High-efficient and convenient type of packaging carton cutting equipment
Patent Information
- Application Number
- CN202521909400.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-04
AI Technical Summary
传统裁切设备存在诸多不足:一是纸盒输送导向精度低,易导致裁切位置偏差,影响产品质量;二是裁切时纸盒定位不稳定,裁切尺寸一致性差;三是裁切后下料流程不顺畅,废料收集及成品转运效率低;四是针对不同规格纸盒的适配性差,需频繁更换部件调整,操作繁琐且耗时
[0017]本实用新型通过引导裁切机构、移动定位机构、翻转下料机构、输送机构,导向输送装置保障纸盒输送的精准与稳定,为裁切提供良好前提;裁切执行装置通过多部件配合实现精准裁切,同时缓冲胶垫等部件保障裁切稳定性与设备寿命;移动定位机构从位置调整和夹紧固定两方面,确保裁切尺寸精准;翻转下料机构完成成品高效下料与收集;输送机构则作为起始环节,衔接前端上料,各机构相互配合,实现自动化、高效化的纸盒裁切作业;本实用新型解决传统裁切设备在精度、效率、适配性等方面的不足,为包装纸盒生产提供高效、精准、便捷的裁切解决方案。
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Figure CN224810206U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of packaging paper box processing equipment, and in particular to a high-efficiency and convenient packaging paper box cutting equipment. Background Technology
[0002] Packaging boxes are containers made primarily of paper and used for packaging various products. They are widely used in the field of commodity packaging.
[0003] Cutting is one of the key processes in the production and processing of packaging cartons. Traditional cutting equipment has many shortcomings: First, the carton conveying and guiding accuracy is low, which can easily lead to cutting position deviations and affect product quality; second, the carton positioning is unstable during cutting, resulting in poor consistency in cutting dimensions; third, the material unloading process after cutting is not smooth, and the efficiency of waste collection and finished product transfer is low; fourth, it has poor adaptability to different specifications of cartons, requiring frequent replacement and adjustment of parts, which is cumbersome and time-consuming. Utility Model Content
[0004] Based on this, the purpose of this utility model is to provide a high-precision, highly adaptable, efficient and convenient packaging paper box cutting device.
[0005] The present invention adopts the following technical solution:
[0006] A high-efficiency and convenient packaging carton cutting equipment includes a main body, which includes a frame and a guiding cutting mechanism, a moving positioning mechanism, and a flipping unloading mechanism sequentially arranged on the frame along the carton conveying direction. The guiding cutting mechanism is located upstream of the moving positioning mechanism and includes a guiding conveying device and a cutting execution device. The guiding conveying device guides the packaging carton to be cut along a preset path and stably conveys it to the cutting area of the cutting execution device. The cutting execution device cuts the carton to be cut to a preset size. The moving positioning mechanism clamps and positions the carton to be cut when the cutting execution device cuts the carton. The flipping unloading mechanism is located downstream of the moving positioning mechanism and flips and unloads the cut carton.
[0007] A further improvement to the above technical solution is that the guiding and conveying device includes a guide groove, a pressing block, a first cylinder, a pressing roller, and a second cylinder; the guide groove is flush with one side of the cutting area of the cutting execution device via a raised seat, and a pressing hole is opened on the top wall of the guide groove corresponding to its cavity position; the pressing block is movably disposed above the pressing hole; the first cylinder is used to drive the pressing block to move up and down in the vertical direction to achieve pressing and positioning of the paper box; the pressing roller is disposed at the discharge end of the guide groove; the second cylinder is used to drive the pressing roller to move up and down in the vertical direction.
[0008] A further improvement to the above technical solution is that a width adjustment plate for adjusting the conveying width is provided in the cavity of the guide groove, and an infeed guide slope is provided on the edge of the width adjustment plate near the material inlet end of the guide groove. The infeed guide slope is used to guide the paper box to be cut to smoothly enter the guide groove.
[0009] A further improvement to the above technical solution is that an adjusting screw is connected to one side of the width adjusting plate, and a screw mounting hole with internal threads is provided on one side wall of the guide groove; one end of the adjusting screw passes through the screw mounting hole and extends to the outside of the guide groove, and an adjusting handwheel is fixedly connected to the extended end.
