Efficient labeling machine

By coordinating the bottle-separating and labeling components and adjusting and driving the screws, efficient and precise labeling of bottle-shaped products is achieved, solving the problem of difficulty in labeling bottle-shaped products by existing labeling machines and improving labeling efficiency and success rate.

CN223546670UActive Publication Date: 2025-11-14SHANGHAI LAWARE PACKAGING MACHINERY
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN201921696830.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2019-10-11
Publication Date
2025-11-14
Estimated Expiration
2029-10-11

AI Technical Summary

Technical Problem

Existing labeling machines struggle to efficiently and accurately apply labels to the circumference of bottle-shaped products, and the success rate is low.

Method used

The system employs a bottle-separating component and a labeling component. The screw position is adjusted by the adjusting unit, and the screw is driven to rotate by the driving unit, achieving efficient separation and labeling of bottle-shaped products. Combined with the coordinated work of the conveying component and the labeling component, it ensures efficient labeling on the circumference of the bottle-shaped products.

Benefits of technology

This technology enables efficient label application on the circumference of bottle-shaped products, improving labeling efficiency and accuracy, and solving the problems of difficult application and poor accuracy in existing technologies.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223546670U_ABST
    Figure CN223546670U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of industrial automatic equipment, in particular to an efficient labeling machine which comprises a conveying assembly, a bottle separating assembly used for separating objects conveyed by the conveying assembly at certain intervals and a labeling assembly used for labeling the objects conveyed by the conveying assembly. The labeling assembly is arranged on the side edge of the conveying assembly, the bottle separating assembly comprises an adjusting part, a screw rod and a driving part, the driving part is arranged on one side of the conveying assembly, the screw rod is rotationally arranged on the driving part, and the adjusting part is connected with the driving part. Objects conveyed by the conveying assembly are separated through the screen splitting assembly, labels are pasted to the separated objects through the labeling assembly, the labeling efficiency and precision are improved, and efficient object separation is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of industrial automated equipment technology, and in particular to a high-efficiency labeling machine. Background Technology

[0002] Product labels serve to describe, identify, and decorate goods, while also facilitating sales and traceability. Trademarks, product specifications and key parameters, instructions for use, and product descriptions on labels are indispensable components of modern products. Labeling machines are devices that affix rolls of self-adhesive labels to products or prescribed packaging; they are an essential part of modern packaging. Currently, the types of labeling machines are gradually increasing, and the technological level has greatly improved, shifting towards automated, high-speed labeling machines.

[0003] Existing labeling machines on the market only apply labels to a single surface of the conveyed product during operation. For bottle-shaped products, labels are not easy to apply to the circumference of the product, and the application accuracy and success rate are poor. Utility Model Content

[0004] In view of the above-mentioned problem of inconvenience in labeling bottle-shaped products, this utility model provides a high-efficiency labeling machine that can apply labels to the circumferential surface of bottle-shaped products, while ensuring high efficiency and high precision in labeling.

[0005] To achieve the above objectives, the embodiments of this utility model adopt the following technical solutions:

[0006] This utility model provides a high-efficiency labeling machine, including a conveying assembly, a bottle-separating assembly for separating objects conveyed by the conveying assembly into a certain distance, and a labeling assembly for affixing labels to the objects conveyed by the conveying assembly. The labeling assembly is disposed on the side of the conveying assembly. The bottle-separating assembly includes an adjusting part, a screw, and a driving part. The driving part is disposed on one side of the conveying assembly, the screw is rotatably disposed on the driving part, and the adjusting part is connected to the driving part.

[0007] According to one aspect of the present invention, the adjusting part includes a slide, a first adjusting part, and a second adjusting part. The slide is connected to the driving part. The first adjusting part includes a first adjusting plate, a first adjusting rod, and a first handwheel. The second adjusting part includes a second adjusting plate, a second adjusting rod, and a second handwheel. One end of the first adjusting rod passes through the first adjusting plate and is rotatably connected to the first adjusting plate. The other end of the first adjusting rod is fixedly connected to the slide. The first handwheel is fixed to the end of the first adjusting rod that passes through the first adjusting plate. One end of the second adjusting rod passes through the second adjusting plate and is rotatably connected to the second adjusting plate. The other end of the second adjusting rod is fixedly connected to the slide. The second handwheel is fixed to the end of the second adjusting rod that passes through the second adjusting plate. The first adjusting rod and the second adjusting rod are arranged perpendicularly and are respectively perpendicular to the slide.

