Adhesive sticker labeling machine
By using an adjustment component to create a partition zone in the labeling machine, the problem of inertial deviation of the labeling material during high-speed transport is solved, achieving stable positioning and accurate pasting of the labeling material, and improving the adaptability of the equipment and the stability of the production line.
Patent Information
- Application Number
- CN202423112055.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
When existing labeling machines are operating at high speeds and continuously, the labels are prone to shifting or falling out of the conveying area due to inertia, affecting labeling accuracy and efficiency, and even causing equipment shutdowns, thus restricting the stability of the production line.
An adjustment component is adopted, including a first bonding component and a second bonding component that are bonded to the conveyor to form a partition area. The component is fixed by a locking component to ensure stable positioning of the label during high-speed conveying and to adapt to labeling materials of different sizes and shapes.
It improves the stability and accuracy of the labeled materials, avoids deviation or detachment due to inertia, and enhances the applicability of the equipment and the working stability of the production line.
Smart Images

Figure CN223605966U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of labeling, in particular to a self-adhesive labeling machine. BACKGROUND
[0002] With the rapid development of industrial automation, labeling machines, as important equipment for realizing the identification of articles, are widely used in food, medicine, cosmetics and other industries. Traditional labeling machines usually use a conveyor belt to continuously convey the labeling objects, and the label is pasted by the labeling head when the labeling object passes through the designated position. In general, the labeling machine can meet the needs of ordinary conveying speed and precision, but in some special scenarios, its performance has certain limitations.
[0003] In the prior art such as Chinese patent CN206502133U, in the case of high-speed continuous output of labeling objects, due to the large inertia of the labeling objects, it is easy to deviate from the conveying direction of the conveying member or even separate from the conveying area. This problem not only affects the accuracy of labeling, but also can cause the labeling efficiency to decrease, and even cause the equipment to stop, which seriously restricts the working stability of the production line.
[0004] Therefore, there is a need for a self-adhesive labeling machine that improves the stability of the labeling object. CONTENT OF THE INVENTION
[0005] Therefore, it is necessary to provide a self-adhesive labeling machine that improves the stability of the labeling object to solve the above problems.
[0006] Embodiments of the present application provide a self-adhesive labeling machine, which includes a conveying member for continuously conveying labeling objects, and the self-adhesive labeling machine comprises:
[0007] An adjusting assembly is connected to the conveying member to form a partition area, and the labeling object is placed in the partition area, and the adjusting assembly comprises:
[0008] A first fitting member is connected to the conveying member and located above the conveying area of the conveying member to separate the partition area, and the labeling object is located in the partition area;
[0009] A second fitting member is arranged opposite to the first fitting member and connected to the conveying member;
[0010] A locking member is connected to the first fitting member and the second fitting member to fix the first fitting member and the second fitting member on the conveying member.
[0011] In at least one embodiment of the present application, the self-adhesive labeling machine has at least two adjusting assemblies, and the two adjusting assemblies are arranged adjacent to each other, and the labeling object is located between the two adjusting assemblies.
[0012] In at least one embodiment of the present application, a length direction of the conveying member is defined as a first direction;
[0013] The plurality of adjustment assemblies are arranged in sequence along the first direction, and each adjacent two adjustment assemblies are separated by a partition area.
[0014] In at least one embodiment of the present application, a width direction of the conveying member is defined as a second direction;
[0015] The first fitting member is arranged along the second direction and is in abutting connection with the conveying member in the second direction.
[0016] In at least one embodiment of the present application, the plurality of adjustment assemblies are slidably connected with the conveying member along the first direction.
[0017] In at least one embodiment of the present application, in a non-sliding state, the locking member locks the first fitting member and the second fitting member, and the first fitting member and the second fitting member are respectively fixedly connected with the conveying member in the second direction;
[0018] In a sliding state, the locking member does not lock the first fitting member and the second fitting member, and the first fitting member and the second fitting member are respectively slidably connected with the conveying member in the second direction.
[0019] In at least one embodiment of the present application, the length of the partition area is set according to the length of the continuous conveying of the label.
[0020] In at least one embodiment of the present application, a height direction of the conveying member is defined as a third direction;
[0021] In the third direction, the thickness of the label is less than the height of the first fitting member.
