A glass cleaning device
By designing a glass cleaning equipment including shock absorber, reducer and automatic transmission belt, the problems of low glass cleaning efficiency and unclear cleaning in the prior art are solved, and an efficient and automated glass cleaning process is achieved.
Patent Information
- Application Number
- CN202311409107.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-27
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2043-10-27
AI Technical Summary
Existing glass cleaning equipment is inefficient and requires replacement of brackets. If the water in the sink is not replaced in time during ultrasonic cleaning, it will cause dirt to adhere to when the glass is taken out and it will not be cleaned.
Design a glass cleaning equipment, including cleaning the outer box, water tank, glass feeding component, cleaning the inner box, glass output component, transmission belt, input pad, etc., to ensure the slow flow of water through the shock absorber made of rubber material, avoid energy loss, and realize automatic delivery, washing and retracting of glass through the transmission belt and swing plate components.
It enables glass cleaning without replacing a special bracket, improves cleaning efficiency, ensures glass cleaning, and reduces energy loss and cost.
Smart Images

Figure CN117339954B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of glass cleaning, and particularly relates to a glass cleaning device. Background Art
[0002] Glass includes flexible glass and hard glass. Both types of glass need to be cleaned after production and before use. During the cleaning process, the glass needs to be placed on a dedicated cleaning bracket for cleaning. The cleaning methods include ultrasonic cleaning and high-pressure water spraying. In either case, the bracket needs to be replaced, resulting in low efficiency.
[0003] In addition, for the ultrasonic cleaning method, if the water in the water tank is not replaced in time, there is a possibility that dirt will adhere when the glass is taken out of the water tank, resulting in incomplete cleaning.
[0004] The ultrasonic water tank is generally stagnant water. If it is changed to flowing water, the vibration energy will be weakened due to the pulsation of the inlet and outlet water, resulting in poor cleaning effect.
[0005] The present invention designs a glass cleaning device to solve the above problems. Summary of the Invention
[0006] In order to achieve the above object, the present invention adopts the following technical solutions:
[0007] A glass cleaning device includes a cleaning outer box, a water tank, a glass feeding component, a cleaning inner box, a glass output component, a conveyor belt, and an input cushion block. The cleaning outer box is installed on the ground. Two circular water holes for inlet and outlet of cleaning water are opened at both ends of the cleaning outer box. Two semi-circular baffles are symmetrically and fixedly installed at the two circular water holes. A shock-absorbing plate is fixedly installed on the inner side of each of the two semi-circular baffles. One of the two circular water holes is externally connected to an input water pipe, and the other circular water hole is externally connected to an output water pipe. The water tank is fixedly installed on the ground. A water pump is fixedly installed in the water tank. The output end of the water pump is connected to the input water pipe. A speed reducer is fixedly installed at the connection between the input water pipe and the corresponding circular water hole. The output water pipe is connected to the water tank. A speed reducer is fixedly installed at the connection between the output water pipe and the corresponding circular water hole.
[0008] The cleaning inner box is installed in the cleaning outer box. A plurality of transducers are installed on the ground. The output end of the transducer passes upward through the bottom surface of the cleaning outer box and is fixedly connected to the cleaning inner box. A second support is fixedly installed on the bottom surface. Two guide rollers are rotatably installed on the second support. A second rotating shaft is rotatably installed on the second support. A support roller is fixedly installed on the second rotating shaft. One end of the conveyor belt is slidably installed in the cleaning inner box. The other end of the conveyor belt extends obliquely upward out of the cleaning inner box and then horizontally winds around the support roller after being guided by the two guide rollers. A second motor is fixedly installed on the second support. A transmission connection is provided between the output shaft of the second motor and the second rotating shaft.
[0009] On one side of the water tank where the input water pipe is installed, a glass output assembly is installed, and on the other side of the water tank, a glass feeding assembly and an input cushion block are installed.
[0010] The output assembly includes a first swing plate and a first motor. The first swing plate is swingably installed on the ground; the first motor is fixedly installed on the second support, and the first motor can control the swing of the first swing plate.