[0008] According to one aspect of the present invention, the first adjusting part further includes at least two first guide rods, the first guide rods being evenly distributed around the first adjusting rod and arranged parallel to the first adjusting rod, one end of the first guide rod being disposed on the first adjusting plate, and the other end of the first guide rod being disposed on the slide block.

[0009] According to one aspect of the present invention, the second adjusting part further includes at least two second guide rods, which are evenly distributed around the second adjusting rod and arranged parallel to the second adjusting rod. One end of the second guide rod is disposed on the second adjusting plate, and the other end of the second guide rod is disposed on the slide block.

[0010] According to one aspect of the present invention, the driving unit includes a drive motor, a sprocket assembly, and a mounting plate. The mounting plate is disposed on one side of the conveying assembly. The screw is rotatably disposed on the mounting plate and connected to the sprocket assembly. The sprocket assembly is connected to the drive motor. The drive motor is disposed on one side of the conveying assembly. The mounting plate is fixedly connected to the adjusting unit.

[0011] According to one aspect of the present invention, the mounting plate includes a support plate and a main plate. The support plate is movably disposed on one side of the conveying assembly and is fixedly connected to the main plate. The main plate has an accommodating space, and a screw is disposed in the accommodating space. One end of the screw is rotatably connected to the main plate through a bearing. The main plate is fixedly connected to the adjusting part.

[0012] According to one aspect of the present invention, the labeling assembly includes a frame, a label reel on which a label roll is mounted, a waste paper recycling reel for recycling the backing paper, a label printing section, and a traction section. The frame is disposed on one side of the conveying assembly. The label reel, the waste paper recycling reel, the label printing section, and the traction section are all mounted on the frame. The labels on the label roll are wound around the traction section to form a label path and then enter the label printing section. The label roll includes backing paper, which is wound around the traction section to form a backing paper path and is wrapped around the waste paper recycling reel.

[0013] According to one aspect of the present invention, the label printing unit includes a backing paper peeling plate for peeling backing paper from a label roll, a label printer, and a label applicator. The backing paper peeling plate is disposed at the bottom of the label printer and abuts against the label roll to peel the label and the backing paper. The label extends into the label printer. The label applicator is mounted on one side of the label printer, and a suction head is mounted on the bottom of the label applicator. The suction head is located on one side of the backing paper peeling plate.

[0014] According to one aspect of the present invention, the traction unit includes a first traction roller and a second traction roller, the first traction roller being disposed on the label path, the second traction roller being disposed on the base paper path, the label being wound around the first traction roller, and the base paper being wound around the second traction roller.

[0015] According to one aspect of the present invention, the labeling assembly further includes an electrical box, which is electrically connected to the label printing unit and the traction unit.

[0016] The advantages of this utility model are as follows: the screen-separating component separates the objects conveyed by the conveying component, and the labeling component pastes the labels onto the separated objects, thereby improving the efficiency and accuracy of labeling; the adjusting part adjusts the position of the screw relative to the conveying component, which facilitates the separation of different types of objects conveyed by the conveying component; the driving part drives the screw to rotate, so that the screw can extend into the gap between the objects conveyed by the conveying component to separate two objects, or be pulled out from between objects separated by a distance and extend into the gap between objects separated on the side, so as to achieve efficient separation of objects. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This utility model provides a structural schematic diagram of a high-efficiency labeling machine;

[0019] Figure 2 for Figure 1 The diagram shows the structure of the bottle-separating assembly.

[0020] The reference numerals in the attached figures are as follows:

[0021] 1. Conveying assembly; 2. Bottle separating assembly; 21. Adjusting unit; 211. Slide; 212. First adjusting unit; 2121. First adjusting plate; 2122. First adjusting rod; 2123. First handwheel; 2124. First guide rod; 213. Second adjusting unit; 2131. Second adjusting plate; 2132. Second adjusting rod; 2133. Second handwheel; 2134. Second guide rod; 22. Screw; 23. Drive unit; 231. Drive motor; 232. Sprocket assembly; 233. Mounting plate; 2331. Support plate; 2332. Main board; 234. Bearing; 3. Labeling assembly; 31. Frame; 32. Label tray; 33. Waste paper recycling tray; 34. Traction unit; 341. First traction roller; 342. Second traction roller; 35. Label printing unit. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] The following is combined Figures 1-2 The structure of this high-efficiency labeling machine is illustrated with an example.

