Training simulator for unmanned aerial vehicle equipment

Through the combination of threaded rod-driven positioning plate and rubber plate, combined with sponge pad and water pipe system, the problem of dust absorption of the display screen of the UAV flight simulator is solved, efficient cleaning and heat dissipation effect is achieved, and the equipment usage experience is improved.

CN120472741AActive Publication Date: 2025-08-12CHENGDU YUNHAI XINGZHOU INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510807667.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-08-12
Estimated Expiration
2045-06-17

AI Technical Summary

Technical Problem

After a long time of use, the display screen produces static electricity due to friction or charge accumulation, resulting in dust absorption, affecting the viewing effect and heat dissipation.

Method used

A training simulator for drone equipment was designed, using a combination of positioning plates and rubber plates driven by threaded rods, and dust was scraped off through the motor control positioning plates, and cleaned and heated using sponge pads and water pipe systems.

Benefits of technology

It effectively reduces the adhesion of dust on the display screen, improves screen cleanliness and heat dissipation, and improves the integration of equipment and the convenience of operation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120472741A_ABST
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Abstract

The invention belongs to the technical field of unmanned aerial vehicle flight simulation, and particularly relates to a training simulator for unmanned aerial vehicle equipment, which comprises a display body, first sliding grooves are formed in two sides of the display body, threaded rods are rotatably connected into the first sliding grooves, and the threaded rods are driven by motors. The side wall of the threaded rod is in threaded connection with a sliding block, the side wall of the sliding block is fixedly connected with a first electric push rod, the output end of the first electric push rod is fixedly connected with a positioning plate, a second sliding groove is formed in the side wall of the positioning plate, a positioning block is arranged in the second sliding groove, and a rubber plate is arranged on the side wall of the positioning block. The display screen of the display body is scraped at regular time, so that a certain degree of influence on a display picture due to adhesion of dust on the surface after long-time use can be reduced, and meanwhile, the positioning plate can be completely stored into the display body, so that the equipment integrity can be improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of unmanned aerial vehicle (UAV) flight simulation, in particular to a training simulator for UAV equipment. Background Art

[0002] Drone flight simulation is a training device for drone operations in modern society. Through long-term practice, it can reduce operational errors when personnel are actually operating drones and increase their operational proficiency. At the same time, modeling the scene based on the differences in usage scenarios can help operators become familiar with the scene environment.

[0003] A patent application with publication number CN217955298U discloses a drone flight simulator, including a test bench, a control console fixedly connected to the top right side of the test bench, a simulated display screen fixedly connected to the top left side of the test bench, a dust cleaning mechanism fixedly connected to the side of the simulated display screen, and a heat dissipation mechanism fixedly connected to the top of the simulated display screen. Through the mutual cooperation between the connecting frame, dust discharge trough, dust collection box, electric motor, pulley, transmission belt, sliding block, and dust cleaning plate, by starting the electric motor, the pulley can be driven to rotate, and the transmission belt can be moved, thereby driving the sliding block to slide, thereby facilitating the cleaning of dust on the display screen through the dust cleaning plate, and the dust can fall into the dust collection box through the dust discharge trough, ensuring the cleanliness of the simulated display screen and facilitating the use of the simulated display screen.

[0004] In the existing environment, drone flight simulations are often operated using a monitor in conjunction with a handle or keyboard and mouse. During long-term use of the device, the internal electronic components will continue to run, causing static electricity on the display screen due to friction or charge accumulation, which will cause dust to be absorbed on the display screen, affecting the viewing effect during long-term use and affecting the heat dissipation of the screen.

[0005] To this end, the present invention provides a training simulator for unmanned aerial vehicle equipment. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.

[0007] The technical solution adopted by the present invention to solve its technical problems is: a training simulator for drone equipment described in the present invention includes a display body, and a No. 1 slide groove is provided on both sides of the display body. A threaded rod is rotatably connected inside the No. 1 slide groove, and the threaded rod is driven by a motor. A sliding block is threadedly connected to the side wall of the threaded rod, and a No. 1 electric push rod is fixedly connected to the side wall of the sliding block. A positioning plate is fixedly connected to the output end of the No. 1 electric push rod, and a No. 2 slide groove is provided on the side wall of the positioning plate. A positioning block is provided inside the No. 2 slide groove, and a rubber plate is provided on the side wall of the positioning block.

