Automatic cleaning, sterilizing and transferring system for white spirit bottles

By designing an automated liquor bottle cleaning and sterilization transportation system, the problems of traditional manual cleaning and disinfection efficiency and high land cost are solved, and efficient automatic cleaning and sterilization of liquor bottles are achieved, which is suitable for the actual needs of small and medium-sized enterprises.

CN120115486AInactive Publication Date: 2025-06-10JIANGSU TIANYUAN GLASS PROD CO LTD
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Patent Information

Application Number
CN202510348428.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional white wine bottle cleaning and disinfection methods rely on manual operations, which are low in efficiency, high in work intensity and sanitary risks. The existing automation assembly line occupies a large area and has high cost, making it not suitable for small and medium-sized enterprises.

Method used

An automatic cleaning and sterilization transfer system for liquor bottles is designed, including a transport robot, a mesh belt conveyor unit, a cleaning unit and a drying unit. The liquor bottle is placed in the placement box through the robot, and the placement box is pressed into the cleaning room by using the mesh belt conveyor unit and a downward pressure assembly, and the floating plate assembly presses the disinfectant into the cleaning component to complete the cleaning.

Benefits of technology

It realizes automatic cleaning and sterilization of liquor bottles, improves efficiency, reduces the sanitary risks of manual operation, and occupies a small space, which is suitable for the needs of small and medium-sized enterprises.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cleaning and sterilizing systems, and discloses an automatic cleaning, sterilizing and transferring system for white spirit bottles, which comprises a carrying manipulator, a mesh belt conveying unit, a cleaning unit and a drying unit, a plurality of white spirit bottles distributed in an array are inversely placed in a placing box, the carrying manipulator carries the placing box onto the mesh belt conveying unit, and the mesh belt conveying unit conveys the white spirit bottles to the cleaning unit; the cleaning unit comprises a cleaning seat and a downward pressing assembly located above the cleaning seat, a cleaning chamber and a liquid storage chamber are arranged in the cleaning seat up and down, a cleaning assembly is installed in the cleaning chamber, a floating plate assembly connected with the cleaning assembly is arranged in the liquid storage chamber, and the downward pressing assembly presses the placing box on a lifting plate in the cleaning chamber; the floating plate assembly presses the disinfection liquid in the liquid storage chamber into the cleaning assembly so as to complete cleaning of the white wine bottles. According to the automatic cleaning, sterilizing and transferring system for the white spirit bottles, the mesh belt conveying unit reciprocates, cleaning, sterilizing and drying of the white spirit bottles located in the placing box are completed, and the occupied space is small.
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Description

Technical Field

[0001] The present invention relates to the technical field of cleaning and sterilization systems, and more specifically, to an automatic cleaning, sterilization and transfer system for white wine bottles. Background Art

[0002] In the production process of white wine bottles, the cleaning and disinfection in the later stage is a crucial link. Most traditional methods for cleaning and disinfecting white wine bottles rely on manual operations, which not only have a high working intensity and low efficiency, but also pose certain hygiene hazards. It is very difficult to ensure that the inside and outside of each wine bottle are thoroughly cleaned manually, and impurities and bacteria are likely to remain, affecting the quality and safety of the wine. At the same time, manual operations require a large amount of human resources, increasing production costs.

[0003] The prior art has designed an automated production line for cleaning and disinfecting white wine bottles, which includes a conveyor line for transporting white wine bottles, a cleaning device for cleaning white wine bottles, a disinfection device for disinfecting white wine bottles, and a drying device for drying white wine bottles. Although the entire production line can improve the efficiency of cleaning and disinfection, it requires a large amount of floor space correspondingly. Enterprises need to invest a large amount of funds in the early stage to purchase the corresponding workshops and equipment to meet such a large-scale automated production line, which is not suitable for the actual needs of small and medium-sized enterprises with small scales. Summary of the Invention

[0004] To achieve the above object, the present invention discloses an automatic cleaning, sterilization and transfer system for white wine bottles, including: a handling manipulator, a mesh belt conveying unit, a cleaning unit and a drying unit. A number of white wine bottles distributed in an array are placed upside down in a placement box. The handling manipulator moves the placement box onto the mesh belt conveying unit. The cleaning unit includes a cleaning seat and a pressing component located above the cleaning seat. A cleaning chamber and a liquid storage chamber are arranged one above the other in the cleaning seat. A cleaning component is installed in the cleaning chamber, and a floating plate component connected to the cleaning component is arranged in the liquid storage chamber. The pressing component presses the placement box onto a lifting plate in the cleaning chamber, and the floating plate component presses the disinfection liquid in the liquid storage chamber into the cleaning component to complete the cleaning of the white wine bottles.

