Corrugated board oscillation scrap removing device
By designing a corrugated cardboard oscillation and anti-dandruff device including a driving component, a curved air blowing cover and a brush roller, the problems of internal confetti discharge and surface confetti cleaning in the prior art are solved, and efficient confetti removal and improvement of the production environment are achieved.
Patent Information
- Application Number
- CN202510444320.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-05-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing corrugated cardboard shock-removing anti-dandruff device cannot effectively discharge paper confetti inside the cardboard, and the air blow cleaning effect is poor, resulting in paper confetti residues and pollution in the production environment.
A corrugated cardboard shock anti-dandruff device including a base plate, an anti-dandruff platform, a driving assembly, a paper disposal bracket and a winding mechanism is designed. By driving the anti-dandruff platform to tilt and vibrate, combined with the cooperation of the arc-shaped blow-on hood and brush roller, effective removal of paper scraps on the interior and surface of corrugated cardboard is achieved.
It realizes the rapid discharge of the internal confetti of corrugated cardboard and the effective cleaning of confetti on the surface closely attached, improving production efficiency and product quality, and improving the working environment.
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Figure CN120023126A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of packaging production equipment, in particular to a corrugated paperboard oscillating chip removing device. Background Art
[0002] In the packaging industry, corrugated cardboard is a commonly used packaging material. It is widely used in the packaging of various products due to its good compression resistance and cushioning properties.
[0003] During the production process of corrugated cardboard, due to the influence of various factors such as the quality of base paper and processing technology, paper scraps are often generated on the surface and inside of the cardboard. These paper scraps not only affect the appearance quality of the corrugated cardboard, but may also cause problems such as blurred printing and tool wear in subsequent printing, die-cutting and other processing steps, reducing production efficiency and product quality.
[0004] For example, the existing Chinese patent with publication number CN209829749U discloses a corrugated cardboard vibration chip removal device, which first starts the vibration motor, then puts the corrugated cardboard into the roller at the upper end of the U-shaped groove, and the corrugated cardboard continues to vibrate during the downward movement, thereby shaking off the paper scraps. At the same time, the blower works, sending air into the blowing plate through the hose and spraying it out from the blowing hole, so as to blow away the paper scraps retained on the surface of the corrugated cardboard.
[0005] During the use of the device, the corrugated cardboard vibrates to remove scraps as it continues to slide down, causing the scraps shaken off from inside to move relatively with the corrugated cardboard, making it impossible to discharge the scraps, which remain inside. At the same time, since the air blowing direction of the air holes is perpendicular to the surface of the corrugated cardboard, the air blowing effect on the scraps tightly attached to the surface of the corrugated cardboard is poor, and it is easy to cause the scraps to fly around, polluting the production environment.
[0006] Therefore, a corrugated cardboard oscillation chip removing device is needed. Summary of the invention
[0007] In order to solve all or part of the above problems, the purpose of the present invention is to provide a corrugated cardboard oscillating chip removal device to solve the problem in the above-mentioned prior art that the paper scraps inside the corrugated cardboard cannot be effectively discharged, and that air blowing cannot effectively clean the paper scraps tightly attached to the surface of the corrugated cardboard.
[0008] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a corrugated cardboard oscillating chip removal device, comprising a bottom plate, a chip removal platform is arranged at the upper end of the bottom plate, a driving assembly is arranged on the inner side of the chip removal platform, a paper chip discharge bracket is arranged at the upper end of the bottom plate, a corrugated cardboard is placed on the inner side of the chip removal platform, and two groups of brush rollers are arranged on the inner side of the chip removal platform for sliding; The paper scraps discharge bracket includes brackets fixedly installed on both sides of the upper end of the bottom plate, the outer sides of the two groups of brackets are fixedly connected with connecting rods, and an arc-shaped air blowing hood is fixedly installed on the end of the connecting rod away from the bracket, an air guide pipe is fixedly installed on the outer side of one group of brackets, and the air guide pipe is connected with the bracket and the arc-shaped air blowing hood, and a reeling mechanism is fixedly connected to the outer side of the other group of brackets, and the reeling mechanism is sleeved on the outer sides of the two groups of brush rollers and is rotatably connected; The driving component drives the chip removal platform to tilt, and at the same time cooperates with the bracket to make the chip removal platform vibrate, thereby shaking off some loose paper scraps inside and on the surface of the corrugated cardboard, and loosening some tightly attached paper scraps. During the vibration process, the driving component will also squeeze the gas inside the two groups of brackets. The gas in one group of brackets will enter the arc-shaped blowing hood from the air guide pipe and be discharged, so as to perform uninterrupted horizontal blowing at the end of the corrugated cardboard with a higher horizontal position, and quickly discharge the paper scraps inside the corrugated cardboard. At the same time, the gas in the other group of brackets will enter the winding mechanism, and in this process drive the winding mechanism to pull the two groups of brush rollers to move horizontally and rotate, so as to effectively clean the paper scraps tightly attached to the surface of the corrugated cardboard. When the driving component rotates half a circle, the winding mechanism drives the two groups of brush rollers to return to the initial position, and at the same time assists the automatic unloading of the corrugated cardboard.
