An integrated device for cleaning, disinfecting and drying vaccine bottles

By designing integrated equipment for cleaning, disinfecting and drying vaccine bottles, and adopting multiple structures to achieve simultaneous cleaning and all-round drying of the inner and outer walls of the vaccine bottles, the problems of low cleaning efficiency and low drying efficiency in the existing technology are solved, and the overall efficiency of the production process is improved.

CN119566021BActive Publication Date: 2025-09-26云南沃森生物技术股份有限公司 +1
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Patent Information

Application Number
CN202411909224.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-09-26
Estimated Expiration
2044-12-24

AI Technical Summary

Technical Problem

The existing technology cannot efficiently clean both the inner and outer walls of vaccine bottles at the same time during the cleaning process, and the drying efficiency is low, which affects the efficiency of the production process.

Method used

An integrated equipment for cleaning, disinfecting and drying vaccine bottles was designed, which includes a cleaning cylinder, a disinfection cylinder and a drying cylinder. It adopts multiple structures such as fixed rods, rotating tables, drying rings, ultraviolet disinfection lamps, etc. to achieve simultaneous cleaning and all-round drying of the inner and outer walls of the vaccine bottles.

Benefits of technology

It achieves simultaneous cleaning of the inner and outer walls of the vaccine bottle, improves cleaning efficiency and effectiveness, and improves drying efficiency through the all-round drying structure, thereby improving the overall efficiency of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of vaccine production equipment, and in particular to an integrated equipment for cleaning, disinfecting and drying vaccine bottles. In view of the problem that the existing vaccine bottle cleaning equipment cannot clean the inner wall and the outer wall at the same time, and the drying efficiency is low, the following scheme is proposed, including a base, the top of the base is rotatably connected to a rotating column through a boss, the outer wall of the rotating column is slidably matched with a first lifting ring, the outer wall of the first lifting ring is fixed with multiple connecting arms, the bottoms of the multiple connecting arms are fixed with top plates, and the bottoms of the multiple top plates are rotatably connected with inner plates. In the present invention, the interior and outer wall of the vaccine bottle can be flushed at the same time, and during the flushing process, the stubborn impurities on the outer wall of the vaccine bottle can be cleaned by the first cleaning cotton and the second cleaning cotton, which not only improves the cleaning efficiency, but also has excellent cleaning effect. When cleaning the vaccine bottle, the drying efficiency of the vaccine bottle can be improved by the cooperation of the drying ring and the rubber wheel.
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Description

Technical Field

[0001] The present invention relates to the technical field of vaccine production equipment, and in particular to an integrated device for cleaning, disinfecting and drying vaccine bottles. Background Art

[0002] Vaccines are biological products made from various pathogenic microorganisms for use in vaccinations. Vaccines made from bacteria or spirochetes are also called bacteriophages. During vaccine production, to ensure efficacy and safety, the vaccines must be filled into clean vials. Therefore, the cleanliness of the vials is extremely high.

[0003] To ensure the cleanliness of vaccine bottles, they need to be cleaned. However, the existing technology still has the following shortcomings in the process of cleaning vaccine bottles:

[0004] 1. Currently, the cleaning process of vaccine bottles usually involves cleaning the outer wall first and then the inside. This method is not only inefficient but also cannot achieve simultaneous cleaning of the inner and outer walls.

[0005] 2. Vaccine bottles need to be dried after cleaning and disinfection. However, in the prior art, vaccine bottles are usually placed in a drying device for drying. This method has the problem of low drying efficiency, thus affecting the efficiency of the entire production process.

[0006] In response to the above problems, the present invention document proposes an integrated device for cleaning, disinfecting and drying vaccine bottles. Summary of the Invention

[0007] The purpose of the present invention is to solve the shortcomings of the existing vaccine bottle that the inner and outer walls cannot be cleaned at the same time and the vaccine bottle drying efficiency is low, and to propose an integrated vaccine bottle cleaning, disinfection and drying equipment.

[0008] In order to achieve the above object, the present invention adopts the following technical solutions:

[0009] A vaccine bottle cleaning, disinfection and drying integrated equipment, comprising a base, the top of the base is rotatably connected to a rotating column through a boss, the outer wall of the rotating column is slidably fitted with a first lifting ring, the outer wall of the first lifting ring is fixed with a plurality of connecting arms, the bottoms of the plurality of connecting arms are fixed with a top plate, the bottoms of the plurality of top plates are rotatably connected to an inner plate, the bottoms of the plurality of inner plates are rotatably connected to a plurality of rotating rods, the bottom ends of the rotating rods are fixed with a vacuum suction cup for adsorbing vaccine bottles, a cylinder is fixed to the top of the rotating column, the output shaft of the cylinder is fixed with a U-shaped plate, the two bottom ends of the U-shaped plate are fixedly connected to the top of the first lifting ring for controlling the lifting of the top plate, and a pressure rod is fixed to one side of the bottom of the plurality of top plates;

[0010] It also includes a cleaning cylinder, a disinfection cylinder and a drying cylinder, which are all fixed to the top of the base and arranged in a ring shape, and are used for cleaning, disinfecting and drying the vaccine bottles respectively;

[0011] It also includes a fixing rod fixed to the inner wall of the bottom of the cleaning cylinder, the outer wall of the fixing rod is rotatably sleeved with a placement plate for carrying vaccine bottles, one side of the cleaning cylinder is fixed with an arc-shaped cleaning plate located above the placement plate through the fixing rod, a top cleaning plate located above the arc-shaped cleaning plate is provided in the cleaning cylinder, and the pressure rod cooperates with the top cleaning plate to drive the top cleaning plate to move downward, and the arc-shaped cleaning plate cooperates with the top cleaning plate to remove stubborn impurities on the outer wall and top of the vaccine bottle;

[0012] It also includes a drying ring slidably arranged in the drying cylinder, the inner wall of the drying ring is provided with a plurality of oblique holes for drying the vaccine bottles with sprayed hot air;

[0013] A flushing structure is provided in the cleaning cylinder and is used to flush the inside and outside of the vaccine bottle simultaneously;

[0014] The wiping structure is arranged in the cleaning cylinder and is used to make the arc-shaped cleaning plate cooperate with the top cleaning plate to remove stubborn impurities on the outer wall and top of the vaccine bottle;

[0015] The drying structure is arranged in the drying cylinder and is used to dry the vaccine bottles in all directions;

[0016] The driving mechanism is arranged above the base and is used to drive the flushing structure and the drying structure to operate simultaneously.

