A board lifter with high-efficiency adjusting effect

The plate lifting device, which combines a round rod, rollers, V-shaped soft brush, and V-shaped scraper, solves the problem of impurities on the plate surface affecting cutting accuracy and thickness adaptability, achieving efficient cleaning and stable transportation, and improving processing quality and efficiency.

CN120735127BActive Publication Date: 2026-03-20HANGZHOU HANGCHA PRECISION MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing sheet metal lifting devices are prone to dirt and dust accumulation on their surface after being placed outdoors for extended periods, affecting cutting accuracy and the lifespan of the cutting machine. Furthermore, varying sheet metal thicknesses result in incomplete cleaning by the scraper, impacting processing quality and efficiency.

Method used

A design was created that includes a disc cutter cutting mechanism, a conveying mechanism, and a plate lifting mechanism. It employs a combination of a round rod, rollers, a V-shaped soft brush, and a V-shaped scraper. The rollers rotate to drive the V-shaped soft brush and scraper to clean impurities from the plate surface, and a cleaning agent is used to soften stubborn impurities. The design incorporates an adjustable collar and a paddle plate structure to adapt to different thicknesses and ensure effective cleaning.

Benefits of technology

It effectively cleans impurities from the surface of the board, improves cutting accuracy and processing efficiency, reduces impurity scattering, ensures stable feeding and transportation of the board, and enhances processing quality and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical fields of plate processing, and discloses a plate lifter with efficient adjusting effect, which comprises a disc cutter cutting mechanism, a conveying mechanism and a plate lifting mechanism, the plate lifting mechanism comprises a frame and a movable plate, the movable plate is located inside the frame, the lower side of the movable plate is provided with a frame body, and the lower side of the movable plate is provided with a cleaning assembly in the middle; the present application can adjust the positions of a plurality of V-shaped soft brushes and V-shaped scraping pieces according to the thickness of the plate, ensure that the plurality of V-shaped soft brushes and V-shaped scraping pieces contact the upper side of the plate during revolution, and facilitate the rapid cleaning of impurities on the upper side of the plate, so as to achieve efficient adjusting effect; the V-shaped soft brush opening can guide the impurities to gather in the center of the bristles, reduce the scattering of impurities during cleaning, and keep the working environment clean; and the V-shaped edge of the V-shaped scraping piece forms a line contact with the surface of the plate, and the adhered impurities are stripped by mechanical force, so that stubborn impurities are efficiently stripped.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field related to plate processing, more specifically, particularly relates to a plate lifter with high efficient adjusting effect. BACKGROUND

[0002] Plate is made into a standard size of flat rectangular building material plate, which is applied to the construction industry to make wall, ceiling or floor components. It also refers to the metal plate forged, rolled or cast. It is divided into thin plate, medium plate, thick plate, super thick plate, usually made into a standard size of flat rectangular building material plate. When the plate is processed, a cutting machine is needed to cut it. However, before cutting the plate, a plate lifter is usually used to transport the plate into the cutting machine, so as to quickly cut the plate. However, the plate processing in the prior art has the following defects:

[0003] 1. In the prior art, the surface of the plate is easy to attach soil and dust after being placed outdoors for a long time. If the soil and dust on the surface of the plate are not treated, the soil and dust on the plate will directly affect the cutting accuracy and the service life of the cutting machine, resulting in uneven cutting surface, increasing the difficulty of subsequent processing, and reducing the work efficiency. Therefore, a plate lifter capable of effectively removing the dirt on the surface of the plate is needed to improve the plate processing quality and efficiency.

[0004] 2. In the prior art, due to the different thickness of the plate, the scraper may cause over scraping of the plate or the soil on the plate not being scraped, thereby causing damage to the surface of the plate or incomplete cleaning of the soil and dust, thereby affecting the quality of the plate.

[0005] 3. In the prior art, in order to improve the efficiency of plate processing, the surface of the plate is usually cleaned during plate feeding and transportation. However, the plate surface cleaning and plate feeding and transportation are carried out at the same time, which may cause displacement of the plate, thereby affecting the positioning accuracy of the plate, increasing the operation difficulty and safety hazard, ultimately affecting the processing quality and efficiency, and having poor adaptability.

[0006] Therefore, in view of the above problems, the existing structure and defects are improved, and a plate lifter with high efficient adjusting effect is provided to achieve more practical and valuable purposes. SUMMARY

[0007] The present application provides a plate lifter with high efficient adjusting effect to overcome the above-mentioned defects in the prior art.

[0008] The purpose and effect of the plate lifter with high efficient adjusting effect of the present application are achieved by the following specific technical means:

[0009] The plate lifter has high adjustment effect, which comprises a disc cutter cutting mechanism, a conveying mechanism and a plate lifting mechanism, the conveying mechanism penetrates the inside of the disc cutter cutting mechanism, and the plate lifting mechanism is located at one end of the conveying mechanism; the plate lifting mechanism comprises a frame and a movable plate, the movable plate is located in the inside of the frame, the lower side of the movable plate is provided with a frame body, and the lower side of the movable plate is provided with a cleaning assembly; the cleaning assembly comprises a plurality of round rods, the outer wall of the round rod is provided with a roller, the outer wall of the roller is circumferentially provided with a plurality of S-shaped grooves, a plurality of fixed rods are fixedly arranged on each S-shaped groove, the outer wall of each fixed rod is provided with two annular grooves at intervals, the outer wall of the two annular grooves is respectively provided with a sleeve ring, the outer wall of the two sleeve rings is respectively provided with a push plate, one end of each pair of push plates is provided with a V-shaped soft brush, V-shaped scraping pieces are connected between the opposite sides of each pair of push plates, and the inner wall of each sleeve ring is in threaded sliding contact with the outer wall of the annular groove.

