Turnover type high-temperature disinfection bottle washing machine

By designing a flipped high-temperature disinfection and bottle filling machine, the use of high-temperature and high-pressure water vapor and compressed air for cleaning and disinfection, the problem of existing equipment requiring additional disinfection equipment is solved, achieving efficient and compact cleaning effect, saving equipment investment costs.

CN222957135UActive Publication Date: 2025-06-10FOSHAN TANGONG MASCH CO LTD
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Patent Information

Application Number
CN202421890863.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-06-10
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

Existing food container cleaning equipment requires additional disinfection equipment, resulting in large investment in equipment costs and bloated size.

Method used

A flipped high-temperature disinfection and bottle punching machine is designed to disinfect and clean the packaging bottle using the blowing tube to spray high-temperature and high-pressure water vapor, and blow the water drying through compressed air to achieve thorough, efficient and fast cleaning.

Benefits of technology

The equipment can clean and disinfect bottles on one device. The equipment has a compact structure, high-efficiency and saves the investment cost of packaging container cleaning equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of disinfection flushing equipment, and provides a turnover type high-temperature disinfection bottle flushing machine which comprises a rack, a bottle conveying mechanism, a bottle clamping turnover mechanism and a disinfection bottle blowing mechanism, the bottle conveying mechanism, the bottle clamping turnover mechanism and the disinfection bottle blowing mechanism are respectively installed on the rack, and the bottle conveying mechanism comprises a conveying belt used for conveying bottle bodies; the bottle clamping and overturning mechanism comprises two bottle clamping pieces which are oppositely arranged, a bottle clamping power piece for controlling the two bottle clamping pieces to be close to or far away from each other, an overturning power piece for driving the two bottle clamping pieces to rotate, a first lifting power piece for driving the two bottle clamping pieces to lift and a translation power piece for driving the two bottle clamping pieces to horizontally move; the disinfection bottle blowing mechanism comprises at least one bottle blowing pipe, a steam generator and a compressed air generator, the steam generator and the compressed air generator are communicated with the bottle blowing pipe, the bottle blowing pipe is arranged on one side of the conveying belt, a first control valve is arranged between the steam generator and the bottle blowing pipe, and a second control valve is arranged between the compressed air generator and the bottle blowing pipe. The bottle washing machine adopts high-temperature and high-pressure water vapor to clean and disinfect bottles, and cleaning is thorough and efficient.
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Description

Technical Field

[0001] The utility model relates to the technical field of disinfection and flushing equipment, and particularly relates to a flip - type high - temperature disinfection bottle flushing machine. Background Art

[0002] Before filling foods such as pickles, sauces, and seasonings into containers (jars or bottles), it is necessary to clean the packaging containers to meet quality standards. In the prior art, there are mainly two ways to clean the containers: one way is to use water for cleaning, and the other way is to use high - speed and clean compressed air to clean the inner cavity of the container. However, since the containers for food have high hygiene requirements, after the containers are cleaned, they also need to be disinfected and sterilized through a sterilization kettle. Therefore, all existing conventional bottle washing machines need to be additionally equipped with special equipment for disinfection in order to thoroughly clean the food packaging containers to meet the hygiene standards of the packaging containers, resulting in large investment in existing equipment for cleaning food packaging containers and large floor area of the equipment.

[0003] The technical problem to be solved by this application is: how to solve the problem that the existing food container cleaning equipment needs to be additionally equipped with disinfection equipment for cleaning, resulting in large equipment cost investment and bloated volume. Content of the Utility Model

[0004] In order to overcome the deficiencies of the prior art, the purpose of the utility model is to provide a flip - type high - temperature disinfection bottle flushing machine, which can use a blowing pipe to spray high - temperature and high - pressure steam into the packaging bottle to disinfect and clean the packaging bottle, and then spray compressed air into the packaging bottle to dry the water on the packaging bottle and cool it down, with the characteristics of thorough cleaning, high efficiency and speed.