[0024] The high-efficiency labeling machine includes a conveying component 1, a bottle separating component 2, and a labeling component 3. The conveying component 1 is used to convey objects to be labeled. The bottle separating component 2 is used to separate the objects conveyed by the conveying component 1 into a certain distance. The labeling component 3 is used to apply labels to the objects conveyed by the conveying component 1. The labeling component 3 is located on the side of the conveying component 1. The bottle separating component 2 includes an adjusting part 21, a screw 22, and a driving part 23. The driving part 23 is located on one side of the conveying component 1. The screw 22 is rotatably mounted on the driving part 23 and performs a lateral reciprocating motion relative to the conveying plane of the conveying component 1. The screw 22 is connected to the driving part 23.

[0025] To facilitate adjustment of the position of the screw 22 relative to the conveying assembly 1, the adjustment section 21 includes a slide, a first adjustment section 212, and a second adjustment section 213. The first adjustment section 212 includes a first adjustment plate 2121, a first adjustment rod 2122, and a first handwheel 2123. The second adjustment section 213 includes a second adjustment plate 2131, a second adjustment rod 2132, and a second handwheel 2133. The slide is connected to the drive section 23. One end of the first adjustment rod 2122 passes through the first adjustment plate 2121 and is rotatably connected to the first adjustment plate 2121. The other end of the first adjustment rod 2122 is fixedly connected to the slide. The first handwheel 2123 is fixed to the end of the first adjustment rod 2122 that passes through the first adjustment plate 2121. The second adjustment rod 2122... One end of the first adjusting rod 2122 passes through the second adjusting plate 2131 and is rotatably connected to the second adjusting plate 2131. The other end of the second adjusting rod 2132 is fixedly connected to the slide block. The second handwheel 2133 is fixed to the end of the second adjusting rod 2132 that passes through the second adjusting plate 2131. The first adjusting rod 2122 and the second adjusting rod 2132 are arranged perpendicularly and are respectively perpendicular to the slide block. In this embodiment, the first adjusting rod 2122 is provided with an external thread, or the first adjusting rod 2122 is a screw structure. The first adjusting plate 2121 is set according to the first adjusting rod 2122 so as to facilitate threaded engagement with the first adjusting rod 2122. Thus, when the first adjusting rod 2122 rotates, it extends into or withdraws from the objects conveyed by the conveying assembly 1. The structures of the second adjusting rod 2132 and the second adjusting plate 2131 are set with reference to the first adjusting rod 2122 and the first adjusting plate 2121. This application will not repeat the description.

[0026] Furthermore, the first adjusting part 212 also includes at least two first guide rods 2124. The first guide rods 2124 are evenly distributed around the first adjusting rod 2122 and are arranged parallel to the first adjusting rod 2122. One end of the first guide rod 2124 is disposed on the first adjusting plate 2121, and the other end of the first guide rod 2124 is disposed on the slide. Similarly, the second adjusting part 213 also includes at least two second guide rods 2134. The second guide rods 2134 are evenly distributed around the second adjusting rod 2132 and are arranged parallel to the second adjusting rod 2132. One end of the second guide rod 2134 is disposed on the second adjusting plate 2131, and the other end of the second guide rod 2134 is disposed on the slide.

[0027] In this embodiment, one end of the first guide rod 2124 is movably connected to the slide, and the other end is fixedly connected to the first adjusting plate 2121; or, one end of the first guide rod 2124 is fixedly connected to the slide, and the other end is slidably connected to the adjusting plate. Specifically, taking the movable connection between the first guide rod 2124 and the slide as an example, a through hole is provided on the slide, and the first guide rod 2124 is inserted into the through hole. When the first adjusting rod 2122 moves laterally, the first guide rod 2124 moves laterally along the through hole. The connection structure between the second guide rod 2134 and the slide and the second adjusting plate 2131 is set with reference to the first guide rod 2124, and will not be described again in this application.

[0028] In the actual adjustment process, in order to facilitate the adjustment of the position of the screw 22 relative to the conveying assembly 1, the first handwheel 2123 is rotated, causing the first adjusting rod 2122 connected to the first handwheel 2123 to rotate relative to the first adjusting plate 2121, so that the first adjusting rod 2122 moves laterally and reciprocally in the first direction, thereby adjusting the screw 22 on the slide and the main plate 2332 connected to it to the vicinity of the conveying assembly 1 in the first direction. Then, the second handwheel 2133 is rotated, causing the second adjusting rod 2132 connected to the second handwheel 2133 to rotate relative to the second adjusting plate 2131, so that the second adjusting plate 2131 moves laterally and reciprocally in the second direction, thereby adjusting the screw 22 to the vicinity of the conveying assembly 1 in the second direction, so that the screw 22 is adjusted to the predetermined position, so that the screw 22 can separate the objects conveyed on the conveying assembly 1.

