Cleaning equipment for carton processing
By improving the impurity removal and cutting guide mechanism of the cardboard processing equipment, the automated rotational removal of impurities and adaptive cutting of cardboard were achieved, solving the problems of low operating efficiency and unsuitable cutting in existing equipment, and improving the stability and cutting accuracy of the equipment.
Patent Information
- Application Number
- CN202511616138.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-01-02
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing cardboard box processing equipment, the impurity removal mechanism removes impurities by shaking back and forth or left and right. This requires the cardboard box openings to correspond to the shaking surface, which affects operating efficiency and hinders the widespread application of the equipment. At the same time, the cutting mechanism cannot adapt to changes in cardboard width, affecting the cutting effect.
The impurity removal mechanism uses an electric slider, universal ball, and cylinder in conjunction with a ring plate to achieve rotational vibration of the cardboard to remove impurities; the cutting guide mechanism uses a turntable, lead screw, and motor-driven cutting disc to achieve automatic adjustment and positioning cutting.
It improves the automation performance and stability of the equipment, ensures thorough removal of impurities, high cutting precision, adapts to different cardboard widths, and enhances processing efficiency and product quality.
Smart Images

Figure CN121246331A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of carton processing equipment, and particularly relates to a cleaning equipment for carton processing. BACKGROUND
[0002] A carton is a three-dimensional model, which is a polyhedral body composed of the movement, accumulation, folding and surrounding of a plurality of surfaces. The surfaces in the three-dimensional structure play a role in dividing space. By cutting, rotating and folding the surfaces of different parts, different emotional manifestations can be obtained. The composition relationship of the display surface of the carton should pay attention to the connection relationship of the display surface, the side surface, the top and the bottom, and the setting of the packaging information elements.
[0003] A carton machine is an industrial equipment for paperboard processing, mainly applied to the production of cartons in the fields of food packaging, medicine, tobacco and alcohol. Its core function is to process raw paper into finished cartons, covering paperboard forming, printing, cutting, binding and other processes. The equipment includes main equipment such as corrugated production line, printing machine, nailing machine and auxiliary devices such as laser engraving machine. The corrugated production line, as the core equipment, is composed of raw paper frame, single-sided corrugated machine and double-sided machine, with a production speed of 100-300 meters / minute and a width coverage of 1200-3000 millimeters, supporting three to seven layers of paperboard processing. The post-processing equipment such as printing and slotting machine and automatic nailing machine improves the quality of finished products through professional transformation.
[0004] During the processing of paperboard into cartons, the paperboard needs to be detected to observe whether there are corresponding particulate impurities in the pores of the paperboard, which can facilitate subsequent work. The existing impurity removal mechanism generally removes impurities by front-back or left-right shaking vibration, but the pores of the carton need to be corresponding to the shaking surface, which is not conducive to personnel operation, reduces work efficiency, and is not conducive to the popularization and application of the equipment. In addition, when the paperboard is cut and slotted, the cutting mechanism is designed as a fixed structure, which cannot adaptively cut the width of the paperboard, thereby affecting the effective use of the equipment. SUMMARY
[0005] The purpose of the present application is to provide a cleaning equipment for carton processing, which solves the technical problem that the existing impurity removal mechanism generally removes impurities by front-back or left-right shaking vibration, but the pores of the carton need to be corresponding to the shaking surface, which is not conducive to personnel operation and reduces work efficiency.
[0006] In order to achieve the above purpose, the present application adopts the following technical scheme:
[0007] A cleaning equipment for carton processing, comprising:
[0008] The impurity removing mechanism comprises an electric sliding block placed on an electric sliding rail, a first universal ball fixed on a support plate is movably connected to the top of the electric sliding block, a first cover body fixed on the base is arranged above the support plate, a gas cylinder is installed on the top end of the first cover body, and a piston rod on the gas cylinder penetrates through the first cover body and extends to a first motor;
[0009] A bending rod is detachably installed on one end of the output shaft of the first motor, a bearing fixed on the annular plate is connected to the other end, a fixed rod is connected to one end of the bending rod and placed between the check ring and the annular plate, an arc surface on the fixed rod movably abuts against the paperboard, second sleeves are installed around the bottom end of the annular plate through compression springs, and second universal balls are movably connected in the second sleeves.