[0022] In at least one embodiment of the present application, the conveying member comprises:
[0023] A non-slip layer is in abutting connection with the first fitting member and is located at one end away from the second connecting member.
[0024] In at least one embodiment of the present application, the adhesive label applicator further comprises:
[0025] A connecting plate is arranged along the first direction, and the conveying member is arranged on the connecting plate, and the adjustment assembly is in abutting connection with the connecting plate.
[0026] The connecting plate is provided with an opening, and the second fitting member passes through the opening to be connected with the locking member.
[0027] The labeler is provided with a first adhering member and a second adhering member, which are adhered to the conveying member to form a partition area on the conveying member, so that the label can be stably placed in the partition area and avoid deviation or separation from the conveying area due to inertia during high-speed conveying. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 An assembled perspective view of the labeler is provided in the present application;
[0029] Figure 2 An assembled front view of the labeler is provided in the present application;
[0030] Figure 3 An assembled top view of the labeler is provided in the present application;
[0031] Figure 4 An assembled perspective view of the labeler is provided in the present application; Figure 3 A sectional view along A-A of the labeler;
[0032] Figure 5 An assembled perspective view of the adjusting assembly is provided in the present application;
[0033] Explanation of main component symbols
[0034] 100, labeler; 10, conveying member; 11, conveying area; 12, anti-skid layer; 20, adjusting assembly; 1020, partition area; 21, first adhering member; 22, second adhering member; 23, locking member; F1, first direction; F2, second direction; F3, third direction; 30, connecting plate; 31, opening. DETAILED DESCRIPTION
[0035] The embodiments of the present application will be described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only some of the embodiments of the present application, but not all of them.
[0036] It should be noted that when one component is considered to be "connected" to another component, it can be directly connected to the other component or can exist with a middle component. When one component is considered to be "provided on" another component, it can be directly provided on the other component or can exist with a middle component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and the like used herein are for illustrative purposes only.
[0037] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.
[0038] Please refer to Figures 1-5The embodiment of the present application provides a self-adhesive labeling machine 100, which comprises a conveying part 10 for conveying labeling objects in a continuous manner, and the self-adhesive labeling machine 100 comprises an adjusting assembly 20. The adjusting assembly 20 is connected to the conveying part 10 to form a partition area 1020, and the labeling objects are placed in the partition area 1020. The adjusting assembly 20 comprises a first adhering part 21, a second adhering part 22 and a locking part 23. The first adhering part 21 is connected to the conveying part 10, and is located above the conveying area 11 of the conveying part 10 to form the partition area 1020, and the labeling objects are located in the partition area 1020. The second adhering part 22 is arranged opposite to the first adhering part 21, and is connected to the conveying part 10. The locking part 23 is connected to the first adhering part 21 and the second adhering part 22 respectively, so as to fix the first adhering part 21 and the second adhering part 22 on the conveying part 10.
[0039] Specifically, the conveying part 10 is a core component of the labeling machine, and is used for conveying the labeling objects to a labeling position in a continuous manner, so as to provide a basic running track for the whole labeling process.
[0040] The conveying part 10 ensures that the labeling objects can be conveyed stably at a set speed and direction, and is a key to realize automatic labeling, and is suitable for labeling objects of various shapes or materials.
[0041] The adjusting assembly 20 divides a partition area 1020 on the conveying part 10, so as to stabilize the position of the labeling objects and avoid deviation or separation of the labeling objects from the conveying part 10 when the labeling objects are conveyed at a high speed.
[0042] In the case of high-speed operation, the partition area 1020 ensures that the labeling objects are always in a predetermined position, improves labeling accuracy, and avoids labeling errors or efficiency reduction caused by position deviation.
[0043] The first adhering part 21 is located above the conveying part 10, and is connected to the conveying part 10 to provide physical support between the conveying part 10 and the labeling objects, form a clear partition area 1020, and limit the shaking of the labeling objects in the vertical direction. In the high-speed conveying environment, the first adhering part 21 effectively limits the deviation of the labeling objects in the conveying direction, ensures that the labeling objects and the labeling head maintain an ideal relative position, and thus improves the labeling accuracy.
