Synchronous labeling equipment for double labels

Through the design of the dual-label synchronous labeling equipment, the sliding module is used to adjust the position of the material picking parts to achieve simultaneous bonding of multiple labels, solving the problem of multiple operations of existing equipment and improving efficiency and intelligence.

CN223187851UActive Publication Date: 2025-08-05JIANGSU YILIANBAO TECH CO LTD
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Patent Information

Application Number
CN202421851029.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-08-05
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

Existing labeling equipment requires multiple operations to complete the bonding of different types of labels, resulting in wasted time and inefficiency. It also needs to be repositioned every time the equipment is replaced, increasing costs.

Method used

A dual-label synchronous labeling device is designed, using a horizontal adjustment sliding module and a height adjustment sliding module. By accurately grasping the label and adjusting the position of the material, multiple labels are bonded simultaneously without the need to replace the equipment.

Benefits of technology

It improves labeling efficiency and intelligence, saves time and cost, and ensures that the labels are accurately fitted in different positions of the workpiece.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223187851U_ABST
    Figure CN223187851U_ABST
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Abstract

The utility model provides synchronous labeling equipment for double labels, which comprises a cabinet body, a support frame, a horizontal adjustment sliding module and a height adjustment sliding module, at least two groups of labeling devices are arranged on the other side of the cabinet body, a working platform is arranged on the cabinet body, a material taking part is arranged on the height adjustment sliding module, and the material taking part and the labeling devices are correspondingly arranged; wherein the labeling device comprises a conveying mechanism, a label placing table, a positioning shaft, a discharging roller and a receiving roller; the two labeling devices are arranged so that different types of labels can be conveyed to the working platform at the same time, then the labels are grabbed through a material taking piece, the horizontal position and the height position of the material taking piece are adjusted through a horizontal sliding module and a height adjusting sliding module, the material taking piece is matched with the position of a workpiece to be labeled, and the labeling efficiency is improved. According to the automatic labeling machine, labeling work of different positions of a workpiece is achieved, labeling work of different types of labels can be completed without replacing labeling equipment, the working efficiency and intelligence are improved, and the working time is saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of labeling, in particular to a device for synchronously labeling double labels. Background Art

[0002] Labeling equipment is used to stick rolls of adhesive tape or patches on products or packaging. Currently, in the process of product labeling, it often requires more than two laminations before it can finally become a product that can be used by users. During production, one type of label is often affixed first, and then another type of label is replaced in the labeling equipment, or the workpiece with one type of label is placed on another type of labeling equipment to achieve the lamination of more than two labels.

[0003] This repetitive operation process not only wastes time, but also the labeling position is relatively fixed and cannot meet the labeling work at different positions. Every time the labeling equipment is replaced, the workpiece needs to be repositioned, which affects the work efficiency and increases the cost of the work. Utility Model Content

[0004] Purpose of the utility model: The utility model provides a dual-label synchronous labeling device to solve the above-mentioned problems existing in the prior art.

[0005] Technical solution: A dual-label synchronous labeling device, comprising a cabinet arranged on a base surface, a support frame provided on one side of the cabinet, a horizontal adjustment sliding module and a height adjustment sliding module provided on the support frame, a control panel provided at one end of the support frame, at least two groups of labeling devices provided on the other side of the cabinet, a working platform provided on the cabinet and corresponding to the labeling device, the working platform being used to place the workpiece to be labeled; wherein, a material picking piece is provided on the height adjustment sliding module, and the material picking piece is provided corresponding to the labeling device; through the design of the two groups of labeling devices, different types of labels can be simultaneously transferred to the working platform, and then the labels are grabbed by the corresponding material picking piece, and the horizontal position and height position of the material picking piece are adjusted by the horizontal sliding module and the height adjustment sliding module so that the material picking piece matches the position of the workpiece to be labeled, thereby realizing labeling work at different positions of the workpiece, and the labeling work of different types of labels can be completed simultaneously without changing the labeling equipment, further improving work efficiency, saving work time, and greatly improving the intelligence of work.

