An intelligent sensing glass curtain wall system
By collecting rainwater through the intelligent sensing glass curtain wall system and using monitoring cameras and cleaning mechanisms to efficiently clean specific areas, the problems of existing technologies such as the inability to clean specific areas and the waste of water resources are solved, achieving the effect of water conservation and efficient cleaning.
Patent Information
- Application Number
- CN202211353695.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-01
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2042-11-01
AI Technical Summary
Existing glass curtain wall cleaning devices are unable to clean specific areas, resulting in serious waste of water resources.
An intelligent sensing glass curtain wall system was designed. Rainwater is collected by a rainwater collection mechanism and stored in a water tank. The location of stains is detected by a monitoring camera. The cleaning mechanism slides along the guide rail to the designated position for cleaning. A water spray pipe and pressurized nozzle are used for cleaning. The water pump and rotating column are combined to improve the cleaning efficiency.
It achieves efficient cleaning of specific areas, saves water resources, ensures the accurate movement trajectory of the cleaning mechanism, collects pure rainwater, and makes the glass easy to replace and maintain.
Smart Images

Figure CN115680170B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field related to glass curtain walls, and in particular to an intelligent sensing glass curtain wall system. Background Art
[0002] With the development of modern times, high-rise buildings are increasing in number in cities. Many high-rise buildings are adorned with glass curtain walls, as they offer a more aesthetically pleasing exterior. While glass curtain walls are beautiful, cleaning them is a difficult task. Most automatic glass curtain wall cleaning devices are unable to clean specific areas, requiring large areas to be cleaned, which wastes a lot of water.
[0003] China Patent Authorization Announcement No.: CN211666034U, authorization announcement date: October 13, 2020, discloses an automatically cleaning glass curtain wall, comprising a curtain wall body composed of several glass curtain wall units, the curtain wall body being mounted on a curtain wall keel; characterized in that a water pipe is provided on the curtain wall keel, the water pipe being connected to a water tank at the top of the building, a branch water pipe being provided on the water pipe, a card interface being provided at the top of the branch water pipe, the card interface being connected to a curtain wall water pipe provided in the glass curtain wall unit, a water spray hole being provided on the curtain wall water pipe, the water spray hole being matched with a through hole on the glass curtain wall unit; a waterproof colloid being provided on the lower end surface of the glass curtain wall unit, the waterproof colloid being shielded from the through holes on adjacent glass curtain wall units. The disadvantage of this utility model is that the water spray hole is used for large-area cleaning, and it is not possible to clean specific glass, and a large amount of water is wasted during the cleaning process. Summary of the Invention
[0004] The present invention aims to overcome the shortcomings of the prior art that specific glass cannot be cleaned and a large amount of water is wasted during the cleaning process. It provides an intelligent sensing glass curtain wall system that can collect rainwater for backup use in cleaning specific glass.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] An intelligent sensing glass curtain wall system includes a frame, a water tank, a rainwater collection mechanism, and a cleaning mechanism. The upper end of the frame is connected to the rainwater collection mechanism. The rainwater collection mechanism is provided with a connecting pipe, one end of the connecting pipe is connected to the rainwater collection mechanism, and the other end of the connecting pipe is connected to the water tank. The lower end of the frame is connected to the water tank. The frame is provided with a guide rail, the cleaning mechanism is placed in the guide rail, and the cleaning mechanism is slidably connected to the guide rail. The frame is provided with a monitoring camera, the monitoring camera is installed on the frame, and the monitoring camera is electrically connected to the cleaning mechanism.
[0007] The main body of the glass curtain wall is a frame. The upper end of the frame is connected to a rainwater collecting mechanism, which collects rainwater for backup. The lower end of the rainwater collecting mechanism is connected to a connecting pipe. The collected rainwater enters a water tank through the connecting pipe. The water tank is installed at the lower end of the frame. The water is stored in the water tank for backup. A guide rail is provided on the frame, and a cleaning mechanism is installed in the guide rail. The cleaning mechanism moves along the guide rail. The cleaning mechanism moves to a designated position in the guide rail to clean the stained glass. A monitoring camera is installed on the frame, and the monitoring camera takes pictures and compares to detect whether there are stains on the glass. The monitoring camera is electrically connected to the cleaning mechanism and transmits an electrical signal to the cleaning mechanism. The cleaning mechanism receives the electrical signal and can move to the stained part for cleaning, thereby achieving the purpose of collecting rainwater for backup use for cleaning specific glass.
[0008] Preferably, the cleaning mechanism includes a horizontal sliding block, a vertical sliding block and a control panel, wherein two horizontal sliding blocks are provided, and the two horizontal sliding blocks are placed on both sides of the vertical sliding block and in contact with the vertical sliding block, and the vertical sliding block and the horizontal sliding block are both placed in a guide rail, and the guide rail includes a horizontal rail and a vertical rail, and the horizontal rail is connected to the vertical rail, and the vertical sliding block corresponds to the vertical rail, and the vertical sliding block is installed with a cleaning assembly. The cleaning mechanism includes a horizontal sliding block and a vertical sliding block, wherein two horizontal sliding blocks are provided, and are located on both sides of the vertical sliding block, and the horizontal sliding block and the vertical sliding block are both placed in a guide rail, and the guide rail includes a horizontal rail and a vertical rail, and the horizontal sliding block drives the vertical sliding block to move together in the horizontal rail, and moves to the position connected with the vertical rail, and the vertical sliding block can move into the vertical rail, thereby ensuring that the cleaning mechanism can move along the guide rail, the control panel is electrically connected to the monitoring camera, and the control panel can process the electrical signal transmitted by the monitoring camera, and issue instructions after processing the electrical signal. Such a design can ensure the movement trajectory of the cleaning mechanism.
