Intelligent labeling device for wine bottles

Through an intelligent control system and a collaborative working mechanism, fully automated labeling of wine bottles has been achieved, solving the problems of low efficiency and high cost of traditional labeling and realizing efficient and accurate automated labeling.

CN224146461UActive Publication Date: 2026-04-21NINGXIA XIBAN WINERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGXIA XIBAN WINERY CO LTD
Filing Date
2025-06-09
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Traditional wine bottle labeling processes are characterized by low production efficiency and high labor costs, making it difficult to achieve efficient automation.

Method used

The intelligent control system controls the conveying mechanism and the bottle combing mechanism. Through sensor sensing, the labeling roller, labeling roller and bottom paper recycling roller and other mechanisms work together to achieve fully automated labeling. This includes the lateral movement of the limit plate and the vertical lifting of the support plate to ensure accurate labeling of bottles of different sizes.

Benefits of technology

It achieves fully automated and intelligent labeling of wine bottles, reducing manual labor output, lowering labor intensity, improving production efficiency, and ensuring accurate labeling of bottles of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent labeling device for wine bottles. Comprising a setting frame, a conveying chain plate, a conveying motor, a bottle combing roller, a bottle combing motor, a limiting plate air cylinder, a limiting plate, a supporting plate, a supporting rod, a supporting air cylinder, a label placing wheel, an auxiliary wheel, a labeling wheel, a sensor, a bottom paper recycling wheel, a setting plate, a fixing plate, a vertical air cylinder, a transverse air cylinder, a pressing wheel, an auxiliary plate, a controller and the like. An advanced intelligent control system is adopted to control the conveying mechanism and the bottle combing mechanism to sequentially, orderly and automatically convey grape wine bottles to the labeling mechanism, the sensor, the label placing wheel, the labeling wheel, the bottom paper recycling wheel and other mechanisms of the labeling mechanism are controlled to cooperatively work through sensing of the sensor, and the passing grape bottles are labeled one by one; the full-automatic intelligent labeling device has the advantages that full-automatic intelligent labeling treatment is realized, manual labor output is reduced, manual labor intensity is reduced, and production efficiency is improved.
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Description

Technical Field

[0001] This application relates to the field of wine bottle labeling equipment technology, and more particularly to a smart wine bottle labeling device. Background Technology

[0002] Labeling is a crucial step in wine production. Traditional labeling methods, which rely on manual or semi-automated operations, are not only inefficient but also costly in terms of labor. To address these issues, we are now providing an intelligent labeling device for wine bottles. Utility Model Content

[0003] This application provides an intelligent labeling device for wine bottles, which adopts an advanced intelligent control system. The system controls the conveying mechanism and the bottle combing mechanism to automatically and orderly transport wine bottles to the labeling mechanism. Through sensor sensing, the system controls the sensor, labeling wheel, labeling wheel, bottom paper recycling wheel and other mechanisms of the labeling mechanism to work together to label each passing wine bottle. This achieves fully automatic and intelligent labeling, which not only reduces manual labor output and intensity, but also improves production efficiency.

[0004] This application provides a smart labeling device for wine bottles, including a setting frame. A chain roller is installed at each of the bottom ends of the setting frame, and the same conveyor chain is installed on both chain rollers. One chain roller has an input end connected to a conveyor motor. Two sets of limit plate cylinders are installed on one side of the setting frame, with two cylinders in each set. The output end of each set of limit plate cylinders is connected to the same limit plate. A bottle combing roller is movably installed on the other side of the setting frame, with its input end connected to a bottle combing motor. Three support rods are installed on one side of the setting frame, and multiple support cylinders are installed at the top of each of the three support rods. The top of the multiple support cylinders is equipped with the same support plate. The top of the support plate is equipped with a label-dispensing wheel, two auxiliary wheels, a label-applying wheel, a bottom paper recycling wheel, and a sensor. An auxiliary plate is installed close to the label-applying wheel and fixed to the support plate. Two setting plates are installed on the other side of the setting frame, each with a vertical cylinder. The top of the two vertical cylinders is equipped with the same fixing plate. Two horizontal cylinders are installed on one side of the fixing plate, and each of the two horizontal cylinders has a pressure wheel at its output end.

[0005] The conveyor motor, comb motor, limit plate cylinder, support cylinder, sensor, vertical cylinder and horizontal cylinder are all connected to the same controller.

[0006] Furthermore, the bottom of the label-dispensing wheel, label-applying wheel, and bottom paper recycling wheel are all connected to a power motor, and multiple power motors are connected to the controller line.

[0007] Furthermore, multiple power motors are servo motors.

