Baijiu filling production device

The liquor bottling production device, which integrates conveying, bottle separating, bottle guiding, pressing, labeling, marking, and sealing mechanisms, solves the problems of low efficiency and easy error in manual operation in the existing technology, and achieves efficient automated production and stable product quality.

CN121553498APending Publication Date: 2026-02-24NINGBO LIYANG WINE CO LTD
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Patent Information

Application Number
CN202511945727.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-22
Publication Date
2026-02-24

AI Technical Summary

Technical Problem

The cleaning, labeling, coding, and sealing processes in existing liquor bottling production lines are inefficient, prone to errors due to manual operation, and increase costs, making it difficult to meet the needs of large-scale production. Furthermore, traditional sealing methods are unstable and affect product quality.

Method used

Design a liquor bottling production device that integrates conveying, bottle separating, bottle guiding, top pressing, labeling, marking, and sealing mechanisms. The conveying mechanism transports the bottles, the bottle separating mechanism separates the bottles, the bottle guiding mechanism guides the bottles, the top pressing mechanism assists, the labeling mechanism applies labels, the marking mechanism applies marks, and the sealing mechanism seals the bottles. All mechanisms work together to achieve automated operation.

Benefits of technology

It improves the efficiency of liquor bottling production, reduces human error, ensures product quality consistency and aesthetics, reduces labor costs and management difficulty, and meets the needs of large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a white spirit filling production device, and belongs to the technical field of white spirit production. The conveying mechanism is arranged on the working table and is used for conveying wine bottles to be filled; the bottle separating mechanism is arranged at the output end of the conveying mechanism; the bottle guiding mechanism is arranged at the output end of the conveying mechanism and is used for guiding the wine bottles to be filled on the conveying mechanism; the coping mechanism is arranged above the bottle guiding mechanism; the conveying mechanism is arranged on the conveying belt, the labeling mechanisms are arranged on the two sides of the conveying mechanism and used for labeling the side edges of the filling wine bottles, the marking mechanism is arranged on the conveying belt and used for conducting positioning marking on the labeled filling wine bottles, and the side edge of the marking mechanism is further provided with a plastic packaging mechanism used for conducting plastic packaging on the marked filling wine bottles. And operations such as wine bottle conveying, labeling, marking and plastic packaging are accurately completed, manual intervention is reduced, and the technical effect that the product quality is stable is guaranteed.
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Description

Technical Field

[0001] This application relates to the field of liquor production technology, and in particular to a liquor bottling production apparatus. Background Technology

[0002] The back-end of a baijiu bottling production line typically includes cleaning, labeling, coding, sealing, and boxing. However, these processes are currently completed using decentralized equipment.

[0003] In existing technologies, especially with the increase in the number of bottled liquor, bottle cleaning is mostly done by spraying or manual wiping. Spraying requires a large amount of water and the subsequent drying process is complex, while manual wiping is inefficient and prone to incomplete treatment of the bottle's outer surface. Labeling is mostly done using semi-automatic labeling machines, which require manual assistance for positioning, limiting overall efficiency and speed. Inaccurate labeling on the side of the bottle can affect the coding of the labeling machine. The sealing process often uses manual operation with hot air guns, resulting in inconsistent sealing effects. This makes subsequent operations on the filled liquor bottles complex and reduces overall production efficiency.

[0004] However, these existing technologies have many drawbacks. Traditional methods of conveying, dispensing, guiding, pressing, labeling, and sealing are inefficient and cannot meet the needs of large-scale production. The numerous manual steps not only increase the risk of errors, leading to uneven labeling and inaccurate marking, but also increase labor costs and intensity. Furthermore, manual operation can easily introduce contamination, affecting the quality of the liquor. At the same time, traditional sealing methods cannot guarantee the quality and stability of the seal, and are prone to issues such as incomplete sealing. Summary of the Invention

[0005] In order to improve the processing efficiency after baijiu bottling, this application provides a baijiu bottling production apparatus.

[0006] The technical solution adopted in this application for a liquor bottling production device is as follows: A liquor bottling production apparatus includes a workbench, a conveying mechanism arranged on the workbench for conveying bottling bottles, a bottle separating mechanism arranged on the output end of the conveying mechanism, a bottle guiding mechanism arranged on the output end of the conveying mechanism for guiding the bottling bottles on the conveying mechanism, a pressing mechanism installed above the bottle guiding mechanism, a labeling mechanism arranged on both sides of the conveying mechanism for affixing labels to the sides of the bottling bottles, and a marking mechanism arranged on the conveying mechanism for positioning and marking the labeled bottling liquor. The marking mechanism is also provided with a sealing mechanism on the side for sealing the mouth of the marked wine bottle; the sealing mechanism includes a sealing frame, a feeding assembly installed on the sealing frame for separating the hot melt film tube, a discharging assembly arranged below the feeding assembly for placing the hot melt film tube on the wine bottle, and a heating assembly for heating the hot melt film tube on the wine bottle.