[0011] The upper side of the input cushion block is an arc surface, which is divided into two parts: a support and guide area and an elastic area. The support and guide area is close to the cleaning outer box; the glass feeding assembly includes a second swing plate, an arc-shaped slide rail, a spring, and a first pin shaft. Two arc-shaped slide rails are symmetrically and fixedly installed on the input cushion block. The lower ends of the second swing plate are symmetrically and fixedly installed with two first pin shafts. The second swing plate is installed on the two arc-shaped slide rails through the cooperation of the two first pin shafts and the two arc-shaped slide rails. Two springs are installed between the two first pin shafts and the two arc-shaped slide rails; the second swing plate and the input cushion block cooperate.
[0012] The moving speed of the conveyor belt is greater than the speed at which the glass slides from the second swing plate onto the conveyor belt.
[0013] As a preferred solution, the section of the semi-circular baffle is closely attached to the inner end surface of the cleaning outer box, and the semi-circular baffle has a top sealing plate.
[0014] As a preferred solution, both sides of the cleaning outer box have side baffles.
[0015] As a preferred solution, a filter screen is detachably installed on the output water pipe, and an arc-shaped sealing plate is installed by bolts at the area where the filter screen is installed on the output water pipe, and the arc-shaped sealing plate seals the area where the filter screen is installed on the output water pipe.
[0016] As a preferred solution, both ends of the cleaning inner box are arc-shaped wall surfaces, and the arc-shaped wall surfaces at both ends of the cleaning inner box correspond to and cooperate face to face with the arc-shaped wall surfaces of the two semi-circular baffles.
[0017] A rubber ring is installed between the transducer and the cleaning outer box.
[0018] As a preferred solution, the conveyor belt is composed of multiple conveyor belt components, and adjacent conveyor belt components are hinged and connected through a third pin shaft; two guiding chutes are symmetrically opened on the two inner side walls of the cleaning inner box; the ends of the guiding chutes obliquely penetrate upward through the cleaning inner box; two second pin shafts are fixedly installed at both ends of each conveyor belt component; one end of the conveyor belt is installed in the cleaning inner box through the cooperation of the second pin shaft and the guiding chute.
[0019] As a preferred solution, the second motor is fixedly installed on the second support. Chain wheels are respectively and fixedly installed on the output shaft of the second motor and one end of the second rotating shaft, and the two chain wheels are connected by a chain.
[0020] As a preferred solution, the first rotating shaft is rotatably installed on the ground through two first supports and the conveyor belt on the water input side of the cleaning outer box; the first swing plate is fixedly installed on the first rotating shaft; the first motor is fixedly installed on the second support, a transmission gear is fixedly installed on the output shaft of the first motor, an arc-shaped rack is fixedly installed on the first swing plate, and the arc-shaped rack meshes with the transmission gear.
[0021] As a preferred solution, a dial rod is fixedly installed at the upper end of the second swing plate.
[0022] As a preferred solution, the first swing plate has an anti-slip surface.
[0023] Compared with the existing technology, the advantages of the present invention are as follows:
[0024] 1. Traditional glass cleaning requires two different brackets, one for storing glass usually and the other for specifically cleaning glass; while the cleaning device designed in the present invention does not need to place the glass on a special cleaning bracket during the cleaning process, but directly sends the glass placed on the glass placement bracket to the cleaning place through the glass placement bracket, and after the cleaning is completed, the glass is still placed on the glass placement bracket and directly transported away through the glass placement bracket, without the need to reciprocally transport the glass between the two brackets, saving effort and reducing costs at the same time.
[0025] 2. For a traditional cleaning shell without a semi-circular baffle and a shock-absorbing plate, if the water in the cleaning shell is flowing live water, then the flowing water may also cause vibration in the water pipe, weakening the ultrasonic energy and causing ultrasonic energy loss. In the present invention, both the shock-absorbing plate and the shock absorber are made of rubber material and have a decelerating effect, ensuring that the water at the water inlet and outlet of the cleaning outer box can flow slowly; at the same time, the shock-absorbing plate can play a role in preventing energy loss in the cleaning inner box. Even if the water impacts on the shock-absorbing plate, due to the shock-absorbing plate being made of rubber material and having a buffering effect; only a small part of the energy loss occurs in the cleaning inner box and can be ignored. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall component appearance.