[0044] The second adhering part 22 is arranged on the other side of the conveying part 10, and cooperates with the first adhering part 21 to form bidirectional limitation on the labeling objects, so as to ensure that the labeling objects remain stable in the horizontal direction and avoid left-right shaking or deviation. The second adhering part 22 cooperates with the first adhering part 21 to provide omnidirectional support and limitation, improve the stability of conveying, and is especially suitable for light labeling objects or irregularly-shaped labeling objects.
[0045] The locking member 23 firmly fixes the first and second fitting members 21 and 22 on the conveying member 10, preventing them from moving due to vibration or external force, while allowing the first and second fitting members 21 and 22 to be disassembled or positionally fine-tuned by adjusting the locking member 23. The locking member 23 improves the stability and adjustability of the adjustment assembly 20, facilitating adaptation to different sizes or shapes of the labeling object, while simplifying maintenance operations and enhancing the applicability and flexibility of the equipment.
[0046] The conveying member 10 operates continuously, conveying the labeling object to the labeling area at a stable speed. The first and second fitting members 21 and 22 are firmly fixed on the conveying member 10 by the locking member 23, forming a partition area 1020 above and on both sides of the conveying member 10, providing a stable running channel for the labeling object. After entering the partition area 1020, the position of the labeling object is constrained in two directions by the first and second fitting members 21 and 22, avoiding deviation or separation due to inertia during high-speed conveying. When the labeling object is stably conveyed to the labeling position, the labeling head completes the label sticking operation, and the partition area 1020 ensures the precise positional relationship between the labeling object and the labeling head. After the labeling is completed, the labeling object continues to be conveyed to the next process. Further, further, further, in summary,
[0047] In a specific embodiment, the adhesive labeling machine 100 has at least two adjustment assemblies 20, and the two adjustment assemblies 20 are arranged adjacent to each other, with the labeling object located between the two adjustment assemblies 20.
[0048] Specifically, a plurality of adjustment assemblies 20 are arranged on the conveying member 10, and each adjustment assembly 20 can provide fixing and guiding functions for the labeling object in its area. The arrangement of multiple adjustment assemblies 20 further enhances the overall constraint force on the labeling object, especially suitable for scenarios where the labeling object is long or the number of labeling objects is large.
[0049] Increasing the number of adjustment assemblies 20 enables the labeling machine to handle multiple labeling objects or longer labeling objects, improving the compatibility and adaptability of the equipment, while effectively improving the stability of the labeling object during high-speed conveying.
[0050] The arrangement of adjacent adjustment assemblies 20 forms a continuous partition area 1020 in different areas of the conveying member 10, allowing the labeling object to pass through each partition area 1020 in turn, avoiding the labeling object from losing control due to inertia after leaving the first adjustment assembly 20.
[0051] The adjacent arrangement of the adjustment assemblies 20 effectively avoids the labeling object from shaking or deviating during conveying by jointly constraining the position of the labeling object, especially suitable for scenarios where the labeling object is long or the labeling objects are sparsely distributed in the conveying direction.
[0052] The labeling object is clamped or positioned in a specific area by the joint action of the two adjacent adjustment assemblies 20, so as to always remain in a stable position during the entire conveying and labeling process. The two adjustment assemblies 20 jointly act on the labeling object, providing multi-point support and positioning, and reducing the deviation problem caused by the self-weight of the labeling object, irregular shape or too fast conveying speed. This design is suitable for various shapes and sizes of labeling objects, improving the versatility of the equipment.
[0053] When the labeling object is sent into the first adjustment assembly 20 by the conveying member 10, the labeling object enters the partition area 1020 and is preliminarily fixed by the first fitting member 21 and the second fitting member 22 of the first adjustment assembly 20; the labeling object then moves to the partition area 1020 of the adjacent adjustment assembly 20, and the two adjustment assemblies 20 jointly position and constrain the labeling object.
[0054] In a specific embodiment, the length direction of the conveying member 10 is defined as the first direction F1. A plurality of adjustment assemblies 20 are arranged in sequence along the first direction F1, wherein each adjacent two adjustment assemblies 20 are separated by a partition area 1020.