[0010] Further technical solutions, the outer wall of the two ends of the round rod is in sliding contact with the two side walls of the frame body, the S-shaped groove is composed of a plurality of V-shaped groove heads and tails connected with each other, each fixed rod is located in the middle of the V-shaped groove of the S-shaped groove, each pair of push plates is located at the two ends of the V-shaped groove of the S-shaped groove, and the outer wall of the round rod is fixedly connected with the roller.

[0011] Further technical solutions, the inside of the roller is provided with an annular cavity, one side of the middle of the V-shaped groove of the S-shaped groove is provided with an arc-shaped cavity, two arc-shaped push blocks are slidingly arranged at the two ends of the arc-shaped cavity, one end of each pair of arc-shaped push blocks is connected with one side of each pair of push plates, and the other side of each pair of push plates is connected with the first elastic water bag between the two ends of the V-shaped groove of the S-shaped groove, a plurality of spray valves are arranged on each first elastic water bag at intervals, the annular cavity is communicated with the arc-shaped cavity, and the inside of the annular cavity is communicated with the first elastic water bag.

[0012] Further technical solutions, the lower part of the movable plate is provided with a plurality of grooves at intervals, one limiting plate is fixedly arranged at the two ends of each groove, the limiting plate is in sliding contact with the outer wall of the round rod, a second elastic water bag is connected between the two limiting plates at the two ends of the roller, the inside of the second elastic water bag is communicated with the annular cavity, a cleaning agent tank is arranged at the lower part of the movable plate, a small water pump is mounted in the inside of the cleaning agent tank, and a telescopic connecting pipe is arranged in communication between the inside of the cleaning agent tank and a plurality of second elastic water bags.

[0013] Further technical solutions, the two sides of the movable plate are respectively provided with a sliding block, the two side walls of the frame are respectively provided with a sliding plate which vertically slides, the two sliding plates are respectively provided with a guide frame on the side close to each other, the two sliding blocks horizontally slide in the two guide frames, the two guide frames are provided with a guide plate and a rack on the side close to each other, one end of the round rod is in sliding contact with the uneven side of the guide plate, the other end of the round rod is provided with a gear on the outer wall, the outer wall of the gear is engaged with the rack, and the width of the rack is much larger than the width of the gear.

[0014] Further technical solutions, the two side walls of the frame are respectively provided with a pair of guide rods, the outer walls of each pair of guide rods are in sliding contact with the sliding plates, the upper ends of the two side walls of the frame are respectively provided with a first stepper motor, the output ends of the two first stepper motors are respectively provided with a first lead screw, and the outer walls of the first lead screws are in threaded contact with the sliding plates.

[0015] Further technical solutions, one end of each of the two guide frames is provided with a second stepper motor, the output end of each second stepper motor is provided with a second lead screw, the outer wall of each second lead screw is in threaded contact with the sliding block, the lower side of the inside of the frame is provided with a support block, and the upper side of the support block is stacked with a plurality of plates.

[0016] Further technical solutions, the opposite two side walls of the frame body are respectively provided with a pair of first electric telescopic rods, the other opposite two side walls of the frame body are respectively provided with second electric telescopic rods, the extending ends of each pair of first electric telescopic rods are provided with a first clamping plate, the extending ends of each pair of second electric telescopic rods are provided with a second clamping plate, one side of the first clamping plate is provided with a first rubber piece, one side of the second clamping plate is provided with a limiting groove, one detector is installed on each side wall of the frame body, the inside of the second clamping plate is provided with a hydraulic cavity, a piston plate slides in the inside of the hydraulic cavity, one side of the piston plate is provided with a sliding rod, the other side of the piston plate is connected with the inside of the hydraulic cavity and is provided with a spring, one end of the sliding rod is provided with a second rubber piece, and the second rubber piece is located in the limiting groove.

[0017] Further technical solutions, the two side walls of the limiting groove are in inclined surface structure, a rotating plate is rotatably arranged on each of the two inclined surfaces of the limiting groove, one rubber clamping block is arranged on the side close to each other of each of the two rotating plates, a water bag is connected between the side away from each other of each of the two rotating plates and the two side walls of the limiting groove, and one connecting channel is arranged in communication between the inside of each of the two water bags and the hydraulic cavity.

[0018] Further technical solutions, the outer wall of the disc cutter cutting mechanism is provided with a control panel on one side, and the end of the conveying mechanism away from the plate lifting mechanism is provided with a collection box.

[0019] Compared with the prior art, the present application has the following beneficial effects:

[0020] The plate lifter with high adjustment effect has the following advantages: the rotation of the round rod drives the rotation of the roller, the rotation of the roller drives the revolution of the V-shaped soft brushes and the V-shaped scraping pieces, the V-shaped soft brushes and the V-shaped scraping pieces are in contact with the upper side of the plate in turn, the V-shaped soft brushes clean the upper side of the plate, and the V-shaped scraping pieces scrape off the soil on the upper side of the plate, so that the impurities on the upper side of the plate do not affect the cutting of the plate by the disc cutter mechanism; the round rod and the roller move axially back and forth under the guidance of the uneven side of the guide plate and the elastic force of the second elastic water bag, the roller moves axially back and forth, driving the V-shaped soft brushes and the V-shaped scraping pieces to move axially back and forth, so that the cleaning effect of the impurities on the upper side of the plate is greatly improved; the cleaner in the second elastic water bag is transported into the annular cavity, the cleaner in the annular cavity is transported into the first elastic water bag, and the cleaner in the first elastic water bag is sprayed out through the spray valves; the rotation of the roller drives the revolution of the spray valves, so that the cleaner in the first elastic water bag is diffused and sprayed onto the upper side of the plate, the cleaner softens the impurities on the upper side of the plate, and the impurities on the upper side of the plate are cleaned thoroughly by the V-shaped soft brushes and the V-shaped scraping pieces, so that the cutting efficiency of the plate is improved.