[0009] Preferably, a rack 1 is provided in the horizontal rail, and the rack 1 is installed at the bottom of the horizontal rail. A gear 1 is provided at the bottom of the horizontal sliding block, and the gear 1 is connected to the horizontal sliding block, and the gear 1 is meshed with the rack 1. A motor 1 is provided on the side of the horizontal sliding block, and the motor 1 is installed on the horizontal sliding block. A gear 2 is provided on the motor 1, and the gear 2 is connected to the output end of the motor 1, and the gear 2 is meshed with the gear 1. The vertical sliding block corresponds to the vertical rail, and a sliding bar is provided on the vertical rail, and the sliding bar is connected to the vertical rail. There are two sliding bars, and the two sliding bars are installed on both sides of the vertical rail. A sliding groove is provided on the side of the sliding bar. The cleaning component includes a water tank, and an open groove is provided at the bottom of the water tank. The top of the vertical sliding block is provided with a motor 2. The motor 2 is installed on the vertical sliding block, and a gear 3 is provided on the output end of the motor 2, and the gear 3 is connected to the motor 2. A rack 2 is provided in the open groove, and the gear 3 is meshed with the rack 2. The water tank is connected to the vertical sliding block, and sliding plates are provided on both sides of the water tank, and the sliding plates are connected to the water tank. A groove is formed between the sliding plate and the water tank, and the groove corresponds to the sliding bar. A motor 3 is provided on the side of the water tank, and the motor 3 is installed on the water tank. Motor 3 is installed on both sides of the water tank, and a gear 4 is provided on the motor 3. The gear 4 is connected to the motor 3. One side of the gear 4 passes through the sliding plate and is placed in the groove. A rack 3 is provided on the sliding groove, and the rack 3 is connected to the sliding bar, and the gear 4 is meshed with the rack 3. The rack 1 at the bottom of the horizontal rail is meshed with the gear 1, and the side of the horizontal sliding block is installed with the motor 1. The output end of the motor 1 is installed with the gear 2, and the gear 2 is meshed with the gear 1, which can be driven by the gear 2. The movement of the gear, and thus the meshing of the gear 1 and the rack 1, drives the horizontal sliding block to move in the horizontal rail. The sliding bar on the vertical rail corresponds to the groove on the water tank, which can ensure that the water tank will not fall off during movement. The bottom of the water tank is provided with an open groove, and the side of the open groove is installed with the rack 2. The rack 2 is meshed with the gear 3 on the motor 2 installed on the top of the vertical sliding block. The action of the motor 2 drives the gear 3 to rotate. Rack two is engaged with gear three, so the water tank can enter the vertical rail and cooperate with the sliding bar. At this time, motor two stops and motor three on the side of the water tank moves. Motor three installed on the side of the water tank is provided with gear four, and rack three is installed in the sliding groove of the sliding bar. One side of gear four passes through the sliding plate and engages with rack three, which can ensure that the water tank moves on the sliding bar of the vertical rail. Motor one, motor two and motor three are all controlled by a control panel installed on the vertical sliding block. By controlling the rotation of the motor, the cleaning mechanism can be moved to the specified position. This design can ensure that the cleaning mechanism can move automatically.
[0010] Preferably, the water tank is provided with a water spray pipe, the interior of the water tank is provided with a cavity, the water spray pipe is connected to the water tank, the water spray pipe is provided with several pressurized nozzles, the pressurized nozzles are connected to the water spray pipe, the water spray pipe is provided with a water pump, the water pump is connected to the water tank, the water pump is provided with a rotating column, the water spray pipe is connected to the rotating column, the rotating column is rotatably connected to the water tank, a gear five is provided at the top of the rotating column, the gear five is connected to the rotating column, a motor four is provided on the top surface of the water tank, the motor four is installed on the water tank, a gear six is provided on the motor four, the gear six is connected to the output end of the motor four, the gear six is meshed with the gear five, a scraper is provided on the water spray pipe, and the scraper is connected to the water spray pipe. The water tank is connected to the water spray pipe, and the water spray pipe is used to clean the glass. A cavity is provided in the water tank, and the cavity is used to store water to ensure water consumption during the cleaning process. A water pump is installed on the water tank, and the water pump is connected to the water spray pipe to ensure the stability of the water flow. A rotating column is installed on the water pump, and the rotating column is connected to the water spray pipe. Gear five is installed on the rotating column, and the gear is engaged with gear six on motor four to realize the rotation of the rotating column. The cleaning area of the water spray pipe is ensured by the rotating column, and a pressurized nozzle is installed on the water spray pipe. The pressurized nozzle can better clean stains by increasing the water flow pressure. At the same time, a scraper is installed on the water spray pipe. The scraper can further clean the glass after the water spray pipe sprays water. This design can better clean the glass.