[0055] Specifically, the length direction of the conveying member 10 is defined as the first direction F1, which provides a clear coordinate basis for subsequent description of the arrangement direction of the plurality of adjustment assemblies 20 and the conveying path of the labeling object. This direction is the main axis along which the labeling object moves along the conveying member 10. Defining the arrangement and movement direction of the adjustment assembly 20 and the labeling object on the conveying member 10 helps to understand the overall structure of the system, facilitating manufacturing, debugging and maintenance.
[0056] A plurality of adjustment assemblies 20 are arranged along the first direction F1, and each adjustment assembly 20 provides support and constraint to the labeling object at a specific position. The sequentially arranged adjustment assemblies 20 form a continuous labeling object constraint area, ensuring that the labeling object remains stable throughout the conveying process.
[0057] Through the continuous distribution of a plurality of adjustment assemblies 20, the conveying requirements of labeling objects of different sizes and shapes can be met, especially for long-size or multi-piece labeling objects, which significantly improves the stability. In addition, the flexible combination of a plurality of adjustment assemblies 20 can also adapt to different requirements for the position of the labeling object on the production line.
[0058] A partition area 1020 is formed between adjacent adjustment assemblies 20 for accommodating the labeling object. The partition area 1020 ensures the fixed relative position between the labeling object and the adjustment assembly 20, thereby avoiding shaking or deviation caused by inertia.
[0059] The provision of the partition area 1020 helps to accurately position the labeling object, providing a good basis for labeling operation, ensuring accurate labeling of the label, and improving labeling efficiency and overall accuracy.
[0060] In a specific embodiment, the width direction of the conveying member 10 is defined as the second direction F2. The first fitting member 21 is arranged along the second direction F2 and is connected to the conveying member 10 in the second direction F2.
[0061] Specifically, the width direction of the conveying member 10 is defined as the second direction F2 to provide coordinate reference for describing the position and arrangement of the first fitting member 21. By defining the direction, the connection and layout between the first fitting member 21 and the conveying member 10 are facilitated. Using clear coordinate description of the direction relationship of the conveying member 10 helps to optimize equipment design and subsequent operation description, ensuring the accuracy of the installation and adjustment of the adjustment assembly 20, and improving the clarity of the production line layout.
[0062] The first fitting member 21 extends along the width direction of the conveying member 10 (i.e., the second direction F2) and covers the width of the conveying member 10 to achieve effective coverage and support of the labeling object, avoiding the deviation of the labeling object due to lateral movement during conveying.
[0063] The width coverage of the first fitting member 21 can adapt to the stable conveying of labeling objects of different sizes, especially when the size of the labeling object varies greatly or the shape is irregular, it can provide a wider support area to improve the positioning accuracy and stability of the labeling object.
[0064] The first fitting member 21 is connected to the conveying member 10 to ensure its stable fixation on the conveying member 10, thereby forming a partition area 1020. The design of the connection prevents the first fitting member 21 from being separated from the conveying member 10 due to vibration or inertia, while ensuring the stable operation of the labeling object. Through the connection, the first fitting member 21 can form a close fitting structure with the conveying member 10 to provide stable support for the overall function of the adjustment assembly 20. In addition, the design of the connection is simple and easy to adjust, which can quickly adapt to different production needs.
[0065] In a specific embodiment, the plurality of adjustment assemblies 20 are slidably connected to the conveying member 10 along the first direction F1.
[0066] Specifically, the plurality of adjustment assemblies 20 can be slidably connected to the conveying member 10 in the length direction of the conveying member 10 (i.e., the first direction F1). Such design enables the position of the adjustment assembly 20 to be adjusted according to production needs, increasing the flexibility and adjustability of the equipment.
[0067] By allowing the adjustment assembly 20 to be connected in sliding in the first direction F1, the length and position of the partition area 1020 can be adjusted according to the length of different labeling objects or production requirements. In this way, the device can adapt to labeling objects of different sizes and shapes, improving the adaptability and flexibility of the production line. In addition, the design of sliding connection also allows more accurate adjustment of the placement position of the labeling object, thereby improving the stability and accuracy in the labeling process.