[0010] Further, an annular groove connected with the fixed rod is arranged between the check ring and the annular plate, a pressing rod is arranged between the second universal balls and placed at the center of the bottom end of the annular plate, an elastic pad is fixedly installed on the bottom end of the pressing rod by adhesion, the elastic pad is made of resin or rubber, the check ring is fixed on the side wall of the first cover body by embedded connection, and a movable opening connected with the piston rod on the gas cylinder is formed in the outer wall of the first cover body.
[0011] Further, it further comprises a cutting guide mechanism, the cutting guide mechanism comprises a second cover body fixed on the base, a second motor is installed on the top of the second cover body, the output shaft of the second motor penetrates through the second cover body and extends to a rotating disc, a first frame fixed on the side wall of the second cover body is movably connected to the bottom of the rotating disc, a central shaft on the rotating disc penetrates through the first frame and is connected to a lead screw shaft, and a fixed ring matched with the lead screw shaft is installed on the bottom of the lead screw shaft.
[0012] Further, the convex parts at the two ends of the rotating disc are connected with the first swing rods between the first sliding blocks, a strip-shaped groove is formed in the outer wall of the first sliding block along the length direction of the first frame, a third motor is installed on the bottom of the first sliding block through a Y-axis telescopic rod, a cutting disc is fixedly connected to the output shaft of the third motor, a lead screw nut fixed on an X-axis telescopic rod is screw-driven on the lead screw shaft, and the movable part of the X-axis telescopic rod is correspondingly connected to the movable part of the Y-axis telescopic rod.
[0013] Further, a positioning groove connected with the first frame is arranged at the bottom end edge of the rotating disc, a concave mouth placed on the side wall of the first frame is formed in the inner wall of the strip-shaped groove, the first swing rods are connected to the rotating disc and the first sliding block by rotary connection on the two sides, the X-axis telescopic rod is symmetrically arranged relative to the vertical center line of the lead screw nut, and the X-axis telescopic rod and the first frame are connected through a telescopic column.
[0014] Further, the bottom of the X-axis telescopic rod is fixedly connected with a pressing plate through a positioning rod, and the telescopic column and the positioning rod are connected to the fixed part of the X-axis telescopic rod in a mode that is tightly fixed through positioning bolts.
[0015] Further, the extension ends on the two sides of the movable part of the Y-axis telescopic rod are connected with second swing rods between the second sliding blocks, the second sliding blocks are connected with limiting grooves along the length direction of the second frame, and the bottom of the second sliding block is movably connected with a roller through a side plate.
[0016] Further, a conveying line is arranged between the cutting guide mechanism and the impurity removing mechanism, the conveying line is installed on the base and extends along a preset direction, and is used for carrying and conveying the paperboard.
[0017] As described above, due to the adoption of the above technical scheme, the present application has the following beneficial effects:
[0018] (1) In the present application, the conveying line serves as a connecting medium between the impurity removing mechanism and the cutting guide mechanism, can effectively convey the paperboard after the impurities are removed to the cutting guide mechanism, thereby facilitating subsequent working operation, and is beneficial to improve the stability of the equipment.
[0019] (2) In the present application, when the particle impurities in the paperboard need to be removed, the paperboard is first placed on the supporting plate and enters the first cover body under the pushing action of the electric sliding block on the electric sliding rail, at this time, the air cylinder is started and drives the pressing rod on the annular plate to move downward, so that the elastic pad is tightly pressed and fitted on the paperboard, and the arc surface on the fixed rod is abutted and fitted on the outer wall of the paperboard, the first motor is started and drives the fixed rod on the bending rod to rotate in the annular groove, since the supporting plate is movably connected to the first sleeve through the first universal ball, the supporting plate can make a cyclic wave rotary motion during the rotation of the fixed rod, so that the impurity particles in the multi-faceted pores can be automatically vibrated out during the rotary motion of the paperboard, thereby effectively removing the impurities, in addition, the second universal ball in the second sleeve cooperates with the compression spring to enable the paperboard to rotate freely, and further improves the stability of the connection of the paperboard on the supporting plate through the rolling and pressing mode, prevents the structure from being separated during the rotation, and the bearing on the annular plate is arranged to ensure the free rotation of the output shaft of the first motor, and to provide corresponding supporting force to the annular plate, so that the annular plate only bears vertical force and does not need to rotate, thereby avoiding the structural interference between the transmission members, the design is reasonable, the integration degree is high, and the automatic performance of the equipment is effectively improved.
