Die-cutting machine with correction mechanism
By setting a correction mechanism in the conveying part of the die-cutting machine, the problem of cardboard deviation during the conveying process after cutting is solved, and the accuracy of the cardboard position and the improvement of production efficiency are achieved.
Patent Information
- Application Number
- CN202422626580.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-30
AI Technical Summary
Existing die-cutting machines are prone to deviation during the transportation process after cardboard cutting, resulting in inaccurate cutting positions, affecting the folding work of the cardboard, and increasing waste and production costs.
A correction mechanism is provided in the conveying part of the die-cutting machine, including first, second and third correction members, which are respectively located between the feed rollers and between the guide roller and the feed roller to ensure the positioning and correction of the cardboard during the conveying process.
By using the correction mechanism, the position accuracy of the cardboard during cutting and conveying is ensured, cutting errors are reduced, waste rates are lowered, and production efficiency and cost-effectiveness are improved.
Smart Images

Figure CN223354384U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of die-cutting machines, in particular to a die-cutting machine with a correction mechanism. Background Art
[0002] Die-cutting machines, also known as die-cutting machines, cutting machines, or CNC punching machines, are primarily used for die-cutting (full or partial cutting), creasing, hot stamping, laminating, and automatic waste removal of non-metallic materials, self-adhesive labels, EVA, double-sided tape, electronics, and cell phone adhesive pads. Using steel knives, metal molds, and steel wire (or a template carved from steel plate), the die-cutting machine applies pressure through a stamping plate to cut printed products or cardboard into a specific shape. It is a crucial piece of equipment for post-print packaging processing and forming.
[0003] When cardboard is produced and processed, a die-cutting machine is required for die-cutting operations. After the existing die-cutting machine cuts the cardboard, it will transport the cardboard to the folding mechanism through a conveyor mechanism. However, during the transportation process, the cardboard is prone to deviation, which will cause the originally designed position to deviate from the actual position, resulting in the indentation of the cardboard no longer being exactly located at the folding and pressing device, thereby affecting the folding work of the cardboard and increasing the probability of defective cardboard production. Utility Model Content
[0004] In order to solve the problem in the prior art that the cardboard is easily deflected when the existing die-cutting machine is transported to the folding mechanism through the conveying mechanism after cutting the cardboard, the present application provides a die-cutting machine with a correction mechanism to solve the above problem.
[0005] In order to achieve the above objectives, the technical solutions adopted in this application are:
[0006] A die-cutting machine with a correction mechanism comprises a box body, a cutting component and a conveying component, wherein the box body comprises a main box frame, the cutting component and the conveying component are both mounted on the top surface of the main box frame, and the conveying component is located at both ends of the cutting component;
[0007] The conveying component includes a feed roller and a guide roller. A plurality of the feed rollers are provided and are installed in a row at both ends of the cutting component. The guide roller is installed on the top surface of the main box frame and is located at one end of the blanking opening opened on the top surface of the main box frame. At least three feed rollers are provided between the cutting component and the blanking opening, wherein a correction component is provided between the three feed rollers.
[0008] The correction component includes a first correction piece, a second correction piece and a third correction piece, the first correction piece and the second correction piece are respectively arranged between the three feed rollers, and the third correction piece is arranged between the guide roller and the feed roller;
[0009] A discharge chamber is further provided below the main box frame corresponding to the blanking port, and a receiving component for transporting cardboard to the folding step is provided inside the discharge chamber.
[0010] As a further improvement of the present invention, the first correction member includes a first fixing seat and a first guide plate, at least two first fixing seats are provided and are respectively mounted on the top surface of the main box frame, and a first sliding rod is connected between the two first fixing seats;
[0011] At least two first guide plates are provided and are respectively mounted on the first slide bars. The plate surface of the first guide plate close to the cutting component is open, and the plate surface of the first guide plate close to the feeding roller is perpendicular to the long side direction of the main box frame.