[0008] Furthermore, the limiting plate can move laterally.

[0009] Furthermore, the support plate can be raised and lowered vertically.

[0010] Furthermore, the pressure rollers can be raised and lowered vertically.

[0011] As can be seen from the above technical solution, this application provides an intelligent labeling device for wine bottles, including a setting frame, a frame body for setting up conveying, combing, and labeling mechanisms, and a chain roller at each end of the bottom of the setting frame for setting up the conveyor chain. Under the action of the conveyor motor, the conveyor chain moves, forming a conveying mechanism together with the conveyor chain and the conveyor motor. The same conveyor chain is set on the two chain rollers, which plays a conveying role. The coordinated movement of the conveyor motor and the chain rollers drives the wine bottles placed on the conveyor chain to move forward in an orderly manner, transporting the wine bottles from the input end to the output end of the conveying mechanism, allowing the wine bottles to pass through the combing mechanism and the labeling mechanism in an orderly manner, providing strong support for the automated and accurate labeling operation of wine bottles. Each chain roller has a conveyor motor connected to its input end, providing kinetic energy output to support the conveying operation. Two sets of limit plate cylinders are installed on one side of the frame, also with kinetic energy output to support the lateral movement of the limit plates. During the conveying of various sizes of wine bottles, the cylinders output kinetic energy and, based on the bottle specifications input on the controller, push the limit plates laterally to the corresponding positions, thus limiting the movement of the wine bottles and ensuring their precise passage past the labeling rollers. This provides strong support for the accurate labeling of different sizes of wine bottles. Each set has two cylinders, and the output end of each limit plate cylinder is connected to the same limit plate, serving a limiting function. During the movement of the wine bottles, the cylinders... The wine bottles are controlled by limit positions, allowing them to pass sequentially and orderly along a specific trajectory through the labeling mechanism. A combing roller is movably mounted on the other side of the mounting frame. This combing roller, together with a combing motor, forms the combing mechanism. The combing roller is shaped like a threaded rod and rotates smoothly under the action of the motor, combing the wine bottles conveyed by the conveyor mechanism. This ensures that the bottles are evenly spaced and pass through the labeling mechanism at equal intervals, allowing the labeling mechanism to precisely label each bottle. The input end of the combing roller is connected to the combing motor and a kinetic energy output mechanism, providing kinetic energy support for the combing operation. Three support rods are installed on one side of the mounting frame, supporting the support cylinders. Each of the three support rods has a top... The system is equipped with multiple support cylinders and a kinetic energy output mechanism to provide kinetic energy support for the vertical lifting and lowering of the support plates. When the support plates need to be lifted or lowered vertically, kinetic energy is output to drive each support plate to lift or lower vertically. The top of the multiple support cylinders is equipped with the same support plate, which serves as a support carrier for the label-dispensing wheel, auxiliary wheels, labeling wheels, bottom paper recycling wheels, and sensors. The top of the support plate is equipped with one label-dispensing wheel, two auxiliary wheels, one labeling wheel, one bottom paper recycling wheel, and sensors. The label-dispensing wheel is used to hold the bottle label rolls with bottom paper attached. During the labeling process, it rotates under the action of a power motor, sequentially releasing the bottle labels with bottom paper attached. These labels are then passed orderly by the labeling wheels and bottom paper recycling wheels, achieving precise labeling of the wine bottles.The labeling mechanism consists of a labeling wheel, an auxiliary wheel, a labeling wheel, and a bottom paper recycling wheel. The auxiliary wheel assists by altering the movement trajectory of the bottle label with the bottom paper attached. The labeling wheel, driven by a motor, rotates and, in conjunction with the pressure wheel, presses the bottle label, lifted by the auxiliary plate, onto the wine bottle. The bottom paper recycling wheel, driven by a motor, collects the bottom paper carrying the label for centralized processing, reducing environmental pollution. The device acts as a sensor, detecting passing wine bottles. When a bottle is detected, the information is transmitted back to the controller, which then directs the labeling mechanism to move the label forward and apply it to the bottle, achieving precise labeling and reducing label waste. An auxiliary plate, fixed to a support plate, is located near the labeling wheel and assists in lifting the front end of the label as it reaches the wheel, allowing it to be applied to the wine bottle under the action of the labeling and pressure wheels. Two setting plates are installed on the other side of the setting frame to set the vertical air... The cylinder rod has two mounting plates, each with a vertical cylinder and a kinetic energy output structure. This provides kinetic energy support for the vertical lifting and lowering of the pressure roller. When the pressure roller needs to be lifted vertically, it outputs kinetic energy to drive it to move vertically. The tops of the two vertical cylinders are mounted on the same fixed plate, which houses the structure of horizontal cylinders. Two horizontal cylinders are mounted on one side of the fixed plate, also with a kinetic energy output structure. This provides strong support for the pressure roller to press against the wine bottle. During the labeling process, the output kinetic energy causes the pressure roller to press against the wine bottle, thus pressing the bottle against the labeling roller. Under the action of the labeling roller, the bottle rotates in place, applying the label to the wine bottle. During the pressing process, the label is pressed firmly against the bottle. After labeling, the kinetic energy is output, driving the pressing roller to return to its original position, allowing the wine bottle to continue moving forward under the action of the conveying mechanism for output. Each of the two horizontal cylinder output ends is equipped with a pressing roller, which acts as a constraint. During the labeling process, the wine bottle is constrained to rotate in place under the action of the labeling roller to achieve labeling, and during this process, the label attached to the bottle is pressed firmly.

