Monitoring device based on wireless network data sharing

By introducing cleaning, water spraying and insect repellent mechanisms into the wireless network data sharing monitoring device, the problem of monitoring devices being susceptible to mosquitoes and foreign objects in complex outdoor environments is solved, and the quality and real-time nature of monitoring data are significantly improved.

CN120038135APending Publication Date: 2025-05-27NANTONG INST OF TECH +2
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Patent Information

Application Number
CN202510441680.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

The existing wireless network data sharing monitoring devices are susceptible to obstruction and pollution by foreign objects such as mosquitoes and leaves in complex and changeable outdoor environments, especially in wild and forest areas, resulting in a decline in the quality of monitoring data and affecting the accuracy and real-timeness of monitoring.

Method used

A monitoring device based on wireless network data sharing is designed, equipped with a cleaning mechanism, a water spray mechanism and a deworming mechanism. The cleaning mechanism is repeatedly wiped through the reciprocating mechanism and the cleaning brush. The water spray mechanism is continuously sprayed through the water spray mechanism and the water supply mechanism. The insect repellent mechanism repels mosquitoes through the fan.

Benefits of technology

It effectively improves the cleaning efficiency and quality of the monitoring screen surface, reduces the obstruction of mosquitoes and other foreign objects, improves the accuracy and real-timeness of monitoring data, and ensures the hygiene of the monitoring device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of wireless data sharing monitoring, in particular to a monitoring device based on wireless network data sharing, which comprises a mounting bracket, a monitoring main body is mounted on the mounting bracket, a monitoring screen is arranged on the monitoring main body, and a mounting box is mounted on the side wall of the mounting bracket; reciprocating mechanisms are arranged on the mounting box, and a cleaning mechanism for cleaning the monitoring screen is arranged between the reciprocating mechanisms; the reciprocating mechanism is provided with a water spraying mechanism used for spraying water when the monitoring screen is cleaned. The side wall of the mounting support is provided with a water supply mechanism used for supplying water to the water spraying mechanism. The reciprocating mechanism is provided with an insect repelling mechanism used for repelling mosquitoes on the monitoring screen. By arranging the sweeping mechanism and the water spraying mechanism, the surface of the monitoring screen can be wiped while repeated water spraying sweeping is conducted, a sponge wiper can be extruded and dried through the drying mechanism, continuous air blowing in the direction of the monitoring screen is achieved by arranging the insect repelling mechanism to repel mosquitoes and insects, and a small amount of water stains left on the monitoring screen can be blown dry.
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Description

Technical Field

[0001] The present invention relates to the technical field of wireless data sharing monitoring, and specifically relates to a monitoring device based on wireless network data sharing. Background Art

[0002] The monitoring device for wireless network data sharing is mainly used to realize the wireless transmission and sharing of monitoring data; such monitoring devices will be installed in outdoor environments, such as forests, wetlands, farmlands, parks and other areas, and transmit monitoring data (such as videos, images, sensor data, etc.) to a remote receiving end or monitoring center through a wireless network, so as to realize the real-time monitoring and remote management.

[0003] There are many mosquitoes in these places and the monitoring devices installed here are vulnerable to mosquito interference; although the prior art provides solutions for lens wiping and cleaning, they are often applicable to relatively simple environments, such as indoor monitoring or outdoor monitoring at fixed positions. In complex and changeable environments, such as the wild, forests, etc., the lens not only faces conventional pollution such as dust and water vapor, but may also be blocked by foreign objects such as mosquitoes and leaves. And at night, when the lights attract mosquitoes, a large number of mosquitoes surround and adhere to the device, and the mosquito corpses will block the vision of the camera or sensor, resulting in a decline in the quality of monitoring data, affecting the accuracy and real-time nature of monitoring. Mosquito corpses may carry bacteria and viruses, posing a threat to the hygiene of the monitoring device; generally speaking, these foreign objects are often difficult to be effectively removed by conventional wiping methods.