[0005] The technical solution adopted by the utility model is: a flip - type high - temperature disinfection bottle flushing machine, including a frame, a bottle feeding mechanism, a bottle clamping and flipping mechanism, and a disinfection and blowing mechanism respectively installed on the frame. The bottle feeding mechanism includes a conveyor belt for conveying the bottle body;

[0006] The bottle clamping and flipping mechanism includes two relatively arranged bottle clamping members, a bottle clamping power member for controlling the two bottle clamping members to approach or move away from each other, a flipping power member for driving the two bottle clamping members to rotate, a first lifting power member for driving the two bottle clamping members to lift, and a translational power member for driving the two bottle clamping members to move horizontally. A guide rod is slidably connected between the two bottle clamping members. The bottle clamping power member is installed on the guide rod. The output end of the flipping power member is connected to the guide rod. The output end of the first lifting power member is connected to the flipping power member. The output end of the translational power member is connected to the first lifting power member;

[0007] The disinfection blowing bottle mechanism includes at least one blowing bottle tube, a steam generator and a compressed air generator that are respectively communicated with the blowing bottle tube. The blowing bottle tube is arranged on one side of the conveyor belt. A first control valve is arranged between the steam generator and the blowing bottle tube, and a second control valve is arranged between the compressed air generator and the blowing bottle tube.

[0008] For the flip - type high - temperature disinfection bottle rinsing machine of the present application, the bottle clamping power component drives two bottle clamping components to approach each other to clamp the bottle on the conveyor belt. Then, the first lifting power component drives the two bottle clamping components and the bottle to rise. After rising to a certain height, the flipping power component drives the two bottle clamping components and the bottle to flip 180°. Then, the translation power component drives the two bottle clamping components to drive the bottle to translate directly above the blowing bottle tube. The first control valve is opened, and the second control valve is closed. The blowing bottle tube first sprays high - temperature and high - pressure water vapor into the bottle to clean and disinfect the inner wall of the bottle. When the cleaning and disinfection are completed, the first control valve is closed, and the second control valve is opened. The blowing bottle tube sprays high - pressure compressed air into the bottle to blow dry the water on the bottle and cool the bottle. After being blown dry, the bottle is flipped 180° by the bottle clamping and flipping mechanism, translated and lowered back onto the conveyor belt, completing the cleaning, disinfection and drying processes of the bottle. The flip - type high - temperature disinfection bottle rinsing machine of the present application uses high - pressure steam to clean and disinfect the bottle, can achieve the cleaning and disinfection of the bottle on one device, has a more compact equipment structure, higher cleaning efficiency, and can save the cost of investing in packaging container cleaning equipment at the same time.

[0009] In some embodiments, the disinfection blowing bottle mechanism further includes a second lifting power component. The output end of the second lifting power component is connected to the blowing bottle tube to drive the blowing bottle tube to lift and lower.

[0010] Adopting the above - mentioned technical solution, during cleaning and disinfection, the second lifting power component can lift the blowing bottle tube and insert it into the bottle to make the cleaning and disinfection inside the bottle more thorough; during blowing dry, the second lifting power component can drive the blowing bottle tube to blow while descending, which can blow dry the inside and outside of the bottle and make the bottle dry and cool more thoroughly; during the flipping and translation of the bottle, the second lifting power component drives the blowing bottle tube to descend to prevent the blowing bottle tube from interfering with the bottle and the bottle clamping and flipping mechanism.

[0011] In some embodiments, the number of blowing bottle tubes is multiple. The output end of the second lifting power component is connected with a nozzle mounting plate. The nozzle mounting plate is provided with a long - strip - shaped mounting groove, and each blowing bottle tube is slidably connected with the mounting groove.

[0012] Adopting the above - mentioned technical solution, the number of blowing bottle tubes can be increased or decreased according to actual needs to make the number of blowing bottle tubes match the number of bottles cleaned each time. By providing a mounting groove on the nozzle mounting plate, it is convenient to adjust the distance between adjacent two blowing bottle tubes to match the distance between the bottles on the bottle clamping component.