[0005] Preferably, both the top and bottom ends of the placement box are open. A placement rack is installed near the bottom end inside the placement box, and a number of white wine bottles distributed in an array are placed upside down on the placement rack, so that the cleaning component can extend into the white wine bottle from the bottle mouth end to complete the cleaning inside the bottle.

[0006] Preferably, the mesh belt conveying unit includes a front driving roller assembly, a rear driving roller assembly, and an intermediate roller assembly. The conveying mesh belt travels horizontally on the front driving roller assembly and the intermediate roller assembly. Both ends of the conveying mesh belt are wound around the front driving roller assembly and the rear driving roller assembly. The intermediate roller assembly moves towards the front driving roller assembly, reducing the lateral distance between the front driving roller assembly and the intermediate roller assembly, so that the pressing component can press the placement box into the cleaning chamber, and the conveying mesh belt abuts against the lifting plate.

[0007] Preferably, a front walking part located between the front driving roller assembly and the intermediate roller assembly and a rear walking part located between the intermediate roller assembly and the rear driving roller assembly are provided on the conveying mesh belt. The rear walking part turns back to the lower part of the front walking part. The cleaning unit is located on the front walking part, and the drying unit abuts against the rear walking part. The air outlet end of the drying unit is arranged obliquely upward to blow the bottom end of the placement box parked above it.

[0008] Preferably, the pressing component includes:

[0009] A pressing cover, the inner wall of the pressing cover is arranged in a converging manner from bottom to top and abuts against the top end of the placement box;

[0010] A supporting cross plate, the supporting cross plate is located above the pressing cover, and the electric telescopic rod is connected between the pressing cover and the supporting cross plate;

[0011] An upper spray head, the upper spray head is installed at the top end of the pressing cover and is communicated with the liquid storage chamber through a hose.

[0012] Preferably, the cleaning component includes:

[0013] A spline shaft, a spline shaft array equal in number to the white wine bottles is distributed in the cleaning chamber. The spline shaft is of a hollow structure. The bottom end of the spline shaft extends into the liquid storage chamber and is connected to the floating plate assembly. An atomizing nozzle is installed at the top end of the spline shaft. An upper communication hole and a lower communication hole are opened on the spline shaft, so that the cleaning chamber and the liquid storage chamber are communicated;

[0014] A spline sleeve, the spline sleeve is sleeved on the spline shaft, brush bristles are installed on the spline sleeve, and a strip-shaped hole communicated with the upper communication hole is opened on the spline sleeve.

[0015] Preferably, the floating plate assembly includes:

[0016] A pressing floating plate, the pressing floating plate is located in the liquid storage chamber. A driving ring sleeved on the spline sleeve is installed on the pressing floating plate. A driving inclined groove is spirally opened on the spline sleeve. A driving slider is slidably connected in the driving inclined groove and is fixedly connected to the inner ring end of the driving ring;

[0017] A side connecting rod, the lifting plate is connected to the pressing floating plate through the side connecting rod. An exploration opening for facilitating the atomizing nozzle to protrude is provided on the lifting plate. A spring is sleeved on the side connecting rod and abuts between the lifting plate and the bottom of the cleaning chamber.

[0018] Preferably, a centrifugal chamber is provided below the liquid storage chamber. The inner wall of the centrifugal chamber is arranged in a converging manner from bottom to top. The bottom end of the spline shaft extends into the centrifugal chamber and is connected to the centrifugal turntable. A plurality of telescopic centrifugal rods are circumferentially installed on the centrifugal turntable, and centrifugal balls that abut against the inner wall of the centrifugal chamber are installed on the centrifugal rods. A second spring is sleeved on the top end of the spline shaft, and the second spring abuts between the atomizing nozzle and the spline sleeve.

