Double-layer label processing device

By combining the slitting, positioning and combining components, the processing of double-layer labels can be completed on one production line, solving the problem of high cost and low efficiency in the existing technology, reducing production costs and improving efficiency.

CN223342041UActive Publication Date: 2025-09-16SHANGHAI QIDAYIN PACKAGING TECH CO LTD
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Patent Information

Application Number
CN202422661114.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-16
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

In the prior art, the production of double-layer labels requires two production lines to be processed separately, resulting in high production costs and low efficiency.

Method used

The slitting component is used to separate the label into two layers, and the upper label is adjusted by the positioning component to make it overlap with the lower label. The upper label is then adhered to the lower label by the combining component to complete the double-layer label combining, requiring only one production line.

Benefits of technology

The production cost of double-layer labels is reduced and production efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-layer label processing device which comprises a slitting assembly, a position adjusting assembly, a conveying assembly and a material combining assembly. The slitting assembly is used for separating an upper-layer label from a lower-layer label in the labels; the position adjusting assembly comprises a position adjusting transverse plate, a transmission piece, a position adjusting handle and a position adjusting column. A transmission part is arranged on one side of the position adjusting transverse plate, a position adjusting column is arranged on the other side of the position adjusting transverse plate, the position adjusting handle is arranged at the input end of the transmission part, the output end of the transmission part penetrates through the position adjusting transverse plate to be connected with the position adjusting column, and the upper-layer label is wound around the position adjusting column by at least one circle. The position adjusting handle is used for rotating the position adjusting column to adjust the position of the upper-layer label when the upper-layer label leaves the position adjusting column, and under the adjustment of the position adjusting column on the upper-layer label, the upper-layer label is overlapped with the lower-layer label on the material combining assembly; according to the double-layer label, only one production line is needed to process the upper-layer label and the lower-layer label on one piece of backing paper, and the production cost of the double-layer label is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of label production equipment, in particular to a double-layer label processing device. Background Art

[0002] Most labels are printed materials used to identify product information, and most have adhesive backing. However, some labels are printed without adhesive, and are also called labels. Labels with adhesive are commonly known as "self-adhesive labels." With the continuous development of labels, double-layer labels have gradually appeared on the market. The production process of double-layer labels in existing technology requires processing each layer separately before combining the two layers into a double-layer label. This production method requires two conventional label production lines to operate simultaneously, resulting in high production costs and low production efficiency. Summary of the Invention

[0003] According to an embodiment of the present invention, a double-layer label processing device is provided for processing labels into double-layer labels, wherein the labels include an upper layer label and a lower layer label, and include two support walls, and between the two support walls include: a slitting component, a positioning component, a conveying component, and a mixing component;

[0004] The cutting component is used to separate the upper label and the lower label in the label;

[0005] The positioning assembly includes: a positioning horizontal plate, a transmission member, a positioning handle and a positioning column;

[0006] A transmission member is provided on one side of the adjustment horizontal plate, and an adjustment column is provided on the other side. The adjustment handle is provided at the input end of the transmission member, and the output end of the transmission member passes through the adjustment horizontal plate and is connected to the adjustment column. The upper label is wrapped around the adjustment column at least once, and the adjustment handle is used to rotate the adjustment column to adjust the position of the upper label when it leaves the adjustment column. Under the adjustment of the upper label by the adjustment column, the upper label overlaps with the lower label in the composite assembly.

[0007] The conveying component is used to convey the lower layer labels to the combining component;

[0008] The combining component is used for adhering the upper label to the lower label.

[0009] Furthermore, the slitting assembly comprises: a slitting roller, a tool rod, a tool handle and a slitting tool;

[0010] The label passes over the top of the slitting roller, the tool rod is connected to the support wall, the tool handle is provided on the tool rod, the slitting tool is provided on the tool handle and is rotatably connected to the tool handle, the slitting tool is provided corresponding to the label on the slitting roller, and a slitting groove is provided on the slitting roller corresponding to the slitting tool.

[0011] Furthermore, the slitting assembly further comprises: a tool cover;

[0012] The tool cover is arranged on the tool handle, and the tool cover covers the slitting tool.

[0013] Furthermore, the position adjustment assembly includes: a connecting plate and a supporting plate;

[0014] The connecting plate is connected to the output end of the transmission member, the supporting plate is provided at both ends of the connecting plate, both ends of the positioning column are connected to the connecting plate, and there is a gap between the positioning column and the connecting plate.

