overlapping double marking machine

By designing an overlapping double labeling machine and utilizing a label delivery, receiving, and overlapping mechanism driven by a linear actuator, the problem of low efficiency in manual label stacking of textiles was solved, realizing automated label stacking and sewing, and improving production efficiency and adaptability.

CN224678299UActive Publication Date: 2026-08-25JIANGSU ZHONGXIN TEXTILE INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202522079129.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-08-25
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

In existing technologies, the double sewing of textile labels requires manual stacking, which is inefficient and costly, and cannot be integrated with modern intelligent production lines.

Method used

An overlapping double labeling machine was designed, which includes label delivery, label receiving and label stacking mechanisms. The components are driven by linear actuators to realize label cutting, folding, alignment and automatic sewing, and can be integrated into an automated production line.

Benefits of technology

It enables automated stacking and sewing of labels, improving production efficiency, reducing labor costs, and adapting to the needs of modern intelligent production.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an overlapping double-label machine, including a label delivery mechanism, a label receiving mechanism, and a label stacking mechanism. A pressure plate is horizontally mounted on the upper surface of the front end of the label delivery track of the label delivery mechanism. The pressure plate is connected to a linear actuator and is driven to move up and down and back and forth. The label receiving mechanism has a label receiving platform located in front of the label delivery track, with a cutter positioned above it. A pressure plate is positioned above the front end of the label receiving platform, and is connected to a linear actuator and is driven to move up and down. A horizontal groove is opened on the label receiving platform behind the pressure plate. A label clamp is positioned above the horizontal groove, and a label folding plate is positioned below the horizontal groove. The label folding plate is connected to the linear actuator and is driven through the horizontal groove, moving up and down with the label clamp. The label clamp is integrally connected to the linear actuator and is driven to move back and forth above the label stacking mechanism. A guide plate of the label stacking mechanism is located in front of the pressure plate. Fixed and movable label clamps are positioned on the left and right sides of the front side of the guide plate, respectively. The fixed and movable label clamps are staggered front and back, and the movable label clamp is integrally connected to the linear actuator and is driven to move left and right, stacking with the fixed label clamp. This invention automatically completes the folding and stacking of double labels, realizing automated and intelligent production of textiles and improving production efficiency.
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Description

Technical Field

[0001] This invention relates to the field of textile sewing equipment, and in particular to an overlapping double labeling machine. Background Technology

[0002] Textile labels serve as the "identity card" for home textiles, clothing, and other products, providing crucial information such as product composition, care instructions, and country of origin. In China, textile labels must comply with mandatory national standards. Some textile products contain a wealth of information, which cannot be fully contained in a single label, resulting in two or more labels sewn onto the product. When customers request overlapping and sewing of double labels, this is typically done manually, which is inefficient, labor-intensive, and incompatible with modern automated production lines. Summary of the Invention

[0003] To address the problems existing in the prior art, this invention provides an overlapping double label machine that cuts two labels, automatically folds them, aligns them, stacks them front and back, and sends them to an automated sewing process, thereby improving production efficiency.

[0004] To achieve the above objectives, the present invention provides the following technical solution: The overlapping double-label machine includes a label delivery mechanism, a label receiving mechanism, and a label stacking mechanism. The label delivery mechanism has a pressure plate horizontally mounted on the upper surface of the front end of the label delivery track. One end of the pressure plate is connected to a linear actuator, which is driven to move up and down. The linear actuator is connected to another linear actuator, causing the pressure plate to move back and forth. The label receiving mechanism has a label receiving platform located in front of the label delivery track. A cutter is positioned above the track between them. A pressure plate is positioned above the front end of the receiving platform, and it is connected to a third linear actuator, which is driven to move up and down. A horizontal groove is formed on the receiving platform behind the pressure plate. A label clamp is positioned above the groove, and a label folding plate is positioned below it. The label-folding plate is connected to the linear actuator four, which is driven to pass through the transverse groove and move up and down with the label clamp. The movable clamping plate of the label clamp is connected to the linear actuator five, which is driven to move back and forth. The entire label clamp is connected to the linear actuator six, which is driven to move back and forth to the top of the label stacking mechanism. The guide plate of the label stacking mechanism is located on the front side of the pressure plate. Fixed label clamps and movable label clamps are respectively located on the left and right sides of the front side of the guide plate. The fixed label clamps and movable label clamps are staggered front and back. The movable clamping plate of the fixed label clamp is driven to connect to the linear actuator six. The movable clamping plate of the movable label clamp is driven to connect to the linear actuator seven. The entire movable label clamp is connected to the linear actuator eight. The movable label clamp is driven to move left and right and is stacked back and forth with the fixed label clamp.

[0005] A further improvement is to install a partition below the gap where the fixed and movable label clips are misaligned. The partition connects to the linear actuator below, which is driven to move up and down through the gap. If the labels held by the fixed and movable label clips are loose or bent, the label held by the movable label clip will be disturbed as it moves forward towards the fixed label clip. Installing a partition between them effectively prevents this from happening.

