An emergency rescue service station

By installing dehumidification, heat dissipation, and cooling components in emergency rescue service stations, using silicon desiccants to absorb moisture, expel hot air, and utilize rainwater for cooling, the problem of equipment failure caused by humidity and temperature changes is solved, improving the reliability and lifespan of the equipment.

CN116791941BActive Publication Date: 2025-12-05CHANGSHA HUANKANG ENVIRONMENTAL PROTECTION TECH
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Patent Information

Application Number
CN202310810004.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-04
Publication Date
2025-12-05
Estimated Expiration
2043-07-04

AI Technical Summary

Technical Problem

The electronic equipment at existing emergency rescue service stations is susceptible to changes in temperature and humidity, which can lead to equipment malfunctions. In particular, in outdoor environments, humidity and high temperatures can cause equipment to fail or be damaged.

Method used

The system employs a combination of dehumidification, heat dissipation, and cooling components. It absorbs moisture through a silicone desiccant, exhausts hot air through the heat dissipation component, and utilizes rainwater for cooling. Combined with a wind power component, it achieves the recycling of air.

Benefits of technology

It achieves air recycling, solves existing technical problems, achieves air drying effect, improves the emergency response capability of service stations, reduces the service station's service life, solves existing technical problems, achieves air drying effect, and improves equipment reliability and lifespan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an emergency rescue service station and belongs to the technical field of public service equipment, which comprises a station body, a heat dissipation opening is arranged on the side wall of the station body, a collecting hopper is fixedly installed on the inner wall of the heat dissipation opening, a conveying pipe is installed on the side wall of the collecting hopper, a blowing cover is fixedly installed at one end of the conveying pipe, a mounting cover is communicatively installed on the outer surface of the station body, and a dehumidification assembly is arranged on the upper surface of the partition plate; in the application, the dehumidification assembly is arranged, the desiccant is dried by using the hot air in the service station, resource loss is saved, resource utilization is realized, air is dehumidified, too much moisture in the air can be avoided, the electronic components in the service station can be prevented from being damaged, the service station is kept in a dry state, the damage of the service station is reduced, and the emergency of the service station is further improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of public service equipment, and particularly relates to an emergency rescue service station. BACKGROUND

[0002] With the development of cities and towns, the population density is gradually increasing, so emergency situations are prone to occur. Since the emergency is often urgent, an emergency rescue service station needs to be installed in a roadside or other public place to face the occurrence of emergency situations. The emergency rescue service station is divided into many types, such as a fire-fighting cabinet, a cabinet with a defibrillator, a sentry box and the like.

[0003] At present, the emergency rescue service station in the fire-fighting aspect is mainly a fire-fighting cabinet. Some rescue equipment is placed in the cabinet. However, the existing fire-fighting cabinet is mainly provided with fire extinguishers, water guns and other equipment. In a large service station, some electronic equipment is also used for rescue. However, since the service station is arranged outdoors, the temperature in the service station will be high according to the weather condition, or the moisture in the air is prone to enter the service station in a rainy day. If the moisture is too much, the electronic equipment is prone to malfunction, and the high temperature also causes the internal equipment to malfunction. Therefore, the application provides an emergency rescue service station. SUMMARY

[0004] The application aims at solving the above problems and provides an emergency rescue service station.

[0005] In order to achieve the above purpose, the application adopts the following technical scheme: an emergency rescue service station, comprising a station body, a heat dissipation opening is arranged on the side wall of the station body, a collecting hopper is fixedly installed on the inner wall of the heat dissipation opening, a conveying pipe is installed on the side wall of the collecting hopper, a blowing cover is fixedly installed at one end of the conveying pipe, an installation cover is communicatively installed on the outer surface of the station body, a partition plate is fixedly installed on the inner wall of the installation cover, a water storage tank is fixedly installed on the outer surface of the station body, a filter screen is fixedly installed on the upper surface of the water storage tank, a dehumidification assembly is arranged on the upper surface of the partition plate, a heat dissipation assembly is arranged on the inner wall of the installation cover, and a cooling assembly is arranged on the side wall of the water storage tank.

[0006] The dehumidification assembly comprises a worm and a worm wheel, reciprocating lead screws are fixedly installed on the two side walls of the worm wheel, installation plates are rotatably installed at the two ends of the reciprocating lead screws, the lower surfaces of the installation plates are fixedly connected with the upper surface of the partition plate, threaded sleeves are threadedly installed on the outer surfaces of the reciprocating lead screws, and fixed plates are fixedly installed on the outer surfaces of the threaded sleeves.

[0007] Further description is made to the above technical scheme.

