Corrugated board production waste recycling device
By designing a waste recycling and reuse device for corrugated cardboard production, multi-directional compaction and uniform compaction of waste are achieved, solving the problems of insufficient stress and accumulation of waste in the middle, and improving the compaction effect and practicality.
Patent Information
- Application Number
- CN202510852902.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the production process of corrugated cardboard, the compaction effect of waste is poor, especially the insufficient stress of the waste in the middle, which leads to loosening and accumulation, affecting the packaging work, and is low in practicality.
A corrugated cardboard production waste recycling device was designed. By driving the assembly and compaction device, the multi-directional compaction of the waste is achieved, and the compaction power is gradually improved during the compaction process to avoid the accumulation of waste in the middle. The compaction effect is improved by linkage components and pressurized components, and the auxiliary components and adjustment components ensure compaction uniformity.
It improves the compaction effect of corrugated cardboard waste, avoids insufficient stress and accumulation of waste in the middle, enhances the practicality of the device, and facilitates subsequent packaging work.
Smart Images

Figure CN120363532A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of corrugated cardboard waste, and specifically to a device for recycling corrugated cardboard production waste. Background Art
[0002] Corrugated paper is a paper material with a corrugated structure, usually used for making cartons and packaging materials. Corrugated paper is mainly widely used in the logistics and transportation industries to protect products during transportation.
[0003] In the prior art, during the production of corrugated cardboard, a large amount of waste is usually generated. The waste is often crushed by a crusher and then compacted and packed after crushing. Since the number of corrugated cardboard entering the compaction area during each crushing is random, when the number is large, the pressing plate can only compact the waste on one side, and the waste in the middle is often in a loose state due to insufficient force, which affects the packing work and the compaction effect is insufficient. At the same time, when the corrugated cardboard is discharged to the compaction area, the waste in the middle often accumulates, and the staff needs to adjust it to ensure uniform force on the corrugated cardboard during the compaction process. The working steps are cumbersome and the practicability is low. Therefore, a device that can increase the pressure according to the moving distance of the pressing plate and can push the corrugated cardboard accumulated in the middle to both sides to avoid insufficient compaction effect and low practicability is needed. Summary of the Invention
[0004] The purpose of the present invention is to provide a device for recycling corrugated cardboard production waste to solve the problems raised in the above background art. To achieve the above purpose, the present invention provides the following technical solution: A device for recycling corrugated cardboard production waste, including a workbench, a driving component is provided at the side end of the workbench, a sorting component is provided on the workbench at one side of the driving component, matching components are provided on both sides of the sorting component, a compaction device is provided at the side end of each matching component, an auxiliary component is provided at the side end of one of the compaction devices, an adjusting component is provided at one side of the auxiliary component, the compaction device includes a linkage component and a pressurizing component, the linkage component is arranged at the side end of the matching component, and the pressurizing component is arranged on the linkage component.
[0005] Preferably, the driving assembly includes a first driving frame, the side end of the first driving frame is connected to the side end of the workbench, a second driving frame is provided at the side end of the first driving frame, the included angle between the second driving frame and the first driving frame is set at 90 degrees, the side end of the second driving frame is connected to the side end of the workbench, a fixing frame is provided below the first driving frame, the side end of the fixing frame is connected to the workbench, a rotating shaft is rotatably connected to the fixing frame, the end of the rotating shaft is connected to the output end of the driving motor, an eccentric driving disk is connected to the end of the rotating shaft away from the driving motor, the end of the rotating shaft away from the driving motor is rotatably matched with a locking frame, the side end of the locking frame is connected to the workbench, an annular track is formed on the driving disk, a circular column is slidably matched in the annular track, one side of the circular column away from the driving disk is hinged to the end of a driving rod, the other end of the driving rod is hinged to a rotating frame, and the side end of the rotating frame is connected to the side end of the first driving frame.