[0015] Furthermore, the position adjustment component includes: a fine adjustment mechanism;

[0016] After the upper layer label passes through the position adjustment column, the fine adjustment mechanism is used to fine-tune the position of the upper layer label so that the upper layer label overlaps with the lower layer label in the composite assembly.

[0017] Furthermore, the fine adjustment is the adjustment of the misalignment distance within 1 cm.

[0018] Furthermore, the fine-tuning mechanism includes: a fine-tuning roller and two moving mechanisms;

[0019] The two moving mechanisms are respectively arranged on two supporting walls, and the two ends of the fine-tuning roller are respectively connected to the two moving mechanisms. The two moving mechanisms respectively move the heights of the two ends of the fine-tuning roller to tilt the fine-tuning roller.

[0020] Furthermore, the moving mechanism includes: a fine-tuning plate, a transmission box, a fine-tuning handle, a screw, a guide rail and a slider,

[0021] The fine-tuning plate is arranged on the supporting wall, the transmission box is arranged on the fine-tuning plate, the fine-tuning handle passes through the supporting wall and is connected to the input end of the transmission box, the output end of the transmission box is connected to a screw, the screw is threadedly connected to the fine-tuning plate, one end of the screw is connected to a slider, the slider slides on a guide rail, the guide rail is arranged on the supporting wall, and the end of the fine-tuning roller is connected to the slider.

[0022] Furthermore, it includes: a bottom paper roller, which is arranged between two supporting walls and is used to collect the bottom paper on the upper label.

[0023] Furthermore, the material combining assembly includes: a material combining plate, a first material combining roller, a second material combining roller, an adjustment block and an adjustment handle;

[0024] The combining plate is arranged at both ends of the first combining roller and is fixed on the supporting wall. The combining plate has an adjustment opening. The adjustment block is arranged in the adjustment opening. Both ends of the second combining roller are connected to the adjustment block. The adjustment handle is used to make the adjustment block slide in the adjustment opening. The upper label and the lower label pass between the first combining roller and the second combining roller.

[0025] According to a double-layer label processing device according to an embodiment of the present invention, the slitting component of the present invention separates the upper label and the lower label of the label, and the adjusting handle is rotated to rotate the adjusting column through the transmission of the transmission part, so that the adjusting column is tilted, and the position of the upper label after it passes over the adjusting column is adjusted, so that when the upper label is conveyed to the combining component, the upper label overlaps with the lower label, so that the combining component sticks the upper label to the lower label, completing the combining of the double-layer labels. There is no need for two production lines to process the upper label and the lower label respectively. Only one production line is needed to process the upper label and the lower label onto one base paper, thereby reducing the production cost of the double-layer labels.

[0026] It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the technology as claimed. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a three-dimensional diagram of a double-layer label processing device according to an embodiment of the present utility model;

[0028] Figure 2 This is a perspective view of another double-layer label processing device according to an embodiment of the present utility model;

[0029] Figure 3 This is a front view of a double-layer label processing device according to an embodiment of the present utility model;

[0030] Figure 4 This is a side view of a double-layer label processing device according to an embodiment of the present utility model;

[0031] Figure 5 This is a cross-sectional view of a double-layer label processing device according to an embodiment of the present utility model;

[0032] Figure 6 The figure is a structural diagram of a material combining assembly of a double-layer label processing device according to an embodiment of the present utility model.

[0033] The reference numerals in the figure are: 1 is a supporting wall, 2 is a slitting assembly, 21 is a slitting roller, 22 is a tool rod, 23 is a tool handle, 24 is a slitting tool, 25 is a tool cover, 3 is a positioning assembly, 31 is a positioning horizontal plate, 32 is a transmission member, 33 is a positioning handle, 34 is a positioning column, 35 is a connecting plate, 36 is a support plate, 4 is a mixing assembly, 41 is a mixing plate, 42 is a first mixing roller, 43 is a second mixing roller, 44 is an adjusting block, 45 is an adjusting handle, 5 is a bottom paper roller, 6 is a moving mechanism, 61 is a fine-tuning roller, 62 is a fine-tuning plate, 63 is a transmission box, 64 is a fine-tuning handle, 65 is a screw, 66 is a guide rail, 67 is a slider, and 7 is a conveying assembly. DETAILED DESCRIPTION

[0034] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to further illustrate the present invention.