[0027] Figure 2 It is a schematic diagram of the distribution of the glass output components.
[0028] Figure 3 It is a schematic diagram of the distribution of the glass feeding components.
[0029] Figure 4It is a schematic diagram of the glass placement bracket structure.
[0030] Figure 5 It is a schematic diagram of the glass delivery component structure.
[0031] Figure 6 It is a plan view schematic diagram of the glass delivery component.
[0032] Figure 7 It is a schematic diagram of the glass feeding component structure.
[0033] Figure 8 It is a schematic diagram of the spring installation.
[0034] Figure 9 It is a schematic diagram of the conveyor belt installation.
[0035] Figure 10 It is a schematic diagram of the vibration damping plate installation.
[0036] Figure 11 It is a schematic diagram of the distribution of the semi-circular baffles.
[0037] Figure 12 It is a schematic diagram of the transducer installation.
[0038] Figure 13 It is a schematic diagram of the cleaning inner box structure.
[0039] Figure 14 It is a schematic diagram of the cleaning inner box installation.
[0040] Figure 15 It is a schematic diagram of the filter net installation.
[0041] Figure 16 It is a schematic diagram of the water pump installation.
[0042] Figure 17 It is a schematic diagram of the conveyor belt structure.
[0043] Names of the reference numerals in the figure: 1. Cleaning outer box; 2. Glass placement bracket; 3. Side baffle; 4. Water tank; 5. Glass; 6. Glass feeding assembly; 7. Cleaning inner box; 8. Glass output assembly; 9. Conveyor belt; 10. Input cushion block; 11. Support tabletop; 12. First swing plate; 13. First rotating shaft; 14. First support; 15. Arc-shaped rack; 16. Transmission gear; 17. First motor; 18. Second swing plate; 19. Poking rod; 20. Arc-shaped slide rail; 21. Support roller; 22. Elastic area; 23. Support and guiding area; 24. Spring; 25. First pin shaft; 26. Second motor; 27. Second rotating shaft; 28. Chain; 29. Second support; 30. Chain wheel; 31. Input water pipe; 32. Output water pipe; 33. Semi-circular baffle; 34. Vibration damping plate; 35. Reducer; 36. Transducer; 37. Rubber ring; 38. Guide chute; 39. Arc-shaped wall surface; 40. Filter screen; 41. Arc-shaped sealing plate; 42. Water pump; 43. Conveyor belt assembly; 44. Second pin shaft; 45. Third pin shaft; 46. Guide roller. Detailed implementation manners
[0044] The following combines the drawings and embodiments to further describe in detail the specific implementation manners of the present invention. The following embodiments or drawings are used to illustrate the present invention, but are not used to limit the scope of the present invention.
[0045] A glass 5 cleaning device, as Figure 1 , 2 , shown in Figure 3, it includes a cleaning outer box 1, side baffles 3, a water tank 4, a glass feeding assembly 6, a cleaning inner box 7, a glass output assembly 8, a conveyor belt 9, an input cushion block 10, and a support tabletop 11. Among them, the cleaning outer box 1 is installed on the ground, as Figure 10 , 11 , shown in Figure 14, two circular water holes for the inlet and outlet of cleaning water are opened at both ends of the cleaning outer box 1, and two semi-circular baffles 33 are symmetrically and fixedly installed at the two circular water holes. The cut surface of the semi-circular baffle 33 is closely attached to the inner end surface of the cleaning outer box 1, and the semi-circular baffle 33 has a top sealing plate; a vibration damping plate is fixedly installed on the inner side of each of the two semi-circular baffles 33; as Figure 9 shown, one of the two circular water holes is externally connected to an input water pipe 31, and the other circular water hole is externally connected to an output water pipe 32; side baffles 3 are provided on both sides of the cleaning outer box 1, and the water tank 4 is fixedly installed on the ground, as Figure 16 shown, a water pump 42 is fixedly installed in the water tank 4, and the output end of the water pump 42 is connected to the input water pipe 31, as Figure 10 , 11 , shown in Figure 14, a reducer 35 is fixedly installed at the connection between the input water pipe 31 and the corresponding circular water hole; the output water pipe 32 is connected to the water tank 4, and a reducer 35 is fixedly installed at the connection between the output water pipe 32 and the corresponding circular water hole, as Figure 15As shown, a filter net 40 is detachably installed on the output water pipe 32. An arc-shaped sealing plate 41 is installed by bolts at the area of the output water pipe 32 where the filter net 40 is installed, and the arc-shaped sealing plate 41 seals the area of the output water pipe 32 where the filter net 40 is installed.
