A corrugated paper processing device and a processing technology using the processing device

By designing a corrugated paper processing device including a winding roller and a driving assembly, the problem that the corrugated paper winding equipment in the prior art requires the use of disposable molds, and efficient winding and removal of corrugated paper is achieved, and production costs are reduced.

CN115535682BActive Publication Date: 2025-06-10YUTIAN JIFU PAPER PROD CO LTD
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Patent Information

Application Number
CN202211267074.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-17
Publication Date
2025-06-10
Estimated Expiration
2042-10-17

AI Technical Summary

Technical Problem

Existing corrugated paper winding equipment requires the use of disposable cylindrical molds, resulting in unnecessary waste and increased production costs.

Method used

A corrugated paper processing device including a winding roller, a clamping member, a rotating shaft, a mounting plate, a vertical plate, a drive motor, a support plate and a driving assembly is designed. Through the cooperation of the winding roller and a driving assembly, the corrugated paper is automatically wound and taken out, reducing the dependence on disposable molds.

Benefits of technology

It effectively reduces the number of disposable molds used during corrugated paper winding, reduces production costs, and improves the convenience of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a corrugated paper processing device and a processing technology using the processing device, belonging to the field of corrugated paper processing equipment. It includes a winding roller, the length direction of the winding roller is arranged along the width direction of the corrugated paper, and a clamping member for fixing the corrugated paper is provided on the winding roller. A rotating shaft is fixedly connected to both ends of the winding roller. A mounting plate is fixedly connected to the ground, and one of the rotating shafts is rotatably connected to the mounting plate. A vertical plate is also fixedly connected to the ground, and a driving motor for driving the rotating shaft close to the mounting plate to rotate is installed on the vertical plate. A support plate is slidably connected to the ground, and the rotating shaft away from the mounting plate is lapped on the upper surface of the support plate. The support plate moves along the axial direction of the winding roller, and a driving component for driving the support plate to move is provided between the support plate and the mounting plate. This application has the effect of reducing the production cost of corrugated paper.
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Description

Technical Field

[0001] The present application relates to the field of corrugated paper processing equipment, and in particular to a corrugated paper processing device and a processing technology using the processing device. Background Art

[0002] Corrugated paper is a plate-like material made by gluing noodle paper and corrugated paper formed by corrugating rollers. It has the advantages of low cost, light weight, easy processing, high strength, excellent printing adaptability, and convenient storage and transportation. Corrugated paper can be used as packaging for food or digital products and is relatively widely used.

[0003] In order to facilitate the transportation of corrugated paper, the last process of corrugated paper production is to wind the corrugated paper into a cylinder. The existing winding equipment usually includes a frame, a disposable cylinder mold used in conjunction with the winding equipment, and a drive motor that drives the cylinder mold to rotate. When in use, the operator needs to install a cylinder mold on the frame, make the cylinder mold cooperate with the drive motor, and then fix one end of the corrugated paper on the cylinder mold, and finally start the drive motor to rotate the cylinder mold, so as to wind the corrugated paper on the cylinder mold; when the corrugated paper is wound, the cylinder mold needs to be removed together with the corrugated paper. When the next section of corrugated paper needs to be wound, a new cylinder mold needs to be taken and the cylinder mold needs to be installed on the frame.

[0004] Since each winding of a section of corrugated paper requires a cylindrical mold, unnecessary waste is caused and the production cost of the corrugated paper is increased. Summary of the invention

[0005] In order to reduce the production cost of corrugated paper, the present application provides a corrugated paper processing device and a processing technology using the processing device.

[0006] In the first aspect, the present application provides a corrugated paper processing device, which adopts the following technical solution:

[0007] A corrugated paper processing device comprises a winding roller, wherein the length direction of the winding roller is arranged along the width direction of the corrugated paper, the winding roller is provided with a clamping piece for fixing the corrugated paper, both ends of the winding roller are fixedly connected with a rotating shaft, a mounting plate is fixedly connected to the ground, one of the rotating shafts is rotatably connected to the mounting plate, a vertical plate is also fixedly connected to the ground, a driving motor for driving the rotating shaft close to the mounting plate to rotate is installed on the vertical plate, a supporting plate is slidably connected to the ground, the rotating shaft away from the mounting plate is overlapped on the upper surface of the supporting plate, the supporting plate moves along the axial direction of the winding roller, and a driving component for driving the support plate to move is provided between the supporting plate and the mounting plate.