[0021] The plate lifter with high adjustment effect has the following advantages: the cleaner in the annular cavity is transported into the arc cavity, the cleaner in the arc cavity drives the two arc-shaped push blocks to move away from each other, and the two arc-shaped push blocks drive the two push plates to swing away from each other; the two push plates drive the two collars to rotate in the two annular grooves respectively, and the outer wall of the annular groove is in threaded contact with the inner wall of the collar; the two collars rotate in the two annular grooves respectively, so that the two collars and the push plates move radially outward, the V-shaped soft brushes and the V-shaped scraping pieces move radially outward, and the V-shaped soft brushes and the V-shaped scraping pieces can be adjusted according to the thickness of the plate, so that the V-shaped soft brushes and the V-shaped scraping pieces are in contact with the upper side of the plate during revolution, the impurities on the upper side of the plate can be cleaned quickly, and the high adjustment effect is realized; the V-shaped soft brush opening can guide the impurities to the center of the bristles, reduce the scattering of impurities during cleaning, and keep the working environment clean; the V-shaped edge of the V-shaped scraping piece is in line contact with the surface of the plate, and the mechanical force is used to peel off the adhered impurities, so that the stubborn impurities are peeled off efficiently.

[0022] The board lifter with high-efficiency adjusting effect has the first clamping plate, the first rubber piece, the two first clamping plates and the first rubber piece are close to each other to clamp and fix the opposite sides of the board, the second clamping plate, the second rubber piece, the limiting groove, the two second clamping plates and the second rubber piece are close to each other to clamp and fix the other opposite sides of the board, and the two limiting grooves limit the board up and down, so that the stable feeding and transportation of the board during the surface cleaning of the board are ensured, the rotating plate and the rubber clamping block are arranged, the two second rubber pieces are resisted by the board, so that the two second rubber pieces, the sliding rod and the piston plate are relatively stationary, the two piston plates slide in the two hydraulic cavities, the solution in the hydraulic cavities is transported into the two water bags through the two connecting channels, the two water bags expand to drive the two rotating plates to rotate close to each other, the two rotating plates drive the two rubber clamping blocks to rotate close to each other, the two rubber clamping blocks clamp and fix the upper and lower sides of the board, and the high-efficiency adjusting effect is realized. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the 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 only show some embodiments of the application, and for those skilled in the art, other drawings can also be obtained without creative labor based on these drawings.

[0024] The application will be further described below in combination with the drawings and embodiments.

[0025] Figure 1 It is an isometric structural schematic view of the application.

[0026] Figure 2 It is an isometric structural schematic view of the board lifting mechanism in the application.

[0027] Figure 3 It is a first isometric structural schematic view of the cleaning assembly in the application.

[0028] Figure 4 It is a second isometric structural schematic view of the cleaning assembly in the application.

[0029] Figure 5 It is an isometric structural schematic view of the roller in the application.

[0030] Figure 6 It is a top view structural schematic view of the application.

[0031] Figure 7 It is a sectional view structural schematic view of A-A in the application. Figure 6 ​

[0032] Figure 8 This is a front view schematic diagram of the plate lifting mechanism in this invention;

[0033] Figure 9 for Figure 8 Schematic diagram of the cross-sectional structure at point BB;

[0034] Figure 10 This is a schematic diagram of the left side of the plate lifting mechanism in this invention;

[0035] Figure 11 for Figure 10 Schematic diagram of the cross-sectional structure at the CC section;

[0036] Figure 12 for Figure 11 A magnified schematic diagram of the local structure at point F;

[0037] Figure 13 This is a front view schematic diagram of the roller structure in this invention;

[0038] Figure 14 for Figure 13 Schematic diagram of the cross-sectional structure at the middle DD section;

[0039] Figure 15 for Figure 13 Schematic diagram of the cross-sectional structure at the EE section.

[0040] Explanation of reference numerals in the attached figures:

[0041] 10. Circular blade cutting mechanism; 11. Conveying mechanism; 12. Collection box; 13. Plate lifting mechanism; 14. Frame; 15. Telescopic connecting pipe; 16. Cleaning agent box; 17. Control panel; 18. Support block; 19. Movable plate; 20. Frame body; 21. First clamping plate; 22. First rubber component; 23. First electric telescopic rod; 24. Second clamping plate; 25. Second electric telescopic rod; 26. Limiting groove; 27. Hydraulic chamber; 28. Piston plate; 29. ​​Second rubber component; 30. Slide rod; 31. Spring; 32. Water bladder; 33. Rotating plate; 34. Rubber clamping block; 35. Connecting channel; (The last part is incomplete and likely refers to a circular blade cutting mechanism.) 36. Rod 37. Roller 38. S-groove 39. Fixing rod 39. Annular groove 40. Collar 41. Paddle plate 42. V-shaped soft brush 43. V-shaped scraper 44. Annular cavity 45. Arc-shaped push block 46. Arc-shaped cavity 47. First elastic water bag 48. Spray valve 49. Guide frame 50. Guide plate 51. Rack 52. Gear 53. Slide plate 54. Slider 55. Guide rod 56. First lead screw 57. First stepper motor 58. Second stepper motor 59. Second lead screw 60. Groove 61. Limiting plate 62. Second elastic water bag 63. Detector 64. Detailed Implementation

[0042] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.

[0043] In the description of this invention, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0044] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0045] As attached Figure 1 To be continued Figure 15 As shown:

[0046] This invention provides a plate lifting device with high-efficiency adjustment effect.