[0020] (3) In the present application, when cutting work is carried out on different width requirements of the paperboard, the second motor is started and drives the rotating disc to rotate, under the rotating connection action of the first swing rod, the first sliding block at both ends moves or reversely moves, and then the spacing adjustment effect is achieved, and the cutting disc connected with the third motor on the first sliding block is matched, so that the paperboard automatically completes the cutting work in the advancing process, the rotating disc rotates and drives the rotation of the lead screw shaft, under the screw transmission action, the lead screw nut drives the pressing plate on the positioning rod to move downward, so as to effectively position and clamp the pressing plate during cutting, prevent shaking during cutting, ensure the processing quality, the Y-axis telescopic rod on the first sliding block cooperates with the X-axis telescopic rod on the lead screw nut, on the one hand, the structure can be freely moved up and down, on the other hand, the force can be transmitted to the pressing plate and the cutting disc at the same time, so that the corresponding position point can be reached at the same time, thereby facilitating clamping and cutting work at the same time, and during the downward movement of the Y-axis telescopic rod movable part, under the rotating connection action of the second swing rod, the roller on the second sliding block can move horizontally, and during the roller pressing process, the flatness of the paperboard cutting operation is further ensured, the cutting precision is high, and the product quality is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0022] Figure 1 is a structure diagram of a paper box processing cleaning equipment of the present application Figure One ;
[0023] Figure 2 is a structure diagram of a paper box processing cleaning equipment of the present application Figure Two ;
[0024] Figure 3 is a front view of a paper box processing cleaning equipment of the present application;
[0025] Figure 4 is a structure diagram of a paperboard of the present application;
[0026] Figure 5 is a structure diagram of a first cover body of the present application;
[0027] Figure 6 is a structure diagram of a stop ring and an annular plate of the present application;
[0028] Figure 7 is an internal schematic view of a second cover body of the present application;
[0029] Figure 8 This is the present invention. Figure 7 Enlarged view of point A;
[0030] Figure 9 This is the present invention. Figure 7 A front view of the orientation.
[0031] Reference numerals: 1. Impurity removal mechanism; 2. Electric slide rail; 3. Electric slider; 4. First sleeve; 5. Support plate; 6. First universal ball joint; 7. First cover; 8. Cylinder; 9. First motor; 10. Bending rod; 11. Annular plate; 12. Bearing; 13. Retaining ring; 14. Fixing rod; 15. Compression spring; 16. Second sleeve; 17. Second universal ball joint; 18. Pressure rod; 19. Elastic pad; 20. Cutting guide mechanism ; 21. Second cover; 22. Second motor; 23. Turntable; 24. First frame; 25. Lead screw shaft; 26. First slider; 27. First swing rod; 28. Y-axis telescopic rod; 29. Third motor; 30. Cutting disc; 31. X-axis telescopic rod; 32. Lead screw nut; 33. Telescopic column; 34. Pressure plate; 35. Second slider; 36. Second swing rod; 37. Second frame; 38. Roller; 39. Conveyor line. Detailed Implementation
[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0033] Reference manual attached Figure 1 -Appendix Figure 9 As shown, a cleaning device for cardboard box processing includes:
[0034] Impurity removal mechanism 1 includes an electric slider 3 placed on an electric slide rail 2. The top of the electric slider 3 is movably connected to a first universal ball 6 fixed on a support plate 5 through a first sleeve 4. A first cover 7 fixed on a base is provided above the support plate 5. A cylinder 8 is installed at the top of the first cover 7. The piston rod on the cylinder 8 passes through the first cover 7 and extends to the first motor 9.
[0035] The output shaft of the first motor 9 is detachably mounted with a bent rod 10, the other end of which is connected with a bearing 12 fixed on an annular plate 11, the bent rod 10 is connected with a fixed rod 14 arranged between the retainer ring 13 and the annular plate 11, the arc surface of the fixed rod 14 is movably abutted against the paperboard, the second sleeve 16 is movably connected with the second universal ball 17.
[0036] Specifically, the electric slide rail 2 can be adaptively arranged in a mountain shape, so that the shape of the electric slide block 3 can also be adapted to the mountain shape, and the electric slide block 3 can ensure corresponding stability during movement, and can effectively prevent position deviation during movement.
[0037] The structure design of the first universal ball 6 on the side wall of the first sleeve 4 and the second universal ball 17 movably connected in the second sleeve 16 are the same, the arc surfaces in the first sleeve 4 and the second sleeve 16 wrap the corresponding universal balls, so that the universal balls can freely rotate and can prevent structural separation.