[0006] Preferably, the sorting assembly includes a stopping plate, the stopping plate is horizontally arranged above the workbench, one side of the bottom of the stopping plate is connected to the top of the workbench through a connecting plate, a feeding port for placing materials is formed on the stopping plate, a vertically arranged plate to be abutted is provided on the side of the stopping plate away from the first driving frame, the plate to be abutted is slidably matched with the bottom of the stopping plate, a supporting rod is provided on the side of the plate to be abutted away from the second driving frame, the bottom of the supporting rod and the plate to be abutted are slidably matched with the top of the workbench, the end of the supporting rod located outside the workbench is slidably arranged in a sliding frame, the end of the supporting rod is movably connected to the inner wall of the sliding frame through a compression spring, the inner side of the plate to be abutted is slidably matched with the side end of the connecting plate, an auxiliary plate parallel to the connecting plate is provided on the side of the plate to be abutted away from the connecting plate, the bottom of the auxiliary plate is slidably matched with the top of the workbench, the auxiliary plate is slidably matched with the bottom of the stopping plate, the side end of the auxiliary plate is slidably matched with the side end of the plate to be abutted, an extrusion plate is slidably matched with the side end of the auxiliary plate, the bottom of the extrusion plate is slidably matched with the top of the workbench, the extrusion plate is slidably matched with the bottom of the stopping plate, the side end of the extrusion plate is slidably matched with the side end of the connecting plate, an inclined rod is provided on the side of the auxiliary plate away from the connecting plate, the inclined rod is slidably matched with the top of the workbench, the end of the inclined rod away from the auxiliary plate is slidably arranged in a limiting frame, and the end of the inclined rod away from the auxiliary plate is movably connected to the inner wall of the limiting frame through a first spring telescopic rod.
[0007] Preferably, the fitting assembly includes a fitting frame, the side end of the fitting frame is connected to the side end of the first driving frame, a fitting seat is slidably arranged on the fitting frame, a control block is hinged to the side of the fitting seat away from the workbench, the control block is slidably arranged in the adjusting groove of the adjusting rod, the bottom of the adjusting rod is hinged to the circular column, the top of the adjusting rod is hinged to the side end of the pressing plate through a connecting frame, and the other fitting assembly is arranged at the side end of the auxiliary plate and is arranged parallel to the diagonal rod, and the bottom of the other adjusting rod is hinged to the L-shaped frame at the bottom of the second driving frame.
[0008] Preferably, the linkage assembly includes spring wedge blocks, the two spring wedge blocks are respectively arranged at the bottoms of the auxiliary plate and the pressing plate, and each spring wedge block can be slidably matched with a through groove on the workbench. A linkage rod is arranged below the through groove, the side end of the linkage rod is movably connected to the side end of the fixing plate through a second spring telescopic rod, the top of the fixing plate is connected to the bottom of the workbench, a clamping wedge block capable of cooperating with the spring wedge block is arranged at the top of the linkage rod and is slidably arranged in the through groove, an unlocking frame is arranged at the side end of the linkage rod, and an unlocking rod is arranged at the side end of the unlocking frame. The end of the unlocking rod away from the unlocking frame slides through the fitting seat.
[0009] Preferably, the pressing assembly includes an unlocking tooth groove rod sleeved on the unlocking rod, an unlocking gear capable of meshing with the unlocking tooth groove rod is arranged at the side end of the unlocking tooth groove rod, the center of the unlocking gear is rotatably connected to the center of the bottom of the workbench, the side of the unlocking gear away from the unlocking tooth groove rod meshes with the tooth groove end of the control tooth groove rod, the control tooth groove rod is slidably matched with the bottom of the workbench, an inclined control rod is hinged to the side of the control tooth groove rod close to the fitting seat, and the other end of the control rod is hinged to the side end of the fitting seat.
[0010] Preferably, the auxiliary assembly includes a first transmission disc arranged on the rotating shaft and located on the side of the locking frame away from the control rod. A second transmission disc is arranged at the side end of the first transmission disc, and the included angle between the second transmission disc and the first transmission disc is 90 degrees. The center of the second transmission disc is rotatably connected to the rotating frame, and the side end of the rotating frame is connected to the side end of the workbench. The first transmission disc and the second transmission disc are movably connected through a plurality of uniformly arranged curved rods, and the plurality of curved rods are slidably matched with both the first transmission disc and the second transmission disc. A horizontally arranged control disc is arranged on the rotating frame, the control disc is coaxially arranged with the second transmission member, and a trigger tooth groove rod is hinged to the top of the control disc and is slidably matched with the top of the workbench.