[0008] Preferably, multiple groups of No. 2 electric push rods are fixedly connected between the inner side wall of the No. 2 slide groove and the side wall of the positioning block, the positioning block slides inside the No. 2 slide groove, the positioning block is located on the inner side wall of the No. 2 slide groove and a No. 3 slide groove is opened, the middle part of the positioning block is provided with a No. 4 slide groove, and the No. 4 slide groove and the No. 3 slide groove are connected, a push column slides inside the No. 4 slide groove, and the push column and the side wall of the No. 4 slide groove are connected with a spring, one end of the rubber belt is fixed to the inner wall of the No. 2 slide groove, and the other end passes through the No. 3 slide groove and is connected to the side wall of the push column.

[0009] Preferably, the middle and side walls of the rubber plate are fixed with sponge pads, the side walls of the sponge pads are provided with multiple groups of concave grooves, the bottom side wall of the positioning block is provided with a No. 5 slide groove, and the middle of the No. 5 slide groove is connected to a receiving plate through a spring sliding connection.

[0010] Preferably, placement bins are fixedly connected to both sides of the back of the display body, a water tank is plugged into the placement bin, one end of a No. 1 water pipe is connected to the side wall of the water tank, the other end of the No. 1 water pipe passes through the display body and the sliding block and the No. 1 electric push rod, the middle of the No. 1 water pipe is connected to multiple groups of three-way water pipes, and the middle of the three-way water pipe is connected to a No. 2 water pipe, and the end of the No. 2 water pipe is in contact with the sponge pad.

[0011] Preferably, the end of the No. 2 water pipe is connected to the No. 3 water pipe, and the No. 3 water pipe is located in the middle of the sponge pad. The side wall of the No. 3 water pipe is provided with multiple groups of drainage ports, and the side wall of the drainage port is fixed with a valve.

[0012] Preferably, a drainage groove is fixedly connected to the side wall of the screen at the bottom of the display body, a No. 6 slide groove is opened on the side wall of the bottom of the display body, a water storage tank is slidably connected inside the No. 6 slide groove, and a drainage groove is opened on the side wall of the display body in the middle of the No. 1 water guide plate, and the drainage groove is connected to the No. 6 slide groove.

[0013] Preferably, a No. 2 water diversion plate is fixedly connected to the interior of the display body below the positioning plate, and the No. 2 water diversion plate is tilted toward the middle. A No. 4 water pipe is fixedly connected to the lower middle part of the No. 2 water diversion plate, and the No. 4 water pipe moves to the left side of the display body. A drainage pipe is fixedly connected to the side wall of the display body on the side of the No. 1 water diversion plate, and the drainage pipe is connected to the No. 4 water pipe.

[0014] Preferably, a pair of the pushing posts are both fixedly connected to a No. 1 magnet, and the inner side wall of the No. 4 slide groove is fixedly connected to multiple groups of No. 2 magnets, and the No. 1 magnet and the No. 2 magnet are magnetically attracted to each other.

[0015] Preferably, a pair of rubber scrapers are fixedly connected to the middle of each of the multiple groups of concave grooves, and the pair of rubber scrapers are arranged in an arc shape and are symmetrically distributed.

[0016] Preferably, the surfaces of the multiple groups of No. 2 magnets are all covered with a rubber layer, and the shape of the No. 2 magnets is the same as the arc shape of the rubber layer.

[0017] The beneficial effects of the present invention are as follows:

[0018] 1. The training simulator for drone equipment described in the present invention can reduce the impact of dust adhesion on the display screen after long-term use by regularly scraping the display screen of the display body. At the same time, the positioning plate can be completely stored inside the display body, which can improve the integrity of the equipment.