[0038] The retainer ring 13 and the annular plate 11 are provided with an annular groove connected with the fixed rod 14, the second universal ball 17 is provided with a pressing rod 18 arranged at the center of the bottom end of the annular plate 11, the bottom end of the pressing rod 18 is fixedly mounted with an elastic pad 19, the elastic pad 19 is made of resin or rubber, the retainer ring 13 is fixed on the side wall of the first cover body 7 by embedding connection, and the outer wall of the first cover body 7 is provided with a movable port connected with the piston rod of the air cylinder 8.
[0039] In extension, the elastic pad 19 fixedly arranged at the bottom end of the pressing rod 18 can press and abut the center of the paperboard, but due to the self-rotation of the paperboard at the corresponding angle, the elastic function of the elastic pad 19 itself allows the paperboard to freely rotate, and the compression spring 15 on the second sleeve 16 also allows the second universal ball 17 to freely rise and fall within the corresponding range during abutting against the paperboard.
[0040] The paper box processing cleaning equipment further comprises a cutting guide mechanism 20, the cutting guide mechanism 20 comprises a second cover body 21 fixed on the base, a second motor 22 is mounted on the top of the second cover body 21, the output shaft of the second motor 22 penetrates through the second cover body 21 and extends to a rotating disc 23, the bottom of the rotating disc 23 is movably connected with a first frame 24 fixed on the side wall of the second cover body 21, the central shaft on the rotating disc 23 penetrates through the first frame 24 and is connected with a lead screw shaft 25, and the bottom of the lead screw shaft 25 is mounted with a fixed ring matched therewith.
[0041] When the particle impurities in the paperboard need to be removed, first, the paperboard is placed on the supporting plate 5 and pushed into the first cover body 7 under the pushing action of the electric sliding block 3 on the electric sliding rail 2, at this time, the air cylinder 8 is started and drives the pressure rod 18 on the annular plate 11 to move downward, so that the elastic pad 19 is pressed and tightly attached to the paperboard, and the arc surface on the fixed rod 14 is attached to the outer wall of the paperboard, the first motor 9 is started and drives the fixed rod 14 on the bending rod 10 to rotate in the annular groove, since the supporting plate 5 is movably connected to the first sleeve 4 through the first universal ball 6, the fixed rod 14 can make the supporting plate 5 make a cyclic wave rotary motion during rotation, so that the impurity particles in the multi-faceted pores can be automatically vibrated out during the rotary motion, thereby effectively removing the impurities. In addition, the second universal ball 17 in the second sleeve 16 cooperates with the compression spring 15 to enable the paperboard to rotate freely, and further improves the stability of the connection of the paperboard on the supporting plate 5 through the rolling and pressing, prevents the structure from being separated during rotation, and the bearing 12 on the annular plate 11 is provided, which can ensure the free rotation of the output shaft of the first motor 9, and can provide corresponding supporting force to the annular plate 11, so that the annular plate 11 only receives vertical force and does not need to rotate, thereby avoiding the structural interference between the transmission parts. The design is reasonable, the integration degree is high, and the automation performance of the equipment is effectively improved.
[0042] The fixed ring at the bottom of the lead screw shaft 25 has a corresponding limiting protection effect on the movement of the lead screw nut 32, and the fixed connection between the lead screw shaft 25 and the fixed ring can be achieved through threaded connection or integral molding.
[0043] In extension, during the rotation of the lead screw shaft 25, the lead screw nut 32 is driven based on the mechanical action of the threaded pair, and when the lead screw shaft 25 rotates, the lead screw nut 32 moves along the threaded axis. The lead screw nut 32 rolls in the spiral raceway of the lead screw shaft 25 through the ball, forming a circulation loop, cooperating with the telescopic column 33 on the X-axis telescopic rod 31, and converting the rotary motion into linear motion. The above-mentioned screw transmission mechanism is a conventional technical means obvious to those skilled in the art, so it will not be described in detail here.
[0044] The protrusions at both ends of the turntable 23 are connected through the first swing rod 27, a strip-shaped groove is formed in the length direction of the first frame 24 on the outer wall of the first sliding block 26, and the third motor 29 is installed on the first sliding block 26 through the Y-axis telescopic rod 28. The output shaft of the third motor 29 is fixedly connected with the cutting disc 30, the lead screw nut 32 fixed on the X-axis telescopic rod 31 is screw driven on the lead screw shaft 25, and the movable part of the X-axis telescopic rod 31 is connected to the movable part of the Y-axis telescopic rod 28.