[0068] In a specific embodiment, in the non-sliding state, the locking member 23 locks the first fitting member 21 and the second fitting member 22, and the first fitting member 21 and the second fitting member 22 are respectively fixedly connected with the conveying member 10 in the second direction F2.
[0069] In the sliding state, the locking member 23 does not lock the first fitting member 21 and the second fitting member 22, and the first fitting member 21 and the second fitting member 22 are respectively slidingly connected with the conveying member 10 in the second direction F2.
[0070] Specifically, in the non-sliding state, the locking member 23 ensures that the first fitting member 21 and the second fitting member 22 are fixed at a predetermined position, and the connection between them and the conveying member 10 in the second direction F2 (width direction) is stable and fixed. That is, the first fitting member 21 and the second fitting member 22 are firmly fixed on the conveying member 10 and cannot be displaced or loosened.
[0071] The design of the locking member 23 can provide stability and ensure the structural reliability of the device in the non-sliding state. By locking the first fitting member 21 and the second fitting member 22, unnecessary errors and instability caused by accidental sliding or loosening during production are avoided. This design is crucial for high-precision labeling work, ensuring high efficiency and accuracy in the labeling process.
[0072] In the sliding state, the locking member 23 is unlocked, so that the first fitting member 21 and the second fitting member 22 are no longer fixedly connected in the second direction F2, but become slidingly connected. This means that the first fitting member 21 and the second fitting member 22 can freely slide along the second direction F2 according to production requirements to adapt to labeling objects of different sizes or types.
[0073] After unlocking, the device can flexibly adjust the distance between the first fitting member 21 and the second fitting member 22 when handling labeling objects of different sizes or types. This design allows the adhesive labeling machine 100 to quickly adapt to labeling requirements of different specifications, thereby improving the adaptability and efficiency of the production line. It can meet the changing production requirements and avoid the limitations caused by fixed equipment.
[0074] In one specific embodiment, the length of the partition area 1020 is set according to the length of the continuously conveyed labeling material.
[0075] Specifically, the length of the partition zone 1020 is set according to the continuous conveying length of the labeled items, meaning that this length is dynamically adjusted based on the actual length of the labeled items in the conveyor line. In this way, the size of the partition zone 1020 can match the ever-changing size of the labeled items in production, ensuring that there is sufficient space between each pair of adjacent adjusting components 20 to accommodate and transport a labeled item.
[0076] By dynamically setting the length of the partition zone 1020 according to the length of the label, the self-adhesive labeling machine 100 can precisely adjust the distance between the adjustment components 20 during actual production, ensuring that each label can pass through the conveyor belt stably and smoothly, and avoiding gaps or congestion caused by labels that are too long or too short. This effectively improves the adaptability and efficiency of the labeling machine.
[0077] It can prevent uneven conveying of the equipment due to the different lengths of the labels, and reduce problems such as jamming, damage or inaccurate labeling caused by changes in the size of the labels.
[0078] In one specific embodiment, the height direction of the conveying member 10 is denoted as the third direction F3. In the third direction F3, the thickness of the label is less than the height of the first bonding member 21.
[0079] Specifically, the dimensional relationship of the label in the third direction F3 (vertical direction) requires that the thickness of the label be less than the height of the first bonding component 21. In short, this means that the thickness of the label is relatively thin, and there is a significant difference compared to the height of the first bonding component 21.
[0080] Since the thickness of the label is less than the height of the first bonding member 21, the first bonding member 21 can better cover the surface of the label, which helps to ensure the stability and accuracy of the bonding during the labeling process.
[0081] If the labeling material is too thick, it may cause interference or disruption during the labeling process, affecting the entire process. Ensuring that the thickness of the labeling material is less than the height of the bonding element can avoid such problems and guarantee stable equipment operation.
[0082] In one specific embodiment, the conveying member 10 includes an anti-slip layer 12. The anti-slip layer 12 is bonded to the first bonding member 21, and the anti-slip layer 12 is located at the end opposite to the second connecting member.
[0083] Specifically, the anti-slip layer 12 is arranged on the surface of the conveying member 10 to enhance the friction between the conveying member 10 and the labeling object, preventing the labeling object from slipping or being unstable during the conveying process, which may cause misalignment or deviation.