[0004] Based on this, a monitoring device based on wireless network data sharing is now provided, which can eliminate the drawbacks of existing devices. Summary of the Invention

[0005] In view of the above problems, a monitoring device based on wireless network data sharing is provided, which solves the problem that mosquitoes surround and adhere to the surface at night through a cleaning mechanism and an insect repellent mechanism.

[0006] To solve the problems of the prior art, the present invention provides a monitoring device based on wireless network data sharing, including a mounting bracket, a monitoring main body is installed on the mounting bracket, a monitoring screen is provided on the monitoring main body, and a mounting box is installed on the side wall of the mounting bracket;

[0007] A reciprocating mechanism is provided on the mounting box, and a cleaning mechanism for cleaning the monitoring screen is arranged between the reciprocating mechanisms;

[0008] A water spraying mechanism for spraying water when cleaning the monitoring screen is provided on the reciprocating mechanism, and a water supply mechanism for supplying water to the water spraying mechanism is provided on the side wall of the mounting bracket;

[0009] An insect repellent mechanism for driving away mosquitoes from the monitoring screen is provided on the reciprocating mechanism.

[0010] Preferably, a support plate is fixedly mounted on the side wall of the installation box, a protective frame is mounted on the side wall at the other end of the support plate, a connecting plate is mounted on the middle position of the inner wall of the protective frame, and a plurality of rollers are rotatably provided on the upper end of the connecting plate.

[0011] Preferably, a motor is fixedly installed in the installation box, the output end of the motor passes through the connecting disk and is connected to the connecting shaft, the other end of the connecting shaft is connected to the insect repellent mechanism, a connecting frame is installed on the side wall of the connecting shaft, both ends of the connecting frame are slidably provided with sliding seats, and the inner walls at both ends of the connecting frame are installed with first return springs, the two ends of the first return spring are respectively connected to the side walls of the sliding seat and the inner wall of the connecting frame, a cleaning brush is installed on the side wall of the sliding seat at either end, and a sponge is installed on the other side wall of the sliding seat.

[0012] Preferably, a first bevel gear is installed at the end of the connecting shaft away from the motor, and the first bevel gear is meshed with the second bevel gear. The second bevel gear is installed on the side wall of one end of the support shaft, and the other end of the support shaft passes through a receiving plate to connect to the fan, and both ends of the receiving plate are connected to the side walls of the protective frame. A drying mechanism for drying the sponge is provided on the inner wall of the protective frame at either end.

[0013] Preferably, a push plate is slidably mounted on the inner wall of the protective frame at either end, a plurality of second return springs are mounted on one end of the push plate close to the inner wall of the protective frame, the other end of the second return spring is connected to the inner wall of the protective frame, a support frame is slidably mounted on the inner wall of the end of the protective frame away from the push plate, a plurality of squeezing rollers are rotatably mounted between the inner walls of the support frame, a third return spring is arranged on the side wall of the support frame, the other end of the third return spring is connected to the inner wall of the protective frame, a push block that slidably abuts against the push plate is mounted on the side wall of the connecting frame close to one end of the sponge wiper, a plurality of connecting ropes are arranged on the side wall of the support frame away from the connecting plate, the other end of the connecting rope is connected to the side wall of the push plate.

[0014] Preferably, a water collecting tank is fixedly installed on the side wall of the mounting bracket, and a water supply pipe is provided on the side wall of the lower end of the water collecting tank to communicate with it, and the other end of the water supply pipe is connected with one end of a connecting block, and the connecting block is fixedly provided on the side wall of the protective frame and sleeved on the outside of the motor output end, and the other end of the connecting block is connected with one end of a water supply ring, and the water supply ring is sleeved on the outside of the connecting shaft, and the other end of the water supply ring is rotatably matched with a rotating joint, and a flow groove is provided between the connecting block and the water supply ring and the connecting shaft, the side wall of the rotating joint is connected with one end of the connecting pipe, and the other end of the connecting pipe is connected to a water spraying mechanism.