[0010] A further improvement to the above technical solution is that the cutting execution device includes an execution mounting frame, a third cylinder, a cutting blade, a pad, and a fourth cylinder; the execution mounting frame is mounted above the machine frame; the third cylinder is fixed to the top of the execution mounting frame; the cutting blade is connected to the output end of the third cylinder; the pad has an avoidance groove located directly below the cutting blade to avoid the blade edge during cutting; the pad is flush with the discharge end of the guide groove; the output end of the fourth cylinder faces upward and is used to drive the pad to move vertically.
[0011] A further improvement to the above technical solution is that a support is provided on the outer side of the pad, and the support is connected to the output end of the fourth cylinder; a buffer rubber pad is provided inside the support, and the buffer rubber pad is connected to the bottom of the pad.
[0012] A further improvement to the above technical solution is that waste guide plates are symmetrically provided on both sides of the support, and a waste discharge hole is provided at the lower end of the frame corresponding to the waste guide plates. A waste bin that is detachably connected to the frame is arranged below the waste discharge hole. The waste bin is used to collect cutting waste.
[0013] A further improvement to the above technical solution is that the moving positioning mechanism includes a linear module and a clamping gripper mounted on the frame; the linear module is used to drive the clamping gripper to translate along a linear direction to adjust the cutting length; the clamping gripper is connected to the linear module and is used to clamp and fix the cardboard box to prevent the cardboard box from shifting during the cutting process.
[0014] A further improvement to the above technical solution is that the flipping feeding mechanism includes a flipping tray, a fixed hinge seat, a flipping hinge component, a fifth cylinder, and a support base; the flipping tray is used to receive the cut cardboard boxes, and a feeding trough is provided directly below the frame corresponding to the flipping tray, with a feeding box detachably connected to the frame below the feeding trough; the fixed hinge seat is fixed to the edge of the support base; the flipping hinge component is a transmission linkage structure, with one end hinged to the fixed hinge seat and the other end connected to the output end of the fifth cylinder; the cylinder body of the fifth cylinder is fixed above the support base; the support base is fixed above the frame.
[0015] A further improvement to the above technical solution is that the equipment body also includes a conveying mechanism, which is located on one side of the guiding conveying device and is used to convey the paper box to the guiding conveying device.
[0016] The beneficial effects of this utility model are as follows:
[0017] This invention utilizes a guiding cutting mechanism, a moving positioning mechanism, a flipping unloading mechanism, and a conveying mechanism. The guiding conveying device ensures the accuracy and stability of cardboard box transport, providing a good foundation for cutting. The cutting execution device achieves precise cutting through the cooperation of multiple components, while buffer pads and other components ensure cutting stability and equipment lifespan. The moving positioning mechanism ensures accurate cutting dimensions through both position adjustment and clamping fixation. The flipping unloading mechanism completes efficient unloading and collection of finished products. The conveying mechanism serves as the starting point, connecting to the front-end loading. All mechanisms cooperate to achieve automated and efficient cardboard box cutting operations. This invention addresses the shortcomings of traditional cutting equipment in terms of accuracy, efficiency, and adaptability, providing an efficient, accurate, and convenient cutting solution for packaging cardboard box production. Attached Figure Description
[0018] Figure 1 This is a structural schematic diagram of the efficient and convenient packaging paper box cutting equipment of this utility model;
[0019] Figure 2 for Figure 1 A schematic diagram of the guiding and conveying device of a high-efficiency and convenient packaging paper box cutting equipment;
[0020] Figure 3 for Figure 2 A schematic diagram of the guiding and conveying device from another angle;
[0021] Figure 4 for Figure 1 A schematic diagram of the cutting execution device of a high-efficiency and convenient packaging paper box cutting equipment;
[0022] Figure 5 for Figure 1A schematic diagram of the moving positioning mechanism and the flipping feeding mechanism of a high-efficiency and convenient packaging paper box cutting equipment;
[0023] Figure 6 for Figure 5 A magnified view of circle A in the flipping and feeding mechanism of the efficient and convenient packaging paper box cutting equipment.
