Turnover type bottle washing device and bottle washing machine thereof
Through the design of the flip-type bottle washing device, efficient cleaning of bottles of different specifications is achieved, solving the problems of low applicability and cleaning efficiency of existing equipment, improving production efficiency and cleaning quality, and ensuring the safety and stability of the equipment.
Patent Information
- Application Number
- CN202422503091.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-10-16
AI Technical Summary
Existing bottle washing equipment has poor applicability to packaging bottles of different specifications and sizes, is complex to adjust, has low cleaning efficiency, and is difficult to meet the needs of efficient production. In addition, the cleaning effect of traditional devices is limited when processing bottles of various specifications.
A flip-type bottle washing device is designed, which includes a flip component and a cleaning component. It adopts a clamping mechanism and an ion wind generator. Through the combination of a rotating shaft and a clamping plate, it can realize automatic cleaning of bottles of various specifications and use ion wind for efficient cleaning.
It improves production efficiency, has strong adaptability, can adapt to bottles of different widths, has good cleaning effect, ensures safe and stable operation of the equipment, monitors the bottle status in real time, and avoids bottle blockage and bottle fall problems.
Smart Images

Figure CN223454783U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to bottle washing machine technical field, specifically point to a kind of turnover type bottle washing device and its bottle washing machine. BACKGROUND
[0002] In order to ensure the hygiene and safety of food and drug packaging bottles, it is necessary to clean these packaging bottles before formal production and filling. Although these packaging bottles have undergone strict disinfection and cleaning during the shaping and factory stage, they may still adsorb some particles during storage and transportation, and before filling production. Therefore, it is necessary to completely remove these potential particles before filling.
[0003] Ion wind cleaning is an effective cleaning method, which generates charged ions through an ion generator, eliminates the static electricity of adsorbed particles in the bottle, makes them separate from the bottle, and effectively collects dust. However, the existing bottle washing method has some limitations: some bottle washing equipment can only be used for cleaning specific bottle types, and the application of bottle types is single. For packaging bottles of different specifications and sizes, the operation of adjusting or replacing equipment components is relatively complex. The traditional bottle washing method cleans the transported bottles accordingly, and the cleaning efficiency is not high, which may not meet the high efficiency requirement of the production line, thereby reducing the production efficiency of the whole line equipment. The bottle to be cleaned may have different specifications, and the height of the bottle changes, so the distance between the ion generator and the bottle body needs to be adjusted to ensure that the charged ions can effectively enter the bottle, avoid limiting the cleaning effect, and the operation of adjusting the distance of the general cleaning device is relatively cumbersome. In the production process, multiple specifications of bottles may need to be processed, and an automatic bottle washing equipment that can adapt to multiple specifications of bottles is needed to meet the production needs. UTILITY MODEL CONTENTS
[0004] In order to overcome the problems of the prior art, the utility model designs a turnover type bottle washing device and its bottle washing machine, which can efficiently complete bottle cleaning.
[0005] To solve the above technical problems, the utility model takes the following technical scheme: a turnover type bottle washing device and its bottle washing machine, comprising a turnover assembly and a cleaning assembly; the turnover assembly comprises a rotating shaft, a turnover driving member and a bottom plate, the bottom plate has two, two bottom plates are respectively installed on the upper and lower sides of the rotating shaft, and the turnover driving member is used to drive the rotating shaft to rotate; a clamping mechanism is installed on the bottom plate, the clamping mechanism comprises a first clamping plate, a second clamping plate and a clamping plate driving mechanism, the first clamping plate and the second clamping plate are respectively arranged on the two sides of the bottom plate, the clamping plate driving mechanism is used to drive the second clamping plate to move, the second clamping plate and the first clamping plate clamp the bottle located on the bottom plate, and the cleaning assembly is located below the turnover assembly, and the cleaning assembly comprises a plurality of ion wind generators.