[0012] As a further improvement of the present invention, the second correction member includes a second fixing seat and a second guide plate, at least two second fixing seats are provided and are respectively mounted on the top surface of the main box frame, a second slide rod is connected between the two second fixing seats, and at least two second guide plates are provided and are respectively mounted on the second slide rod;
[0013] The third correction member includes a third fixing seat and a third guide plate. At least two third fixing seats are provided and are respectively mounted on the top surface of the main box frame. A third slide bar is connected between the two third fixing seats. At least two third guide plates are provided and are respectively mounted on the second slide bar.
[0014] The plate surfaces of the second guide plate and the third guide plate are both perpendicular to the long side direction of the main box frame.
[0015] As a further improvement of the present invention, the conveying component further includes a pair of material removal rollers, wherein the two material removal rollers are installed in the same row on the top surface of the main box frame and are located at one end of the material removal port away from the guide roller.
[0016] The top of described sliding panel also is provided with an interlocking structure, and the interlocking structure of described sliding panel and the interlocking structure are hinged on each other, and an end of sliding panel withstands on the back of interlocking structure and is locked.
[0017] As a further improvement of the present invention, the cutting component includes a fixed cover, a first cylinder, a cutting blade and a cutting pad. The fixed cover and the cutting pad are both installed on the top surface of the main box frame. The cutting pad is located directly below the inner top surface of the fixed cover and is at the same height as the feed roller. At least two of the first cylinders are provided and are installed in the same row in the fixed cover. Guide columns are also provided at the four corners of the top surface of the cutting pad. One end of the cutting blade is connected to the piston end of the first cylinder, and the other end of the cutting blade is sleeved on the guide column.
[0018] As a further improvement of the present invention, the cutting pad is further provided with a detection component, which includes a connecting seat, a connecting rod, a socket block and a scanner. At least two connecting seats are provided and are respectively arranged on the top surface of the discharge end of the cutting pad, and the connecting rod is connected between the two connecting seats.
[0019] At least two socket blocks are provided and are respectively slidably sleeved on the connecting rods. The scanner is fixedly connected to the socket blocks. An alarm light is also provided on the top of the scanner.
[0020] As a further improvement of the present invention, the box body further includes a box door, which is hinged to a box opening on the side of the main box frame corresponding to the discharge chamber.
[0021] As a further improvement of the present invention, the bottom surface of the main box frame is further provided with a plurality of supporting components and universal wheels, and the supporting components and the universal wheels are both installed at the edge of the bottom surface of the main box frame.
[0022] Compared with the prior art, the technical solution provided by this utility model has the following advantages and effects:
[0023] 1. In the present application, by arranging the first correction member, the second correction member and the third correction member between the feed rollers, the cardboard can be effectively positioned and corrected, ensuring the accurate position of the cardboard during the cutting process and reducing cutting errors. The setting of multiple feed rollers can realize continuous feeding, reduce the pause time during the cardboard transmission process, and improve production efficiency. The precise correction mechanism can reduce waste caused by position deviation, reduce material waste, and improve production cost-effectiveness. The operator can adjust the correction member and the feed roller to adapt to cardboards of different specifications and thicknesses, thereby enhancing the versatility of the equipment. Among them, the cooperation between the discharge chamber and the receiving member ensures that the cut cardboard can smoothly fall into the designated area and enter the folding mechanism, thereby avoiding secondary damage caused by unstable blanking. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative labor.
[0025] Figure 1 It is an axonometric drawing of the present utility model;
[0026] Figure 2 It is an axonometric drawing of the present invention from another angle;
[0027] Figure 3 It is the main view of the utility model;
[0028] Figure 4 It is a left view of the utility model;
[0029] Figure 5 It is an axonometric drawing of the receiving component in the present utility model;
[0030] Figure 6 It is the main view of the receiving component in the utility model;
[0031] Figure 7 It is an axonometric drawing of the detection component in the utility model.