[0024] The numbers on the map are:
[0025] 10. Equipment body; 11. Conveying mechanism;
[0026] 20. Frame; 21. Scrap discharge hole; 22. Scrap bin; 23. Long discharge chute; 24. Discharge bin;
[0027] 30. Guiding the cutting mechanism;
[0028] 40. Motion positioning mechanism; 41. Linear module; 42. Gripping gripper;
[0029] 50. Tilting feeding mechanism; 51. Tilting pallet; 52. Fixed hinge seat; 53. Tilting hinge component; 54. Fifth cylinder; 55. Support seat;
[0030] 60. Guiding and conveying device; 61. Guide groove; 62. Pressing block; 63. First cylinder; 64. Pressing roller; 65. Second cylinder; 66. Elevating seat; 67. Pressing hole;
[0031] 70. Cutting actuator; 71. Actuator mounting bracket; 72. Third cylinder; 73. Cutting blade; 74. Pad plate; 75. Fourth cylinder; 76. Clearance groove; 77. Support; 78. Buffer pad; 79. Waste guide plate;
[0032] 80. Width adjustment plate; 81. Feed guide slope; 82. Adjusting screw; 83. Screw mounting hole; 84. Adjusting handwheel. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0035] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0036] like Figures 1 to 6 The diagram illustrates an embodiment of this utility model, relating to a high-efficiency and convenient packaging carton cutting device. The device includes a main body 10, which comprises a frame 20 and a guiding cutting mechanism 30, a moving positioning mechanism 40, and a flipping and unloading mechanism 50 sequentially arranged on the frame 20 along the carton conveying direction. The guiding cutting mechanism 30 is located upstream of the moving positioning mechanism 40 and includes a guiding conveying device 60 and a cutting execution device 70. The guiding conveying device 60 guides the packaging carton to be cut along a preset path and stably conveys it to the cutting area of the cutting execution device 70. The cutting execution device 70 performs a preset-size cutting process on the carton conveyed to the cutting area. The moving positioning mechanism 40 clamps and positions the carton to be cut when the cutting execution device 70 cuts it. The flipping and unloading mechanism 50 is located downstream of the moving positioning mechanism 40 and performs a flipping and unloading operation on the cut carton.
[0037] Specifically, by setting up a frame 20 as the basic support, a guiding cutting mechanism 30, a moving positioning mechanism 40, and a flipping unloading mechanism 50 are arranged sequentially along the carton conveying direction to construct a complete and orderly cutting operation process. The guiding cutting mechanism 30 realizes precise guidance, conveying, and cutting of the carton; the moving positioning mechanism 40 ensures stable positioning during cutting; and the flipping unloading mechanism 50 completes efficient unloading. The coordinated operation of these mechanisms enables the equipment to have efficient and convenient cutting capabilities, which can significantly improve the automation level, cutting accuracy, and production efficiency of packaging carton cutting, meet the quality and efficiency requirements of large-scale packaging carton production, and solve the problems of chaotic processes and low efficiency in traditional equipment.
[0038] like Figure 1 As shown, the equipment body 10 also includes a conveying mechanism 11, which is located on one side of the guiding conveyor 60 and is used to convey cardboard boxes to the guiding conveyor 60. Specifically, the conveying mechanism 11 is set on one side of the guiding conveyor 60 as a front-end feeding stage, which can automatically convey cardboard boxes to the guiding conveyor 60, replacing manual feeding or simple conveying methods. This design improves the automation process of the equipment, reduces manual intervention, improves the efficiency and stability of cardboard box feeding, ensures the continuous operation of subsequent cutting operations, further improves the overall automation level and production efficiency of the equipment, and solves the problems of slow and error-prone manual feeding. In this embodiment, the conveying mechanism 11 can be a motor-driven belt to realize automated cardboard box conveying.
[0039] like Figure 2 and Figure 3 As shown, the guiding and conveying device 60 includes a guide groove 61, a pressing block 62, a first cylinder 63, a pressing roller 64, and a second cylinder 65. The guide groove 61 is flush with one side of the cutting area of the cutting execution device 70 via a raised seat 66. A pressing hole 67 is provided on the top wall of the guide groove 61 corresponding to its cavity position. The pressing block 62 is movably disposed above the pressing hole 67. The first cylinder 63 is used to drive the pressing block 62 to move up and down in the vertical direction to achieve pressing and positioning of the paper box. The pressing roller 64 is disposed at the discharge end of the guide groove 61. The second cylinder 65 is used to drive the pressing roller 64 to move up and down in the vertical direction. Specifically, the guide groove 61 is flush with the cutting execution device 70 via the raised seat 66, ensuring smooth connection of the carton conveying; the pressing hole 67, the pressing block 62, and the first cylinder 63 cooperate to flexibly press and position the carton during conveying, preventing conveying deviation, and can also press the rear end of the carton during cutting to prevent cutting deviation; the combination of the pressing roller 64 and the second cylinder 65 can adjust the height according to the thickness of the carton, assisting in stable conveying. This structure optimizes the conveying path connection, conveying process positioning, and adaptability, improving the accuracy and stability of the carton conveying to the cutting area, laying the foundation for subsequent accurate cutting, reducing cutting defects caused by conveying problems, and ensuring cutting quality and efficiency.