[0012] The conveyor motor, bottle combing motor, limit plate cylinder, support cylinder, sensor, vertical cylinder, and horizontal cylinder are all connected to the same controller for control. An advanced intelligent control system controls the conveyor and bottle combing mechanisms to automatically and sequentially transport wine bottles to the labeling mechanism. Through sensor detection, the labeling mechanism's sensors, labeling wheels, labeling wheels, and bottom paper recycling wheels work in concert to label each passing wine bottle. This achieves intelligent and fully automated labeling of wine bottles, reducing manual labor output, lowering labor intensity, and improving production efficiency.

[0013] In summary, the beneficial effects of this application are as follows:

[0014] 1. An advanced intelligent control system is adopted, which controls the conveying mechanism and the bottle combing mechanism to automatically and orderly transport wine bottles to the labeling mechanism. Through the sensing of sensors, the labeling mechanism's sensors, labeling rollers, labeling rollers, bottom paper recycling rollers and other mechanisms work together to label each passing wine bottle, realizing fully automatic and intelligent labeling processing. This not only reduces manual labor output and intensity, but also improves production efficiency.

[0015] 2. The limiting plate can move laterally. During the conveying process of various sizes of wine bottles, the limiting plate cylinder can push the limiting plate laterally to the corresponding position according to the wine bottle specifications input on the controller, so as to limit the movement trajectory of the wine bottle and ensure that the wine bottle passes accurately through the labeling wheel. This provides strong support for the equipment to accurately label wine bottles of different sizes.

[0016] 3. The positions of the support plate and the pressure rollers can be adjusted vertically, enabling labeling of wine bottles of different sizes and heights, thus improving the practicality of the equipment. Attached Figure Description

[0017] To more clearly illustrate the technical solution of this application, the accompanying drawings used in the implementation examples will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained from these drawings without any creative effort.

[0018] Figure 1 This is a schematic diagram of the structure of this application.

[0019] Illustration:

[0020] Among them, 1-setting frame, 2-conveyor chain plate, 3-conveyor motor, 4-bottle combing roller, 5-bottle combing motor, 6-limiting plate cylinder, 7-limiting plate, 8-support plate, 9-support rod, 10-support cylinder, 11-labeling wheel, 12-auxiliary wheel, 13-labeling wheel, 14-sensor, 15-bottom paper recycling wheel, 16-setting plate, 17-fixing plate, 18-vertical cylinder, 19-horizontal cylinder, 20-pressing wheel, 22-auxiliary plate, 23-controller. Detailed Implementation

[0021] To enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings.

[0022] From the above technical solutions, it can be seen that:

[0023] Example 1:

[0024] See Figure 1 。

[0025] A smart labeling device for wine bottles includes a mounting frame 1, which houses the conveying, combing, and labeling mechanisms. A chain roller is mounted at each end of the bottom of the mounting frame 1 for mounting conveyor chain plates 2. Driven by a conveyor motor 3, the conveyor chain plates 2 move, forming a conveying mechanism together with the conveyor chain plates 2 and the conveyor motor 3. The same conveyor chain plate 2 is mounted on both chain rollers, serving a conveying function. The coordinated movement of the conveyor motor 3 and the chain rollers propels the wine bottles placed on the conveyor chain plates 2 forward in an orderly manner, transporting the wine bottles from the input end to the output end of the conveying mechanism. This allows the wine bottles to pass sequentially through the combing and labeling mechanisms, providing strong support for automated and precise labeling of wine bottles. One of the chain rollers is the input... The conveyor is connected to a conveyor motor 3, which has a kinetic energy output structure to provide kinetic energy support for the conveying operation of the conveying mechanism. Two sets of limit plate cylinders 6 are installed on one side of the frame 1, with kinetic energy output structures to provide kinetic energy support for the lateral movement of the limit plates 7. During the conveying of wine bottles of various sizes, the cylinders output kinetic energy and, according to the wine bottle specifications input on the controller 23, push the limit plates 7 laterally to the corresponding positions, thus limiting the movement of the wine bottles and ensuring their accurate passage past the labeling rollers. This provides strong support for the accurate labeling of wine bottles of different sizes. Each set has two cylinders, and the output end of each set of limit plate cylinders 6 is connected to the same limit plate 7, which serves as a limit. During the movement of the wine bottles… The system limits the movement of wine bottles, ensuring they pass sequentially and orderly along a specific trajectory through the labeling mechanism. A combing roller 4 is movably mounted on the other side of the frame 1. This combing roller 4, together with a combing motor 5, forms the combing mechanism. The combing roller 4 is shaped like a threaded rod and rotates smoothly under the action of the combing motor 5, combing the wine bottles conveyed by the conveyor mechanism. This ensures the bottles are evenly spaced and pass through the labeling mechanism at equal intervals, allowing for precise labeling. The input end of the combing roller 4 is connected to the combing motor 5 and a kinetic energy output mechanism, providing kinetic energy support for the combing operation. Three support rods 9 are installed on one side of the frame 1 for support. Multiple support cylinders 10 are mounted on the top of each of the three support rods 9. These cylinders, acting as kinetic energy output mechanisms, provide kinetic energy support for the vertical lifting and lowering of the support plate 8. When the support plate 8 needs to be lifted vertically, kinetic energy is output to drive each support plate to lift vertically. The top of the multiple support cylinders 10 is mounted on the same support plate 8, which serves as a support carrier for the installation of structures such as the label-dispensing wheel 11, auxiliary wheels 12, label-applying wheel 13, bottom paper recycling wheel 15, and sensor 14. The top of the support plate 8 is equipped with one label-dispensing wheel 11, two auxiliary wheels 12, one label-applying wheel 13, one bottom paper recycling wheel 15, and sensor 14. The label-dispensing wheel 1 is used to hold the bottle label roll with bottom paper attached. During the labeling process, it rotates under the action of a power motor, sequentially releasing the bottle labels with bottom paper attached.The labeling mechanism, consisting of the labeling wheel 11, auxiliary wheel 12, labeling wheel 13, and bottom paper recycling wheel 15, guides the labeling rollers through the labeling wheel 13 in an orderly fashion, achieving precise labeling of the wine bottles sequentially. The auxiliary wheel 12 assists by altering the movement trajectory of the label with bottom paper attached. The labeling wheel 13 performs the labeling function, rotating under the drive of a motor and working in conjunction with the pressure wheel 20 to press the label, lifted by the auxiliary plate 22, onto the wine bottle, thus achieving the labeling purpose. The bottom paper recycling wheel 15 performs the recycling function and rotates under the drive of a motor. The system includes a sensor 14 that detects passing wine bottles and transmits the information back to the controller 23. The controller 23 then controls the labeling mechanism to move the label forward and apply it to the wine bottle, ensuring accurate labeling and reducing label waste. An auxiliary plate 22, fixed to the support plate 8, is located near the labeling wheel 13 and assists in lifting the front end of the label when it reaches the labeling wheel 13, allowing the label to be applied to the wine bottle under the action of the labeling wheel 13 and the pressure wheel 22. On the bottle, two mounting plates 16 are installed on the other side of the mounting bracket 4, housing the rods of vertical cylinders 18. Each mounting plate 16 has a vertical cylinder 18, a kinetic energy output structure, providing kinetic energy support for the vertical lifting and lowering of the pressure roller 22. When the pressure roller 22 needs to be lifted or lowered vertically, kinetic energy is output to drive the pressure roller 22 to lift or lower vertically. The top of the two vertical cylinders 18 is mounted on the same fixing plate 17, housing the structure of horizontal cylinders 19. Two horizontal cylinders 19 are located on one side of the fixing plate 17, a kinetic energy output structure, providing strong support for the pressure roller 22 to press against the wine bottle. During the labeling process of the wine bottle, the output kinetic energy allows the pressure roller 22 to lift or lower vertically. 2. The label is pressed onto the wine bottle, causing the bottle to rotate in place under the action of the labeling roller 13, thus affixing the label to the bottle. During the pressing process, the label attached to the bottle is compressed. After labeling, kinetic energy is output to drive the pressing roller 22 back to its original position, allowing the wine bottle to continue moving forward under the action of the conveying mechanism for output. Each of the two transverse cylinders 19 has a pressing roller 22 at its output end, which acts as a constraint. During the labeling process, the wine bottle is constrained to rotate in place under the action of the labeling roller 13 to achieve labeling, and during this process, the label attached to the bottle is compressed.

