A cutting and collecting integrated device

CN224601839UActive Publication Date: 2026-08-07苏州星辰印刷科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
苏州星辰印刷科技有限公司
Filing Date
2025-08-30
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]在标签印刷作业流程里,统一印刷出的标签往往呈整版或连续状态,无法直接作为单一标签使用,为满足后续应用需求,需借助专业裁切设备,依据预设尺寸和形状,精准地将统一印刷的标签裁切为单个独立标签

Benefits of technology

该一种裁剪收料一体化装置,通过在加工台的上方设置压板,能够辅助标签与废料分离,在标签与废料分离时将标签压住,避免标签被废料同步带齐,优化标签和废料的分离效果,通过第一丝杆转动时在螺纹管的作用下带动压板进行升降,方便根据需要对压板与加工台的间距进行调节,提高操作便捷性,通过转动第二丝杆带动推板进行移动,促使顶板和橡胶垫在凸起和斜面的作用下同时朝滑槽外部移动,进而顶紧废料卷筒,便于废料卷筒的安装拆卸,提高作业效率。

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Abstract

The application relates to a cutting and collecting integrated device, and relates to the technical field of cutting devices.The device comprises a processing table, the upper portion of the processing table is provided with a pressing plate, the outer surface of the processing table is fixedly connected with two side plates, the outer circumferential surface of each side plate is rotationally connected with a first screw rod.The application sets the pressing plate above the processing table, can assist in separating the label from the waste material, presses the label when the label is separated from the waste material, avoids the label being synchronously aligned with the waste material, optimizes the separation effect of the label and the waste material, drives the pressing plate to ascend and descend under the action of the threaded pipe when the first screw rod rotates, conveniently adjusts the distance between the pressing plate and the processing table according to the requirement, improves the operation convenience, drives the push plate to move by rotating the second screw rod, simultaneously moves the top plate and the rubber pad towards the outside of the sliding groove under the action of the protrusion and the inclined surface, and then tightly presses the waste material winding drum, facilitates the installation and dismounting of the waste material winding drum, and improves the operation efficiency.
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Description

Technical Field

[0001] This application relates to the field of cutting device technology, and in particular to an integrated cutting and collecting device. Background Technology

[0002] In the label printing process, the uniformly printed labels are often in a whole sheet or continuous state, which cannot be used directly as a single label. In order to meet the needs of subsequent applications, it is necessary to use professional cutting equipment to accurately cut the uniformly printed labels into individual labels according to the preset size and shape.

[0003] However, after the label cutting operation is completed, during the separation process of labels and waste, the cut labels are easily carried up by the waste, which greatly interferes with the separation effect of labels and waste. Utility Model Content

[0004] The purpose of this application is to provide an integrated cutting and collecting device that can assist in separating labels from waste materials. By pressing down the labels during the separation process, the device prevents the labels from being carried along by the waste materials, thus optimizing the separation effect of labels and waste materials and solving the problems mentioned in the background art.

[0005] The integrated cutting and collecting device provided in this application adopts the following technical solution: An integrated cutting and collecting device includes a processing table, a pressure plate is provided above the processing table, two side plates are fixedly connected to the outer surface of the processing table, and a first lead screw is rotatably connected to the outer circumferential surface of each side plate. A threaded tube is threadedly connected to the outer circumferential surface of the first lead screw, and the outer circumferential surface of the threaded tube is fixedly connected to the outer surface of the pressure plate through a connecting plate. The two first lead screws are connected by a synchronous belt and a synchronous pulley. The upper surface of the processing table is fixedly connected to two supports. The top of each support is rotatably connected to a rotating shaft. The rotating shaft has a groove inside. The groove has two symmetrically arranged top plates slidably connected inside. The groove has springs arranged at equal intervals inside. The ends of the springs are fixedly connected to the inside of the rotating shaft and the outer surface of the top plate, respectively. The rotating shaft has a second lead screw rotatably connected inside. The outer circumference of the second lead screw is threaded with a push plate. The outer surface of the push plate is slidably connected to the side wall of the groove. The sides of two adjacent top plates that are close to each other are fixedly connected to a protrusion. The side of the protrusion that is close to the push plate has an inclined surface. The sides of two adjacent top plates that are far apart from each other are fixedly connected to a rubber pad.