[0019] 2. The training simulator for drone equipment described in the present invention can improve the cleaning effect of the display screen through the pushing effect of the No. 2 electric push rod, thereby increasing the cleanliness level. At the same time, the pressure exerted by the push column on the rubber plate can increase the fit between the rubber plate and the side wall of the display body in the stored state, thereby reducing the entry of dust. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings.

[0021] Figure 1 is a three-dimensional diagram of the display body of the present invention;

[0022] Figure 2 is a rear perspective view of the display body of the present invention;

[0023] Figure 3 It is a structural schematic diagram of the threaded rod in the present invention;

[0024] Figure 4 It is a structural schematic diagram of the positioning plate in the present invention;

[0025] Figure 5 It is a schematic cross-sectional structural diagram of the positioning plate in the present invention;

[0026] Figure 6 It is a structural schematic diagram of the No. 1 water guide plate in the present invention;

[0027] Figure 7 It is a structural schematic diagram of the No. 2 water diversion plate in the present invention.

[0028] Figure: 1. Display body; 11. Slide No. 1; 12. Threaded rod; 13. Sliding block; 14. Positioning plate; 15. Slide No. 2; 16. Positioning block; 17. Rubber plate; 18. Electric push rod No. 1; 2. Electric push rod No. 2; 21. Slide No. 3; 22. Rubber belt; 23. Push column; 24. Slide No. 4; 3. Sponge pad; 31. Concave groove; 32. Slide No. 5; 33. Attachment plate; 4 , storage bin; 41. Water storage tank; 42. Water pipe No. 1; 43. Three-way water pipe; 44. Water pipe No. 2; 5. Water pipe No. 3; 51. Drain outlet; 52. Valve; 6. Water guide plate No. 1; 61. Drain trough; 62. Chute No. 6; 63. Water storage tank; 7. Water guide plate No. 2; 71. Water pipe No. 4; 72. Drain pipe; 8. Magnet No. 1; 81. Magnet No. 2; 9. Rubber scraper; 101. Rubber layer. DETAILED DESCRIPTION

[0029] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0030] like Figures 1 to 4 As shown, a training simulator for drone equipment described in an embodiment of the present invention includes a display body 1, and a No. 1 slide groove 11 is provided on both sides of the display body 1. A threaded rod 12 is rotatably connected inside the No. 1 slide groove 11, and the threaded rod 12 is driven by a motor. A sliding block 13 is threadedly connected to the side wall of the threaded rod 12, and a No. 1 electric push rod 18 is fixedly connected to the side wall of the sliding block 13. A positioning plate 14 is fixedly connected to the output end of the No. 1 electric push rod 18, and a No. 2 slide groove 15 is provided on the side wall of the positioning plate 14. A positioning block 16 is provided inside the No. 2 slide groove 15, and a rubber plate 17 is provided on the side wall of the positioning block 16. During the long-term use of the display body 1, as the equipment is running, static electricity generated by friction or charge accumulation will absorb dust in the air and adhere to the surface of the display body 1. At this time, the staff can use the electric control timing to drive the No. 1 electric push rod 18 to push, so that the positioning plate 14 is displaced from the contact with the display body 1. At this time, the motor drives the rotation of the threaded rod 12 to displace the sliding block 13 on the threaded rod 12, driving the side wall of the positioning plate 14 to move toward the display area of the display body 1. The rubber plate 17 installed on the side wall of the positioning plate 14 and the display screen area of the display body 1 are driven by the No. 1 electric push rod 18 to move up and down to scrape off the existing dust. By regularly scraping the display screen of the display body 1, the adhesion of surface dust after long-term use can be reduced, which causes a certain degree of impact on the display image. At the same time, the positioning plate 14 can be completely stored in the interior of the display body 1, which can improve the integrity of the equipment.