[0006] In a further embodiment, the labeling device includes a fixed frame arranged on the cabinet body, a control cabinet is arranged on one side of the fixed frame, a label conveying mechanism is also arranged on the other side of the fixed frame, a label placement table is also arranged on the other side of the fixed frame, a feeding roller is also arranged on one side of the label conveying mechanism and at the top of the fixed frame, a positioning shaft is also arranged between the feeding roller and the label conveying mechanism, and a receiving roller is also arranged on the fixed frame; when the labeling work starts, the label conveying mechanism is controlled to move through the control panel, thereby driving the rolled label from the feeding roller through the positioning shaft, and placing the label on the label placement table, and then the label material strip is moved to the receiving roller under the movement of the label conveying mechanism, and the receiving roller rewinds the label material strip, thereby realizing automatic loading of the label and automatic storage of the material strip, further improving the intelligence of the work, saving work time, and improving work efficiency.

[0007] In a further embodiment, the label conveying mechanism includes a motor, a driving wheel is provided on one side of the motor, and a pressing member is provided on one side of the driving wheel for driving the automatic loading of labels. The motor drives the driving wheel to rotate under the action of the pressing member to prevent the problem of label backflow, thereby further improving the stability of the work.

[0008] In a further embodiment, the motor and the driving wheel are connected by gears, and the driving wheel and the receiving roller are connected by a synchronous belt, which is used to realize automatic receiving of the label material strip, thereby realizing simultaneous loading and receiving, greatly improving work convenience and further improving work efficiency.

[0009] In a further embodiment, the labeling device further includes a guide plate, which is arranged corresponding to the positioning shaft and is used to receive the label on the positioning shaft, further supporting the transmission of the label, and greatly improving the stability of label transmission.

[0010] In a further embodiment, the labeling device also includes a detection platform, and a photoelectric sensor is provided on one side of the detection platform for detecting the presence or absence of a label to prevent material picking errors, which may lead to the problem of the label not being attached to the workpiece, thereby further improving work safety.

[0011] In a further embodiment, the labeling device also includes a position adjustment mechanism, which is arranged on one side of the label placement table and is used to adjust the position of the label placement table to facilitate the label placement table to adapt to labels of different sizes and thicknesses, further improve the flexibility of the label placement table, and greatly improve the work efficiency.

[0012] In a further embodiment, the position adjustment mechanism includes a horizontal slide arranged on one side of the fixed frame, and a vertical slide arranged on the other side of the fixed frame, and the horizontal slide and the vertical slide are respectively connected to the label placement platform through a movable plate.

[0013] In a further embodiment, the clamping member includes a clamping wheel rotatably connected to the driving wheel, a support shaft is provided on one side of the clamping wheel, the support shaft and the clamping wheel are connected by a rotating block, and a handle is provided on the rotating block, and a certain pressure is applied to the rotating block by the handle, so that the support shaft rotates, and the rotation of the support shaft drives the clamping wheel to slide along the groove on the fixed frame until the clamping wheel is in contact with the driving wheel, thereby realizing the clamping work of the label material strip and stably conveying and storing the material strip. When the work is completed, the handle applies an opposite force to make the clamping wheel rotate counterclockwise and then separate from the driving wheel, further improving the stability of the work, greatly improving the intelligence of the work, and saving time and cost.

[0014] Beneficial effect: The utility model provides a dual-label synchronous labeling device, comprising a cabinet arranged on a base surface, a support frame arranged on one side of the cabinet, a horizontal adjustment sliding module and a height adjustment sliding module arranged on the support frame, at least two groups of labeling devices arranged on the other side of the cabinet, a working platform arranged on the cabinet, a material picking piece arranged on the height adjustment sliding module, and the material picking piece is arranged corresponding to the labeling device; wherein the labeling device includes a conveying mechanism for transmitting labels, a label placement table for receiving labels, a positioning axis for positioning labels, and a material discharger for placing roll labels The roller, and the receiving roller that finally collects the label material strip, the design of two sets of labeling devices can make different kinds of labels can be simultaneously transmitted to the work platform, and then the labels are grabbed by the corresponding material picking parts, and the horizontal position and height position of the material picking parts are adjusted by the horizontal sliding module and the height adjustment sliding module, so that the material picking parts match the position of the workpiece to be labeled, thereby realizing the labeling work of different positions of the workpiece, and there is no need to change the labeling equipment to complete the bonding work of different kinds of labels at the same time, further improving work efficiency, saving work time, and greatly improving work intelligence. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the overall structure assembly of the utility model.