[0006] A further improved solution is that a blowing cavity plate is arranged on the outer side wall of the clamping plate of the label clamping clip, and blowing holes are arranged at the bottom of the blowing cavity plate. After the pressing plate receives the label and the label clamping clip clamps the folded label, when the label is cut, the two ends of the bottom of the label will turn outwards to form a shape similar to "几", and the blowing holes on both sides of the clamping plate will blow the label straight to form a shape of "∩".

[0007] A further improved solution is that the pressing plates are two pieces separated left and right, and each is separately connected to a linear actuator three. The label folding plates are two pieces separated left and right, and each is separately connected to a linear actuator four. The two labels can be folded to different lengths according to needs.

[0008] A further improved solution is that the front end of the guiding plate is a slope plate that slopes forward and downward. It is convenient for the label clamped by the label clamping clip to enter the label stacking mechanism.

[0009] A further improved solution is that the label clamping clip is connected to a linear actuator ten, and the label clamping clip is driven to move left and right. It directly delivers the label to the side sewing label process.

[0010] A further improved solution is that partition plates are longitudinally and spacedly arranged on the label feeding track to form a double-track transportation. Each row of labels travels on its own track to prevent deviation during transportation.

[0011] A further improved solution is that a gantry is arranged on the label feeding track, a pressing rod is inserted through the cross bar of the gantry, and the front end of the pressing rod is an arc pointing downward. It gently presses the label to make the label lie flat smoothly during transportation.

[0012] A further improved solution is that a spring is arranged on the gantry, and the other end of the spring is connected to the cutting knife. It is beneficial for the cutting knife to reset. Beneficial effects

[0013] This device transports the double-track labels to the label folding mechanism for automatic label folding, then sends them to the label stacking mechanism to automatically stack the two labels front and back, and then delivers them to the side sewing label process. The whole process is completed automatically, integrated into the automated production line, realizing the automated and intelligent production of textiles and improving production efficiency. Brief description of the drawings

[0014] Figure 1 It is a schematic structural diagram of the present invention; Figure 2 It is an enlarged schematic diagram of the label stacking mechanism of the present invention. Detailed implementation manners

[0015] As Figure 1 、 Figure 2 shown, the present invention includes a label delivering mechanism, a label receiving mechanism and a label stacking mechanism, The label delivery mechanism has longitudinally spaced isolation plates 15 on the label delivery track 11, forming a double-track conveying system. A gantry frame 16 is mounted on the label delivery track 11, with pressure rods 17 threaded through the crossbars of the gantry frame. The front end of the pressure rods is an arc shape that rests against the long label strip on the label delivery track. A pressure plate 12 is horizontally mounted on the upper surface of the front end of the label delivery track 11. One end of the pressure plate 12 is connected to a linear actuator 13, which is driven to move up and down. The linear actuator 13 is also driven to connect to a second linear actuator 14, causing the pressure plate 12 to move back and forth. A spring 18 is mounted on the gantry frame 16, with the other end of the spring 18 connected to a cutter 10. The receiving platform 21 of the receiving mechanism is located in front of the label feeding track 11. A cutter 10 is installed above the track between them. A pressure plate 23 is installed above the front end of the receiving platform. The pressure plate 23 is connected to a linear actuator 24 and is driven to move up and down. A horizontal groove is opened on the receiving platform behind the pressure plate. A label clamp 25 is installed above the horizontal groove, and a label folding plate 26 is installed below the horizontal groove. The label-folding plate 26 is connected to the linear actuator 4 27 and driven to move vertically through the transverse groove and the label clamp. The movable clamping plate of the label clamp 25 is connected to the linear actuator 5 28 and driven to move back and forth. The entire label clamp 25 is connected to the linear actuator 6 29 and driven to move back and forth above the label stacking mechanism. The label-pressing plate 23 consists of two separate pieces, each connected to a linear actuator 3 24. The label-folding plate 26 consists of two separate pieces, each connected to a linear actuator 4 27. The outer wall of the clamping plate of the label clamp 25 is provided with an air-blowing chamber plate 20, and air-blowing holes are arranged at the bottom of the air-blowing chamber plate 20. The label clamp 25 is connected to the linear actuator 10 22, and the label clamp is driven to move left and right. The guide plate 31 of the stacking mechanism is located on the front side of the pressure plate. Fixed label clamps 32 and movable label clamps 33 are respectively provided on the left and right sides of the front side of the guide plate 31. The fixed label clamps 32 and movable label clamps 33 are staggered front and back. The movable clamp of the fixed label clamp 32 is driven to connect to the linear actuator 6 34. The movable clamp of the movable label clamp 33 is driven to connect to the linear actuator 7 35. The movable label clamp 33 is connected to the linear actuator 8 36 as a whole. The movable label clamp 33 is driven to shift left and right and stacked front and back with the fixed label clamp 32. A partition plate 37 is provided below the gap where the fixed label clamp 32 and movable label clamp 33 are staggered. The partition plate 37 is connected to the linear actuator 9 38 below and is driven to shift up and down through the gap. The front end of the guide plate 31 is a sloped plate that slopes forward and downward.