[0017] In one possible design, the flushing structure includes a first water pump fixed on the inner wall of the bottom of the cleaning cylinder, the liquid outlet end of the first water pump is connected to the fixed rod through a hose, the outer wall of the fixed rod is provided with a plurality of first cleaning holes for spraying water on the outer wall of the vaccine bottle, the top of the fixed rod is fixedly connected to a water storage tray, the bottom of the water storage tray is provided with a plurality of second cleaning holes for spraying water on the top of the vaccine bottle, the outer wall fixed sleeve of the placement tray is provided with a bevel gear ring; the rotating shaft drives the placement tray to rotate through the cooperation of the first bevel gear and the bevel gear ring, and then the first water pump injects the water in the cleaning cylinder into the fixed rod and the water storage tray, and the cooperation of the first cleaning hole and the second cleaning hole can spray the outer wall and top of the vaccine bottle. In addition, when the placement tray rotates, the placement tray drives the rotating table and the outer gear ring to revolve, and the cooperation of the outer gear ring and the inner gear ring can make the outer gear ring rotate during revolution. Therefore, the fixed rod and the water storage tray can comprehensively clean the top and outer wall of the vaccine bottle.

[0018] In one possible design, the flushing structure also includes a plurality of rotating tables rotating in the placement tray, and an inner cleaning rod is rotated through each of the plurality of rotating tables, and the outer wall of the inner cleaning rod is provided with a plurality of third cleaning holes for flushing the inner side wall of the vaccine bottle, and the top of the inner cleaning rod is arc-shaped, and the top of the inner cleaning rod is provided with a plurality of fourth cleaning holes for flushing the top inner wall of the vaccine bottle, and a water storage ring is fixed to the bottom of the placement tray through a round rod, and the bottom ends of the plurality of inner cleaning rods are fixed and extended into the water storage ring, and one side of the plurality of inner cleaning rods is provided with a liquid inlet hole for injecting the water in the water storage ring into the inner cleaning rod to flush the inner wall of the vaccine bottle, and a second water pump is fixed to the bottom of the water storage ring through a frame, and the liquid inlet end of the second water pump extends to the cleaning ring through a hose. The bottom inner wall of the cleaning cylinder, the liquid inlet end of the second water pump is fixedly extended to the water storage ring through a hose, and is used to inject the water in the cleaning cylinder into the water storage ring. The bottom of the plurality of rotating tables are fixed with an outer gear ring, and the bottom inner wall of the cleaning cylinder is fixed with an inner gear ring located below the placement plate through a round rod, and the inner gear ring is meshed with the outer gear ring to drive the rotating table to rotate; the clean water in the cleaning cylinder is injected into the water storage ring through the second water pump, and the water in the water storage ring is injected into the inner cleaning rod through the liquid inlet hole, and the placement plate drives the rotating table and the outer gear ring to revolve, and the cooperation of the outer gear ring and the inner gear ring can make the outer gear ring and the rotating table rotate when they revolve, the third cleaning hole and the fourth cleaning hole can clean the top inner wall and side wall of the vaccine bottle, and then cooperate with the fixed rod and the water storage plate to clean the inside and outside of the vaccine bottle at the same time.

[0019] In one possible design, the wiping structure includes two baffles fixed to the inner wall of one side of the cleaning cylinder, two baffles are provided with two inclined grooves on the side close to each other, and the same pin rod is slidably fitted between the two corresponding inclined grooves, and the two pin rods are fixed through the top cleaning plate, and the pin rod cooperates with the inclined groove to drive the top cleaning plate to move obliquely downward to the top of the vaccine bottle, and a sliding plate is slidably connected between the two baffles, and the side of the top cleaning plate close to the rotating column is slidably connected to the sliding plate, and a plurality of second tension springs are fixed to the side of the sliding plate away from the top cleaning plate, and one end of the plurality of second tension springs is fixedly connected to the inner wall of one side of the cleaning cylinder, so as to reset the top cleaning plate obliquely upward, and the top cleaning plate A first cleaning cotton is fixed at the bottom, and a second cleaning cotton is fixed on the side of the arc-shaped cleaning plate away from the rotating column; when the top plate drives the vaccine bottle to move down into the cleaning cylinder, the pressure rod at the bottom of the top plate pushes the top cleaning plate down. At this time, the top cleaning plate is located above the vaccine bottle. As the pressure rod pushes the top cleaning plate down, the top cleaning plate moves obliquely downward under the cooperation of the pin rod and the inclined groove. When the vaccine bottle is placed on the top of the placement plate, the top cleaning plate just touches the top of the vaccine bottle. When the vaccine bottle moves to the direction of the arc-shaped cleaning plate, the arc-shaped cleaning plate and the second cleaning cotton can cooperate to further clean the stubborn impurities on the outer wall of the vaccine bottle, and at the same time, the first cleaning cotton can clean the stubborn impurities on the top of the vaccine bottle, thereby increasing the cleaning effect.

[0020] In one possible design, the drying structure includes a second lifting ring sliding on the inner wall of the drying cylinder, the drying ring is fixed to the inner wall of the second lifting ring, a guide rod is fixed to the inner wall of one side of the drying cylinder through a base, and the top of the guide rod slides through the second lifting ring, the inner wall of the drying cylinder on the side away from the guide rod is rotatably connected to a reciprocating screw rod through the base, and the reciprocating screw rod is threadedly connected to the second lifting ring for driving the second lifting ring to lift and reciprocate, a transmission rod is rotatably connected to the inside of the drying cylinder through a horizontal plate, a rubber wheel is fixed to the top of the transmission rod, the top of the rubber wheel is in contact with the end of the vaccine bottle close to the rubber wheel, and the rubber The side wall of the wheel contacts the outer wall of the bottleneck of the vaccine bottle, and the rubber wheel is used to drive the vaccine bottle to rotate. A hot air blower is fixed to one side of the drying cylinder through a frame, and the air outlet end of the hot air blower is connected to the drying ring through a hose; the rotating shaft drives the fourth bevel gear and the third bevel gear to rotate respectively through the two second bevel gears, and the third bevel gear drives the vaccine bottle to rotate through the rubber wheel. The fourth bevel gear drives the drying ring to move back and forth through the cooperation of the second lifting ring and the reciprocating screw. Therefore, the hot air blown into the drying ring by the hot air blower is sprayed onto the vaccine bottle through the inclined hole on the inner wall of the drying ring with the cooperation of the drying ring, thereby being able to dry the vaccine bottle in all directions.

[0021] In one possible design, the driving mechanism includes a rotating shaft arranged above the base, and the rotating shaft rotates through a boss on the top of the base, one end of the rotating shaft rotates and extends into the cleaning cylinder and is fixed with a first bevel gear, and the first bevel gear is meshed with the bevel gear ring for driving the placement disk to rotate, and the other end of the rotating shaft rotates and extends into the drying cylinder and is rotatably connected to the inner wall of the drying cylinder away from the rotating column, the outer wall of the rotating shaft is fixed with two second bevel gears, the bottom end of the reciprocating screw is fixed with a fourth bevel gear, and the bottom end of the transmission rod is fixed with a third bevel gear, and the third bevel gear and the fourth bevel gear are respectively meshed with the corresponding second bevel gear; the rotation of the rotating shaft can synchronously drive the placement disk, the reciprocating screw and the rubber wheel to rotate, thereby accelerating the drying of the vaccine bottles in the drying cylinder while cleaning the vaccine bottles in the cleaning cylinder.