[0016] Figure 2 This is a structural diagram of the labeling device of the present utility model.

[0017] Figure 3 This is a schematic diagram of the motion trajectory of the label and label material of the present invention.

[0018] Figure 4 This is a schematic diagram of the connection structure between the label placement platform and the fixing frame of the utility model.

[0019] Figure 5 This is a schematic diagram of the connection mechanism between the driving wheel and the pressing piece of the utility model.

[0020] Figure 6 This is a structural diagram showing the positional relationship between the detection platform and the photoelectric sensor of the utility model.

[0021] Figure 7 This is a schematic diagram of the connection structure between the motor, the driving wheel and the receiving roller of the utility model.

[0022] The reference numerals in the figure are: universal wheel 1, support frame 2, first ball screw module 3, second ball screw module 4, control panel 5, working platform 6, labeling device 7, unloading roller 7a, guide plate 7b, detection platform 7c, photoelectric sensor 71c, anti-sticking plate 7d, adjustment mechanism 7e, first slide 71e, first movable plate 72e, second movable plate 73e, limiter 74e, second slide 75e, anti-static brush 76e, control cabinet 7f, support plate 7g, transmission mechanism 7h, motor 71h, driving wheel 72h, pressing member 73h, pressing wheel 731h, support shaft 732h, handle 733h, synchronous belt 74h, positioning shaft 7i, receiving roller 7j, label moving direction 8, vacuum suction cup 9. DETAILED DESCRIPTION

[0023] In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention can be practiced without one or more of these details. In other instances, certain technical features known in the art are not described to avoid confusion with the present invention.

[0024] The applicant believes that in the process of product labeling, it often requires more than two laminations before the product can finally be used by users. During production, one type of label is often affixed first, and then another type of label is replaced in the labeling equipment, or the workpiece with one type of label is placed on another type of labeling equipment. This repetitive operation process not only wastes time, but also requires the workpiece to be repositioned each time the labeling equipment is changed, which affects work efficiency and increases work costs.

[0025] To this end, the applicant designed a dual-label synchronous labeling device. By setting up at least two groups of labeling devices, the position of the material picking part is adjusted through the horizontal adjustment sliding module and the height adjustment sliding module, so that the material picking part can accurately grab the labels transmitted by the labeling device and can flexibly fit them on the workpiece, further improving the intelligence and efficiency of the work, greatly improving the stability and flexibility of the work, and thus saving work time.

[0026] The utility model relates to a device for synchronously applying double labels, such as Figures 1 to 7 As shown, it includes a cabinet body arranged on a base surface, a universal wheel 1 is arranged under the cabinet body, a support frame 2 is arranged on one side of the cabinet body, a horizontal adjustment sliding module is arranged on the support frame 2, and a height adjustment sliding module is arranged on the horizontal adjustment sliding module, connected to the horizontal adjustment sliding module through a bracket, and vertically arranged. The horizontal adjustment sliding module in this embodiment is a first ball screw module 3, and the height adjustment sliding module is a second ball screw module 4. A material picking piece is arranged on the second ball screw module 4, and the number of the material picking pieces matches the set labeling device 7. The material picking piece in this embodiment is a vacuum suction cup 9. A control panel 5 is provided at one end of the support frame 2 to facilitate the operator's control. Two sets of labeling devices are provided at the left end of the cabinet. The labeling device 7 is not limited to two groups according to actual needs. A working platform 6 is provided on the top of the cabinet, and the working platform 6 is used to place the workpiece to be labeled. When labeling the workpiece, the label is transferred to the preset position through the two groups of labeling devices 7. The first ball screw module 3 drives the vacuum suction cup 9 to move horizontally, and the second ball screw module 4 drives the vacuum suction cup 9 to move up and down until the vacuum suction cup 9 absorbs the workpiece and is attached to the preset position of the workpiece under the drive of the first ball screw module 3 and the second ball screw module 4, thereby realizing labeling of different positions of the workpiece and automatic loading of multiple labels at the same time, further improving the automation of labeling, further saving work time and cost, and greatly improving work efficiency.