[0008] By adopting the above technical solution, when it is necessary to wind the corrugated paper into a cylinder, the operator first fixes one end of the corrugated paper on the winding roller using the clamping member, and then starts the driving motor. The driving motor drives the rotating shaft and the winding roller to rotate. The rotation of the winding roller causes the corrugated paper to wind around the winding roller. While the winding roller rotates, the support plate supports the rotating shaft far from the driving motor, making the forces on both ends of the winding roller uniform and reducing the deformation of the two rotating shafts. As the diameter of the corrugated paper cylinder on the winding roller gradually increases, the corrugated paper triggers the driving assembly to work. The work of the driving assembly causes the support plate to move away from the mounting plate until the support plate moves to disengage from the rotating shaft, reducing the situation where the support plate hinders the operator from taking out the corrugated paper. When it is necessary to take out the corrugated paper, the clamping member is released, so that the corrugated paper fixed at one end of the winding roller can be taken out. Then, stand at one end of the corrugated paper cylinder close to the mounting plate and push the corrugated paper in the direction away from the mounting plate until the corrugated paper disengages from the winding roller, reducing the situation where a special mold is needed when winding the corrugated paper, reducing unnecessary waste, and lowering the production cost of the corrugated paper.

[0009] Optionally, the driving assembly includes a driving plate located between the mounting plate and the support plate. The driving plate is horizontally arranged. A support spring for supporting the driving plate is connected to the lower surface of the driving plate. The end of the support spring far from the driving plate is connected to the ground. The driving plate is in contact with the side wall of the winding roller. A slider is fixedly connected to one end of the driving plate close to the support plate. The support plate includes an upper plate and a lower plate. The upper plate is located above the lower plate. The upper plate is parallel to the side wall of the driving plate close to the support plate. The lower end of the lower plate inclines towards the mounting plate. Sliding grooves are formed on the side walls of the upper plate and the lower plate close to the mounting plate. The sliding grooves on the upper plate and the lower plate communicate with each other. The slider is inserted into the sliding groove. A support rod is fixedly connected to one side wall of the support plate. The support rod is perpendicular to the winding roller. A guide plate is fixedly connected to the ground. A horizontal groove and a vertical groove are formed on the side wall of the guide plate close to the support rod. The vertical groove is located at one end of the horizontal groove far from the mounting plate. The vertical groove and the horizontal groove communicate with each other to form a guide groove. The support rod is slidably inserted into the guide groove. A groove is formed on the ground. The groove is located below the vertical groove.

[0010] By adopting the above technical solution, as the corrugated paper is wound around the winding roller, the corrugated paper on the winding roller gradually pushes the driving plate downward. The movement of the driving plate drives the slider to move along the sliding groove of the upper plate. While the driving plate moves downward, the supporting spring is compressed. When the driving plate moves to contact the lower plate, as the driving plate continues to move downward, the driving plate pushes the supporting plate to move away from the mounting plate, and the slider disengages from the sliding groove. The movement of the supporting plate drives the support rod to move in the horizontal groove. During the process of the support rod moving along the horizontal groove, the supporting plate still supports the rotating shaft. When the support rod moves to the position where the horizontal groove is connected to the vertical groove, the supporting plate is located above the groove, and the supporting plate loses its fixation. The supporting plate moves downward under the action of gravity until the supporting plate is located in the groove, reducing the situation that hinders the operator from removing the corrugated paper; after the corrugated paper is removed, the supporting spring restores its deformation and pushes the driving plate upward until the supporting spring returns to its natural state. Finally, the supporting plate is taken out of the groove, the supporting plate is moved to the initial position, and the slider is inserted into the sliding groove.