[0026] The conveyor motor 3, the bottle combing motor 5, the limit plate cylinder 6, the support cylinder 10, the sensor 14, the vertical cylinder 18, and the horizontal cylinder 19 are all connected to the same controller 23, which plays a control role. The advanced intelligent control system controls the conveyor mechanism and the bottle combing mechanism to automatically and orderly convey wine bottles to the labeling mechanism. Through the sensing of the sensor 14, the labeling mechanism's labeling wheel 11, labeling wheel 13, bottom paper recycling wheel 15, and other mechanisms work together to label each passing wine bottle, thereby achieving the purpose of intelligent and fully automatic labeling of wine bottles, reducing manual labor output, reducing labor intensity, and improving production efficiency.

[0027] In a preferred embodiment, the bottom of the labeling wheel 11, the labeling wheel 13, and the bottom paper recycling wheel 15 are all connected to a power motor, and the multiple power motors are all connected to the controller 23.

[0028] As a preferred embodiment, all the power motors are servo motors, which realize closed-loop control of position, speed and torque, overcome the stepper motor's step loss problem, meet the smooth operation of the labeling mechanism, and ensure the labeling accuracy of the labeling equipment.

[0029] In a preferred embodiment, the limiting plate 7 can move laterally. During the conveying process of various sizes of wine bottles, the limiting plate cylinder 6 can push the limiting plate 7 laterally to the corresponding position according to the wine bottle specifications input on the controller 23, so as to limit the movement trajectory of the wine bottle and ensure that the wine bottle passes accurately from the labeling wheel 13. This provides strong support for the accurate labeling of wine bottles of different sizes by the equipment.

[0030] As a preferred embodiment, the support plate 8 can be raised and lowered vertically to provide strong support for the accurate labeling of wine bottles of different sizes and heights.

[0031] As a preferred embodiment, the pressure roller 22 can be raised and lowered vertically to provide strong support for the accurate labeling of wine bottles of different sizes and heights.

[0032] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the application disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope of this application is indicated by the claims.

[0033] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The embodiments of this application described above do not constitute a limitation on the scope of protection of this application.

Claims

1. A device for intelligent labeling of wine bottles, characterized in that, The device includes a setting frame (1), with a chain roller at each of its two bottom ends. The two chain rollers are equipped with the same conveyor chain plate (2). One of the chain rollers has an input end connected to a conveyor motor (3). Two sets of limit plate cylinders (6) are installed on one side of the setting frame (1), with two cylinders in each set. The output end of each set of limit plate cylinders (6) is connected to the same limit plate (7). A bottle combing roller (4) is movably installed on the other side of the setting frame (1). The input end of the bottle combing roller (4) is connected to a bottle combing motor (5). Three support rods (9) are installed on one side of the setting frame (1). Multiple support cylinders (10) are installed on the top of each of the three support rods (9). The set frame (1) is provided with the same support plate (8). The top of the support plate (8) is provided with a label-laying wheel (11), two auxiliary wheels (12), a label-applying wheel (13), a bottom paper recycling wheel (15), and a sensor (14). An auxiliary plate is provided close to the label-applying wheel (13) and fixed on the support plate (8). Two set plates (16) are installed on the other side of the set frame (1). A vertical cylinder (18) is provided on each of the two set plates (16). The top of the two vertical cylinders (18) is provided with the same fixing plate (17). Two horizontal cylinders (19) are provided on one side of the fixing plate (17). A pressure wheel (20) is provided at the output end of each of the two horizontal cylinders (19). The conveying motor (3), the combing motor (5), the limiting plate cylinder (6), the supporting cylinder (10), the sensor (14), the vertical cylinder (18), and the horizontal cylinder (19) are all connected to the same controller (23).

2. The intelligent labeling device for wine bottles according to claim 1, characterized in that, The bottom of the labeling wheel (11), the labeling wheel (13), and the bottom paper recycling wheel (15) are all connected to a power motor, and multiple power motors are connected to the controller (23).

3. The device for intelligent labeling of wine bottles according to claim 2, characterized in that, All of the aforementioned power motors are servo motors.

4. The intelligent labeling device for wine bottles according to claim 1, characterized in that, The limiting plate (7) can move laterally.

5. The intelligent labeling device for wine bottles according to claim 1, characterized in that, The support plate (8) can be raised and lowered vertically.

6. The intelligent labeling device for wine bottles according to claim 1, characterized in that, The clamping wheel (20) can be raised and lowered vertically.