[0047] See attached document Figure 1 To be continued Figure 15 The system includes a disc cutter cutting mechanism 10, a conveying mechanism 11, and a plate lifting mechanism 13. The conveying mechanism 11 passes through the interior of the disc cutter cutting mechanism 10, and the plate lifting mechanism 13 is located at one end of the conveying mechanism 11. The plate lifting mechanism 13 includes a frame 14 and a movable plate 19. The movable plate 19 is located inside the frame 14, and a frame body 20 is provided on the lower side of the movable plate 19. A cleaning component is provided in the middle of the lower side of the movable plate 19. The cleaning component includes several round rods 36, and rollers 37 are sleeved on the outer wall of the round rods 36. The outer wall is provided with a number of S-shaped grooves 38 in a circumferential array. Each S-shaped groove 38 is fixed with a number of fixing rods 39. Each fixing rod 39 has two annular grooves 40 spaced apart on its outer wall. A collar 41 is fitted on the outer wall of each of the two annular grooves 40. A lever 42 is fixed on the outer wall of each of the two collars 41. A V-shaped soft brush 43 is provided at one end of each pair of levers 42. A V-shaped scraper 44 is connected between the opposite sides of each pair of levers 42. The inner wall of each collar 41 is in threaded sliding contact with the outer wall of the annular groove 40.

[0048] Preferably, refer to the attached Figure 5 , attached Figure 13 to attached Figure 15 , the outer wall of both ends of the round rod 36 is in sliding contact with the two side walls of the frame 20, the S-shaped groove 38 is composed of several V-shaped groove heads connected with each other, each fixed rod 39 is located in the middle of the V-shaped groove of the S-shaped groove 38, and each pair of push plates 42 is located at the two ends of the V-shaped groove of the S-shaped groove 38. The outer wall of the round rod 36 is fixedly connected with the roller 37.

[0049] Preferably, refer to the attached Figure 5 , attached Figure 13 , attached Figure 15 , the inside of the roller 37 is provided with an annular cavity 45, the middle of the V-shaped groove of the S-shaped groove 38 is provided with an arc-shaped cavity 47, and the two ends of the arc-shaped cavity 47 are slidingly provided with an arc-shaped push block 46. One end of each pair of arc-shaped push blocks 46 is connected with one side of each pair of push plates 42, and the other side of each pair of push plates 42 is connected with one of the first elastic water bags 48 arranged between the two ends of the V-shaped groove of the S-shaped groove 38. A plurality of spray valves 49 are arranged on each first elastic water bag 48 in an interval, the annular cavity 45 is communicated with the arc-shaped cavity 47, and the inside of the annular cavity 45 is communicated with the first elastic water bag 48.

[0050] Preferably, refer to the attached Figure 3 , attached Figure 4 , attached Figure 9 , attached Figure 11 , a plurality of grooves 61 are arranged at the lower part of the movable plate 19 in an interval, a limiting plate 62 is fixedly arranged at the two ends of each groove 61, the limiting plate 62 is in sliding contact with the outer wall of the round rod 36, a second elastic water bag 63 is arranged between the two limiting plates 62 and the two ends of the roller 37, the inside of the second elastic water bag 63 is communicated with the annular cavity 45, a cleaning agent tank 16 is arranged at the lower part of the movable plate 19 on both sides, a small water pump is mounted in the inside of the cleaning agent tank 16, and a telescopic connecting pipe 15 is arranged in the inside of the cleaning agent tank 16 and communicated with a plurality of second elastic water bags 63.

[0051] Preferably, refer to the attached Figure 2 to attached Figure 4 , a sliding block 55 is fixedly arranged at each side of the movable plate 19, a sliding plate 54 is vertically and slidingly arranged at each side wall of the frame 14, a guide frame 50 is fixedly arranged at one side of each sliding plate 54 which is close to each other, the two sliding blocks 55 are horizontally slidingly arranged in the two guide frames 50, a guide plate 51 and a rack 52 are arranged at one side of the two guide frames 50 which are close to each other, one end of the round rod 36 is in sliding contact with the uneven side of the guide plate 51, the outer wall of the other end of the round rod 36 is provided with a gear 53, the outer wall of the gear 53 is engaged with the rack 52, and the width of the rack 52 is much greater than the width of the gear 53.

[0052] Preferably, refer to the attached Figure 1 to the attached Figure 4 , the two side walls of the frame 14 are respectively fixedly provided with a pair of guide rods 56, the outer wall of each pair of guide rods 56 is in sliding contact with the sliding plate 54, the upper end of the frame 14 is respectively provided with a first stepper motor 58, the output end of the two first stepper motors 58 is respectively provided with a first lead screw 57, and the outer wall of each first lead screw 57 is in threaded contact with the sliding plate 54.

[0053] Preferably, refer to the attached Figure 1 to the attached Figure 4 , one end of the two guide frames 50 is respectively provided with a second stepper motor 59, the output end of each second stepper motor 59 is provided with a second lead screw 60, the outer wall of each second lead screw 60 is in threaded contact with the sliding block 55, the inside of the frame 14 is provided with a support block 18, and the upper side of the support block 18 is stacked with a plurality of plates.

[0054] Preferably, refer to the attached Figure 1 to the attached Figure 4 , the attached Figure 9 , the attached Figure 12 , the opposite two side walls of the frame body 20 are respectively provided with a pair of first electric telescopic rods 23, the other opposite two side walls of the frame body 20 are respectively provided with second electric telescopic rods 25, the extending end of each pair of first electric telescopic rods 23 is provided with a first clamping plate 21, the extending end of each pair of second electric telescopic rods 25 is provided with a second clamping plate 24, one side of the first clamping plate 21 is provided with a first rubber piece 22, one side of the second clamping plate 24 is provided with a limiting groove 26, one detector 64 is installed on each side wall of the frame body 20, the inside of the second clamping plate 24 is provided with a hydraulic cavity 27, the inside of the hydraulic cavity 27 is slidably provided with a piston plate 28, one side of the piston plate 28 is provided with a sliding rod 30, the other side of the piston plate 28 is connected with the inside of the hydraulic cavity 27 and is provided with a spring 31, one end of the sliding rod 30 is provided with a second rubber piece 29, and the second rubber piece 29 is located in the limiting groove 26.