[0011] Preferably, the adjusting assembly includes two adjusting plates symmetrically arranged in the through hole on one side of the feeding port. The center of each adjusting plate is rotatably connected to the through hole through an adjusting shaft. One end of the adjusting shaft close to the trigger tooth groove rod is connected to the center of the first bevel gear. A second bevel gear is arranged on the side of the first bevel gear away from the adjusting plate and sleeved on the adjusting shaft. A half gear capable of meshing with them is arranged below the first bevel gear and the second bevel gear. The two half gears are arranged in a mirror image. The center of each half gear is rotatably connected to the receiving frame through a central shaft. The bottom of the receiving frame is connected to the top of the workbench. The two central shafts are driven by a transmission belt. A trigger gear is arranged below one of the receiving frames. The center of the trigger gear is connected to the central shaft. The trigger gear can mesh with the trigger tooth groove rod.
[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: In the present invention, when the device is in use, by controlling the driving assembly to work, the sorting assembly is driven to work, and then the waste on the workbench is compacted from four sides. During the compaction process, the compaction force on the corrugated cardboard is gradually increased, so as to prevent the pressing plate from only compacting the waste on one side and prevent the waste in the middle from being loose due to insufficient force, improve the compaction effect, and push the corrugated cardboard in the middle to both sides at the early stage of compaction, so as to prevent the corrugated cardboard from piling up together, and further prevent the uneven force of the corrugated cardboard during the compaction process, and improve the practicability of the device.
[0013] In the present invention, through the coordinated use of components such as the sorting assembly and the compaction device, it is possible to prevent the pressing plate from only compacting the waste on one side, prevent the waste in the middle from being loose due to insufficient force, improve the compaction effect, and thus prevent the impact on the packing work. At the same time, after the compaction is completed, the device is reset synchronously, which is convenient for the next compaction work.
[0014] In the present invention, through the coordinated use of components such as the auxiliary assembly and the adjusting assembly, it is possible to prevent the corrugated cardboard from piling up together, and further prevent the uneven force of the corrugated cardboard during the compaction process, and improve the practicability of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic three-dimensional structure of the present invention Figure 1 ; Figure 2 is a schematic three-dimensional structure of the present invention Figure 2 ; Figure 3 is a schematic partial three-dimensional structure of the present invention Figure 1 ; Figure 4Schematic diagram of the local three-dimensional structure of the present invention Figure 2 ; Figure 5 Schematic diagram of the exploded local three-dimensional structure of the sorting component in the present invention; Figure 6 Schematic diagram of the local three-dimensional structure in the present invention Figure 3 ; Figure 7 Schematic diagram of the exploded local three-dimensional structure of the compaction device in the present invention; Figure 8 Schematic diagram of the local three-dimensional structure of the cooperation component and the compaction device in the present invention; Figure 9 Schematic diagram of the local three-dimensional structure of the present invention Figure 4 ; Figure 10 Schematic diagram of the three-dimensional structure of the adjustment component in the present invention.