[0011] Preferably, the water tank is provided with a water injector, which is connected to the inside of the water tank; the water storage tank is provided with a water injection hole, which matches the water injector, and is connected to the cavity of the water storage tank; the rainwater collection mechanism includes a water collecting tank and a filter; the top of the water collecting tank is provided with an opening; the bottom of the water collecting tank is provided with a water inlet; the connecting pipe is connected to the water collecting tank through the water inlet; the filter is connected to the water collecting tank; and the filter is placed at the opening of the water collecting tank. The water tank at the lower end of the frame has a water injector installed at the upper end of the water tank, which is connected to the inside of the water tank. A water filling port is provided at the bottom of the water tank, and the water filling port corresponds to the water injector. The water in the water tank is injected into the water tank by the water injector, and the water injection hole is connected to the cavity inside the water tank. The water filling port of the water tank is provided with an elastic sealing piece. After the water filling is completed, when the water tank leaves the water injector, the elastic sealing piece will automatically close. The rainwater collection mechanism above includes a water collecting tank and a filter. The water inlet at the bottom of the water collecting tank is connected to a connecting pipe, and the collected rainwater is injected into the water tank through the connecting pipe. Since the water collecting tank is provided with a filter, it can be ensured that there are no impurities in the collected rainwater. Such a design can ensure that the collected rainwater is relatively pure.
[0012] Preferably, a collecting box is provided on the water collecting box, the cross-sectional shape of the collecting box is trapezoidal, the end of the collecting box with a smaller end face area is connected to the water collecting box, a collecting cavity is provided on the collecting box, the collecting cavity is communicated with the opening of the water collecting box, a cover is provided on the collecting box, the cover corresponds to the top of the collecting box, a pneumatic cylinder is provided on the inner side wall of the collecting cavity, the pneumatic cylinder is installed on the inner side wall of the collecting box, the pneumatic cylinder is connected to the cover, and a rain sensor is provided on the cover. A collection box is installed on the water collecting box, and the bottom of the collection box is connected to the water collecting box. The trapezoidal structure can increase the rainwater collection area. Rainwater flows into the water collecting box through the collection chamber. A cover is installed on the water collecting box, and a pneumatic cylinder is installed on the inner wall of the collection chamber. The output end of the pneumatic cylinder is connected to the cover, and the cover is opened and closed by the pneumatic cylinder. One end of the cover is rotatably connected to the collection box. A rain sensor is installed on the cover, and the rain sensor controls the movement of the pneumatic rod through a controller. After the rain sensor senses rain, the pneumatic cylinder moves to open the cover to collect rainwater. The cover is also closed after the rain stops, to ensure that impurities do not enter the rainwater collection device when there is no rain.
[0013] Preferably, a placement groove is provided on the back of the frame, a glass is provided on the frame, the glass is placed in the placement groove, the placement groove corresponds to the glass, a fixing frame is provided on the glass, the shape of the fixing frame matches the glass, the fixing frame is connected to the frame, and the frame is provided with fixing holes. A placement groove is provided on the back of the frame, the placement groove is used to place the glass, the glass is placed in the frame and is not exposed to the outside, so as to protect the glass from damage, a fixing frame is installed on the frame, the fixing frame corresponds to the glass and is used to fix the glass, the glass is fixed to the frame through the fixing frame, and when the glass needs to be replaced, the fixing frame can be opened to remove the glass to be replaced, and fixing holes are provided on the frame, and the frame is fixed to the wall through the fixing holes, thereby achieving the purpose of easy replacement of glass in the glass curtain wall.
[0014] Preferably, the upper end of the fixed frame is provided with a hinge, one end of the hinge is connected to the fixed frame, and the other end of the hinge is connected to the frame. There are several hinges, and the hinges are evenly distributed on the fixed frame. The lower end of the fixed frame is provided with a fixed block, the upper end of the fixed block is connected to the fixed frame, and the fixed block is provided with a threaded hole. The upper end of the fixed frame is provided with a hinge, and the upper end of the fixed frame can be rotatably connected to the frame to open the fixed frame. The multiple hinges work together to ensure the stability of the connection. The lower end of the fixed frame is installed with a fixed block, and the fixed block is provided with a threaded hole and fixed with screws. The lower end of the fixed frame is fixed, and the upper end is rotatably connected to the frame. It is only necessary to contact and fix the fixed block, and the fixed frame can be opened by rotating the fixed frame through the hinge. Such a design can make opening the fixed frame safer and more convenient.
[0015] Preferably, the fixed frame is provided with a stopper, wherein four of the stoppers are provided, and the four stoppers correspond to the four corners of the fixed frame, one end of the stopper is connected to the side of the fixed frame, and the other end of the stopper is connected to another adjacent side of the fixed frame, the fixed frame is provided with a limit plate, the limit plate is connected to the side of the fixed frame, and two limit plates are provided, and the two limit plates are connected to the left and right sides of the fixed frame respectively, and the frame is provided with a limit groove, and the limit groove corresponds to the limit plate. The four stoppers of the fixed block correspond to the four corners respectively, which can further fix the glass, and limit plates are installed on both sides of the fixed frame respectively, and the limit plates limit the position of the fixed frame when fixing the glass to prevent it from falling off due to improper fixation, and the frame is provided with a limit groove, and the limit groove corresponds to the limit plate. At the same time, the limit plate can bear weight, and the limit plate and the limit groove cooperate to bear the weight of the fixed frame itself, so that the design can increase safety.
[0016] Preferably, the frame is provided with a drainage groove, the drainage groove is located inside the bottom edge of the placement groove, the drainage groove is connected to the placement groove, the drainage groove runs through the frame, the frame is provided with a hair dryer, the hair dryer is provided with a blow pipe, one end of the blow pipe is connected to the hair dryer, and the other end of the blow pipe is connected to one end of the drainage groove. A drainage groove is provided on the frame, the drainage groove is provided inside the bottom edge of the placement groove, and the drainage groove runs through the frame. When rainwater enters the placement groove along the gap of the glass curtain wall, the rainwater will flow into the drainage groove. A hair dryer is installed on one side of the frame, the air outlet of the hair dryer is connected to one end of the blow pipe, and the other end of the blow pipe is connected to the drainage groove. The accumulated water in the drainage groove can be blown out to keep it dry. Such a design can ensure the dryness of the glass curtain wall.