[0015] Preferably, the other end of the connecting pipe is connected to the input end of the pressing pump. The pressing pump is installed on the mounting frame, and the mounting frame is installed on the side wall of the connecting frame. There is a pressing button on the pressing pump, and a spray head for spraying water on the monitoring screen is provided on the pressing button. A limiting frame is installed on the mounting frame, and a through groove for the pulling rope to pass through is provided on the limiting frame. Both ends of the pulling rope are respectively connected to the bottom wall of the pressing button and the side wall of the fixed button, and the fixed button is installed on the side wall of the cleaning brush.

[0016] The beneficial effects of the present invention compared with the prior art are as follows:

[0017] 1. By setting the cleaning mechanism and the water spraying mechanism, the present invention can repeatedly spray water and clean the surface of the monitoring screen while wiping, which can improve the cleaning efficiency and the cleaning quality at the same time.

[0018] 2. By setting the drying mechanism, the present invention can squeeze and dry the sponge brush, which is convenient for recycling and can wipe the water stains on the surface of the monitoring screen clean.

[0019] 3. By setting the insect repelling mechanism, the present invention can continuously blow air in the direction of the monitoring screen to drive away mosquitoes, and can also dry the small amount of water stains left on the monitoring screen wiped by the sponge brush, improving the cleaning quality. Description of the Drawings

[0020] Figure 1 It is a three-dimensional structural schematic diagram of a monitoring device based on wireless network data sharing.

[0021] Figure 2 It is a Figure 1 Partial enlarged three-dimensional structural schematic diagram of A in a monitoring device based on wireless network data sharing.

[0022] Figure 3 It is a partial three-dimensional structural schematic Figure 1 .

[0023] Figure 4 It is a partial three-dimensional structural schematic Figure 2 .

[0024] Figure 5 It is a partial three-dimensional structural schematic Figure 3 .

[0025] Figure 6 It is a three-dimensional structural schematic diagram of the water supply mechanism of a monitoring device based on wireless network data sharing.

[0026] The numbers in the figure are: 101, monitoring body; 102, mounting bracket; 103, monitoring screen; 104, mounting box; 200, cleaning mechanism; 201, motor; 202, connecting shaft; 203, connecting frame; 204, cleaning brush; 205, sponge; 206, first return spring; 207, sliding seat; 300, reciprocating mechanism; 301, supporting plate; 302, protective frame; 303, connecting plate; 304, roller; 400, drying mechanism; 401, connecting rope; 402, push block; 403, push plate; 404, second return spring; 405, squeezing roller; 406, third return spring; 407, support frame; 500, insect repellent mechanism; 501, first bevel gear; 502, second bevel gear; 503, support shaft; 504, fan; 505, receiving plate; 600, water spray mechanism; 601, nozzle; 602, press pump; 603, mounting frame; 604, limit frame; 605, pull rope; 606, press button; 607, fixing button; 700, water supply mechanism; 701, water collecting tank; 702, water supply pipe; 703, connecting pipe; 704, connecting block; 705, circulation slot; 706, water supply ring; 707, rotating joint. DETAILED DESCRIPTION

[0027] In order to further understand the features, technical means, specific objectives and functions of the present invention, the present invention is further described in detail below in conjunction with the accompanying drawings and specific implementation methods.

[0028] Reference Figures 1 - 6 : A monitoring device based on wireless network data sharing, comprising a mounting bracket 102, a monitoring body 101 is mounted on the mounting bracket 102, a monitoring screen 103 is arranged on the monitoring body 101, and a mounting box 104 is mounted on the side wall of the mounting bracket 102;

[0029] The installation box 104 is provided with a reciprocating mechanism 300, and a cleaning mechanism 200 for cleaning the monitoring screen 103 is provided between the reciprocating mechanisms 300;

[0030] The reciprocating mechanism 300 is provided with a water spraying mechanism 600 for spraying water when cleaning the monitoring screen 103, and the side wall of the mounting bracket 102 is provided with a water supply mechanism 700 for supplying water to the water spraying mechanism 600;

[0031] The reciprocating mechanism 300 is provided with an insect repelling mechanism 500 for repelling mosquitoes from the monitoring screen 103 .