[0006] Further, the cleaning assembly further comprises a lifting driving mechanism, the ion wind generators are all installed on the lifting driving mechanism, and the lifting driving mechanism is used to drive the ion wind generators to rise so that the blowing pipes of the ion wind generators extend into the bottle mouths of the bottles.
[0007] Further, the lifting driving mechanism comprises a fixed base and a lifting plate, four lead screws are installed on the top of the fixed base through bearings, four mouthguards are fixedly arranged on the lifting plate, the lead screws are matched with the mouthguards, chain wheels are fixedly installed at the bottom ends of the lead screws, the chain wheels are located in the fixed base, a motor is arranged on one side of the fixed base, the motor drives the four chain wheels to synchronously rotate through chains, and the lead screws rotate together with the chain wheels.
[0008] Further, the cleaning assembly further comprises sliding rails, a moving base and a moving driving member, the ion wind generators are installed on the lifting driving mechanism through the moving base and the sliding rails, two parallel sliding rails are installed on the lifting driving mechanism, the moving base is installed on the sliding rails, the moving base can move along the sliding rails to adjust the position under the drive of the moving driving member, and the ion wind generators are installed on the moving base.
[0009] Further, the clamping mechanism further comprises adjusting supports, the adjusting supports are two, the adjusting supports are fixed to the two sides of the bottom plate respectively, the adjusting support comprises a first guide rod, an end plate, a clamping plate mounting plate and an adjusting lead screw, the first guide rods are two, one end of the first guide rods is installed on one side of the bottom plate, the other end of the first guide rods is connected with the end plate, the clamping plate mounting plate is provided with two first guide sleeves, the first guide sleeves are matched with the first guide rods, the clamping plate mounting plate can move along the first guide rods, the first clamping plate is installed on the clamping plate mounting plate on one side of the bottom plate, and the second clamping plate is installed on the clamping plate mounting plate on the other side of the bottom plate through the clamping plate driving mechanism, the end plate is provided with the adjusting lead screw through a bearing at the middle portion, the adjusting lead screw is rotatable, the clamping plate mounting plate is provided with a threaded hole, the adjusting lead screw is matched with the threaded hole, the position of the clamping plate mounting plate can be adjusted by rotating the adjusting lead screw, and then the initial positions of the first clamping plate and the second clamping plate are adjusted. The adjusting supports are arranged, the initial widths of the first clamping plate and the second clamping plate can be adjusted, and the bottle bodies with different widths can be adapted.
[0010] Further, the clamping plate driving mechanism comprises a second guide rod, a second guide sleeve and a driving cylinder, the second guide sleeve is installed on the clamping plate mounting plate, the second guide rod is matched with the second guide sleeve, the second guide rod and the second guide sleeve are both provided with two, the second clamping plate is fixed at the ends of the two second guide rods, and the driving cylinder is fixed on the clamping plate mounting plate.
[0011] Further, a plurality of T-shaped grooves are horizontally arranged on the first clamping plate and the second clamping plate, and flexible strips are arranged in the T-shaped grooves for clamping bottles.
[0012] As shown in the drawings, a bottle washing machine applying the above-mentioned turnover bottle washing device comprises a feeding mechanism, a bottle pushing assembly, a bottle blocking mechanism and a material distributing mechanism. The feeding mechanism comprises an input conveying belt, both sides of the input conveying belt are provided with baffle plates, and the input conveying belt is used for conveying bottles to be washed to the turnover assembly. The upper surface of the input conveying belt is flush with the upper surface of the bottom plate on the upper side of the rotating shaft. The bottle pushing assembly comprises a horizontal driving member, a front lifting rod, a rear lifting rod, a front pushing piece and a rear pushing piece. The front lifting rod and the rear lifting rod are both installed on the horizontal driving member. The front pushing piece is installed below the front lifting rod, and the rear pushing piece is installed below the rear lifting rod. The front pushing piece and the rear pushing piece are used for blocking the front and rear ends of the next batch of bottles to be washed on the input conveying belt. The horizontal driving member drives the front lifting rod and the rear lifting rod to move horizontally synchronously. During the movement, the distance between the front lifting rod and the rear lifting rod remains unchanged. The rear pushing piece pushes the bottles that have been washed on the bottom plate on the upper side away from the turnover assembly and discharges the bottles. The front pushing piece pushes the bottles to be washed onto the bottom plate on the upper side. The bottle blocking mechanism comprises a bottle blocking driving member and a bottle blocking plate. The material distributing mechanism comprises a material distributing driving member and a material distributing plate. The bottle blocking driving member drives the bottle blocking plate to extend and retract. The material distributing driving member drives the material distributing plate to extend and retract. The bottle blocking plate and the material distributing plate are used for blocking the front and rear of the next batch of bottles to be washed. When the rear pushing piece is lowered, the rear pushing piece is located on the side of the bottle blocking plate close to the turnover assembly. When the front pushing piece is lowered, the front pushing piece is located on the side of the material distributing plate close to the turnover assembly.