[0006] By adopting the above technical solution, in order to optimize the separation effect of labels and waste, a pressure plate is set above the processing table to assist in the separation of labels and waste. When the labels are separated from the waste, the labels are pressed down to prevent them from being carried along by the waste, thus optimizing the separation effect of labels and waste. When the first lead screw rotates, it drives the pressure plate to rise and fall under the action of the threaded tube, which makes it convenient to adjust the distance between the pressure plate and the processing table as needed, improving the ease of operation.

[0007] Preferably, four guide rods are fixedly connected to the upper surface of the processing table, and the pressure plate is slidably sleeved with the outer circumferential surface of the guide rods through through holes at both ends.

[0008] By adopting the above technical solution, the pressure plate can move stably along the guide rod during the lifting process, effectively avoiding the pressure plate from shifting or shaking during movement, ensuring the pressure plate's restraining effect on the label, further optimizing the separation effect between the label and waste, and improving the stability and reliability of the device operation.

[0009] Preferably, each of the brackets is rotatably connected to a steering roller, which is located below the rotating shaft.

[0010] By adopting the above technical solution, the steering roller can guide and turn the movement path of the label and waste, so that the waste can enter the subsequent waste collection stage more smoothly, thereby improving the working efficiency and smoothness of the entire integrated cutting and collecting device.

[0011] Preferably, one of the rotating shafts has a longer first waste roll slidably sleeved on its outer circumferential surface, and the other rotating shaft has a shorter second waste roll slidably sleeved on its outer circumferential surface, and each of the rotating shafts is provided with a drive motor at its end.

[0012] By adopting the above technical solution and setting waste rolls of different lengths, different types of waste can be collected separately. The longer first waste roll is convenient for collecting wider middle waste, while the shorter second waste roll is convenient for collecting narrower edge waste. At the same time, the drive motor provides power for the rotation of the waste rolls, realizing automatic waste collection.

[0013] Preferably, each of the rotating shafts has a limit key fixedly connected to its outer circumferential surface, and the inner walls of the first and second waste rolls are provided with keyways.

[0014] By adopting the above technical solution, the combination of the limit key and the keyway can ensure that the waste drum and the rotating shaft rotate synchronously, avoid relative rotation between the waste drum and the rotating shaft, and ensure the stability and accuracy of waste collection.

[0015] Preferably, the processing table is provided with a first cutting unit and a second cutting unit.

[0016] By adopting the above technical solution, the first cutting unit and the second cutting unit can respectively complete the cutting of the middle waste and edge waste of the label, so that the middle waste and edge waste are separated from the label.

[0017] Preferably, the upper surface of the processing table is provided with multiple T-slots, and two T-slide blocks are slidably connected inside each T-slot. A limit block is fixedly connected to the upper surface of each T-slide block.

[0018] By adopting the above technical solution, the combined use of T-slots and T-sliders allows the limiting block to be flexibly adjusted according to the size and position requirements of the label, enabling the limiting block to limit the edge of the label during label conveying and preventing the label from easily deviating during the conveying process.

[0019] Preferably, each of the T-shaped sliders has a positioning bolt threaded inside, and each of the T-shaped grooves has a scale mark on one side.

[0020] By adopting the above technical solution, the positioning bolt is used to fix the position of the T-shaped slider, preventing the limit block from moving during the cutting process, thus improving the accuracy and stability of the cutting. The position of the limit block can be precisely controlled by the scale markings to complete the limiting of the label.

[0021] In summary, this application includes at least one of the following beneficial technical effects: This integrated cutting and collecting device uses a pressure plate installed above the processing table to assist in separating labels from waste materials. The pressure plate holds the labels in place during separation, preventing them from being carried along by the waste and optimizing the separation effect. The first screw rotates, causing the pressure plate to rise and fall under the action of the threaded tube, allowing for easy adjustment of the distance between the pressure plate and the processing table, improving operational convenience. Rotating the second screw moves the push plate, causing the top plate and rubber pad to move simultaneously outwards from the chute under the action of the protrusions and slopes, thus tightening the waste material roll. This facilitates the installation and disassembly of the waste material roll, improving operational efficiency. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this application; Figure 2 This is a schematic diagram of the pressure plate structure of this application; Figure 3 This is a schematic diagram of the shaft structure of this application; Figure 4 This is a schematic diagram of the top slab structure of this application; Figure 5 This is a schematic diagram of the chute structure of this application; Figure 6 This is a schematic diagram of the structure of the first and second waste reels of this application; Figure 7 This is a schematic diagram of the limit block structure in this application.