[0031] like Figures 4 and 5As shown, multiple groups of No. 2 electric push rods 2 are fixed between the inner side wall of the No. 2 slide groove 15 and the side wall of the positioning block 16. The positioning block 16 slides inside the No. 2 slide groove 15. The positioning block 16 is located on the inner side wall of the No. 2 slide groove 15 and is provided with a No. 3 slide groove 21. The middle part of the positioning block 16 is provided with a No. 4 slide groove 24, and the No. 4 slide groove 24 is connected to the No. 3 slide groove 21. A push column 23 slides inside the No. 4 slide groove 24, and the push column 23 and the side wall of the No. 4 slide groove 24 are connected with a spring. One end of the rubber belt 22 is fixed to the inner wall of the No. 2 slide groove 15, and the other end passes through the No. 3 slide groove 21 and is connected to the side wall of the push column 23. In the process of the rubber plate 17 cleaning the screen of the display body 1, the No. 2 electric push rod 2 can The positioning block 16 pushes, so that the positioning block 16 drives the rubber plate 17 to increase the fit between the screen and the screen, and scrapes off the dust and impurities adhering to the screen. At the same time, after the positioning plate 14 is reset, the No. 2 electric push rod 2 will drive the positioning block 16 back to the initial position. After losing the pull of the rubber belt 22, the pushing column 23 will push the rubber plate 17 under the action of the spring, so that the fit between the rubber plate 17 and the side wall of the display body 1 is increased. Through the pushing effect of the No. 2 electric push rod 2, the cleaning effect of the screen of the display body 1 can be increased, and the cleanliness can be increased. At the same time, the pressure applied by the pushing column 23 to the rubber plate 17 can increase the fit between the rubber plate 17 and the side wall of the display body 1 in the storage state, thereby reducing the entry of dust.

[0032] like Figures 4 and 5 As shown, the middle and side walls of the rubber plate 17 are fixed with a sponge pad 3, the side walls of the sponge pad 3 are provided with multiple groups of concave grooves 31, the bottom side wall of the positioning block 16 is provided with a No. 5 slide groove 32, and the middle of the No. 5 slide groove 32 is connected to a receiving plate 33 through a spring sliding connection. During the normal operation of the equipment, the sponge pad 3 installed on the side wall of the rubber plate 17 can absorb moisture by spraying an external cleaning liquid when facing impurities that adhere to the screen after drying, so that the sponge pad 3 can drive the moisture to clean other parts of the screen during the up and down movement, and at the same time, the positioning plate 1 During the subsequent storage process, the water inside the sponge pad 3 will gather downwards under the action of gravity until it drips. At this time, the receiving plate 33 can pop out under the action of the spring to collect the dripping water. When it contacts the screen again, the deformation caused by the contact pressure causes the water to contact the screen. The above steps are repeated. The sponge pad 3 installed on the side wall of the rubber plate 17 can increase the water adsorption effect during cleaning, increase the range of water moistening the screen, and then make it easier for dried impurities to separate from the screen under the moistening of water, thereby improving the cleaning effect.

[0033] like Figures 1 to 5As shown, both sides of the back of the display body 1 are fixed with placement bins 4, and a water tank 41 is inserted into the placement bin 4. The side wall of the water tank 41 is connected to one end of a No. 1 water pipe 42, and the other end of the No. 1 water pipe 42 passes through the display body 1 and the sliding block 13, and the No. 1 electric push rod 18. The middle of the No. 1 water pipe 42 is connected to multiple groups of three-way water pipes 43, and the middle of the three-way water pipe 43 is connected to a No. 2 water pipe 44. The end of the No. 2 water pipe 44 is in contact with the sponge pad 3. During the normal operation of the positioning plate 14, the placement bin 4 installed on the back of the display body 1 can provide a placement position for the water tank 41. At this time, the water tank 41 can be cleaned through the No. 1 water pipe after adding cleaning liquid. 42 transfers the cleaning liquid, allowing the cleaning liquid to enter the No. 2 water pipe 44 along the No. 1 water pipe 42 and then contact the sponge pad 3. The sponge pad 3 is quickly moisturized by the water absorption effect of the sponge pad 3, so that when it contacts the screen of the display body 1, the cleaning liquid can cover the screen of the display body 1. The transmission of the cleaning liquid by the water tank 41 and the No. 1 water pipe 42 can reduce the tedious operation of manually spraying the screen of the display body 1. In the process of contact between the sponge pad 3 and the screen, the No. 2 water pipe 44 is directly used to fill the sponge pad 3 with the cleaning liquid, thereby increasing the covering effect of the cleaning liquid and the screen, and at the same time, the contact between the cleaning liquid and the screen is used to dissipate heat for the screen.