[0013] Further, a to-position detection sensor and a material accumulation detection sensor are arranged above the input conveying belt. The to-position detection sensor is arranged at the bottle blocking plate, and the material accumulation detection sensor is arranged at the material distributing plate.
[0014] Furthermore, a bottle-fall detection sensor group is provided above the feed conveyor belt. The bottle-fall detection sensor group includes two upper and lower detection sensors. The detection sensors are photoelectric sensors. The lower detection sensor is located at a height lower than the height of the bottle when it falls, while the upper detection sensor is located at a height higher than the height of the bottle when it falls. A bottle-fall detection can be detected when the upper detection sensor does not detect the presence of a bottle.
[0015] The flip-type bottle washing device and the bottle washing machine of the utility model have the following beneficial effects: the flip assembly is provided with clamping mechanisms at the top and bottom, and the clamping mechanisms can clamp multiple bottles at a time. When the flip assembly flips a batch of bottles to the bottom for ion wind cleaning, the bottles that have completed cleaning are flipped to the top, removed and fed into the next batch of bottles to be cleaned, thereby improving production efficiency; the adaptability is strong, and the design of the bracket and the clamping plate driving mechanism can be adjusted to adapt to bottles of different widths, thereby increasing the versatility and flexibility of the equipment; the cleaning effect is good, and the ion wind generated by the ion wind generator is used for cleaning, which can more effectively remove dirt and impurities inside and outside the bottle and improve the cleaning quality; the safety is high, and by setting the in-place detection sensor, the material storage detection sensor and the bottle-falling detection sensor group, the bottle status can be monitored in real time to avoid problems such as bottle blockage and bottle-falling, thereby ensuring the safe and stable operation of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a structural diagram of a flip-type bottle washing device of the present invention;
[0017] Figure 2 This is a structural schematic diagram of a flip assembly of a flip-type bottle washing device of the present invention;
[0018] Figure 3 The utility model is a structural schematic diagram of a bottle washing machine.