[0032] In the figure: 10, box body; 110, main box frame; 120, box door; 130, blanking port; 140, discharge chamber; 20, cutting component; 210, fixed cover; 220, first cylinder; 230, cutting blade; 240, cutting pad; 250, guide column; 30, conveying component; 310, feeding roller; 320, guide roller; 330, unloading roller; 40, correction component; 410, first fixed seat; 420, first guide plate; 430, second fixed seat; 440, second Guide plate; 450, third fixed seat; 460, third guide plate; 50, detection component; 510, connecting seat; 520, connecting rod; 530, socket block; 540, scanner; 550, alarm light; 60, receiving component; 610, fixing plate; 620, mounting frame; 630, adjustment plate; 640, second cylinder; 650, height limit frame; 660, sliding column; 670, sliding seat; 680, receiving roller; 690, screw seat; 70, supporting component; 80, universal wheel. DETAILED DESCRIPTION
[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Generally, the components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.
[0034] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the present application for protection, but merely represents selected embodiments of the present application. All other embodiments obtained by persons of ordinary skill in the art based on the embodiments in the present application without making any creative efforts shall fall within the scope of protection of the present application.
[0035] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.
[0036] In the description of this application, it should be noted that if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. appear, the orientation or position relationship indicated is based on the orientation or position relationship shown in the accompanying drawings, or the orientation or position relationship in which the product of the application is usually placed when in use. It is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, it cannot be understood as a limitation on this application. In addition, if the terms "first", "second", etc. appear in the description of this application, they are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0037] Furthermore, the use of terms such as "horizontal" and "vertical" in the description of this application does not necessarily imply that a component must be absolutely horizontal or suspended, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal than "vertical" and does not mean that the structure must be completely horizontal, but rather that it can be slightly tilted.
[0038] It should also be noted that, unless otherwise expressly specified or limited, the terms "disposed," "installed," "connected," and "connected" should be understood broadly. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. A person of ordinary skill in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0039] Example:
[0040] A die-cutting machine with a correction mechanism includes a box body 10, a cutting component 20 and a conveying component 30. The box body 10 includes a main box frame 110. The cutting component 20 and the conveying component 30 are both mounted on the top surface of the main box frame 110. The conveying component 30 is located at both ends of the cutting component 20.
[0041] The conveying component 30 includes a feed roller 310 and a guide roller 320. A plurality of the feed rollers 310 are provided and are installed in a row at both ends of the cutting component 20. The guide roller 320 is installed on the top surface of the main box frame 110 and is located at one end of the blanking opening 130 opened on the top surface of the main box frame 110. At least three feed rollers 310 are provided between the cutting component 20 and the blanking opening 130, wherein a correction component 40 is provided between the three feed rollers 310.
[0042] The correction component 40 includes a first correction member, a second correction member, and a third correction member. The first correction member and the second correction member are respectively arranged between the three feed rollers 310, and the third correction member is arranged between the guide roller 320 and the feed roller 310.
[0043] The main box frame 110 is further provided with a discharge chamber 140 below the discharge port 130 , and a receiving component 60 for transporting cardboard to the folding step is provided inside the discharge chamber 140 .
[0044] To explain, the main box frame 110 is the main supporting structure of the die-cutting machine, used to carry other components. The cutting component 20 is responsible for the die-cutting operation, that is, cutting the material (such as cardboard) through a specific tool. The feed rollers 310 in the conveying component 30 are multiple and arranged in a row on both sides of the cutting component 20. They are mainly used to feed the material (cardboard) to be cut into the cutting area. The guide roller 320 is installed on the top surface of the main box frame 110 and is located at one end of the blanking port 130 to help guide the flow and positioning of the cardboard. The blanking port 130 can be an outlet for the cut material to fall after the die-cutting is completed, ensuring that the cut cardboard can be smoothly transferred to the discharge chamber 140.
