, please refer to Figures 1 - 8, the present invention provides a power aging detection cabinet facilitating ventilation and heat dissipation: The cleaning device 5 includes a concave long plate 501. A convex arc block 502 is fixedly connected to the bottom of the concave long plate 501. A pipe cleaning mechanism 503 is rotatably connected to the outside of the convex arc block 502. Thin sliding rods 504 are fixedly connected to both sides of the concave long plate 501. Side inclined rods 505 are fixedly connected to both sides of the concave long plate 501. An arc-shaped thorn strip 506 is fixedly connected to the top of the concave long plate 501. A dense brush 507 is fixedly connected to the outside of the arc-shaped thorn strip 506. The inner side of the concave long plate 501 is slidably connected to the outside of the inclined sponge plate 403. One end of the thin sliding rod 504 penetrates through the side sealing plate and is slidably connected to the side sealing plate. There are multiple side inclined rods 505, and the multiple side inclined rods 505 are evenly distributed on both sides of the concave long plate 501. There are multiple arc-shaped thorn strips 506, and the multiple arc-shaped thorn strips 506 are evenly distributed on the top of the concave long plate 501; The pigging mechanism 503 includes an annular plate 5031. An annular chute 5032 is provided on the outer side of the annular plate 5031. A waste-discharging round hole 5033 is provided on the outer side of the annular plate 5031. Annular arc pieces 5034 are fixedly connected to both sides of the annular plate 5031. An arc-shaped square hole 5035 is provided on the outer side of the annular arc piece 5034. The inner wall of the annular chute 5032 is rotatably connected to the outer side of the convex arc block 502. There are multiple waste-discharging round holes 5033, and the multiple waste-discharging round holes 5033 are distributed on the outer side of the annular plate 5031. There are multiple arc-shaped square holes 5035, and the multiple arc-shaped square holes 5035 are evenly distributed on the outer side of the annular arc piece 5034. When in use, after the cabinet body 1 has been ventilated and cooled for a long time, manually pull the thin sliding rod 504 from one side of the side-sealing inclined plate 405 to the outside to drive the concave long rod to move. When the concave long plate 501 moves, it drives the concave arc block at the bottom to move. When the concave arc block moves, it drives the pigging mechanism 503 on the outside to move together. When the pigging mechanism 503 moves, it scrapes and cleans the surface of the condensing pipe 408. When the concave long plate 501 moves, it drives the side inclined rods 505 on both sides and the arc-shaped thorn strips 506 at the top to move together. When the side inclined rod 505 moves, it is always in contact with the surface of the inclined sponge plate 403. The moving side inclined rod 505 scrapes and cleans the surface of the inclined sponge plate 403. When the side inclined rod 505 moves, it also pushes the dust and other particulate impurities that have been cleaned to move. When the dust and other particulate impurities that have been cleaned are pushed by the side inclined rod 505, they move downward along its inclined surface until they fall off the inclined sponge plate 403. The arc-shaped thorn strip 506 intermittently penetrates into the dust-screening round hole 404 during movement. The moving arc-shaped thorn strip 506 penetrates into the inside of the dust-screening round hole 404. When the arc-shaped thorn strip 506 moves, it drives the dense brush 507 on the outside to move together. When the dense brush 507 moves, it sweeps the dust from the sponge small holes of the inclined sponge plate 403 itself. When the convex arc block 502 moves, it drives the annular plate 5031 to move. When the annular plate 5031 moves, it drives the annular arc pieces 5034 on both sides to move together. When the annular arc piece 5034 moves, it is always in contact with the surface of the condensing pipe 408. The moving annular arc piece 5034 always scrapes and cleans the surface of the condensing pipe 408. The multiple arc-shaped square holes 5035 provided on the outer side of the annular arc piece 5034 facilitate the passage of the dust and other particulate impurities that have been cleaned. Pull the thin sliding rod 504 to drive the annular plate 5031 to move to a position close to the side-sealing inclined plate 405 through the convex arc block 502 and cover the threaded rod 406 on one side of the circular housing 407. When not covering the threaded rod 406, the annular plate 5031 can be manually rotated to a position where the waste-discharging round hole 5033 is at the bottom through the rotational cooperation between the annular plate 5031 and the convex arc block 502. By rotating the waste-discharging round hole 5033 to the bottom position of the annular plate 5031, it is convenient for the accumulated dust and other particulate impurities inside to be discharged.