[0055] Preferably, refer to the attached Figure 8 to the attached Figure 12 , the two side walls of the limiting groove 26 are in inclined surface structure, one rotating plate 33 is rotatably arranged on each inclined surface of the limiting groove 26, one rubber clamping block 34 is arranged on the side of each rotating plate 33 away from the other rotating plate 33, a water bag 32 is connected between the side of each rotating plate 33 away from the other rotating plate 33 and the two side walls of the limiting groove 26, and one connecting channel 35 is arranged in communication with the hydraulic cavity 27 and the inside of each water bag 32.

[0056] Preferably, refer to the attached Figure 1 , the outer wall of the disc cutter cutting mechanism 10 is provided with a control panel 17 on one side, and the conveying mechanism 11 is provided with a collection box 12 away from the plate lifting mechanism 13.

[0057] The specific use method of the present application:

[0058] Firstly, the staff stacks a plurality of plates on the upper side of the supporting block 18, and the staff starts the plate lifting mechanism 13 by operating the control panel 17. The control system drives two first stepper motors 58 to start, and the two first stepper motors 58 drive two first lead screws 57 to rotate in the positive direction. Since the outer walls of the two first lead screws 57 are in threaded contact with two sliding plates 54 respectively, and the outer walls of two pairs of guide rods 56 are in sliding contact with the two sliding plates 54 respectively, the two sliding plates 54 and the guide frame 50 are stably moved downward under the action of the positive rotation of the two sliding plates 54. The two guide frames 50 move downward to drive two sliding blocks 55 to move downward, and the two guide frames 50 move downward to drive the movable plate 19 and the frame 20 to move downward. The frame 20 moves downward to make the uppermost plate enter the frame 20, and four detectors 64 are used to monitor the position of the plate, so that the plate is located between two first rubber pieces 22. At this time, the height of the plate is the same as the height of the two first rubber pieces 22. The control system drives two pairs of first electric telescopic rods 23 to extend, and the two pairs of first electric telescopic rods 23 drive two first clamping plates 21 and first rubber pieces 22 to move close to each other, and the two first clamping plates 21 and first rubber pieces 22 clamp the opposite sides of the plate.

[0059] Next, the control system starts the first stepper motor 58, which drives the two first lead screws 57 to reverse. The reverse rotation of the two first lead screws 57 causes the movable plate 19 and the frame 20 to move upward. The upward movement of the movable plate 19 and the frame 20 uses the two first clamping plates 21 and the first rubber parts 22 to move the plate upward until it reaches above one end of the conveying mechanism 11. At this time, the two first stepper motors 58 stop, and the control system extends the two pairs of second electric telescopic rods 25. The extension of the two pairs of second electric telescopic rods 25 causes the two second clamping plates 24 to move closer together. The two second clamping plates 24 moving closer together causes the two second rubber parts 29 to move closer together, clamping the opposite sides of the plate. At this time, the two second clamping plates 24 continue to move closer to each other, causing the other opposite sides of the plate to enter the two limiting grooves 26 respectively. Simultaneously, the two second rubber parts 29 are held in place by the plate, thus keeping the two second rubber parts 29, slide rod 30, and piston plate 28 relatively stationary. This allows the two piston plates 28 to slide within the two hydraulic chambers 27, conveying the solution within the hydraulic chambers 27 to the two water bladders 32 through the two connecting channels 35. The two water bladders 32 expand, pushing the two rotating plates 33 closer together and causing them to rotate. This rotation of the two rotating plates 33 causes the two rubber clamping blocks 34 to move closer together, clamping and fixing the upper and lower sides of the plate. Therefore, by using the two first clamping plates 21 and the first rubber parts 22 to move closer together and clamp and fix the opposite sides of the plate, and then using the two second clamping plates 24 and the second rubber parts 29 to move closer together and limit and fix the other opposite sides of the plate, the smooth feeding and transportation of the plate is ensured during the surface cleaning process. Furthermore, four detectors 64 monitor the clamping status of the board, thereby adjusting the clamping effect according to the size of the board. This allows for efficient adjustment of the clamping and fixing effect on boards of different sizes, ensuring the efficiency of board loading and transportation.

[0060] Next, the control system starts the second stepper motor 59. The two second stepper motors 59 drive the two second lead screws 60 to rotate forward. Since the outer walls of the two second lead screws 60 are in threaded contact with the two sliders 55 respectively, the forward rotation of the two second lead screws 60 causes the two sliders 55 to move horizontally within the two guide frames 50 respectively. The horizontal movement of the two sliders 55 causes the movable plate 19 and the frame 20 to move horizontally, and the horizontal movement of the movable plate 19 and the frame 20 causes the plate to move horizontally.