[0045] The bottom end edge of the rotating disc 23 is provided with a positioning slot connected with the first frame 24, and a concave opening is arranged on the inner wall of the strip-shaped slot and placed on the side wall of the first frame 24. The first swing rod 27 is connected to the rotating disc 23 and the first sliding block 26 through a rotating connection on both sides. The X-axis telescopic rod 31 is symmetrically arranged relative to the vertical center line of the lead screw nut 32, and the X-axis telescopic rod 31 and the first frame 24 are connected through the telescopic column 33.
[0046] The positioning slot on the first frame 24 is essentially an active area connected with the rotating disc 23, which can freely rotate the rotating disc 23 and also has a positioning effect on the rotating disc 23, so that the rotating disc 23 can be limited in the corresponding active space. In addition, if multiple cutting discs 30 are arranged, the output shafts of the third motor 29 can be connected through a conveyor belt, which can effectively distribute multiple cutting discs 30 at equal intervals to effectively cut the width of the paperboard.
[0047] When cutting paperboard of different widths, the second motor 22 is started to drive the rotating disc 23 to rotate. Under the action of the rotating connection of the first swing rod 27, the first sliding blocks 26 at both ends move or move in the opposite direction, thereby achieving the effect of spacing adjustment. In combination with the cutting disc 30 connected to the third motor 29 on the first sliding block 26, the paperboard can be automatically cut during the advancing process. The rotating disc 23 drives the rotation of the lead screw shaft 25 during rotation. Under the action of screw transmission, the lead screw nut 32 drives the pressing plate 34 on the positioning rod to move downward, thereby effectively positioning and clamping the pressing plate 34 during cutting, preventing shaking during cutting and ensuring processing quality. The Y-axis telescopic rod 28 on the first sliding block 26 cooperates with the X-axis telescopic rod 31 on the lead screw nut 32, which can ensure the free horizontal movement of the structure, and can also transmit force to the pressing plate 34 and the cutting disc 30 at the same time, so that the corresponding position points can be reached at the same time, thereby facilitating clamping and cutting at the same time. During the downward movement of the movable part of the Y-axis telescopic rod 28, the second sliding block 35 on the second swing rod 36 can move horizontally under the action of the rotating connection of the second swing rod 36. During the pressing process of the roller 38, the flatness of the paperboard cutting operation is further ensured, the cutting precision is high, and the product quality is effectively improved.
[0048] In extension, the second slider 35 can be adaptively provided with a gear plate, and the rotation gear can drive the roller 38 on the other end gear plate to move reversely, so that the roller 38 on the other end gear plate can be synchronously reversely moved under the gear meshing transmission, so that the rollers 38 at both ends can be synchronously moved horizontally back and forth, so that the flatness of the paperboard surface can be further improved. The gear meshing transmission of the gear plate is not shown in the corresponding drawing, but it is a conventional technical means obvious to those skilled in the art, so it does not affect the effective implementation of the technical scheme of the present application.
[0049] The bottom of the X-axis telescopic rod 31 is fixedly connected with a pressing plate 34 through a positioning rod, and the telescopic column 33 and the positioning rod are connected to the fixed part of the X-axis telescopic rod 31 in a manner of locking and fastening by positioning pins. The extension ends on both sides of the movable part of the Y-axis telescopic rod 28 are connected to the second slider 35 through the second swing rod 36, the second slider 35 is connected to a limiting groove in the length direction of the second frame 37, and the bottom of the second slider 35 is movably connected with the roller 38 through the side plate.
[0050] The conveying line 39 is provided between the cutting guide mechanism 20 and the impurity removing mechanism 1, is installed on the base and extends along the preset direction, and is used to carry and convey the paperboard. The conveying line 39 serves as a connecting medium between the impurity removing mechanism 1 and the cutting guide mechanism 20, can effectively convey the paperboard after impurity removal to the cutting guide mechanism 20, thereby facilitating subsequent working operation, and is beneficial to improving the stability of the equipment.
[0051] The above is only a preferred embodiment of the present application, but the protection scope of the present application is not limited thereto. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
[0052] The above disclosed preferred embodiments of the present application are only used to help explain the present application. The preferred embodiments do not describe all the details, and the present application is not limited to the specific embodiments. Obviously, many modifications and changes can be made according to the content of the present application. The embodiments are selected and described in detail in order to better explain the principles and practical applications of the present application, so that those skilled in the art can well understand and utilize the present application. The present application is limited by the claims and their entire scope and equivalents.