[0045] Specifically, at least three feed rollers 310 are located between the cutting unit 20 and the blanking port 130. These rollers help stabilize the cardboard's transport process. The correction components 40, including first, second, and third correction components, are located between the feed rollers 310. Their function is to ensure that the cardboard maintains its correct position during transport, preventing deviation or distortion. The first and second correction components are located between the first and second feed rollers 310, respectively, providing preliminary positioning correction. The third correction component is located between the guide roller 320 and the feed rollers 310, further ensuring that the cardboard is correctly positioned before entering the cutting area. Below the main box frame 110 is a discharge chamber 140 for collecting and storing cut cardboard. This chamber is equipped with a receiving component 60 specifically for transporting the cardboard to the folding step, preparing it for subsequent processing.
[0046] Combined with the accompanying drawings Figure 1-Figure 7 As shown, the first correction member includes a first fixing seat 410 and a first guide plate 420. At least two first fixing seats 410 are provided and are respectively mounted on the top surface of the main box frame 110. A first sliding rod is connected between the two first fixing seats 410.
[0047] At least two of the first guide plates 420 are provided and are respectively mounted on the first slide bar. The plate surface of the first guide plate 420 close to the cutting component 20 is open. The plate surface of the first guide plate 420 close to the feeding roller 310 is perpendicular to the long side direction of the main box frame 110. The second correction member includes a second fixed seat 430 and a second guide plate 440. At least two of the second fixed seats 430 are provided and are respectively mounted on the top surface of the main box frame 110. A second slide bar is connected between the two second fixed seats 430. At least two second guide plates 440 are provided and are respectively mounted on the second slide rod; the third correction part includes a third fixed seat 450 and a third guide plate 460, at least two third fixed seats 450 are provided and are respectively mounted on the top surface of the main box frame 110, a third slide rod is connected between the two third fixed seats 450, at least two third guide plates 460 are provided and are respectively mounted on the second slide rod; the plate surfaces of the second guide plate 440 and the third guide plate 460 are both perpendicular to the long side direction of the main box frame 110.
[0048] To illustrate, the open design of the first guide plate 420 enables precise correction of the material. During the die-cutting process, the surface of the first guide plate 420 abuts against the cutting element 20, ensuring that the material can smoothly enter the feed roller 310 after cutting. In addition, the surface of the first guide plate 420 is perpendicular to the surface of the feed roller 310, which facilitates stable material transportation within the die-cutting machine and prevents the material from shifting during transportation. The second and third correction members are similar in structure to the first correction member, but are located at different locations in the die-cutting machine to achieve multi-directional correction of the material. The surfaces of the second guide plate 440 and the third guide plate 460 are perpendicular to the long side of the main box frame 110, which enables them to perform horizontal correction of the material. After the die-cutting process is completed, the second and third correction members work together to ensure that the material is fully corrected when it is transported to the next step of the folding mechanism.
[0049] Combined with the accompanying drawings Figure 1-Figure 7 As shown, the conveying component 30 further includes a pair of stripping rollers 330 , wherein the two stripping rollers 330 are installed in the same row on the top surface of the main box frame 110 and are located at one end of the blanking port 130 away from the guide roller 320 .