[0022] In one possible design, a plurality of first annular ultraviolet disinfection lamps are fixed on the inner wall of the disinfection cylinder, and a plurality of second annular ultraviolet disinfection lamps are fixed on the inner wall of the bottom of the disinfection cylinder, and the plurality of second annular ultraviolet disinfection lamps have the same center and different inner diameters; the vaccine bottles can be fully disinfected by the cooperation of the first annular ultraviolet disinfection lamps and the second annular ultraviolet disinfection lamps.

[0023] In a possible design, a plurality of arc plates are fixed to the outer wall of the inner cleaning rod, and the arc plates touch the inner wall of the bottleneck of the vaccine bottle. The plurality of arc plates cooperate to position the vaccine bottle.

[0024] In a possible design, liquid guide holes are provided in the plurality of rotating tables, and the plurality of liquid guide holes are respectively located below the corresponding arc plates, for discharging the water used to flush the inner wall of the vaccine bottle.

[0025] In a possible design, a fixed block is fixed to one side of the top of the drying cylinder, a sliding groove is provided in the top plate, and the top of the fixed block extends into the sliding groove, and a trapezoidal extrusion plate for extruding the inner plate is slidably connected in the sliding groove, and the fixed block is extruded and matched with the inclined surface of the trapezoidal extrusion plate, and a fixed seat is fixed to the top of the trapezoidal extrusion plate, and a first tension spring is fixed to the side of the fixed seat away from the inner plate, and one end of the first tension spring is fixedly connected to the top inner wall of the sliding groove through the fixed block; when the top plate is placed on the top of the drying cylinder, the fixed block is inserted into the sliding groove, and pushes the trapezoidal extrusion plate to squeeze the inner plate in cooperation with the inclined surface of the trapezoidal extrusion plate to prevent the inner plate from rotating, thereby ensuring that the friction between the rubber wheel and the vaccine bottle drives the vaccine bottle to rotate.

[0026] Beneficial effects: In the present invention, a plurality of first cleaning holes are provided on the outer wall of the fixed rod, the top end of the fixed rod is fixedly connected to a water storage tray, and a plurality of second cleaning holes are provided on the bottom of the water storage tray; the first water pump injects water in the cleaning cylinder into the fixed rod and the water storage tray, and the water can be sprayed onto the outer wall and top of the vaccine bottle through the cooperation of the first cleaning holes and the second cleaning holes. In addition, when the placement tray rotates, the placement tray drives the rotating table and the outer gear ring to revolve, and the cooperation between the outer gear ring and the inner gear ring can make the outer gear ring rotate during the revolution. Therefore, the fixed rod and the water storage tray can fully clean the top and outer wall of the vaccine bottle;

[0027] In the present invention, multiple rotating tables are each provided with an inner cleaning rod that rotates and penetrates therein, the outer wall of the inner cleaning rod is provided with multiple third cleaning holes, the top of the inner cleaning rod is provided with multiple fourth cleaning holes, a water storage ring is fixed to the bottom of the placing tray, the bottom ends of multiple inner cleaning rods are fixedly extended into the water storage ring, the bottom of multiple rotating tables are each fixed with an outer gear ring, and the bottom inner wall of the cleaning cylinder is fixed with an inner gear ring; the clean water in the cleaning cylinder is injected into the inner cleaning rod by a second water pump, the placing tray drives the rotating table and the outer gear ring to revolve, and the cooperation between the outer gear ring and the inner gear ring can make the outer gear ring and the rotating table rotate during the revolution, the third cleaning hole and the fourth cleaning hole can clean the top inner wall and side wall of the vaccine bottle, and then cooperate with the fixed rod and the water storage tray to clean the inside and outside of the vaccine bottle at the same time;

[0028] In the present invention, an arc-shaped cleaning plate is fixed to the inner wall of one side of the cleaning cylinder, and two oblique grooves are provided on the sides of the two baffles close to each other, and the same pin rod is slidably fitted between the two corresponding oblique grooves, and the two pin rods are fixed and penetrate the top cleaning plate; the top plate pushes the top cleaning plate to move obliquely downward through the pressure rod until the top cleaning plate touches the top of the vaccine bottle. When the vaccine bottle moves to the direction of the arc-shaped cleaning plate, the arc-shaped cleaning plate cooperates with the second cleaning cotton to further clean the stubborn impurities on the outer wall of the vaccine bottle, and at the same time, the first cleaning cotton can clean the stubborn impurities on the top of the vaccine bottle, thereby increasing the cleaning effect;

[0029] In the present invention, the inner wall of the drying cylinder is slidingly connected with a second lifting ring, and the drying ring is fixed on the inner wall of the second lifting ring. The inner wall of the drying cylinder on the side away from the guide rod is rotatably connected with a reciprocating screw through the base, and the reciprocating screw is threadedly connected to the second lifting ring. The drying cylinder is rotatably connected with a transmission rod through a horizontal plate, and the top of the transmission rod is fixed with a rubber wheel. The top of the rubber wheel contacts the end of the vaccine bottle close to the rubber wheel, and the side wall of the rubber wheel contacts the outer wall of the bottleneck of the vaccine bottle; the rotating shaft drives the fourth bevel gear and the third bevel gear to rotate respectively through the two second bevel gears, and the third bevel gear drives the vaccine bottle to rotate through the rubber wheel. The fourth bevel gear drives the drying ring to move back and forth up and down through the cooperation of the second lifting ring and the reciprocating screw, and then sprays hot air to the vaccine bottle through the inclined hole on the inner wall of the drying ring, so that the vaccine bottle can be dried in all directions.

[0030] In the present invention, the inside and the outer wall of the vaccine bottle can be flushed at the same time, and during the flushing process, the stubborn impurities on the outer wall of the vaccine bottle can be cleaned by the first cleaning cotton and the second cleaning cotton, which not only improves the cleaning efficiency, but also has an excellent cleaning effect. When cleaning the vaccine bottle, the drying efficiency of the vaccine bottle can be improved by the cooperation of the drying ring and the rubber wheel. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 This is a schematic diagram of the three-dimensional structure of an integrated device for cleaning, disinfecting and drying vaccine bottles provided by the present invention;

[0032] Figure 2 This is a schematic diagram of the three-dimensional structure of the rotating column, first lifting ring and top plate of the integrated vaccine bottle cleaning, disinfection and drying equipment provided by the present invention;

[0033] Figure 3 This is a schematic diagram of the three-dimensional explosion structure of the top plate, rotating rod and inner plate of the integrated equipment for cleaning, disinfecting and drying vaccine bottles provided by the present invention;

[0034] Figure 4 This is a schematic diagram of the three-dimensional cross-sectional structure of the cleaning cylinder and top plate of the integrated vaccine bottle cleaning, disinfection and drying equipment provided by the present invention;