[0007] By adopting the above technical solutions, the conveying mechanism can transport filling bottles, the bottle-splitting mechanism can separate the bottles transported to the output end, the bottle-guiding mechanism can guide the filling bottles on the conveying mechanism, the top-pressing mechanism assists in processing the filling bottles, the labeling mechanism can label the sides of the filling bottles, the marking mechanism can position and mark the labeled filling liquor, the feeding component of the sealing mechanism can separate the sleeved hot melt film, the discharging component can place the hot melt film on the filling bottle, and the heating component can heat the hot melt film on the bottle to achieve sealing, thereby realizing a series of operations in liquor filling production, improving production efficiency and product quality.

[0008] Optionally, the conveying mechanism includes a conveyor frame and a conveyor belt mounted on the conveyor frame; guide plates for guiding the filled wine bottles are provided on both sides of the conveyor belt, and adjusting components for adjusting the distance between the guide plates on both sides are provided on the guide plates.

[0009] By adopting the above technical solution, the conveyor frame and conveyor belt can realize the conveying of filled wine bottles; the guide plate can guide the filled wine bottles and ensure the accuracy of their conveying direction; the adjusting component can adjust the distance between the guide plates on both sides to adapt to the filling wine bottles of different specifications.

[0010] Optionally, the bottle guiding mechanism includes a first mounting bracket arranged on both sides of the conveying device, a first conveyor belt arranged on the first mounting bracket, and a first adjusting component for adjusting the distance between the two first mounting brackets.

[0011] By adopting the above technical solution, the first conveyor belt is installed using the first mounting frame. The first conveyor belt guides the filling bottles on the conveying mechanism. At the same time, the first adjusting component can adjust the distance between the first mounting frames on both sides, which can adapt to filling bottles of different sizes and improve the versatility and applicability of the device.

[0012] Optionally, the pressing mechanism includes a pressing frame mounted on the workbench and a second conveyor belt slidably arranged on the pressing frame. A screw lifting component is provided on the back side of the second conveyor belt. The screw lifting component includes a screw frame mounted on the conveying mechanism, a guide rod mounted on the screw frame, a sliding block slidably mounted on the guide rod, a screw mounted on the sliding block, and a handwheel adjustment component that drives the screw to rotate and realizes the sliding block to slide.

[0013] By adopting the above technical solution, through the cooperation of the workbench, conveying mechanism, bottle-splitting mechanism, bottle-guiding mechanism, top-pressing mechanism, labeling mechanism, marking mechanism, and sealing mechanism, a series of operations such as conveying, bottle-splitting, guiding, top-pressing, labeling, marking, and sealing in the liquor bottling production can be realized. Among them, the top-pressing mechanism's top-pressing frame and second conveyor belt, together with the screw-lifting component's screw frame, guide rod, sliding block, screw, and handwheel adjustment component, can rotate the screw by turning the handwheel adjustment component, causing the sliding block to slide on the guide rod, thereby realizing the sliding of the second conveyor belt on the top-pressing frame, performing a top-pressing operation on the filling bottles on the conveying mechanism, and ensuring the stability of the bottling process.

[0014] Optionally, the labeling mechanism includes a first labeling component and a second labeling component disposed on the worktable, the first labeling component and the second labeling component being distributed on both sides of the conveying mechanism; The first labeling assembly includes a first labeling machine base, a first label head adjustment seat mounted on the first labeling machine base, and a first labeling component mounted on the first label head adjustment seat; The second labeling assembly includes a second labeling machine base, a second label head adjustment seat mounted on the second labeling machine base, and a second labeling component mounted on the second label head adjustment seat.

[0015] By adopting the above technical solution, a first labeling component and a second labeling component are set on the workbench, which are distributed on both sides of the conveying mechanism, so that labels can be applied to both sides of the bottle at the same time, thereby improving the labeling efficiency.

[0016] Optionally, a dust removal component is also provided on the output end of the bottle guiding mechanism. The dust removal component has a scraper disposed on the side of the conveying mechanism and a brush disposed on the scraper to remove dust from the surface of the labeled bottle.

[0017] By adopting the above technical solution, a dust removal component with a scraper and a brush is set at the output end of the bottle guiding mechanism, which can remove dust from the surface of the bottle after labeling and ensure the cleanliness of the bottle surface.

[0018] Optionally, the labeling component is further provided with a label covering component on the output side. The label covering component has a roller on the side of the conveyor belt, and a first pressure block is provided on the opposite side of the roller. A pressure plate sliding member for adjusting the movement of the first pressure block is provided at the bottom of the first pressure block.

[0019] By adopting the above technical solutions, the liquor bottling production equipment has functions such as conveying, bottle separating, bottle guiding, pressing, labeling, marking, and sealing. The conveying mechanism can guide and adjust the conveying of the bottling bottles through the guide plate and adjusting parts. The rollers and pressure plates of the labeling component cooperate, and the pressure plate can be adjusted and moved through the pressure plate sliding parts, which can make the labels affixed to the bottling bottles more firmly.

[0020] Optionally, the marking mechanism includes a marking frame installed on the side of the conveying mechanism, a lifting platform that is slidably mounted on the marking frame, a lifting drive component that drives the lifting platform to move up and down, and a marking device installed on the lifting platform; The marking device includes a marking controller installed on the lifting platform, a laser marking machine is provided on the side of the marking controller, and a positioning rod is arranged on the marking controller to abut against the top of the bottle.

