A beer bottle cleaning spray device for beer production
By using a rotary desiccant assembly and automated loading technology, the problem of beer bottles not drying quickly after washing has been solved, enabling rapid drying and efficient production of beer bottles.
Patent Information
- Application Number
- CN202510408465.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2045-04-02
AI Technical Summary
Traditional beer bottle cleaning equipment cannot effectively and quickly dry the bottles after cleaning, which may cause the bottles to crack or affect the sterilization effect during high-temperature sterilization, and also reduce production efficiency.
The system employs a rotary dehydration assembly, including a quick-drying cylinder, a tilting mechanism, and a fastening mechanism. It rapidly removes moisture from beer bottles using centrifugal force and gravity, and combines automated loading and alternating dehydration operations to achieve rapid drying of beer bottles.
It improves the drying efficiency of beer bottles after cleaning, reduces equipment downtime, and ensures the safety and production efficiency of beer bottles in subsequent processes.
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Figure CN119972705B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of beer production equipment technology, and in particular to a beer bottle cleaning spray device for beer production. Background Technology
[0002] In the beer production process, bottle cleaning is a crucial step, directly impacting beer quality and hygiene standards. However, traditional beer bottle cleaning spray systems have numerous problems, significantly hindering improvements in production efficiency and product quality.
[0003] From an automation perspective, while traditional cleaning equipment uses multiple sets of cleaning rollers and nozzles for cleaning and dehydration, achieving simultaneous cleaning of the inside and outside of beer bottles to some extent and improving cleaning efficiency, it also exposes significant drawbacks. After cleaning, cleaning water easily accumulates inside the beer bottle, often containing dirt removed from the bottle. If the residual cleaning water cannot be dried promptly and efficiently, it will enter the subsequent high-temperature sterilization process along with the beer bottle. Under high temperatures, the water rapidly vaporizes and expands, potentially causing the beer bottle to crack. Even if the bottle does not crack, the dirt and impurities in the residual water can interfere with the sterilization effect and even lead to serious consequences such as product spoilage after bottling.
[0004] From the perspective of the production process, after traditional equipment cleans beer bottles, it lacks a fast and effective dehydration method. In order to ensure the quality of the cleaning and dehydration of beer bottles, it is necessary to let them stand and wait for them to dry. During the drying process, the equipment will be idle, reducing production efficiency and further affecting the normal operation of the production line.
[0005] Therefore, it is necessary to provide a new beer bottle cleaning spray device for beer production to solve the above-mentioned technical problems. Summary of the Invention
[0006] To address the aforementioned shortcomings, the present invention aims to provide a beer bottle cleaning spray device for beer production.
[0007] To achieve this objective, the present invention adopts the following technical solution: a beer bottle cleaning and spraying device for beer production, comprising a rotary dehydration assembly, wherein the rotary dehydration assembly includes:
[0008] The chassis is provided with a quick-drying cylinder seat and a rotation drive assembly. The quick-drying cylinder seat is rotatably mounted on the chassis around its own central axis. The rotation drive assembly is connected to the quick-drying cylinder seat to drive the quick-drying cylinder seat to rotate.
[0009] A tilting mechanism includes a central push block, a lifting drive assembly, and a tilting rod. The central push block is movably disposed vertically in the hollow portion of the quick-drying cylinder seat. The lifting drive assembly is fixedly disposed in the hollow portion of the quick-drying cylinder seat and is drively connected to the central push block to drive the central push block to rise and fall. One end of the tilting rod is hinged to the central push block, and the middle portion of the tilting rod is movably connected to the quick-drying cylinder seat so that the end of the tilting rod tilts when the central push block rises, causing the end of the tilting rod away from the central push block to descend.
[0010] A beer bottle sleeve is provided at the end of the inclined rod away from the central push block, and the opening of the beer bottle sleeve is oriented away from the central push block. The beer bottle sleeve is provided with a fastening mechanism for engaging the neck of the beer bottle so that the beer bottle is held inside the beer bottle sleeve when the quick-drying container rotates.