[0046] For the traditional cleaning of glass 5, two different brackets are required. One is the glass placement bracket for storing glass 5 usually, and the other is the bracket specifically for cleaning glass 5. However, the cleaning device designed in the present invention does not need to place the glass 5 on the bracket for cleaning during the cleaning process. Instead, the glass 5 placed on the glass placement bracket 2 for storing glass 5 can be directly sent to the cleaning area. And after the cleaning is completed, the glass 5 is still placed on the glass placement bracket 2 and can be directly transported away through the glass placement bracket 2, without the need to reciprocally transport the glass 5 between the two brackets, saving effort and reducing costs at the same time.
[0047] The glass placement bracket 2 of the present invention is exactly the same as the traditional bracket for storing glass 5, and the glass placement bracket 2 is an existing technology.
[0048] The function of the side baffle 3 is to prevent the glass 5 from slipping sideways during transportation.
[0049] For the traditional cleaning shell without the semi-circular baffle 33 and the shock-absorbing plate, if the water in the cleaning shell is flowing live water, then the flowing water may also cause vibration in the water pipe, offsetting the ultrasonic energy and causing ultrasonic energy loss. In the present invention, both the shock-absorbing plate and the shock reducer 35 are made of rubber material and have the function of decelerating, ensuring that the water at the water inlet and outlet of the cleaning outer box 1 can flow slowly. At the same time, the shock-absorbing plate can play a role in preventing energy loss in the cleaning inner box 7. Even if the water impacts on the shock-absorbing plate, due to the shock-absorbing plate being made of rubber material, it has a buffering effect. Only a small part of the energy loss occurs in the cleaning inner box 7 and can be ignored.
[0050] The filter net 40 designed in the present invention is detachably installed on the output water pipe 32, and such a design can conveniently remove the filter net 40 for cleaning.
[0051] In the present invention, the water levels in the cleaning outer box 1 and the cleaning inner box 7 only need to be higher than the glass 5 and do not need to be too high.
[0052] As Figure 11 、 16 shown, a cleaning inner box 7 is installed in the cleaning outer box 1. Both ends of the cleaning inner box 7 are arc-shaped wall surfaces 39. As Figure 14 、 16 shown, the arc-shaped wall surfaces 39 at both ends of the cleaning inner box 7 and the arc-shaped wall surfaces 39 of the two semi-circular baffles 33 correspond one by one and are in face-to-face cooperation. As Figure 1 、 12As shown in the figure, a plurality of transducers 36 are installed on the ground. The output ends of the transducers 36 pass upward through the bottom surface of the outer cleaning box 1 and are fixedly connected to the inner cleaning box 7. A rubber ring 37 is installed between the transducer 36 and the outer cleaning box 1; as Figure 13 shown, two guiding chutes 38 are symmetrically formed on the two inner side walls of the inner cleaning box 7; the ends of the guiding chutes 38 obliquely penetrate upward through the inner cleaning box 7; as Figure 9 shown, the second support 29 is fixedly installed on the ground. Two guiding rollers 46 are rotatably installed on the second support 29. The second rotating shaft 27 is rotatably installed on the second support 29. A supporting roller 21 is fixedly installed on the second rotating shaft 27; as Figure 17 shown, the conveyor belt 9 is composed of a plurality of conveyor belt 9 components. Adjacent conveyor belt 9 components are hingedly connected through a third pin shaft 45. Two second pin shafts 44 are fixedly installed at both ends of each conveyor belt 9 component. One end of the conveyor belt 9 is installed in the inner cleaning box 7 through the cooperation of the second pin shaft 44 and the guiding chute 38. The other end of the conveyor belt 9 extends obliquely upward out of the inner cleaning box 7 and then horizontally winds around the supporting roller 21 after being guided by the two guiding rollers 46. The second motor 26 is fixedly installed on the second support 29. A chain wheel 30 is fixedly installed on the output shaft of the second motor 26 and one end of the second rotating shaft 27 respectively. The two chain wheels 30 are connected by a chain 28.