Claims
1. A cleaning device for cardboard box processing, characterized in that, include: Impurity removal mechanism (1) includes an electric slider (3) placed on an electric slide rail (2). The top of the electric slider (3) is movably connected to a first universal ball (6) fixed on a support plate (5) through a first sleeve (4). A first cover (7) fixed on a base is provided above the support plate (5). A cylinder (8) is installed at the top of the first cover (7). The piston rod on the cylinder (8) passes through the first cover (7) and extends to the first motor (9). One end of the output shaft of the first motor (9) is detachably mounted with a bending rod (10), and the other end is connected to a bearing (12) fixed on an annular plate (11). One end of the bending rod (10) is connected to a fixing rod (14) placed between the retaining ring (13) and the annular plate (11). The arc-shaped surface on the fixing rod (14) movably abuts against the cardboard. The bottom of the annular plate (11) is equipped with a second sleeve (16) by compression springs (15) around its perimeter. A second universal ball (17) is movably connected inside the second sleeve (16).
2. The cleaning equipment for cardboard box processing according to claim 1, characterized in that, An annular groove for connecting to the fixing rod (14) is provided between the retaining ring (13) and the annular plate (11). A pressure rod (18) is provided between the second universal balls (17) at the center of the bottom end of the annular plate (11). An elastic pad (19) is installed at the bottom end of the pressure rod (18) by adhesive fixation. The elastic pad (19) is made of resin or rubber. The retaining ring (13) is fixed on the side wall of the first cover (7) by embedded connection. An movable port for connecting to the piston rod on the cylinder (8) is opened on the outer wall of the first cover (7).
3. The cleaning equipment for cardboard box processing according to claim 1, characterized in that, It also includes a cutting guide mechanism (20), which includes a second cover (21) fixed on the base. A second motor (22) is installed on the top of the second cover (21). The output shaft of the second motor (22) passes through the second cover (21) and extends to the turntable (23). The bottom of the turntable (23) is movably connected to a first frame (24) fixed on the side wall of the second cover (21). The central shaft on the turntable (23) passes through the first frame (24) and is connected to the lead screw shaft (25). The bottom of the lead screw shaft (25) is equipped with a matching fixing ring.
4. The cleaning equipment for cardboard box processing according to claim 3, characterized in that, The protrusions at both ends of the turntable (23) and the first slider (26) are connected by the first swing rod (27). The outer wall of the first slider (26) is provided with a strip groove along the length of the first frame (24). The bottom of the first slider (26) is equipped with a third motor (29) through the Y-axis telescopic rod (28). A cutting disc (30) is fixedly connected to the output shaft of the third motor (29). A screw nut (32) fixed on the X-axis telescopic rod (31) is screwed on the screw shaft (25). The movable part of the X-axis telescopic rod (31) is correspondingly connected to the movable part of the Y-axis telescopic rod (28).
5. A cleaning device for cardboard box processing according to claim 4, characterized in that, The bottom edge of the turntable (23) is provided with a positioning groove that connects to the first frame (24), and the inner wall of the strip groove is provided with a concave opening placed on the side wall of the first frame (24). The first swing rod (27) is connected to the turntable (23) and the first slider (26) by a rotating connection on both sides. The X-axis telescopic rod (31) is symmetrically arranged with respect to the vertical center line of the lead screw nut (32), and the X-axis telescopic rod (31) and the first frame (24) are connected by a telescopic column (33).
6. The cleaning equipment for cardboard box processing according to claim 5, characterized in that, The bottom of the X-axis telescopic rod (31) is fixedly connected to a pressure plate (34) by a positioning rod. The telescopic column (33) and the positioning rod are both connected to the fixed part of the X-axis telescopic rod (31) by locking with positioning bolts.
7. A cleaning device for cardboard box processing according to claim 4, characterized in that, The extension ends on both sides of the movable part of the Y-axis telescopic rod (28) and the second slider (35) are connected by the second swing rod (36). The second slider (35) is connected to the limit groove along the length direction of the second frame (37), and the bottom of the second slider (35) is movably connected to the roller (38) through the side plate.
8. A cleaning device for cardboard box processing according to claim 7, characterized in that, The second swing rod (36) is mounted on the second slider (35) and the Y-axis telescopic rod (28) by means of rotational connection on both sides. The outer wall of the second frame (37) is fixed on the Y-axis telescopic rod (28) by a bracket. The second frame (37) and the first frame (24) are arranged vertically and staggered.
9. A cleaning device for cardboard box processing according to claim 3, characterized in that, A conveyor line (39) is provided between the cutting guide mechanism (20) and the impurity removal mechanism (1). The conveyor line (39) is installed on the base and extends in a preset direction to carry and convey the cardboard.