[0019] Wherein, 1 - feeding mechanism, 11 - feeding conveyor, 111 - to the position detection sensor, 112 - storage detection sensor, 12 - bottle detection sensor group, 2 - turnover assembly, 21 - rotating shaft, 22 - turnover drive, 23 - bottom plate, 3 - cleaning assembly, 31 - ion wind generator, 311 - air pipe, 32 - lifting drive mechanism, 321 - fixed base, 322 - lifting plate, 323 - lead screw, 324 - mouthpiece, 33 - slide rail, 34 - moving base, 35 - moving drive, 4 - clamping mechanism, 41 - first clamping plate, 42 - second clamping plate, 43 - clamping plate drive mechanism, 431 - second guide rod, 432 - second guide sleeve, 433 - drive cylinder, 44 - adjusting bracket, 441 - first guide rod, 442 - end plate, 443 - clamping plate mounting plate, 4431 - first guide sleeve, 444 - adjusting lead screw, 5 - bottle shifting assembly, 51 - horizontal drive, 52 - front lifting rod, 53 - rear lifting rod, 54 - front shifting piece, 55 - rear shifting piece, 6 - bottle blocking mechanism, 61 - bottle blocking plate, 7 - distribution mechanism, 71 - distribution plate. DETAILED DESCRIPTION
[0020] The technical scheme of the utility model will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are some of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0021] As Figures 1-2 shown, the utility model is a kind of turnover bottle washing device and its bottle washing machine, including turnover assembly 2 and cleaning assembly 3;The turnover assembly 2 includes rotating shaft 21, turnover drive 22 and bottom plate 23, the bottom plate 23 has two, two the bottom plate 23 is respectively installed on the upper and lower sides of rotating shaft 21, the turnover drive 22 is used to drive rotating shaft 21 rotation, the turnover drive 22 uses motor;Bottom plate 23 is equipped with clamping mechanism 4, the clamping mechanism 4 includes first clamping plate 41, second clamping plate 42 and clamping plate drive mechanism 43, first clamping plate 41 and second clamping plate 42 are respectively arranged on the two sides of bottom plate 23, clamping plate drive mechanism 43 is used to drive second clamping plate 42 moves, second clamping plate 42 and first clamping plate 41 are clamped to the bottle on bottom plate 23, cleaning assembly 3 is located below the turnover assembly, the cleaning assembly 3 includes several ion wind generators 31.
[0022] Further, the cleaning assembly 3 further comprises a lifting driving mechanism 32, the ion wind generators 31 are all installed on the lifting driving mechanism 32, and the lifting driving mechanism 32 is used for driving the ion wind generators 31 to rise so that the blowing pipes 311 of the ion wind generators 31 extend into the bottle mouth of the bottle.
[0023] Further, the lifting driving mechanism 32 comprises a fixed base 321 and a lifting plate 322, four lead screws 323 are installed on the top of the fixed base 321 through bearings, four mouthguards 324 are fixedly arranged on the lifting driving mechanism 32, the lead screws 323 are matched with the mouthguards 324, chain wheels are fixedly installed at the bottom ends of the lead screws 323 and located in the fixed base 321, a motor is arranged on one side of the fixed base 321, the motor drives the four chain wheels to synchronously rotate through chains, and the lead screws 323 rotate together with the chain wheels.
[0024] Further, the cleaning assembly 3 further comprises slide rails 33, a moving base 34 and a moving driving member, the ion wind generators 31 are installed on the lifting driving mechanism 32 through the moving base 34 and the slide rails 33; two parallel slide rails 33 are installed on the lifting plate 322, the moving base 34 is provided with a sliding groove at the bottom, the moving base 34 is installed on the slide rails 33 through the sliding groove, the moving base 34 can move along the slide rails 33 under the driving of the moving driving member 35, the moving driving member 35 can be a pneumatic cylinder, and the ion wind generators 31 are installed on the moving base 34.
[0025] The moving base 34 can also manually adjust the position, and the specific method is that threaded holes are formed in the moving base, the moving base 34 is manually pushed along the slide rails 33 to a required position, and then a bolt is screwed into the threaded hole and tightly screwed against the mounting surface for fixation.
[0026] The manually adjusted moving base 34 can also use a lead screw and a mouthguard, the mouthguard is installed on the moving base 34, the lead screw is installed on the lifting plate 322 through a rotary pair, a handle is arranged at the tail end of the lead screw, the lead screw is rotated by rotating the handle, the mouthguard moves along the lead screw, and the moving base 34 moves along the slide rails 33.
[0027] The moving base 34 can also be driven by a servo motor, and the specific method is that a servo motor is arranged on the moving base 34, the servo motor is used to drive a driving wheel to rotate, the driving wheel is in contact with the mounting surface, and the rotation of the driving wheel can drive the moving base 34 to move along the slide rails 33.