[0053] When the second motor 26 works, it can drive the second rotating shaft 27 to rotate through the chain wheels 30 and the chain 28. The rotation of the second rotating shaft 27 drives the supporting roller 21 to rotate, and the supporting roller 21 drives the conveyor belt 9 to move. The conveyor belt 9 of the present invention is composed of a plurality of conveyor belt 9 components hinged to each other one by one. The cooperation of the guiding chute 38 and the second pin shaft 44 plays a role in guiding and supporting the movement of the conveyor belt 9. The role of the guiding roller 46 is to support and guide the conveyor belt 9. The conveyor belt 9 is designed to be in sections to facilitate the conveyor belt 9 to pass through the corner smoothly.
[0054] When the transducer 36 works, it can control the vibration of the inner cleaning box 7 to generate ultrasonic waves to clean the glass 5 passing through the inner cleaning box 7; the role of the rubber ring 37 is to play a sealing and buffering role between the transducer 36 and the outer cleaning box 1 to prevent the transducer 36 from transferring energy to the outer cleaning box 1.
[0055] The arcuate walls 39 at both ends of the cleaning inner box 7 of the present invention and the arcuate walls 39 of the two semicircular baffles 33 correspond to each other one by one and cooperate face to face; the reason for such a design is to ensure that the cleaning inner box 7 has a sufficiently large volume, so the cleaning inner box 7 should be as close to the semicircular baffles 33 as possible, but if the semicircular baffles 33 and the cleaning inner box 7 are parallel planes, then the energy will squeeze the water in the middle when passing through the gap between the semicircular baffles 33 and the cleaning inner box 7, but because the semicircular baffles 33 and the cleaning inner box 7 are parallel planes and the gap is relatively small, the water in the middle is not easy to discharge, which will cause energy loss; such a design of the present invention forms a trumpet-shaped area at the cooperation between the two, which can ensure that the water in the middle is discharged smoothly, and can greatly reduce the energy loss here; it will not cause the energy of the cleaning inner box 7 to be transferred to the cleaning outer box 1, causing energy loss.
[0056] like Figure 1 , 2 As shown in FIG. 3 , a glass output assembly 8 is installed on one side of the water tank 4 where the input water pipe 31 is installed, and a glass feed assembly 6 and an input pad 10 are installed on the other side of the water tank 4 .
[0057] like Figure 5 , 6 As shown, the output assembly includes a first swing plate 12, a first rotating shaft 13, a first support 14, an arc-shaped rack 15, a transmission gear 16, and a first motor 17, wherein the first rotating shaft 13 is rotatably mounted on the ground and close to the conveyor belt 9 on the water input side of the cleaning outer box 1 through two first supports 14; the first swing plate 12 is fixedly mounted on the first rotating shaft 13; the first motor 17 is fixedly mounted on the second support 29, the transmission gear 16 is fixedly mounted on the output shaft of the first motor 17, and the arc-shaped rack 15 is fixedly mounted on the first swing plate 12, and the arc-shaped rack 15 and the transmission gear 16 are meshed.
[0058] When the glass 5 is transported to the output component side by the conveyor belt 9, when the center of gravity of the glass 5 crosses the conveyor belt 9, the glass 5 will automatically swing downward under its own gravity and fall on the first swing plate 12; the first swing plate 12 of the present invention has an anti-slip surface. After the glass 5 falls on the first swing plate 12, the glass 5 will slowly slide downward under its own gravity, and finally its lower end falls on the glass placement bracket 2 parked in advance. Then, the first motor 17 is controlled to work. The first motor 17 drives the transmission gear 16 to rotate. The rotation of the transmission gear 16 drives the arc-shaped rack 15 to slide. The arc-shaped rack 15 drives the first swing plate 12 to swing toward the glass placement bracket 2 side, so that it is obliquely placed on the glass placement bracket 2; when the glass placement bracket 2 starts to receive the glass 5 conveyed from the conveyor belt 9, the pusher end of the glass placement bracket 2 closely abuts the first swing plate 12. As the number of received glass 5 increases, the glass placement bracket 2 will gradually withdraw outward, so as to ensure that the glass 5 received and placed on the glass placement bracket 2 can be evenly placed on the glass placement bracket 2.