[0016] In the figure: 1, workbench; 2, drive component; 21, first drive frame; 22, second drive frame; 23, fixed frame; 24, rotating shaft; 25, drive motor; 26, drive disk; 27, locking frame; 28, annular track; 29, circular column; 30, drive rod; 31, rotating frame; 4, sorting component; 41, abutting plate; 42, connecting plate; 43, feeding port; 44, plate to be abutted; 45, support rod; 46, sliding frame; 47, compression spring; 48, auxiliary plate; 49, extrusion plate; 50, inclined rod; 51, limiting frame; 52, first spring telescopic rod; 6, cooperation component; 61, cooperation frame; 62, cooperation seat; 63, control block; 64, adjusting rod; 65, adjusting groove; 66, connecting frame; 67, L-shaped frame; 7, compaction device; 71, linkage component; 711, spring wedge block; 712, through groove; 713, linkage rod; 714, second spring telescopic rod; 715, fixing plate; 716, clamping wedge block; 717, unlocking frame; 718, unlocking rod; 72, pressurizing component; 721, unlocking tooth groove rod; 722, unlocking gear; 723, control tooth groove rod; 724, control rod; 8, auxiliary component; 81, first transmission disk; 82, second transmission disk; 83, rotating frame; 84, curved rod; 85, control disk; 86, trigger tooth groove rod; 9, adjustment component; 91, adjustment plate; 92, through port; 93, adjustment shaft; 94, first bevel gear; 95, second bevel gear; 96, half gear; 97, central shaft; 98, receiving frame; 99, transmission belt; 100, trigger gear. Detailed implementation manners
[0017] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0018] Please refer to Figures 1 to 10 , the present invention provides a technical solution: a device for recycling waste materials in corrugated cardboard production, including a workbench 1, a driving component 2 is provided at the side end of the workbench 1, a sorting component 4 located on the workbench 1 is provided on one side of the driving component 2, matching components 6 are provided on both sides of the sorting component 4, a compaction device 7 is provided at the side end of each matching component 6, an auxiliary component 8 is provided at the side end of one of the compaction devices 7, an adjusting component 9 is provided on one side of the auxiliary component 8, the compaction device 7 includes a linkage component 71 and a pressurizing component 72, the linkage component 71 is arranged at the side end of the matching component 6, and the pressurizing component 72 is arranged on the linkage component 71.
[0019] In this embodiment, as Figures 1 to 8 shown, the driving component 2 includes a first driving frame 21, the side end of the first driving frame 21 is connected to the side end of the workbench 1, a second driving frame 22 is provided at the side end of the first driving frame 21, the included angle between the second driving frame 22 and the first driving frame 21 is set at 90 degrees, the side end of the second driving frame 22 is connected to the side end of the workbench 1, a fixing frame 23 is provided below the first driving frame 21, the side end of the fixing frame 23 is connected to the workbench 1, a rotating shaft 24 is rotatably connected to the fixing frame 23, the end of the rotating shaft 24 is connected to the output end of a driving motor 25, an eccentric driving disk 26 is connected to the end of the rotating shaft 24 away from the driving motor 25, the end of the rotating shaft 24 away from the driving motor 25 is rotatably matched with a locking frame 27, the side end of the locking frame 27 is connected to the workbench 1, an annular track 28 is provided on the driving disk 26, a circular column 29 is slidably matched in the annular track 28, one side of the circular column 29 away from the driving disk 26 is hinged to the end of a driving rod 30, the other end of the driving rod 30 is hinged to a rotating frame 31, and the side end of the rotating frame 31 is connected to the side end of the first driving frame 21; The sorting component 4 includes a stop plate 41, which is horizontally arranged above the workbench 1. One side of the bottom of the stop plate 41 is connected to the top of the workbench 1 through a connecting plate 42. A feeding port 43 for placing materials is formed on the stop plate 41. A vertically arranged contact plate 44 is provided on the side of the stop plate 41 away from the first driving frame 21. The contact plate 44 is slidably matched with the bottom of the stop plate 41. A support