[0013] In some embodiments, the disinfection blow - bottle mechanism further includes a first manifold pipe and a second manifold pipe. The number of connectors on the first manifold pipe and the second manifold pipe is greater than or equal to the number of blow - bottle pipes. The first manifold pipe connects the first control valve and each blow - bottle pipe, and the second manifold pipe connects the second control valve and each blow - bottle pipe.

[0014] With the above - mentioned technical solution, by setting the first manifold pipe, multiple steam pipelines can be branched out according to requirements, so that different numbers of blow - bottle pipes can be adapted; similarly, the second manifold pipe can branch out multiple compressed - air pipelines according to requirements, so that different numbers of blow - bottle pipes can be adapted.

[0015] In some embodiments, the disinfection blow - bottle mechanism further includes a second lifting frame. The second lifting frame includes a second lifting guide rod fixedly connected to the frame, a first lifting plate and a second lifting plate slidably connected to the second lifting guide rod, and a second lead screw connecting the first lifting plate and the frame. The second lifting power member is installed on the first lifting plate, the output end of the second lifting power member is connected to the second lifting plate, the blow - bottle pipe is connected to the second lifting plate, and the second lead screw sequentially passes through the frame and the second lifting plate and is threadedly connected to the first lifting plate.

[0016] With the above - mentioned technical solution, by setting the second lifting frame, the blow - bottle pipe can be adapted to bottles of different heights without changing the stroke of the second lifting power member, so as to expand the applicable range of the bottle - rinsing machine of the present application.

[0017] In some embodiments, the bottle - clamping and flipping mechanism further includes a first lifting frame. The first lifting frame includes a first lifting guide post fixedly connected to the frame, a lifting mounting seat slidably connected to the first lifting guide post, and a first lead screw connected to the lifting mounting seat. The first lead screw passes through the frame and is threadedly connected to the lifting mounting seat. The translation power member is installed on the lifting mounting seat, and the first lifting power member is slidably connected to the lifting mounting seat.

[0018] With the above - mentioned technical solution, by setting the first lifting frame, the bottle - clamping and flipping mechanism can be adapted to bottles of different heights, so that the bottle - rinsing machine of the present application has good versatility.

[0019] In some embodiments, the bottle - clamping and flipping mechanism further includes a translation mounting seat. The translation mounting seat is slidably connected to the lifting mounting seat. The output end of the translation power member is connected to the translation mounting seat, and the first lifting power member is installed on the translation mounting seat.

[0020] In some embodiments, the flipping power member is arranged at one end of the bottle - clamping member, and a bearing seat rotatably connected to the guide rod is arranged at the other end of the bottle - clamping member.

[0021] In some embodiments, the bottle feeding mechanism further includes a first bottle blocking member and a second bottle blocking member that are spaced apart along the length direction of the conveyor belt. The first bottle blocking member includes a first baffle and a first bottle blocking power member for driving the first baffle to expand and contract. The second bottle blocking member includes a second baffle and a second bottle blocking power member for driving the second baffle to expand and contract. A bottle incoming detection member is provided on the side of the first bottle blocking member away from the second bottle blocking member, and a bottle outgoing detection member is provided on the side of the second bottle blocking member away from the first bottle blocking member.

[0022] With the above technical solution, by providing the first bottle blocking member and the second bottle blocking member, a preset number of bottles can be intercepted on the conveyor belt to facilitate the clamping member to grab the bottles. By providing the bottle incoming detection member and the bottle outgoing detection member, it is convenient to control the expansion and contraction of the first baffle and the second baffle.

[0023] In some embodiments, an exhaust fan and a water collecting basin are provided on the frame. The exhaust fan is provided at the top of the frame, and the water collecting basin is provided at the bottom of the bottle feeding mechanism, the bottle clamping and flipping mechanism, and the disinfection and bottle blowing mechanism.