[0028] Further, the clamping mechanism further comprises two adjusting supports 44, each of which is fixed to one side of the bottom plate 23. The adjusting support 44 comprises a first guide rod 441, an end plate 442, a clamping plate mounting plate 443 and an adjusting screw 444. The first guide rod 441 has two ends, one of which is mounted to one side of the bottom plate 23, and the other of which is connected to the end plate 442. The clamping plate mounting plate 443 is provided with two first guide sleeves 4431, which are matched with the first guide rod 441. The clamping plate mounting plate 443 is movable along the first guide rod 441. The first clamping plate 41 is mounted on the clamping plate mounting plate 443 on one side of the bottom plate 23, and the second clamping plate 42 is mounted on the clamping plate mounting plate 443 on the other side of the bottom plate 23 through the clamping plate driving mechanism 43. The middle part of the end plate 442 is provided with the adjusting screw 444, which is rotatable. The clamping plate mounting plate 443 is provided with a threaded hole, which is matched with the adjusting screw 444. Rotating the adjusting screw can adjust the position of the clamping plate mounting plate 443, and further adjust the initial positions of the first clamping plate 41 and the second clamping plate 42. The adjusting support 44 can adjust the initial width of the first clamping plate 41 and the second clamping plate 42, and adapt to bottle bodies of different widths.
[0029] The first clamping plate 41 can also be mounted on the clamping plate mounting plate 443 on one side of the bottom plate 23 through the clamping plate driving mechanism 43. The first clamping plate 41 and the second clamping plate 42 are both adjusted in position by the clamping plate driving mechanism 43, which is more convenient and flexible to adjust.
[0030] Further, the clamping plate driving mechanism 43 comprises a second guide rod 431, a second guide sleeve 432 and a driving cylinder 433. The second guide sleeve 432 is mounted on the clamping plate mounting plate 443. The second guide rod 431 is matched with the second guide sleeve 432. The second guide rod 431 and the second guide sleeve 432 are both provided with two. The second clamping plate 42 is fixed to the ends of the two second guide rods 431. The driving cylinder 433 is fixed to the clamping plate mounting plate 443. The push rod of the driving cylinder 433 is connected to the second clamping plate 42.
[0031] Further, a plurality of T-shaped grooves are horizontally provided on the first clamping plate 41 and the second clamping plate 42. Flexible strips 402 are mounted in the T-shaped grooves for clamping bottles.
[0032] As Figure 3As shown, a bottle washing machine applies the above-mentioned turnover bottle washing device, which comprises a feeding mechanism 1, a bottle pushing assembly 5, a bottle blocking mechanism 6 and a material distributing mechanism 7. The feeding mechanism 1 comprises a feeding conveyor belt 11, both sides of which are provided with baffles, and the feeding conveyor belt 11 conveys the bottles to be cleaned to the turnover assembly 2. The upper surface of the feeding conveyor belt 11 is flush with the upper surface of the bottom plate 23 located on the upper side of the rotating shaft 21. The bottle pushing assembly 5 comprises a horizontal driving member 51, a front lifting rod 52, a rear lifting rod 53, a front pushing piece 54 and a rear pushing piece 55. The front lifting rod 52 and the rear lifting rod 53 are both installed on the horizontal driving member 51. The front pushing piece 54 is installed below the front lifting rod 52, and the rear pushing piece 55 is installed below the rear lifting rod 53. The front pushing piece 54 and the rear pushing piece 55 are used to block the front and rear ends of the next batch of bottles to be cleaned on the feeding conveyor belt 11. The horizontal driving member 51 drives the front lifting rod 52 and the rear lifting rod 53 to move horizontally synchronously, and the distance between the front lifting rod 52 and the rear lifting rod 53 remains unchanged during the movement. The rear pushing piece 55 pushes the bottles that have been cleaned on the bottom plate 23 located on the upper side away from the turnover assembly 2 and discharges them. The front pushing piece 54 pushes the bottles to be cleaned to the bottom plate 23 located on the upper side. The bottle blocking mechanism 6 comprises a bottle blocking driving member and a bottle blocking plate 61. The material distributing mechanism 7 comprises a material distributing driving member and a material distributing plate 71. The bottle blocking driving member drives the bottle blocking plate 61 to extend and retract. The material distributing driving member drives the material distributing plate 71 to extend and retract. The bottle blocking plate 61 and the material distributing plate 71 are used to block the front and rear of the next batch of bottles to be cleaned. When the rear pushing piece 55 is lowered, the rear pushing piece 55 is located on the side of the bottle blocking plate 61 close to the turnover assembly 2. When the front pushing piece 54 is lowered, the front pushing piece 54 is located on the side of the material distributing plate 71 close to the turnover assembly 2.