[0032] The cooperation of the water spraying mechanism 600 and the water supply mechanism 700 can continuously spray water on the surface of the monitoring screen 103. After spraying water, the cleaning mechanism 200 can repeatedly brush and wipe the surface of the monitoring screen 103 clean. The insect repelling mechanism 500 is used to blow and expel mosquitoes in the shooting direction of the monitoring screen 103, and can also dry a small amount of water stains remaining on the surface of the monitoring screen 103.

[0033] Refer to Figures 1 - 3 : A support plate 301 is fixedly installed on the side wall of the installation box 104. A protective frame 302 is installed on the side wall at the other end of the support plate 301. A connecting disc 303 is installed at the middle position of the inner wall of the protective frame 302. Several rollers 304 are rotatably provided at the upper end of the connecting disc 303.

[0034] The installation box 104 is used to support the support plate 301, the protective frame 302 and the connecting disc 303, and the rollers 304 are used to enable the cleaning mechanism 200 to wipe and clean back and forth.

[0035] Refer to Figures 1 - 5 : A motor 201 is fixedly installed in the installation box 104. The output end of the motor 201 penetrates through the connecting disc 303 to connect a connecting shaft 202. The other end of the connecting shaft 202 is connected to the insect repelling mechanism 500. A connecting frame 203 is installed on the side wall of the connecting shaft 202. Sliding seats 207 are slidably provided at both ends of the connecting frame 203. First return springs 206 are installed on the inner walls at both ends of the connecting frame 203. The two ends of the first return spring 206 are respectively connected to the side wall of the sliding seat 207 and the inner wall of the connecting frame 203. A cleaning brush 204 is installed on the side wall of any one of the sliding seats 207, and a sponge wipe 205 is installed on the side wall of the other sliding seat 207.

[0036] Start the motor 201 to drive the connecting shaft 202 to rotate. The rotation of the connecting shaft 202 can drive the first helical gear 501 and the connecting frame 203 to rotate. The rotation of the connecting frame 203 can drive the cleaning brush 204 and the sponge wipe 205 to rotate. When the cleaning brush 204 rotates to contact the roller 304, the roller 304 can push the cleaning brush 204 and the sponge wipe 205 to move in opposite directions. When the roller 304 unlocks from the cleaning brush 204 and the sponge wipe 205, the first return spring 206 can drive the cleaning brush 204 and the sponge wipe 205 to perform a reset movement, so that the cleaning brush 204 and the sponge wipe 205 can repeatedly brush and wipe the surface of the monitoring screen 103.

[0037] Refer to Figures 2 - 4:One end of the connecting shaft 202 away from the motor 201 is provided with a first helical gear 501, the first helical gear 501 meshes with a second helical gear 502, and the second helical gear 502 is installed on the side wall of one end of a support shaft 503. The other end of the support shaft 503 passes through a receiving plate 505 and is connected to a fan 504. Both ends of the receiving plate 505 are connected to the side wall of the protective frame 302. On the inner wall of any one end of the protective frame 302, there is a drying mechanism 400 for drying the sponge wiper 205.

[0038] The rotation of the first helical gear 501 drives the rotation of the second helical gear 502. The second helical gear 502 drives the support shaft 503 and the fan 504 to rotate. The rotation of the fan 504 can blow and expel mosquitoes in the shooting direction of the monitoring screen 103, and can also dry a small amount of water stains remaining on the surface of the monitoring screen 103.