[0017] The beneficial effects of the present invention are: rainwater can be collected for use in cleaning specific glass, the movement trajectory of the cleaning mechanism is guaranteed, the cleaning mechanism can move automatically, the glass is better cleaned, the collected rainwater is guaranteed to be relatively pure, impurities will not enter the rainwater collection device when there is no rainwater, the glass of the glass curtain wall can be easily replaced, it is safer and more convenient to open the fixing frame, safety can be increased, and the dryness of the glass curtain wall can be guaranteed. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a structural schematic diagram of the present invention;
[0019] Figure 2 yes Figure 1 A partial enlarged view of point A in the middle;
[0020] Figure 3 yes Figure 2 Schematic diagram of the structure of the middle frame;
[0021] Figure 4It is a structural diagram of the cleaning mechanism;
[0022] Figure 5 yes Figure 4 Exploded diagram;
[0023] Figure 6 yes Figure 4 Cross-section of the middle water tank;
[0024] Figure 7 yes Figure 1 Schematic diagram of the structure of the rainwater collection mechanism;
[0025] Figure 8 yes Figure 6 sectional view of
[0026] Figure 9 yes Figure 1 Rear view of the middle frame;
[0027] Figure 10 yes Figure 8 Schematic diagram of the structure of the middle frame;
[0028] Figure 11 yes Figure 9 A partial enlarged view of point B in the middle;
[0029] Figure 12 yes Figure 9 Schematic diagram of the fixed frame structure;
[0030] Figure 13 yes Figure 1 Schematic diagram of the structure of the medium water tank;
[0031] Figure 14 yes Figure 4 Structural diagram of the middle water tank
[0032] In the figure: 1. frame; 11. guide rail; 111. horizontal rail; 112. rack 1; 113. vertical rail; 114. sliding bar; 115. sliding slot; 12. monitoring camera; 13. sliding bar; 131. sliding slot; 132. rack 3; 14. hinge; 15. fixing hole; 16. placement slot; 17. drainage slot; 18. limit slot; 2. rainwater collection mechanism; 21. connecting pipe; 22. water collection tank; 221. opening; 222. water inlet hole; 23. collection tank; 24. cover; 25. rainwater sensor; 26. collection chamber; 27. pneumatic cylinder; 28. filter; 3. water tank; 31. water injector; 4. cleaning mechanism; 41. horizontal sliding block; 411. motor 1; 412. gear 2; 413, gear one; 42, vertical sliding block; 421, motor two; 422, gear three; 423, rack two; 43, cleaning assembly; 44, water tank; 441, groove; 442, water injection hole; 443, rotating column; 444, cavity; 445, water pump; 446, opening slot; 447, sliding plate; 448, elastic sealing sheet; 45, water spray pipe; 451, scraper; 46, pressurized nozzle; 47, control panel; 48, motor three; 481, gear four; 49, motor four; 491, gear five; 492, gear six; 5, fixing frame; 51, block; 52, limit block; 53, fixing block; 54, threaded hole; 6, glass; 7, hair dryer; 71, blow pipe. DETAILED DESCRIPTION
[0033] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0034] like Figure 1 、 Figure 2 In the embodiment shown, an intelligent sensing glass curtain wall system includes a frame 1, a rainwater collection mechanism 2, a water tank 3, and a cleaning mechanism 4. The upper end of the frame 1 is connected to the rainwater collection mechanism 2, and the rainwater collection mechanism 2 is provided with a connecting pipe 21. One end of the connecting pipe 21 is connected to the rainwater collection mechanism 2, and the other end of the connecting pipe 21 is connected to the water tank 3. The lower end of the frame 1 is connected to the water tank 3. A guide rail 11 is provided on the frame 1, and the cleaning mechanism 4 is placed in the guide rail 11. The cleaning mechanism 4 is slidably connected to the guide rail 11. A monitoring camera 12 is provided on the frame 1, and the monitoring camera 12 is installed on the frame 1. The monitoring camera 12 is electrically connected to the cleaning mechanism 4.