[0035] Figure 5 This is a schematic cross-sectional view of the cleaning cylinder and placement tray of the integrated vaccine bottle cleaning, disinfection and drying equipment provided by the present invention;

[0036] Figure 6 This is a schematic cross-sectional view of the inner cleaning rod of the integrated vaccine bottle cleaning, disinfection and drying device provided by the present invention;

[0037] Figure 7This is a schematic cross-sectional view of the fixing rod and water storage tray of the integrated vaccine bottle cleaning, disinfection and drying equipment provided by the present invention;

[0038] Figure 8 This is a schematic diagram of a three-dimensional exploded cross-section structure of a rotating table, an outer gear ring, and an inner gear ring of an integrated vaccine bottle cleaning, disinfection, and drying device provided by the present invention;

[0039] Figure 9 This is a schematic diagram of the three-dimensional exploded structure of the curved cleaning plate, top cleaning plate and baffle of the integrated vaccine bottle cleaning, disinfection and drying equipment provided by the present invention;

[0040] Figure 10 This is a schematic cross-sectional view of a sterilizing cylinder of an integrated device for cleaning, sterilizing and drying vaccine bottles provided by the present invention;

[0041] Figure 11 This is a schematic cross-sectional view of the drying cylinder and the second lifting ring of the integrated equipment for cleaning, disinfecting and drying vaccine bottles provided by the present invention;

[0042] Figure 12 This is a schematic cross-sectional view of the top plate and drying cylinder of the integrated vaccine bottle cleaning, disinfection and drying equipment provided by the present invention;

[0043] Figure 13 This is a schematic diagram of the three-dimensional explosion structure of the trapezoidal extrusion plate and fixed block of the integrated equipment for cleaning, disinfecting and drying vaccine bottles provided by the present invention.

[0044] In the figure: 1. Base; 2. Rotating column; 3. First lifting ring; 4. U-shaped plate; 5. Cylinder; 6. Connecting arm; 7. Top plate; 8. Inner plate; 9. Rotating rod; 10. Vacuum suction cup; 11. First tension spring; 12. Cleaning cylinder; 13. Fixing rod; 14. Water storage tray; 15. First cleaning hole; 16. Second cleaning hole; 17. First water pump; 18. Placement tray; 19. Rotating table; 20. Inner cleaning rod; 21. Third cleaning hole; 22. Fourth cleaning hole; 23. Liquid inlet hole; 24. Water storage ring; 25. Second water pump; 26. Outer gear ring; 27. Inner gear ring; 28. Liquid guide hole; 29. ​​Arc plate; 30. Arc cleaning plate; 31. Baffle; 32. Chute ; 33. Pin rod; 34. Top cleaning plate; 35. Sliding plate; 36. Second tension spring; 37. Pressure rod; 38. First cleaning cotton; 39. Second cleaning cotton; 40. Disinfection cylinder; 41. First annular ultraviolet disinfection lamp; 42. Second annular ultraviolet disinfection lamp; 43. Drying cylinder; 44. Rotating shaft; 45. Bevel gear ring; 46. First bevel gear; 47. Second bevel gear; 48. Reciprocating screw; 49. Guide rod; 50. Second lifting ring; 51. Drying ring; 52. Transmission rod; 53. Third bevel gear; 54. Fourth bevel gear; 55. Rubber wheel; 56. Hot air blower; 57. Sliding groove; 58. Trapezoidal extrusion plate; 59. Fixed block; 60. Fixed seat. DETAILED DESCRIPTION

[0045] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0046] Example 1: Reference Figure 1-Figure 3 , an integrated cleaning, disinfection and drying equipment, relates to the technical field of vaccine production equipment, the equipment includes a base 1, the top of the base 1 is rotatably connected to a rotating column 2 through a boss. The outer wall of the rotating column 2 is slidably fitted with a first lifting ring 3, and the outer wall of the first lifting ring 3 is fixed with a plurality of connecting arms 6. The bottom of the multiple connecting arms 6 are all fixed with a top plate 7, and the bottom of the top plate 7 is rotatably connected to an inner plate 8. The bottom of the inner plate 8 is rotatably connected to a plurality of rotating rods 9, and the bottom end of the rotating rod 9 is fixed with a vacuum suction cup 10 for adsorbing the vaccine bottle. This design can ensure that the vaccine bottle is firmly clamped and can be conveniently moved in various processing stages.

[0047] Reference Figure 2 A cylinder 5 is fixed to the top of the rotating column 2, and a U-shaped plate 4 is fixed to the output shaft of the cylinder 5. The two bottom ends of the U-shaped plate 4 are fixedly connected to the top of the first lifting ring 3. The extension and contraction of the cylinder 5 can control the lifting of the top plate 7 and the vaccine bottles on it.

[0048] Reference Figure 3In addition, a pressure rod 37 is fixed to one side of the bottom of each of the top plates 7, and these pressure rods 37 will play a role in the subsequent cleaning process.

[0049] Reference Figure 1 The device also includes a cleaning cylinder 12, a disinfection cylinder 40 and a drying cylinder 43, which are all fixed to the top of the base 1 and arranged in a ring. Each cylinder is used to clean, disinfect and dry the vaccine bottles respectively.

[0050] Reference Figure 4 、 Figure 5 and Figure 9 Inside the cleaning cylinder 12, a fixed rod 13 is fixed to the bottom inner wall. A placement tray 18 is rotatably mounted on the outer wall of the fixed rod 13, which is used to hold vaccine bottles. A curved cleaning plate 30, located above the placement tray 18, is fixed to one side of the cleaning cylinder 12 via the fixed rod 13. A top cleaning plate 34 is also located within the cleaning cylinder 12, located above the curved cleaning plate 30. When the pressure rod 37 descends with the top tray 7, it contacts the top cleaning plate 34 and drives it downward. This allows the curved cleaning plate 30 and the top cleaning plate 34 to work together to remove stubborn impurities from the outer walls and tops of the vaccine bottles.

[0051] Reference Figure 11 A drying ring 51 is slidingly arranged in the drying cylinder 43 , and the inner wall of the drying ring 51 is provided with a plurality of oblique holes for hot air spray drying of the vaccine bottles.

[0052] Reference Figure 4 、 Figure 5 and Figure 9 , the following is a detailed description of the flushing structure: a first water pump 17 is fixed to the bottom inner wall of the cleaning cylinder 12, and its liquid outlet is connected to the fixed rod 13 through a hose. The outer wall of the fixed rod 13 is provided with a plurality of first cleaning holes 15, which are used to spray water on the outer wall of the vaccine bottle. The top of the fixed rod 13 is fixedly connected to a water storage tray 14, and the bottom of the water storage tray 14 is provided with a plurality of second cleaning holes 16, which are used to spray water on the top of the vaccine bottle. The outer wall fixed sleeve of the placement tray 18 is provided with a bevel gear ring 45, which can drive the placement tray 18 to rotate through the cooperation of the rotating shaft 44 and the first bevel gear 46. When the first water pump 17 is working, it will inject the water in the cleaning cylinder 12 into the fixed rod 13 and the water storage tray 14, and then spray it onto the outer wall and top of the vaccine bottle through the cooperation of the first cleaning hole 15 and the second cleaning hole 16.