[0059] As Figure 7 shown, the upper side of the input cushion block 10 is an arc surface, and the arc surface is divided into two parts: a support and guide area 23 and an elastic area 22. The support and guide area 23 is close to the cleaning outer box 1; as Figure 7 shown, the glass feeding assembly 6 includes a second swing plate 18, a lever 19, an arc-shaped slide rail 20, a spring 24, and a first pin shaft 25. Among them, two arc-shaped slide rails 20 are symmetrically and fixedly installed on the input cushion block 10. The lower ends of the second swing plate 18 are symmetrically and fixedly installed with two first pin shafts 25. The second swing plate 18 is installed on the two arc-shaped slide rails 20 through the cooperation of the two first pin shafts 25 and the two arc-shaped slide rails 20. As Figure 8 shown, two springs 24 are installed between the two first pin shafts 25 and the two arc-shaped slide rails 20; a lever 19 is fixedly installed at the upper end of the second swing plate 18; the second swing plate 18 cooperates with the input cushion block 10.
[0060] One side of the input cushion block 10 has a support table surface 11, and its function is to facilitate the transfer of the glass 5 from the glass placement bracket 2 to the conveyor belt 9.
[0061] When the glass 5 is obliquely placed on the glass placement bracket 2, rubber cushion blocks are laid at the four corners between two adjacent glasses 5.
[0062] In the present invention, the lower side of the input cushion block 10 has an empty area, and the empty area allows the front end of the glass placement bracket 2 to be smoothly inserted into the empty area during the cleaning of the glass 5, ensuring that the outermost glass 5 can be close to the input cushion block 10 so that it can be smoothly placed on the input cushion block 10.
[0063] During the process of transferring the glass 5 on the glass placement bracket 2 to the conveyor belt 9, first, the second swing plate 18 is brought close to the outermost glass 5. Then, the glass 5 is moved so that it swings towards the input cushion block 10. When the glass 5 swings from the backward-tilted state to the forward-tilted state, the glass 5 is released. At this time, under the action of the gravity of the glass 5, it will swing towards the side of the input cushion block 10 together with the second swing plate 18. During the swinging process, when the second swing plate 18 contacts the elastic area 22 of the input cushion block 10, the elastic area 22 of the input cushion block 10 will buffer the swinging second swing plate 18 and the glass 5, so that the second swing plate 18 and the glass 5 can stably land on the input cushion block 10. After that, the second swing plate 18 is slightly pressed by the lever 19 so that the side close to the cleaning outer box 1 swings downward. During this process, the first pin shaft 25 will slide in the two arc-shaped slide rails 20, and the spring 24 is compressed; the side of the second swing plate 18 away from the cleaning outer box 1 swings upward, and the second swing plate 18 is in an overall forward-tilted state. At this time, the glass 5 on it will slide along the second swing plate 18 onto the conveyor belt 9 and be carried away by the conveyor belt 9.
[0064] In actual operation, the present invention only requires two workers. The brackets for feeding and finally retracting the device are both traditional glass placement brackets 2.
[0065] The present invention sets the moving speed of the conveyor belt 9 to be greater than the speed at which the glass 5 slides onto the conveyor belt 9 from the second swing plate 18. This can prevent the glass 5 from being impacted during the process of sliding onto the conveyor belt 9 and prevent the glass 5 from breaking.
[0066] The above is only a preferred embodiment of the present invention, and does not impose any form of limitation on the present invention. Any simple modification or equivalent change made to the above embodiments based on the technical essence of the present invention shall fall within the protection scope of the present invention.