[0019] Preferably, the bottom end of the side link is connected to the pressing floating plate through a bolt rod. When the side link moves downward, the bolt rod passes through the pressing floating plate, and the bottom end of the side link abuts against the pressing floating plate. When the side link moves upward, the fixing nut screwed on the bolt rod pulls up the pressing floating plate.

[0020] Preferably, a transparent bypass tank communicating with the liquid storage chamber is installed at the side end of the cleaning seat, and a pressure gauge and a sampling valve are installed on the transparent bypass tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0022] Figure 1 is a schematic structural diagram of the present invention;

[0023] Figure 2 is a schematic structural diagram of the cleaning unit of the present invention Figure 1 ;

[0024] Figure 3 is Figure 2 an enlarged view of reference numeral A in

[0025] Figure 4 is Figure 2 an enlarged view of reference numeral B in

[0026] Figure 5 is a schematic structural diagram of the cleaning unit of the present invention Figure 2 (when the placement box is pressed down by the lower pressing cover onto the lifting plate);

[0027] Figure 6 is a schematic structural diagram of the cleaning unit of the present invention Figure 3 (when the lifting plate presses down the pressing floating plate);

[0028] Figure 7 is Figure 6 an enlarged view of reference numeral C in

[0029] Figure 8For Figure 6 Enlarged view of reference numeral D in the figure.

[0030] In the figure: 10. Mesh belt conveying unit; 11. Cleaning unit; 12. Drying unit; 13. Placing box; 14. Pressing component; 15. Cleaning chamber; 16. Liquid storage chamber; 17. Cleaning component; 18. Floating plate component; 19. Lifting plate; 20. Placing rack; 21. Front driving roller component; 22. Rear driving roller component; 23. Intermediate roller component; 24. Conveying mesh belt; 25. Front walking part; 26. Rear walking part; 27. Pressing cover; 28. Supporting cross plate; 29. Electric telescopic rod; 30. Upper spray head; 31. Spline shaft; 32. Atomizing spray head; 33. Spline sleeve; 34. Brush bristles; 35. Upper communication hole; 36. Lower communication hole; 37. Strip-shaped hole; 38. Pressing floating plate; 39. Driving ring; 40. Hose; 41. Probing outlet; 42. Side connecting rod; 43. Spring 1; 44. Centrifugal chamber; 45. Centrifugal turntable; 46. Centrifugal rod; 47. Centrifugal ball; 48. Spring 2; 49. Transparent bypass tank; 50. Bolt rod. Specific implementation mode

[0031] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0032] Embodiment 1:

[0033] Please refer to Figure 1 , an automatic cleaning, sterilization and transportation system for white wine bottles provided in this embodiment includes: a handling manipulator, a mesh belt conveying unit 10, a cleaning unit 11 and a drying unit 12. A number of white wine bottles distributed in an array are placed upside down in the placing box 13. The handling manipulator moves the placing box 13 onto the mesh belt conveying unit 10. The cleaning unit 11 includes a cleaning base and a pressing component 14 located above the cleaning base. A cleaning chamber 15 and a liquid storage chamber 16 are arranged one above the other in the cleaning base. A cleaning component 17 is installed in the cleaning chamber 15, and a floating plate component 18 connected to the cleaning component 17 is arranged in the liquid storage chamber 16. The pressing component 14 presses the placing box 13 onto the lifting plate 19 in the cleaning chamber 15, and the floating plate component 18 presses the disinfection liquid in the liquid storage chamber 16 into the cleaning component 17 to complete the cleaning of the white wine bottles.