[0040] like Figure 3 As shown, the guide groove 61 has a width adjustment plate 80 inside its cavity for adjusting the conveying width. The width adjustment plate 80 has an infeed guide ramp 81 on one edge near the material inlet end of the guide groove 61. The infeed guide ramp 81 guides the cardboard box to be cut smoothly into the guide groove 61. Specifically, the width adjustment plate 80 allows for adjustment of the conveying width according to different cardboard box specifications, and the infeed guide ramp 81 guides the cardboard box smoothly into the groove, preventing jamming. This design enhances the equipment's adaptability to different sized cardboard boxes, allowing it to adapt to various products without replacing large components such as the guide groove 61, expanding the equipment's applicability, ensuring smooth cardboard box feeding, improving conveying efficiency and stability, and reducing conveying failures caused by size mismatch.
[0041] like Figure 3 As shown, an adjusting screw 82 is connected to one side of the width adjusting plate 80, and a screw mounting hole 83 with internal threads is provided on one side of the guide groove 61. One end of the adjusting screw 82 passes through the screw mounting hole 83 and extends to the outside of the guide groove 61, and an adjusting handwheel 84 is fixedly connected to this extended end. Specifically, the cooperation of the adjusting screw 82, the screw mounting hole 83, and the adjusting handwheel 84 constitutes the structure for manually adjusting the width adjusting plate 80. The operator can precisely control the displacement of the width adjusting plate 80 by rotating the handwheel to achieve fine adjustment of the conveying width. This design makes the width adjustment operation simple and precise. Compared with other complex adjustment methods, it reduces the difficulty and cost of operation, and has high adjustment accuracy. It can better adapt to different cardboard box sizes, ensure the convenience and accuracy of conveying width adjustment, and further improve the equipment adaptability and ease of operation.
[0042] like Figure 4As shown, the cutting execution device 70 includes an execution mounting frame 71, a third cylinder 72, a cutting blade 73, a pad 74, and a fourth cylinder 75. The execution mounting frame 71 is located above the frame 20. The third cylinder 72 is fixed to the top of the execution mounting frame 71. The cutting blade 73 is connected to the output end of the third cylinder 72. The pad 74 has an avoidance groove 76 located directly below the cutting blade 73 to avoid the blade edge during cutting. The pad 74 is flush with the discharge end of the guide groove 61. The output end of the fourth cylinder 75 faces upward and is used to drive the pad 74 to move vertically. Specifically, the mounting bracket 71 provides a stable mounting base for the cutting components; the third cylinder 72 drives the cutting blade 73 to rise and fall to achieve the cutting action; the fourth cylinder 75 drives the pad plate 74 to rise and fall; the clearance groove 76 ensures that the cutting blade 73 is not interfered with during cutting; and the pad plate 74 is flush with the discharge end of the guide groove 61 to ensure accurate cutting position of the cardboard box. This structure is designed from the aspects of cutting power, cutting clearance, and position connection to ensure stable and accurate cutting action, improve cutting dimensional accuracy, reduce the risk of equipment damage due to interference between the cutting blade 73 and the pad plate 74, ensure continuous and stable cutting operation, and improve cutting quality and equipment reliability.
[0043] like Figure 4 As shown, a support 77 is provided on the outer side of the pad 74, and the support 77 is connected to the output end of the fourth cylinder 75; a buffer pad 78 is provided inside the support 77, and the buffer pad 78 is connected to the bottom of the pad 74. Specifically, the support 77 connects the fourth cylinder 75 and the pad 74 to form a stable transmission structure, and the internal buffer pad 78 can absorb impact force and reduce vibration during the lifting and cutting operations of the pad 74. This design ensures the stability of the lifting transmission of the pad 74 on the one hand, and reduces the impact of cutting impact force on the pad 74, cylinder and the whole equipment through buffer protection on the other hand, extending the service life of components, improving the stability and reliability of equipment operation during cutting operations, and reducing cutting accuracy deviation caused by vibration.