[0067] Embodiment: When using the device of the present invention, during the process of transferring the glass 5 on the glass placement bracket 2 to the conveyor belt 9, first, the second swing plate 18 is brought close to the outermost glass 5, and then the glass 5 is moved so that the glass 5 swings towards the input cushion block 10. When the glass 5 swings from the backward inclined state to the forward inclined state, the glass 5 is released. At this time, under the action of the gravity of the glass 5, it will swing towards the side of the input cushion block 10 together with the second swing plate 18. During the swinging process, when the second swing plate 18 contacts the elastic region 22 of the input cushion block 10, the elastic region 22 of the input cushion block 10 will buffer the swinging second swing plate 18 and the glass 5, so that the second swing plate 18 and the glass 5 smoothly land on the input cushion block 10. After that, the second swing plate 18 is slightly pressed by the lever 19 to make the side close to the cleaning outer box 1 swing downward. During this process, the first pin shaft 25 will slide in the two arc-shaped slide rails 20, and the spring 24 is compressed; the side of the second swing plate 18 away from the cleaning outer box 1 swings upward, and the second swing plate 18 is in an overall forward inclined state. At this time, the glass 5 on it will slide down along the second swing plate 18 under the action of its own gravity and be transported away by the conveyor belt 9. During the sliding process, under the buffering of water, the glass safely reaches the conveyor belt and will not be damaged.
[0068] When the glass 5 is transported by the conveyor belt 9 to the output assembly side, when the center of gravity of the glass 5 crosses the conveyor belt 9, the glass 5 will automatically swing downward under the action of its own gravity and land on the first swing plate 12; the first swing plate 12 of the present invention has an anti-slip surface. After the glass 5 lands on the first swing plate 12, the glass 5 will slowly slide downward under the action of its own gravity, and finally its lower end lands on the pre-parked glass placement bracket 2. Then, the first motor 17 is controlled to work. The first motor 17 drives the transmission gear 16 to rotate. The rotation of the transmission gear 16 drives the arc-shaped rack 15 to slide. The arc-shaped rack 15 drives the first swing plate 12 to swing towards the glass placement bracket 2 side, so that it is obliquely placed on the glass placement bracket 2; when the glass placement bracket 2 just starts to receive the glass 5 conveyed from the conveyor belt 9, the pusher end of the glass placement bracket 2 closely abuts against the first swing plate 12. As the number of received glass 5 increases, the glass placement bracket 2 will gradually withdraw outward, so as to ensure that the glass 5 received and placed on the glass placement bracket 2 can be evenly placed on the glass placement bracket 2.
Claims
1. A glass cleaning device, characterized in that: It includes a cleaning outer box, a water tank, a glass feeding component, a cleaning inner box, a glass output component, a conveyor belt, and an input cushion block. The cleaning outer box is installed on the ground. Two circular water holes for the inlet and outlet of cleaning water are opened at both ends of the cleaning outer box. Two semi-circular baffles are symmetrically and fixedly installed at the two circular water holes. A shock-absorbing plate is fixedly installed on the inner side of each of the two semi-circular baffles. One of the two circular water holes is externally connected to an input water pipe, and the other circular water hole is externally connected to an output water pipe. The water tank is fixedly installed on the ground. A water pump is fixedly installed in the water tank. The output end of the water pump is connected to the input water pipe. A speed reducer is fixedly installed at the connection between the input water pipe and the corresponding circular water hole. The output water pipe is connected to the water tank. A speed reducer is fixedly installed at the connection between the output water pipe and the corresponding circular water hole. The cleaning inner box is installed in the cleaning outer box. A plurality of transducers are installed on the ground. The output end of the transducer passes upward through the bottom surface of the cleaning outer box and is fixedly connected to the cleaning inner box. A second support is fixedly installed on the bottom surface. Two guide rollers are rotatably installed on the second support. A second rotating shaft is rotatably installed on the second support. A support roller is fixedly installed on the second rotating shaft. One end of the conveyor belt is slidably installed in the cleaning inner box. The other end of the conveyor belt extends obliquely upward out of the cleaning inner box and then horizontally winds around the support roller after being guided by the two guide rollers. A second motor is fixedly installed on the second support. A transmission connection is provided between the output shaft of the second