[0023] In the picture: 1. Processing table; 2. Pressure plate; 3. Side plate; 4. First lead screw; 5. Threaded tube; 6. Guide rod; 7. Bracket; 8. Rotary shaft; 9. Slide groove; 10. Top plate; 11. Spring; 12. Second lead screw; 13. Push plate; 14. Protrusion; 15. Inclined surface; 16. Rubber pad; 17. First waste roll; 18. Second waste roll; 19. Limit key; 20. Keyway; 21. First cutting unit; 22. Second cutting unit; 23. T-slot; 24. T-slider; 25. Limit block; 26. Positioning bolt; 27. Turning roller. Detailed Implementation

[0024] The following is in conjunction with the appendix Figure 1 -Appendix Figure 7 This application will be described in further detail below.

[0025] Example 1: An integrated cutting and collecting device, referring to... Figure 1 , Figure 2 and Figure 7 The system includes a processing table 1, a pressure plate 2 on top of the processing table 1, two side plates 3 fixedly connected to the outer surface of the processing table 1, and a first lead screw 4 rotatably connected to the outer circumference of each side plate 3. A threaded tube 5 is threadedly connected to the outer circumference of the first lead screw 4. The outer circumference of the threaded tube 5 is fixedly connected to the outer surface of the pressure plate 2 through a connecting plate. The two first lead screws 4 are connected by a synchronous belt and a synchronous pulley.

[0026] Four guide rods 6 are fixedly connected to the upper surface of the processing table 1. The pressure plate 2 is slidably sleeved with the outer circumference of the guide rods 6 through the through holes at both ends, so that the pressure plate 2 can move stably along the guide rods 6 during the lifting process. This effectively avoids the pressure plate 2 from deviating or shaking during the movement, ensuring the pressure plate 2's restriction effect on the label, further optimizing the separation effect of the label and waste, and improving the stability and reliability of the device operation.

[0027] The processing table 1 is equipped with a first cutting unit 21. The first cutting unit 21 has a built-in cylinder drive and a cutting tool adapted to the shape of the label. The cylinder drives the cutting tool adapted to the shape of the label to perform lifting and cutting, which can complete the cutting operation of the intermediate waste material of the label, thereby enabling the subsequent intermediate waste material to be separated from the label.

[0028] The processing table 1 is equipped with a second cutting unit 22. The second cutting unit 22 includes two cutting rollers that are linked in opposite directions by gears. One of the cutting rollers has two symmetrical annular cutting cutters on its outer circumference. One of the cutting rollers has a drive motor at its end. The one cutting roller is powered by the drive motor to rotate. Under the action of the gears, it drives the other cutting roller to rotate in the opposite direction. Thus, the annular cutting cutter continuously cuts the edge waste of the label between the two cutting rollers during the rotation process, completing the edge waste cutting operation.

[0029] The upper surface of the processing table 1 is provided with multiple T-slots 23. Each T-slot 23 has two T-slide blocks 24 slidably connected inside. Each T-slide block 24 has a limit block 25 fixedly connected to its upper surface. Each T-slide block 24 has a positioning bolt 26 threaded inside. Each T-slot 23 has a scale mark on one side. The cooperation between the T-slots 23 and the T-slide blocks 24 allows the limit block 25 to be flexibly adjusted according to the size and position requirements of the label. The position of the limit block 25 can be precisely controlled by the scale mark, so that the limit block 25 can limit the edge of the label during the label conveying process, preventing the label from easily deviating during the conveying process. The positioning bolt 26 is used to fix the position of the T-slide blocks 24 to prevent the limit block 25 from moving during the cutting process, thereby improving the accuracy and stability of the cutting.