[0044] like Figure 1 and Figure 4As shown, the support 77 has symmetrical waste guide plates 79 on both sides. The frame 20 has a waste discharge hole 21 at the lower end corresponding to the waste guide plates 79. Below the waste discharge hole 21, a waste bin 22, detachably connected to the frame 20, is arranged. The waste bin 22 is used to collect cutting waste. Specifically, the symmetrical waste guide plates 79 on both sides of the support 77 guide the cutting waste into the waste discharge hole 21 of the frame 20, and the detachable waste bin 22 below collects the waste. This structure achieves orderly collection and centralized processing of cutting waste, preventing waste from scattering and affecting equipment operation and the production environment. The detachable waste bin 22 facilitates regular cleaning, improving waste processing efficiency and convenience, ensuring a clean production environment around the equipment, and reducing the potential impact of waste accumulation on the equipment.
[0045] like Figure 5 As shown, the gripping gripper 42 is connected to the linear module 41 and is used to clamp and fix the cardboard box to prevent it from shifting during the cutting process. Specifically, the linear module 41 drives the gripping gripper 42 to translate, which can flexibly adjust the cutting length to adapt to the cutting needs of different cardboard box specifications; the gripping gripper 42 clamps the cardboard box to prevent it from shifting during cutting. This design optimizes both the flexibility of cutting length adjustment and the stability of the cardboard box during cutting, improving the equipment's adaptability to different products and ensuring the accuracy of cutting dimensions. It solves the cutting quality problems caused by poor positioning and length adjustment in traditional equipment, improving cutting quality and equipment versatility.
[0046] like Figure 5 and Figure 6 As shown, the flipping feeding mechanism 50 includes a flipping tray 51, a fixed hinge seat 52, a flipping hinge member 53, a fifth cylinder 54, and a support base 55. The flipping tray 51 is used to receive the cut cardboard boxes. The flipping tray 51 is provided with a feeding trough 23 directly below the frame 20. Below the feeding trough 23, there is a feeding box 24 that is detachably connected to the frame 20. The fixed hinge seat 52 is fixed to the edge of the support base 55. The flipping hinge member 53 is a transmission linkage structure, with one end hinged to the fixed hinge seat 52 and the other end connected to the output end of the fifth cylinder 54. The cylinder body of the fifth cylinder 54 is fixed above the support base 55. The support base 55 is fixed above the frame 20. Specifically, the flipping tray 51 receives the cut cardboard boxes, and the feeding trough 23 cooperates with the detachable feeding box 24 to collect the finished products. The fixed hinge seat 52, the flipping hinge 53, and the fifth cylinder 54 constitute a flipping drive structure, which stably drives the tray to flip and feed the finished products. This structure enables efficient and orderly feeding and collection of the cut finished products, the flipping action is stable and reliable, and the detachable feeding box 24 facilitates the transfer and cleaning of finished products, improving the efficiency and convenience of the feeding process, ensuring a smooth production process, and reducing the accumulation of finished products and the time spent on transfer.
[0047] The working principle of this utility model is as follows:
[0048] The conveying mechanism 11 transports the cardboard box to be cut to the guiding conveyor 60. The guiding conveyor 60 first adapts to the width of the cardboard box via the width adjustment plate 80, and then guides it with the feeding guide ramp 81 and assists with the pressure roller 64, accurately and stably transporting the cardboard box to the cutting area of the cutting execution device 70. The linear module 41 of the moving positioning mechanism 40 drives the clamping gripper 42 to translate and adjust the cutting length, while the pressure block 62 presses the rear end of the cardboard box and the clamping gripper 42 clamps the front end of the cardboard box. The third cylinder 72 of the cutting execution device 70 drives the cutter 73 and the fourth cylinder 75 drives the pad 74 to rise and fall, completing the paper box cutting. The waste generated by cutting falls into the waste bin 22 through the waste guide plate 79 and the waste drop hole 21. After cutting, the finished paper box is transferred to the flipping and unloading mechanism 50 by the moving positioning mechanism 40. The fifth cylinder 54 drives the flipping tray 51 to flip, and the finished product falls into the unloading box 24 through the unloading trough 23, realizing the complete cutting and unloading process.
[0049] The above description merely illustrates the preferred technical solution of this utility model, and while the description is relatively specific and detailed, it should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and this utility model also intends to include these modifications and variations.