[0035] like Figure 4 、 Figure 5As shown, the cleaning mechanism 4 includes a horizontal sliding block 41, a vertical sliding block 42 and a control panel 47. There are two horizontal sliding blocks 41, which are placed on both sides of the vertical sliding block 42 and in contact with the vertical sliding block 42. The vertical sliding block 42 and the horizontal sliding block 41 are both placed in the guide rail 11. The guide rail 11 includes a horizontal rail 111 and a vertical rail 113. The horizontal rail 111 and the vertical rail 113 are connected. The vertical sliding block 42 corresponds to the vertical rail 113. The vertical sliding block 42 is installed with a cleaning component. Figure 3 As shown, a rack 112 is provided in the horizontal rail 111, and the rack 112 is installed at the bottom of the horizontal rail 111. A gear 1 413 is provided at the bottom of the horizontal sliding block 41, and the gear 1 413 is connected to the horizontal sliding block 41. The gear 1 413 is engaged with the rack 112. A motor 1 411 is provided on the side of the horizontal sliding block 41, and the motor 1 411 is installed on the horizontal sliding block 41. A gear 2 412 is provided on the motor 1 411, and the gear 2 412 is connected to the output end of the motor 1 411. Gear 2 412 is engaged with gear 1 413, and the vertical sliding block 42 corresponds to the vertical rail 113. The vertical rail 113 is provided with a sliding bar 13, and the sliding bar 13 is connected to the vertical rail 113. There are two sliding bars 13, and the two sliding bars 13 are installed on both sides of the vertical rail 113. The side of the sliding bar 13 is provided with a sliding groove 131. The cleaning component 43 includes a water tank 44, and the bottom of the water tank 44 is provided with an open groove 446. The top of the vertical sliding block 42 is provided with a motor 2 421, and the motor 2 4 21 is installed on the vertical sliding block 42, and a gear 3 422 is provided on the output end of the motor 2 421, and the gear 3 422 is connected to the motor 2 421. A rack 2 423 is provided in the opening groove 446, and the gear 3 422 is meshed with the rack 2 423. The water tank 44 is connected to the vertical sliding block 42, and sliding plates 447 are provided on both sides of the water tank 44. The sliding plates 447 are connected to the water tank 44, and a groove 441 is formed between the sliding plates 447 and the water tank 44. The groove 441 and the sliding plates 447 are connected to the water tank 44. Corresponding to the moving bar 13, a motor three 48 is provided on the side of the water tank 44, and the motor three 48 is installed on the water tank 44. Motor three 48 is installed on both sides of the water tank 44, and a gear four 481 is provided on the motor three 48. The gear four 481 is connected to the motor three 48. One side of the gear four 481 passes through the sliding plate 447 and is placed in the groove 441. A rack three 132 is provided on the sliding groove 131. The rack three 132 is connected to the sliding bar 13, and the gear four 481 is engaged with the rack three 132.
[0036] like Figure 6As shown, a water spray pipe 45 is provided on the water storage tank 44, a cavity 444 is provided inside the water storage tank 44, the water spray pipe 45 is connected to the water storage tank 44, a plurality of pressurized nozzles 46 are provided on the water spray pipe 45, the pressurized nozzles 46 are connected to the water spray pipe 45, a water pump 445 is provided on the water spray pipe 45, the water pump 445 is connected to the water storage tank 44, a rotating column 443 is provided on the water pump 445, the water spray pipe 45 is connected to the rotating column 443, the rotating column 443 is connected to the water storage tank 44 is rotated and connected, a gear five 491 is provided at the top of the rotating column 443, and the gear five 491 is connected to the rotating column 443. A motor four 49 is provided on the top surface of the water tank 44, and the motor four 49 is installed on the water tank 44. A gear six 492 is provided on the motor four 49, and the gear six 492 is connected to the output end of the motor four 49. The gear six 492 is meshed with the gear five 491. A scraper bar 451 is provided on the water spray pipe 45, and the scraper bar 451 is connected to the water spray pipe 45.
[0037] like Figure 13 、 Figure 14 As shown, the water tank 3 is provided with a water injector 31, which is connected to the inside of the water tank 3, and the water storage tank 44 is provided with a water injection hole 442, which matches the water injector 31, and the water injection hole 442 is connected to the cavity 444 of the water storage tank 44. The water injection hole 442 is provided with an elastic sealing sheet 448, and the elastic sealing sheet 448 is connected to the water injection hole 442. The rainwater collection mechanism 2 includes a water collecting tank 22 and a filter screen 28. The top of the water collecting tank 22 is provided with an opening 221, and the bottom of the water collecting tank 22 is provided with a water inlet 222. The connecting pipe 21 is connected to the water collecting tank 22 through the water inlet 222, and the filter screen 28 is connected to the water collecting tank 22, and the filter screen 28 is placed at the opening 221 of the water collecting tank 22.
[0038] like Figure 7 、 Figure 8 As shown, a collecting box 23 is provided on the water collecting box 22, and the cross-sectional shape of the collecting box 23 is trapezoidal. The end of the collecting box 23 with a smaller end face area is connected to the water collecting box 22, and a collecting chamber 26 is provided on the collecting box 23. The collecting chamber 26 is communicated with the opening 221 of the water collecting box 22, and a cover plate 24 is provided on the collecting box 23. The cover plate 24 is connected to the top of the collecting box 23, and the cover plate 24 corresponds to the collecting chamber 26. A pneumatic cylinder 27 is provided on the inner side wall of the collecting chamber 26, and the pneumatic cylinder 27 is installed on the inner side wall of the collecting box 23. The pneumatic cylinder 27 is connected to the cover plate 24, and a rain sensor 25 is provided on the cover plate 24.
[0039] like Figure 9 、 Figure 10 As shown, a placement groove 16 is provided on the back of the frame 1, and a glass 6 is provided on the frame 1. The glass 6 is placed in the placement groove 16. The placement groove 16 corresponds to the glass 6. A fixing frame 5 is provided on the glass 6. The shape of the fixing frame 5 matches the glass 6. The fixing frame 5 is connected to the frame 1, and a fixing hole 15 is provided on the frame 1.