[0039] Refer to Figures 2 - 4 : On the inner wall of any one end of the protective frame 302, a push plate 403 is slidably installed. One end of the push plate 403 close to the inner wall of the protective frame 302 is provided with a plurality of second return springs 404, and the other end of the second return springs 404 is connected to the inner wall of the protective frame 302. On the inner wall of the protective frame 302 away from the push plate 403, a support frame 407 is slidably provided. Between the inner walls of the support frame 407, a plurality of pressing rollers 405 are rotatably provided. On the side wall of the support frame 407, there is a third return spring 406, and the other end of the third return spring 406 is connected to the inner wall of the protective frame 302. On the side wall of the connecting frame 203 close to the sponge wiper 205, a push block 402 slidably abutted with the push plate 403 is installed. On the side wall of the support frame 407 away from the connecting disc 303, there are a plurality of connecting ropes 401, and the other end of the connecting ropes 401 is connected to the side wall of the push plate 403.

[0040] When the connecting frame 203 rotates, it will drive the push block 402 to continuously pass by the protective frame 302. When the connecting frame 203 encounters the push plate 403, it will continuously squeeze the push plate 403 close to the inner wall of the protective frame 302. At this time, the push plate 403 will pull the connecting rope 401, and the connecting rope 401 will pull the pressing roller 405 and the support frame 407 to continuously approach the push plate 403. In this way, a squeezing force can be provided to the passing sponge wiper 205. During the squeezing process, the pressing roller 405 rotates. In this way, the frictional force between the pressing roller 405 and the sponge wiper 205 can be converted into the driving force for the movement of the sponge wiper 205, and the water stains remaining on the sponge wiper 205 can be squeezed out, which is convenient for further wiping the water stains on the monitoring screen 103 clean.

[0041] Refer to Figures 2 - 6: A water collecting tank 701 is fixedly installed on the side wall of the mounting bracket 102. A water supply pipe 702 is provided on the lower side wall of the water collecting tank 701 and is communicated therewith. The other end of the water supply pipe 702 is communicated with one end of a connecting block 704. The connecting block 704 is fixedly arranged on the side wall of the protective frame 302 and is sleeved outside the output end of the motor 201. The other end of the connecting block 704 is communicated with one end of a water supply ring 706. The water supply ring 706 is sleeved outside the connecting shaft 202. The other end of the water supply ring 706 is rotationally matched with a rotary joint 707. A flow channel 705 is provided between the connecting block 704 and the water supply ring 706 and the connecting shaft 202. The side wall of the rotary joint 707 is communicated with one end of a connecting pipe 703. The other end of the connecting pipe 703 is connected to a water spraying mechanism 600.

[0042] The water collecting tank 701 is used to collect rainwater. The water collecting tank 701 is provided with filtering holes capable of filtering out large impurities. The water collecting tank 701 is used for water supply. When the connecting frame 203 rotates, it will drive the water spraying mechanism 600 and the water supply mechanism 700 to rotate. At this time, the connecting pipe 703, the connecting block 704 and the water supply ring 706 will rotate accordingly. Since the rotary joint 707 and one end of the water supply ring 706 are rotationally matched, there will be no interference during the rotation of the connecting pipe 703.

[0043] Refer to Figures 2 - 6 : The other end of the connecting pipe 703 is connected to the input end of a pressing pump 602. The pressing pump 602 is installed on a mounting frame 603. The mounting frame 603 is installed on the side wall of the connecting frame 203. The pressing pump 602 is provided with a pressing button 606. The pressing button 606 is provided with a nozzle 601 for spraying water on the monitoring screen 103. A limiting frame 604 is installed on the mounting frame 603. The limiting frame 604 is provided with a through groove for a pull rope 605 to pass through. Both ends of the pull rope 605 are respectively connected to the bottom wall of the pressing button 606 and the side wall of a fixing button 607. The fixing button 607 is installed on the side wall of the cleaning brush 204.

[0044] When the cleaning brush 204 moves up and down, it can drive the fixing button 607 to move up and down. When the fixing button 607 moves upward, it can pull the pressing button 606 to move downward and squeeze, and water can be sprayed out. The water is sprayed on the surface of the monitoring screen 103 through the nozzle 601. At this time, when the cleaning brush 204 passes by, it can clean the monitoring screen 103, thus improving the cleaning effect. After being pressed once, the nozzle 601 will reset and store water, preparing for the next water spraying movement.