[0009] Furthermore, the chip removal platform includes a placement plate, and connecting blocks are fixedly installed on both sides of one end of the placement plate, and a support leg 1 is rotatably installed on the outer side of the connecting block, and the support leg 1 is fixedly connected to the bottom plate, and sleeve rails are fixedly installed on both sides of the lower end of the placement plate; The driving assembly includes two legs fixedly mounted on both sides of the base plate, a rotating shaft is rotatably mounted on the upper end of the two legs, a servo motor is fixedly mounted on one end of one set of rotating shafts, the servo motor is fixedly connected to the two legs, a sleeve rod one is fixedly mounted on the outer side of the rotating shaft, a sleeve rod two is slidably mounted on the inner side of the sleeve rod one, a sleeve shaft is fixedly mounted on the side where the two sets of sleeve rods two are close to each other, the sleeve shaft passes through the sleeve rail and is movably connected, the rotating shaft is driven to rotate by the servo motor, and the rotating shaft drives the sleeve rod one, the sleeve rod two and the sleeve shaft to rotate about its own axis, because the sleeve rail is arranged on the outer side of the sleeve shaft, so that under the continuous drive of the servo motor, the placement plate will reciprocate and tilt and swing around the connecting block as the axis, so as to facilitate the subsequent discharge of paper scraps.
[0010] Furthermore, a compression spring is fixedly installed inside the sleeve rod one, one end of the compression spring is fixedly connected to the sleeve rod two, the bracket includes an arc-shaped cavity ring, and a convex rail is fixedly installed on the inner side surface of the arc-shaped cavity ring. When the sleeve rod two rotates about the axis of the rotating shaft, it will come into contact with the convex rail to reciprocately compress the compression spring, so that the sleeve rod two frequently comes into contact with the convex rail, thereby generating vibration and transmitting it to the placement plate, thereby achieving a shaking effect on the corrugated cardboard.
[0011] Furthermore, the cam includes a wide-spaced cam fixedly connected to the arc-shaped cavity ring, and narrow-spaced cams fixedly connected to the arc-shaped cavity ring are arranged at both ends of the wide-spaced cam. The second sleeve rod will first come into contact with the narrow-spaced cam. Since the cam interval is narrow, high-frequency vibrations will be generated at this time, which will shake off some loose paper scraps inside and on the surface of the corrugated cardboard and loosen some tightly attached paper scraps. Then the second sleeve rod will come into contact with the wide-spaced cam. Since the cam interval is wide, low-frequency vibrations will be generated at this time, thereby reducing the vibration frequency of the paper scraps themselves. At the same time, since the placement plate is in a range of a large tilt angle at this time, the chance of the paper scraps rolling down can be increased by reducing the vibration frequency of the paper scraps themselves. At the same time, in conjunction with the blowing of the arc-shaped blowing hood, the rapid discharge of paper scraps inside and on the surface of the corrugated cardboard is facilitated.
[0012] Furthermore, an arc-shaped telescopic plate is fixedly installed on one side of the arc-shaped cavity ring, an extrusion plate is fixedly installed on one end of the arc-shaped telescopic plate, and push plates are rotatably installed on the sides of the two sets of sleeve rods that are away from each other, and a torsion spring 1 is sleeved on the outer side of the push plate, one end of the torsion spring 1 is fixedly connected to the push plate, and the other end of the torsion spring 1 is fixedly connected to the sleeve rod 2. When one set of the sleeve rods 2 rotates about the axis of the rotating shaft, it will simultaneously drive the push plate and the extrusion plate to contact, and push the extrusion plate to shrink the arc-shaped telescopic plate, thereby squeezing the gas in the arc-shaped cavity ring into the air guide pipe, and finally discharged from the arc-shaped blowing hood, and continuously blow horizontally to the end of the corrugated cardboard with a higher horizontal position to quickly discharge the paper scraps inside the corrugated cardboard.