[0016] Working process: Two labels are conveyed on the label feeding track 11. The pressure plate 12 presses the labels forward and delivers them to the label receiving table 21 of the label receiving mechanism. The pressure plate 23 presses down on the front end of the label. The folding plate 26 is driven to rise from below, pass through the label clamp 25, and fold the label in half. The folding plate 26 falls back and the label clamp 25 holds the folded label. At the same time, the cutter 10 falls to cut the label. The label clamp 25 holding the label is driven forward to the top of the label stacking mechanism to fix the label. Clip 32 and movable clip 33 each receive two labels from below. Clip 25 releases, and partition 37 is driven to rise to separate the two labels. Movable clip 33 is driven to move the label it holds towards the front of fixed clip, so that the two labels are in a front-to-back overlapping position. Then clip 25 holds the two stacked labels again, while partition falls back, fixed clip and movable clip release the labels, and clip 25 is driven to send the two stacked labels to the right to the next sewing process.

[0017] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. An overlapping double-standard machine, characterized in that: The system includes a label delivery mechanism, a label receiving mechanism, and a label stacking mechanism. The label delivery mechanism has a pressure plate (12) horizontally mounted on the upper surface of the front end of the label delivery track (11). One end of the pressure plate (12) is connected to a linear actuator (13) and is driven to move up and down. The linear actuator (13) is connected to a linear actuator (24) and is driven to move back and forth. The label receiving mechanism has a label receiving platform (21) located in front of the label delivery track (11). A cutter (10) is provided above the two. A pressure plate (23) is provided above the front end of the label receiving platform. The pressure plate (23) is connected to a linear actuator (3) and is driven to move up and down. A horizontal groove is opened on the label receiving platform behind the pressure plate. A label clamp (25) is provided above the horizontal groove, and a label folding plate (26) is provided below the horizontal groove. The label-folding plate (26) is connected to the linear actuator four (27) and driven to pass through the transverse groove and move up and down with the label clamp. The movable clamp of the label clamp (25) is connected to the linear actuator five (28) and driven to move back and forth. The label clamp (25) is connected to the linear actuator six (29) and driven to move back and forth to the top of the label stacking mechanism. The guide plate (31) of the label stacking mechanism is located on the front side of the pressure plate. The left and right sides of the front side of the guide plate (31) are respectively provided with a fixed label clamp (32) and a movable label clamp (33). The fixed label clamp (32) and the movable label clamp (33) are staggered. The movable clamp of the fixed label clamp (32) is driven to connect to the linear actuator six (29). The movable clamp of the movable label clamp (33) is driven to connect to the linear actuator seven (35). The movable label clamp (33) is connected to the linear actuator eight (36). The movable label clamp (33) is driven to move left and right and stacked with the fixed label clamp (32).

2. The overlapping double-labeling machine according to claim 1, characterized in that: A partition (37) is provided below the gap where the fixed clamp (32) and the movable clamp (33) are misaligned. The partition (37) is connected to the lower linear actuator (38) which is driven to move up and down through the gap.

3. The overlapping double-labeling machine according to claim 1, characterized in that: The clamping clamp (25) has an air blowing chamber plate (20) on the outer wall of the clamping plate, and air blowing holes are arranged at the bottom of the air blowing chamber plate (20).

4. The overlapping double-standard machine according to claim 1, characterized in that: The pressure plate (23) consists of two separate pieces, one on the left and one on the right, each connected to a linear actuator three (24). The folding plate (26) consists of two separate pieces, one on the left and one on the right, each connected to a linear actuator four (27).

5. The overlapping double-labeling machine according to claim 1, characterized in that: The front end of the guide plate (31) is a sloping panel that slopes forward and downward.

6. The overlapping double-standard machine according to claim 1, characterized in that: The clamp (25) is connected to the linear actuator (22), and the clamp is driven to move left and right.

7. The overlapping double-labeling machine according to claim 1, characterized in that: The label delivery track (11) is longitudinally spaced with isolation plates (15) to form a double-track conveying system.

8. The overlapping double-labeling machine according to claim 1, characterized in that: The label delivery track (11) is equipped with a gantry frame (16), and a pressure bar (17) is installed on the crossbar of the gantry frame. The front end of the pressure bar is a downward arc.

9. The overlapping double-standard machine according to claim 8, characterized in that: A spring (18) is provided on the gantry frame (16), and the other end of the spring (18) is connected to the cutter (10).