[0034] like Figures 4 and 5 As shown, the end of the No. 2 water pipe 44 is connected to the No. 3 water pipe 5, and the No. 3 water pipe 5 is located in the middle of the sponge pad 3. The side wall of the No. 3 water pipe 5 is provided with multiple sets of drain ports 51, and the side wall of the drain ports 51 is fixedly connected with a valve 52. In the process of contact between the sponge pad 3 and the screen, the cleaning liquid in the No. 2 water pipe 44 will pass through the No. 3 water pipe 5. At this time, the multiple sets of drain ports 51 provided on the side wall of the No. 3 water pipe 5 cooperate with the valve 52 to reduce the flow of the cleaning liquid, which flows out in a droplet shape, and cooperates with the sponge pad 3 to clean the screen. Through the installation of the No. 3 water pipe 5, the flow of water can be changed in cooperation with the presence of the drain ports 51 and the valve 52, thereby reducing the adhesion effect between the sponge pad 3 and the screen due to the excess water inside the sponge pad 3 during direct discharge, thereby affecting the cleaning effect.

[0035] like Figure 6As shown, the bottom of the display body 1 is fixed with a drainage groove 61 on the side wall of the screen, and the bottom side wall of the display body 1 is provided with a No. 6 slide groove 62, and the inside of the No. 6 slide groove 62 is slidably connected to a water storage tank 63. The side wall of the display body 1 is provided with a drainage groove 61 in the middle of the No. 1 water guide plate 6, and the drainage groove 61 and the No. 6 slide groove 62 are connected. In the process of the sponge pad 3 contacting and cleaning the screen, some cleaning liquid will gradually drip. At this time, the No. 1 water guide plate 6 installed on the bottom side wall of the display body 1 can guide the sliding cleaning liquid through the drainage groove 61 and then enter the water storage tank 63 for storage through the bonding effect with the screen, waiting for unified processing by subsequent staff. The bonding effect of the No. 1 water guide plate 6 and the screen can guide the sliding cleaning liquid so that the cleaning liquid can smoothly pass through the drainage groove 61 and enter the water storage tank 63, thereby reducing moisture dripping onto the desktop of the display body 1 and affecting the connected wires.

[0036] like Figures 6 and 7 As shown, the interior of the display body 1 is fixedly connected to a No. 2 water diversion plate 7 below the positioning plate 14, and the No. 2 water diversion plate 7 is tilted toward the middle. A No. 4 water pipe 71 is fixedly connected to the lower middle of the No. 2 water diversion plate 7. The No. 4 water pipe 71 moves to the left side of the display body 1. The side wall of the display body 1 is fixedly connected to a drain pipe 72 on one side of the No. 1 water diversion plate 6. The drain pipe 72 is connected to the No. 4 water pipe 71. When the positioning plate 14 is in the retracted state, the water dripping on the receiving plate 33 will gradually overflow. At this time, the No. 2 water diversion plate 7 can collect and guide the falling water to enter the No. 4 water pipe 71. The No. 4 water pipe 71 moves to one side to avoid the electronic components inside the display body 1. At this time, the No. 4 water pipe 71 can be connected with the drain pipe 72, allowing the water to enter the water storage tank 63 through the drain groove 61 for storage. Through the transmission effect of the No. 2 water guide plate 7 and the No. 4 water pipe 71, the water collected by the positioning plate 14 can be discharged through the No. 4 water pipe 71, reducing the overflow of water from the top and contact with the electronic components, which affects the normal use of the display body 1.