[0013] Furthermore, the reeling mechanism includes a metal hose, one end of which is fixedly connected and communicated with the arc-shaped cavity ring, the other end of which is fixedly connected and communicated with a temporary storage box, the temporary storage box is fixedly connected with the placement plate, two groups of partitions are fixedly installed inside the temporary storage box, and guide blocks are fixedly installed on the sides of the two groups of partitions away from each other, and two groups of driven rollers are rotatably installed inside the temporary storage box, one end of the driven roller passes through the temporary storage box and is fixedly installed with a capstan; The winding mechanism includes a rectangular frame fixedly connected to the placing disk, two groups of winches 2 are rotatably installed on the inner side of the rectangular frame, two torsion springs are sleeved on both sides of the winches 2, one end of the torsion springs 2 is fixedly connected to the winches 2, and the other end of the torsion springs 2 is fixedly connected to the rectangular frame, and the outer sides of the winches 1 and 2 are both wound with a twisted rope, and the ends of the twisted ropes close to each other are fixedly connected with a collar, which is sleeved on the outer side of one end of the brush roller and rotatably connected, and the other group of sleeve rods 2 will simultaneously drive the push plate and the extrusion plate to engage during the process of rotating about the axis of the rotating shaft. The gas in the arc cavity ring is squeezed into the metal hose and then enters the temporary storage box. In this process, the gas will be guided by the guide block to push the driven roller to rotate, and the driven roller will drive the capstan 1 to rotate, and then the twisted rope will be reeled in, so that the twisted rope pulls the ring to drive the brush roller to move horizontally, and forces the capstan 2 to unwind, so as to effectively clean the paper scraps tightly attached to the surface of the corrugated cardboard through the brush roller while vibrating the corrugated cardboard.
[0014] Furthermore, a gear is fixedly installed on the other end of the brush roller, and two sets of racks are fixedly installed on one side of the placement plate, the gears are meshed with the racks, and a collection box is fixedly installed on one end of the placement plate. During the horizontal movement, the brush roller rotates on its own because the gears are meshed with the racks, thereby further enhancing the cleaning effect on the paper scraps tightly attached to the surface of the corrugated cardboard. When the second sleeve rod ends contacting with the wide-interval convex rail, it will contact with the narrow-interval convex rail again, and at this time the brush roller has moved horizontally to the entrance of the collection box, and through high-frequency vibration again, the paper scraps attached to the surface of the brush roller can be quickly shaken off. Because the placement plate is in a tilted state at this time, and the arc-shaped blowing hood is blowing air, the shaken-off paper scraps will directly enter the collection box, effectively avoiding the flying of paper scraps and maintaining the working environment.
[0015] Furthermore, support rods are fixedly installed at both ends of the arc-shaped cavity ring, a baffle is fixedly installed on the surface of one group of support rods, and a capstan three is rotatably installed on the inner side of the other group of support rods. A torsion spring three is sleeved at both ends of the capstan three, one end of the torsion spring three is fixedly connected to the capstan three, and the other end of the torsion spring three is fixedly connected to the support rod. A twisted belt is wound around the outer side of the capstan three, and one end of the twisted belt is fixedly connected to the extrusion plate. When the sleeve rod two rotates half a circle around the axis of the rotating shaft, the extrusion plate contacts the baffle, forcing the push plate to drive the torsion spring one to twist. Without the push of the push plate, the extrusion plate starts to reset and drives the three pairs of twisted belts of the capstan to reel in, thereby pulling the extrusion plate to drive the arc-shaped telescopic plate back to the initial state and sucking the gas stored in the temporary storage box. At the same time, since the driven roller stops rotating, the second torsion spring starts to reset and drives the second pair of twisted ropes of the capstan to reel in, thereby pulling the brush roller to start the return journey, and relying on the friction force on the corrugated cardboard, it assists in the rapid unloading of the corrugated cardboard, and then everything returns to the initial state, and so on. The working process is smooth and efficient.
[0016] Furthermore, a plurality of limit rings are fixedly installed on the outer side of the sleeve shaft, and the limit rings are located on both sides of the sleeve rail. The setting of the limit rings can effectively prevent the placement disk from shaking laterally during operation, thereby affecting the drive assembly.
[0017] Furthermore, two groups of buffer springs are fixedly installed on the inner side of the placement plate, and a rubber pad is fixedly installed on one end of the buffer spring. When the placement plate is tilted, the corrugated cardboard will slide down, and the buffer spring and the rubber pad can effectively avoid collisions with the corners of the corrugated cardboard, thereby achieving a protective effect.