[0008] The inner wall of the fixed plate is rotatably provided with a rotating rod, one end of the rotating rod extends out of the upper surface of the mounting cover, the outer surface of the rotating rod is fixedly provided with a transmission gear, the other end of the rotating rod extends out of the lower surface of the partition plate, the upper surface of the partition plate is fixedly provided with a fixed rack, and the fixed rack is in meshing connection with the transmission gear.

[0009] As a further description of the above technical scheme:

[0010] The bottom inner wall of the mounting cover is fixedly provided with a fixed frame, the inner wall of the fixed frame is provided with silicon drying particles, the other end of the rotating rod extends into the fixed frame, the outer surface of the rotating rod is fixedly provided with an agitating plate, the mounting cover and the fixed frame are both provided with an air inlet groove, the inner wall of the air inlet groove of the fixed frame is fixedly provided with a leakage-proof net, and the inner wall of the air inlet groove of the mounting cover is fixedly connected with the outer surface of the air blowing cover.

[0011] As a further description of the above technical scheme:

[0012] The heat dissipation assembly comprises a rotating column and a driving motor, one end of the rotating column is rotatably connected with the inner side wall of the mounting cover, the outer surface of the rotating column is fixedly provided with a first driven bevel gear, one end of the rotating column is fixedly provided with a fixed cylinder, and one end of the fixed cylinder is rotatably connected with the side wall of the fixed frame through a rotating block.

[0013] As a further description of the above technical scheme:

[0014] The upper surface of the driving motor is fixedly connected with the top inner wall of the mounting cover, the output end of the driving motor is fixedly connected with one end of a worm, the other end of the worm extends out of the lower surface of the partition plate, the other end of the worm is fixedly provided with a driving column, one end of the driving column is fixedly provided with a first driving bevel gear, and the first driving bevel gear is in meshing connection with the first driven bevel gear.

[0015] As a further description of the above technical scheme:

[0016] The inner side wall of the fixed cylinder is fixedly provided with a control motor, the output end of the control motor is fixedly provided with a movable rod, one end of the movable rod is rotatably connected with the other inner side wall of the fixed cylinder, the outer surface of the movable rod is fixedly provided with a second driving bevel gear, the inner wall of the shell cavity of the fixed cylinder is rotatably provided with a positioning rod, one end of the positioning rod extends out of the fixed cylinder, one end of the positioning rod is fixedly provided with a fan blade, the other end of the positioning rod extends into the fixed cylinder, the other end of the positioning rod is fixedly provided with a second driven bevel gear, and the second driven bevel gear is in meshing connection with the second driving bevel gear.

[0017] As a further description of the above technical scheme:

[0018] The side wall of the mounting cover is provided with an air inlet, the inner wall of the air inlet is fixedly provided with a filter plate, one end of the fixed plate extends to the outside of the side wall of the mounting cover, the lower surface of the fixed plate is fixedly provided with a cleaning plate, the side wall of the cleaning plate is tightly attached to the side wall of the filter plate, the upper surface of the fixed plate is fixedly provided with a supporting rod, the side wall of the supporting rod is fixedly provided with a scraper, and the lower surface of the scraper is tightly attached to the upper surface of the filter screen of the water storage tank.

[0019] As a further description of the above technical solution:

[0020] The cooling assembly comprises a placement frame and a telescopic water bag, the side wall of the placement frame is slidably connected to the side wall of the water storage tank, the inner wall of the placement frame is fixedly provided with a water absorbing block, and the lower surface of the placement frame is fixedly provided with a spring rod and a moving rack.

[0021] As a further description of the above technical solution:

[0022] The side wall of the telescopic water bag is communicated with a fixed water tank, the side wall of the fixed water tank is fixedly connected to the side wall of the water storage tank, one end of the spring rod is fixedly connected to the upper surface of the fixed water tank, the side wall of the water storage tank is communicated with a water inlet pipe, one end of the water inlet pipe is communicated with the side wall of the fixed water tank, the inner wall of the water inlet pipe is fixedly provided with a one-way valve and a control valve, the input end of the control valve is fixedly provided with a rotating gear, and the moving rack is meshingly connected to the rotating gear.

[0023] As a further description of the above technical solution:

[0024] The side wall of the water storage tank is fixedly provided with a telescopic spring, one end of the telescopic spring is fixedly provided with a pressing plate, the side wall of the pressing plate is fixedly connected to the side wall of the telescopic water bag, the lower surface of the pressing plate is fixedly provided with a baffle, the baffle is aligned with the rotating rod, the side wall of the telescopic water bag is communicated with a water outlet pipe, and one end of the water outlet pipe is communicated with a self-tightening nozzle.