[0030] Example 2: An integrated cutting and collecting device, see [link / reference] Figures 3-6 Two supports 7 are fixedly connected to the upper surface of the processing table 1. A rotating shaft 8 is rotatably connected to the top of each support 7. A sliding groove 9 is opened inside the rotating shaft 8. Two symmetrically arranged top plates 10 are slidably connected inside the sliding groove 9. Springs 11 are arranged at equal intervals inside the sliding groove 9. The ends of the springs 11 are fixedly connected to the inside of the rotating shaft 8 and the outer surface of the top plate 10, respectively. A second lead screw 12 is rotatably connected inside the rotating shaft 8. A push plate 13 is threadedly connected to the outer circumference of the second lead screw 12. The outer surface of the push plate 13 is slidably connected to the side wall of the sliding groove 9. A protrusion 14 is fixedly connected to the side of the two adjacent top plates 10 that are close to each other. An inclined surface 15 is provided on the side of the protrusion 14 that is close to the push plate 13. A rubber pad 16 is fixedly connected to the side of the two adjacent top plates 10 that are far away from each other.

[0031] Each bracket 7 is rotatably connected to a steering roller 27, which is located below the rotating shaft 8. The steering roller 27 guides and turns the movement path of the label and waste, allowing the waste to enter the subsequent waste collection stage more smoothly, thus improving the working efficiency and smoothness of the entire cutting and collecting integrated device.

[0032] One of the rotating shafts 8 has a longer first waste roll 17 slidably sleeved on its outer circumference, and the other rotating shaft 8 has a shorter second waste roll 18 slidably sleeved on its outer circumference. Each rotating shaft 8 has a drive motor at its end. By setting waste rolls of different lengths, different types of waste can be collected. The longer first waste roll 17 is convenient for collecting wider, middle waste, while the shorter second waste roll 18 is convenient for collecting narrower, edge-shaped waste. At the same time, the drive motor provides power for the rotation of the waste rolls, realizing automatic waste collection.

[0033] Each rotating shaft 8 has a fixed limit key 19 on its outer circumference. The inner walls of the first waste roll 17 and the second waste roll 18 are provided with keyways 20. The cooperation between the limit key 19 and the keyway 20 can ensure that the waste roll rotates synchronously with the rotating shaft 8, avoid relative rotation between the waste roll and the rotating shaft 8, and ensure the stability and accuracy of waste collection.

[0034] It should be noted that the first waste roll 17 can be installed on the rotating shaft 8 near the pressure plate 2, and the second waste roll 18 can be installed on the rotating shaft 8 near the second cutting unit 22, which facilitates the collection of intermediate waste and edge waste.

[0035] The implementation principle of this application embodiment is as follows: the label is conveyed by an external conveying device, so that the label passes through the first cutting unit 21, the second cutting unit 22 and the pressure plate 2 in sequence. The first cutting unit 21 is driven by a cylinder to raise and lower a cutting blade adapted to the shape of the label, accurately completing the cutting operation of the waste material in the middle of the label. The two cutting rollers of the second cutting unit 22 are linked in opposite directions by gears. One of the cutting rollers is provided with two symmetrical annular cutting blades on its outer circumference. Driven by a drive motor, the annular cutting blades can cut the waste material on the edge of the label passing between the two cutting rollers. Continuous cutting is performed to complete the edge waste cutting operation. After the edge waste is cut and separated from the label, the separated edge waste is wound around the guide roller 27 and then wound onto the second waste roll 18. The drive motor at the end of the rotating shaft 8 is started to drive the rotating shaft 8 and the second waste roll 18 to rotate. During the label conveying process, the edge waste is separated and collected. After the cut label passes through the pressure plate 2, the middle waste is separated from the sticky note and wound around the guide roller 27 and then wound onto the first waste roll 17. The motor at the end of the rotating shaft 8 is started to drive the rotating shaft 8 and the first waste roll 17 to continue the process. The rotating mechanism separates and collects intermediate waste materials during label conveying. During waste separation, the pressure plate 2 holds the labels in place, effectively preventing them from being lifted by the waste and optimizing the separation effect. One of the first lead screws 4 can be rotated, driving the other lead screw 4 to rotate synchronously under the action of the synchronous belt and synchronous pulley. The rotation of the first lead screw 4 drives the pressure plate 2 to rise and fall through the threaded tube 5. The distance between the pressure plate 2 and the processing table 1 can be flexibly adjusted according to the thickness and material of different labels and actual production needs, improving operational convenience and... The second lead screw 12 can be rotated to drive the push plate 13 to move. When the push plate 13 moves, it will push the protrusion 14, the top plate 10 and the rubber pad 16 towards the outside of the slide groove 9 under the action of the inclined surface 15, thereby pressing the waste roll and positioning the waste roll, which is convenient for the installation of the waste roll. Conversely, rotating the second lead screw 12 in the opposite direction will drive the push plate 13 to move back, so that the top plate 10 and the rubber pad 16 will automatically move back into the slide groove 9 under the action of the spring 11, which can release the positioning restriction on the waste roll, making it convenient to disassemble and replace the roll that is full of waste, thus improving the work efficiency.