[0037] like Figure 5As shown, a pair of the above-mentioned pushing columns 23 are fixedly connected to the interior of each of the No. 1 magnets 8, and the inner side walls of the above-mentioned No. 4 slide grooves 24 are fixedly connected to multiple groups of No. 2 magnets 81. The No. 1 magnet 8 and the No. 2 magnet 81 are magnetically attracted to each other. When the positioning block 16 is displaced to a position away from the interior of the positioning plate 14, the pushing column 23 will contact the No. 2 magnet 81 under the elastic pull of the rubber belt 22, and the pushing column 23 is fixed by the magnetic attraction effect of the No. 1 magnet 8 and the No. 2 magnet 81. When the positioning block 16 is subsequently reset, the elastic force of the spring will push the pushing column 23 to contact the side wall of the rubber plate 17 and squeeze it. The magnetic attraction effect of the No. 1 magnet 8 and the No. 2 magnet 81 can limit the movement of the pushing column 23 while reducing the pressure of the pushing column 23 on the rubber plate 17 when the positioning block 16 is displaced to the screen for cleaning, thereby reducing the pressure on the screen.

[0038] like Figure 5 As shown, a pair of rubber scrapers 9 are fixedly connected to the middle of each of the multiple groups of the above-mentioned concave grooves 31. The pair of rubber scrapers 9 are arranged in an arc shape and are symmetrically distributed. In the process of contact between the sponge pad 3 and the screen of the display body 1, the rubber scraper 9 installed in the middle of the concave groove 31 can use its own curvature to contact the screen and scrape off the residual moisture on the screen. Through the arc setting of the rubber scraper 9, when in contact with the screen, the partial elastic support effect can be used to increase the fit between the rubber scraper 9 and the screen, and at the same time, the moisture and dust on the screen can be scraped off to increase the cleanliness of the screen.

[0039] like Figure 5 As shown, the surfaces of the multiple groups of the above-mentioned No. 2 magnets 81 are all covered with a rubber layer 101, and the shape of the No. 2 magnets 81 is the same as the arc shape of the rubber layer 101. During the movement of the push column 23, the side wall of the push column 23 will contact the side wall of the No. 2 magnet 81. At this time, the rubber layer 101 covering the side wall of the No. 2 magnet 81 can buffer the contact between the two. The rubber layer 101 covering the side wall of the No. 2 magnet 81 can provide a buffering effect for the collision of the push column 23, thereby reducing the collision caused by the contact between the two.

[0040] During the working process, during the long-term use of the display body 1, as the device is running, static electricity generated by friction or charge accumulation will absorb dust in the air and adhere to the surface of the display body 1. At this time, the staff can use the electric control timing to drive the No. 1 electric push rod 18 to push, so that the positioning plate 14 moves to break away from the contact with the display body 1. At this time, the motor drives the rotation of the threaded rod 12, so that the sliding block 13 on the threaded rod 12 moves, driving the side wall of the positioning plate 14 to move toward the display area of the display body 1. The rubber plate 17 installed on the side wall of the positioning plate 14 and the display are driven by the No. 1 electric push rod 18. The display screen area of the main body 1 moves up and down to scrape off the existing dust. When the rubber plate 17 cleans the screen of the display main body 1, the second electric push rod 2 can push the positioning block 16, so that the positioning block 16 drives the rubber plate 17 to increase the fit between the screen and the screen, and scrapes off the dust and impurities adhering to the screen. At the same time, after the positioning plate 14 is reset, the second electric push rod 2 will drive the positioning block 16 back to the initial position. After the pull of the rubber belt 22 is lost, the pushing column 23 will push the rubber plate 17 under the action of the spring, so that the fit between the rubber plate 17 and the side wall of the display main body 1 is increased;