rod 45 is provided on the side of the contact plate 44 away from the second driving frame 22. The bottom of the support rod 45 and the contact plate 44 are slidably matched with the top of the workbench 1. The end of the support rod 45 located outside the workbench 1 is slidably arranged in a sliding frame 46. The end of the support rod 45 is movably connected to the inner wall of the sliding frame 46 through a compression spring 47. The inner side of the contact plate 44 is slidably matched with the side end of the connecting plate 42. An auxiliary plate 48 parallel to the connecting plate 42 is provided on the side of the contact plate 44 away from the connecting plate 42. The bottom of the auxiliary plate 48 is slidably matched with the top of the workbench 1. The auxiliary plate 48 is slidably matched with the bottom of the stop plate 41. The side end of the auxiliary plate 48 is slidably matched with the side end of the contact plate 44. A pressing plate 49 is slidably matched with the side end of the auxiliary plate 48. The bottom of the pressing plate 49 is slidably matched with the top of the workbench 1. The pressing plate 49 is slidably matched with the bottom of the stop plate 41. The side end of the pressing plate 49 is slidably matched with the side end of the connecting plate 42. An inclined rod 50 is provided on the side of the auxiliary plate 48 away from the connecting plate 42. The inclined rod 50 is slidably matched with the top of the workbench 1. The end of the inclined rod 50 away from the auxiliary plate 48 is slidably arranged in a limiting frame 51. The end of the inclined rod 50 away from the auxiliary plate 48 is movably connected to the inner wall of the limiting frame 51 through a first spring telescopic rod 52; The matching component 6 includes a matching frame 61. The side end of the matching frame 61 is connected to the side end of the first driving frame 21. A matching seat 62 is slidably arranged on the matching frame 61. A control block 63 is hinged on the side of the matching seat 62 away from the workbench 1. The control block 63 is slidably arranged in an adjustment groove 65 of an adjustment rod 64. The bottom of the adjustment rod 64 is hinged on a circular column 29. The top of the adjustment rod 64 is hinged on the side end of the pressing plate 49 through a connecting frame 66. Another matching component 6 is arranged on the side end of the auxiliary plate 48 and is arranged parallel to the inclined rod 50. The bottom of another adjustment rod 64 is hinged on an L-shaped frame 67 at the bottom of the second driving frame 22; The linkage assembly 71 includes spring wedges 711. The two spring wedges 711 are respectively arranged at the bottoms of the auxiliary plate 48 and the extrusion plate 49. Each spring wedge 711 can be slidably engaged with a through groove 712 on the workbench 1. A linkage rod 713 is provided below the through groove 712. The side end of the linkage rod 713 is movably connected to the side end of a fixed plate 715 through a second spring telescopic rod 714. The top of the fixed plate 715 is connected to the bottom of the workbench 1. A clamping wedge 716 capable of cooperating with the spring wedge 711 is provided at the top of the linkage rod 713, and the clamping wedge 716 is slidably arranged in the through groove 712. An unlocking frame 717 is provided at the side end of the linkage rod 713, and an unlocking rod 718 is provided at the side end of the unlocking frame 717. One end of the unlocking rod 718 away from the unlocking frame 717 slidably passes through the mating seat 62; The pressurizing assembly 72 includes an unlocking toothed groove rod 721. The unlocking toothed groove rod 721 is sleeved on the unlocking rod 718. An unlocking gear 722 capable of meshing with the unlocking toothed groove rod 721 is provided at the side end of the unlocking toothed groove rod 721. The center of the unlocking gear 722 is rotatably connected to the center of the bottom of the workbench 1. The side of the unlocking gear 722 away from the unlocking toothed groove rod 721 meshes with the toothed groove end of a control toothed groove rod 723. The control toothed groove rod 723 is slidably engaged with the bottom of the workbench 1. A control rod 724 inclined is hinged to the side of the control toothed groove rod 723 close to the mating seat 62. The other end of the control rod 724 is hinged to the side end of the mating seat 62.