Claims
1. A high-efficiency and convenient packaging paper box cutting device, characterized in that, The device includes a main body, which comprises a frame and a guiding cutting mechanism, a moving positioning mechanism, and a flipping unloading mechanism sequentially arranged on the frame along the carton conveying direction. The guiding cutting mechanism is located upstream of the moving positioning mechanism and includes a guiding conveying device and a cutting execution device. The guiding conveying device guides the packaging carton to be cut along a preset path and stably conveys it to the cutting area of the cutting execution device. The cutting execution device cuts the carton to be cut to a preset size. The moving positioning mechanism clamps and positions the carton to be cut when the cutting execution device cuts it. The flipping unloading mechanism is located downstream of the moving positioning mechanism and is used to flip and unload the carton after cutting.
2. The efficient and convenient packaging paper box cutting equipment according to claim 1, characterized in that, The guiding and conveying device includes a guide groove, a pressing block, a first cylinder, a pressing roller, and a second cylinder. The guide groove is flush with one side of the cutting area of the cutting execution device via a raised base. A pressing hole is opened on the top wall of the guide groove corresponding to its cavity position. The pressing block is movably positioned above the pressing hole. The first cylinder is used to drive the pressing block to move vertically up and down to achieve pressing and positioning of the paper box. The pressing roller is located at the discharge end of the guide groove. The second cylinder is used to drive the pressing roller to move vertically up and down.
3. The efficient and convenient packaging paper box cutting equipment according to claim 2, characterized in that, The guide groove is equipped with a width adjustment plate for adjusting the conveying width. The width adjustment plate has an infeed guide slope on one edge near the infeed end of the guide groove. The infeed guide slope is used to guide the paper box to be cut smoothly into the guide groove.
4. The efficient and convenient packaging paper box cutting equipment according to claim 3, characterized in that, One side of the width adjustment plate is connected to an adjustment screw, and one side wall of the guide groove is provided with a screw mounting hole with internal threads; one end of the adjustment screw passes through the screw mounting hole and extends to the outside of the guide groove, and the extended end is fixedly connected to an adjustment handwheel.
5. The efficient and convenient packaging paper box cutting equipment according to claim 1, characterized in that, The cutting execution device includes an execution mounting frame, a third cylinder, a cutting blade, a pad, and a fourth cylinder; the execution mounting frame is mounted above the machine frame; the third cylinder is fixed to the top of the execution mounting frame; the cutting blade is connected to the output end of the third cylinder; the pad has a clearance groove located directly below the cutting blade to avoid the blade edge during cutting; the pad is flush with the discharge end of the guide groove; the output end of the fourth cylinder faces upwards and is used to drive the pad to move vertically.
6. The efficient and convenient packaging paper box cutting equipment according to claim 5, characterized in that, The outer side of the pad is provided with a support, which is connected to the output end of the fourth cylinder; the inside of the support is provided with a buffer pad, which is connected to the bottom of the pad.
7. The efficient and convenient packaging paper box cutting equipment according to claim 6, characterized in that, The support has symmetrical waste guide plates on both sides. The frame has a waste discharge hole at the lower end of the waste guide plate. A waste bin that is detachably connected to the frame is arranged below the waste discharge hole. The waste bin is used to collect cutting waste.
8. The efficient and convenient packaging paper box cutting equipment according to claim 1, characterized in that, The moving positioning mechanism includes a linear module mounted on the frame and a clamping gripper; the linear module is used to drive the clamping gripper to translate along a linear direction to adjust the cutting length; the clamping gripper is connected to the linear module and is used to clamp and fix the cardboard box to prevent the cardboard box from shifting during the cutting process.
9. The efficient and convenient packaging paper box cutting equipment according to claim 1, characterized in that, The flipping feeding mechanism includes a flipping tray, a fixed hinge seat, a flipping hinge component, a fifth cylinder, and a support base. The flipping tray is used to receive the cut cardboard boxes. A feeding trough is provided directly below the frame of the flipping tray, and a feeding box detachably connected to the frame is provided below the feeding trough. The fixed hinge seat is fixed to the edge of the support base. The flipping hinge component is a transmission linkage structure, with one end hinged to the fixed hinge seat and the other end connected to the output end of the fifth cylinder. The cylinder body of the fifth cylinder is fixed above the support base. The support base is fixed above the frame.
10. The efficient and convenient packaging paper box cutting equipment according to claim 1, characterized in that, The equipment body also includes a conveying mechanism, which is located on one side of the guiding conveying device and is used to convey the cardboard box to the guiding conveying device.