[0027] In order to transmit labels more stably and realize automatic recovery of label material strips, the labeling device 7 in this embodiment includes a fixed frame arranged on the cabinet body, and a control cabinet 7f and a control panel are arranged on one side of the fixed frame to facilitate the staff to operate the labeling device 7. A label conveying mechanism 7h is connected to the fixed frame and is also arranged on the control cabinet 7f. The conveying mechanism 7h is connected to the fixed plate through a support plate 7g, and is connected to the fixed frame. A label placement table is arranged above the label placement table and at a position above the fixed frame. A feeding roller 7a is arranged above the label placement table and at a position above the fixed frame. A positioning shaft 7i is arranged on the fixed frame and is located below the feeding roller 7a. A guide plate 7b for receiving the label is also provided on one side of i. The design of the guide plate 7b further supports the label to prevent the label from being easily wrinkled during transmission. A receiving roller 7j is also provided at one end of the fixed frame, and a first tooth structure is provided at the front end of the receiving roller 7j; the label transmission mechanism 7h includes a motor 71h provided on the fixed frame, one end of the motor 71h is connected to a first gear, a driving wheel 72h is provided on one side of the motor 71h, one end of the driving wheel 72h is connected to a second gear, a second tooth structure with a diameter smaller than the second gear is provided in front of the second gear, the first gear and the second gear are meshed and connected, the first tooth structure and the second tooth structure are connected by a synchronous belt 74h, and the driving wheel 72h is connected to the second gear. The clamping member 731h is provided on one side of the clamping plate 7g, and the clamping member 731h in this embodiment includes a clamping wheel 731h, a support shaft 732h provided on one side of the clamping wheel 731h, the clamping wheel 731h and the support shaft 732h are connected by a rotating block, and a handle 733h is provided on the rotating block; when the label is automatically conveyed, the motor 71h is started by the control panel, and an upward force is applied to the handle 733h, so that the rotating block rotates clockwise following the support shaft 732h, and the rotating block drives the clamping wheel 731h to rotate clockwise along the groove on the support plate 7g until the clamping wheel 731h is in contact with the driving wheel 72h, thereby pressing the label to prevent the labeling instability caused by its backflow. The rotation of the driving wheel 72h drives the driving wheel 72h connected to it to rotate. The rotation of the driving wheel 72h drives one end of the roll label placed on the unloading roller 7a to be transported to the label placement table through the positioning shaft 7i and supported by the guide plate 7b under the traction of the force, so that it falls off the label placement table. After the label falls off, the label material continues to move toward the receiving roller 7j under the action of the driving wheel 72h. At the same time, the rotation of the driving wheel 72h also drives the receiving roller 7j connected to it through the synchronous belt 74h to rotate, thereby realizing the receiving roller 7j to wind and recycle the incoming material tape, further improving the stability of label feeding, greatly improving the accuracy of work, further improving the intelligence of work, and greatly saving work costs.

[0028] When the label is automatically loaded, in order to prevent the vacuum suction cup 9 from failing to pick up the material, resulting in empty labeling, the present embodiment also provides a detection platform 7c, which is set on the fixed frame and located between the guide plate 7b and the label placement table. A photoelectric sensor 71c is also provided on one side of the detection platform 7c; when the label passes through the guide plate 7b and reaches the detection platform 7c, the photoelectric sensor 71c transmits the signal to the control end, and the detection platform 7c continues to transmit the label to the label placement table. At this time, the control end controls the vacuum suction cup 9 to take away the label that has reached the label placement table in time and stick it to the workpiece, thereby avoiding the problem of unqualified labeling caused by the vacuum suction cup 9 failing to pick up the material, further improving the accuracy of labeling, greatly improving work efficiency, and saving work time.

[0029] During the labeling operation, labels may have different sizes and thicknesses. In order to avoid the problem that the distance between the detection platform 7c and the label placement platform causes obstruction of label placement, the labeling device 7 in this embodiment also includes a position adjustment mechanism 7e. The position adjustment mechanism 7e includes a first slide 71e arranged under the label placement platform, and a second slide 75e arranged on the side of the label placement platform. The first slide 71e and the second slide 75e are connected to the label placement platform through a first movable plate 72e and a second movable plate 73e respectively. A limiting member 74e is further provided on one side of the second movable plate 73e to prevent the second movable plate 73e from colliding with the detection platform 7c when moving. A The anti-static brush 76e prevents the problem of unstable label position caused by static electricity during label transmission. The label placement table in this embodiment is provided with an anti-sticking plate 7d to further prevent the problem of unstable material picking caused by the vacuum suction cup 9 due to the label sticking to the label placement table; when the position of the label placement table needs to be adjusted for labels of different sizes and thicknesses, the first slide 71e drives the first movable plate 72e connected to it to move up and down, and the second slide 75e drives the second movable plate 73e connected to it to move left and right until the position of the label placement table meets the size of the label to be loaded, further improving the flexibility of label loading, greatly improving the automation of work, further saving work costs, and improving work efficiency.