[0025] As described above, due to the adoption of the above technical solution, the present application has the following beneficial effects:

[0026] 1. In this invention, by incorporating a dehumidification component, air passing through the mounting hood first passes through the fixed frame. The silica drying particles within the fixed frame absorb moisture from the air before returning to the station body. When fresh air enters the station body, the hot air inside flows out through the heat dissipation vents. Simultaneously, some hot air is collected by the collection hopper and flows through the conveying pipe into the blowing hood, then blown onto the silica drying particles within the fixed frame, thereby drying the moisture-absorbing silica particles. Simultaneously, the worm gear rotates, causing the worm wheel to drive the reciprocating screw to rotate under the limitation of the mounting plate. As the reciprocating screw rotates, the threaded sleeve on the outer surface causes the fixed plate to move back and forth. At this time, the fixed plate will drive the rotating rod to move back and forth within the fixed frame. During the movement of the rotating rod, due to the meshing connection between the transmission gear and the fixed rack, the transmission gear will drive the rotating rod to rotate under the action of the fixed rack. This causes the rotating rod to move and rotate within the fixed frame. The rotating rod agitates the silica drying particles through the stirring plate. Outside air is drawn into the service station through the heat dissipation component. Before entering the service station, the outside air will pass through the fixed frame. At this time, the silica desiccant inside the fixed frame will absorb the moisture in the air. When the silica desiccant absorbs a certain amount of moisture, it will become damp, and the drying effect will decrease. The original hot air in the service station will then flow out through the heat dissipation vent. Moving outwards, some of the hot air is collected by the collection bucket as it passes through the heat dissipation vent. This hot air is then blown into the fixed frame through the delivery pipe from the blower hood. At this point, the hot air dries the silicone desiccant inside the fixed frame. This process dehumidifies the air, preventing excessive moisture from damaging electronic components in the service station and ensuring a dry environment, thus reducing the risk of damage and improving the service station's emergency response capabilities. Furthermore, using the hot air within the service station to dry the silicone desiccant in the fixed frame achieves resource recycling and conservation. During the drying process of the silicone desiccant... The heat dissipation component uses a connecting structure to allow a rotating rod to move back and forth within a fixed frame while simultaneously rotating. As the rotating rod rotates, it drives a stirring plate to agitate the silica desiccant within the fixed frame. This movement of the silica desiccant during the drying process ensures uniform drying of the desiccant in different locations. This not only improves the drying efficiency of the silica desiccant but also maintains its drying effect on air moisture, ensuring the silica desiccant within the fixed frame remains consistently dry. Compared to traditional drying methods, its drying effect does not diminish over time, eliminating the need for desiccant replacement and reducing operational steps.

[0027] 2. In this invention, a heat dissipation assembly is installed outdoors. The drive motor drives the drive column to rotate via a worm gear. When the drive column rotates, it drives the first drive bevel gear to rotate. Since the first drive bevel gear meshes with the first driven bevel gear, the first driven bevel gear, under the action of the first drive bevel gear, drives the rotating column to rotate. This causes the fixed cylinder to drive the fan blades to rotate via the positioning rod, thereby drawing outside air into the interior of the station. Impurities and dust in the outside air are filtered by the filter plate, causing dust to adhere to the side wall of the filter plate. Depending on the internal conditions of the station, the motor can be controlled to drive the movable rod to rotate. At this time, the movable rod... When rotating, it drives the second drive bevel gear to rotate. Under the action of the second driven bevel gear, the positioning rod drives the fan blades to rotate, thereby changing the air intake volume by changing the angle of the fan blades. During the back-and-forth movement of the fixed plate, it also drives the cleaning plate to move back and forth. At this time, the cleaning plate cleans the dust on the side wall of the filter plate, preventing the service station from being exposed to the outdoors for a long time, which would cause the internal temperature to be too high and damage the items in the service station. It keeps the air in the service station in a circulating state, speeds up the air circulation rate inside the service station, and can change the air volume at the same power according to the temperature of the service station, improving the heat dissipation effect of the service station while reducing power consumption.

[0028] 3. In this invention, by incorporating a cooling component, the water storage tank collects rainwater during rainy weather, and the water-absorbing block inside the placement frame also absorbs rainwater. Simultaneously, the filter screen removes impurities. When the fixed plate moves, it drives a scraper via a support rod, which scrapes impurities off the filter screen. The water-absorbing block, after absorbing a certain amount of water, becomes heavier, causing the moving rack to move downwards. Since the moving rack meshes with a rotating gear, the rotating gear rotates as the moving rack moves, thus closing the control valve. When the temperature rises and the water in the water-absorbing block dries, the placement frame, under the action of the spring rod, causes the moving rack to rise, thereby opening the control valve. When the lever moves the squeezing plate outward via the baffle, the telescopic water bladder draws water from the storage tank into the telescopic water bladder through the inlet pipe. When the baffle loses the support of the rotating lever, the squeezing plate, under the action of the telescopic spring, squeezes the telescopic water bladder. The water in the squeezed telescopic water bladder is sprayed out from the self-tightening nozzle through the outlet pipe, cooling the air around the mounting cover. By collecting rainwater, natural resources are utilized. When the temperature inside and outside the station is not much different, the temperature of the air entering the station is lowered by spraying water, thereby improving the cooling effect of the service station. At the same time, it can also reduce the temperature of the outer surface of the service station and extend its service life. Attached Figure Description

[0029] Figure 1 This is a three-dimensional structural diagram of an emergency rescue service station.