[0050] Combined with the accompanying drawings Figure 1-Figure 7As shown, the receiving component 60 includes a fixed plate 610, a mounting bracket 620, a second cylinder 640 and a sliding column 660. The fixed plate 610 is mounted on the bottom surface of the discharge chamber 140, and the mounting bracket 620 is mounted on the top surface of the fixed plate 610. At least two of the second cylinder 640 and the sliding column 660 are provided. The bottom of the second cylinder 640 is fixed to the top surface of the fixed plate 610 through the adjustment plate 630. The top of the second cylinder 640 is set through the inner top surface of the mounting bracket 620. The bottom of the sliding column 660 is respectively mounted on the outer surface of the mounting bracket 620. On both sides of the top surface, the top of the sliding column 660 is fixed to the top surface of the discharge chamber 140 through a screw seat 690, wherein the two sliding columns 660 are both sleeved with a sliding seat 670, and a receiving roller 680 is rotatably connected between the two sliding seats 670. A limited height frame 650 is also arranged under the receiving roller 680, and the top plate frame of the height limiting frame 650 is connected to the sliding seat 670. The bottom column body of the height limiting frame 650 passes through the mounting frame 620 and is connected to the top surface of the fixed plate 610, and the piston end of the second cylinder 640 is in conflict with the top plate frame of the height limiting frame 650.
[0051] To explain, within the die-cutting machine's discharge chamber 140, the fixed plate 610 and mounting bracket 620 together form the basic structure of the receiving component 60. The fixed plate 610 is securely mounted to the bottom surface of the discharge chamber 140, ensuring the stability of the entire receiving component 60. The mounting bracket 620, located on the top surface of the fixed plate 610, provides a mounting platform for subsequent components. The second cylinder 640 and the sliding column 660 are key components in implementing the correction mechanism's functions. There are at least two of them to ensure uniform and reliable correction. The bottom of the second cylinder 640 is fixed to the top surface of the fixed plate 610 via an adjustment plate 630. The design of the adjustment plate 630 allows for fine-tuning of the cylinder's height to accommodate materials of varying thicknesses. The top of the cylinder extends through the inner top surface of the mounting bracket 620, allowing the cylinder to telescope up and down. The bottom of the sliding column 660 is mounted on either side of the outer top surface of the mounting bracket 620, ensuring its stability and smooth sliding. The top of the sliding column 660 is fixed to the top surface of the discharge chamber 140 through a screw seat 690. The design of the screw seat 690 allows the position of the sliding column 660 to be fine-tuned to adapt to different working requirements.
[0052] It is worth noting that a sliding seat 670 is sleeved on the two sliding columns 660, and a receiving roller 680 is rotatably connected between the sliding seats 670. The receiving roller 680 is a component that directly contacts the material to be die-cut, and its rotation can drive the material to move forward. In order to ensure the accuracy of die-cutting, a height limiting frame 650 is also provided below the receiving roller 680. The top plate frame of the height limiting frame 650 is connected to the sliding seat 670. The design of the top plate frame can limit the height of the material and prevent excessively high materials from entering the die-cutting area and causing damage. The bottom column of the height limiting frame 650 passes through the mounting frame 620 and is connected to the top surface of the fixed plate 610. This design makes the height limiting frame 650 and the receiving component 60 become a whole, thereby enhancing the stability of the structure.
[0053] Specifically, the piston end of the second air cylinder 640 contacts the top plate of the height limit frame 650. When the air cylinder is extended or retracted, it pushes the height limit frame 650 up and down, thereby achieving material height correction. This correction mechanism design enables the die-cutting machine to automatically adjust the material height during operation, ensuring die-cutting accuracy and efficiency.
[0054] Combined with the accompanying drawings Figure 1-Figure 7 As shown, the cutting component 20 includes a fixed cover 210, a first cylinder 220, a cutting blade 230 and a cutting pad 240. The fixed cover 210 and the cutting pad 240 are both installed on the top surface of the main box frame 110. The cutting pad 240 is located directly below the inner top surface of the fixed cover 210 and is at the same height as the feed roller 310. At least two of the first cylinders 220 are provided and are installed in the same row in the fixed cover 210. Guide columns 250 are also provided at the four corners of the top surface of the cutting pad 240. One end of the cutting blade 230 is connected to the piston end of the first cylinder 220, and the other end of the cutting blade 230 is sleeved on the guide column 250.