[0011] Optionally, it also includes a frame, the upper surface of which is provided with a transport rail for transporting beer bottles in a horizontal position;
[0012] The rotary desiccant assembly is disposed on one side of the frame;
[0013] The frame is provided with a bottle pushing mechanism on the side of the beer bottle transport rail away from the rotary dehydration component, and an auxiliary conveying channel is provided on the side of the beer bottle transport rail close to the rotary dehydration component. The auxiliary conveying channel is arranged opposite to the bottle pushing mechanism, and the end of the auxiliary conveying channel is connected to the beer bottle sleeve.
[0014] The bottle openings of the beer bottles on the beer bottle transport rail face the bottle pushing mechanism; the bottle pushing mechanism pushes the beer bottles off the beer bottle transport rail and into the auxiliary conveying channel so that the beer bottles enter the beer bottle sleeve.
[0015] Optionally, the number of the rotary dehydration components is two. The frame is provided with a linear alternation mechanism on one side where the rotary dehydration components are set. The two sets of rotary dehydration components are set on the linear alternation mechanism. The linear alternation mechanism is used to simultaneously drive the two sets of rotary dehydration components to move along the conveying direction of the parallel beer bottle conveying track, so that while one set of rotary dehydration components loads beer bottles, the other set of rotary dehydration components rotates and dehydrates the beer bottles.
[0016] Optionally, the upper surface of the frame is provided with two baffles, which are distributed on both sides of the auxiliary conveyor.
[0017] Optionally, in the tilting mechanism, there are two or more tilting rods, and the multiple tilting rods are arranged in a ring array on the quick-drying cylinder seat.
[0018] Optionally, a rotating connecting rod is provided in the middle of the tilting rod, one end of the rotating connecting rod is hinged to the tilting rod, and the other end of the rotating connecting rod is hinged to the quick-drying cylinder seat.
[0019] Optionally, the fastening mechanism includes a square lug, an L-shaped component, a front pressure ring, and a flipping assembly. The square lug is fixedly connected to the outer periphery of the opening of the beer bottle sleeve. The square lug is hinged to one end of the L-shaped component. The other end of the L-shaped component is fixedly connected to a front pressure ring. The front pressure ring is close to the opening of the beer bottle sleeve and is coaxially arranged with the beer bottle sleeve.
[0020] The flipping assembly is used to rotate the L-shaped component so that the front pressure ring is engaged with or disengaged from the neck of the beer bottle.
[0021] Optionally, the square ear is provided with a rotatable pin, the pin being fixedly connected to the L-shaped member, and a gear being fixedly connected to one end of the pin; the flipping assembly includes:
[0022] The fixing seat is fixedly disposed on the outer periphery of the beer bottle sleeve;
[0023] An electric actuator is mounted on the fixed base. The electric actuator has a push rod, and the push rod is connected to a rack. The rack extends in the same direction as the length of the push rod, and the rack meshes with the gear.
[0024] Optionally, a limiting rail is fixedly connected to the fixed base, and a sliding groove is provided on the back wall of the rack, and the rack is slidably connected to the limiting rail.
[0025] The technical solution provided by this invention may include the following beneficial effects:
[0026] In practical use, the device provided by this invention operates as follows: Initially, the tilting rod is positioned horizontally or slightly tilted at the quick-drying cylinder seat. A beer bottle is then loaded into the bottle sleeve and secured by a fastening mechanism. Next, a lifting drive assembly drives the central push block to rise, causing the tilting rod to rotate relative to the quick-drying cylinder seat, tilting the bottle neck downwards within the bottle sleeve. Then, a rotation drive assembly drives the quick-drying cylinder seat to rotate, providing centrifugal force to the beer bottle. Residual water inside the beer bottle is quickly expelled under the combined effects of gravity and centrifugal force, saving waiting time for subsequent high-temperature sterilization and accelerating the overall beer bottle cleaning process. It is worth noting that due to the shape and structure of beer bottles, when the bottle is facing upwards or horizontally, it is difficult for water inside to be completely drained through the narrowed shoulder. This invention, however, tilts the bottle neck downwards using a tilting mechanism, allowing water to drain smoothly from the bottle. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of a rotary desiccant assembly according to an embodiment of the present invention;