[0036] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.

Claims

1. A cutting and receiving integrated device, comprising a processing table (1), characterized in that: A pressure plate (2) is provided above the processing table (1). Two side plates (3) are fixedly connected to the outer surface of the processing table (1). A first lead screw (4) is rotatably connected to the outer circumferential surface of each side plate (3). A threaded tube (5) is threadedly connected to the outer circumferential surface of the first lead screw (4). The outer circumferential surface of the threaded tube (5) is fixedly connected to the outer surface of the pressure plate (2) through a connecting plate. The two first lead screws (4) are connected by a synchronous belt and a synchronous pulley. The upper surface of the processing table (1) is fixedly connected to two supports (7). Each support (7) is rotatably connected to a rotating shaft (8). The rotating shaft (8) has a sliding groove (9) inside. The sliding groove (9) has two symmetrically arranged top plates (10) slidably connected inside. The sliding groove (9) has springs (11) arranged at equal intervals inside. The ends of the springs (11) are fixedly connected to the inside of the rotating shaft (8) and the outer surface of the top plate (10) respectively. The rotating shaft (8) has a second lead screw (12) rotatably connected inside. The outer circumferential surface of the second lead screw (12) is threadedly connected to a push plate (13). The outer surface of the push plate (13) is slidably connected to the side wall of the sliding groove (9). The two adjacent top plates (10) are fixedly connected to a protrusion (14) on the side close to each other. The protrusion (14) is provided with an inclined surface (15) on the side close to the push plate (13). The two adjacent top plates (10) are fixedly connected to a rubber pad (16) on the side far away from each other.

2. The integrated cutting and collecting device according to claim 1, characterized in that: Four guide rods (6) are fixedly connected to the upper surface of the processing table (1), and the pressure plate (2) is slidably sleeved with the outer circumferential surface of the guide rods (6) through through holes opened at both ends.

3. The integrated cutting and collecting device according to claim 1, characterized in that: Each of the brackets (7) is rotatably connected to a steering roller (27), which is located below the rotating shaft (8).

4. The integrated cutting and collecting device according to claim 1, characterized in that: One of the rotating shafts (8) has a longer first waste roll (17) slidably sleeved on its outer circumference, and the other rotating shaft (8) has a shorter second waste roll (18) slidably sleeved on its outer circumference. Each of the rotating shafts (8) is provided with a drive motor at its end.

5. The integrated cutting and collecting device according to claim 4, characterized in that: Each of the rotating shafts (8) has a limit key (19) fixedly connected to its outer circumference, and the inner walls of the first waste roll (17) and the second waste roll (18) are provided with keyways (20).

6. The integrated cutting and collecting device according to claim 1, characterized in that: The processing table (1) is provided with a first cutting unit (21) and a second cutting unit (22).

7. The integrated cutting and collecting device according to claim 1, characterized in that: The upper surface of the processing table (1) is provided with a plurality of T-slots (23), and two T-slides (24) are slidably connected inside each T-slot (23), and a limit block (25) is fixedly connected to the upper surface of each T-slide (24).

8. The integrated cutting and collecting device according to claim 1, characterized in that: Each of the T-slider (24) has a positioning bolt (26) threaded inside, and each of the T-slots (23) has a scale mark on one side.