[0018] Compared with the prior art, the present invention has the following beneficial effects: The present invention provides a corrugated cardboard oscillating chip removing device. The driving component drives the chip removing platform to tilt, and cooperates with the bracket to make the chip removing platform vibrate, thereby shaking off some loose paper scraps inside and on the surface of the corrugated cardboard, and loosening some tightly attached paper scraps. During the vibration process, the driving component will also squeeze the gas inside the two groups of brackets. The gas in one group of brackets will enter the arc-shaped blowing hood from the air guide pipe and be discharged, so as to perform uninterrupted horizontal blowing at the end of the corrugated cardboard with a higher horizontal position, and quickly discharge the paper scraps inside the corrugated cardboard. At the same time, the gas in the other group of brackets will enter the winding mechanism, and in this process, the winding mechanism is driven to pull the two groups of brush rollers to move horizontally and rotate, so as to effectively clean the paper scraps tightly attached to the surface of the corrugated cardboard. When the driving component rotates half a circle, the winding mechanism drives the two groups of brush rollers to return to the initial position, and at the same time assists the automatic unloading of the corrugated cardboard. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of a corrugated cardboard oscillating chip removal device of the present invention; Figure 2 It is a schematic diagram of the overall structure of a corrugated cardboard oscillating chip removal device of the present invention; Figure 3 A schematic diagram of the structure of a chip removal platform of a corrugated cardboard oscillating chip removal device of the present invention; Figure 4 It is a schematic diagram of the structure of a paper scrap discharging bracket of a corrugated paperboard oscillating scrap removal device of the present invention; Figure 5 It is a schematic diagram of the structure of a driving component of a corrugated paperboard oscillating chip removing device of the present invention; Figure 6 A schematic diagram of the support structure of a corrugated cardboard oscillating chip removal device of the present invention; Figure 7 It is a structural schematic diagram of a reeling mechanism of a corrugated paperboard oscillating chip removing device of the present invention; Figure 8 The present invention is a schematic diagram of the structure of a reeling mechanism of a corrugated cardboard oscillating chip removing device.
[0020] In the figure: 1, bottom plate; 2, chip removal platform; 21, leg 1; 22, connecting block; 23, placement plate; 24, sleeve rail; 25, gear rail; 26, buffer spring; 27, rubber pad; 28, collection box; 3, drive assembly; 31, leg 2; 32, rotating shaft; 33, servo motor; 34, sleeve rod 1; 35, compression spring; 36, sleeve rod 2; 361, torsion spring 1; 362, push plate; 37, sleeve shaft; 38, limit ring; 4, paper scrap discharge bracket; 41, bracket; 411, arc cavity ring; 412, support rod; 413, arc telescopic plate; 414, extrusion Plate; 415, convex rail; 4151, wide-interval convex rail; 4152, narrow-interval convex rail; 416, baffle; 417, capstan three; 418, torsion spring three; 419, twisted belt; 42, connecting rod; 43, arc-shaped air hood; 44, air guide pipe; 45, retracting mechanism; 451, metal hose; 452, temporary storage box; 453, partition; 454, guide block; 455, driven roller; 456, capstan one; 4561, twisted rope; 457, rectangular frame; 4571, capstan two; 4572, torsion spring two; 458, ring; 5, corrugated cardboard; 6, brush roller; 61, gear. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0022] In order to further understand the content of the present invention, the present invention is described in detail in conjunction with the accompanying drawings.