[0033] The horizontal driving member 5 adopts a motor to drive a horizontally arranged belt to rotate. The front lifting rod 52 and the rear lifting rod 53 are both installed on the belt, and can move horizontally under the drive of the belt.
[0034] Further, the feeding conveyor belt 11 is provided with a position detection sensor 111 and a stock detection sensor 112 above the feeding conveyor belt 11; the position detection sensor 111 is arranged above the bottle blocking plate 61 away from the turnover assembly 1, and the horizontal distance between the position detection sensor 111 and the bottle blocking plate 61 is less than the width of a single bottle; the stock detection sensor 112 is arranged above the material distribution plate 71 away from the turnover assembly 1, and the horizontal distance between the stock detection sensor 112 and the material distribution plate 71 is less than the width of a single bottle. When the horizontal drive 5 drives the front pushing piece 54 and the rear pushing piece 55 to send a batch of bottles into the turnover assembly 2, at this time, the bottle blocking plate 61 is retracted, and the material distribution plate 71 is extended, when the bottles have been completely moved into the turnover assembly 2, at this time, the bottle blocking plate 61 is extended, and the material distribution plate 71 is retracted, the feeding conveyor belt 11 continues to convey the bottles, when the position detection sensor 111 and the stock detection sensor 112 detect the bottles at the same time, it is determined that the bottles between the bottle blocking plate 61 and the material distribution plate 71 are sufficient, the material distribution plate 71 is extended to block the subsequent bottles, at this time, the rear pushing piece 55 is lowered, and the rear pushing piece 55 is lowered to a position with a certain gap between the bottle blocking plate 61, after the rear pushing piece 55 is lowered, the bottle blocking plate 61 is retracted, and the bottles between the bottle blocking plate 61 and the material distribution plate 71 are moved a distance under the action of the feeding conveyor belt 11 until they are blocked by the rear pushing piece 55, at this time, the material distribution plate 71 leaves a gap between the side close to the turnover assembly 2 and the bottles, the front pushing piece 54 is lowered and inserted into the gap between the material distribution plate 71 and the bottles, and the horizontal drive 5 drives the front pushing piece 54 and the rear pushing piece 55 to send the batch of bottles into the turnover assembly 2.
[0035] Further, the feeding conveyor belt 11 is provided with a bottle dumping detection sensor group 12 above the feeding conveyor belt 11, and the bottle dumping detection sensor group 12 includes two detection sensors arranged above and below. The detection sensors are photoelectric sensors, the height of the detection sensor arranged below is lower than the height of the bottles when they are dumped, and the height of the detection sensor arranged above is higher than the height of the bottles when they are dumped, and the detection sensor arranged below can detect the dumping of the bottles when it detects the presence of the bottles and the detection sensor arranged above does not detect the bottles.
[0036] The utility model discloses a kind of turnover bottle washing device and its bottle washing machine of turning over beneficial effect as follows: the upper and lower of turnover assembly are provided with clamping mechanism, clamping mechanism can clamp multiple bottle bodies once, while the batch of bottle bodies is turned over to lower by turnover assembly and is cleaned by ion wind, the bottle body that has completed cleaning is turned over to upper removal and is sent into the next batch of bottle body to be cleaned, improve production efficiency;Strong adaptability, through the design of adjusting support and clamping plate driving mechanism, it can adapt to different width bottle body, increase the versatility and flexibility of equipment;Good cleaning effect, using ion wind generated by ion wind generator to clean, can more effectively remove dirt and impurities inside and outside bottle, improve cleaning quality;High safety, by setting in place detection sensor, stock detection sensor and bottle detection sensor group, the state of bottle can be monitored in real time, avoid bottle jamming, bottle and other problems, ensure the safe and stable operation of equipment.