[0034] The working principle and beneficial effects of the above technical solutions are:

[0035] The present invention discloses an automatic cleaning, sterilization and transportation system for liquor bottles. Workers place the liquor bottles in the placement box 13 with the bottle mouths facing downwards and neatly stacked. After that, the handling manipulator moves the placement box 13 onto the mesh belt conveying unit 10. The mesh belt conveying unit 10 drives the placement box 13 to move under the pressing component 14. The pressing component 14 presses the placement box 13 into the cleaning chamber 15. The placement box 13 is located on the lifting plate 19. Then, the pressing component 14 presses the placement box 13, thereby driving the lifting plate 19 to press down the floating plate assembly 18 in the liquid storage chamber 16. After the floating plate assembly 18 is pressed down, the disinfection liquid stored in the liquid storage chamber 16 is pressed into the cleaning component 17 to complete the cleaning of the liquor bottles. After cleaning, the mesh belt conveying unit 10 drives the placement box 13 to continue moving to the drying unit 12 to complete the drying operation of the liquor bottles in the placement box 13. After drying, the mesh belt conveying unit 10 retreats, the handling manipulator removes the placement box 13 and then moves in the next placement box 13. The automatic cleaning, sterilization and transportation system for liquor bottles provided by the present invention has the mesh belt conveying unit 10 reciprocating to complete the cleaning, sterilization and drying of the liquor bottles in the placement box 13. It occupies a small space, and the cleaning and sterilization process is simple, but it meets the basic cleaning and sterilization requirements.

[0036] In this embodiment, both the top and bottom ends of the placement box 13 are open. A placement rack 20 is installed near the bottom end inside the placement box 13. Several liquor bottles distributed in an array are placed upside down on the placement rack 20, so that the cleaning component 17 can extend into the liquor bottles from the bottle mouth end to complete the cleaning inside the bottles.

[0037] The working principle and beneficial effects of the above technical solution are as follows:

[0038] The placement rack 20 is used to place the liquor bottles upside down in the placement box 13. The bottom end of the placement box 13 is open, so that the cleaning component 17 can complete the cleaning of the liquor bottles inside it.

[0039] In this embodiment, the mesh belt conveying unit 10 includes: a front driving roller assembly 21, a rear driving roller assembly 22 and an intermediate roller assembly 23. The conveying mesh belt 24 travels horizontally on the front driving roller assembly 21 and the intermediate roller assembly 23. Both ends of the conveying mesh belt 24 are wound around the front driving roller assembly 21 and the rear driving roller assembly 22. The intermediate roller assembly 23 moves towards the direction close to the front driving roller assembly 21, and the horizontal distance between the front driving roller assembly 21 and the intermediate roller assembly 23 decreases, so that the pressing component 14 can press the placement box 13 into the cleaning chamber 15, and the conveying mesh belt 24 abuts against the lifting plate 19.

[0040] The working principle and beneficial effects of the above technical solution are as follows:

[0041] The handling manipulator moves the placement box 13 onto the conveying mesh belt 24. The front driving roller assembly 21 and the rear driving roller assembly 22 cooperate to complete the movement of the placement box 13 located on the conveying mesh belt 24. When the pressing component 14 presses the placement box 13 into the cleaning chamber 15, the middle roller assembly 23 moves towards the direction close to the front driving roller assembly 21, and the tension of the conveying mesh belt 24 decreases, so as to facilitate the conveying mesh belt 24 to be pressed into the cleaning chamber 15 together with the placement box 13. The holes on the conveying mesh belt 24 facilitate the cleaning component 17 to extend into the white wine bottle from the bottom end of the placement box 13. After the cleaning and sterilization are completed, the pressing component 14 lifts, the middle roller assembly 23 moves away from the front driving roller assembly 21, the tension of the conveying mesh belt 24 increases. After the placement box 13 leaves the cleaning chamber 15, the front driving roller assembly 21 and the rear driving roller assembly 22 continue to work, and the conveying mesh belt 24 drives the placement box 13 to continue moving to the drying unit 12 to complete the drying operation of the white wine bottles in the placement box 13. After the drying is completed, the placement box 13 is removed. The front driving roller assembly 21 and the rear driving roller assembly 22 work in reverse, the conveying mesh belt 24 retracts, the handling manipulator removes the placement box 13 and then moves in the next placement box 13.

[0042] In this embodiment, the conveying mesh belt 24 is provided with a front walking part 25 located between the front driving roller assembly 21 and the middle roller assembly 23 and a rear walking part 26 located between the middle roller assembly 23 and the rear driving roller assembly 22. The rear walking part 26 turns back to the lower part of the front walking part 25. The cleaning unit 11 is located on the front walking part 25, and the drying unit 12 is attached to the rear walking part 26. The air outlet end of the drying unit 12 is arranged obliquely upward to complete the purging of the bottom end of the placement box 13 parked above it.