[0053] Reference Figure 4-Figure 8The flushing structure also includes multiple rotating platforms 19 that rotate within the placement tray 18. Each rotating platform 19 has an inner cleaning rod 20 that rotates and extends through it. The outer wall of the inner cleaning rod 20 is provided with multiple third cleaning holes 21 for flushing the inner sidewalls of the vaccine bottles. The top of the inner cleaning rod 20 is arc-shaped and has multiple fourth cleaning holes 22 for flushing the top inner wall of the vaccine bottles. A water storage ring 24 is fixed to the bottom of the placement tray 18 via a circular rod. The bottom ends of the multiple inner cleaning rods 20 are fixedly extended into the water storage ring 24. A liquid inlet 23 is provided on one side of the inner cleaning rod 20 for injecting water from the water storage ring 24 into the inner cleaning rod 20. A second water pump 25 is fixed to the bottom of the water storage ring 24 via a frame. Its liquid inlet end extends through a hose to the bottom inner wall of the cleaning cylinder 12, and its liquid outlet end is fixedly extended into the water storage ring 24 through a hose. When the second water pump 25 is working, it will inject the clean water in the cleaning cylinder 12 into the water storage ring 24, and then the water will be injected into the inner cleaning rod 20 through the liquid inlet hole 23. In addition, the bottom of each of the multiple rotating platforms 19 is fixed with an outer toothed ring 26, and the inner wall of the bottom of the cleaning cylinder 12 is fixed with an inner toothed ring 27 located below the placement plate 18 through a round rod. The inner toothed ring 27 is meshed with the outer toothed ring 26. In this way, when the placement plate 18 rotates, it will drive the rotating platform 19 and the outer toothed ring 26 to revolve. Due to the cooperation between the inner toothed ring 27 and the outer toothed ring 26, the outer toothed ring 26 and the rotating platform 19 will also rotate while revolving. Therefore, the third cleaning hole 21 and the fourth cleaning hole 22 can fully clean the top inner wall and side wall of the vaccine bottle.

[0054] Reference Figure 8 During the cleaning process, the inner cleaning rod 20 serves as the primary component for cleaning the inner walls of vaccine bottles. Multiple curved plates 29 are fixed to its outer wall. The shape and size of these curved plates 29 are designed to match the inner wall of the vaccine bottle's bottleneck. These curved plates 29 work together to stably position the vaccine bottle, preventing it from shaking or tilting during the cleaning process, thereby ensuring effective cleaning.

[0055] Reference Figure 8 To further enhance cleaning effectiveness, the rotating platform 19 is provided with multiple liquid guide holes 28. These guide holes 28 are located below corresponding arc plates 29. When flushing the inner wall of the vaccine bottle, the flushing water flows down along the inner wall of the vaccine bottle and is discharged through the guide holes 28. This design not only effectively prevents the flushing water from accumulating in the vaccine bottle, but also ensures that the flushing water fully contacts every corner of the inner wall of the vaccine bottle, improving the thoroughness and efficiency of cleaning.

[0056] Reference Figure 4 、 Figure 5 and Figure 9The wiping structure is mainly composed of an arc-shaped cleaning plate 30 and a top cleaning plate 34, which can cooperate with the pressure rod 37 to remove stubborn impurities on the outer wall and top of the vaccine bottle. The wiping structure includes two baffles 31 fixed on the inner wall of one side of the cleaning cylinder 12. The two baffles 31 are provided with two inclined grooves 32 on the side close to each other, and these inclined grooves 32 are used to cooperate with the sliding of the pin rod 33. The same pin rod 33 is slidably fitted between the two corresponding inclined grooves 32, and both pin rods 33 are fixed through the top cleaning plate 34. When the pin rod 33 slides in the inclined groove 32, it can drive the top cleaning plate 34 to move obliquely downward to the top of the vaccine bottle. In order to maintain the stability and reset ability of the top cleaning plate 34, a sliding plate 35 is slidably connected between the two baffles 31, and the top cleaning plate 34 is slidably connected to the sliding plate 35 on the side close to the rotating column 2. Furthermore, multiple second tension springs 36 are secured to the side of the sliding plate 35 facing away from the top cleaning plate 34. One end of each of these second tension springs 36 is fixedly connected to the inner wall of the cleaning cylinder 12, thereby repositioning the top cleaning plate 34 diagonally upward. A first cleaning cotton pad 38 is secured to the bottom of the top cleaning plate 34 for cleaning the tops of the vaccine bottles. Furthermore, a curved cleaning plate 30 is positioned within the cleaning cylinder 12, with a second cleaning cotton pad 39 secured to the side of the curved cleaning plate 30 facing away from the rotating column 2 for further cleaning the outer walls of the vaccine bottles.

[0057] Specifically, when the top plate 7 drives the vaccine bottle downward into the cleaning cylinder 12, the pressure rod 37 at the bottom of the top plate 7 pushes the top cleaning plate 34 downward. With the push of the pressure rod 37, the top cleaning plate 34 moves diagonally downward, coordinated by the pin 33 and the inclined groove 32, until it contacts the top of the vaccine bottle. When the vaccine bottle moves toward the curved cleaning plate 30, the curved cleaning plate 30 and the second cleaning cotton 39 cooperate to further clean stubborn impurities on the outer wall of the vaccine bottle. At the same time, the first cleaning cotton 38 cleans stubborn impurities on the top of the vaccine bottle, thereby enhancing the cleaning effect.

[0058] Reference Figure 11The drying structure is located in the drying cylinder 43 and is mainly composed of a drying ring 51 and an oblique hole thereon. The vaccine bottle can be fully dried by spraying hot air into the oblique hole. The drying structure includes a second lifting ring 50 that is slidably arranged in the drying cylinder 43, and the drying ring 51 is fixed to the inner wall of the second lifting ring 50. A guide rod 49 is fixed to the inner wall of one side of the drying cylinder 43 through the base, and the top of the guide rod 49 slides through the second lifting ring 50 to maintain the stable sliding of the second lifting ring 50. On the inner wall of the drying cylinder 43 away from the guide rod 49, a reciprocating screw rod 48 is connected to the inner wall of the drying cylinder 43 through rotation of the base, and the reciprocating screw rod 48 is threadedly connected to the second lifting ring 50 for driving the second lifting ring 50 to reciprocate. In order to drive the vaccine bottle to rotate, a transmission rod 52 is connected to the drying cylinder 43 through a horizontal plate, and a rubber wheel 55 is fixed to the top of the transmission rod 52. The top of the rubber wheel 55 contacts the end of the vaccine bottle close to the rubber wheel 55, and the side wall contacts the outer wall of the bottleneck of the vaccine bottle. On one side of the drying cylinder 43 , a hot air blower 56 is fixed via a frame, and an air outlet of the hot air blower 56 is connected to the drying ring 51 via a hose.