[0035] First, combine Figures 1 to 6 A double-layer label processing device according to an embodiment of the present invention is described, which is used to process a label into a double-layer label.

[0036] like Figures 1 to 5 As shown, a double-layer label processing device according to an embodiment of the present invention is used to process a label into a double-layer label, wherein the label includes an upper label and a lower label, and comprises two support walls 1, and between the two support walls 1 there are: a slitting component 2, a positioning component 3, a conveying component 7, and a mixing component 4;

[0037] The cutting component 2 is used to separate the upper label and the lower label in the label;

[0038] The adjustment assembly 3 includes: an adjustment horizontal plate 31, a transmission member 32, an adjustment handle 33 and an adjustment column 34;

[0039] A transmission member 32 is provided on one side of the adjustment horizontal plate 31, and an adjustment post 34 is provided on the other side. The adjustment handle 33 is provided at the input end of the transmission member 32, and the output end of the transmission member 32 passes through the adjustment horizontal plate 31 and is connected to the adjustment post 34. The upper label is wrapped around the adjustment post 34 at least once, and the adjustment handle 33 is used to rotate the adjustment post 34 to adjust the position of the upper label when it leaves the adjustment post 34. Under the adjustment of the upper label by the adjustment post 34, the upper label overlaps with the lower label in the mixing assembly 4;

[0040] The conveying component 7 is used to convey the lower layer of labels to the mixing component 4;

[0041] The combining component 4 is used to stick the upper label to the lower label.

[0042] The slitting component 2 separates the upper label and the lower label of the label, and rotates the adjusting handle 33 to rotate the adjusting column 34 through the transmission of the transmission member 32, so that the adjusting column 34 is tilted, and the position of the upper label after it passes over the adjusting column 34 is adjusted, so that when the upper label is conveyed to the combining component 4, the upper label overlaps with the lower label, so that the combining component 4 sticks the upper label to the lower label, completing the combining of the double-layer labels. There is no need for two production lines to process the upper label and the lower label respectively. Only one production line is needed to process the upper label and the lower label onto one base paper, thereby reducing the production cost of the double-layer labels.

[0043] In this embodiment, the conveying component 7 is composed of multiple guide rollers, which increase the conveying distance of the lower layer labels so that the time it takes for the upper layer labels to be conveyed to the mixing component 4 is the same as the time it takes for the lower layer labels to be conveyed to the mixing component 4.

[0044] like Figure 5 As shown, the slitting assembly 2 includes: a slitting roller 21, a tool rod 22, a tool handle 23, a tool cover 25 and a slitting tool 24;

[0045] The labels pass over the slitting roller 21. The tool rod 22 is connected to the support wall 1. The tool handle 23 is provided on the tool rod 22. The slitting tool 24 is provided on the tool handle 23 and is rotatably connected to the tool handle 23. The slitting tool 24 is provided corresponding to the labels on the slitting roller 21. The slitting roller 21 has a slitting groove corresponding to the slitting tool 24. The tool cover 25 is provided on the tool handle 23 and covers the slitting tool 24.

[0046] The labels are transported on the slitting roller 21, and the slitting tool 24 is inserted into the slitting groove, so that the labels on the slitting roller 21 are cut by the slitting tool 24 during the transportation process. The tool cover 25 can protect the slitting tool 24 and prevent workers from touching the slitting tool 24 and getting injured.

[0047] like Figure 5 As shown, the positioning assembly 3 includes: a connecting plate 35 and a supporting plate 36;

[0048] The connecting plate 35 is connected to the output end of the transmission member 32 , the supporting plates 36 are provided at both ends of the connecting plate 35 , both ends of the adjusting column 34 are connected to the connecting plate 35 , and a gap is provided between the adjusting column 34 and the connecting plate 35 .

[0049] When the upper label is wrapped around the positioning post 34 , the upper label passes through the gap between the positioning post 34 and the connecting plate 35 .

[0050] like Figure 5 As shown, the position adjustment component 3 includes: a fine adjustment mechanism;

[0051] After the upper label passes through the adjustment column 34, the fine adjustment mechanism is used to fine-tune the position of the upper label so that the upper label overlaps with the lower label in the material combining assembly 4. The fine adjustment is to adjust the offset distance within 1 cm.