[0030] Figure 2 It is a schematic view of the internal structure of an emergency rescue service station.

[0031] Figure 3 It is a schematic view of the enlarged structure of A in an emergency rescue service station.

[0032] Figure 4 It is a schematic view of the exploded structure of the mounting cover in an emergency rescue service station.

[0033] Figure 5 It is a schematic view of the exploded structure of the fixing cylinder in an emergency rescue service station.

[0034] Figure 6 It is a schematic view of the enlarged structure of B in an emergency rescue service station.

[0035] Figure 7 It is a schematic view of the enlarged structure of C in an emergency rescue service station.

[0036] Figure 8 It is a schematic view of the perspective structure of the fixing plate in an emergency rescue service station.

[0037] Legend:

[0038] 1, station body; 2, heat dissipation port; 3, collection hopper; 4, conveying pipe; 5, mounting cover; 6, water storage tank; 7, partition plate; 8, heat dissipation assembly; 81, rotating column; 82, first driven bevel gear; 83, fixing cylinder; 84, driving motor; 85, driving column; 86, first driving bevel gear; 87, control motor; 88, movable rod; 89, second driving bevel gear; 810, positioning rod; 811, second driven bevel gear; 812, fan blade; 9, dehumidification assembly; 91, worm; 92, worm gear; 93, reciprocating screw; 94, threaded sleeve; 95, fixing plate; 96, rotating rod; 97, transmission gear; 98, fixed rack; 10, cooling assembly; 101, placing frame; 102, water absorption block; 103, spring rod; 104, moving rack; 105, telescopic water bag; 106, water inlet pipe; 107, rotating gear; 108, water outlet pipe; 109, telescopic spring; 1010, extrusion plate; 1011, baffle; 11, filter plate; 12, fixed frame; 13, cleaning plate; 14, support rod; 15, scraper. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0040] Please refer to Figures 1-8 The application provides a technical scheme: an emergency rescue service station, comprising a station body 1, a heat dissipation opening 2 is arranged on the side wall of the station body 1, a collecting hopper 3 is fixedly installed on the inner wall of the heat dissipation opening 2, a conveying pipe 4 is installed on the side wall of the collecting hopper 3, a blowing cover is fixedly installed at one end of the conveying pipe 4, an installation cover 5 is communicatively installed on the outer surface of the station body 1, a partition plate 7 is fixedly installed on the inner wall of the installation cover 5, a water storage tank 6 is fixedly installed on the outer surface of the station body 1, a filter screen is fixedly installed on the upper surface of the water storage tank 6, a dehumidification assembly 9 is arranged on the upper surface of the partition plate 7, a heat dissipation assembly 8 is arranged on the inner wall of the installation cover 5, and a cooling assembly 10 is arranged on the side wall of the water storage tank 6.

[0041] The dehumidification assembly 9 comprises a worm 91 and a worm wheel 92, reciprocating lead screws 93 are fixedly installed on the two side walls of the worm wheel 92, mounting plates are rotatably installed at the two ends of the reciprocating lead screws 93, the lower surfaces of the mounting plates are fixedly connected with the upper surface of the partition plate 7, threaded sleeves 94 are threadedly installed on the outer surfaces of the reciprocating lead screws 93, fixed plates 95 are fixedly installed on the outer surfaces of the threaded sleeves 94, rotating rods 96 are rotatably installed on the inner walls of the fixed plates 95, one end of the rotating rod 96 extends out of the upper surface of the installation cover 5, a transmission gear 97 is fixedly installed on the outer surface of the rotating rod 96, the other end of the rotating rod 96 extends out of the lower surface of the partition plate 7, a fixed rack 98 is fixedly installed on the upper surface of the partition plate 7, the fixed rack 98 is in meshing connection with the transmission gear 97, a fixed frame 12 is fixedly installed on the bottom inner wall of the installation cover 5, silicon drying particles are arranged on the inner wall of the fixed frame 12, the other end of the rotating rod 96 extends into the fixed frame 12, an agitating plate is fixedly installed on the outer surface of the rotating rod 96, the installation cover 5 and the fixed frame 12 are both provided with air inlet grooves, leakage-proof nets are fixedly installed on the inner walls of the air inlet grooves of the fixed frame 12, and the inner walls of the air inlet grooves of the installation cover 5 are fixedly connected with the outer surface of the blowing cover.