[0040] like Figure 12 As shown, a hinge 14 is provided at the upper end of the fixed frame 5, one end of the hinge 14 is connected to the fixed frame 5, and the other end of the hinge 14 is connected to the frame 1. There are several hinges 14, which are evenly distributed on the fixed frame 5. A fixed block 53 is provided at the lower end of the fixed frame 5, the upper end of the fixed block 53 is connected to the fixed frame 5, and the fixed block 53 is provided with a threaded hole 54. The fixed frame 5 is provided with four stoppers 51, which correspond to the four top corners of the fixed frame 5, one end of the stopper 51 is connected to the side of the fixed frame 5, and the other end of the stopper 51 is connected to the other adjacent side of the fixed frame 5. The fixed frame 5 is provided with a limiting plate 52, which is connected to the side of the fixed frame 5, and two limiting plates 52 are provided, which are respectively connected to the left and right sides of the fixed frame 5. The frame 1 is provided with a limiting groove 18, which corresponds to the limiting groove 18.
[0041] like Figure 10 、 Figure 11 As shown, a drainage groove 17 is provided on the frame 1, and the drainage groove 17 is placed on the inner side of the bottom edge of the placement groove 16. The drainage groove 17 is connected to the placement groove 16, and the drainage groove 17 runs through the frame 1. A hair dryer 7 is provided on the frame 1, and a blow pipe 71 is provided on the hair dryer 7. One end of the blow pipe 71 is connected to the hair dryer 7, and the other end of the blow pipe 71 is connected to one end of the drainage groove 17.
[0042] When in use, the cleaning mechanism 4 is installed on the guide rail 11 of the frame 1, and the horizontal sliding block 41 of the cleaning mechanism 4 corresponds to the horizontal rail 111. The gear 1 413 at the bottom of the horizontal sliding block 41 is driven by the gear 2 412 on the motor 1 411 to engage with the rack 112 at the bottom of the horizontal rail 111. The horizontal sliding block 41 is located on both sides of the vertical sliding block 42, driving the vertical sliding block 42 to move together. The vertical sliding block 42 corresponds to the vertical rail 113. When the horizontal sliding block 41 drives the vertical sliding block 42 to the vertical rail 113, the water tank 44 on the vertical sliding block 42 can move to the sliding bar 13 under the drive of the motor 2 421 and the gear 3 422 on the vertical sliding block 42. The water tank 44 moves to the sliding bar 13 and cooperates with the sliding groove 131. On the sliding bar 13, the motor 3 48 is in motion, and the motor 3 48 drives the gear 481 to rotate, and the gear 481 is engaged with the rack 3 132 in the sliding groove 131, so that it can move on the vertical rail 113. The groove 441 on the water tank 44 matches the sliding bar 13, and the water tank 44 drives the vertical sliding block 42 to move in the vertical rail 113 until it moves to the position specified by the control panel 47. The cleaning mechanism 4 is provided with a water pump 445, which is connected to the water spray pipe 45. The water pump 445 draws water from the air inside the water tank 44. Water is pumped from the cavity 444 and sprayed out through the water spray pipe 45 to clean the glass 6. A pressurized nozzle 46 is installed on the water spray pipe 45 to increase the water flow pressure and make the glass 6 cleaner. A rotating column 443 is installed on the water tank 44. The water pump 445 and the water spray pipe 45 are both connected to the rotating column 443. Since the gear five 491 on the rotating column 443 is engaged with the gear six 492 on the motor four 49, the rotating column 445 can rotate under the drive of the motor four 49, so the water spray pipe 45 can rotate, which can increase the cleaning area.
[0043] A rainwater collection mechanism 2 is installed at the upper end of the frame 1 for collecting rainwater. The rainwater collection mechanism 2 includes a water collection tank 22 and a filter screen 28. Rainwater is filtered by the filter screen 28 and enters the water collection tank 22. A water inlet hole 222 is opened at the bottom of the water collection tank 22. The water inlet hole 222 is connected to the connecting pipe 21. The connected connecting pipe 21 is connected to the water tank 3 at the bottom. The water is stored in the water tank 3 for standby use. The rainwater inside the water tank 3 can be stored for a certain period of time after being filtered by the upper filter screen 28 to save water. A water injector 31 is provided on the water tank 3. When the cavity 444 inside the cleaning mechanism 4 needs water, the water injection hole 442 of the cleaning mechanism 4 is connected to the water injector 31. After the water injection is completed, the elastic sealing sheet is closed to prevent leakage. The water stored in the water tank 3 is injected into the water storage tank 44 to meet the needs of the cleaning mechanism 4 during cleaning.
[0044] A collection box 16 is mounted on the upper rainwater collection mechanism 2 to increase the rainwater collection area and ensure sufficient rainwater for cleaning. Collection box 16 is trapezoidal in shape, with a smaller bottom area. It is connected to a water collection box 23. Collection box 23 has a collection chamber 26, which communicates with an opening 221 of the water collection box 23. Collected rainwater is filtered by a filter 28 before entering the water collection box 23. A cover 24 is mounted on the collection box 23, connecting it to the collection box 23 and ensuring the cleanliness of the interior. A pneumatic cylinder 27 is mounted on the inner wall of the collection chamber 26. The pneumatic cylinder 27 is fixed to the inner wall of the collection chamber 26, and the actuating end of the pneumatic cylinder 27 is connected to the cover 24. A rain sensor 25 is mounted on the cover 24. When rainwater is detected, the rain sensor 25 generates an electrical signal, which is processed by the controller and then commands the pneumatic cylinder 27 to open the cover 24 when rainwater is present and close it when rainwater is absent to prevent the entry of impurities.
[0045] A monitoring camera 12 is installed on the frame 1. When the monitoring camera 12 detects that there are stains on the glass 6, it will send a signal to the control panel 47 on the cleaning mechanism 4. After processing, the control panel 47 of the cleaning mechanism 4 sends instructions to motor 1 411, motor 2 421 and motor 3 48 to control the movement of the horizontal sliding block 41, the vertical sliding block 42 and the water tank 44 to reach the designated position to clean the glass 6.