[0029] In a specific implementation, the drive unit 23 includes a drive motor 231, a sprocket assembly 232, and a mounting plate 233. The mounting plate 233 is disposed on one side of the conveying assembly 1. The screw 22 is rotatably mounted on the mounting plate 233 and connected to the sprocket assembly 232. The sprocket assembly 232 is connected to the drive motor 231, which is also disposed on one side of the conveying assembly 1. The mounting plate 233 is fixedly connected to the adjustment unit 21. Specifically, the mounting plate 233 includes a support plate 2331 and a main plate 2332. The support plate 2331 is movably disposed on one side of the conveying assembly 1 and fixedly connected to the main plate 2332. The main plate 2332 has an accommodating space, and the screw 22 is disposed within this space. One end of the screw 22 is rotatably connected to the main plate 2332 via a bearing 234. The main plate 2332 is fixedly connected to the adjustment unit 21, i.e., the main plate 2332 is fixedly connected to the slide block. This facilitates the movement of the main plate 2332 by the movement of the slide block, thereby adjusting the position of the screw 22 relative to the conveying assembly 1.

[0030] In actual operation, the drive motor 231 drives the sprocket assembly 232 to drive the screw 22 to rotate, so that the screw 22 can be inserted into or pulled out from the conveying plane of the conveying assembly 1, thereby facilitating the separation of any two objects conveyed by the conveying assembly 1, and pulling out from between two objects, and then inserting again between two other objects to separate the objects on the conveyor belt of the conveying assembly 1.

[0031] Optionally, the labeling assembly 3 includes a frame 31, a label tray 32 on which label rolls are installed, a waste paper recycling tray 33 for recycling backing paper, a label printing section 35, and a traction section 34. The frame 31 is located on one side of the conveying assembly 1. The label tray 32, the waste paper recycling tray 33, the label printing section 35, and the traction roller are all mounted on the frame 31. The labels on the label rolls are wound around the traction section 34 to form a label path and then enter the label printing section 35. The backing paper is wound around the traction section 34 to form a backing paper path and is wrapped around the waste paper recycling tray 33. Furthermore, the label printing unit 35 includes a backing paper peeling plate 353 for peeling backing paper from a label roll, a label printer 351, and a label applicator 352. The backing paper peeling plate 353 is located at the bottom of the label printer 351 and abuts against the label roll to peel the label from the backing paper. The label extends into the label printer 351. The label applicator 352 is installed on one side of the label printer 351, and a suction head 354 is installed at the bottom of the label applicator 352. The suction head 354 is located on one side of the backing paper peeling plate 353.

[0032] In this embodiment, the traction unit 34 includes a first traction roller 341 and a second traction roller 342. The first traction roller 341 is disposed on the label path, and the second traction roller 342 is disposed on the backing paper path. The label is wrapped around the first traction roller 341, and the backing paper is wrapped around the second traction roller 342.

[0033] Optionally, the number of first traction rollers 341 is at least two, and the number of second traction rollers 342 is at least two.

[0034] In actual operation, the label on the label tray 32 is inserted into the label printer 351 via the first traction roller 341. When the labeling hand 352 pulls the label out of the label printer 351, the backing paper is peeled off by the backing paper peeling plate 353. The labeling hand 352 then affixes the peeled label to the separated objects conveyed by the conveying component 1. The peeled backing paper is then recycled by the second traction roller 342 and the waste paper recycling tray 33.

[0035] In order to enable the label printing unit 35 and the traction unit 34 to work automatically, the labeling assembly 3 also includes an electrical box, which is electrically connected to the label printing unit 35 and the traction unit 34, that is, the electrical box is electrically connected to the label printer 351, the labeling hand 352, the first traction roller 341 and the second traction roller 342.

[0036] In summary, this utility model embodiment separates the objects conveyed by the conveying component using a screen-separating component, and then uses a labeling component to attach labels to the separated objects, thereby improving the efficiency and accuracy of labeling. The adjusting part adjusts the position of the screw relative to the conveying component, which facilitates the separation of different types of objects conveyed by the conveying component. The driving part drives the screw to rotate, so that the screw can extend into the space between the objects conveyed by the conveying component to separate two objects, or be pulled out from between objects separated by a distance and extend into the space between objects separated on the side, thereby achieving efficient separation of objects.