[0042] The specific embodiment is that when the air passes through the installation cover 5, it will first pass through the fixed frame 12, at this time the silica drying particles in the fixed frame 12 will absorb the moisture in the air, and then re-enter the station body 1, when the new air enters the station body 1, the hot air in the inside will flow out through the heat dissipation port 2, and at the same time, part of the hot air will be collected by the collecting bucket 3 and then flow to the blowing cover through the conveying pipe 4, and then blow to the silica drying particles in the fixed frame 12, so as to dry the silica drying particles that absorb moisture. The worm 91 rotates at the same time to drive the worm wheel 92 to drive the reciprocating lead screw 93 to rotate under the limiting of the mounting plate, with the rotation of the reciprocating lead screw 93, the threaded sleeve 94 is driven to move back and forth by the threads on the outer surface, at this time the fixed plate 95 will drive the rotating rod 96 to move back and forth in the fixed frame 12, in the process of moving the rotating rod 96, the transmission gear 97 is meshed and connected with the fixed rack 98, therefore under the action of the fixed rack 98, the transmission gear 97 drives the rotating rod 96 to rotate, so that the rotating rod 96 moves and rotates in the fixed frame 12, the rotating rod 96 stirs the silica drying particles through the stirring plate.

[0043] The heat dissipation assembly 8 comprises a rotating column 81 and a driving motor 84, one end of the rotating column 81 is rotatably connected with the inner side wall of the installation cover 5, a first driven bevel gear 82 is fixedly installed on the outer surface of the rotating column 81, a fixed cylinder 83 is fixedly installed on one end of the rotating column 81, one end of the fixed cylinder 83 is rotatably connected with the side wall of the fixed frame 12 through a rotating block, and the upper surface of the driving motor 84 is fixedly connected with the top inner wall of the installation cover 5. The output end of the driving motor 84 is fixedly connected with one end of a worm 91, the other end of the worm 91 extends to the lower surface outside of the partition plate 7, a driving column 85 is fixedly installed on the other end of the worm 91, a first driving bevel gear 86 is fixedly installed on one end of the driving column 85, the first driving bevel gear 86 is meshed and connected with the first driven bevel gear 82, a control motor 87 is fixedly installed on the inner side wall of the fixed cylinder 83, an active rod 88 is fixedly installed on the output end of the control motor 87, one end of the active rod 88 is rotatably connected with the other inner side wall of the fixed cylinder 83, and a second driving bevel gear 89 is fixedly installed on the outer surface of the active rod 88.

[0044] The inner wall of the shell cavity of the fixing cylinder 83 is rotatably provided with a positioning rod 810, one end of the positioning rod 810 extends to the outside of the fixing cylinder 83, and the other end of the positioning rod 810 extends to the inside of the fixing cylinder 83. One end of the positioning rod 810 is fixedly provided with a fan blade 812, and the other end of the positioning rod 810 is fixedly provided with a second driven bevel gear 811 which is in meshing connection with the second driving bevel gear 89. The side wall of the mounting cover 5 is provided with an air inlet, and the inner wall of the air inlet is fixedly provided with a filter plate 11. One end of the fixed plate 95 extends to the outside of the side wall of the mounting cover 5. The lower surface of the fixed plate 95 is fixedly provided with a cleaning plate 13, and the side wall of the cleaning plate 13 is tightly attached to the side wall of the filter plate 11. The upper surface of the fixed plate 95 is fixedly provided with a supporting rod 14, and the side wall of the supporting rod 14 is fixedly provided with a scraper 15. The lower surface of the scraper 15 is tightly attached to the upper surface of the filter screen of the water storage tank 6.

[0045] Specific embodiments are: installing the station body 1 outdoors, driving the motor 84 to rotate the driving column 85 through the worm 91, at this time the driving column 85 will drive the first driving bevel gear 86 to rotate when rotating, and since the first driving bevel gear 86 is in meshing connection with the first driven bevel gear 82, the first driven bevel gear 82 will drive the rotating column 81 to rotate under the action of the first driving bevel gear 86, thereby causing the fixing cylinder 83 to drive the fan blade 812 to rotate through the positioning rod 810, and the air outside the station body 1 is sucked into the inside of the station body 1. The impurities and dust in the outside air will be filtered by the filter plate 11, so that the dust adheres to the side wall of the filter plate 11. In the inside of the station body 1, the movable rod 88 is driven to rotate by the control motor 87, at this time the movable rod 88 will drive the second driving bevel gear 89 to rotate when rotating, and the positioning rod 810 will drive the fan blade 812 to rotate under the action of the second driven bevel gear 811, thereby changing the angle of the fan blade 812 to change the size of the air inlet. The cleaning plate 13 will also move back and forth during the movement of the fixed plate 95, and at this time the cleaning plate 13 will clean the dust on the side wall of the filter plate 11.