[0023] Combination Figure 1-2 , Figure 4 A corrugated cardboard oscillating chip removal device comprises a bottom plate 1, a chip removal platform 2 is arranged at the upper end of the bottom plate 1, a driving assembly 3 is arranged on the inner side of the chip removal platform 2, a paper chip discharge bracket 4 is arranged at the upper end of the bottom plate 1, a corrugated cardboard 5 is placed on the inner side of the chip removal platform 2, and two groups of brush rollers 6 are arranged on the inner side of the chip removal platform 2 for sliding; The paper scraps discharge bracket 4 includes brackets 41 fixedly mounted on both sides of the upper end of the bottom plate 1, and the outer sides of the two groups of brackets 41 are fixedly connected with connecting rods 42, and the end of the connecting rod 42 away from the bracket 41 is fixedly mounted with an arc-shaped air blowing cover 43, and the outer side of one group of brackets 41 is fixedly mounted with an air guide 44, and the air guide 44 is connected with the bracket 41 and the arc-shaped air blowing cover 43, and the outer side of the other group of brackets 41 is fixedly connected with a retracting mechanism 45, and the retracting mechanism 45 is sleeved on the outer sides of the two groups of brush rollers 6 and is rotatably connected; The driving component 3 drives the chip removal platform 2 to tilt, and at the same time cooperates with the bracket 41 to make the chip removal platform 2 vibrate, thereby shaking off some loose paper scraps inside and on the surface of the corrugated cardboard 5, and loosening some tightly attached paper scraps. During the vibration process, the driving component 3 will also squeeze the gas inside the two groups of brackets 41, and the gas in one group of brackets 41 will enter the arc-shaped blowing hood 43 from the air guide pipe 44 and be discharged, so as to perform uninterrupted horizontal blowing at the end of the corrugated cardboard 5 with a higher horizontal position, and quickly discharge the paper scraps inside the corrugated cardboard 5. At the same time, the gas in the other group of brackets 41 will enter the rewinding mechanism 45, and in this process drive the rewinding mechanism 45 to pull the two groups of brush rollers 6 to move horizontally and rotate, so as to effectively clean the paper scraps tightly attached to the surface of the corrugated cardboard 5. After the driving component 3 rotates half a circle, the rewinding mechanism 45 drives the two groups of brush rollers 6 to return to the initial position, and at the same time assists the corrugated cardboard 5 to automatically unload.
[0024] Combination Figure 3 , Figure 5 The chip removal platform 2 includes a placement plate 23, and a connection block 22 is fixedly installed on both sides of one end of the placement plate 23. A support leg 21 is rotatably installed on the outer side of the connection block 22. The support leg 21 is fixedly connected to the bottom plate 1, and a sleeve rail 24 is fixedly installed on both sides of the lower end of the placement plate 23; The driving assembly 3 includes two legs 31 fixedly mounted on both sides of the base plate 1, and a rotating shaft 32 is rotatably mounted on the upper end of the two legs 31, and a servo motor 33 is fixedly mounted on one end of one group of rotating shafts 32, and the servo motor 33 is fixedly connected to the two legs 31, and a sleeve rod 1 34 is fixedly mounted on the outer side of the rotating shaft 32, and a sleeve rod 2 36 is slidably mounted on the inner side of the sleeve rod 1 34, and a sleeve shaft 37 is fixedly mounted on the side where the two groups of sleeve rods 2 36 are close to each other, and the sleeve shaft 37 passes through the sleeve rail 24 and is movably connected. The rotating shaft 32 is driven to rotate by the servo motor 33, and the rotating shaft 32 drives the sleeve rod 1 34, the sleeve rod 26 and the sleeve shaft 37 to rotate about their own axis. Since the sleeve rail 24 is sleeved on the outer side of the sleeve shaft 37, under the continuous drive of the servo motor 33, the placement plate 23 will reciprocate and tilt and swing around the connecting block 22 as the axis, so as to facilitate the subsequent discharge of paper scraps.
[0025] Combination Figure 5-6A compression spring 35 is fixedly installed inside the sleeve rod 1 34, and one end of the compression spring 35 is fixedly connected to the sleeve rod 2 36. The bracket 41 includes an arc-shaped cavity ring 411, and a convex rail 415 is fixedly installed on the inner side of the arc-shaped cavity ring 411. When the sleeve rod 2 36 rotates with the axis of the rotating shaft 32, it will come into contact with the convex rail 415 to reciprocately compress the compression spring 35, so that the sleeve rod 2 36 frequently comes into contact with the convex rail 415, thereby generating vibration and transmitting it to the placement plate 23, thereby achieving a shock effect on the corrugated cardboard 5.
[0026] Combination Figure 6 The convex rail 415 includes a wide-spaced convex rail 4151 fixedly connected to the arc-shaped cavity ring 411, and narrow-spaced convex rails 4152 fixedly connected to the arc-shaped cavity ring 411 are provided at both ends of the wide-spaced convex rail 4151. The sleeve rod 36 will first come into contact with the narrow-spaced convex rail 4152. Since the convex rails 415 are spaced relatively narrow, high-frequency vibrations will be generated at this time, which will shake off some loose paper scraps inside and on the surface of the corrugated cardboard 5, and loosen some tightly attached paper scraps. Then the sleeve rod 36 will come into contact with the wide-spaced convex rail 4151. Since the convex rails 415 are spaced relatively wide, low-frequency vibrations will be generated at this time, thereby reducing the vibration frequency of the paper scraps themselves. At the same time, since the placement plate 23 is in a range of a large tilt angle at this time, by reducing the vibration frequency of the paper scraps themselves, the chance of the paper scraps rolling down can be increased. At the same time, in conjunction with the blowing of the arc-shaped blowing hood 43, the rapid discharge of paper scraps inside and on the surface of the corrugated cardboard 5 is facilitated.