[0084] The anti-slip layer 12 can effectively reduce the sliding of the conveying belt or the conveying member 10, maintain the smooth operation of the labeling object during the conveying process, and avoid inaccurate labeling or equipment failure caused by the sliding of the labeling object.
[0085] The anti-slip layer 12 can ensure the labeling object to be firmly fixed on the conveying member 10, reducing the possibility of sliding, thereby ensuring the accuracy and stability during the labeling process. The design of the anti-slip layer 12 reduces the failure caused by slipping or uneven friction, thereby improving the working efficiency of the equipment and prolonging the service life of the equipment. The anti-slip layer 12 can provide effective friction according to different labeling object characteristics (such as smooth, wet, or having a certain weight, etc.), making the equipment adapt to a wider range of application scenarios.
[0086] The anti-slip layer 12 is connected with the first adhering member 21, which means that the anti-slip layer 12 is not only an independent component, but also closely cooperates with other key components (such as the first adhering member 21), thereby realizing the synergistic effect. The anti-slip layer 12 works together with the first adhering member 21 during the conveying process of the material, ensuring that the labeling object can be adhered at the appropriate position.
[0087] Through the close connection between the anti-slip layer 12 and the first adhering member 21, the synergistic effect of the two can better exert their respective functions, thereby improving the overall performance of the labeling machine, especially in environments requiring high labeling accuracy.
[0088] The first adhering member 21 and the anti-slip layer 12 work together to help ensure that the labeling object is stably transmitted to the designated position and obtains uniform pressure during the labeling process, reducing the deviation phenomenon.
[0089] The anti-slip layer 12 is located at the end of the conveying member 10 away from the second connecting member, indicating that the anti-slip layer 12 not only occupies a specific position in space, but also has a certain distance relationship with other components (such as the second connecting member). Such arrangement can ensure that the effect of the anti-slip layer 12 is at the initial stage of the conveying of the labeling object, preventing insufficient friction from affecting the conveying and labeling of the object.
[0090] Placing the anti-slip layer 12 at the end of the conveying member 10 away from the second connecting member helps to provide sufficient friction when the material is just being conveyed, so that the material will not slide due to inertia, causing inaccurate positioning or misalignment.
[0091] In a specific embodiment, the adhesive labeler 100 further comprises a connecting plate. The connecting plate is arranged along the first direction F1, and the conveying member 10 is arranged on the connecting plate 30, and the adjusting assembly 20 is attached to the connecting plate 30. The connecting plate is provided with an opening 31, and the second attaching member 22 passes through the opening 31 and is connected to the locking member 23.
[0092] Specifically, the connecting plate is arranged along the first direction F1, which means that the connecting plate is consistent with the direction of the conveying member 10, forming a layout parallel or perpendicular to the conveying direction. This arrangement can ensure that the connecting plate cooperates with the conveying member 10 during installation and operation, and facilitates connection with other components.
[0093] The arrangement of the connecting plate along the first direction F1 helps to enhance the structural stability of the entire system, especially in the case of high-speed conveying and frequent operation, ensuring stable operation of each component and reducing the risk of vibration or deviation. This structural design simplifies the assembly and adjustment process of the equipment, making it convenient for operators to adjust the cooperation between the conveying member 10 and the adjusting assembly 20.
[0094] The conveying member 10 is arranged on the connecting plate, which means that the conveying member 10 is connected to the connecting plate through a certain fixing method, maintaining a stable positioning relationship. The attached design of the adjusting assembly 20 and the connecting plate ensures that the adjusting assembly 20 can stably act on the connecting plate and the conveying member 10 during adjustment.
[0095] By arranging the conveying member 10 on the connecting plate, it can ensure that the conveying member 10 runs smoothly and stably during conveying, avoiding the influence of equipment vibration or misalignment on the accuracy of labeling.
[0096] The attached design of the adjusting assembly 20 and the connecting plate allows the equipment to be quickly and easily adjusted and maintained, improving the convenience of use and the reliability of long-term operation of the equipment.
[0097] The opening 31 provided on the connecting plate provides a physical channel, allowing the second attaching member 22 to pass through the opening 31 and be connected to the locking member 23. This design realizes the freedom of movement of the second attaching member 22, which can be accurately adjusted during the operation of the adhesive labeler 100.