[0041] During the normal operation of the equipment, the sponge pad 3 installed on the side wall of the rubber plate 17 can absorb moisture by spraying an external cleaning liquid when facing impurities that adhere to the screen after drying, so that the sponge pad 3 can drive the moisture to clean other parts of the screen during the up and down movement. At the same time, during the subsequent storage process of the positioning plate 14, the moisture inside the sponge pad 3 will gather downward under the action of gravity until it drips. At this time, the receiving plate 33 can pop out under the action of the spring to collect the dripping moisture. When it contacts the screen again later, the deformation caused by the contact pressure causes the moisture to contact the screen, and the above steps are repeated. During the normal operation of the positioning plate 14, the placement compartment 4 installed on the back of the display body 1 can provide a placement position for the water tank 41. At this time, after adding the cleaning liquid, the water tank 41 can transfer the cleaning liquid through the No. 1 water pipe 42, so that the cleaning liquid enters the No. 2 water pipe along the No. 1 water pipe 42. After the water pipe 44 comes into contact with the sponge pad 3, the sponge pad 3 is quickly moistened by the water absorption effect of the sponge pad 3, so that when it comes into contact with the screen of the display body 1, the cleaning liquid can cover the screen of the display body 1. In the process of the sponge pad 3 coming into contact with the screen, the cleaning liquid in the No. 2 water pipe 44 will pass through the No. 3 water pipe 5. At this time, the multiple groups of drainage ports 51 opened on the side wall of the No. 3 water pipe 5 cooperate with the valve 52 to reduce the flow of the cleaning liquid, and it flows out in a drop-like shape, cooperating with the sponge pad 3 to clean the screen. In the process of the sponge pad 3 coming into contact with the screen to clean it, part of the cleaning liquid will gradually drip. At this time, the No. 1 water guide plate 6 installed on the bottom side wall of the display body 1 can guide the sliding cleaning liquid through the drainage groove 61 and then enter the water storage tank 63 for storage, waiting for unified processing by subsequent staff;

[0042] When the positioning plate 14 is in the storage state, the water dripping on the receiving plate 33 will gradually overflow. At this time, the No. 2 water guide plate 7 can collect and guide the falling water to enter the No. 4 water pipe 71. The No. 4 water pipe 71 moves to one side to avoid the electronic components inside the display body 1. At this time, the No. 4 water pipe 71 can be connected with the drain pipe 72, so that the water enters the water storage tank 63 through the drain groove 61 for storage. When the positioning block 16 is displaced away from the interior of the positioning plate 14, the push column 23 will contact the No. 2 magnet 81 under the elastic force of the rubber belt 22, and the magnetic field of the No. 1 magnet 8 and the No. 2 magnet 81 is generated. The force attraction effect completes the fixation of the push column 23. When the positioning block 16 is subsequently reset, the spring's elastic force will drive the push column 23 to contact and squeeze the side wall of the rubber plate 17. In the process of the sponge pad 3 and the screen of the display body 1 contacting each other, the rubber scraper 9 installed in the middle of the concave groove 31 can use its own curvature to contact the screen and scrape off the residual moisture on the screen. In the movement of the push column 23, the side wall of the push column 23 will contact the side wall of the No. 2 magnet 81. At this time, the rubber layer 101 covering the side wall of the No. 2 magnet 81 can buffer the contact between the two.

[0043] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications fall within the scope of the invention as claimed.

Claims

1. A training simulator for unmanned aerial vehicle equipment, comprising a display body (1), characterized in that: A No. 1 slide groove (11) is provided on both sides of the display body (1), a threaded rod (12) is rotatably connected inside the No. 1 slide groove (11), and the threaded rod (12) is driven by a motor, a sliding block (13) is threadedly connected to the side wall of the threaded rod (12), a No. 1 electric push rod (18) is fixedly connected to the side wall of the sliding block (13), a positioning plate (14) is fixedly connected to the output end of the No. 1 electric push rod (18), a No. 2 slide groove (15) is provided on the side wall of the positioning plate (14), a positioning block (16) is provided inside the No. 2 slide groove (15), and a rubber plate (17) is provided on the side wall of the positioning block (16).