[0024] With the above technical solution, the exhaust fan is used to exhaust the water vapor inside the frame, reduce the accumulation of water vapor inside the frame, and prevent the water vapor from condensing on the surface of the bottles, affecting the cleaning effect of the bottles; the water collecting basin is used to collect the condensed water and drain it out of the frame centrally to prevent the condensed water from flowing randomly inside the frame. Description of the Drawings

[0025] Figure 1 is a schematic structural diagram of a flip - type high - temperature disinfection and bottle rinsing machine according to a preferred embodiment of the present invention;

[0026] Figure 2 is Figure 1 a schematic structural diagram of another perspective of the flip - type high - temperature disinfection and bottle rinsing machine shown in

[0027] Figure 3 is Figure 1 a schematic structural diagram of the bottle feeding mechanism in the flip - type high - temperature disinfection and bottle rinsing machine shown in

[0028] Figure 4 is Figure 1 a schematic structural diagram of the bottle clamping and flipping mechanism in the flip - type high - temperature disinfection and bottle rinsing machine shown in

[0029] Figure 5 is Figure 4 a schematic structural diagram of the bottle clamping member, the guide rod, and the bottle clamping power member in the bottle clamping and flipping mechanism shown in

[0030] Figure 6 is Figure 1 a schematic structural diagram of the disinfection and bottle blowing mechanism in the flip - type high - temperature disinfection and bottle rinsing machine shown in

[0031] In the figure: 100, a flip - type high - temperature disinfection bottle rinsing machine; 10, a frame; 11, an exhaust fan; 12, a water collecting basin; 20, a bottle feeding mechanism; 21, a conveyor belt; 22, a first bottle blocking member; 221, a first baffle; 222, a first bottle blocking power member; 23, a second bottle blocking member; 231, a second baffle; 232, a second bottle blocking power member; 24, an incoming bottle detection member; 25, an outgoing bottle detection member; 30, a bottle clamping and flipping mechanism; 31, a bottle clamping member; 32, a bottle clamping power member; 33, a flipping power member; 34, a first lifting power member; 35, a translation power member; 36, a guide rod; 37, a first lifting frame; 371, a first lifting guide post; 372, a lifting mounting seat; 373, a first lead screw; 38, a translation mounting seat; 39, a bearing seat; 40, a disinfection and bottle blowing mechanism; 41, a blowing pipe; 42, a first control valve; 43, a second control valve; 44, a second lifting power member; 45, a nozzle mounting plate; 46, a first manifold pipe; 47, a second manifold pipe; 48, a second lifting frame; 481, a second lifting guide rod; 482, a first lifting plate; 483, a second lifting plate; 484, a second lead screw. Detailed implementation manners

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0033] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. When the number of an element is referred to as having "a plurality", it can be any number of two or more. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only implementation manner.

[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present invention belongs. The terms used in the description of the present invention herein are only for the purpose of describing specific implementation manners and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0035] Please refer to Figures 1 to 6, a flip - type high - temperature disinfection bottle rinsing machine 100 according to a preferred embodiment of the present utility model, includes a frame 10, a bottle feeding mechanism 20, a bottle clamping and flipping mechanism 30, and a disinfection and bottle blowing mechanism 40 respectively installed on the frame 10. The bottle feeding mechanism 20 is used for conveying bottles. The bottle clamping and flipping mechanism 30 is used for clamping bottles and flipping the bottles 180° so that the bottle mouths face downward. The disinfection and bottle blowing mechanism 40 is used for cleaning and disinfecting the inside of the bottles, and drying the bottles and reducing the temperature of the bottles after cleaning and disinfection.

[0036] As Figure 1 shown in connection with Figure 3 , the bottle feeding mechanism 20 includes a conveyor belt 21 for conveying the bottle bodies. In this embodiment, the conveyor belt 21 is a stainless - steel flat chain conveyor belt. Further, the bottle feeding mechanism 20 further includes a first bottle blocking member 22 and a second bottle blocking member 23 arranged at intervals along the length direction of the conveyor belt 21. The first bottle blocking member 22 includes a first baffle 221 and a first bottle blocking power member 222 for driving the first baffle 221 to expand and contract. The second bottle blocking member 23 includes a second baffle 231 and a second bottle blocking power member 232 for driving the second baffle 231 to expand and contract. A bottle incoming detection member 24 is arranged on the side of the first bottle blocking member 22 away from the second bottle blocking member 23, and a bottle outgoing detection member 25 is arranged on the side of the second bottle blocking member 23 away from the first bottle blocking member 22. By setting the first bottle blocking member 22 and the second bottle blocking member 23, a preset number of bottles can be intercepted on the conveyor belt 21 to facilitate the gripper 31 to grab the bottles. By setting the bottle incoming detection member 24 and the bottle outgoing detection member 25, it is convenient to control the expansion and contraction of the first baffle 221 and the second baffle 231. In this embodiment, the first bottle blocking power member 222 and the second bottle blocking power member 232 are cylinders, and both the bottle incoming detection member 24 and the bottle outgoing detection member 25 are micro - switches.