[0061] Meanwhile, the control system controls the start of the small water pumps in the two cleaning agent boxes 16, which deliver the cleaning agent in the cleaning agent boxes 16 to the second elastic water bags 63 through the telescopic connecting pipes 15, and then to the annular cavities 45 of the cleaning agent conveying belts, at this time, the spray valves 49 are closed. The cleaning agent in the annular cavities 45 is delivered to the arc cavities 47, which pushes the two arc-shaped push blocks 46 away from each other, and the two arc-shaped push blocks 46 push the two push plates 42 away from each other to swing. The swinging of the two push plates 42 away from each other drives the two sleeves 41 to rotate in the two annular grooves 40, respectively, because the outer wall of the annular groove 40 is in threaded contact with the inner wall of the sleeve 41. The rotation of the two sleeves 41 in the two annular grooves 40 enables the two sleeves 41 to be guided by the threads, so that the two sleeves 41 and the push plates 42 can move radially outward, and the radially outward movement of the two push plates 42 drives the V-shaped soft brushes 43 and the V-shaped scrapers 44 to move radially outward, so that the V-shaped soft brushes 43 and the V-shaped scrapers 44 can adjust their positions according to the thickness of the plate, to ensure that the V-shaped soft brushes 43 and the V-shaped scrapers 44 can contact the upper side of the plate during revolution, so as to quickly clean the impurities on the upper side of the plate and achieve efficient adjustment effect.

[0062] Then, the horizontal movement of the frame 20 drives the horizontal movement of the plurality of round rods 36, and the horizontal movement of the round rods 36 drives the horizontal movement of the gears 53 through the horizontal fixation of the racks 52, and the gears 53 are in meshing engagement with the racks 52. Thus, the horizontal movement of the plurality of round rods 36 drives the horizontal movement of the plurality of gears 53, and the horizontal movement of the plurality of gears 53 is subjected to the meshing effect of the racks 52, so that the plurality of gears 53 and the round rods 36 rotate. The rotation of the round rods 36 drives the rotation of the rollers 37, and the rotation of the rollers 37 drives the revolution of the plurality of V-shaped soft brushes 43 and V-shaped scrapers 44, so that the plurality of V-shaped soft brushes 43 and V-shaped scrapers 44 are in contact with the upper side of the plate in turn, so as to clean the upper side of the plate by the plurality of V-shaped soft brushes 43, and to scrape off the soil on the upper side of the plate by the plurality of V-shaped scrapers 44, so as to avoid the influence of the impurities on the upper side of the plate on the cutting action of the disc cutter cutting mechanism 10.

[0063] Meanwhile, the frame 20 moves horizontally to drive the plurality of round rods 36 to move horizontally, and one end of the round rod 36 is in sliding contact with the uneven side of the guide plate 51. When the one end of the round rod 36 is in contact with the convex part of the one side of the guide plate 51, the round rod 36 and the roller 37 are axially moved under the guidance of the convex part of the guide plate 51. The axial movement of the roller 37 extrudes the second elastic water bag 63 to generate a spring force. When the one end of the round rod 36 is in contact with the concave part of the one side of the guide plate 51, the round rod 36 and the roller 37 are axially moved back to the original position under the spring force of the second elastic water bag 63. Under the guidance of the uneven side of the guide plate 51 and the spring force of the second elastic water bag 63, the round rod 36 and the roller 37 can move back and forth axially. The axial movement of the roller 37 drives the plurality of V-shaped soft brushes 43 and V-shaped scraping pieces 44 to move back and forth axially. The plurality of V-shaped soft brushes 43 and V-shaped scraping pieces 44 revolve and move back and forth axially, thereby greatly improving the cleaning effect on the upper side of the plate. The opening of the V-shaped soft brush 43 can guide the impurities to the center of the brush, reduce the scattering of impurities during cleaning, and keep the working environment clean. The V-shaped blade of the V-shaped scraping piece 44 forms a line contact with the surface of the plate, and the adhered impurities are stripped by mechanical force, thereby efficiently stripping stubborn impurities.

[0064] Meanwhile, the roller 37 moves back and forth axially to cooperate with the two limiting plates 62 to be fixed, thereby frequently extruding and releasing the two second elastic water bags 63. When the roller 37 moves axially to extrude the second elastic water bag 63, the plurality of spray valves 49 are directed towards the plate at this time, and the plurality of spray valves 49 are opened. The second elastic water bag 63 is extruded, and the cleaning agent in the second elastic water bag 63 is transported into the annular cavity 45. The cleaning agent in the annular cavity 45 is transported into the first elastic water bag 48, and the cleaning agent in the first elastic water bag 48 is sprayed out through the plurality of spray valves 49. Since the roller 37 rotates to drive the plurality of spray valves 49 to revolve, the cleaning agent in the first elastic water bag 48 is diffused and sprayed onto the upper side of the plate. The cleaning agent softens the firm impurities on the upper side of the plate, which is beneficial to clean the impurities on the upper side of the plate by the plurality of V-shaped soft brushes 43 and V-shaped scraping pieces 44, thereby improving the efficiency of cutting and processing the plate. When the roller 37 moves back to the original position, the second elastic water bag 63 is released and restored to its original shape, so that a negative pressure is formed in the second elastic water bag 63, thereby absorbing the cleaning agent in the cleaning agent tank 16 into the second elastic water bag 63 through the telescopic connecting pipe 15. This facilitates the cleaning of the upper side of the plate during the feeding and transporting of the plate, thereby avoiding the influence of the impurities on the upper side of the plate on the efficiency and quality of subsequent cutting and processing of the plate.

[0065] Finally, the board is horizontally moved above the conveying mechanism 11, the control system controls the two first stepping motors 58 to start, the two first stepping motors 58 drive the two first lead screws 57 to rotate in the positive direction, the two first lead screws 57 drive the movable plate 19 and the frame 20 to move downward, the movable plate 19 and the frame 20 drive the board to move downward to the upper side of the conveying mechanism 11. At this time, the control system controls the two pairs of first electric telescopic rods 23 and the second electric telescopic rods 25 to retract, so that the board falls to the upper side of the conveying mechanism 11. The control system controls the conveying mechanism 11 to start, the conveying mechanism 11 starts to convey the board into the disc cutter cutting mechanism 10 for cutting and processing, and after the board is cut and processed, it is conveyed into the collection box 12 for storage by the conveying mechanism 11.