[0011] Optionally, a fixing groove is formed on the side wall of the winding roller. The clamping member includes a clamping plate, the clamping plate is hinged to one of the groove walls of the fixing groove, a plurality of torsion springs are fixedly connected to the clamping plate, and the ends of the torsion springs far away from the clamping plate are fixedly connected to the groove wall of the fixing groove. The torsion springs make the clamping plate abut against the corresponding groove wall of the fixing groove.

[0012] By adopting the above technical solution, when it is necessary to fix the corrugated paper, the operator first rotates the clamping plate into the fixing groove. The rotation of the clamping plate causes the torsion spring to undergo further deformation. At this time, the operator puts the end of the corrugated paper into the fixing groove, and then releases the clamping plate. The torsion spring restores its deformation and drives the clamping plate to rotate until the clamping plate abuts against the corrugated paper. The clamping plate and the corresponding groove wall of the fixing groove cooperate to fix the end of the corrugated paper.

[0013] Optionally, a guiding member for moving the driving plate in the vertical direction is provided on the ground.

[0014] By adopting the above technical solution, the guiding member moves the driving plate in the vertical direction, reducing the situation that the driving plate deflects and prematurely pushes the supporting plate, thereby reducing the situation that the winding roller loses support during the process of winding the corrugated paper.

[0015] Optionally, the guiding member includes a plurality of sleeves fixedly connected to the ground. The plurality of sleeves are distributed along the length direction of the driving plate. A plugging rod is slidably inserted into the sleeve. The upper end of the plugging rod is fixedly connected to the lower surface of the driving plate. The lower end of the supporting spring is fixedly connected to the inner bottom wall of the sleeve, and the upper end of the supporting spring is fixedly connected to the lower end surface of the plugging rod.

[0016] By adopting the above technical solution, during the downward movement of the driving plate, the movement of the driving plate presses the insertion rod to move into the sleeve, and while the insertion rod moves, the supporting spring is compressed; when the corrugated paper on the winding roller is removed, the supporting spring restores its deformation and pushes the insertion rod to move out of the sleeve, and the movement of the insertion rod pushes the driving plate to move upward. During the movement of the driving plate, the cooperation between the insertion rod and the sleeve guides the movement of the driving plate, reducing the situation of the driving plate shifting.

[0017] Optionally, a shaft support is fixedly connected to the upper surface of the support plate. The shaft support is semi-circular and curved downward, and the shaft support is arranged coaxially with the rotating shaft.

[0018] By adopting the above technical solution, during the process of the support plate supporting the rotating shaft, the rotating shaft rotates in cooperation with the shaft support, and the shaft support limits the rotating shaft, reducing the situation of the rotating shaft shifting.

[0019] Optionally, a positioning component for positioning the support plate is provided on the ground.

[0020] By adopting the above technical solution, the positioning component positions the support plate, reducing the situation of the support plate shifting during the process of supporting the rotating shaft.

[0021] Optionally, an installation groove is formed on the ground. A driving spring is fixedly connected to the bottom wall of the installation groove. The upper end of the driving spring is fixedly connected with a positioning block. The positioning block is slidably inserted into the installation groove. One end of the positioning block protruding from the installation groove is hemispherical. The support rod contacts the groove wall at the end of the horizontal groove far from the vertical groove, and the positioning block contacts the side wall of the support plate far from the installation plate.

[0022] By adopting the above technical solution, when the operator pulls the support plate to the ground and then pushes the support plate in the direction close to the installation plate, the movement of the support plate drives the support rod to move along the horizontal groove. When the support plate moves to contact the positioning block, as the support plate continues to move, the support plate presses the positioning block to move into the installation groove, and while the positioning block moves, the driving spring is compressed. When the support rod moves to the end of the horizontal groove close to the installation plate, the support plate is separated from the positioning block. At this time, the driving spring restores its deformation and pushes the positioning block to move upward. When the driving spring returns to its natural state, the upper part of the positioning block protrudes from the ground, and the positioning block contacts the side wall of the support plate far from the installation plate, thereby positioning the support plate.