[0014] When the present invention is in operation, the high-pressure air pump 3 pumps air out of the cabinet body 1. As the air inside the cabinet body 1 gradually decreases, the external air passes through the ventilation and heat dissipation device 4 and enters the cabinet body 1 after being cooled by the ventilation and heat dissipation device 4 to dissipate heat and cool it down. At the same time, dust and other particulate impurities in the air will also be intercepted by the ventilation and heat dissipation device 4. After the ventilation and heat dissipation device 4 is used for a period of time, the cleaning device 5 can be manually pulled to clean the dust and other particulate impurities intercepted by the ventilation and heat dissipation device 4 in the gas. One end of the condensing pipe 408 is inserted into the inner side of the circular sleeve 407 and aligned with the inner side of another circular sleeve 407. By manually rotating the threaded rod 406 to engage with the side-sealing inclined plate 405 in a threaded manner, the circular sleeve 407 at one end is driven to rotate and move towards the condensing pipe 408 until another circular sleeve 407 is sleeved on one end of the condensing pipe 408 to fix it. The condensing pipe 408 is disassembled and installed through the threaded engagement between the threaded rod 406 and the side-sealing inclined plate 405. When the high-pressure air pump 3 pumps air out of the cabinet body 1, a part of the external gas passes through the dust-screening round holes 404 and enters between the two inclined sponge plates 403, and another part of the external gas directly enters between the two inclined sponge plates 403. When the gas enters between the two inclined sponge plates 403 and contacts the surface of the inclined sponge plates 403, the dust and other particulate impurities attached to the gas when it contacts the surface of the two inclined sponge plates 403 will also be trapped in the small holes in the sponge itself. At the same time, the multiple dust-screening round holes 404 opened on the inclined sponge plates 403 are convenient for increasing the ventilation effect of the inclined sponge plates 403. By opening the dust-screening round holes 404 to increase the ventilation effect of the inclined sponge plates 403, it is convenient for the gas to come into large-area contact with the surface of the inclined sponge plates 403. The two side-sealing inclined plates 405 provided at the bottom of the inclined sponge plates 403 cover both sides of the inclined sponge plates 403. The gas that enters between the two inclined sponge plates 403 contacts the condensing pipe 408 and then passes through the rectangular ventilation holes 402 to dissipate heat and cool down the power supply inside the cabinet body 1. By arranging the condensing pipe 408 between the two inclined sponge plates 403, the gas about to enter the cabinet body 1 is cooled. After the cabinet body 1 has been ventilated and cooled for a long time, the thin and smooth rod 504 is manually pulled outward from one side of the side-sealing inclined plate 405 to drive the concave long rod to move. When the concave long plate 501 moves, it drives the concave arc block at the bottom to move. When the concave arc block moves, it drives the cleaning mechanism 503 on the outside to move together. When the cleaning mechanism 503 moves, it scrapes and cleans the surface of the condensing pipe 408. When the concave long plate 501 moves, it drives the side inclined rods 505 on both sides and the arc-shaped thorns 506 on the top to move together. When the side inclined rods 505 move, they are always in contact with the surface of the inclined sponge plates 403. The moving side inclined rods 505 scrape and clean the surface of the inclined sponge plates 403. When the side inclined rods 505 move, they also push the dust and other particulate impurities that have been cleaned to move. When the dust and other particulate impurities that have been cleaned are pushed by the side inclined rods 505, they move downward along their inclined surfaces until they fall off the inclined sponge plates 403.The arcuate bar 506 intermittently pierces into the dust screening round hole 404 during movement. When the moving arcuate bar 506 pierces into the interior of the dust screening round hole 404, the moving arcuate bar 506 drives the dense brush 507 on the outside to move together. When the dense brush 507 moves, it sweeps the dust in the sponge small holes of the obliquely arranged sponge plate 403. When the convex arc block 502 moves, it drives the annular plate 5031 to move. When the annular plate 5031 moves, it drives the annular arc pieces 5034 on both sides to move together. When the annular arc piece 5034 moves, it is always in contact with the surface of the condensing pipe 408. The moving annular arc piece 5034 always scrapes and cleans the surface of the condensing pipe 408. The multiple arc surface square holes 5035 opened on the outside of the annular arc piece 5034 facilitate the passage of dust and other particulate debris removed. Pulling the smooth rod 504 drives the annular plate 5031 to move close to the side-sealed inclined plate 405 through the convex arc block 502 and covers the threaded rod 406 on one side of the circular housing 407. When not covering the threaded rod 406, the annular plate 5031 can be manually rotated to the position where the waste discharge round hole 5033 is at the bottom through the rotational cooperation of the annular plate 5031 and the convex arc block 502. By rotating the waste discharge round hole 5033 to the bottom position of the annular plate 5031, it is convenient for the accumulated dust and other particulate debris inside to be discharged.,
[0015] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.,
Claims
1. A power aging detection cabinet convenient for ventilation and heat dissipation, characterized in that, Including: A cabinet body (1), with a cabinet door (2) provided inside the cabinet body (1); A high-pressure air pump (3) used to drive the air inside the cabinet body (1) to flow for ventilation; A ventilation and heat dissipation device (4) that quickly dissipates heat inside the cabinet body (1) by cooling the air about to enter the cabinet body (1); A cleaning device (5) used to clean particulate impurities such as dust intercepted by the ventilation and heat dissipation device (4) in the air; The inner side of the cabinet body (1) and the top of the cabinet door (2) are rotatably connected by a rotating bolt. The top of the cabinet body (1) is communicated with the bottom of the high-pressure air pump (3). One side of the ventilation and heat dissipation device (4) penetrates through one side of the cabinet body (1) and is fixedly connected to the cabinet body (1). There are two ventilation and heat dissipation devices (4), and the two ventilation and heat dissipation devices (4) are respectively distributed on both sides of the cabinet body (1). The inner side of the cleaning device (5) is slidably connected to the outer side of the ventilation and heat dissipation device (4); Among them, the ventilation and heat dissipation device (4) includes: A condensing pipe (408) used to quickly cool the air about to enter the cabinet body (1).