[0046] When installing the glass curtain wall, the frame 1 is fixed to the wall through the fixing holes 15, and the glass 6 is placed in the placement groove 16 on the back of the frame 1. The placement groove 16 corresponds to the glass 6, which can ensure that the glass 6 fits the frame 1. The installed glass 6 is fixed by the fixing frame 5. The upper end of the fixing frame 5 is connected to the frame 1 by a hinge 14, so that the fixing frame 5 can be opened to facilitate the replacement of the glass 6. The lower end of the fixing frame 5 is fixed by a fixing block 53. The fixing block 53 is provided with a threaded hole 54, and the fixing frame 5 is fixed with screws. The two sides of the fixing frame 5 are connected to the limiting blocks 52, and the limiting blocks 52 correspond to the limiting grooves 18 on the frame 1. When fixing the fixing frame 5, it can be limited by the limiting blocks 52. The limiting blocks 52 can support the fixing frame 5 and the glass 6 while limiting, thereby increasing the stability of the connection.
[0047] A drainage groove 17 is provided on the inner side of the placement groove 16. The drainage groove 17 is located below the connection between the glass 6 and the frame 1. When liquid leaks from the connection, it will enter the drainage groove 17, penetrate the frame 1, and can be discharged along the drainage groove 17. A hair dryer 7 is installed at one outlet of the drainage groove 17. The hair dryer 7 is connected to a blow pipe 71, and the blow pipe 71 is connected to one end outlet of the drainage groove 17. The hair dryer 7 can dry the liquid in the drainage groove 17 and ensure dryness.
Claims
1. An intelligent sensing glass curtain wall system, characterized by: The invention comprises a frame (1), a rainwater collecting mechanism (2), a water tank (3), and a cleaning mechanism (4); the upper end of the frame (1) is connected to the rainwater collecting mechanism (2); a connecting pipe (21) is provided on the rainwater collecting mechanism (2); one end of the connecting pipe (21) is connected to the rainwater collecting mechanism (2); the other end of the connecting pipe (21) is connected to the water tank (3); the lower end of the frame (1) is connected to the water tank (3); a guide rail (11) is provided on the frame (1); the cleaning mechanism (4) is placed in the guide rail (11); the cleaning mechanism (4) is slidably connected to the guide rail (11); a monitoring camera (12) is provided on the frame (1); the monitoring camera (12) is installed on the frame (1); the monitoring camera (12) The camera (12) is electrically connected to the cleaning mechanism (4). The cleaning mechanism (4) includes a horizontal sliding block (41), a vertical sliding block (42) and a control panel (47). Two horizontal sliding blocks (41) are provided. The two horizontal sliding blocks (41) are placed on both sides of the vertical sliding block (42) and are in contact with the vertical sliding block (42). The vertical sliding block (42) and the horizontal sliding block (41) are both placed in the guide rail (11). The guide rail (11) includes a horizontal rail (111) and a vertical rail (113). The horizontal rail (111) and the vertical rail (113) are connected. The vertical sliding block (42) corresponds to the vertical rail (113). The vertical sliding block (42) is installed with a cleaning component (43). The vertical rail (113) is provided with a sliding bar (13), the sliding bar (13) is connected to the vertical rail (113), two sliding bars (13) are provided, the two sliding bars (13) are installed on both sides of the vertical rail (113), the side of the sliding bar (13) is provided with a sliding groove (131), the cleaning component (43) includes a water storage tank (44), the bottom of the water storage tank (44) is provided with an open groove (446), the top of the vertical sliding block (42) is provided with a motor 2 (421), the motor 2 (421) is installed on the vertical sliding block (42), the output end of the motor 2 (421) is provided with a gear 3 (422), the gear 3 (422) is connected to the motor 2 (421), the open groove (446) is provided. 6) is provided with a rack 2 (423), the gear 3 (422) is engaged with the rack 2 (423), the water tank (44) is connected to the vertical sliding block (42), both sides of the water tank (44) are provided with sliding plates (447), the sliding plates (447) are connected to the water tank (44), a groove (441) is formed between the sliding plates (447) and the water tank (44), the groove (441) corresponds to the sliding bar (13), the side of the water tank (44) is provided with a motor 3 (48), the motor 3 (48) is installed on the water tank (44), the motor 3 (48) is installed on both sides of the water tank (44), and the motor 3 (48) is provided with a gear 4 (481),The gear four (481) is connected to the motor three (48), one side of the gear four (481) passes through the sliding plate (447) and is placed in the groove (441), the sliding groove (131) is provided with a rack three (132), the rack three (132) is connected to the sliding bar (13), and the gear four (481) is meshed with the rack three (132).
2. The intelligent sensing glass curtain wall system according to claim 1, characterized in that: The transverse rail (111) is provided with a rack 1 (112), and the rack 1 (112) is installed at the bottom of the transverse rail (111). The bottom of the transverse sliding block (41) is provided with a gear 1 (413), and the gear 1 (413) is connected to the transverse sliding block (41), and the gear 1 (413) is engaged with the rack 1 (112). The side of the transverse sliding block (41) is provided with a motor 1 (411), and the motor 1 (411) is installed on the transverse sliding block (41). The motor 1 (411) is provided with a gear 2 (412), and the gear 2 (412) is connected to the output end of the motor 1 (411), and the gear 2 (412) is engaged with the gear 1 (413).