[0046] The cooling assembly 10 comprises a placing frame 101 and a telescopic water bag 105, the side wall of the placing frame 101 is slidably connected with the side wall of the water storage tank 6, the inner wall of the placing frame 101 is fixedly installed with a water absorbing block 102, the lower surface of the placing frame 101 is fixedly installed with a spring rod 103 and a moving rack 104, the side wall of the telescopic water bag 105 is communicatively installed with a fixed water tank, the side wall of the fixed water tank is fixedly connected with the side wall of the water storage tank 6, one end of the spring rod 103 is fixedly connected with the upper surface of the fixed water tank, the side wall of the water storage tank 6 is communicatively installed with a water inlet pipe 106, one end of the water inlet pipe 106 is in communication with the side wall of the fixed water tank, the inner wall of the water inlet pipe 106 is fixedly installed with a check valve and a control valve, the input end of the control valve is fixedly installed with a rotating gear 107, the moving rack 104 is meshingly connected with the rotating gear 107, the side wall of the water storage tank 6 is fixedly installed with a telescopic spring 109, one end of the telescopic spring 109 is fixedly installed with a pressing plate 1010, the side wall of the pressing plate 1010 is fixedly connected with the side wall of the telescopic water bag 105, the lower surface of the pressing plate 1010 is fixedly installed with a baffle 1011, the baffle 1011 is aligned with the rotating rod 96, the side wall of the telescopic water bag 105 is communicatively installed with a water outlet pipe 108, one end of the water outlet pipe 108 is communicatively installed with a self-tightening nozzle.

[0047] Specific embodiments are as follows: in rainy weather, the water storage tank 6 collects rainwater, at the same time, the water absorbing block 102 in the placing frame 101 also absorbs rainwater, at the same time, the filter screen filters out impurities, when the fixed plate 95 moves, the scraper 15 moves through the support rod 14, the scraper 15 scrapes the impurities off the filter screen, the water absorbing block 102 becomes heavy after absorbing a certain amount of water, thereby driving the moving rack 104 to move downward, since the moving rack 104 is meshingly connected with the rotating gear 107, when the moving rack 104 moves, the rotating gear 107 rotates, thereby causing the control valve to close. When the temperature rises, the water in the water absorbing block 102 dries, under the action of the spring rod 103, the placing frame 101 drives the moving rack 104 to move upward, thereby causing the control valve to open. When the rotating rod 96 moves the pressing plate 1010 outward through the baffle 1011, at this time, the telescopic water bag 105 absorbs the water in the water storage tank 6 into the telescopic water bag 105 through the water inlet pipe 106, when the baffle 1011 loses the support of the rotating rod 96, under the action of the telescopic spring 109, the pressing plate 1010 extrudes the telescopic water bag 105, the water in the telescopic water bag 105 that is extruded is sprayed out from the self-tightening nozzle through the water outlet pipe 108, thereby cooling the air around the mounting cover 5.

[0048] Working principle: install the station body 1 in outdoor, drive motor 84 through worm 91 drive drive column 85 to rotate, at this moment drive column 85 in the rotation will drive first drive bevel gear 86 to rotate, because first drive bevel gear 86 and first driven bevel gear 82 meshing connection, therefore under the action of first drive bevel gear 86 first driven bevel gear 82 will drive rotating column 81 to rotate, in turn make fixed cylinder 83 through positioning rod 810 drive fan blade 812 to rotate, thereby the air of outside is sucked to the inside of station body 1, the impurities and dust in outside air will be filtered by filter plate 11, thereby the dust is attached on the side wall of filter plate 11.In the inside of station body 1, through control motor 87 drive movable rod 88 to rotate, at this moment movable rod 88 in the rotation will drive second drive bevel gear 89 to rotate, under the action of second driven bevel gear 811 positioning rod 810 will drive fan blade 812 to rotate, in turn through change the angle of fan blade 812 to change the size of air intake quantity.Air passes through installation cover 5 will first pass through fixed frame 12, at this moment the silica drying particles in fixed frame 12 will absorb the moisture in air, then re-enter into station body 1.Inside hot air when station body 1 enters new air, will flow out through heat dissipation port 2, at the same time, there is part of hot air will be collected by collecting hopper 3 after through the conveying pipe 4 to blow cover, then blow to the silica drying particles in fixed frame 12, thereby the silica drying particles that absorb moisture are treated by drying.