[0066] The board lifter with high adjustment effect of the application, through the setting of the round rod 36, the roller 37, the V-shaped soft brush 43 and the V-shaped scraping piece 44, the rotation of the round rod 36 drives the rotation of the roller 37, the rotation of the roller 37 drives the revolution of the V-shaped soft brush 43 and the V-shaped scraping piece 44, so that the V-shaped soft brush 43 and the V-shaped scraping piece 44 are in contact with the upper side of the board in turn, the V-shaped soft brush 43 is used to clean the upper side of the board, and the V-shaped scraping piece 44 is used to scrape off the soil on the upper side of the board, so as to avoid the influence of impurities on the upper side of the board on the cutting effect of the disc cutter cutting mechanism 10. Through the setting of the guide plate 51 and the round rod 36, under the guide effect of the uneven side of the guide plate 51 and the elastic force of the second elastic water bag 63, the round rod 36 and the roller 37 can move back and forth in the axial direction, the roller 37 drives the V-shaped soft brush 43 and the V-shaped scraping piece 44 to move back and forth in the axial direction, the V-shaped soft brush 43 and the V-shaped scraping piece 44 revolve and move back and forth in the axial direction, so as to greatly improve the cleaning effect of the impurities on the upper side of the board. Finally, through the setting of the round rod 36, the first elastic water bag 48 and the spray valve 49, the cleaning agent in the second elastic water bag 63 is conveyed into the annular cavity 45, the cleaning agent in the annular cavity 45 is conveyed into the first elastic water bag 48, and the cleaning agent in the first elastic water bag 48 is sprayed out through the spray valve 49. Since the rotation of the roller 37 drives the revolution of the spray valve 49, the cleaning agent in the first elastic water bag 48 is diffused and sprayed onto the upper side of the board, the cleaning agent is used to soften the firm impurities on the upper side of the board, which is conducive to the cleaning of the impurities on the upper side of the board by the V-shaped soft brush 43 and the V-shaped scraping piece 44, and improves the cutting and processing efficiency of the board.

[0067] The plate lifter with high efficient adjusting effect has the advantages that the cleaning agent in the annular cavity 45 is conveyed into the arc-shaped cavity 47, the cleaning agent in the arc-shaped cavity 47 pushes the two arc-shaped push blocks 46 away from each other, the two arc-shaped push blocks 46 push the two push plates 42 away from each other to swing, the two push plates 42 swing to drive the two sleeve rings 41 to rotate in the two annular grooves 40 respectively, the outer wall of the annular groove 40 is in threaded contact with the inner wall of the sleeve ring 41, the two sleeve rings 41 rotate in the two annular grooves 40 respectively, so that the two sleeve rings 41 are guided by threads and can move radially outward, the two push plates 42 move radially outward to drive the V-shaped soft brush 43 and the V-shaped scraping piece 44 to move radially outward, so that the V-shaped soft brush 43 and the V-shaped scraping piece 44 can be adjusted in position according to the thickness of the plate, and the V-shaped soft brush 43 and the V-shaped scraping piece 44 can be in contact with the upper side of the plate during revolution, so that the impurities on the upper side of the plate can be quickly cleaned, and high efficient adjusting effect is realized.

[0068] The plate lifter with high efficient adjusting effect has the advantages that the first clamping plate 21 and the first rubber piece 22 are arranged, the two first clamping plates 21 and the first rubber piece 22 are arranged to be close to each other to clamp and fix the opposite sides of the plate, the second clamping plate 24, the second rubber piece 29 and the limiting groove 26 are arranged, the two second clamping plates 24 and the second rubber piece 29 are arranged to be close to each other to clamp and fix the other opposite sides of the plate, and the two limiting grooves 26 are arranged to limit the plate in the up-down direction, so that the plate can be stably fed and transported during the surface cleaning of the plate, the rotating plate 33 and the rubber clamping block 34 are arranged, the two second rubber pieces 29 are pressed by the plate, so that the two second rubber pieces 29, the sliding rod 30 and the piston plate 28 are relatively stationary, the two piston plates 28 slide in the two hydraulic cavities 27 respectively, the solution in the hydraulic cavities 27 is conveyed into the two water bags 32 through the two connecting channels 35, the two water bags 32 expand to push the two rotating plates 33 to rotate and move close to each other, the two rotating plates 33 rotate and move close to each other to drive the two rubber clamping blocks 34 to move close to each other, the two rubber clamping blocks 34 clamp and fix the upper and lower sides of the plate, and high efficient adjusting effect is realized.

[0069] The embodiments of the present application are presented by way of example and description, and are not intended to be exhaustive or to limit the application to the form disclosed. Many modifications and variations will be apparent to those skilled in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to thereby enable others skilled in the art to best utilize the application in various embodiments and with various modifications as are suited to the particular use contemplated.