[0037] Please refer to Figure 1 , Figure 2 and Figure 4 simultaneously. The bottle clamping and flipping mechanism 30 includes two relatively arranged grippers 31, a bottle clamping power member 32 for controlling the two grippers 31 to approach or separate from each other, a flipping power member 33 for driving the two grippers 31 to rotate, a first lifting power member 34 for driving the two grippers 31 to lift, and a translation power member 35 for driving the two grippers 31 to move horizontally. A guide rod 36 is slidably connected between the two grippers 31. The bottle clamping power member 32 is installed on the guide rod 36. The output end of the flipping power member 33 is connected to the guide rod 36. The output end of the first lifting power member 34 is connected to the flipping power member 33. The output end of the translation power member 35 is connected to the first lifting power member 34.

[0038] Further, the bottle clamping and flipping mechanism 30 further includes a first lifting frame 37. The first lifting frame 37 includes a first lifting guide post 371 fixedly connected to the frame 10, a lifting mounting seat 372 slidably connected to the first lifting guide post 371, and a first lead screw 373 connected to the lifting mounting seat 372. The first lead screw 373 passes through the frame 10 and is threadedly connected to the lifting mounting seat 372. The translation power member 35 is installed on the lifting mounting seat 372, and the first lifting power member 34 is slidably connected to the lifting mounting seat 372. By providing the first lifting frame 37, the bottle clamping and flipping mechanism 30 can adapt to bottles of different heights, making the bottle rinsing machine of the present application have good versatility. Preferably, a first runner (not shown in the figure) is further provided on the first lead screw 373. By turning the first runner, the lifting mounting seat 372 can be driven to lift and lower.

[0039] Furthermore, the bottle clamping and flipping mechanism 30 further includes a translation mounting seat 38. The translation mounting seat 38 is slidably connected to the lifting mounting seat 372. The output end of the translation power member 35 is connected to the translation mounting seat 38, and the first lifting power member 34 is installed on the translation mounting seat 38.

[0040] Optionally, the flipping power member 33 is provided at one end of the bottle clamping member 31, and a bearing seat 39 rotatably connected to the guide rod 36 is provided at the other end of the bottle clamping member 31.

[0041] In this embodiment, the bottle clamping power member 32, the first lifting power member 34, and the translation power member 35 are all cylinders.

[0042] In this embodiment, the number of the bottle clamping power members 32 is four. Two of them are provided at one end of the bottle clamping member 31, and the other two are provided at the other end of the bottle clamping member 31. And the two bottle clamping power members 32 provided at one end of the bottle clamping member 31 are arranged oppositely. The number of the first lifting power members 34 and the translation power members 35 is both two. The two first lifting power members 34 and the two translation power members 35 are respectively provided at both ends of the bottle clamping member 31.

[0043] Preferably, the flipping power member 33 is a servo motor. Using a servo motor as the flipping power member 33, because the rotation accuracy of the servo motor is higher, it can ensure the flipping accuracy of the bottle, and can make the bottle more stable during the flipping process, and the speed can be controlled, effectively preventing the problem of shaking during the flipping process of the bottle, and being safer and more reliable.

[0044] Such as Figure 5As shown, in order to better clamp the bottle by the bottle clamping members 31, a number of positioning grooves (not labeled in the figure) corresponding to the neck of the bottle are provided on one side where the two bottle clamping members 31 approach each other, and an elastic member (not labeled in the figure) is further provided below the positioning grooves. When the two bottle clamping members 31 approach each other to clamp the bottle, the positioning grooves on the two bottle clamping members 31 will form a positioning ring to wrap the bottleneck part of the bottle, and the elastic member will closely adhere to the body part of the bottle to improve the clamping stability.