[0021] By adopting the above technical solution, the liquor bottling production device has functions such as conveying, bottle separating, bottle guiding, pressing, labeling, marking, and sealing. The conveying mechanism can guide and adjust the conveying of the bottling bottles through the guide plate and adjusting parts. The rollers and pressure plates of the labeling component cooperate, and the pressure plate can be adjusted and moved through the pressure plate sliding parts, which can make the labels affixed to the bottling bottles more firmly.

[0022] Optionally, the feeding assembly includes a hopper for placing the hot melt film cylinder, a third conveyor belt arranged below the hopper for conveying the hot melt film cylinder, a lower pressure plate arranged on the output end of the third conveyor belt for pressing down on the hot melt film cylinder to separate it, and a fourth conveyor belt arranged below the lower pressure plate for conveying the separated hot melt film cylinder.

[0023] By adopting the above technical solution, the hopper can hold the stacked hot melt film, the third conveyor belt can transport the stacked hot melt film, the lower pressure plate can press down and separate the stacked hot melt film, and the fourth conveyor belt can transport the separated hot melt film, providing an orderly and efficient hot melt film supply process for subsequent plastic sealing of the bottle mouth, ensuring the normal operation of the plastic sealing mechanism, and improving the efficiency and quality of liquor bottling production.

[0024] Optionally, the discharge assembly includes a drop tube installed on the conveying end of the fourth conveyor belt. The bottom of the drop tube is provided with a limiting component for receiving the hot melt film cylinder that falls from the fourth conveyor belt into the drop tube. Clamping plate components for holding the hot melt film cylinder are provided on both sides of the drop tube. A pressure plate component and a lifting movable component for driving the pressure plate component are provided on the top of the drop tube. The heating assembly includes a heating channel arranged on the conveying mechanism, and a heating element is provided in the heating channel to heat and seal the hot melt film on the passing wine bottles.

[0025] By adopting the above technical solution, the discharge assembly's drop tube receives the hot melt film tube conveyed by the fourth conveyor belt, the limiting component receives the hot melt film tube falling into the drop tube, the clamping plate component holds the hot melt film tube, and the pressure plate component moves under the drive of the lifting and moving component, which can accurately place the hot melt film tube on the filling bottle; the heating element in the heating channel of the heating assembly can heat and seal the hot melt film tube on the passing filling bottle, realizing the sealing of the bottle mouth after marking.

[0026] In summary, this application includes at least one of the following beneficial technical effects: 1. This application uses a conveying mechanism to transport filling bottles, a bottle-splitting mechanism to separate the bottles, a bottle-guiding mechanism to guide the bottles, a top-pressing mechanism to assist, a labeling mechanism to apply labels, a marking mechanism to apply labels, and a sealing mechanism to seal the bottles. All these mechanisms work together to ensure that the entire process of liquor bottling production, from conveying to sealing, is closely connected, which greatly improves production efficiency and can meet the needs of large-scale production. 2. The conveying, bottle splitting, labeling, marking, and sealing operations are all completed by their respective mechanisms, reducing the need for manual intervention. This effectively reduces the probability of errors caused by manual operation, resulting in more accurate labeling positions, clearer labeling content, and more perfect sealing effects, thus ensuring product consistency and aesthetics. 3. This application integrates the production processes of bottle conveying, bottle splitting, guiding, labeling, marking, and sealing into a single system; it avoids the problems of increased labor costs and management difficulty caused by the independent operation of each process under the traditional decentralized production method, and reduces labor costs and management difficulty. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application.

[0028] Figure 2 This is a schematic diagram of the pressing mechanism and labeling mechanism in an embodiment of this application.

[0029] Figure 3 This is a schematic diagram of the marking mechanism structure according to an embodiment of this application.

[0030] Figure 4 This is a schematic diagram of the sealing mechanism according to an embodiment of this application.

[0031] Figure 5 This is a cross-sectional view of the feeding assembly according to an embodiment of this application.

[0032] Figure 6 This is a schematic diagram of the structure of the feeding component and the discharging component according to an embodiment of this application.

[0033] Figure 7 This is a schematic diagram of the material discharge component according to an embodiment of this application.

[0034] Figure 8 This is a cross-sectional view of the discharge component according to an embodiment of this application.

[0035] Explanation of reference numerals in the attached drawings: 1. Workbench; 2. Conveying mechanism; 21. Conveyor frame; 22. Conveyor belt; 3. Bottle separating mechanism; 31. Rotary disc; 4. Bottle guiding mechanism; 41. First mounting frame; 42. First transmission belt; 43. First adjusting component; 5. Top pressing mechanism; 51. Top pressing frame; 52. Second transmission belt; 53. Screw lifting component; 531. Screw frame; 532. Guide rod; 533. Sliding block; 534. Screw; 535. Handwheel adjustment. 6. Labeling Mechanism; 61. First Labeling Assembly; 611. First Labeling Machine Base; 612. First Label Head Adjustment Seat; 613. First Labeling Component; 6131. ​​First Unwind Roller; 6132. First Take-up Roller; 6133. First Roller; 62. Second Labeling Assembly; 63. Dust Removal Assembly; 631. Scraper; 632. Brush; 64. Label Covering Assembly; 641. Roller; 642. First Pressure Block; 643. Pressure Plate Sliding Part; 7. Marking Machine Structure; 71. Lifting platform; 72. Lifting drive component; 73. Marking device; 731. Laser marking machine; 732. Positioning rod; 8. Sealing mechanism; 81. Sealing machine frame; 82. Feeding assembly; 821. Hopper; 822. Third conveyor belt; 823. Lower pressure plate; 824. Feeding baffle; 825. Fourth conveyor belt; 83. Discharge assembly; 831. Drop tube; 832. Pressure plate component; 8321. First pressure plate; 8322. First connecting block; 8323, First movable rod; 8324, First baffle; 833, Clamping plate component; 8331, First fixed plate; 8332, Second arc-shaped plate; 8333, First spring; 8334, First telescopic rod; 834, Lifting movable component; 8341, Drive motor; 835, Limiting component; 8351, First limiting plate; 8352, Limiting drive component; 84, Heating assembly; 841, Heating channel; 85, Guide wheel; 86, Limiting guide plate. Detailed Implementation