2. The power aging detection cabinet convenient for ventilation and heat dissipation according to claim 1, characterized in that: The ventilation and heat dissipation device (4) further includes a side connection plate (401). A rectangular ventilation hole (402) is opened on one side of the side connection plate (401). An inclined sponge plate (403) is fixedly connected to one side of the side connection plate (401). Dust screening round holes (404) are opened on the outer side of the inclined sponge plate (403). A side sealing inclined plate (405) is fixedly connected to the bottom of the inclined sponge plate (403). One end of a threaded rod (406) penetrates through and is threadedly connected to one side of the side sealing inclined plate (405). A circular sleeve (407) is fixedly connected to one end of the threaded rod (406).
3. The power aging detection cabinet facilitating ventilation and heat dissipation according to claim 2, wherein: One side of the side connection plate (401) penetrates through one side of the cabinet body (1) and is fixedly connected to the cabinet body (1). The outer side of the inclined sponge plate (403) is slidably connected to the inner side of the cleaning device (5). The side sealing inclined plate (405) is sleeved on the cleaning device (5) and is slidably connected to the cleaning device (5). There are multiple rectangular ventilation holes (402), and the multiple rectangular ventilation holes (402) are evenly distributed on one side of the side connection plate (401).
4. The power aging detection cabinet facilitating ventilation and heat dissipation according to claim 2, characterized in that: One side of the side sealing inclined plate (405) is fixedly connected to one side of the side connection plate (401). The circular sleeve (407) is sleeved on the outer side of the condensing pipe (408) and is slidably connected to the condensing pipe (408).
5. The power aging detection cabinet facilitating ventilation and heat dissipation according to claim 2, wherein: There are multiple inclined sponge plates (403), and the multiple inclined sponge plates (403) are evenly distributed on the side of the side connection plate (401) close to the side sealing inclined plate (405). There are multiple dust screening round holes (404), and the multiple dust screening round holes (404) are evenly distributed on the outer side of the inclined sponge plate (403).
6. The power aging detection cabinet convenient for ventilation and heat dissipation according to claim 1, wherein: The cleaning device (5) includes a concave long plate (501). A convex arc block (502) is fixedly connected to the bottom of the concave long plate (501). A pipe cleaning mechanism (503) is rotatably connected to the outer side of the convex arc block (502). Thin smooth rods (504) are fixedly connected to both sides of the concave long plate (501). Side inclined rods (505) are fixedly connected to both sides of the concave long plate (501). An arc-shaped thorn strip (506) is fixedly connected to the top of the concave long plate (501). A dense brush (507) is fixedly connected to the outer side of the arc-shaped thorn strip (506).
7. The power aging detection cabinet convenient for ventilation and heat dissipation according to claim 6, characterized in that: The inner side of the concave long plate (501) is slidably connected to the outer side of the inclined sponge plate (403). One end of the thin smooth rod (504) penetrates through the side sealing plate and is slidably connected to the side sealing plate.
8. The power aging detection cabinet facilitating ventilation and heat dissipation according to claim 6, characterized in that: A plurality of the side inclined rods (505) are provided, and the plurality of side inclined rods (505) are evenly distributed on both sides of the concave long plate (501). A plurality of the arc-shaped thorn strips (506) are provided, and the plurality of arc-shaped thorn strips (506) are evenly distributed on the top of the concave long plate (501).
9. The power aging detection cabinet facilitating ventilation and heat dissipation according to claim 6, wherein: The pipe cleaning mechanism (503) includes an annular plate (5031). An annular sliding groove (5032) is formed in the outer side of the annular plate (5031). A waste discharging round hole (5033) is formed in the outer side of the annular plate (5031). Annular arc pieces (5034) are fixedly connected to both sides of the annular plate (5031). An arc surface square hole (5035) is formed in the outer side of the annular arc piece (5034).
10. The power aging detection cabinet facilitating ventilation and heat dissipation according to claim 9, characterized in that: The inner wall of the annular sliding groove (5032) is rotatably connected to the outer side of the convex arc block (502). A plurality of the waste discharging round holes (5033) are provided, and the plurality of waste discharging round holes (5033) are distributed on the outer side of the annular plate (5031). A plurality of the arc surface square holes (5035) are provided, and the plurality of arc surface square holes (5035) are evenly distributed on the outer side of the annular arc piece (5034).