3. The intelligent sensing glass curtain wall system according to claim 2, characterized in that: The water storage tank (44) is provided with a water spray pipe (45), the interior of the water storage tank (44) is provided with a cavity (444), the water spray pipe (45) is connected to the water storage tank (44), the water spray pipe (45) is provided with a plurality of pressurized nozzles (46), the pressurized nozzles (46) are connected to the water spray pipe (45), the water spray pipe (45) is provided with a water pump (445), the water pump (445) is connected to the water storage tank (44), the water pump (445) is provided with a rotating column (443), the water spray pipe (45) is connected to the rotating column (443), the rotating column (443) is connected to the water storage tank (44), and the rotating column (443) is connected to the water storage tank (44). The water storage tank (44) is rotatably connected, a gear five (491) is provided on the top of the rotating column (443), and the gear five (491) is connected to the rotating column (443). A motor four (49) is provided on the top surface of the water storage tank (44), and the motor four (49) is installed on the water storage tank (44). A gear six (492) is provided on the motor four (49), and the gear six (492) is connected to the output end of the motor four (49). The gear six (492) is meshed with the gear five (491). A scraper (451) is provided on the water spray pipe (45), and the scraper (451) is connected to the water spray pipe (45).
4. The intelligent sensing glass curtain wall system according to claim 3, characterized in that: The water tank (3) is provided with a water injector (31), the water injector (31) is communicated with the interior of the water tank (3), the water storage tank (44) is provided with a water injection hole (442), the water injection hole (442) matches the water injector (31), the water injection hole (442) is communicated with the cavity (444) of the water storage tank (44), the water injection hole (442) is provided with an elastic sealing sheet (448), the elastic sealing sheet (448) is connected to the water injection hole (44 2) connection, the rainwater collection mechanism (2) includes a water collecting tank (22) and a filter screen (28), the top of the water collecting tank (22) is provided with an opening (221), the bottom of the water collecting tank (22) is provided with a water inlet (222), the connecting pipe (21) is connected to the water collecting tank (22) through the water inlet (222), the filter screen (28) is connected to the water collecting tank (22), and the filter screen (28) is placed at the opening (221) of the water collecting tank (22).
5. The intelligent sensing glass curtain wall system according to claim 4 is characterized in that: The water collecting box (22) is provided with a collecting box (23), the cross-sectional shape of the collecting box (23) is trapezoidal, the end of the collecting box (23) with a smaller end surface area is connected to the water collecting box (22), the collecting box (23) is provided with a collecting chamber (26), the collecting chamber (26) is communicated with the opening (221) of the water collecting box (22), the collecting box (23) is provided with a cover plate (24), the cover plate (24) is connected to the top of the collecting box (23), the cover plate (24) corresponds to the collecting chamber (26), the inner side wall of the collecting chamber (26) is provided with a pneumatic cylinder (27), the pneumatic cylinder (27) is installed on the inner side wall of the collecting box (23), the pneumatic cylinder (27) is connected to the cover plate (24), and the cover plate (24) is provided with a rain sensor (25).
6. The intelligent sensing glass curtain wall system according to claim 1, characterized in that: A placement groove (16) is provided on the back of the frame (1), a glass (6) is provided on the frame (1), the glass (6) is placed in the placement groove (16), the placement groove (16) corresponds to the glass (6), a fixing frame (5) is provided on the glass (6), the shape of the fixing frame (5) matches the glass (6), the fixing frame (5) is connected to the frame (1), and a fixing hole (15) is provided on the frame (1).
7. The intelligent sensing glass curtain wall system according to claim 6, characterized in that: The upper end of the fixed frame (5) is provided with a hinge (14), one end of the hinge (14) is connected to the fixed frame (5), and the other end of the hinge (14) is connected to the frame (1). A plurality of hinges (14) are provided, and the hinges (14) are evenly distributed on the fixed frame (5). The lower end of the fixed frame (5) is provided with a fixing block (53), the upper end of the fixing block (53) is connected to the fixed frame (5), and the fixing block (53) is provided with a threaded hole (54).
8. The intelligent sensing glass curtain wall system according to claim 6, characterized in that: The fixed frame (5) is provided with a stopper (51), and there are four stoppers (51). The four stoppers (51) correspond to the four top corners of the fixed frame (5). One end of the stopper (51) is connected to the side of the fixed frame (5), and the other end of the stopper (51) is connected to another adjacent side of the fixed frame (5). The fixed frame (5) is provided with a limiting plate (52), and the limiting plate (52) is connected to the side of the fixed frame (5). There are two limiting plates (52), and the two limiting plates (52) are respectively connected to the left and right sides of the fixed frame (5). The frame (1) is provided with a limiting groove (18), and the limiting groove (18) corresponds to the limiting plate (52).
9. The intelligent sensing glass curtain wall system according to claim 6, characterized in that: The frame (1) is provided with a drainage groove (17), the drainage groove (17) is placed on the inner side of the bottom edge of the placement groove (16), the drainage groove (17) is communicated with the placement groove (16), and the drainage groove (17) passes through the frame (1). The frame (1) is provided with a hair dryer (7), and the hair dryer (7) is provided with a blow pipe (71), one end of the blow pipe (71) is connected to the hair dryer (7), and the other end of the blow pipe (71) is connected to one end of the drainage groove (17).
Citation Information
Patent Citations
Automatic cleaning glass curtain wall
CN211666034U
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CN112022019A
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CN215442573U