[0036] The following is in conjunction with the appendix Figure 1-8 This application will be described in further detail.

[0037] This application discloses a liquor bottling production apparatus.

[0038] Reference Figure 1As shown, a liquor bottling production device includes a workbench 1, a conveying mechanism 2, a bottle-splitting mechanism 3, a bottle-guiding mechanism 4, a top-pressing mechanism 5, a labeling mechanism 6, a marking mechanism 7, and a sealing mechanism 8. The conveying mechanism 2 is arranged on the workbench 1 to transport the bottles for bottling. The bottle-splitting mechanism 3 is located at the output end of the conveying mechanism 2. The bottle-guiding mechanism 4 is located at the output end of the conveying mechanism 2 to guide the bottles on the conveying mechanism 2. The top-pressing mechanism 5 is installed above the bottle-guiding mechanism 4. The labeling mechanism 6 is arranged on both sides of the conveying mechanism 2 to label the sides of the bottles. The marking mechanism 7 is arranged on the conveyor belt 22 to position and mark the labeled liquor. The sealing mechanism 8 is located on the side of the marking mechanism 7 to seal the bottle openings after marking. This device integrates multiple stages of liquor bottling production, improving production efficiency and quality. The clear division of labor and mutual cooperation among the various mechanisms enable the orderly completion of a series of operations in liquor bottling production, reducing errors and contamination caused by manual operation.

[0039] Reference Figure 1 As shown, the conveying mechanism 2 includes a conveying frame 2 and a conveyor belt 22. The conveyor frame 21 supports and fixes the conveyor belt 22, and the filled bottles are placed on the conveyor belt 22 for transport. A stepper motor for driving the conveyor belt 22 is installed on the side of the conveying mechanism 2. Guide plates are provided on both sides of the conveyor belt 22. The guide plates are long and strip-shaped and are installed on the supports on both sides of the conveyor belt 22. Adjustable parts are provided on the guide plates. The adjustment parts can be a combination of nuts and bolts. The distance between the two sides and the guide plates can be adjusted by rotating the bolts to accommodate different sizes of filled bottles. At the same time, the guide plates are used to keep the filled bottles moving in a straight line during the transport process and prevent the filled bottles from deviating.

[0040] The front end of the baijiu bottling production device is also equipped with a drying air chamber. Inside the drying air chamber are several venting pipes with exhaust nozzles. One end of each venting pipe is installed on the main venting duct, and the venting pipes are arranged along the conveyor belt 22 from low to high. The venting pipes are located at the top center of the air chamber and on both side walls of the air chamber. High-pressure gas is sprayed from the exhaust nozzles to wash away any spillage and surface impurities on the bottle. Furthermore, the step-by-step arrangement of the venting pipes from low to high also allows for a stepped drying of the bottle's sides.

[0041] Reference Figure 1 As shown, the bottle-splitting mechanism 3 uses a rotating disk 31 set on the side of the conveyor belt 22. When the filled wine bottles are transported to the bottle-splitting mechanism 3 along the conveyor belt 22, the rotating disk 31 is rotated to separate the continuously transported wine bottles, so that they maintain a certain interval, which is convenient for subsequent operations.

[0042] Reference Figure 1 and Figure 2As shown, the bottle guiding mechanism 4 includes a first mounting frame 41, a first conveyor belt 42, and a first adjusting component 43. The first mounting frame 41 is installed on both sides of the conveying mechanism 2, and uses a metal frame with sufficient strength and stability. The first conveyor belt 42 is installed on the first mounting frame 41, and the first conveyor belt 42 is respectively arranged on both sides of the conveyor belt 22. The first adjusting component 43 can be a screw and nut mechanism, and is used to adjust the distance between the two first mounting frames 41; by adjusting the distance between the first conveyor belts 42, it can accommodate different sizes of filling bottles. At the same time, the first conveyor belt 42 clamps and guides the filling bottles during the conveying process, preventing the filling bottles from shaking in the next process, and keeping the filling bottles in the central axis position of the conveyor belt 22. The movement direction of the first conveyor belts 42 on both sides is the same as the movement direction of the conveyor belt 22, and the movement speed of the first conveyor belts 42 and the conveyor belt 22 is the same.