[0043] The working principle and beneficial effects of the above technical solution are as follows:

[0044] The conveying mesh belt 24 includes a front walking part 25 and a rear walking part 26. The rear walking part 26 turns back to the lower part of the front walking part 25 to reduce the floor space. The air outlet end of the drying unit 12 is arranged obliquely upward, so that the hot air is blown into the placement box 13 from the bottom end of the placement box 13 to complete the drying operation of the white wine bottles.

[0045] Embodiment 2:

[0046] Please refer to Figure 2 , on the basis of the above Embodiment 1, the pressing component 14 includes:

[0047] A pressing cover 27, the inner wall of the pressing cover 27 is arranged in a converging manner from bottom to top and abuts against the top end of the placement box 13;

[0048] A supporting cross plate 28, the supporting cross plate 28 is located above the pressing cover 27, and the electric telescopic rod 29 is connected between the pressing cover 27 and the supporting cross plate 28;

[0049] The upper spray head 30 is installed at the top of the lower pressing cover 27 and is communicated with the liquid storage chamber 16 through a hose 51.

[0050] The working principle and beneficial effects of the above technical solution are as follows:

[0051] The conveying mesh belt 24 drives the placement box 13 to move under the lower pressing cover 27. The electric telescopic rod 29 works, and then drives the lower pressing cover 27 to descend below the supporting cross plate 28. After that, the inner wall of the lower pressing cover 27 abuts against the top of the placement box 13. The lower pressing cover 27 continues to descend and presses the top of the placement box 13. Since the inner wall of the lower pressing cover 27 is arranged in a converging manner from bottom to top, the centering adjustment of the position of the placement box 13 is realized to achieve perfect docking with the cleaning component 17. As the middle roller assembly 23 moves towards the front driving roller assembly 21, the tension of the conveying mesh belt 24 decreases, so that the conveying mesh belt 24 can cooperate with the placement box 13 to be pressed into the cleaning chamber 15. After the placement box 13 stops on the lifting plate 19, as the lower pressing cover 27 continues to press down, the lifting plate 19 sinks, and the placement box 13 completely sinks into the cleaning chamber 15. The lifting plate 19 presses the floating plate assembly 18 in the liquid storage chamber 16. After the floating plate assembly 18 is pressed down, the disinfectant liquid stored in the liquid storage chamber 16 is pressed into the cleaning component 17 to complete the cleaning of the white wine bottles. At the same time, the disinfectant liquid in the liquid storage chamber 16 is pressed into the upper spray head 30 through the hose 51 and sprayed out from the lower pressing cover 27, so as to complete the cleaning and disinfection of the white wine bottles from the top of the placement box 13.

[0052] Embodiment 3:

[0053] Please refer to Figures 2 to 8 , on the basis of the above Embodiment 1, the cleaning component 17 includes:

[0054] The spline shafts 31 are arranged in an array in the cleaning chamber 15 in an equal number as the white wine bottles. The spline shafts 31 are of a hollow structure. The bottom ends of the spline shafts 31 extend into the liquid storage chamber 16 and are connected to the floating plate assembly 18. The top ends of the spline shafts 31 are provided with atomizing spray heads 32. Upper communication holes 35 and lower communication holes 36 are opened on the spline shafts 31, so that the cleaning chamber 15 and the liquid storage chamber 16 are communicated;

[0055] The spline sleeves 33 are sleeved on the spline shafts 31. Brush bristles 34 are installed on the spline sleeves 33. The spline sleeves 33 are provided with strip-shaped holes 37 communicated with the upper communication holes 35.

[0056] The working principle and beneficial effects of the above technical solution are as follows:

[0057] When the pressing cover 27 presses down, the lifting plate 19 sinks, and the placing box 13 completely sinks into the cleaning chamber 15. The atomizing nozzle 32 and the brush bristles 34 gradually extend into the white wine bottle. The floating plate assembly 18 presses the disinfectant stored in the liquid storage chamber 16 into the upper spray head 30 through the hose 40, and presses it into the spline shaft 31 through the lower communication hole 36. The disinfectant in the spline shaft 31 sprays out from the upper communication hole 35, the atomizing nozzle 32 respectively. The disinfectant sprayed out from the upper communication hole 35 completes the cleaning and disinfection of the white wine bottle from the bottom end of the placing box 13, the disinfectant sprayed out from the atomizing nozzle 32 disinfects the inside of the white wine bottle, and the brush bristles 34 complete the brushing of the inside of the white wine bottle.