[0028] Figure 2 This is an exploded view of the structure of a rotary desiccant assembly according to an embodiment of the present invention;
[0029] Figure 3 yes Figure 1 Enlarged structural diagram of region A in the middle;
[0030] Figure 4 This is a schematic diagram of the structure of the rotary desiccant assembly mounted on the frame according to an embodiment of the present invention;
[0031] Figure 5 This is a schematic diagram of the state in which the arc-shaped seat locks the beer bottle according to an embodiment of the present invention;
[0032] In the attached diagram: 1-Rotary desiccant assembly, 11-Chassis, 12-Quick-drying cylinder seat, 121-Main shaft, 122-Driven gear disc, 13-Rotary drive assembly, 131-Motor, 132-Drive gear disc, 14-Tilting mechanism, 141-Centered push block, 142-Lifting drive assembly, 143-Tilting rod, 144-Rotating connecting rod, 15-Beer bottle sleeve, 16-Fasting mechanism, 161-Square lug, 162-Pin, 163-Gear, 164-L-shaped component, 165- Front pressure ring, 166-flipping assembly, 1661-fixed seat, 1662-electric push rod, 1663-top rod, 1664-rack, 167-limiting rail, 2-frame, 21-beer bottle transport rail, 211-arc seat, 212-U-shaped groove, 213-movable clamping block, 22-bottle pushing mechanism, 23-auxiliary conveyor, 24-linear alternating mechanism, 241-side plate, 242-smooth rod, 243-screw drive assembly, 244-sliding seat, 25-water baffle. Detailed Implementation
[0033] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0034] In the description of this invention, it should be understood that the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, features defined with "first" and "second" may explicitly or implicitly include one or more of these features, used to distinguish and describe features, without any order or emphasis.
[0035] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0036] The following is combined Figures 1 to 5 This invention describes a beer bottle cleaning and spraying device for beer production, comprising a rotary dehydration assembly 1, wherein the rotary dehydration assembly 1 includes:
[0037] A chassis 11 is provided, which includes a quick-drying cartridge holder 12 and a rotation drive assembly 13. The quick-drying cartridge holder 12 is rotatably mounted on the chassis 11 around its central axis. The rotation drive assembly 13 is drively connected to the quick-drying cartridge holder 12 to drive its rotation. Optionally, the rotation drive assembly 13 can be a motor 131 and a transmission component to drive the quick-drying cartridge holder 12 to rotate. For example, the bottom of the quick-drying cartridge holder 12 has a main shaft 121, and a driven gear 122 is fixedly mounted on the outer periphery of the main shaft 121. The transmission shaft of the motor 131 is fixedly mounted with a drive gear 132, which meshes with the driven gear 122. Thus, when the transmission shaft of the motor 131 rotates, the transmission shaft drives the main shaft 121 to rotate through the meshing of the drive gear 132 and the driven gear 122, thereby driving the quick-drying cartridge holder 12 to rotate.
[0038] The tilting mechanism 14 includes a central push block 141, a lifting drive assembly 142, and a tilting rod 143. The central push block 141 is movably disposed vertically in the hollow portion of the quick-drying cylinder seat 12. The lifting drive assembly 142 is fixedly disposed in the hollow portion of the quick-drying cylinder seat 12 and is drively connected to the central push block 141 to drive the central push block 141 to rise and fall. One end of the tilting rod 143 is hinged to the central push block 141, and the middle part of the tilting rod 143 is movably connected to the quick-drying cylinder seat 12 so that the end of the tilting rod 143 tilts when the central push block 141 rises, causing the end of the tilting rod 143 away from the central push block 141 to descend. Optionally, the lifting drive assembly 142 can be a linear reciprocating drive component such as a cylinder or a hydraulic cylinder. The central pusher 141 is located at the lifting end of the lifting drive assembly 142. When the lifting end of the lifting drive assembly 142 is raised, the central pusher 141 is raised relative to the quick-drying cylinder seat 12.
[0039] A beer bottle sleeve 15 is provided at the end of the inclined rod 143 away from the central push block 141, and the opening of the beer bottle sleeve 15 is arranged in a direction away from the central push block 141. The beer bottle sleeve 15 is provided with a fastening mechanism 16, which is used to fit the neck of the beer bottle so that the beer bottle is kept in the beer bottle sleeve 15 when the quick-drying canister 12 rotates.