[0043] Reference Figure 1 and Figure 2 As shown, the pressing mechanism 5 includes a pressing frame 51 mounted on the workbench 1 and a second conveyor belt 52 slidably arranged on the pressing frame 51. A screw lifting component 53 is also provided on the back side of the second conveyor belt 52. The screw lifting component 53 includes a screw frame 531, a guide rod 532 mounted on the screw frame 531, a sliding block 533 slidably mounted on the guide rod 532, a screw 534 mounted on the sliding block 533, and a handwheel adjustment component 535 that drives the screw 534 to rotate and realizes the sliding block 533 sliding on the guide rod 532. The screw frame 531 is a metal frame fixedly connected to the workbench 1. The guide rod 532 is a smooth metal rod, thus providing sliding guidance for the sliding block 533.

[0044] Reference Figure 1 and Figure 2 As shown, the sliding block 533 is provided with a spiral pattern that matches the lead screw 534. The lead screw 534 passes through the sliding block 533 and engages with the thread inside the sliding block 533. When the handwheel adjustment component 535 is rotated, the handwheel adjustment component 535 drives the lead screw 534 to rotate, thereby driving the sliding block 533 to move up and down on the guide rod 532, thereby adjusting the height of the second conveyor belt 52 to accommodate different wine bottles. Furthermore, the second conveyor belt 52 abuts against the top of the bottle opening from the top, applying force up and down to keep the bottle stable during the conveying process.

[0045] Reference Figure 2 As shown, the labeling mechanism 6 includes a first labeling component 61 and a second labeling component 62 disposed on the workbench 1, with the first labeling component 61 and the second labeling component 62 distributed on both sides of the conveying mechanism 2. The first labeling component 61 includes a first labeling machine base 611, a first label head adjusting seat 612 mounted on the second labeling machine base, and a first labeling part 613 mounted on the first label head adjusting seat 612.

[0046] Reference Figure 2 As shown, the first label head adjustment seat 612 can use an existing rotary seat to adjust the contact angle between the first labeling component 613 and the conveyor belt 22, thereby allowing the first labeling component 613 to better contact the side wall of the bottle and affix the label to the bottle. The first labeling component 613 is equipped with a first labeling machine base 611, which includes a first unwinding roller 6131, a first take-up roller 6132, and a first roller 6133 that contacts the bottle. Labeling paper is placed on the first unwinding roller 6131, guided by the first roller 6133 to the first take-up roller 6132, and the label is affixed to the side of the bottle by the rolling motion of the first roller 6133.

[0047] The second labeling assembly 62 includes a second labeling machine base, a second label head adjustment seat mounted on the second labeling machine base, and a second labeling component mounted on the second label head adjustment seat. The second labeling component includes a second unwinding roller, a second winding roller, and a second roller. Its structure and principle are the same as those of the first labeling assembly 61. The labeling assemblies on both sides can label both sides of the wine bottle at the same time, realizing labeling operation on both sides.

[0048] Reference Figure 2 As shown, a dust removal assembly 63 is provided on the labeling mechanism 6. The dust removal assembly 63 has a scraper 631 disposed on the side of the conveyor mechanism 2 and a brush 632 arranged on the scraper 631 to remove dust from the surface of the labeled bottle. The scraper 631 on the dust removal assembly 63 is connected to the side of the conveyor belt 22 and a dust removal frame is provided. The scraper 631 is mounted on the dust removal frame and can rotate on the dust removal frame to adapt to various bottle styles. The labeling mechanism 6 is located on both sides of the conveyor belt 22.

[0049] After being filled, the bottles on the conveyor belt 22 are limited by the pressing mechanism 5 arranged above and pass through the dust removal components 63 on both sides of the conveyor belt 22. The brushes 632 on the dust removal components 63 on both sides remove the dust from the surface of the bottle after labeling. At the same time, when facing a cylindrical bottle, the brushes 632 can also initially attach the label to the cylindrical bottle.

[0050] Reference Figure 2 and Figure 3As shown, the conveying mechanism 2 is also equipped with a labeling assembly 64. The labeling assembly 64 has a roller 641 disposed on the side of the conveyor belt 22, and a first pressure block 642 disposed on the opposite side of the roller 641. A pressure plate slider 643 for adjusting the movement of the first pressure block 642 is disposed at the bottom of the first pressure block 642. The labeling assembly 64 better adheres the label to the cylindrical bottle. A pressure plate sliding frame is disposed on the pressure plate slider 643, and an existing screw adjustment component is arranged on the pressure plate sliding frame. At the same time, the first pressure block 642 is disposed on the screw adjustment component, and the distance between the first pressure block 642 and the roller 641 is adjusted by the screw adjustment component. When the bottle on the conveyor belt 22 passes the labeling assembly 64, the rotating roller 641 contacts the bottle, while the other side is limited by the first pressure block 642, so that the cylindrical bottle contacts the roller 641 and rotates. Because of the limitation of the first pressure block 642, the bottle also rotates on the first pressure block 642. Therefore, the label on the cylindrical bottle is tightly attached to the side of the bottle.