[0023] In a second aspect, the present application provides a processing technology for corrugated paper, adopting the following technical solution:

[0024] A processing technology for corrugated paper uses the corrugated paper processing device described in any one of the above 1-8 to process corrugated paper. The specific steps are as follows:

[0025] S1. Prepare raw materials and make them into base paper pulp;

[0026] S2. Add a modifier to the base paper pulp to make papermaking pulp;

[0027] S3. Make the papermaking pulp into paper through a papermaking machine;

[0028] S4. Preheat the paper and apply an adhesive to the paper surface using a sizing machine;

[0029] S5. Combine the base paper through a corrugating machine to form corrugated paper;

[0030] S6. Use the above processing device to wind the corrugated paper to form a corrugated paper tube.

[0031] By adopting the above technical solution, corrugated paper is obtained.

[0032] In summary, the present application includes at least one of the following beneficial technical effects:

[0033] 1. By providing a winding roller, a clamping member, a rotating shaft, a mounting plate, a vertical plate, a driving motor, a support plate, and a driving assembly, the situation of using special molds when winding corrugated paper is reduced, unnecessary waste is reduced, and the production cost of corrugated paper is lowered;

[0034] 2. By providing a driving plate, a support spring, a slider, a support plate, a chute, a slider, a support rod, a guide plate, a guide groove, and a groove, the situation of interfering with the operator when removing corrugated paper is reduced;

[0035] 3. By providing a fixing groove, a clamping plate, and a torsion spring, the clamping plate cooperates with the corresponding groove wall of the fixing groove to fix the end of the corrugated paper. Description of the Drawings

[0036] Figure 1 is a schematic diagram showing the overall structure of the corrugated paper processing device in an embodiment of the present application.

[0037] Figure 2 is a cross-sectional view showing the overall structure of the corrugated paper processing device in an embodiment of the present application.

[0038] Figure 3 is a schematic diagram showing the structure of the clamping member in an embodiment of the present application.

[0039] Figure 4 is showing Figure 2 an enlarged view of the structure at A in

[0040] Figure 5 is showing Figure 2 an enlarged view of the structure at B in

[0041] Description of reference numerals: 1. mounting plate; 2. winding roller; 21. rotating shaft; 22. fixing groove; 3. clamping member; 31. clamping plate; 32. torsion spring; 4. vertical plate; 5. driving motor; 6. support plate; 61. upper plate; 62. lower plate; 63. shaft support; 64. sliding groove; 65. support rod; 7. driving assembly; 71. driving plate; 711. slider; 72. guiding member; 721. inserting rod; 722. sleeve; 73. supporting spring; 74. guiding plate; 741. guiding groove; 7411. horizontal groove; 7412. vertical groove; 75. groove; 8. positioning assembly; 81. mounting groove; 82. positioning block; 83. driving spring. Detailed implementation manners

[0042] The following will Figures 1-5 further describe the present application in detail.

[0043] An embodiment of the present application discloses a corrugated paper processing device. Refer to Figure 1 and Figure 2 , the processing device includes a mounting plate 1 vertically and fixedly connected to the ground. A winding roller 2 is rotatably connected to the mounting plate 1. The axial direction of the winding roller 2 is arranged along the width direction of the corrugated paper. A clamping member 3 for clamping the corrugated paper is provided on the winding roller 2. A vertical plate 4 is vertically and fixedly connected to the ground. The vertical plate 4 is located on the side of the mounting plate 1 away from the winding roller 2. A driving motor 5 for driving the winding roller 2 to rotate is fixedly connected to the vertical plate 4; both ends of the winding roller 2 are fixedly connected with a rotating shaft 21. The rotating shaft 21 and the winding roller 2 are coaxial. The diameter of the rotating shaft 21 is smaller than that of the winding roller 2. A support plate 6 for supporting the winding roller 2 is further provided on the ground. The support plate 6 is located on the side away from the mounting plate 1. A driving assembly 7 for driving the support plate 6 to move away from the mounting plate 1 is provided on the ground.