[0027] Combination Figure 5-6 , an arc-shaped telescopic plate 413 is fixedly installed on one side of the arc-shaped cavity ring 411, and an extrusion plate 414 is fixedly installed on one end of the arc-shaped telescopic plate 413. A push plate 362 is rotatably installed on the side away from each other of the two sets of sleeve rods 36. A torsion spring 361 is sleeved on the outer side of the push plate 362, and one end of the torsion spring 361 is fixedly connected to the push plate 362, and the other end of the torsion spring 361 is fixedly connected to the sleeve rod 2 36. When one set of sleeve rods 36 rotates with the axis of the rotating shaft 32, it will simultaneously drive the push plate 362 to contact the extrusion plate 414, and push the extrusion plate 414 to make the arc-shaped telescopic plate 413 shrink, thereby squeezing the gas in the arc-shaped cavity ring 411 into the air guide pipe 44, and finally discharged from the arc-shaped blowing hood 43, and continuously blow horizontally to the end of the corrugated cardboard 5 with a higher horizontal position, so as to quickly discharge the paper scraps inside the corrugated cardboard 5.
[0028] Combination Figure 7-8The reeling mechanism 45 includes a metal hose 451, one end of which is fixedly connected and communicated with the arc-shaped cavity ring 411, and the other end of the metal hose 451 is fixedly connected and communicated with a temporary storage box 452, which is fixedly connected to the placement plate 23. Two groups of partitions 453 are fixedly installed inside the temporary storage box 452, and guide blocks 454 are fixedly installed on the sides of the two groups of partitions 453 away from each other. Two groups of driven rollers 455 are rotatably installed inside the temporary storage box 452, and one end of the driven roller 455 passes through the temporary storage box 452 and is fixedly installed with a capstan 456; The winding mechanism 45 includes a rectangular frame 457 fixedly connected to the placing disk 23, and two groups of winches 4571 are rotatably installed on the inner side of the rectangular frame 457. Two torsion springs 4572 are sleeved on both sides of the winches 4571. One end of the torsion spring 4572 is fixedly connected to the winches 4571, and the other end of the torsion spring 4572 is fixedly connected to the rectangular frame 457. The outer sides of the winches 456 and the winches 4571 are both wound with a rope 4561, and the ends of the ropes 4561 close to each other are fixedly connected with a ring 458. The ring 458 is sleeved on the outer side of one end of the brush roller 6 and is rotatably connected. When the other group of sleeve rods 36 rotates with the axis of the rotating shaft 32, it will simultaneously drive the push plate 3 62 contacts the extrusion plate 414 and pushes the extrusion plate 414 to shrink the arc-shaped telescopic plate 413, thereby squeezing the gas in the arc-shaped cavity ring 411 into the metal hose 451 and then into the temporary storage box 452. In this process, the gas will be guided by the guide block 454 to push the driven roller 455 to rotate, and the driven roller 455 will drive the capstan 1 456 to rotate, thereby winding the rope 4561, so that the rope 4561 pulls the ring 458 to drive the brush roller 6 to move horizontally, and forces the capstan 2 4571 to unwind, so as to achieve effective cleaning of the paper scraps tightly attached to the surface of the corrugated cardboard 5 through the brush roller 6 while vibrating the corrugated cardboard 5.
[0029] Combination Figure 3-4 , a gear 61 is fixedly installed on the other end of the brush roller 6, and two sets of racks 25 are fixedly installed on one side of the placement plate 23, the gear 61 is meshed with the rack 25, and a collection box 28 is fixedly installed on one end of the placement plate 23. During the horizontal movement of the brush roller 6, the gear 61 is meshed with the rack 25, so that it rotates itself, further enhancing the cleaning effect of the paper scraps tightly attached to the surface of the corrugated cardboard 5. When the sleeve rod 23 ends the contact with the wide-interval convex rail 4151, it will contact the narrow-interval convex rail 4152 again, and at this time the brush roller 6 has moved horizontally to the entrance of the collection box 28, and the paper scraps attached to the surface of the brush roller 6 can be quickly shaken off by high-frequency vibration again. Since the placement plate 23 is in an inclined state at this time, and the arc-shaped blowing hood 43 is blowing, the shaken-off paper scraps will directly enter the collection box 28, effectively avoiding the flying of paper scraps and maintaining the working environment.