[0040] In practical use, the device provided by this invention is as follows: In the initial state, the tilting rod 143 is positioned horizontally or slightly tilted on the quick-drying cylinder seat 12. The slightly tilted state means that the tilting rod 143 is tilted so that the opening of the beer bottle sleeve 15 is slightly upward. Then, a beer bottle is loaded into the beer bottle sleeve 15 and secured by the fastening mechanism 16. Next, the lifting drive assembly 142 drives the central push block 141 to rise, causing the tilting rod 143 to rotate relative to the quick-drying cylinder seat 12, tilting the bottle opening of the beer bottle inside the beer bottle sleeve 15 downward. Then, the rotation drive assembly 13 drives the quick-drying cylinder seat 12 to rotate, providing centrifugal force to the beer bottle. The water remaining inside the beer bottle can be quickly expelled under the action of gravity and centrifugal force, saving waiting time for subsequent high-temperature sterilization and accelerating the entire beer bottle cleaning process. It is worth noting that due to the shape and structure of the beer bottle, when the beer bottle is facing upward or horizontal, it is difficult for the water inside the beer bottle to be completely drained through the narrowed shoulder. The present invention uses a tilting mechanism 14 to tilt the mouth of the beer bottle downwards, so that the water inside the beer bottle can be discharged smoothly.
[0041] Preferably, it also includes a frame 2, the upper surface of which is provided with a transport rail 21 for transporting beer bottles in a horizontal position;
[0042] The rotary desiccant 1 is disposed on one side of the frame 2;
[0043] The frame 2 is provided with a bottle pushing mechanism 22 on the side of the beer bottle transport rail 21 away from the rotary dehydration component 1. The frame 2 is provided with an auxiliary conveying channel 23 on the side of the beer bottle transport rail 21 close to the rotary dehydration component 1. The auxiliary conveying channel 23 is arranged opposite to the bottle pushing mechanism 22. The end of the auxiliary conveying channel 23 is connected to the beer bottle sleeve 15.
[0044] The bottle openings of the beer bottles on the beer bottle transport rail 21 face the bottle pushing mechanism 22; the bottle pushing mechanism 22 pushes the beer bottles on the beer bottle transport rail 21 out of the beer bottle transport rail 21 and into the auxiliary transport channel 23, so that the beer bottles enter the beer bottle sleeve 15.
[0045] In this embodiment, the bottle pusher 22 pushes the beer bottles off the beer bottle transport rail 21 and into the auxiliary conveyor 23, so that the beer bottles enter the beer bottle sleeve 15, thus achieving automated loading. It is further worth noting that the auxiliary conveyor 23 is a conveyor belt system; when the beer bottles enter the auxiliary conveyor 23, the conveyor belt itself carries the beer bottles into the beer bottle sleeve 15.
[0046] Specifically, such as Figure 4 In one optional embodiment shown, a plurality of arc-shaped seats 211 can be provided on the beer bottle transport rail 21, and each arc-shaped seat 211 is provided with a U-shaped groove 212. The beer bottles are loaded into the U-shaped groove 212 of the arc-shaped seat 211 to realize the transport of beer bottles one by one.
[0047] Optionally, a spraying mechanism is further provided on the side of the beer bottle transport rail 21 away from the rotating dehydration assembly 1, located upstream of the bottle pushing mechanism 22. The spraying mechanism includes a spray gun that sprays water towards the inside of the beer bottle. It is worth noting that in this embodiment, a clamping device can be provided on the inner wall of the U-shaped groove of the arc-shaped seat 211 to clamp the beer bottle and prevent the spray gun from spraying water onto the bottle and causing it to detach from the arc-shaped seat 211.
[0048] Specifically, in one optional embodiment, the inner wall of one side of the arc-shaped seat 211 is provided with a clearance hole, and a movable clamping block 213 is provided inside the arc-shaped seat 211. The movable clamping block 213 can be driven by a servo motor 131. The servo motor 131 controls the movable clamping block 213 to clamp or release through a control circuit and a position sensor installed on the arc-shaped seat 211. One end of the movable clamping block 213 is fixedly connected to the output shaft of the servo motor 131, and the other end of the movable clamping block 213 is a free end. When the servo motor 131 drives the movable clamping block 213 to rotate, the free end of the movable clamping block 213 passes through the clearance hole and presses against the beer bottle in the U-shaped groove. In this embodiment, when the position sensor detects that the arc-shaped seat 211 is at the bottle pushing position corresponding to the bottle pushing mechanism 22, the control circuit controls the servo motor 131 to drive the movable clamping block 213 backward, so that the movable clamping block 213 releases the beer bottle, thereby allowing the bottle pushing mechanism 22 to push the beer bottle out of the arc-shaped seat 211. When the position sensor detects that the arc-shaped seat 211 is located at the beer bottle loading station, the control circuit also controls the servo motor 131 to drive the movable clamping block 213 backward, so that the beer bottle can be loaded into the U-shaped groove of the arc-shaped slot. When the position sensor detects that the arc-shaped seat 211 is between the beer bottle loading station and the bottle pushing mechanism 22, the control circuit controls the servo motor 131 to drive the movable clamping block 213 forward to abut against the beer bottle, so that the beer bottle abuts against the other side of the U-shaped groove, thereby clamping and fixing the beer bottle.