[0020] In this embodiment, as Figures 9 to 10 shown, the auxiliary assembly 8 includes a first transmission disk 81. The first transmission disk 81 is arranged on the rotating shaft 24 and is located on the side of the locking frame 27 away from the control rod 724. A second transmission disk 82 is provided at the side end of the first transmission disk 81. The included angle between the second transmission disk 82 and the first transmission disk 81 is set at 90 degrees. The center of the second transmission disk 82 is rotatably connected to a rotating frame 83. The side end of the rotating frame 83 is connected to the side end of the workbench 1. The first transmission disk 81 and the second transmission disk 82 are movably connected through a plurality of evenly arranged curved rods 84. The plurality of curved rods 84 are slidably engaged with both the first transmission disk 81 and the second transmission disk 82. A control disk 85 horizontally arranged is provided on the rotating frame 83. The control disk 85 is coaxially arranged with the second transmission member. A trigger toothed groove rod 86 is hinged to the top of the control disk 85. The trigger toothed groove rod 86 is slidably engaged with the top of the workbench 1; The adjusting assembly 9 includes two adjusting plates 91. The two adjusting plates 91 are symmetrically arranged in a through hole 92 on one side of the feeding port 43. The center of each adjusting plate 91 is rotatably connected to the through hole 92 through an adjusting shaft 93. One end of the adjusting shaft 93 close to the trigger tooth groove rod 86 is connected to the center of a first bevel gear 94. A second bevel gear 95 is arranged on the side of the first bevel gear 94 away from the adjusting plate 91 and sleeved on the adjusting shaft 93. A half gear 96 that can mesh with them is arranged below the first bevel gear 94 and the second bevel gear 95. The two half gears 96 are arranged in a mirror image. The center of each half gear 96 is rotatably connected to a receiving frame 98 through a central shaft 97. The bottom of the receiving frame 98 is connected to the top of the workbench 1. The two central shafts 97 are driven by a transmission belt 99. A trigger gear 100 is arranged below one of the receiving frames 98. The center of the trigger gear 100 is connected to the central shaft 97. The trigger gear 100 can mesh with the trigger tooth groove rod 86.
[0021] The usage method and advantages of the present invention: A device for recycling and reusing waste in corrugated cardboard production has the following working process: As Figures 1 to 10As shown, through the provided feed inlet 43, the waste material is placed on the workbench 1. Subsequently, the driving motor 25 is controlled to operate, so that the driving disk 26 is eccentrically rotated by the rotating shaft 24. Through the cooperation of the annular track 28 and the circular column 29, under the action of the driving rod 30 and the rotating frame 31, the adjusting rod 64 swings with the control block 63 in the adjusting groove 65 as the fulcrum, and thus drives the pressing plate 49 to move towards the center of the workbench 1 through the hinge frame, thereby squeezing the waste material. When the pressing plate 49 squeezes, it drives the auxiliary plate 48 to slide along the direction of the limiting frame 51 under the action of the inclined rod 50, thereby stretching the first spring telescopic rod 52, and simultaneously driving the contacted plate 44 to squeeze the compression spring 47 along the sliding frame 46 through the support rod 45. Under the action of the connecting plate 42, the accumulated waste material is compacted in multiple directions. During the movement of the pressing plate 49 and the auxiliary plate 48, the spring wedge block 711 is driven to move to the through groove 712 and extend into the through groove 712 on one side of the clamping wedge block 716. During the movement, the linkage rod 713 is driven to squeeze the second spring telescopic rod 714, thereby driving the unlocking frame 717 and the unlocking rod 718 to move synchronously, so that the unlocking rod 718 first disengages from the mating seat 62. After the disengagement, the unlocking tooth groove rod 721 meshes with the unlocking gear 722, and then drives the control tooth groove rod 723 to move away from the mating frame 61. Under the action of the control rod 724, the mating seat 62 is driven to move downward along the direction of the mating frame 61, thereby providing a further squeezing force to the pressing plate 49 and simultaneously applying it to the auxiliary plate 48, so as to prevent the pressing plate from only compacting the waste material on one side, and prevent the waste material in the middle from being loose due to insufficient force, improve the compaction effect, and thus avoid affecting the packing work. At the same time, after the compaction is completed, the second spring telescopic rod 714 drives the linkage rod 713 to reset, so as to facilitate the reset of the mating seat 62 driven by the control rod 724, make the unlocking rod 718 re-engage in the mating seat 62, and through the first spring telescopic rod 52 and the compression spring 47, when the pressing plate 49 resets, the auxiliary plate 48 and the contacted plate 44 are synchronously reset, facilitating the next compaction work; When compacting work is carried out, the first transmission disk 81 is driven to rotate synchronously by rotating the shaft 24, and the second transmission disk 82 is driven to rotate synchronously by the curved rod 84, so that the control disk 85 drives the trigger tooth groove rod 86 to move reciprocally. Furthermore, at the initial stage of the movement of the extrusion plate 49, the central shaft 97 is driven to rotate by the engagement of the trigger tooth groove rod 86 and the trigger gear 100, and two half gears 96 are driven to rotate synchronously by the transmission belt 99. Under the action of the first bevel gear 94 and the second bevel gear 95, two adjusting shafts 93 and the adjusting plate 91 are driven to deflect in opposite directions within the through port 92, thereby preventing the corrugated cardboard from piling up together, and further avoiding the situation of uneven force on the corrugated cardboard during the compacting process, improving the practicability of the device. After the adjustment is completed, the trigger tooth groove rod 86 disengages from the trigger gear 100 to avoid affecting the compacting work and improve the convenience of the device.