[0051] Reference Figure 3 As shown, the marking mechanism 7 includes a marking frame mounted on one side of the conveyor mechanism 2, a lifting platform 71 mounted on the marking frame, a lifting drive component 72 for driving the lifting platform 71 to rise and fall, and a marking device 73 mounted on the lifting platform 71. The marking frame is located on the side of the conveyor belt 22. The lifting drive component 72 can also use an existing screw adjustment component to control the lifting platform 71 to rise and fall on the marking frame. The working principle of the screw adjustment component is the same as described above, so it will not be described in detail. The marking device 73 includes a marking controller mounted on the lifting platform 71. A laser marking machine 731 is located on the side of the marking controller. A positioning rod 732 is arranged on the marking controller to abut against the top of the bottle. The marking controller is used to control the parameters and operation of the marking device 73, and the positioning rod 732 and the laser marking machine 731 are on the same axis. The head of the positioning rod 732 is perpendicular to the conveyor belt 22. When the bottle on the conveyor belt 22 passes the head of the positioning rod 732, the sensor on the rod head is triggered upon contact with the bottle, transmitting a signal to the marking controller. Upon receiving the signal, the marking controller provides feedback and controls the laser marking machine 731 to start marking the bottle in front of it. The marking position is determined by the positioning rod 732 to ensure the accuracy of the marking.

[0052] Reference Figure 4As shown, the sealing mechanism 8 includes a sealing frame 81, a feeding assembly 82 mounted on the sealing frame 81 for separating the hot melt film tube, a discharging assembly 83 arranged below the feeding assembly 82 and placing the hot melt film tube on the bottle, a heating assembly 84 for heating the hot melt film tube on the bottle, and a fourth conveyor belt 825 arranged below the lower pressure plate 823 for conveying the separated hot melt film tube to the discharging assembly 83.

[0053] Reference Figure 5 As shown, the feeding assembly 82 includes a hopper 821 for placing the hot melt film cylinder, a third conveyor belt 822 arranged below the hopper 821 for conveying the hot melt film cylinder, and a pressure plate 823 provided at the output port of the third conveyor belt 822. The hopper 821 facilitates the storage and guidance of the hot melt film cylinder as it falls.

[0054] The hot melt film sleeves are purchased materials, consisting of individual hot melt film sleeves nested together. Each sleeve is cylindrical, with one side open and the other side having a small hole. During nesting, the open-side sleeve is fitted onto the hole-side sleeve, allowing the open side to snap into the hole side. Furthermore, the hot melt film sleeves used for sealing the necks of wine bottles possess a certain degree of rigidity, making them resistant to deformation.

[0055] Reference Figure 5 As shown, the third conveyor belt 822 receives and transports the hot melt film cylinders falling from the hopper 821. The lower pressure plate 823 movably contacts each hot melt film cylinder on the sleeve and presses them down to separate the sleeves. A cylinder is installed on the lower pressure plate 823 for its lifting and lowering movement. The hot melt film cylinders are made of plastic and automatically recover their deformation after the lower pressure plate 823 completes its pressing. The hot melt film cylinders separated by the lower pressure plate 823 fall onto the fourth conveyor belt 825 and are transported to the discharge assembly 83.

[0056] An inclined guide block is arranged on the fourth conveyor belt 825, and the inclined guide block is located at the output end of the third conveyor belt 822. When the pressure plate 823 descends, it presses down on the bottom side of the hot melt film cylinder. At the same time, the inclined guide block abuts against the hot melt film cylinder and serves as a rotation fulcrum to realize the hot melt film cylinder turning and being placed vertically on the fourth conveyor belt 825.

[0057] Reference Figure 6 As shown, the discharge assembly 83 includes a drop tube 831 installed on the conveying end of the fourth conveyor belt 825. The bottom of the drop tube 831 is provided with a limiting component 835 for receiving the hot melt film cylinder that falls from the fourth conveyor belt 825 into the drop tube 831. Clamping plate components 833 for holding the hot melt film cylinder are provided on both sides of the drop tube 831. The top of the drop tube 831 is provided with a pressure plate component 832 and a lifting and moving component 834 for driving the pressure plate component 832.

[0058] Reference Figure 6 and Figure 7 As shown, the limiting component 835 includes a limiting drive 8352 mounted on the bottom side of the drop tube 831 and a first limiting plate 8351 mounted on the limiting drive 8352; the limiting drive 8352 controls the movement of the first limiting plate 8351 to ensure unobstructed passage of the drop tube 831. The clamping plate component 833 is provided with a first fixing plate 8331 fixed inside the drop tube 831, and a second arc-shaped plate 8332 is abutted on the first fixing plate 8331. The back side of the second arc-shaped plate 8332 abuts against the first fixing plate 8331, and the second arc-shaped plate 8332 is adapted to the side of the hot melt film cylinder; a first telescopic rod 8334 connected to the inside of the drop tube 831 is provided on the back side of the second arc-shaped plate 8332, and a first spring 8333 is provided circumferentially on the first telescopic rod 8334. Meanwhile, an arc-shaped hole is provided at the contact point between the first fixing plate 8331 and the second arc-shaped plate 8332, and the arc-shaped holes on both sides form a circular arc hole.