[0037] The above describes the utility model and its implementation mode, and this description is not restrictive, and the embodiment shown in the drawing is only one of the utility model, and the actual content is not limited thereto, in general, if the ordinary skilled person in the art is inspired, without departing from the utility model creation purpose, without creative design, similar structure mode and embodiment of the technical solution, should belong to the protection scope of the utility model.
Claims
1. A flip-top bottle washing device, characterized by: Including turnover assembly (2) and cleaning assembly (3);The turnover assembly (2) includes rotating shaft (21), turnover drive (22) and bottom plate (23), the bottom plate (23) has two, two the bottom plate (23) is installed on rotating shaft (21) upper and lower two sides, the turnover drive (22) is used to drive rotating shaft (21) rotation;The bottom plate (23) is installed with clamping mechanism (4), the clamping mechanism (4) includes first clamping plate (41), second clamping plate (42) and clamping plate drive mechanism (43), the first clamping plate (41) and second clamping plate (42) are respectively arranged on the two sides of the bottom plate (23), the second clamping plate (42) is installed on the clamping plate drive mechanism (43), the clamping plate drive mechanism (43) is used to drive the second clamping plate (42) moves and changes the interval of the first clamping plate (41) and the second clamping plate (42), the second clamping plate (42) and the first clamping plate (41) are clamped to the bottle on the bottom plate (23), the cleaning assembly (3) is located below the turnover assembly, the cleaning assembly (3) includes several ion wind generators (31).
2. A device for inverting bottles according to claim 1, characterized in that: The cleaning assembly (3) further includes lifting drive mechanism (32), the ion wind generator (31) is installed on the lifting drive mechanism (32), and the lifting drive mechanism (32) is used to drive the ion wind generator (31) to rise, so that the air pipe (311) of the ion wind generator (31) extends into the bottle mouth of the bottle.
3. An inverted bottle washing apparatus as claimed in claim 2, wherein: The lifting drive mechanism (32) includes fixed base (321) and lifting plate (322), the top of the fixed base (321) is provided with four lead screws (323) through bearings, the lifting plate (322) is fixedly provided with four mouthguards (324), the lead screw (323) is matched with the mouthguard (324), the bottom end of the lead screw (323) is fixedly installed with a chain wheel, and the chain wheel is located in the fixed base (321). One side of the fixed base (321) is provided with a motor, and the motor drives four chain wheels to rotate synchronously through a chain.
4. A device according to claim 2, wherein: The cleaning assembly (3) further includes slide rail (33), moving base (34) and moving drive (35), the ion wind generator (31) is installed on the lifting drive mechanism (32) through the moving base (34) and the slide rail (33);The lifting drive mechanism (32) is installed with two parallel slide rails (33), the moving base (34) is installed on the slide rail (33), and the moving base (34) can move along the slide rail (33) under the drive of the moving drive (35) to adjust the position, and the ion wind generator (31) is installed on the moving base (34).
5. The inverted bottle washing apparatus of claim 1, wherein: The clamping mechanism further comprises two adjusting supports (44) fixed to the two sides of the bottom plate (23), each of the adjusting supports (44) comprising a first guide rod (441), an end plate (442), a clamping plate mounting plate (443) and an adjusting screw rod (444); one end of each of the first guide rods (441) is mounted to one side of the bottom plate (23), and the other end of each of the first guide rods (441) is connected to the end plate (442); the clamping plate mounting plate (443) is provided with two first guide sleeves (4431) matched with the first guide rods (441), and the clamping plate mounting plate (443) is movable along the first guide rods (441); the first clamping plate (41) is mounted on the clamping plate mounting plate (443) on one side of the bottom plate (23), and the second clamping plate (42) is mounted on the clamping plate mounting plate (443) on the other side of the bottom plate (23) through the clamping plate driving mechanism (43); the adjusting screw rod (444) is rotatably mounted in the middle of the end plate (442) through a bearing, the clamping plate mounting plate (443) is provided with a threaded hole matched with the adjusting screw rod (444), and the position of the clamping plate mounting plate (443) can be adjusted by rotating the adjusting screw rod, so as to adjust the initial positions of the first clamping plate (41) and the second clamping plate (42).