[0022] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only the preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A device for recycling waste in corrugated cardboard production, comprising a workbench (1), and a driving component (2) is arranged at the side end of the workbench (1); It is characterized in that: On one side of the driving component (2), there is an organizing component (4) located on the workbench (1). On both sides of the organizing component (4), there are cooperating components (6). At the side end of each cooperating component (6), there is a compaction device (7). At the side end of one of the compaction devices (7), there is an auxiliary component (8). On one side of the auxiliary component (8), there is an adjusting component (9). The compaction device (7) includes a linkage component (71) and a pressurizing component (72). The linkage component (71) is arranged at the side end of the cooperating component (6), and the pressurizing component (72) is arranged on the linkage component (71).
2. The waste recycling and reuse device for corrugated cardboard production according to claim 1, characterized in that: The driving component (2) includes a first driving frame (21) and a second driving frame (22) fixed to the workbench (1), and the two are arranged at a 90-degree angle. Below the first driving frame (21), there is a fixing frame (23). The side end of the fixing frame (23) is connected to the workbench (1). A rotating shaft (24) is rotatably connected to the fixing frame (23). The end of the rotating shaft (24) is connected to the output end of a driving motor (25). At the end of the rotating shaft (24) away from the driving motor (25), there is an eccentrically connected driving disc (26). An annular track (28) is formed on the driving disc (26). A circular column (29) is slidably fitted in the annular track (28). The side of the circular column (29) away from the driving disc (26) is hinged to the end of a driving rod (30). The other end of the driving rod (30) is hinged to a rotating frame (31).
3. The waste recycling and reuse device for corrugated cardboard production according to claim 2, characterized in that: The sorting component (4) includes a stop plate (41) fixed to the workbench (1). An inlet (43) for feeding materials is formed in the stop plate (41). A contact plate (44) that is slidably engaged with the stop plate (41) is provided on the side of the stop plate (41) away from the first driving frame (21). The contact plate (44) is slidably arranged in a sliding frame (46) through a support rod (45). The end of the support rod (45) is movably connected to the inner wall of the sliding frame (46) through a compression spring (47). The inner side of the contact plate (44) is slidably engaged with the side end of a connecting plate (42). An auxiliary plate (48) parallel to the connecting plate (42) is provided on the side of the contact plate (44) away from the connecting plate (42). The auxiliary plate (48) is slidably engaged with the bottom of the stop plate (41). The side end of the auxiliary plate (48) is slidably engaged with the side end of the contact plate (44). An extrusion plate (49) is slidably engaged with the side end of the auxiliary plate (48). The extrusion plate (49) is slidably engaged with the bottom of the stop plate (41). The side end of the extrusion plate (49) is slidably engaged with the side end of the connecting plate (42). An inclined rod (50) is provided on the side of the auxiliary plate (48) away from the connecting plate (42). The end of the inclined rod (50) away from the auxiliary plate (48) is slidably arranged in a limit frame (51). The end of the inclined rod (50) away from the auxiliary plate (48) is movably connected to the inner wall of the limit frame (51) through a first spring telescopic rod (52).