motor and the second rotating shaft. The glass output component is installed on one side of the water tank where the input water pipe is installed. The glass feeding component and the input cushion block are installed on the other side of the water tank. The output component includes a first swing plate and a first motor. The first swing plate is swingably installed on the ground. The first motor is fixedly installed on the second support. A transmission gear is fixedly installed on the output shaft of the first motor. An arc-shaped rack is fixedly installed on the first swing plate. The arc-shaped rack meshes with the transmission gear. The arc-shaped rack drives the first swing plate to swing towards the glass placement bracket side, so that the glass is obliquely placed on the glass placement bracket. The upper side of the input cushion block is an arc surface, which is divided into two parts: a support and guiding area and an elastic area. The support and guiding area is close to the cleaning outer box. The glass feeding component includes a second swing plate, an arc-shaped slide rail, a spring, and a first pin shaft. Two arc-shaped slide rails are symmetrically and fixedly installed on the input cushion block. Two first pin shafts are symmetrically and fixedly installed at the lower end of the second swing plate. The second swing plate is installed on the two arc-shaped slide rails through the cooperation of the two first pin shafts and the two arc-shaped slide rails. Two springs are installed between the two first pin shafts and the two arc-shaped slide rails. The second swing plate cooperates with the input cushion block to move the glass so that the glass swings towards the input cushion block side. When the glass swings from a backward inclined state to a forward inclined state, the glass is released. At this time, under the action of the gravity of the glass, it will swing towards the input cushion block side together with the second swing plate. After the elastic area of the input cushion block contacts the second swing plate during the swinging process, the elastic area of the input cushion block will buffer the second swing plate and the glass swinging downward. The moving speed of the conveyor belt is greater than the speed at which the glass slides from the second swing plate onto the conveyor belt.
2. The glass cleaning device according to claim 1, characterized in that: The section plane of the semi-circular baffle is closely attached to the inner end face of the cleaning outer box, and a top sealing plate is provided on the semi-circular baffle.
3. The glass cleaning device according to claim 1, characterized in that: Side baffles are provided on both sides of the cleaning outer box.
4. The glass cleaning device according to claim 1, characterized in that: A filter screen is detachably installed on the output water pipe, and an arc-shaped sealing plate is installed by bolts at the area where the filter screen is installed on the output water pipe, and the arc-shaped sealing plate seals the area where the filter screen is installed on the output water pipe.
5. The glass cleaning device according to claim 1, characterized in that: Both ends of the cleaning inner box are arc-shaped wall surfaces, and the arc-shaped wall surfaces at both ends of the cleaning inner box correspond to and cooperate face to face with the arc-shaped wall surfaces of the two semi-circular baffles; A rubber ring is installed between the transducer and the cleaning outer box.
6. The glass cleaning device according to claim 1, characterized in that: The conveyor belt is composed of a plurality of conveyor belt components, and adjacent conveyor belt components are hingedly connected by a third pin shaft; two guiding chutes are symmetrically opened on the two inner side walls of the cleaning inner box; the ends of the guiding chutes obliquely penetrate out of the cleaning inner box upward; two second pin shafts are fixedly installed at both ends of each conveyor belt component; one end of the conveyor belt is installed in the cleaning inner box through the cooperation of the second pin shaft and the guiding chute.
7. The glass cleaning device according to claim 1, characterized in that: The second motor is fixedly installed on the second support, and a chain wheel is fixedly installed at one end of the output shaft of the second motor and the second rotating shaft respectively, and the two chain wheels are connected by a chain.
8. The glass cleaning device according to claim 1, characterized in that: The first rotating shaft is rotatably installed on the ground through two first supports and on the conveyor belt near the water input side of the cleaning outer box; the first swing plate is fixedly installed on the first rotating shaft; the first motor is fixedly installed on the second support.
9. The glass cleaning device according to claim 1, characterized in that: A lever is fixedly installed at the upper end of the second swing plate.
10. The glass cleaning device according to claim 1, characterized in that: The first swing plate has an anti-slip surface.
Citation Information
Patent Citations
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