[0045] As Figure 2 shown Figure 6 As shown, the disinfection blow - bottle mechanism 40 includes at least one blow - bottle tube 41, a steam generator (not shown in the figure) and a compressed - air generator (not shown in the figure) respectively communicated with the blow - bottle tube 41. The blow - bottle tube 41 is arranged on one side of the conveyor belt 21. A first control valve 42 is arranged between the steam generator and the blow - bottle tube 41, and a second control valve 43 is arranged between the compressed - air generator and the blow - bottle tube 41.

[0046] Furthermore, the disinfection blow - bottle mechanism 40 further includes a second lifting power member 44. The output end of the second lifting power member 44 is connected to the blow - bottle tube 41 to drive the blow - bottle tube 41 to lift. During cleaning and disinfection, the second lifting power member 44 can lift the blow - bottle tube 41 and insert it into the bottle interior to make the cleaning and disinfection of the bottle interior more thorough; during drying, the second lifting power member 44 can drive the blow - bottle tube 41 to blow while descending, which can dry the interior and exterior of the bottle to make the bottle drying and cooling more thorough; during the process of bottle flipping and translation, the second lifting power member 44 drives the blow - bottle tube 41 to descend to prevent the blow - bottle tube 41 from interfering with the bottle and the bottle - clamping flipping mechanism 30.

[0047] In this embodiment, the number of blow - bottle tubes 41 is multiple. The output end of the second lifting power member 44 is connected with a nozzle mounting plate 45. The nozzle mounting plate 45 is provided with a long - strip - shaped mounting groove (not labeled in the figure). Each blow - bottle tube 41 is slidably connected to the mounting groove. The number of blow - bottle tubes 41 can be increased or decreased according to actual needs to make the number of blow - bottle tubes 41 match the number of bottles cleaned each time. By providing the mounting groove on the nozzle mounting plate 45, it is convenient to adjust the distance between two adjacent blow - bottle tubes 41 to match the bottle spacing on the bottle clamping members 31.

[0048] Further, the disinfection bottle blowing mechanism 40 further includes a first manifold pipe 46 and a second manifold pipe 47. The number of connectors on the first manifold pipe 46 and the second manifold pipe 47 is greater than or equal to the number of bottle blowing pipes 41. The first manifold pipe 46 connects the first control valve 42 and each bottle blowing pipe 41, and the second manifold pipe 47 connects the second control valve 43 and each bottle blowing pipe 41. By providing the first manifold pipe 46, multiple steam pipelines can be branched according to requirements, so as to adapt to different numbers of bottle blowing pipes 41; similarly, the second manifold pipe 47 can branch multiple compressed air pipelines according to requirements, so as to adapt to different numbers of bottle blowing pipes 41.

[0049] Preferably, the disinfection bottle blowing mechanism 40 further includes a second lifting frame 48. The second lifting frame 48 includes a second lifting guide rod 481 fixedly connected to the frame 10, a first lifting plate 482 and a second lifting plate 483 slidably connected to the second lifting guide rod 481, and a second lead screw 484 connecting the first lifting plate 482 and the frame 10. The second lifting power member 44 is installed on the first lifting plate 482, the output end of the second lifting power member 44 is connected to the second lifting plate 483, the bottle blowing pipe 41 is connected to the second lifting plate 483, and the second lead screw 484 sequentially passes through the frame 10 and the second lifting plate 483 and is threadedly connected to the first lifting plate 482. By providing the second lifting frame 48, the bottle blowing pipe 41 can be adapted to bottles of different heights without changing the stroke of the second lifting power member 44, so as to expand the application range of the bottle rinsing machine of the present application. In this embodiment, a second runner (not labeled in the figure) is provided on the second lead screw 484.