[0059] Reference Figure 8 As shown, the pressure plate component 832 is equipped with a pressure plate bracket, and first movable rods 8323 are provided on both sides of the pressure plate bracket. A first connecting block 8322 is arranged in the middle of the pressure plate bracket, and a circular first pressure plate 8321 is provided on the first connecting block 8322. The diameter of the first pressure plate 8321 is larger than the diameter of the hot melt film cylinder. On the opposite side facing the fourth conveyor belt 825, a first baffle 8324 is fixedly installed on the drop tube 831. The first movable rod 8323 is designed with a smaller diameter at one end and a larger diameter at the other end, and a guide slope is provided at the connection point where the diameters are different. The smaller diameter end of the first movable rod 8323 can be inserted into the arc hole formed by the first fixed plate 8331 and the second arc plate 8332. As the first movable rod 8323 extends in, its diameter increases. With the assistance of the guide slope, the first fixed plate 8331 and the second arc plate 8332 are opened, thereby enabling the second arc plate 8332 to move toward the center of the falling tube 831. The second arc plates 8332 on both sides move toward the center to clamp and position the hot melt film cylinder falling into the falling tube 831.

[0060] As the first movable rod 8323 descends, the first pressure plate 8321 also descends simultaneously. A pressure sensor is installed on the first telescopic rod 8334. When the second arc-shaped plate 8332 fully opens, the pressure sensor on the first telescopic rod 8334 detects the maximum pressure value and sends a signal to the control center. Upon receiving the signal, the control center controls the first limit plate 8351 on the limit component 835 to open, opening the passage for the hot melt film cylinder. When the first pressure plate 8321 rises, without the limit of the first movable rod 8323, the second arc-shaped plate 8332 recovers its deformation under the combined action of the first telescopic rod 8334 and the first spring 8333, and the limit component 835 also returns to its original shape.

[0061] The drive motor 8341 continuously controls the pressure plate component 832 to fall. The first pressure plate 8321 contacts the hot melt film cylinder held by the clamping plate component 833, thus causing the hot melt film cylinder to fall precisely onto the bottle neck. To further improve the accuracy of falling onto the bottle neck, a vision sensor is installed on the bottom side of the sealing machine frame 81 to determine the position of the passing bottle and control the falling time of the hot melt film cylinder, thereby accurately placing the hot melt cylinder onto the bottle.

[0062] Reference Figure 4 As shown, the heating assembly 84 includes a heating channel 841 arranged on the conveying mechanism 2. A heating element is provided in the heating channel 841 to heat and seal the hot melt film on the bottle entering the heating channel 841. The heating element can be a resistance wire or the like, which generates heat when energized to heat and seal the hot melt film.

[0063] Reference Figure 4 As shown, guide wheels 85 and limiting guide plates 86 are provided on both sides of the sealing mechanism 8. The guide wheels 85 are positioned between the filling bottles to ensure that the spacing between the filling bottles is the same. The limiting guide plates 86 limit the filling bottles to be kept in the center position of the conveyor belt 22, which makes it easier for the vision sensor to position them.

[0064] The implementation principle of a liquor bottling production device according to this application embodiment is as follows: After bottling, the bottles are placed on the conveyor belt 22 and dried in a drying air chamber to remove any residual water stains. The dried bottles are then separated by a bottle-separating mechanism 3, ensuring that the distance between each bottle is the same. The bottles are then held in the center by a bottle-guiding mechanism 4, positioning them at the center of the conveyor belt 22. Simultaneously, the bottles at the center of the conveyor belt 22 contact the second transmission belt 52 on the pressing mechanism 5. The vertical alignment of the second transmission belt 52 and the conveyor belt 22 limits the vertical movement of the bottles, making the conveying of the bottles on the conveyor belt 22 more stable. Furthermore, the same conveying speed of the second transmission belt 52 and the conveyor belt 22 ensures that the bottles are conveyed at the same speed on the conveyor belt 22.

[0065] After passing through the bottle guiding mechanism 4, the bottle comes into contact with the labeling mechanism 6 located at the output end of the bottle guiding mechanism 4, and a label is affixed to the side of the bottle. After labeling, the label on the upper side wall of the bottle is smoothed by the dust removal component 63, while the dust on the side wall of the bottle is cleaned. The label covering component 64 makes the label completely adhere to the side wall of the bottle; after labeling, the side wall of the bottle is marked by the marking mechanism 7. The sealing mechanism 8 separates and arranges the complete set of hot melt film tubes. At the same time, the sealing mechanism 8 is equipped with guide wheels 85 and limit guide plates 86 on both sides to keep the distance between the filled wine bottles the same and prevent them from shifting left and right on the conveyor belt 22. The position relationship of the filled wine bottles on the conveyor belt 22 is detected by the set vision sensor and the signal is sent to the control center. The control center then controls the discharge component 83 to drop the hot melt film tubes to the mouth of the filled wine bottles. Then, the hot melt film tubes on the filled wine bottles are heated and sealed by the heating channel 841. The sealed wine bottles are then packaged by workers.