[0045] Working principle:

[0046] S1. When it is detected that there is a pile-up of mosquitoes or that the night light attracts a large number of mosquitoes, the motor 201 is started to drive the connecting shaft 202 to rotate. The rotation of the connecting shaft 202 can drive the first helical gear 501 and the connecting frame 203 to rotate. The rotation of the connecting frame 203 can drive the cleaning brush 204 and the sponge wiper 205 to rotate. When the cleaning brush 204 rotates to contact the roller 304, the roller 304 can push against the cleaning brush 204 and the sponge wiper 205 to move in opposite directions. When the roller 304 unlocks from the cleaning brush 204 and the sponge wiper 205, the first return spring 206 can drive the cleaning brush 204 and the sponge wiper 205 to perform a reset movement, so that the cleaning brush 204 and the sponge wiper 205 can repeatedly brush and wipe the surface of the monitoring screen 103;

[0047] S2. When the cleaning brush 204 moves up and down, it can drive the fixing button 607 to move up and down. When the fixing button 607 moves upward, it can pull the pressing button 606 to perform a downward pressing movement, and water can be sprayed out. The water is sprayed on the surface of the monitoring screen 103 through the nozzle 601. At this time, when the cleaning brush 204 passes by, it can clean the monitoring screen 103, thus improving the cleaning effect. The nozzle 601 will reset and store water after one press, and is ready for the next water spraying movement;

[0048] S3. When the connecting frame 203 rotates, it will drive the pushing block 402 to continuously pass by the protective frame 302. When the connecting frame 203 encounters the pushing plate 403, it will continuously squeeze the pushing plate 403 to approach the inner wall of the protective frame 302. At this time, the pushing plate 403 will pull the connecting rope 401, and the connecting rope 401 will pull the squeezing roller 405 and the support frame 407 to continuously approach the pushing plate 403. In this way, a squeezing force can be provided for the passing sponge wiper 205. During the squeezing process, the squeezing roller 405 rotates, so that the frictional force between the squeezing roller 405 and the sponge wiper 205 can be converted into the driving force for the movement of the sponge wiper 205, and the water stains left on the sponge wiper 205 can be squeezed out, facilitating the further wiping of the water stains on the monitoring screen 103;

[0049] S4. The rotation of the first helical gear 501 drives the rotation of the second helical gear 502. The second helical gear 502 drives the support shaft 503 and the fan 504 to rotate. The rotation of the fan 504 can blow and expel the mosquitoes in the shooting direction of the monitoring screen 103, and can also dry the small amount of water stains remaining on the surface of the monitoring screen 103.

[0050] The above embodiments only represent one or several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims

1. A monitoring device based on wireless network data sharing, characterized in that: It comprises a mounting bracket (102), a monitoring body (101) is mounted on the mounting bracket (102), a monitoring screen (103) is provided on the monitoring body (101), and a mounting box (104) is mounted on the side wall of the mounting bracket (102); The installation box (104) is provided with a reciprocating mechanism (300), and a cleaning mechanism (200) for cleaning the monitoring screen (103) is provided between the reciprocating mechanisms (300); The reciprocating mechanism (300) is provided with a water spraying mechanism (600) for spraying water when cleaning the monitoring screen (103), and the side wall of the mounting bracket (102) is provided with a water supply mechanism (700) for supplying water to the water spraying mechanism (600); The reciprocating mechanism (300) is provided with an insect repelling mechanism (500) for repelling mosquitoes from the monitoring screen (103).

2. A monitoring device based on wireless network data sharing according to claim 1, characterized in that: A support plate (301) is fixedly mounted on the side wall of the installation box (104); a protection frame (302) is mounted on the other side wall of the support plate (301); a connection plate (303) is mounted in the middle of the inner wall of the protection frame (302); and a plurality of rollers (304) are rotatably mounted on the upper end of the connection plate (303).