4. The waste recycling and reuse device for corrugated cardboard production according to claim 3, wherein: The matching component (6) includes a matching frame (61) connected to the first driving frame (21). A matching seat (62) is slidably arranged on the matching frame (61). A control block (63) is hinged to the side of the matching seat (62) away from the workbench (1). The control block (63) is slidably arranged in an adjustment groove (65) of an adjustment rod (64). The bottom of the adjustment rod (64) is hinged to a circular column (29). The top of the adjustment rod (64) is hinged to the side end of the extrusion plate (49) through a connection frame (66). Another matching component (6) is arranged at the side end of the auxiliary plate (48) and is arranged parallel to the inclined rod (50). The bottom of another adjustment rod (64) is hinged to an L-shaped frame (67) at the bottom of the second driving frame (22).
5. The waste recycling and reuse device for corrugated cardboard production according to claim 4, characterized in that: The linkage assembly (71) includes a spring wedge block (711) and a linkage rod (713). The two spring wedge blocks (711) are respectively arranged at the bottoms of the auxiliary plate (48) and the extrusion plate (49). Each spring wedge block (711) can be slidably matched with a through groove (712) on the workbench (1). The side end of the linkage rod (713) is movably connected to the side end of the fixing plate (715) through a second spring telescopic rod (714) and is located below the through groove (712). A clamping wedge block (716) capable of cooperating with the spring wedge block (711) is arranged at the top of the linkage rod (713). An unlocking frame (717) is arranged at the side end of the linkage rod (713), and an unlocking rod (718) is arranged at the side end of the unlocking frame (717). One end of the unlocking rod (718) away from the unlocking frame (717) slidably passes through the mating seat (62).
6. The waste recycling and reuse device for corrugated cardboard production according to claim 5, wherein: The pressurizing assembly (72) includes an unlocking toothed groove rod (721). The unlocking toothed groove rod (721) is sleeved on the unlocking rod (718). An unlocking gear (722) is arranged at the side end of the unlocking toothed groove rod (721). The side end of the unlocking gear (722) meshes with the toothed groove end of the control toothed groove rod (723). A control rod (724) which is inclined is hinged to one side of the control toothed groove rod (723) close to the mating seat (62). The other end of the control rod (724) is hinged to the side end of the mating seat (62).
7. A corrugated cardboard production waste recycling and reuse device according to claim 6, characterized in that: The auxiliary assembly (8) includes a first transmission disc (81) and a second transmission disc (82). The first transmission disc (81) is arranged on the rotating shaft (24) and is located on the side of the locking frame (27) away from the control rod (724). The second transmission disc (82) is arranged at the side end of the first transmission disc (81), and the two are arranged at a 90-degree angle. The center of the second transmission disc (82) is rotationally connected to the rotating frame (83). The first transmission disc (81) and the second transmission disc (82) are movably connected through a plurality of uniformly arranged curved rods (84). A control disc (85) which is horizontally arranged is arranged on the rotating frame (83). The control disc (85) is coaxially arranged with the second transmission member. A trigger toothed groove rod (86) is hinged to the top of the control disc (85).
8. A waste recycling and reuse device for corrugated cardboard production according to claim 7, characterized in that: The adjusting component (9) includes two adjusting plates (91) symmetrically arranged in the through opening (92). The center of each adjusting plate (91) is rotationally connected to the through opening (92) through an adjusting shaft (93). One end of the adjusting shaft (93) close to the trigger tooth groove rod (86) is connected to the center of the first bevel gear (94). A second bevel gear (95) is arranged on the side of the first bevel gear (94) away from the adjusting plate (91) and sleeved on the adjusting shaft (93). A half gear (96) capable of meshing with them is arranged below the first bevel gear (94) and the second bevel gear (95). The two half gears (96) are arranged in a mirror image. The center of each half gear (96) is rotationally connected to a receiving frame (98) through a central shaft (97). The two central shafts (97) are driven by a transmission belt (99). A trigger gear (100) is arranged below one of the receiving frames (98). The center of the trigger gear (100) is connected to the central shaft (97). The trigger gear (100) can mesh with the trigger tooth groove rod (86).