[0066] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A liquor bottling production apparatus, characterized in that, It includes a workbench (1), a conveying mechanism (2) arranged on the workbench (1) for conveying the bottle to be filled, a bottle separating mechanism (3) arranged on the output end of the conveying mechanism (2), a bottle guiding mechanism (4) arranged on the output end of the conveying mechanism (2) for guiding the bottle to be filled on the conveying mechanism (2), a pressing mechanism (5) installed above the bottle guiding mechanism (4), a labeling mechanism (6) arranged on both sides of the conveying mechanism (2) for labeling the sides of the bottle to be filled, and a marking mechanism (7) arranged on the conveying mechanism (2) for positioning and marking the bottled liquor after labeling. The marking mechanism (7) is also provided with a sealing mechanism (8) on the side for sealing the mouth of the marked bottle; the sealing mechanism (8) includes a sealing frame (81), a feeding assembly (82) installed on the sealing frame (81) for separating the hot melt film tube, a discharging assembly (83) arranged under the feeding assembly (82) for placing the hot melt film tube on the bottle, and a heating assembly (84) for heating the hot melt film tube on the bottle.

2. The liquor bottling production apparatus according to claim 1, characterized in that, The conveying mechanism (2) includes a conveyor frame (21) and a conveyor belt (22) mounted on the conveyor frame (21); guide plates for guiding the filling bottles are provided on both sides of the conveyor belt (22), and adjustment components for adjusting the distance between the guide plates on both sides are provided on the guide plates.

3. The liquor bottling production apparatus according to claim 1, characterized in that, The bottle guiding mechanism (4) includes a first mounting frame (41) arranged on both sides of the transmission device, a first transmission belt (42) arranged on the first mounting frame (41), and a first adjusting component (43) for adjusting the distance between the two first mounting frames (41).

4. The liquor bottling production apparatus according to claim 1, characterized in that, The pressing mechanism (5) includes a pressing frame (51) mounted on the workbench (1) and a second conveyor belt (52) slidably arranged on the pressing frame (51). A screw lifting component (53) is provided on the back side of the second conveyor belt (52). The screw lifting component (53) includes a screw frame (531) mounted on the conveying mechanism (2), a guide rod (532) mounted on the screw frame (531), a sliding block (533) slidably mounted on the guide rod (532), a screw (534) mounted on the sliding block (533), and a handwheel adjusting component (535) that drives the screw (534) to rotate and realizes the sliding of the sliding block (533).

5. A liquor bottling production apparatus according to claim 1, characterized in that, The labeling mechanism (6) includes a first labeling component (61) and a second labeling component (62) disposed on the workbench (1), and the first labeling component (61) and the second labeling component (62) are distributed on both sides of the conveying mechanism (2); The first labeling assembly (61) includes a first labeling machine base (611), a first label head adjustment seat (612) mounted on the first labeling machine base (611), and a first labeling component (613) mounted on the first label head adjustment seat (612). The second labeling assembly (62) includes a second labeling machine base, a second label head adjustment seat mounted on the second labeling machine base, and a second labeling component mounted on the second label head adjustment seat.

6. A liquor bottling production apparatus according to claim 5, characterized in that, The output end of the bottle guiding mechanism (4) is also provided with a dust removal component (63). The dust removal component (63) has a scraper (631) disposed on the side of the conveying mechanism (2) and a brush (632) arranged on the scraper (631) to remove dust from the surface of the bottle after labeling.

7. A liquor bottling production apparatus according to claim 2, characterized in that, The labeling component output end side is also provided with a labeling component (64). The labeling component (64) has a roller (641) provided on the side of the conveyor belt (22). A first pressure block (642) is provided on the opposite side of the roller (641). A pressure plate slider (643) for adjusting the movement of the first pressure block (642) is provided at the bottom of the first pressure block (642).

8. A liquor bottling production apparatus according to claim 1, characterized in that, The marking mechanism (7) includes a marking frame installed on the side of the conveying mechanism (2), a lifting platform (71) that is slidably mounted on the marking frame, a lifting drive component (72) that drives the lifting platform (71) to rise and fall, and a marking device (73) installed on the lifting platform (71). The marking device (73) includes a marking controller installed on the lifting platform (71), a laser marking machine (731) is provided on the side of the marking controller, and a positioning rod (732) is arranged on the marking controller to abut against the top of the bottle.

9. A liquor bottling production apparatus according to claim 1, characterized in that, The feeding assembly (82) includes a hopper (821) for placing the hot melt film cylinder, a third conveyor belt (822) arranged below the hopper (821) for conveying the hot melt film cylinder, a lower pressure plate (823) arranged on the output end of the third conveyor belt (822) for pressing down on the hot melt film cylinder to separate it, and a fourth conveyor belt (825) arranged below the lower pressure plate (823) for conveying the separated hot melt film cylinder.

10. A liquor bottling production apparatus according to claim 9, characterized in that, The discharge assembly (83) includes a drop tube (831) installed on the conveying end of the fourth conveyor belt (825). The bottom of the drop tube (831) is provided with a limiting component (835) for receiving the hot melt film cylinder that falls from the fourth conveyor belt (825) into the drop tube (831). The two sides of the drop tube (831) are provided with clamping plate components (833) for clamping the hot melt film cylinder. The top of the drop tube (831) is provided with a pressure plate component (832) and a lifting and moving component (834) for driving the pressure plate component (832) to move. The heating assembly (84) includes a heating channel (841) arranged on the conveying mechanism (2), wherein a heating element is provided in the heating channel (841) to heat and seal the hot melt film on the passing bottle.