[0055] Combined with the accompanying drawings Figure 1-Figure 7 As shown, the cutting pad 240 is further provided with a detection component 50, which includes a connecting seat 510, a connecting rod 520, a socket block 530 and a scanner. At least two connecting seats 510 are provided and are respectively provided on the top surface of the discharge end of the cutting pad 240. The connecting rod 520 is connected between the two connecting seats 510.
[0056] At least two socket blocks 530 are provided and are respectively slidably sleeved on the connecting rod 520 . The scanner is fixedly connected to the socket blocks 530 . An alarm light 550 is also provided on the top of the scanner.
[0057] It is explained that the function of the detection component 50 is to monitor the state of the cardboard after cutting in real time, ensuring cutting accuracy and safety. The connecting seat 510 serves as a support point, providing stability and ensuring that the connecting rod 520 can be firmly installed and fixed. The connecting rod 520 connects the two connecting seats 510 to form a horizontal support structure. The stability and strength of the connecting rod 520 affect the reliability of the entire detection system. The socket block 530 can slide along the connecting rod 520, allowing adjustment in different positions to accommodate different cutting requirements and monitoring ranges. The scanner is fixedly connected to the socket block 530 and is mainly used to monitor the cutting process in real time, which may include material thickness, cutting status, or other important conditions. The alarm light 550 is used to issue a warning signal. When the scanner detects an abnormality, it can promptly alert the operator to ensure safety.
[0058] Combined with the accompanying drawings Figure 1-Figure 7 As shown, the box body 10 also includes a box door 120, which is hinged at the box opening opened on the side of the main box frame 110 corresponding to the discharge chamber 140. The bottom surface of the main box frame 110 is also provided with multiple support components 70 and universal wheels 80, and the support components 70 and the universal wheels 80 are both installed at the edge of the bottom surface of the main box frame 110.
[0059] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. A die-cutting machine with a correction mechanism, comprising a housing (10), a cutting component (20) and a conveying component (30), characterized in that: The box body (10) includes a main box frame (110), the cutting component (20) and the conveying component (30) are both installed on the top surface of the main box frame (110), and the conveying component (30) is located at both ends of the cutting component (20); The conveying component (30) includes a feed roller (310) and a guide roller (320), wherein a plurality of the feed rollers (310) are provided and are installed in a row at both ends of the cutting component (20), and the guide roller (320) is installed on the top surface of the main box frame (110) and is located at one end of a blanking opening (130) opened on the top surface of the main box frame (110), and at least three feed rollers (310) are provided between the cutting component (20) and the blanking opening (130), wherein a correction component (40) is provided between the three feed rollers (310); The correction component (40) includes a first correction component, a second correction component, and a third correction component, wherein the first correction component and the second correction component are respectively arranged between the three feeding rollers (310), and the third correction component is arranged between the guide roller (320) and the feeding roller (310); A discharge chamber (140) is further provided below the main box frame (110) corresponding to the blanking port (130), and a receiving component (60) for transporting cardboard to the folding step is provided inside the discharge chamber (140).
2. A die-cutting machine with a correction mechanism according to claim 1, characterized in that: The first correction member includes a first fixing seat (410) and a first guide plate (420), at least two first fixing seats (410) are provided and are respectively installed on the top surface of the main box frame (110), and a first sliding rod is connected between the two first fixing seats (410); At least two first guide plates (420) are provided and are respectively mounted on the first slide bar. The plate surface of the first guide plate (420) close to the cutting component (20) is open, and the plate surface of the first guide plate (420) close to the feeding roller (310) is perpendicular to the long side direction of the main box frame (110).
3. The die-cutting machine with a correction mechanism according to claim 2, characterized in that: The second correction member includes a second fixing seat (430) and a second guide plate (440), at least two second fixing seats (430) are provided and are respectively mounted on the top surface of the main box frame (110), a second slide bar is connected between the two second fixing seats (430), and at least two second guide plates (440) are provided and are respectively mounted on the second slide bar; The third correction member includes a third fixing seat (450) and a third guide plate (460), at least two third fixing seats (450) are provided and are respectively installed on the top surface of the main box frame (110), a third slide bar is connected between the two third fixing seats (450), and at least two third guide plates (460) are provided and are respectively installed on the second slide bar; The plate surfaces of the second guide plate (440) and the third guide plate (460) are both perpendicular to the long side direction of the main box frame (110).