3. A monitoring device based on wireless network data sharing according to claim 1, characterized in that: A motor (201) is fixedly installed in the installation box (104); the output end of the motor (201) passes through the connection plate (303) and is connected to the connecting shaft (202); the other end of the connecting shaft (202) is connected to the insect repellent mechanism (500); a connecting frame (203) is installed on the side wall of the connecting shaft (202); sliding seats (207) are slidably provided at both ends of the connecting frame (203); first return springs (206) are installed on the inner walls of both ends of the connecting frame (203); the two ends of the first return spring (206) are respectively connected to the side wall of the sliding seat (207) and the inner wall of the connecting frame (203); a cleaning brush (204) is installed on the side wall of the sliding seat (207) at any end; and a sponge (205) is installed on the side wall of the other sliding seat (207).

4. A monitoring device based on wireless network data sharing according to claim 3, characterized in that: A first bevel gear (501) is installed at one end of the connecting shaft (202) away from the motor (201), and the first bevel gear (501) is meshed with the second bevel gear (502). The second bevel gear (502) is installed on the side wall of one end of the supporting shaft (503). The other end of the supporting shaft (503) passes through a receiving plate (505) to connect to a fan (504). Both ends of the receiving plate (505) are connected to the side walls of the protective frame (302). A drying mechanism (400) for drying the sponge (205) is provided on the inner wall of the protective frame (302) at either end.

5. A monitoring device based on wireless network data sharing according to claim 4, characterized in that: A push plate (403) is slidably mounted on the inner wall of the protection frame (302) at either end, a plurality of second return springs (404) are mounted on one end of the push plate (403) close to the inner wall of the protection frame (302), the other end of the second return spring (404) is connected to the inner wall of the protection frame (302), a support frame (407) is slidably mounted on the inner wall of the protection frame (302) away from the push plate (403), a plurality of squeezing rollers (405) are rotatably mounted between the inner walls of the support frame (407), the A third return spring (406) is provided on the side wall of the support frame (407), and the other end of the third return spring (406) is connected to the inner wall of the protective frame (302). A push block (402) that is slidably abutted with the push plate (403) is installed on the side wall of the connecting frame (203) close to one end of the sponge (205). A plurality of connecting ropes (401) are provided on the side wall of the supporting frame (407) away from the end of the connecting plate (303), and the other end of the connecting rope (401) is connected to the side wall of the push plate (403).

6. The monitoring device based on wireless network data sharing according to claim 1, characterized in that: A water collecting box (701) is fixedly mounted on the side wall of the mounting bracket (102); a water supply pipe (702) is provided on the side wall at the lower end of the water collecting box (701) to communicate with the water collecting box; the other end of the water supply pipe (702) is connected to one end of a connecting block (704); the connecting block (704) is fixedly mounted on the side wall of the protective frame (302) and sleeved on the outer side of the output end of the motor (201); the other end of the connecting block (704) is connected to a water supply ring (706) ), the water supply ring (706) is sleeved on the outside of the connecting shaft (202), the other end of the water supply ring (706) is rotatably matched with the rotating joint (707), a flow groove (705) is provided between the connecting block (704) and the water supply ring (706) and the connecting shaft (202), the side wall of the rotating joint (707) is connected to one end of the connecting pipe (703), and the other end of the connecting pipe (703) is connected to the water spray mechanism (600).

7. A monitoring device based on wireless network data sharing according to claim 6, characterized in that: The other end of the connecting tube (703) is connected to the input end of the pressing pump (602). The pressing pump (602) is mounted on the mounting frame (603). The mounting frame (603) is mounted on the side wall of the connecting frame (203). The pressing pump (602) is provided with a pressing button (606). The pressing button (606) is provided with a nozzle (601) for spraying water on the monitoring screen (103). A limiting frame (604) is installed on the mounting frame (603). The limiting frame (604) is provided with a groove for a pull rope (605) to pass through. The two ends of the pull rope (605) are respectively connected to the bottom wall of the pressing button (606) and the side wall of the fixing button (607). The fixing button (607) is mounted on the side wall of the cleaning brush (204).

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