[0044] When it is necessary to wind the corrugated paper into a roll, the operator first takes one end of the corrugated paper, fixes the end of the corrugated paper on the winding roller 2 with the clamping member 3, and then starts the driving motor 5. The driving motor 5 drives the winding roller 2 to rotate. The rotation of the winding roller 2 winds the corrugated paper around the winding roller 2 to form a corrugated paper tube. As the corrugated paper on the winding roller 2 gradually increases, the radius of the corrugated paper tube gradually increases; when the radius of the corrugated paper tube increases to a certain extent, the corrugated paper tube triggers the driving assembly 7 to work. The driving assembly 7 works to push the support plate 6 to move away from the mounting plate 1. At this time, the operator turns off the driving motor 5, and the winding roller 2 stops rotating. When the support plate 6 moves to be disengaged from the rotating shaft 21, the operator can push the corrugated paper tube off the winding roller 2, reducing the situation of using disposable molds when winding corrugated paper, thereby reducing unnecessary waste and lowering the production cost of corrugated paper.

[0045] The length direction of the mounting plate 1 is arranged along the length direction of the corrugated paper. An installation hole penetrating the mounting plate 1 is formed on one of the long side side walls of the mounting plate 1. One of the rotating shafts 21 is rotatably inserted into the installation hole, and the end of the rotating shaft 21 away from the winding roller 2 is located between the vertical plate 4 and the mounting plate 1. The vertical plate 4 and the mounting plate 1 are arranged parallel to each other. A driving motor 5 is fixedly connected to the vertical plate 4, and the output shaft of the driving motor 5 is fixedly connected to the rotating shaft 21, and the output shaft of the driving motor 5 and the rotating shaft 21 are coaxially arranged.

[0046] Refer to Figure 1 and Figure 3 , the clamping member 3 includes a fixing groove 22 formed on the side wall of the winding roller 2. The length direction of the fixing groove 22 is arranged along the axial direction of the winding roller 2. A clamping plate 31 is hinged on the groove wall of one of the long sides of the fixing groove 22. A plurality of torsion springs 32 are sleeved on the hinge shaft of the clamping plate 31. The plurality of torsion springs 32 are distributed along the length direction of the clamping plate 31. One end of the torsion spring 32 is fixedly connected to the groove wall of the fixing groove 22, and the other end of the torsion spring 32 is fixedly connected to the clamping plate 31. The torsion spring 32 is always in a compressed state, so that the side of the clamping plate 31 away from its hinge shaft abuts against the corresponding groove wall of the fixing groove 22.

[0047] When it is necessary to fix the end of the corrugated paper on the winding roller 2, the operator first rotates the clamping plate 31 into the fixing groove 22, and the rotation of the clamping plate 31 causes the torsion spring 32 to deform further. When there is a gap between the clamping plate 31 and the corresponding groove wall of the fixing groove 22, the position of the clamping plate 31 is maintained, and then the end of the corrugated paper is placed in the fixing groove 22, and the end face of the corrugated paper is in contact with the bottom wall of the fixing groove 22. Finally, the clamping plate 31 is released, and the torsion spring 32 restores its deformation to make the clamping plate 31 rotate until the clamping plate 31 abuts against the corrugated paper. At this time, the torsion spring 32 is still in a compressed state, and the clamping plate 31 and the corresponding groove wall of the fixing groove 22 cooperate to fix the corrugated paper.

[0048] The length direction of the support plate 6 is arranged along the length direction of the corrugated paper. The support plate 6 includes an upper plate 61 and a lower plate 62. The upper plate 61 is located above the lower plate 62. There is an included angle between the upper plate 61 and the lower plate 62, and the included angle between the upper plate 61 and the lower plate 62 is an obtuse angle. The upper plate 61 and the mounting plate 1 are arranged parallel to each other. The lower end of the lower plate 62 is inclined towards the direction close to the mounting plate 1. A semi-circular shaft support 63 is fixedly connected to the upper surface of the upper plate 61. The shaft support 63 is coaxially arranged with the rotating shaft 21. The shaft support 63 bends downward, and the rotating shaft 21 away from the mounting plate 1 is lapped on the shaft support 63, and the rotating shaft 21 is rotationally matched with the shaft support 63.