[0049] More specifically, the bottle pushing mechanism 22 can be composed of a pusher block and any linear reciprocating drive component such as a cylinder or hydraulic cylinder. The linear reciprocating drive component is fixedly mounted on the frame 2, and the pusher block is located at the telescopic end of the linear reciprocating drive component. When the beer bottle transport rail 21 transports an arc-shaped seat 211 to the bottle pushing mechanism 22, the PLC can control the beer bottle transport rail 21 to stop transporting, the PLC controls the bottle pushing mechanism 22 to extend the pusher block to push the beer bottle out of the arc-shaped groove, the PLC controls the bottle pushing mechanism 22 to retract the pusher block, and the PLC controls the beer bottle transport rail 21 to continue transporting the next arc-shaped seat 211 to the bottle pushing mechanism 22, and so on.
[0050] Preferably, the number of the rotary dehydration components 1 is two sets. The frame 2 is provided with a linear alternation mechanism 24 on the side where the rotary dehydration components 1 are set. The two sets of rotary dehydration components 1 are set on the linear alternation mechanism 24. The linear alternation mechanism 24 is used to simultaneously drive the two sets of rotary dehydration components 1 to move along the conveying direction of the parallel beer bottle conveying rail 21, so that while one set of rotary dehydration components 1 loads beer bottles, the other set of rotary dehydration components 1 rotates and dehydrates the beer bottles.
[0051] Specifically, such as Figure 4In the illustrated embodiment, the sidewalls of the frame 2 are provided with spaced-apart side plates 241. Two guide rods 242 are fixedly connected between the side plates 241. The extending directions of the two guide rods 242 are parallel to the conveying direction of the beer bottle transport rail 21. A slidable sliding seat 244 is slidably connected to the two guide rods 242. The frame 2 is also provided with a screw drive assembly 243. The movable part of the screw drive assembly is driven to the sliding seat 244 to drive the sliding seat 244 to slide along the direction of the guide rods 242. Through the linear alternating mechanism 24 composed of the linear drive assembly, the sliding seat 244, the guide rods 242, and the side plates 241, two sets of rotating de-drying components 1 are arranged side by side on the sliding seat 244. Figure 4 As can be seen from the embodiments, when one set of rotary dehydration components 1 is loading beer bottles, another set of rotary dehydration components 1 may perform dehydration treatment, so as to realize the simultaneous feeding and dehydration operations on the same equipment, optimize the production process, and reduce equipment downtime.
[0052] Preferably, the upper surface of the frame 2 is provided with two baffles 25, which are distributed on both sides of the auxiliary conveyor 23.
[0053] Because the feeding and dewatering processes are alternated, the rotary dewatering unit 1 dewaters on both sides of the auxiliary conveyor 23, and does not directly rotate and dewater at the auxiliary conveyor 23. Therefore, it is sufficient to place two baffles 25 on both sides of the auxiliary conveyor 23. By setting the baffles 25, the washing water thrown out during the dewatering process can be blocked to a certain extent.
[0054] Preferably, in the tilting mechanism 14, there are two or more tilting rods 143, and multiple tilting rods 143 are arranged in a ring array on the quick-drying cylinder seat 12.
[0055] Thus, the rotation of the quick-drying drum 12 can drive multiple beer bottles to spin-dry and dehydrate, improving the dehydration capacity. Specifically, as... Figure 1 As shown, the quick-drying cylinder seat 12 is provided with four inclined rods 143, the central push block 141 is square, and the four side walls of the central push block 141 are respectively provided with connecting ears. The ends of the inclined rods 143 are hinged to the central push block 141 through the connecting ears.