[0049] While worm 91 rotates, will make worm wheel 92 drive reciprocating screw 93 to rotate under the limit of mounting plate, with the rotation of reciprocating screw 93 will be through the screw thread on the outer surface to make threaded sleeve 94 drive fixed plate 95 to move back and forth, at this moment fixed plate 95 will drive rotating rod 96 to move back and forth in fixed frame 12, in the process of rotating rod 96 movement because transmission gear 97 and fixed rack 98 meshing connection, therefore under the action of fixed rack 98, transmission gear 97 will drive rotating rod 96 to rotate, thereby make rotating rod 96 in fixed frame 12 move and rotate, rotating rod 96 through stirring plate to stir silica drying particles, in the process of moving back and forth of fixed plate 95, will also drive cleaning plate 13 to move back and forth, at this moment cleaning plate 13 will clean the dust on the side wall of filter plate 11.

[0050] In rainy weather, water storage tank 6 will collect rainwater, at the same time, water absorption block 102 in placing frame 101 will also absorb rainwater, at the same time, filter screen will filter out impurities, fixed plate 95 will drive scraper 15 to move through support rod 14 when moving, scraper 15 will scrape impurities from filter screen, water absorption block 102 will become heavy after absorbing a certain amount of water, thereby will drive moving rack 104 to move down, because moving rack 104 and rotating gear 107 meshing, therefore rotating gear 107 will rotate when moving rack 104 moves, thereby make control valve close.

[0051] When the temperature rises, the water in the water absorption block 102 dries, and the placing frame 101 is driven to rise by the spring rod 103, thereby causing the control valve to open. When the rotating rod 96 moves the extrusion plate 1010 outward through the baffle 1011, the telescopic water bag 105 will absorb the water in the water storage tank 6 through the water inlet pipe 106. When the baffle 1011 loses the support of the rotating rod 96, the extrusion plate 1010 will extrude the telescopic water bag 105 under the action of the telescopic spring 109, and the water in the telescopic water bag 105 subjected to extrusion will be sprayed from the self-tightening nozzle through the water outlet pipe 108, thereby cooling the air around the mounting cover 5.

[0052] The above merely describes the preferred embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can make equivalent replacements or changes to the technical solutions and the inventive concept of the present application within the technical scope disclosed by the present application, which should be covered by the protection scope of the present application.

Claims

1. An emergency rescue service station, comprising a station body (1), a heat dissipation opening (2) is arranged on the side wall of the station body (1), a collecting hopper (3) is fixedly installed on the inner wall of the heat dissipation opening (2), a conveying pipe (4) is installed on the side wall of the collecting hopper (3), a blowing cover is fixedly installed at one end of the conveying pipe (4), a mounting cover (5) is communicatively installed on the outer surface of the station body (1), a partition plate (7) is fixedly installed on the inner wall of the mounting cover (5), a water storage tank (6) is fixedly installed on the outer surface of the station body (1), and a filter screen is fixedly installed on the upper surface of the water storage tank (6), characterized in that: The upper surface of the partition plate (7) is provided with a dehumidification assembly (9), the inner wall of the mounting cover (5) is provided with a heat dissipation assembly (8), and the side wall of the water storage tank (6) is provided with a cooling assembly (10); The dehumidification assembly (9) comprises a worm (91) and a worm wheel (92), both side walls of the worm wheel (92) are fixedly provided with a reciprocating lead screw (93), both ends of the reciprocating lead screw (93) are rotatably provided with a mounting plate, the lower surface of the mounting plate is fixedly connected with the upper surface of the partition plate (7), the outer surface of the reciprocating lead screw (93) is threadedly provided with a threaded sleeve (94), the outer surface of the threaded sleeve (94) is fixedly provided with a fixed plate (95), the inner wall of the fixed plate (95) is rotatably provided with a rotating rod (96), one end of the rotating rod (96) extends out of the upper surface of the mounting cover (5), the outer surface of the rotating rod (96) is fixedly provided with a transmission gear (97), the other end of the rotating rod (96) extends out of the lower surface of the partition plate (7), the upper surface of the partition plate (7) is fixedly provided with a fixed rack (98), and the fixed rack (98) is in meshing connection with the transmission gear (97). The bottom inner wall of the mounting cover (5) is fixedly provided with a fixed frame (12), the inner wall of the fixed frame (12) is provided with silicon drying particles, the other end of the rotating rod (96) extends into the fixed frame (12), the outer surface of the rotating rod (96) is fixedly provided with an agitating plate, the mounting cover (5) and the fixed frame (12) are both provided with an air inlet groove, the inner wall of the air inlet groove of the fixed frame (12) is fixedly provided with a leakage-proof net, and the inner wall of the air inlet groove of the mounting cover (5) is fixedly connected with the outer surface of the blowing cover.