[0049] Refer to Figure 1 , Figure 2 and Figure 4, the driving assembly 7 includes a driving plate 71 disposed between the support plate 6 and the mounting plate 1. The length direction of the driving plate 71 is arranged along the width direction of the corrugated paper, and the driving plate 71 is located below the winding roller 2. A slider 711 is fixedly connected to the side wall of the driving plate 71 close to the support plate 6. Sliding grooves 64 corresponding to the slider 711 are formed on the side walls of the upper plate 61 and the lower plate 62 close to the mounting plate 1. The sliding groove 64 on the upper plate 61 communicates with the sliding groove 64 on the lower plate 62, and the length direction of the sliding groove 64 is arranged along the height direction of the support plate 6.

[0050] A guiding member 72 is provided below the driving plate 71, and the guiding member 72 enables the driving plate 71 to slide along the height direction of the support plate 6. The guiding member 72 includes a plurality of inserting rods 721 vertically and fixedly connected to the lower surface of the mounting plate 1. The axis of the inserting rod 721 is perpendicular to the axis of the winding roller 2, and the plurality of inserting rods 721 are distributed along the length direction of the driving plate 71. A sleeve 722 is fixedly connected to the corresponding position on the ground for each inserting rod 721. The inserting rod 721 is slidably inserted into the corresponding sleeve 722. A driving spring 83 is fixedly connected to the inner bottom wall of the sleeve 722, and the upper end of the driving spring 83 is fixedly connected to the lower end surface of the inserting rod 721. When the driving spring 83 is in a natural state, the upper surface of the driving plate 71 contacts the side wall of the winding roller 2.

[0051] A support rod 65 is vertically and fixedly connected to one of the short side walls of the upper plate 61. A guiding plate 74 is also vertically and fixedly connected to the ground. The guiding plate 74 is located on one side of the driving plate 71 and on the side of the support plate 6 close to the support rod 65. The length direction of the guiding plate 74 is arranged along the width direction of the corrugated paper. A horizontal groove 7411 and a vertical groove 7412 are formed on the side wall of the guiding plate 74 close to the support rod 65. The vertical groove 7412 is located at one end of the horizontal groove 7411 away from the mounting plate 1. The horizontal groove 7411 and the vertical groove 7412 communicate to form a guiding groove 741. The end of the support rod 65 away from the support plate 6 is slidably inserted into the guiding groove 741. A groove 75 is formed on the ground, and the cross-sectional area of the groove 75 is larger than the projected area of the support plate 6 on the ground. The groove 75 is located below one end of the horizontal groove 7411 away from the driving plate 71.

[0052] When the corrugated paper is fixed, the operator starts the drive motor 5. The output shaft of the drive motor 5 rotates to drive the rotating shaft 21 and the winding roller 2 to rotate, so as to wind the corrugated paper around the winding roller 2. During the rotation of the winding roller 2, the shaft support 63 and the support plate 6 cooperate to support the rotating shaft 21 away from the mounting plate 1, so that both ends of the winding roller 2 are supported, reducing the situation that the rotating shaft 21 fixedly connected to the drive motor 5 is bent due to the increase of the corrugated paper on the winding roller 2; The winding roller 2 rotates to wind the corrugated paper into a corrugated paper tube. As the corrugated paper is gradually wound, the diameter of the corrugated paper tube gradually increases, so that the corrugated paper tube pushes the drive plate 71 to gradually move downward.

[0053] The movement of the drive plate 71 presses the insertion rod 721 to move into the sleeve 722. The movement of the insertion rod 721 compresses the support spring 73. While the drive plate 71 moves downward, it drives the slider 711 to move along the chute 64. When the drive plate 71 moves to the lower plate 62, as the drive plate 71 continues to move downward, the drive plate 71 pushes the lower plate 62 to move away from the mounting plate 1. At the same time, the support rod 65 cooperates with the horizontal groove 7411 to make the support plate 6 and the shaft support 63 move away from the mounting plate 1. During the movement of the shaft support 63, the rotating shaft 21 still rotates with the shaft support 63. When the support rod 65 moves to the position where the vertical groove 7412 is connected to the horizontal groove 7411, the support plate 6 moves above the groove 75 and the support plate 6 loses its fixation. The support plate 6 moves into the groove 75 under the action of gravity. The movement of the support plate 6 drives the support rod 65 to move along the vertical groove 7412. When the support plate 6 moves to contact the bottom wall of the groove 75, the shaft support 63 is also located in the groove 75.