6. An inverted bottle washing apparatus as claimed in claim 5, wherein: The clamping plate driving mechanism (43) comprises a second guide rod (431), a second guide sleeve (432) and a driving cylinder (433); the second guide sleeve (432) is mounted on the clamping plate mounting plate (443); the second guide rod (431) is matched with the second guide sleeve (432); the second guide rod (431) and the second guide sleeve (432) are both provided with two; the second clamping plate (42) is fixed to the ends of the two second guide rods (431); and the driving cylinder (433) is fixed to the clamping plate mounting plate (443), and the push rod of the driving cylinder (433) is connected to the second clamping plate (42).
7. The inverted bottle washing apparatus of claim 1, wherein: A plurality of T-shaped grooves are horizontally arranged on the first clamping plate (41) and the second clamping plate (42), and flexible strips (402) are arranged in the T-shaped grooves for clamping bottles.
8. A bottle washing machine using the turnover bottle washing device according to any one of claims 1 to 7, characterized in that, The utility model relates to a bottle cleaning device, which comprises a feeding mechanism (1), a bottle pushing assembly (5), a bottle blocking mechanism (6) and a material distributing mechanism (7), the feeding mechanism (1) comprises a feeding conveyor belt (11), both sides of the feeding conveyor belt (11) are provided with baffles, the feeding conveyor belt (11) conveys the bottles to be cleaned to the turnover assembly (2), the upper surface of the feeding conveyor belt (11) is flush with the upper surface of the bottom plate (23) located on the upper side of the rotating shaft (21), the bottle pushing assembly (5) comprises a horizontal driving part (51), a front lifting rod (52), a rear lifting rod (53), a front pushing piece (54) and a rear pushing piece (55), the front lifting rod (52) and the rear lifting rod (53) are both installed on the horizontal driving part (51), the front pushing piece (54) is installed below the front lifting rod (52), the rear pushing piece (55) is installed below the rear lifting rod (53), the front pushing piece (54) and the rear pushing piece (55) are used for blocking the front and rear ends of the next batch of bottles to be cleaned on the feeding conveyor belt (11), the horizontal driving part (51) drives the front lifting rod (52) and the rear lifting rod (53) to move horizontally synchronously, the bottle blocking mechanism (6) comprises a bottle blocking driving part and a bottle blocking plate (61), the material distributing mechanism (7) comprises a material distributing driving part and a material distributing plate (71), the bottle blocking driving part drives the bottle blocking plate (61) to extend and retract, the material distributing driving part drives the material distributing plate (71) to extend and retract, the bottle blocking plate (61) and the material distributing plate (71) are used for blocking the front and rear of the next batch of bottles to be cleaned, when the rear pushing piece (55) is lowered, the rear pushing piece (55) is located on the side of the bottle blocking plate (61) close to the turnover assembly (2), when the front pushing piece (54) is lowered, the front pushing piece (54) is located on the side of the material distributing plate (71) close to the turnover assembly (2).
9. A bottle washer according to claim 8, characterised in that: A position detection sensor (111) and a material accumulation detection sensor (112) are arranged above the feeding conveyor belt (11), the position detection sensor (111) is arranged at the bottle blocking plate (61), and the material accumulation detection sensor (112) is arranged at the material distributing plate (71).
10. A bottle washer as claimed in claim 8, characterised in that: A bottle overturning detection sensor group (12) is arranged above the feeding conveyor belt (11), and the bottle overturning detection sensor group (12) comprises two detection sensors arranged in an up-down mode.