[0059] Reference Figure 2 、 Figure 4 、 Figure 5 and Figure 11 The driving mechanism includes a rotating shaft 44 arranged above the base 1, and the rotating shaft 44 rotates through the boss on the top of the base 1. One end of the rotating shaft 44 rotates and extends into the cleaning cylinder 12 and is fixed with a first bevel gear 46. The first bevel gear 46 is engaged with the bevel gear ring 45 to drive the placement plate 18 to rotate. The other end of the rotating shaft 44 rotates and extends into the drying cylinder 43 and is rotatably connected to the inner wall of the drying cylinder 43 away from the rotating column 2. Two second bevel gears 47 are fixedly sleeved on the outer wall of the rotating shaft 44. The bottom end of the reciprocating screw 48 is fixed with a fourth bevel gear 54, and the bottom end of the transmission rod 52 is fixed with a third bevel gear 53. The third bevel gear 53 and the fourth bevel gear 54 are respectively engaged with the corresponding second bevel gear 47.

[0060] Specifically, when the rotating shaft 44 rotates, the first bevel gear 46 drives the placement tray 18, while the second bevel gear 47 simultaneously drives the third and fourth bevel gears 53 and 54, respectively. The third bevel gear 53 rotates the vaccine bottles via the rubber wheel 55, while the fourth bevel gear 54 drives the drying ring 51 up and down through the cooperation of the second lifting ring 50 and the reciprocating screw 48. At this time, the hot air blower 56 injects hot air into the drying ring 51, which, in conjunction with the drying ring 51, sprays the hot air onto the vaccine bottles through the inclined holes in its inner wall, thereby drying the vaccine bottles in all directions.

[0061] Reference Figure 10In the integrated equipment for cleaning, disinfecting and drying vaccine bottles, the disinfection barrel 40 is a key component of the disinfection link, and its inner wall is designed with multiple first annular ultraviolet disinfection lamps 41. These first annular ultraviolet disinfection lamps 41 are evenly distributed around the inner wall of the disinfection barrel 40 to ensure that the side walls of the vaccine bottles are fully irradiated and disinfected. In addition, multiple second annular ultraviolet disinfection lamps 42 are fixed to the inner wall of the bottom of the disinfection barrel 40. These second annular ultraviolet disinfection lamps 42 have the same center of circle but different inner diameters, forming multi-level and multi-angle ultraviolet irradiation. When the vaccine bottle is placed in the disinfection barrel 40, the first annular ultraviolet disinfection lamps 41 and the second annular ultraviolet disinfection lamps 42 work at the same time, which can achieve comprehensive disinfection of the vaccine bottle from top to bottom and from outside to inside, ensuring that there are no dead angles in the disinfection effect.

[0062] Through this design, the equipment can realize the integrated cleaning, disinfection and drying of vaccine bottles, greatly improving the processing efficiency and effect.

[0063] Example 2: Reference Figure 12 and Figure 13 This embodiment is an improvement on Example 1: A fixing block 59 is fixed to one side of the top of the drying cylinder 43. When the top tray 7 is placed on top of the drying cylinder 43, the fixing block 59 inserts into the sliding groove 57 within the top tray 7. A trapezoidal squeezing plate 58 is slidably connected within the sliding groove 57. When the fixing block 59 is inserted into the sliding groove 57, it creates a compressive fit with the inclined surface of the trapezoidal squeezing plate 58. Under this compressive force, the trapezoidal squeezing plate 58 moves toward the inner tray 8, squeezing the inner tray 8. Furthermore, a fixing seat 60 is fixed to the top of the trapezoidal squeezing plate 58. A first tension spring 11 is fixed to the side of the fixing seat 60 facing away from the inner tray 8. One end of the first tension spring 11 is fixedly connected to the top inner wall of the sliding groove 57 via the fixing block 59. This design ensures that after the fixing block 59 is inserted into the sliding groove 57, the tension of the first tension spring 11 maintains the continuous squeezing effect of the trapezoidal squeezing plate 58 on the inner tray 8. When a vaccine bottle is placed on the inner tray 8, the rubber wheel 55 contacts the vaccine bottle, generating friction. Under the squeeze of the trapezoidal extrusion plate 58, the inner disk 8 cannot rotate, ensuring that the friction between the rubber wheel 55 and the vaccine bottle can drive the vaccine bottle to rotate. This design not only improves drying efficiency but also ensures that the vaccine bottle is evenly heated during the drying process, avoiding local overheating or incomplete drying.

[0064] A method for using an integrated device for cleaning, disinfecting and drying vaccine bottles, comprising the following steps:

[0065] S1. The vaccine bottle to be cleaned is adsorbed under the inner plate 8 by the vacuum suction cup 10. The output shaft of the cylinder 5 pushes the U-shaped plate 4 and the top plate 7 upward as a whole. The motor drives the rotating column 2 and the top plate 7 to rotate. The top plate 7 adsorbing the vaccine bottle moves to the top of the cleaning cylinder 12. Then the U-shaped plate 4 moves downward to place the vaccine bottle on the placement plate 18. During the placement process, the inner cleaning rod 20 is inserted into the vaccine bottle, and the multiple arc plates 29 just cooperate with the bottle mouth of the vaccine bottle to position the vaccine bottle.

[0066] S2. When the top plate 7 drives the vaccine bottle to move down into the cleaning cylinder 12, the pressure rod 37 at the bottom of the top plate 7 pushes the top cleaning plate 34 downward. At this time, the top cleaning plate 34 is located above the vaccine bottle. As the pressure rod 37 pushes the top cleaning plate 34 downward, the top cleaning plate 34 moves obliquely downward under the cooperation of the pin rod 33 and the inclined groove 32. When the vaccine bottle is placed on the top of the placement plate 18, the top cleaning plate 34 just touches the top of the vaccine bottle, which is convenient for cleaning the top of the vaccine bottle later.

[0067] S3. During cleaning, the rotating shaft 44 is driven to rotate by the motor (the motor is arranged inside the boss on the top of the base 1, and the motor can drive the rotating shaft 44 to rotate through the synchronous wheel and the synchronous belt, which is not limited here). The rotating shaft 44 drives the placement plate 18 to rotate through the cooperation of the first bevel gear 46 and the bevel gear ring 45. Then the first water pump 17 injects the water in the cleaning cylinder 12 into the fixed rod 13 and the water storage plate 14, and the water can be sprayed onto the outer wall and top of the vaccine bottle through the cooperation of the first cleaning hole 15 and the second cleaning hole 16. In addition, when the placement plate 18 rotates, the placement plate 18 drives the rotating table 19 and the outer gear ring 26 to revolve, and the cooperation of the outer gear ring 26 and the inner gear ring 27 can make the outer gear ring 26 rotate during its revolution. Therefore, the fixed rod 13 and the water storage plate 14 can fully clean the top and outer wall of the vaccine bottle.