[0054] Since both the support plate 6 and the shaft support 63 are located in the groove 75, at this time, the operator can conveniently pull out the wound corrugated paper tube from the winding roller 2, reducing the situation that the support plate 6 and the shaft support 63 interfere with the operator pulling out the corrugated paper tube; When pulling out the winding roller 2, the operator first pushes the clamping plate 31 into the groove 75. The clamping plate 31 rotates to further deform the torsion spring 32. When the clamping plate 31 is separated from the corrugated paper, the operator stands at one end of the corrugated paper tube close to the mounting plate 1 and pushes the corrugated paper tube away from the mounting plate 1 until the corrugated paper tube is separated from the winding roller 2.

[0055] After the corrugated paper tube is taken out, the supporting spring 73 resumes deformation and pushes the plugging rod 721 and the driving plate 71 upward until the supporting spring 73 resumes its natural state, and the driving plate 71 contacts the winding roller 2. The operator pulls the supporting plate 6 upward, and the movement of the supporting plate 6 drives the support rod 65 to slide in the vertical groove 7412. When the support rod 65 slides to the position where the vertical groove 7412 is connected to the horizontal groove 7411, the supporting plate 6 is pushed toward the mounting plate 1, so that the rotating shaft 21 is plugged into the shaft support 63, and the movement of the supporting plate 6 drives the support rod 65 to move in the horizontal groove 7411. When the support rod 65 moves to one end of the horizontal groove 7411 close to the mounting plate 1, the pushing of the supporting plate 6 is stopped.

[0056] Referring to Figure 1 , Figure 2 and Figure 5 , in order to reduce the possibility that the movement of the supporting plate 6 causes the winding roller 2 to lose support, a positioning assembly 8 for fixing the supporting plate 6 is provided on the ground. When the support rod 65 moves to one end of the horizontal groove 7411 close to the mounting plate 1, the positioning assembly 8 fixes the supporting plate 6. The positioning assembly 8 is located on the side of the supporting plate 6 away from the mounting plate 1. The positioning assembly 8 includes a mounting groove 81 opened on the ground. A driving spring 83 is fixedly connected to the bottom wall of the mounting groove 81. The upper end of the driving spring 83 is fixedly connected to a positioning block 82. The positioning block 82 is slidably plugged in the mounting groove 81, and the side wall of the positioning block 82 contacts the groove wall of the mounting groove 81. When the driving spring 83 is in its natural state, the upper end of the positioning block 82 protrudes from the ground, and the upper end of the positioning block 82 is hemispherical and bends upward.

[0057] During the process of the operator pushing the supporting plate 6 toward the mounting plate 1, when the supporting plate 6 contacts the mounting plate 1, as the operator continues to push the supporting plate 6, the supporting plate 6 presses the positioning block 82 downward. The movement of the positioning block 82 compresses the driving spring 83. When the positioning block 82 moves into the mounting groove 81, the supporting plate 6 can continue to move toward the mounting plate 1. When the support rod 65 moves to one end of the horizontal groove 7411 close to the mounting plate 1, the supporting plate 6 is separated from the positioning block 82. At this time, the driving spring 83 resumes deformation and pushes the positioning block 82 out until the driving spring 83 completely resumes deformation, and the positioning block 82 protrudes from the ground. The positioning block 82 contacts the side wall of the supporting plate 6 away from the mounting plate 1, which can fix the supporting plate 6 and reduce the situation that the supporting plate 6 moves when it is not affected by the driving plate 71 or human force.

[0058] The implementation principle of a corrugated paper processing device in an embodiment of the present application is as follows: When corrugated paper needs to be wound, an operator first clips one end of the corrugated paper between the clamping plate 31 and the corresponding groove wall of the fixed groove 22, and then starts the driving motor 5. The winding roller 2 rotates to wind the corrugated paper around the winding roller 2. As the corrugated paper on the winding roller 2 gradually increases, the corrugated paper presses the driving plate 71 to move downward. The movement of the driving plate 71 pushes the support plate 6 to move. When the support plate 6 moves into the groove 75, the operator turns off the driving motor 5 and takes out the corrugated paper tube formed by the corrugated paper from the winding roller 2.