[0098] The design of the opening 31 allows the second attaching member 22 to move or adjust freely on the connecting plate, improving the flexibility and adaptability of the equipment, especially when handling different types or sizes of labeling objects.
[0099] The second fitting part 22 passes through the opening 31 and is connected with the locking part 23, which ensures a certain fixed relationship between the second fitting part 22 and the locking part 23 during adjustment. Through this connection mode, the locking part 23 can properly lock or release the second fitting part 22, thereby adjusting the working state of the labeling machine.
[0100] Through this connection mode of penetrating the opening 31 and the locking part 23, the position of the second fitting part 22 can be accurately adjusted to ensure the precision and consistency of the labeling process.
[0101] The connection mode of the locking part 23 simplifies the adjustment operation of the equipment, and the operator can quickly adjust and lock the required position, thereby improving the production efficiency.
[0102] The locking part 23 can fix the second fitting part 22 when needed, avoiding the influence of accidental loosening on the normal operation of the equipment during the labeling process, and improving the stability and safety of the equipment.
[0103] Therefore, the above-mentioned self-adhesive labeling machine 100 is connected with the conveying part 10 through the first fitting part 21 and the second fitting part 22, forming a partition area 1020 on the conveying part 10, and the labeling object can be stably placed in the partition area 1020, avoiding deviation or separation from the conveying area 11 due to inertia during high-speed conveying.
[0104] The above-mentioned is only an embodiment of the present application, and it should be pointed out that for those skilled in the art, improvements can be made without departing from the creative concept of the present application, but these all belong to the protection scope of the present application.
Claims
1. A self-adhesive labeling machine, comprising a conveyor for continuously conveying the labeling material, characterized in that, Also includes: An adjustment assembly, which is attached to the conveyor to form a partition area, wherein the label is placed in the partition area, the adjustment assembly includes: The first bonding component is bonded and connected to the conveying component and is located in the conveying area above the conveying component to separate a partitioned area, where the label is located; The second bonding component is disposed opposite to the first bonding component and is bonded and connected to the conveyor component; A locking element connects the first bonding element and the second bonding element respectively to fix the first bonding element and the second bonding element to the conveying element.
2. The self-adhesive labeling machine according to claim 1, characterized in that, The self-adhesive labeling machine has at least two adjustment components, which are arranged adjacent to each other, and the label is located between the two adjustment components.
3. The self-adhesive labeling machine according to claim 1, characterized in that, The length direction of the conveying component is denoted as the first direction; The plurality of the adjustment components are arranged in parallel along a first direction, wherein each pair of adjacent adjustment components is separated by a partition area.
4. The self-adhesive labeling machine according to claim 1, characterized in that, The width direction of the conveying component is referred to as the second direction; The first bonding member is disposed along the second direction and is bonded and connected to the conveying member in the second direction.
5. The self-adhesive labeling machine according to claim 3, characterized in that, Multiple adjustment components are slidably connected to the conveyor along the first direction.
6. The self-adhesive labeling machine according to claim 5, characterized in that, In the non-sliding state, the locking member locks the first bonding member and the second bonding member, and the first bonding member and the second bonding member are respectively fixedly connected to the conveying member in the second direction; In the sliding state, the locking member does not lock the first bonding member and the second bonding member, and the first bonding member and the second bonding member are slidably connected to the conveying member in the second direction respectively.
7. The self-adhesive labeling machine according to claim 1, characterized in that, The length of the partition area is set according to the length of the continuously conveyed labeling material.
8. The self-adhesive labeling machine according to claim 1, characterized in that, The height direction of the conveying component is denoted as the third direction; In the third-party direction, the thickness of the label is less than the height of the first bonding component.
9. The self-adhesive labeling machine according to claim 1, characterized in that, The self-adhesive labeling machine also includes: A connecting plate is provided along a first direction, the conveying component is placed on the connecting plate, and the adjusting component is in contact with the connecting plate; The connecting plate has an opening, and the second fitting member passes through the opening and connects to the locking member.
Citation Information
Patent Citations
Card labeller
CN206502133U