4. A die-cutting machine with a correction mechanism according to claim 3, characterized in that: The conveying component (30) further includes a pair of stripping rollers (330), wherein the two stripping rollers (330) are installed in the same row on the top surface of the main box frame (110) and are located at one end of the blanking port (130) away from the guide roller (320).
5. The die-cutting machine with a correction mechanism according to claim 4, characterized in that: The receiving component (60) includes a fixed plate (610), a mounting frame (620), a second cylinder (640) and a sliding column (660), wherein the fixed plate (610) is mounted on the inner bottom surface of the discharge chamber (140), and the mounting frame (620) is mounted on the top surface of the fixed plate (610). At least two of the second cylinder (640) and the sliding column (660) are provided. The bottom of the second cylinder (640) is fixed to the top surface of the fixed plate (610) through the adjustment plate (360), and the top of the second cylinder (640) is arranged to pass through the inner top surface of the mounting frame (620). The bottom of the sliding column (660) is respectively mounted on the outer surface of the mounting frame (620). On both sides of the top surface, the top of the sliding column (660) is fixed to the top surface of the discharge chamber (140) through a screw seat (690), wherein the two sliding columns (660) are both sleeved with a sliding seat (670), and a receiving roller (680) is rotatably connected between the two sliding seats (670), and a limited height frame (650) is also provided below the receiving roller (680), and the top plate frame of the limited height frame (650) is connected to the sliding seat (670), and the bottom column body of the limited height frame (650) passes through the mounting frame (620) and is connected to the top surface of the fixed plate (610), and the piston end of the second cylinder (640) is in conflict with the top plate frame of the limited height frame (650).
6. The die-cutting machine with a correction mechanism according to claim 5, characterized in that: The cutting component (20) includes a fixed cover (210), a first cylinder (220), a cutting blade (230) and a cutting pad (240). The fixed cover (210) and the cutting pad (240) are both installed on the top surface of the main box frame (110). The cutting pad (240) is located directly below the inner top surface of the fixed cover (210) and is at the same height as the feeding roller (310). At least two first cylinders (220) are provided and are installed in the fixed cover (210) in the same row. Guide columns (250) are also provided at the four corners of the top surface of the cutting pad (240). One end of the cutting blade (230) is connected to the piston end of the first cylinder (220), and the other end of the cutting blade (230) is sleeved on the guide column (250).
7. The die-cutting machine with a correction mechanism according to claim 6, characterized in that: The cutting pad (240) is further provided with a detection component (50), the detection component (50) comprising a connecting seat (510), a connecting rod (520), a sleeve block (530) and a scanner (540), at least two connecting seats (510) are provided and are respectively provided on the top surface of the discharge end of the cutting pad (240), and the connecting rod (520) is connected between the two connecting seats (510); At least two socket blocks (530) are provided and are respectively slidably sleeved on the connecting rod (520). The scanner (540) is fixedly connected to the socket blocks (530). An alarm light (550) is also provided on the top of the scanner (540).
8. The die-cutting machine with a correction mechanism according to claim 7, characterized in that: The box body (10) further comprises a box door (120), and the box door (120) is hinged to a box opening opened on a side surface of the main box frame (110) corresponding to the discharge chamber (140).
9. The die-cutting machine with a correction mechanism according to claim 7, characterized in that: The bottom surface of the main box frame (110) is also provided with a plurality of supporting components (70) and universal wheels (80), and the supporting components (70) and the universal wheels (80) are both installed at the edge of the bottom surface of the main box frame (110).