[0052] The fine-tuning mechanism fine-tunes the conveying position of the upper layer label to ensure that the upper layer label overlaps with the lower layer label when the upper layer label is conveyed to the mixing component 4.

[0053] like Figure 5 As shown, the fine-tuning mechanism includes: a fine-tuning roller 61 and two moving mechanisms 6;

[0054] The two moving mechanisms 6 are respectively provided on the two supporting walls 1 , and the two ends of the fine-tuning roller 61 are respectively connected to the two moving mechanisms 6 . The two moving mechanisms 6 respectively move the heights of the two ends of the fine-tuning roller 61 to tilt the fine-tuning roller 61 .

[0055] The height of both ends of the roller 61 is finely adjusted by the moving mechanism 6 , so that the roller 61 is tilted, thereby adjusting the position of the upper layer label after it passes through the roller 61 .

[0056] like Figure 5 As shown, the moving mechanism 6 includes: a fine-tuning plate 62, a transmission box 63, a fine-tuning handle 64, a screw 65, a guide rail 66 and a slider 67,

[0057] The fine-tuning plate 62 is arranged on the supporting wall 1, the transmission box 63 is arranged on the fine-tuning plate 62, the fine-tuning handle 64 passes through the supporting wall 1 and is connected to the input end of the transmission box 63, the output end of the transmission box 63 is connected to the screw 65, the screw 65 is threadedly connected to the fine-tuning plate 62, one end of the screw 65 is connected to the slider 67, the slider 67 slides on the guide rail 66, the guide rail 66 is arranged on the supporting wall 1, and the end of the fine-tuning roller 61 is connected to the slider 67.

[0058] The fine-tuning handle 64 is rotated to rotate the screw 65 through the transmission box 63 , so that the screw 65 moves on the fine-tuning plate 62 , thereby driving the slider 67 to slide on the guide rail 66 to adjust the height of the end of the fine-tuning roller 61 .

[0059] like Figure 5 As shown, it includes: a bottom paper roller 5, which is arranged between two supporting walls 1 and is used to collect the bottom paper on the upper label.

[0060] The bottom paper roller 5 collects the bottom paper on the upper label so that the upper label can be adhered to the lower label.

[0061] like Figure 5~Figure 6 As shown, the material combining assembly 4 includes: a material combining plate 41, a first material combining roller 42, a second material combining roller 43, an adjustment block 44 and an adjustment handle 45;

[0062] The combining plate 41 is arranged at both ends of the first combining roller 42 and is fixed on the supporting wall 1. The combining plate 41 has an adjustment port, and the adjustment block 44 is arranged in the adjustment port. Both ends of the second combining roller 43 are connected to the adjustment block 44. The adjustment handle 45 is used to make the adjustment block 44 slide in the adjustment port, and the upper label and the lower label pass between the first combining roller 42 and the second combining roller 43.

[0063] The first mixing roller 42 and the second mixing roller 43 are arranged in parallel. The adjustment handle 45 can be used to adjust the adjustment block 44 to move in the adjustment port of the mixing plate 41, thereby adjusting the distance between the first mixing roller 42 and the second mixing roller 43, so that the mixing component 4 can mix labels of different thicknesses.

[0064] Above, refer to Figures 1 to 6 A double-layer label processing device according to an embodiment of the present utility model is described. The cutting component 2 of the present application separates the upper label and the lower label of the label, and the rotating adjustment handle 33 rotates the adjustment column 34 through the transmission of the transmission member 32, so that the adjustment column 34 is tilted, and the position of the upper label after it passes over the adjustment column 34 is adjusted, so that when the upper label is conveyed to the combining component 4, the upper label overlaps with the lower label, so that the combining component 4 sticks the upper label to the lower label, completing the combining of the double-layer labels. There is no need for two production lines to process the upper label and the lower label respectively. Only one production line is needed to process the upper label and the lower label onto a base paper, thereby reducing the production cost of the double-layer labels.

[0065] It should be noted that, in this specification, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, elements defined by the phrase "comprising..." do not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the elements.

[0066] Although the present invention has been described in detail through the above preferred embodiments, it should be understood that the above description should not be considered as limiting the present invention. After reading the above description, various modifications and alternatives to the present invention will be readily apparent to those skilled in the art. Therefore, the scope of protection of the present invention shall be defined by the appended claims.