[0058] In this embodiment, the floating plate assembly 18 includes:

[0059] The pressing floating plate 38 is located in the liquid storage chamber 16. A driving ring 39 sleeved on the spline sleeve 33 is installed on the pressing floating plate 38. The driving inclined groove is spirally formed on the spline sleeve 33. The driving slider is slidably connected in the driving inclined groove and is fixedly connected to the inner ring end of the driving ring 39;

[0060] The side connecting rod 42, the lifting plate 19 is connected to the pressing floating plate 38 through the side connecting rod 42. The lifting plate 19 is provided with an outlet 41 for facilitating the protrusion of the atomizing nozzle 32. The first spring 43 is sleeved on the side connecting rod 42 and abuts between the lifting plate 19 and the inner bottom of the cleaning chamber 15.

[0061] The working principle and beneficial effects of the above technical solution are as follows:

[0062] When the pressing cover 27 presses down, the lifting plate 19 sinks, and presses the pressing floating plate 38 located in the liquid storage chamber 16 through the side connecting rod 42. The first spring 43 contracts. After the pressing floating plate 38 descends, the disinfectant in the liquid storage chamber 16 is pressed into the upper spray head 30 through the hose 40, and is pressed into the spline shaft 31 through the lower communication hole 36. The disinfectant sprayed out from the upper spray head 30 completes the cleaning and disinfection of the white wine bottle from the top end of the placing box 13. The disinfectant sprayed out from the upper communication hole 35 completes the cleaning and disinfection of the white wine bottle from the bottom end of the placing box 13, and the disinfectant sprayed out from the atomizing nozzle 32 disinfects the inside of the white wine bottle. Under the cooperation of the driving ring 39 on the pressing floating plate 38 and the driving inclined groove on the spline sleeve 33, the spline sleeve 33 and the spline shaft 31 located in the spline sleeve 33 are driven to rotate, and the brush bristles 34 complete the brushing of the inside of the white wine bottle. After the cleaning and disinfection of the white wine bottle are completed, the pressing cover 27 presses down and then lifts up. Under the reset extension of the first spring 43, the lifting plate 19 and the pressing floating plate 38 lift up, and the disinfectant in the cleaning chamber 15 flows back to the liquid storage chamber 16 through the upper communication hole 35 and the lower communication hole 36. The setting of the pressing floating plate 38 eliminates the need for an additional pumping system, and the flow of the disinfectant can be realized by pressing down the pressing cover 27, further saving costs and reducing energy consumption.

[0063] In this embodiment, a centrifugal chamber 44 is provided below the liquid storage chamber 16, and the inner wall of the centrifugal chamber 44 is closed from bottom to top. The bottom end of the spline shaft 31 extends into the centrifugal chamber 44 and is connected to the centrifugal turntable 45. A plurality of retractable centrifugal rods 46 are circumferentially installed on the centrifugal turntable 45, and a centrifugal ball 47 is installed on the centrifugal rod 46, which is against the inner wall of the centrifugal chamber 44. A spring 2 48 is provided on the top end of the spline shaft 31, and the spring 2 48 is arranged between the atomizing nozzle 32 and the spline sleeve 33.

[0064] The working principle and beneficial effects of the above technical solution are:

[0065] The lower pressure cover 27 is pressed down, the lifting plate 19 sinks, and the side connecting rod 42 presses the pressing floating plate 38 located in the liquid storage chamber 16. After the spline shaft 31 rotates, the centrifugal turntable 45 connected to the spline shaft 31 rotates in the centrifugal chamber 44. Under the cooperation of the centrifugal ball 47 and the inner wall of the centrifugal chamber 44, the centrifugal turntable 45 drives the spline shaft 31 to descend. Figure 7 As shown, the atomizing nozzle 32 installed on the top of the spline shaft 31 descends, and the spring 48 contracts, thereby allowing the bristles 34 to complete the brushing of the bottom of the white wine bottle.