[0037] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. A high-efficiency labeling machine, characterized in that, The device includes a conveying assembly, a bottle-separating assembly for separating objects conveyed by the conveying assembly at a certain interval, and a labeling assembly for affixing labels to the objects conveyed by the conveying assembly. The labeling assembly is disposed on the side of the conveying assembly. The bottle-separating assembly includes an adjusting part, a screw, and a driving part. The driving part is disposed on one side of the conveying assembly, the screw is rotatably disposed on the driving part, and the adjusting part is connected to the driving part.

2. The high-efficiency labeling machine according to claim 1, characterized in that, The adjustment unit includes a slide, a first adjustment unit, and a second adjustment unit. The slide is connected to the drive unit. The first adjustment unit includes a first adjustment plate, a first adjustment rod, and a first handwheel. The second adjustment unit includes a second adjustment plate, a second adjustment rod, and a second handwheel. One end of the first adjustment rod passes through the first adjustment plate and is rotatably connected to it. The other end of the first adjustment rod is fixedly connected to the slide. The first handwheel is fixed to the end of the first adjustment rod that passes through the first adjustment plate. One end of the second adjustment rod passes through the second adjustment plate and is rotatably connected to it. The other end of the second adjustment rod is fixedly connected to the slide. The second handwheel is fixed to the end of the second adjustment rod that passes through the second adjustment plate. The first adjustment rod and the second adjustment rod are arranged perpendicularly and are respectively perpendicular to the slide.

3. The high-efficiency labeling machine according to claim 2, characterized in that, The first adjustment part further includes at least two first guide rods. The first guide rods are evenly distributed around the first adjustment rod and are arranged parallel to the first adjustment rod. One end of the first guide rod is disposed on the first adjustment plate, and the other end of the first guide rod is disposed on the slide.

4. The high-efficiency labeling machine according to claim 2, characterized in that, The second adjustment part further includes at least two second guide rods. The second guide rods are evenly distributed around the second adjustment rod and are arranged parallel to the second adjustment rod. One end of the second guide rod is disposed on the second adjustment plate, and the other end of the second guide rod is disposed on the slide.

5. A high-efficiency labeling machine according to claim 1, characterized in that, The drive unit includes a drive motor, a sprocket assembly, and a mounting plate. The mounting plate is disposed on one side of the conveying assembly. The screw is rotatably disposed on the mounting plate and connected to the sprocket assembly. The sprocket assembly is connected to the drive motor, which is disposed on one side of the conveying assembly. The mounting plate is fixedly connected to the adjustment unit.

6. A high-efficiency labeling machine according to claim 5, characterized in that, The mounting plate includes a support plate and a main plate. The support plate is movably disposed on one side of the conveying assembly and is fixedly connected to the main plate. The main plate has an accommodating space, and the screw is disposed in the accommodating space. One end of the screw is rotatably connected to the main plate through a bearing. The main plate is fixedly connected to the adjusting part.

7. A high-efficiency labeling machine according to any one of claims 1-6, characterized in that, The labeling assembly includes a frame, a label reel with label rolls mounted on it, a waste paper recycling reel, a label printing unit, and a traction unit. The frame is located on one side of the conveying assembly. The label reel, the waste paper recycling reel, the label printing unit, and the traction unit are all mounted on the frame. The labels on the label rolls are wound around the traction unit to form a label path and then enter the label printing unit. The label rolls include backing paper. The waste paper recycling reel is used to recycle the backing paper. The backing paper is wound around the traction unit to form a backing paper path and is wrapped around the waste paper recycling reel.

8. A high-efficiency labeling machine according to claim 7, characterized in that, The label printing unit includes a backing paper peeling plate for peeling backing paper from the label roll, a label printer, and a label applicator. The backing paper peeling plate is located at the bottom of the label printer and abuts against the label roll to peel the label and backing paper. The label extends into the label printer. The label applicator is installed on one side of the label printer, and a suction head is installed at the bottom of the label applicator. The suction head is located on one side of the backing paper peeling plate.

9. A high-efficiency labeling machine according to claim 7, characterized in that, The traction unit includes a first traction roller and a second traction roller. The first traction roller is disposed on the label path, and the second traction roller is disposed on the backing paper path. The label is wound around the first traction roller, and the backing paper is wound around the second traction roller.

10. A high-efficiency labeling machine according to claim 7, characterized in that, The labeling assembly also includes an electrical box, which is electrically connected to the label printing unit and the traction unit.