Claims

1. A double-layer label processing device for processing a label into a double-layer label, wherein the label comprises an upper layer label and a lower layer label, and comprises two supporting walls, characterized in that: Between the two support walls are included: a cutting component, a positioning component, a conveying component and a mixing component; The cutting component is used to separate the upper label and the lower label in the label; The positioning assembly includes: a positioning horizontal plate, a transmission member, a positioning handle and a positioning column; A transmission member is provided on one side of the adjustment horizontal plate, and an adjustment column is provided on the other side. The adjustment handle is provided at the input end of the transmission member, and the output end of the transmission member passes through the adjustment horizontal plate and is connected to the adjustment column. The upper label is wrapped around the adjustment column at least once, and the adjustment handle is used to rotate the adjustment column to adjust the position of the upper label when it leaves the adjustment column. Under the adjustment of the upper label by the adjustment column, the upper label overlaps with the lower label in the composite assembly. The conveying component is used to convey the lower layer labels to the combining component; The combining component is used for adhering the upper label to the lower label.

2. A double-layer label processing device as claimed in claim 1, characterized in that: The slitting assembly includes: a slitting roller, a tool rod, a tool handle and a slitting tool; The label passes over the top of the slitting roller, the tool rod is connected to the support wall, the tool handle is provided on the tool rod, the slitting tool is provided on the tool handle and is rotatably connected to the tool handle, the slitting tool is provided corresponding to the label on the slitting roller, and a slitting groove is provided on the slitting roller corresponding to the slitting tool.

3. A double-layer label processing device as claimed in claim 2, characterized in that: The slitting assembly further comprises: a tool cover; The tool cover is arranged on the tool handle, and the tool cover covers the slitting tool.

4. A double-layer label processing device as claimed in claim 1, characterized in that: The position adjustment assembly includes: a connecting plate and a supporting plate; The connecting plate is connected to the output end of the transmission member, the supporting plate is provided at both ends of the connecting plate, both ends of the positioning column are connected to the connecting plate, and there is a gap between the positioning column and the connecting plate.

5. A double-layer label processing device as claimed in claim 1, characterized in that: The position adjustment component includes: a fine adjustment mechanism; After the upper layer label passes through the position adjustment column, the fine adjustment mechanism is used to fine-tune the position of the upper layer label so that the upper layer label overlaps with the lower layer label in the composite assembly.

6. A double-layer label processing device as claimed in claim 5, characterized in that: The fine adjustment is the adjustment of the misalignment distance within 1 cm.

7. A double-layer label processing device as claimed in claim 5, characterized in that: The fine-tuning mechanism includes: a fine-tuning roller and two moving mechanisms; The two moving mechanisms are respectively arranged on two supporting walls, and the two ends of the fine-tuning roller are respectively connected to the two moving mechanisms. The two moving mechanisms respectively move the heights of the two ends of the fine-tuning roller to tilt the fine-tuning roller.

8. A double-layer label processing device as claimed in claim 7, characterized in that: The moving mechanism includes: a fine-tuning plate, a transmission box, a fine-tuning handle, a screw, a guide rail and a slider, The fine-tuning plate is arranged on the supporting wall, the transmission box is arranged on the fine-tuning plate, the fine-tuning handle passes through the supporting wall and is connected to the input end of the transmission box, the output end of the transmission box is connected to a screw, the screw is threadedly connected to the fine-tuning plate, one end of the screw is connected to a slider, the slider slides on a guide rail, the guide rail is arranged on the supporting wall, and the end of the fine-tuning roller is connected to the slider.

9. A double-layer label processing device as claimed in claim 1, characterized in that: include: The bottom paper roller is arranged between the two supporting walls and is used to collect the bottom paper on the upper label.

10. A double-layer label processing device as claimed in claim 1, characterized in that: The material combining assembly includes: a material combining plate, a first material combining roller, a second material combining roller, an adjustment block and an adjustment handle; The combining plate is arranged at both ends of the first combining roller and is fixed on the supporting wall. The combining plate has an adjustment opening. The adjustment block is arranged in the adjustment opening. Both ends of the second combining roller are connected to the adjustment block. The adjustment handle is used to make the adjustment block slide in the adjustment opening. The upper label and the lower label pass between the first combining roller and the second combining roller.