[0066] In this embodiment, the bottom end of the side link 42 is connected to the pressing float 38 through the bolt rod 50. When the side link 42 moves downward, the bolt rod 50 passes through the pressing float 38, and the bottom end of the side link 42 is against the pressing float 38. When the side link 42 moves upward, the fixing nut screwed on the bolt rod 50 pulls up the pressing float 38.

[0067] The working principle and beneficial effects of the above technical solution are:

[0068] The downward pressure cover 27 is pressed down, and the lifting plate 19 sinks. Because the bottom end of the side connecting rod 42 is connected to the pressing float plate 38 through the bolt rod 50, when the side connecting rod 42 drives the bolt rod 50 to descend, the bolt rod 50 first penetrates the pressing float plate 38, and the pressing float plate 38 does not move, while the atomizing nozzle 32 protrudes from the exploration port 41 and gradually extends into the bottle mouth of the white wine bottle. When the side connecting rod 42 resists the pressing float plate 38 and presses the pressing float plate 38, the atomizing nozzle 32 sprays disinfectant and the bristles 34 rotate.

[0069] Embodiment 4:

[0070] Please refer to Figure 2 On the basis of the above-mentioned embodiment 1, a transparent bypass tank 49 communicating with the liquid storage chamber 16 is installed at the side end of the cleaning seat, and a pressure gauge and a sampling valve are installed on the transparent bypass tank 49.

[0071] The working principle and beneficial effects of the above technical solution are:

[0072] The disinfectant liquid in the transparent bypass pipe 49 is at the same level as the disinfectant liquid level in the liquid storage chamber 16. The pressure gauge and sampling valve on the transparent bypass tank 49 facilitate observing and sampling the usage of the disinfectant liquid in the liquid storage chamber 16.

[0073] Obviously, the above embodiments are merely examples given for clear illustration and not limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or alterations can be made based on the above description. It is not necessary and impossible to enumerate all the implementation manners here. And the obvious changes or alterations derived therefrom still fall within the protection scope of the present invention.

Claims

1. An automatic cleaning, sterilizing and transporting system for liquor bottles, characterized in that: include: A handling robot, a mesh belt conveying unit (10), a cleaning unit (11) and a drying unit (12); a plurality of array-distributed liquor bottles are placed upside down in a placement box (13); the handling robot moves the placement box (13) onto the mesh belt conveying unit (10); the cleaning unit (11) comprises a cleaning seat and a pressing assembly (14) located above the cleaning seat; a cleaning chamber (15) and a liquid storage chamber (16) are arranged one above and one below the other in the cleaning seat; a cleaning assembly (17) is installed in the cleaning chamber (15); a floating plate assembly (18) connected to the cleaning assembly (17) is arranged in the liquid storage chamber (16); the pressing assembly (14) presses the placement box (13) onto a lifting plate (19) in the cleaning chamber (15); the floating plate assembly (18) presses the disinfection fluid in the liquid storage chamber (16) into the cleaning assembly (17) to complete the cleaning of the liquor bottles.

2. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 1 is characterized in that: The top and bottom of the placement box (13) are both open, and a placement rack (20) is installed near the bottom of the placement box (13). A plurality of liquor bottles arranged in an array are placed upside down on the placement rack (20) so that the cleaning component (17) can be extended from the bottle mouth into the liquor bottle to complete the cleaning of the bottle.

3. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 1 is characterized in that: The mesh belt conveying unit (10) comprises: a front active roller assembly (21), a rear active roller assembly (22) and an intermediate roller assembly (23); a conveying mesh belt (24) runs horizontally on the front active roller assembly (21) and the intermediate roller assembly (23); two ends of the conveying mesh belt (24) are wound around the front active roller assembly (21) and the rear active roller assembly (22); the intermediate roller assembly (23) moves in a direction close to the front active roller assembly (21); the lateral distance between the front active roller assembly (21) and the intermediate roller assembly (23) is reduced, so that the pressing assembly (14) can press the placing box (13) into the cleaning chamber (15); and the conveying mesh belt (24) is close to the lifting plate (19).

4. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 3 is characterized in that: The conveyor mesh belt (24) is provided with a front running portion (25) located between a front active roller assembly (21) and an intermediate roller assembly (23) and a rear running portion (26) located between the intermediate roller assembly (23) and the rear active roller assembly (22); the rear running portion (26) is folded back to the bottom of the front running portion (25); the cleaning unit (11) is located on the front running portion (25); the drying unit (12) is close to the rear running portion (26); the air outlet end of the drying unit (12) is arranged obliquely upward to complete the purging of the bottom end of the placement box (13) parked above it.

5. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 1 is characterized in that: The down-pressing assembly (14) comprises: a down-pressing cover (27) and a supporting transverse plate (28); the inner wall of the down-pressing cover (27) is arranged in a closed-end manner from bottom to top and abuts against the top of the placing box (13); the supporting transverse plate (28) is located above the down-pressing cover (27); an electric telescopic rod (29) is connected between the down-pressing cover (27) and the supporting transverse plate (28); an upper spray head (30) is installed at the top of the down-pressing cover (27) and is connected to the liquid storage chamber (16) through a hose (40).

6. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 1 is characterized in that: The cleaning assembly (17) comprises: a spline shaft (31) and a spline sleeve (33); the spline shafts (31) are arranged in an array equal in number to the number of the white wine bottles and are distributed in the cleaning chamber (15); the spline shafts (31) are arranged as a hollow structure; the bottom end of the spline shaft (31) extends into the liquid storage chamber (16) and is connected to the floating plate assembly (18); an atomizing nozzle (32) is installed at the top end of the spline shaft (31); an upper connecting hole (35) and a lower connecting hole (36) are provided on the spline shaft (31), thereby making the cleaning chamber (15) and the liquid storage chamber (16) connected; the spline sleeve (33) is sleeved on the spline shaft (31); bristles (34) are installed on the spline sleeve (33); and a strip hole (37) connected to the upper connecting hole (35) is provided on the spline sleeve (33).

7. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 6 is characterized in that: The floating plate assembly (18) comprises: a pressing floating plate (38) located in the liquid storage chamber (16); a driving ring (39) sleeved on a spline sleeve (33) is installed on the pressing floating plate (38); a driving inclined groove is spirally opened on the spline sleeve (33); a driving slider is slidably connected in the driving inclined groove and fixedly connected to the inner ring end of the driving ring (39); a lifting plate (19) is connected to the pressing floating plate (38) through a side connecting rod (42); a probing port (41) is provided on the lifting plate (19) for facilitating the probing of the atomizing nozzle (32); a spring (43) is sleeved on the side connecting rod (42) and is disposed between the lifting plate (19) and the bottom of the cleaning chamber (15).

8. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 6 is characterized in that: A centrifugal chamber (44) is arranged below the liquid storage chamber (16), the inner wall of the centrifugal chamber (44) is arranged in a closed-end type from bottom to top, the bottom end of the spline shaft (31) extends into the centrifugal chamber (44) and is connected to a centrifugal turntable (45), a plurality of retractable centrifugal rods (46) are circumferentially arranged on the centrifugal turntable (45), the centrifugal rods (46) are provided with centrifugal balls (47) abutting against the inner wall of the centrifugal chamber (44), the top end of the spline shaft (31) is sleeved with a second spring (48), and the second spring (48) is abutted between the atomizing nozzle (32) and the spline sleeve (33).

9. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 7, characterized in that: The bottom end of the side connecting rod (42) is connected to the pressing floating plate (38) through a bolt rod (50). When the side connecting rod (42) moves downward, the bolt rod (50) penetrates the pressing floating plate (38), and the bottom end of the side connecting rod (42) abuts against the pressing floating plate (38). When the side connecting rod (42) moves upward, the fixing nut screwed on the bolt rod (50) pulls up the pressing floating plate (38).

10. The automatic cleaning, sterilizing and transporting system for liquor bottles according to claim 1, characterized in that: A transparent bypass tank (49) communicating with the liquid storage chamber (16) is installed at the side end of the cleaning seat, and a pressure gauge and a sampling valve are installed on the transparent bypass tank (49).

Citation Information

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