[0030] As described above, although the present invention has been represented and described with reference to specific preferred embodiments, it should not be interpreted as a limitation on the present invention itself. Various changes in form and details may be made without departing from the spirit and scope of the present invention as defined in the appended claims.

Claims

1. A dual-label synchronous labeling device, characterized in that: The invention comprises a cabinet body arranged on a base surface, a support frame (2) being arranged on one side of the cabinet body, a horizontal adjustment sliding module and a height adjustment sliding module being arranged on the support frame (2), a control panel (5) being further arranged at one end of the support frame (2), at least two groups of labeling devices (7) being arranged on the other side of the cabinet body, a working platform (6) being arranged on the cabinet body and corresponding to the labeling devices (7), and the working platform (6) being used for placing workpieces to be labeled; Wherein, a material picking piece is provided on the height adjustment sliding module, and the material picking piece is provided correspondingly to the labeling device (7); The labeling device (7) transfers the label to a preset position, and transfers the label to a preset position of a workpiece to be labeled on the work platform (6) by picking up the material.

2. The dual-label synchronous labeling device according to claim 1, characterized in that: The labeling device (7) includes a fixed frame arranged on the cabinet body, a control cabinet (7f) is arranged on one side of the fixed frame, a label conveying mechanism (7h) is also arranged on the other side of the fixed frame, a label placement table is also arranged on the other side of the fixed frame, a discharge roller (7a) is also arranged on one side of the label conveying mechanism (7h) and at the top of the fixed frame, a positioning shaft (7i) is also arranged between the discharge roller (7a) and the label conveying mechanism (7h), and a receiving roller (7j) is also arranged on the fixed frame for recovering the label strip.

3. The dual-label synchronous labeling device according to claim 2, characterized in that: The label conveying mechanism (7h) comprises a motor (71h), a driving wheel (72h) is provided on one side of the motor (71h), and a pressing member (73h) is provided on one side of the driving wheel (72h) for driving the automatic loading of labels.

4. The dual-label synchronous labeling device according to claim 3, characterized in that: The motor (71h) and the driving wheel (72h) are connected via gears, and the driving wheel (72h) and the receiving roller (7j) are connected via a synchronous belt (74h) to realize automatic receiving of the label tape.

5. The dual-label synchronous labeling device according to claim 4, characterized in that: The labeling device (7) further comprises a guide plate (7b), which is arranged corresponding to the positioning shaft (7i) and is used to receive the label on the positioning shaft (7i).

6. The dual-label synchronous labeling device according to claim 5, characterized in that: The labeling device (7) further comprises a detection platform (7c), and a photoelectric sensor (71c) is provided on one side of the detection platform (7c) for detecting the presence or absence of a label.

7. The dual-label synchronous labeling device according to claim 6, characterized in that: The labeling device (7) further comprises a position adjustment mechanism (7e), which is arranged on one side of the label placement platform and is used to adjust the position of the label placement platform.

8. The dual-label synchronous labeling device according to claim 7, characterized in that: The position adjustment mechanism (7e) comprises a horizontal slide arranged on one side of the fixed frame, and a vertical slide arranged on the other side of the fixed frame. The horizontal slide and the vertical slide are respectively connected to the label placement platform through a movable plate.

9. The dual-label synchronous labeling device according to claim 8, characterized in that: The pressing member (73h) includes a pressing wheel (731h) rotatably connected to the driving wheel (72h), a support shaft (732h) is provided on one side of the pressing wheel (731h), and the support shaft (732h) and the pressing wheel (731h) are connected via a rotating block, and a handle (733h) is provided on the rotating block for adjusting the position of the pressing wheel (731h).