[0050] As Figure 1 And Figure 2 As shown, an exhaust fan 11 and a water collecting basin 12 are provided on the frame 10. The exhaust fan 11 is provided at the top of the frame 10, and the water collecting basin 12 is provided at the bottom of the bottle feeding mechanism 20, the bottle clamping and flipping mechanism 30, and the disinfection bottle blowing mechanism 40. The exhaust fan 11 is used to exhaust the water vapor inside the frame 10, reduce the accumulation of water vapor inside the frame 10, and prevent the water vapor from condensing on the surface of the bottle; the water collecting basin 12 is used to collect the condensed water and discharge it centrally from inside the frame 10 to prevent the condensed water from flowing randomly inside the frame 10.

[0051] The flip - type high - temperature disinfection bottle rinsing machine 100 of the present application. The bottle clamping power component 32 drives two bottle clamping components 31 to approach each other to clamp the bottle on the conveyor belt 21. Then, the first lifting power component 34 drives the two bottle clamping components 31 and the bottle to rise. After rising to a certain height, the flipping power component 33 drives the two bottle clamping components 31 and the bottle to flip 180°. Then, the translation power component 35 drives the two bottle clamping components 31 to drive the bottle to translate to directly above the blowing pipe 41. The first control valve 42 is opened, and the second control valve 43 is closed. The blowing pipe 41 first sprays high - temperature and high - pressure water vapor into the bottle to clean and disinfect the inner wall of the bottle. When the cleaning and disinfection are completed, the first control valve 42 is closed, and the second control valve 43 is opened. The blowing pipe 41 sprays high - pressure compressed air into the bottle to blow dry the water on the bottle and cool the bottle. The blown - dry bottle is then flipped 180° by the bottle clamping and flipping mechanism 30, translated and lowered back onto the conveyor belt 21, completing the cleaning, disinfection, and drying processes of the bottle. The flip - type high - temperature disinfection bottle rinsing machine 100 of the present application uses high - pressure steam to clean and disinfect the bottle, can achieve the cleaning and disinfection of the bottle on one device, has a more compact equipment structure, higher cleaning efficiency, and can save the cost of investing in packaging container cleaning equipment.

[0052] Finally, it should be noted that the above are only preferred examples of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A reversing high-temperature sterilizing bottle washing machine, comprising a frame (10), a bottle feeding mechanism (20) respectively mounted on the frame (10), a bottle clamping and reversing mechanism (30) and a sterilizing and blowing mechanism (40), wherein the bottle feeding mechanism (20) comprises a conveyor belt (21) for conveying bottles, and is characterized in that: The bottle clamping and flipping mechanism (30) comprises two bottle clamping members (31) arranged opposite to each other, a bottle clamping power member (32) for controlling the two bottle clamping members (31) to move closer to or farther from each other, a flipping power member (33) for driving the two bottle clamping members (31) to rotate, a first lifting power member (34) for driving the two bottle clamping members (31) to move up and down, and a translation power member (35) for driving the two bottle clamping members (31) to move horizontally, a guide rod (36) being slidably connected between the two bottle clamping members (31), the bottle clamping power member (32) being mounted on the guide rod (36), an output end of the flipping power member (33) being connected to the guide rod (36), an output end of the first lifting power member (34) being connected to the flipping power member (33), and an output end of the translation power member (35) being connected to the first lifting power member (34); The sterilizing bottle blowing mechanism (40) comprises at least one bottle blowing pipe (41), a steam generator and a compressed air generator respectively connected to the bottle blowing pipe (41); the bottle blowing pipe (41) is arranged on one side of the conveyor belt (21); a first control valve (42) is arranged between the steam generator and the bottle blowing pipe (41); and a second control valve (43) is arranged between the compressed air generator and the bottle blowing pipe (41).

2. The flip-type high temperature sterilizing bottle washing machine according to claim 1, characterized in that: The sterilizing bottle blowing mechanism (40) further comprises a second lifting power member (44), the output end of which is connected to the bottle blowing tube (41) for driving the bottle blowing tube (41) to move up and down.