[0056] Preferably, a rotating connecting rod 144 is provided in the middle of the tilting rod 143, one end of the rotating connecting rod 144 is hinged to the tilting rod 143, and the other end of the rotating connecting rod 144 is hinged to the quick-drying cylinder seat 12.
[0057] Thus, when the central push block 141 rises, the tilting rod 143 is simultaneously raised at the end connected to the central push block 141. The middle part of the tilting rod 143 pulls the rotating connecting rod 144 to rotate around the end connected to the quick-drying cylinder seat 12, ultimately causing the end of the tilting rod 143 away from the central push block 141 to descend, thereby tilting the tilting rod 143.
[0058] Preferably, the fastening mechanism 16 includes a square lug 161, an L-shaped component 164, a front pressure ring 165, and a flipping assembly 166. The square lug 161 is fixedly connected to the outer periphery of the opening of the beer bottle sleeve 15. The square lug 161 is hinged to one end of the L-shaped component 164. The other end of the L-shaped component 164 is fixedly connected to a front pressure ring. The front pressure ring 165 is close to the opening of the beer bottle sleeve 15 and is coaxially arranged with the beer bottle sleeve 15.
[0059] The flipping component 166 is used to rotate the L-shaped component 164 so that the front pressure ring 165 is fitted onto or detached from the neck of the beer bottle.
[0060] like Figure 3 As shown, when the flipping assembly 166 rotates the L-shaped component 164, the front pressure ring 165 is positioned near the opening of the beer bottle sleeve 15, thus locking and securing the beer bottle. When the beer bottle sleeve 15 needs to load or unload a beer bottle, the flipping assembly 166 flips up the L-shaped component 164, thereby rotating and flipping up the front pressure ring 165, allowing the beer bottle to be loaded or unloaded smoothly.
[0061] Preferably, the square ear 161 is provided with a rotatable pin 162, the pin 162 is fixedly connected to the L-shaped member 164, and a gear 163 is fixedly connected to one end of the pin 162; the flipping assembly 166 includes:
[0062] Fixing seat 1661, the fixing seat 1661 is fixedly disposed on the outer periphery of the beer bottle sleeve 15;
[0063] An electric push rod 1662 is mounted on the fixed base 1661. The electric push rod 1662 has a push rod 1663, and the push rod 1663 is connected to a rack 1664. The extension direction of the rack 1664 is the same as the length direction of the push rod 1663, and the rack 1664 meshes with the gear 163.
[0064] In this embodiment, when the beer bottle needs to be locked, the electric push rod 1662 drives the top rod 1663 to rise, and the rack 1664 meshes with the gear 163 to cause the L-shaped component to flip downward, so that the front pressure ring 165 is located near the opening of the beer bottle sleeve 15, covering the neck of the beer bottle. When unlocking is required, the electric push rod 1662 drives the top rod 1663 to rise, and the rack 1664 meshes with the gear 163 to cause the L-shaped component to flip upward, thereby rotating and flipping the front pressure ring 165.
[0065] Of course, in other embodiments, the flipping component 166 can be a motor 131, the output shaft of the motor 131 is connected to the pin 162, and the motor 131 can be controlled by the PLC to rotate the pin 162.
[0066] Preferably, a limiting rail 167 is fixedly connected to the fixed base 1661, and a sliding groove is provided on the back wall of the rack 1664, with the rack 1664 slidably connected to the limiting rail 167. The limiting rail 167 can limit the movement direction of the rack 1664 and ensure that its movement is sufficiently stable.
[0067] The technical principles of the present invention have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of the invention and should not be construed as limiting the scope of protection of the invention in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of the invention without inventive effort, and these embodiments will all fall within the scope of protection of the present invention.