[0068] S4. When cleaning the inner wall of the vaccine bottle, the clean water in the cleaning cylinder 12 is injected into the water storage ring 24 through the second water pump 25, and the water in the water storage ring 24 is injected into the inner cleaning rod 20 through the liquid inlet hole 23. When the rotating table 19 drives the vaccine bottle to rotate, the third cleaning hole 21 and the fourth cleaning hole 22 can clean the top inner wall and side wall of the vaccine bottle, and then cooperate with the fixed rod 13 and the water storage tray 14 to clean the inside and outside of the vaccine bottle at the same time;

[0069] S5. When spraying water inside and outside the vaccine bottles for cleaning, the placement plate 18 drives the multiple vaccine bottles to rotate, and the vaccine bottles also rotate during the rotation. When the vaccine bottles move to the direction of the curved cleaning plate 30, the curved cleaning plate 30 and the second cleaning cotton 39 can cooperate to further clean the stubborn impurities on the outer wall of the vaccine bottle, and at the same time, the first cleaning cotton 38 can clean the stubborn impurities on the top of the vaccine bottle, thereby enhancing the cleaning effect;

[0070] S6. After cleaning, the top plate 7 places the vaccine bottle in the disinfection cylinder 40, and the top plate 7 can seal the top of the disinfection cylinder 40. Then the first annular ultraviolet disinfection lamp 41 and the second annular ultraviolet disinfection lamp 42 cooperate to disinfect the vaccine bottle;

[0071] S7. The sterilized vaccine bottle is placed in the drying cylinder 43 by the top plate 7. At this time, the top of the rubber wheel 55 touches the end of the vaccine bottle close to the rubber wheel 55, and the bottleneck side wall of the vaccine bottle contacts the side wall of the rubber wheel 55. Then, the friction between the synchronous rubber wheel 55 and the vaccine bottle can drive the vaccine bottle to rotate. Specifically, the rotating shaft 44 drives the fourth bevel gear 54 and the third bevel gear 53 to rotate respectively through the two second bevel gears 47. The third bevel gear 53 drives the vaccine bottle to rotate through the rubber wheel 55. The fourth bevel gear 54 drives the drying ring 51 to move back and forth up and down through the cooperation of the second lifting ring 50 and the reciprocating screw 48. Therefore, the hot air blown into the drying ring 51 by the hot air blower 56 is sprayed onto the vaccine bottle through the inclined hole on the inner wall of the drying ring 51 with the cooperation of the drying ring 51, thereby being able to dry the vaccine bottle in all directions.

[0072] S8. To prevent the friction between the rubber wheel 55 and the vaccine bottle from driving the inner plate 8 to rotate, when the top plate 7 is placed on the top of the drying cylinder 43, the fixing block 59 is inserted into the sliding groove 57 and cooperates with the inclined surface of the trapezoidal squeezing plate 58 to push the trapezoidal squeezing plate 58 to squeeze the inner plate 8, preventing the inner plate 8 from rotating and ensuring that the friction between the rubber wheel 55 and the vaccine bottle drives the vaccine bottle to rotate.

[0073] However, as is well known to those skilled in the art, the working principles and wiring methods of the first annular ultraviolet disinfection lamp 41, the second annular ultraviolet disinfection lamp 42, the first water pump 17, the second water pump 25 and the cylinder 5 are commonplace, and are all conventional means or common knowledge, so they will not be elaborated here. Those skilled in the art can make any selections according to their needs or convenience.

[0074] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. An integrated device for cleaning, disinfecting and drying vaccine bottles, characterized in that: The invention comprises a base (1), wherein the top of the base (1) is rotatably connected to a rotating column (2) through a boss, the outer wall of the rotating column (2) is slidably matched with a first lifting ring (3), the outer wall of the first lifting ring (3) is fixed with a plurality of connecting arms (6), the bottoms of the plurality of connecting arms (6) are all fixed with a top plate (7), the bottoms of the plurality of top plates (7) are rotatably connected to an inner plate (8), the bottoms of the plurality of inner plates (8) are all rotatably connected to a plurality of rotating rods (9), the bottom ends of the rotating rods (9) are fixed with a vacuum suction cup (10) for adsorbing vaccine bottles, the top of the rotating column (2) is fixed with a cylinder (5), the output shaft of the cylinder (5) is fixed with a U-shaped plate (4), the two bottom ends of the U-shaped plate (4) are both fixedly connected to the top of the first lifting ring (3) for controlling the lifting of the top plate (7), and a pressure rod (37) is fixed on one side of the bottom of the plurality of top plates (7); It also includes a cleaning cylinder (12), a disinfection cylinder (40) and a drying cylinder (43), wherein the cleaning cylinder (12), the disinfection cylinder (40) and the drying cylinder (43) are all fixed on the top of the base (1) and arranged in a ring shape, and are used for cleaning, disinfecting and drying the vaccine bottles respectively; It also includes a fixing rod (13) fixed to the inner wall of the bottom of the cleaning cylinder (12), the outer wall of the fixing rod (13) is rotatably sleeved with a placement plate (18) for carrying vaccine bottles, and a curved cleaning plate (30) located above the placement plate (18) is fixed to one side of the cleaning cylinder (12) through the fixing rod (13), and a top cleaning plate (34) located above the curved cleaning plate (30) is provided in the cleaning cylinder (12), and a pressure rod (37) cooperates with the top cleaning plate (34) to drive the top cleaning plate (34) to move downward, and the curved cleaning plate (30) cooperates with the top cleaning plate (34) to remove stubborn impurities on the outer wall and top of the vaccine bottle; It also includes a drying ring (51) slidably arranged in the drying cylinder (43), wherein the inner wall of the drying ring (51) is provided with a plurality of oblique holes for drying the vaccine bottles with sprayed hot air; A flushing structure is provided in the cleaning cylinder (12) and is used to flush the inside and outside of the vaccine bottle simultaneously; The wiping structure is arranged in the cleaning cylinder (12) and is used to make the arc-shaped cleaning plate (30) cooperate with the top cleaning plate (34) to remove stubborn impurities on the outer wall and top of the vaccine bottle; A drying structure, arranged in the drying cylinder (43), for drying the vaccine bottles in all directions; The driving mechanism is arranged above the base (1) and is used to drive the flushing structure and the drying structure to operate simultaneously.

2. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 1, characterized in that: The flushing structure includes a first water pump (17) fixed to the inner wall of the bottom of the cleaning cylinder (12), the liquid outlet end of the first water pump (17) is connected to the fixed rod (13) through a hose, the outer wall of the fixed rod (13) is provided with a plurality of first cleaning holes (15) for spraying water on the outer wall of the vaccine bottle, the top of the fixed rod (13) is fixedly connected to a water storage tray (14), the bottom of the water storage tray (14) is provided with a plurality of second cleaning holes (16) for spraying water on the top of the vaccine bottle, and the outer wall of the placement tray (18) is fixedly sleeved with an umbrella gear ring (45).

3. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 2, characterized in that: The flushing structure also includes a plurality of rotating tables (19) rotating in the placement tray (18), and an inner cleaning rod (20) is rotated and passed through the plurality of rotating tables (19), and the outer wall of the inner cleaning rod (20) is provided with a plurality of third cleaning holes (21) for flushing the inner side wall of the vaccine bottle, and the top of the inner cleaning rod (20) is arc-shaped, and the top of the inner cleaning rod (20) is provided with a plurality of fourth cleaning holes (22) for flushing the top inner wall of the vaccine bottle, and the bottom of the placement tray (18) is fixed with a water storage ring (24) through a round rod, and the bottom ends of the plurality of inner cleaning rods (20) are fixed and extended into the water storage ring (24), and one side of the plurality of inner cleaning rods (20) is provided with a liquid inlet hole (23) for storing The water in the water ring (24) is injected into the inner cleaning rod (20) to flush the inner wall of the vaccine bottle. The bottom of the water storage ring (24) is fixed with a second water pump (25) through a frame. The liquid inlet end of the second water pump (25) is extended to the bottom inner wall of the cleaning cylinder (12) through a hose. The liquid inlet end of the second water pump (25) is fixedly extended into the water storage ring (24) through a hose, and is used to inject the water in the cleaning cylinder (12) into the water storage ring (24). The bottoms of the plurality of rotating tables (19) are all fixed with an outer gear ring (26). The bottom inner wall of the cleaning cylinder (12) is fixed with an inner gear ring (27) located below the placement plate (18) through a round rod, and the inner gear ring (27) is meshed with the outer gear ring (26) to drive the rotating table (19) to rotate.

4. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 3, characterized in that: The wiping structure includes two baffles (31) fixed on the inner wall of one side of the cleaning cylinder (12), and two baffles (31) are provided with two inclined grooves (32) on the side close to each other. The corresponding two inclined grooves (32) are slidably matched with the same pin rod (33), and the two pin rods (33) are fixed through the top cleaning plate (34). The pin rod (33) cooperates with the inclined groove (32) to drive the top cleaning plate (34) to move obliquely downward to the top of the vaccine bottle. A sliding plate (35) is slidably connected between the two baffles (31). The top cleaning plate (34) is slidably connected to the sliding plate (35) on the side close to the rotating column (2), and a plurality of second tension springs (36) are fixed on the side of the sliding plate (35) away from the top cleaning plate (34). One end of each of the plurality of second tension springs (36) is fixedly connected to the inner wall of one side of the cleaning cylinder (12) for resetting the top cleaning plate (34) obliquely upward. A first cleaning cotton (38) is fixed to the bottom of the top cleaning plate (34), and a second cleaning cotton (39) is fixed to the side of the arc-shaped cleaning plate (30) away from the rotating column (2).

5. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 4, characterized in that: The drying structure includes a second lifting ring (50) sliding on the inner wall of the drying cylinder (43), the drying ring (51) is fixed to the inner wall of the second lifting ring (50), a guide rod (49) is fixed to the inner wall of one side of the drying cylinder (43) through a base, and the top end of the guide rod (49) slides through the second lifting ring (50), and the inner wall of the drying cylinder (43) away from the guide rod (49) is connected to a reciprocating screw rod (48) through a base, and the reciprocating screw rod (48) is threadedly connected to the second lifting ring (50) for driving the second lifting ring (50) ) is lifted and lowered reciprocatingly, and a transmission rod (52) is rotatably connected to the drying cylinder (43) through a horizontal plate. A rubber wheel (55) is fixed to the top of the transmission rod (52). The top of the rubber wheel (55) contacts the end of the vaccine bottle close to the rubber wheel (55), and the side wall of the rubber wheel (55) contacts the outer wall of the bottleneck of the vaccine bottle. The rubber wheel (55) is used to drive the vaccine bottle to rotate. A hot air blower (56) is fixed to one side of the drying cylinder (43) through a frame, and the air outlet end of the hot air blower (56) is connected to the drying ring (51) through a hose.

6. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 5, characterized in that: The driving mechanism comprises a rotating shaft (44) arranged above the base (1), and the rotating shaft (44) rotates and passes through a boss on the top of the base (1); one end of the rotating shaft (44) rotates and extends into the cleaning cylinder (12) and is fixed with a first bevel gear (46), and the first bevel gear (46) is meshed with a bevel gear ring (45) for driving the placement plate (18) to rotate; the other end of the rotating shaft (44) rotates and extends into the drying cylinder (43) and is rotatably connected to the inner wall of the drying cylinder (43) away from the rotating column (2); two second bevel gears (47) are fixedly sleeved on the outer wall of the rotating shaft (44); a fourth bevel gear (54) is fixed to the bottom end of the reciprocating screw (48); a third bevel gear (53) is fixed to the bottom end of the transmission rod (52); the third bevel gear (53) and the fourth bevel gear (54) are respectively meshed with the corresponding second bevel gear (47).

7. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 1, characterized in that: A plurality of first annular ultraviolet disinfection lamps (41) are fixed on the inner wall of the disinfection cylinder (40), and a plurality of second annular ultraviolet disinfection lamps (42) are fixed on the inner wall of the bottom of the disinfection cylinder (40), and the plurality of second annular ultraviolet disinfection lamps (42) are cocentric and have different inner diameters.

8. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 3, characterized in that: A plurality of arc plates (29) are fixed to the outer wall of the inner cleaning rod (20), and the arc plates (29) touch the inner wall of the bottleneck of the vaccine bottle. The plurality of arc plates (29) cooperate to position the vaccine bottle.

9. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 8, characterized in that: Liquid guide holes (28) are provided in the plurality of rotating tables (19), and the plurality of liquid guide holes (28) are respectively located below the corresponding arc plates (29) for discharging water used for flushing the inner wall of the vaccine bottle.

10. The integrated equipment for cleaning, disinfecting and drying vaccine bottles according to claim 5, characterized in that: A fixed block (59) is fixed on one side of the top of the drying cylinder (43), a sliding groove (57) is provided in the top plate (7), and the top end of the fixed block (59) extends into the sliding groove (57), and a trapezoidal extrusion plate (58) for extruding the inner plate (8) is slidably connected in the sliding groove (57), and the fixed block (59) is extruded and matched with the inclined surface of the trapezoidal extrusion plate (58), and a fixed seat (60) is fixed on the top of the trapezoidal extrusion plate (58), and a first tension spring (11) is fixed on the side of the fixed seat (60) away from the inner plate (8), and one end of the first tension spring (11) is fixedly connected to the top inner wall of the sliding groove (57) through the fixed block (59).

Citation Information

Patent Citations

  • Bottle disinfecting and drying integrated equipment

    CN118403867A

  • Bottle washing machine for preparing vaccines for animals

    CN209407029U