2. An emergency rescue service station according to claim 1, characterized in that The heat dissipation assembly (8) comprises a rotating column (81) and a driving motor (84), one end of the rotating column (81) is rotatably connected with the inner side wall of the mounting cover (5), the outer surface of the rotating column (81) is fixedly provided with a first driven bevel gear (82), one end of the rotating column (81) is fixedly provided with a fixed cylinder (83), and the fixed cylinder (83) is rotatably connected with the side wall of the fixed frame (12) through a rotating block.

3. An emergency rescue service station according to claim 2, characterised in that The upper surface of the driving motor (84) is fixedly connected with the top inner wall of the mounting cover (5), the output end of the driving motor (84) is fixedly connected with one end of the worm (91), the other end of the worm (91) extends out of the lower surface of the partition plate (7), the other end of the worm (91) is fixedly provided with a driving column (85), one end of the driving column (85) is fixedly provided with a first driving bevel gear (86), and the first driving bevel gear (86) is in meshing connection with the first driven bevel gear (82).

4. An emergency rescue service station according to claim 3, characterised in that The inner side wall of the fixed cylinder (83) is fixedly installed with a control motor (87), the output end of the control motor (87) is fixedly installed with a movable rod (88), one end of the movable rod (88) is rotatably connected with the other inner side wall of the fixed cylinder (83), the outer surface of the movable rod (88) is fixedly installed with a second driving bevel gear (89), the inner wall of the shell cavity of the fixed cylinder (83) is rotatably installed with a positioning rod (810), one end of the positioning rod (810) extends to the outside of the fixed cylinder (83), one end of the positioning rod (810) is fixedly installed with a fan blade (812), the other end of the positioning rod (810) extends to the inside of the fixed cylinder (83), the other end of the positioning rod (810) is fixedly installed with a second driven bevel gear (811), and the second driven bevel gear (811) is meshedly connected with the second driving bevel gear (89).

5. An emergency rescue service station according to claim 4, characterised in that The side wall of the mounting cover (5) is provided with an air inlet, the inner wall of the air inlet is fixedly installed with a filter plate (11), one end of the fixed plate (95) extends to the outside of the side wall of the mounting cover (5), the lower surface of the fixed plate (95) is fixedly installed with a cleaning plate (13), the side wall of the cleaning plate (13) is tightly attached to the side wall of the filter plate (11), the upper surface of the fixed plate (95) is fixedly installed with a supporting rod (14), the side wall of the supporting rod (14) is fixedly installed with a scraper (15), and the lower surface of the scraper (15) is tightly attached to the upper surface of the filter screen on the water storage tank (6).

6. An emergency rescue service station according to claim 5, characterised in that The cooling assembly (10) comprises a placing frame (101) and a telescopic water bag (105), the side wall of the placing frame (101) is slidably connected with the side wall of the water storage tank (6), the inner wall of the placing frame (101) is fixedly installed with a water absorbing block (102), the lower surface of the placing frame (101) is fixedly installed with a spring rod (103) and a moving rack (104).

7. An emergency rescue service station according to claim 6, characterised in that The side wall of the telescopic water bag (105) is communicated with a fixed water tank, the side wall of the fixed water tank is fixedly connected with the side wall of the water storage tank (6), one end of the spring rod (103) is fixedly connected with the upper surface of the fixed water tank, the side wall of the water storage tank (6) is communicated with a water inlet pipe (106), one end of the water inlet pipe (106) is communicated with the side wall of the fixed water tank, the inner wall of the water inlet pipe (106) is fixedly installed with a check valve and a control valve, the input end of the control valve is fixedly installed with a rotating gear (107), and the moving rack (104) is meshedly connected with the rotating gear (107).

8. An emergency rescue service station according to claim 7, characterised in that The side wall of the water storage tank (6) is fixedly provided with a telescopic spring (109), one end of the telescopic spring (109) is fixedly provided with a pressing plate (1010), the side wall of the pressing plate (1010) is fixedly connected with the side wall of a telescopic water bag (105), the lower surface of the pressing plate (1010) is fixedly provided with a baffle (1011), the baffle (1011) is aligned with a rotating rod (96), the side wall of the telescopic water bag (105) is communicatedly provided with a water outlet pipe (108), one end of the water outlet pipe (108) is communicatedly provided with a self-tightening nozzle.

Citation Information

Patent Citations

  • Heat dissipation protection device for electronic equipment installation

    CN112203485A

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    CN115768038A

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    CN217882365U