[0030] Combination Figure 6 , support rods 412 are fixedly installed at both ends of the arc-shaped cavity ring 411, and a baffle 416 is fixedly installed on the surface of one group of support rods 412, and a capstan 417 is rotatably installed on the inner side of the other group of support rods 412. Both ends of the capstan 417 are sleeved with a torsion spring 418, one end of the torsion spring 418 is fixedly connected to the capstan 417, and the other end of the torsion spring 418 is fixedly connected to the support rod 412. A twisted belt 419 is wrapped around the outer side of the capstan 417, and one end of the twisted belt 419 is fixedly connected to the extrusion plate 414. When the sleeve rod 2 36 rotates half a circle around the axis of the rotating shaft 32, the extrusion plate 414 contacts the baffle 416, forcing the push plate 362 to drive the torsion spring 1 361 is twisted, and the extrusion plate 414, without the push of the push plate 362, the torsion spring three 418 begins to reset and drives the capstan three 417 to reel the twisted belt 419, thereby pulling the extrusion plate 414 to drive the arc-shaped telescopic plate 413 back to the initial state, and sucking the gas stored in the temporary storage box 452. At the same time, since the driven roller 455 stops rotating, the torsion spring two 4572 begins to reset and drives the capstan two 4571 to reel the twisted rope 4561, thereby pulling the brush roller 6 to start the return journey, and relying on the friction force on the corrugated cardboard 5, it assists in quick unloading, and then everything returns to the initial state, and so on. The working process is smooth and efficient.
[0031] Combination Figure 5 A plurality of limit rings 38 are fixedly mounted on the outer side of the sleeve shaft 37 , and the limit rings 38 are located on both sides of the sleeve rail 24 . The setting of the limit rings 38 can effectively prevent the placement plate 23 from lateral shaking during operation, thereby affecting the drive assembly 3 .
[0032] Combination Figure 3 Two groups of buffer springs 26 are fixedly installed on the inner side of the placement plate 23, and a rubber pad 27 is fixedly installed on one end of the buffer spring 26. When the placement plate 23 is tilted, the corrugated cardboard 5 will slide down, and the buffer spring 26 and the rubber pad 27 can effectively avoid the corners of the corrugated cardboard 5 from being bumped, thereby achieving a protective effect.
[0033] It should be noted that, in the description of the present application, it should be understood that the terms "length", "thickness", "inside", "outside", "axial", "radial", etc., indicating orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0034] In addition, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprises", or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or apparatus that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article, or apparatus.
[0035] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A corrugated cardboard oscillating chip removal device, characterized in that: It comprises a bottom plate, a chip removal platform is arranged at the upper end of the bottom plate, a driving assembly is arranged on the inner side of the chip removal platform, a paper chip discharge bracket is arranged at the upper end of the bottom plate, a corrugated cardboard is placed on the inner side of the chip removal platform, and two groups of brush rollers are arranged on the inner side of the chip removal platform for sliding; The paper scrap discharge bracket comprises brackets fixedly mounted on both sides of the upper end of the bottom plate, the outer sides of the two groups of the brackets are fixedly connected with connecting rods, and an arc-shaped air blowing hood is fixedly mounted on one end of the connecting rod away from the bracket, an air guide pipe is fixedly mounted on the outer side of one group of the brackets, and the air guide pipe is connected to the bracket and the arc-shaped air blowing hood, and a retracting mechanism is fixedly connected to the outer side of the other group of the brackets, and the retracting mechanism is sleeved on the outer sides of the two groups of brush rollers and is rotatably connected; The driving component is used to drive the dandruff removal platform to tilt, and at the same time cooperate with the bracket to make the dandruff removal platform vibrate. During the vibration process, the driving component will also squeeze the gas inside the two groups of the brackets. The gas in one group of the brackets will enter the arc-shaped air blowing hood from the air duct and be discharged. At the same time, the gas in the other group of the brackets will enter the retracting mechanism, and in this process, the retracting mechanism will be driven to pull the two groups of the brush rollers to move horizontally and rotate. After the driving component rotates half a circle, the retracting mechanism drives the two groups of the brush rollers to return to their initial positions.