Claims

1. A plate lifting device with high-efficiency adjustment effect, characterized in that: The system includes a disc cutter cutting mechanism (10), a conveying mechanism (11), and a plate lifting mechanism (13). The conveying mechanism (11) passes through the interior of the disc cutter cutting mechanism (10), and the plate lifting mechanism (13) is located at one end of the conveying mechanism (11). The plate lifting mechanism (13) includes a frame (14) and a movable plate (19). The movable plate (19) is located inside the frame (14), and a frame body (20) is provided on the lower side of the movable plate (19). A cleaning component is provided in the middle of the lower side of the movable plate (19). The cleaning component includes several round rods (36), and rollers (37) are sleeved on the outer wall of the round rods (36). The outer wall of the roller (37) is provided with a plurality of S-shaped grooves (38) arranged in a circumferential array. A plurality of fixing rods (39) are fixed on each of the S-shaped grooves (38). The outer wall of each fixing rod (39) is provided with two annular grooves (40) spaced apart. A collar (41) is fitted on the outer wall of each of the two annular grooves (40). A lever (42) is fixed on the outer wall of each of the two collars (41). A V-shaped soft brush (43) is provided at one end of each pair of levers (42). A V-shaped scraper (44) is connected between the opposite sides of each pair of levers (42). The inner wall of each collar (41) is in threaded sliding contact with the outer wall of the annular groove (40). The outer walls of both ends of the round rod (36) are in sliding contact with the two side walls of the frame (20), the S-shaped groove (38) is composed of several V-shaped grooves connected end to end, each fixed rod (39) is located in the middle of the V-shaped groove of the S-shaped groove (38), each pair of levers (42) is located inside the two ends of the V-shaped groove of the S-shaped groove (38), and the outer wall of the round rod (36) is fixedly connected to the roller (37); The roller (37) has an annular cavity (45) inside. The S-shaped groove (38) has an arc-shaped cavity (47) on one side of the V-shaped groove. An arc-shaped push block (46) is slidably provided at both ends of the arc-shaped cavity (47). One end of each pair of arc-shaped push blocks (46) is connected to one side of each pair of levers (42). The other side of each pair of levers (42) is connected to the two ends of the V-shaped groove of the S-shaped groove (38) with a first elastic water bag (48). Each first elastic water bag (48) is provided with several spray valves (49) spaced apart. The annular cavity (45) is connected to the arc-shaped cavity (47). The annular cavity (45) is connected to the interior of the first elastic water bag (48). The lower part of the movable plate (19) is provided with a plurality of grooves (61) spaced apart. Each groove (61) has a limiting plate (62) fixed at both ends. The limiting plate (62) slides in contact with the outer wall of the round rod (36). The two ends of the roller (37) are connected to the two limiting plates (62) respectively with a second elastic water bag (63). The interior of the second elastic water bag (63) is connected to the annular cavity (45). The lower two sides of the movable plate (19) are respectively provided with a detergent tank (16). The interior of the detergent tank (16) is equipped with a small water pump. The interior of the detergent tank (16) is connected to a plurality of the second elastic water bags (63) with a telescopic connecting pipe (15). The frame (20) has a pair of first electric telescopic rods (23) on each of its opposite side walls, and a second electric telescopic rod (25) on each of its other opposite side walls. Each pair of first electric telescopic rods (23) has a first clamping plate (21) at its extended end, and each pair of second electric telescopic rods (25) has a second clamping plate (24) at its extended end. A first rubber component (22) is provided on one side of the first clamping plate (21), and a limiting groove (26) is provided on one side of the second clamping plate (24). A detector (64) is installed on each of the four side walls of the body (20). The interior of the second clamping plate (24) is provided with a hydraulic chamber (27). A piston plate (28) is slidably provided inside the hydraulic chamber (27). A slide rod (30) is provided on one side of the piston plate (28). A spring (31) is connected to the interior of the hydraulic chamber (27) on the other side of the piston plate (28). A second rubber part (29) is provided at one end of the slide rod (30). The second rubber part (29) is located in the limiting groove (26).

2. The plate lifting device with high-efficiency adjustment effect according to claim 1, characterized in that: A slider (55) is fixed on each side of the movable plate (19). A slide plate (54) is vertically slidable on each side wall of the frame (14). A guide frame (50) is fixed on the side of the two slide plates (54) that are close to each other. The two sliders (55) slide horizontally in the two guide frames (50). A guide plate (51) and a rack (52) are provided on the side of the two guide frames (50) that are close to each other. One end of the round rod (36) slides in contact with the uneven side of the guide plate (51). A gear (53) is provided on the outer wall of the other end of the round rod (36). The outer wall of the gear (53) meshes with the rack (52). The width of the rack (52) is much larger than the width of the gear (53).

3. A plate lifting device with high-efficiency adjustment effect according to claim 2, characterized in that: A pair of guide rods (56) are fixedly provided on each of the two side walls of the frame (14). The outer wall of each pair of guide rods (56) slides in contact with the slide plate (54). A first stepper motor (58) is installed on each of the two upper sides of the frame (14). A first lead screw (57) is provided at the output end of each of the two first stepper motors (58). The outer wall of each first lead screw (57) is in thread contact with the slide plate (54).

4. A plate lifting device with high-efficiency adjustment effect according to claim 2, characterized in that: A second stepper motor (59) is installed at one end of each of the two guide frames (50). Each second stepper motor (59) has a second lead screw (60) at its output end. The outer wall of each second lead screw (60) is in thread contact with the slider (55). A support block (18) is provided on the lower side of the interior of the frame (14). Several plates are stacked on the upper side of the support block (18).

5. A plate lifting device with high-efficiency adjustment effect according to claim 1, characterized in that: The two side walls of the limiting groove (26) are inclined. A rotating plate (33) is rotatably provided on each of the two inclined surfaces of the limiting groove (26). A rubber clamp (34) is provided on the side of the two rotating plates (33) that are close to each other. A water bag (32) is connected between the side of the two rotating plates (33) that are far apart from each other and the two side walls of the limiting groove (26). The interior of the two water bags (32) is connected to the hydraulic cavity (27) through a connecting channel (35).

6. A plate lifting device with high-efficiency adjustment effect according to claim 1, characterized in that: The disc cutter cutting mechanism (10) has a control panel (17) on one side of its outer wall, and the conveying mechanism (11) has a collection box (12) at one end away from the plate lifting mechanism (13).

Citation Information

Patent Citations

  • Composite insulation board processing equipment

    CN112454450A

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