3. The flip-type high temperature sterilizing bottle washing machine according to claim 2, characterized in that: The number of the bottle blowing tubes (41) is multiple, and the output end of the second lifting power member (44) is connected to a nozzle mounting plate (45). The nozzle mounting plate (45) is provided with a long strip mounting groove, and each of the bottle blowing tubes (41) is slidably connected to the mounting groove.

4. The flip-type high temperature sterilizing bottle washing machine according to claim 3, characterized in that: The sterilizing bottle blowing mechanism (40) further comprises a first manifold pipe (46) and a second manifold pipe (47), wherein the number of joints on the first manifold pipe (46) and the second manifold pipe (47) is greater than or equal to the number of bottle blowing pipes (41), the first manifold pipe (46) connects the first control valve (42) and each bottle blowing pipe (41), and the second manifold pipe (47) connects the second control valve (43) and each bottle blowing pipe (41).

5. The flip-type high temperature sterilizing bottle washing machine according to claim 2, characterized in that: The sterilizing bottle blowing mechanism (40) further comprises a second lifting frame (48), the second lifting frame (48) comprising a second lifting guide rod (481) fixedly connected to the frame (10), a first lifting plate (482) and a second lifting plate (483) slidably connected to the second lifting guide rod (481), and a second lead screw (484) connecting the first lifting plate (482) and the frame (10); the second lifting power member (44) is mounted on the first lifting plate (482), the output end of the second lifting power member is connected to the second lifting plate (483), the bottle blowing tube (41) is connected to the second lifting plate (483), and the second lead screw (484) is sequentially passed through the frame (10) and the second lifting plate (483) and is threadedly connected to the first lifting plate (482).

6. The flip-type high temperature sterilizing bottle washing machine according to claim 1, characterized in that: The bottle clamping and turning mechanism (30) further comprises a first lifting frame (37), the first lifting frame (37) comprising a first lifting guide column (371) fixedly connected to the frame (10), a lifting mounting seat (372) slidably connected to the first lifting guide column (371), and a first lead screw (373) connected to the lifting mounting seat (372), the first lead screw (373) passing through the frame (10) and being threadedly connected to the lifting mounting seat (372), the translation force member (35) being mounted on the lifting mounting seat (372), and the first lifting power member (34) being slidably connected to the lifting mounting seat (372).

7. The flip-type high temperature sterilizing bottle washing machine according to claim 6, characterized in that: The bottle clamping and flipping mechanism (30) further comprises a translation mounting seat (38), wherein the translation mounting seat (38) is slidably connected to the lifting mounting seat (372), the output end of the translation power member (35) is connected to the translation mounting seat (38), and the first lifting power member (34) is mounted on the translation mounting seat (38).

8. The flip-type high temperature sterilizing bottle washing machine according to claim 1, characterized in that: The turning power member (33) is arranged at one end of the bottle clamping member (31), and the other end of the bottle clamping member (31) is provided with a bearing seat (39) rotatably connected to the guide rod (36).

9. The flip-type high temperature sterilizing bottle rinser according to claim 1, characterized in that: The bottle conveying mechanism (20) further comprises a first bottle blocking member (22) and a second bottle blocking member (23) which are arranged at intervals along the length direction of the conveyor belt (21); the first bottle blocking member (22) comprises a first baffle plate (221) and a first bottle blocking power member (222) for driving the first baffle plate (221) to extend and retract; the second bottle blocking member (23) comprises a second baffle plate (231) and a second bottle blocking power member (232) for driving the second baffle plate (231) to extend and retract; a bottle incoming detection member (24) is arranged on a side of the first bottle blocking member (22) away from the second bottle blocking member (23); and a bottle removed detection member (25) is arranged on a side of the second bottle blocking member (23) away from the first bottle blocking member (22).

10. The flip-type high temperature sterilizing bottle washing machine according to claim 1, characterized in that: An exhaust fan (11) and a water collection basin (12) are arranged on the frame (10); the exhaust fan (11) is arranged on the top of the frame (10); and the water collection basin (12) is arranged on the bottom of the bottle feeding mechanism (20), the bottle clamping and turning mechanism (30) and the sterilizing and blowing mechanism (40).