2. The corrugated cardboard oscillating chip removal device according to claim 1, characterized in that: The chip removal platform comprises a placement plate, and connecting blocks are fixedly installed on both sides of one end of the placement plate, and a support leg 1 is rotatably installed on the outer side of the connecting block, and the support leg 1 is fixedly connected to the bottom plate, and sleeve rails are fixedly installed on both sides of the lower end of the placement plate; The driving assembly includes two legs fixedly mounted on both sides of the base plate, a rotating shaft rotatably mounted on the upper end of the two legs, a servo motor fixedly mounted on one end of one group of the rotating shafts, the servo motor fixedly connected to the two legs, a sleeve rod one fixedly mounted on the outer side of the rotating shaft, a sleeve rod two slidably mounted on the inner side of the sleeve rod one, a sleeve shaft fixedly mounted on the side where the two groups of sleeve rods two are close to each other, and the sleeve shaft passes through the sleeve rail and is movably connected.
3. The corrugated cardboard oscillating chip removal device according to claim 2, characterized in that: A compression spring is fixedly installed inside the sleeve rod 1 (34), one end of the compression spring is fixedly connected to the sleeve rod 2, and the bracket includes an arc-shaped cavity ring, and a convex rail is fixedly installed on the inner side surface of the arc-shaped cavity ring.
4. The corrugated cardboard oscillating chip removal device according to claim 3, characterized in that: The convex rails include wide-spaced convex rails fixedly connected to the arc-shaped cavity ring, and narrow-spaced convex rails fixedly connected to the arc-shaped cavity ring are arranged at both ends of the wide-spaced convex rails.
5. The corrugated cardboard oscillating chip removal device according to claim 3, characterized in that: An arc-shaped telescopic plate is fixedly installed on one side of the arc-shaped cavity ring, and an extrusion plate is fixedly installed on one end of the arc-shaped telescopic plate. Push plates are rotatably installed on the sides of the two groups of sleeve rods that are away from each other. A torsion spring 1 is sleeved on the outer side of the push plate, one end of the torsion spring 1 is fixedly connected to the push plate, and the other end of the torsion spring 1 is fixedly connected to the sleeve rod 2.
6. The corrugated cardboard oscillating chip removal device according to claim 3, characterized in that: The reeling mechanism comprises a metal hose, one end of which is fixedly connected and communicated with the arc-shaped cavity ring, the other end of which is fixedly connected and communicated with a temporary storage box, the temporary storage box is fixedly connected with the placement plate, two groups of partitions are fixedly installed inside the temporary storage box, and guide blocks are fixedly installed on the sides of the two groups of partitions away from each other, and two groups of driven rollers are rotatably installed inside the temporary storage box, one end of the driven roller passes through the temporary storage box and is fixedly installed with a capstan; The winding mechanism includes a rectangular frame fixedly connected to the placing disk, two groups of capstans 2 are rotatably installed on the inner side of the rectangular frame, torsion springs 2 are sleeved on both sides of the capstans 2, one end of the torsion springs 2 is fixedly connected to the capstans 2, and the other end of the torsion springs 2 is fixedly connected to the rectangular frame, and the outer sides of the capstans 1 and 2 are both wound with ropes, and the ends of the ropes close to each other are fixedly connected with rings, and the ring is sleeved on the outer side of one end of the brush roller and is rotatably connected.
7. The corrugated cardboard oscillating chip removal device according to claim 2, characterized in that: A gear is fixedly mounted on the other end of the brush roller, two sets of racks are fixedly mounted on one side of the placement plate, the gears are meshed and connected with the racks, and a collection box is fixedly mounted on one end of the placement plate.
8. The corrugated cardboard oscillating chip removal device according to claim 3, characterized in that: Support rods are fixedly installed at both ends of the arc-shaped cavity ring, a baffle is fixedly installed on the surface of one group of support rods, and a capstan three is rotatably installed on the inner side of the other group of support rods, and a torsion spring three is sleeved on both ends of the capstan three, one end of the torsion spring three is fixedly connected to the capstan three, and the other end of the torsion spring three is fixedly connected to the support rod, a twisted belt is wrapped around the outer side of the capstan three, and one end of the twisted belt is fixedly connected to the extrusion plate.
9. The corrugated cardboard oscillating chip removal device according to claim 2, characterized in that: A plurality of limiting rings are fixedly mounted on the outer side of the sleeve shaft, and the limiting rings are located on both sides of the sleeve rail.
10. The corrugated cardboard oscillating chip removal device according to claim 2, characterized in that: Two groups of buffer springs are fixedly installed on the inner side of the placement plate, and a rubber pad is fixedly installed on one end of the buffer spring.
Citation Information
Patent Citations
Corrugated board vibration scrap removing device
CN209829749U