2. A training simulator for drone equipment according to claim 1, characterized in that: A plurality of groups of No. 2 electric push rods (2) are fixedly connected between the inner side wall of the No. 2 slide groove (15) and the side wall of the positioning block (16); the positioning block (16) slides inside the No. 2 slide groove (15); the positioning block (16) is located on the inner side wall of the No. 2 slide groove (15) and is provided with a No. 3 slide groove (21); a No. 4 slide groove (24) is provided in the middle of the positioning block (16), and the No. 4 slide groove (24) and the No. 3 slide groove (21) are connected; a push column (23) slides inside the No. 4 slide groove (24), and a spring is connected to the push column (23) and the side wall of the No. 4 slide groove (24); one end of a rubber belt (22) is fixedly connected to the inner wall of the No. 2 slide groove (15), and the other end passes through the No. 3 slide groove (21) and is connected to the side wall of the push column (23).

3. The training simulator for unmanned aerial vehicle equipment according to claim 1, characterized in that: The middle part and side wall of the rubber plate (17) are fixedly connected with a sponge pad (3), and the side wall of the sponge pad (3) is provided with a plurality of groups of concave grooves (31). The bottom side wall of the positioning block (16) is provided with a No. 5 slide groove (32), and the middle part of the No. 5 slide groove (32) is slidably connected with a receiving plate (33) through a spring.

4. The training simulator for unmanned aerial vehicle equipment according to claim 1, characterized in that: The display body (1) is fixedly connected to a placement compartment (4) on both sides of the back thereof. A water storage tank (41) is inserted into the placement compartment (4). The side wall of the water storage tank (41) is connected to one end of a No. 1 water pipe (42). The other end of the No. 1 water pipe (42) passes through the display body (1), the sliding block (13), and the No. 1 electric push rod (18). The middle of the No. 1 water pipe (42) is connected to multiple groups of three-way water pipes (43), and the middle of the three-way water pipe (43) is connected to a No. 2 water pipe (44). The end of the No. 2 water pipe (44) is in contact with the sponge pad (3).

5. A training simulator for drone equipment according to claim 4, characterized in that: The end of the No. 2 water pipe (44) is connected to the No. 3 water pipe (5), and the No. 3 water pipe (5) is located in the middle of the sponge pad (3). The side wall of the No. 3 water pipe (5) is provided with multiple groups of drainage ports (51), and the side wall of the drainage ports (51) is fixed with a valve (52).

6. The training simulator for unmanned aerial vehicle equipment according to claim 1, characterized in that: The bottom of the display body (1) is fixedly connected to the side wall of the screen with a drainage groove (61), the bottom side wall of the display body (1) is provided with a sixth chute (62), the inside of the sixth chute (62) is slidably connected to a water storage tank (63), the side wall of the display body (1) is provided with a drainage groove (61) in the middle of the first water guide plate (6), and the drainage groove (61) and the sixth chute (62) are connected.

7. A training simulator for unmanned aerial vehicle equipment according to claim 6, characterized in that: A second water guide plate (7) is fixedly connected to the interior of the display body (1) below the positioning plate (14), and the second water guide plate (7) is arranged to be inclined toward the middle. A fourth water pipe (71) is fixedly connected to the middle of the second water guide plate (7), and the fourth water pipe (71) moves to the left side of the display body (1). A drainage pipe (72) is fixedly connected to the side wall of the display body (1) on one side of the first water guide plate (6), and the drainage pipe (72) is connected to the fourth water pipe (71).

8. The training simulator for unmanned aerial vehicle equipment according to claim 2, characterized in that: A pair of the pushing columns (23) are both fixedly connected to a No. 1 magnet (8), and the inner side wall of the No. 4 slide groove (24) is fixedly connected to multiple groups of No. 2 magnets (81), and the No. 1 magnet (8) and the No. 2 magnet (81) are magnetically attracted to each other.

9. The training simulator for unmanned aerial vehicle equipment according to claim 3, characterized in that: A pair of rubber scrapers (9) are fixedly connected to the middle of each of the multiple groups of concave grooves (31), and the pair of rubber scrapers (9) are arranged in an arc shape and are symmetrically distributed.

10. The training simulator for unmanned aerial vehicle equipment according to claim 8, characterized in that: The surfaces of the plurality of groups of the No. 2 magnets (81) are all covered with a rubber layer (101), and the shape of the No. 2 magnets (81) is the same as the arc shape of the rubber layer (101).

Citation Information

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