Claims
1. A beer bottle cleaning spraying device for beer production, characterized in that: Includes a rotary desiccant assembly, the rotary desiccant assembly comprising: The chassis is provided with a quick-drying cylinder seat and a rotation drive assembly. The quick-drying cylinder seat is rotatably mounted on the chassis around its own central axis. The rotation drive assembly is connected to the quick-drying cylinder seat to drive the quick-drying cylinder seat to rotate. A tilting mechanism includes a central push block, a lifting drive assembly, and a tilting rod. The central push block is movably disposed vertically in the hollow portion of the quick-drying cylinder seat. The lifting drive assembly is fixedly disposed in the hollow portion of the quick-drying cylinder seat and is drively connected to the central push block to drive the central push block to rise and fall. One end of the tilting rod is hinged to the central push block, and the middle portion of the tilting rod is movably connected to the quick-drying cylinder seat so that the end of the tilting rod tilts when the central push block rises, causing the end of the tilting rod away from the central push block to descend. A beer bottle sleeve is provided at the end of the inclined rod away from the central push block, and the opening of the beer bottle sleeve is oriented away from the central push block. The beer bottle sleeve is provided with a fastening mechanism for engaging the neck of the beer bottle so that the beer bottle is held inside the beer bottle sleeve when the quick-drying container rotates.
2. The beer bottle cleaning spray device for beer production according to claim 1, characterized in that: It also includes a frame, the upper surface of which is provided with a transport rail for transporting beer bottles in a horizontal position; The rotary desiccant assembly is disposed on one side of the frame; The frame is provided with a bottle pushing mechanism on the side of the beer bottle transport rail away from the rotary dehydration component, and an auxiliary conveying channel is provided on the side of the beer bottle transport rail close to the rotary dehydration component. The auxiliary conveying channel is arranged opposite to the bottle pushing mechanism, and the end of the auxiliary conveying channel is connected to the beer bottle sleeve. The bottle openings of the beer bottles on the beer bottle transport rail face the bottle pushing mechanism; the bottle pushing mechanism pushes the beer bottles off the beer bottle transport rail and into the auxiliary conveying channel so that the beer bottles enter the beer bottle sleeve.
3. The beer bottle cleaning spray device for beer production according to claim 2, characterized in that: The number of rotary dehydration components is two. The frame is provided with a linear alternating mechanism on one side where the rotary dehydration components are set. The two sets of rotary dehydration components are set on the linear alternating mechanism. The linear alternating mechanism is used to simultaneously drive the two sets of rotary dehydration components to move along the conveying direction of the parallel beer bottle conveying track, so that while one set of rotary dehydration components loads beer bottles, the other set of rotary dehydration components rotates and dehydrates the beer bottles.
4. A beer bottle cleaning spraying device for beer production according to claim 3, characterized in that: The upper surface of the frame is provided with two water baffles, which are distributed on both sides of the auxiliary conveyor.
5. A beer bottle cleaning spraying device for beer production according to claim 1, characterized in that: In the tilting mechanism, there are two or more tilting rods, and multiple tilting rods are arranged in a ring array on the quick-drying cylinder seat.
6. The beer bottle cleaning spray device for beer production according to claim 1, characterized in that: The tilting rod is provided with a rotating connecting rod in the middle. One end of the rotating connecting rod is hinged to the tilting rod, and the other end of the rotating connecting rod is hinged to the quick-drying cylinder seat.
7. A beer bottle cleaning spraying device for beer production according to claim 1, characterized in that: The fastening mechanism includes a square lug, an L-shaped component, a front pressure ring, and a flipping assembly. The square lug is fixedly connected to the outer periphery of the opening of the beer bottle sleeve. The square lug is hinged to one end of the L-shaped component. The other end of the L-shaped component is fixedly connected to the front pressure ring. The front pressure ring is close to the opening of the beer bottle sleeve and is coaxially arranged with the beer bottle sleeve. The flipping assembly is used to rotate the L-shaped component so that the front pressure ring is engaged with or disengaged from the neck of the beer bottle.
8. A beer bottle cleaning spraying device for beer production according to claim 7, characterized in that: The square lug is provided with a rotatable pin, which is fixedly connected to an L-shaped component, and a gear is fixedly connected to one end of the pin; the flipping assembly includes: The fixing seat is fixedly disposed on the outer periphery of the beer bottle sleeve; An electric actuator is mounted on the fixed base. The electric actuator has a push rod, and the push rod is connected to a rack. The rack extends in the same direction as the length of the push rod, and the rack meshes with the gear.
9. A beer bottle cleaning spraying device for beer production according to claim 8, characterized in that: A limiting rail is fixedly connected to the fixed base, and a sliding groove is provided on the back wall of the rack, and the rack is slidably connected to the limiting rail.
Citation Information
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