[0059] After the corrugated paper tube is taken out, the operator pulls the support plate 6 to reset it. During the movement of the support plate 6, the support plate 6 presses the positioning block 82 to move into the installation groove 81. When the support rod 65 moves to the end of the horizontal groove 7411 close to the mounting plate 1, the support plate 6 is disengaged from contact with the fixed block, and the driving spring 83 resumes deformation and pushes the positioning block 82 to move out of the installation groove 81 until the driving spring 83 resumes deformation, and the positioning block 82 positions the support plate 6.

[0060] An embodiment of the present application also discloses a corrugated paper processing process using the above processing device.

[0061] S1. Prepare raw materials, mix various raw materials in a certain proportion, put them into a pulp cylinder after mixing, add water for pulping, and then put them into a pulper for crushing to dissociate the papermaking raw materials into fibers, and filter and screen to remove coarse fibers and impurities, thereby obtaining the original paper pulp.

[0062] S2. Add a modifier to the original paper pulp in proportion, stir well and remove moisture to make the papermaking pulp.

[0063] S3. Make the papermaking pulp into paper through a paper machine.

[0064] S4. Preheat the paper, and use a sizing machine to apply an adhesive on the surface of the paper.

[0065] S5. Compose the original paper through a corrugating machine, put the composed paper into a drying cylinder for a period of time, then take out the paper and place it in a ventilated and dry place to finally obtain corrugated paper.

[0066] S6. Use the above processing device to wind the corrugated paper to form a corrugated paper tube, and store the corrugated paper tube.

[0067] The above are all preferred embodiments of the present application. The protection scope of the present application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A corrugated paper processing device, characterized in that: It includes a winding roller (2), the length direction of the winding roller (2) is arranged along the width direction of the corrugated paper, a clamping member (3) for fixing the corrugated paper is provided on the winding roller (2), and a rotating shaft (21) is fixedly connected to both ends of the winding roller (2). A mounting plate (1) is fixedly connected to the ground, and one of the rotating shafts (21) is rotatably connected to the mounting plate (1). A vertical plate (4) is also fixedly connected to the ground, and a driving motor (5) for driving the rotating shaft (21) close to the mounting plate (1) to rotate is installed on the vertical plate (4). A support plate (6) is slidably connected to the ground, and the rotating shaft (21) away from the mounting plate (1) is lapped on the upper surface of the support plate (6). The support plate (6) moves along the axial direction of the winding roller (2), and a driving component (7) for driving the support plate (6) to move is provided between the support plate (6) and the mounting plate (1); The driving component (7) includes a driving plate (71) located between the mounting plate (1) and the support plate (6). The driving plate (71) is horizontally arranged, and a support spring (73) for supporting the driving plate (71) is connected to the lower surface of the driving plate (71). One end of the support spring (73) away from the driving plate (71) is connected to the ground. The driving plate (71) is in contact with the side wall of the winding roller (2). A slider (711) is fixedly connected to one end of the driving plate (71) close to the support plate (6). The support plate (6) includes an upper plate (61) and a lower plate (62). The upper plate (61) is located above the lower plate (62). The upper plate (61) is parallel to the side wall of the driving plate (71) close to the support plate (6). The lower end of the lower plate (62) is inclined towards the direction close to the mounting plate (1). Sliding grooves (64) are opened on the side walls of the upper plate (61) and the lower plate (62) close to the mounting plate (1). The sliding grooves (64) on the upper plate (61) and the lower plate (62) are communicated. The slider (711) is inserted into the sliding groove (64). A support rod (65) is fixedly connected to one side wall of the support plate (6). The support rod (65) is perpendicular to the winding roller (2). A guide plate (74) is fixedly connected to the ground. A horizontal groove (7411) and a vertical groove (7412) are opened on the side wall of the guide plate (74) close to the support rod (65). The vertical groove (7412) is located at one end of the horizontal groove (7411) away from the mounting plate (1). The vertical groove (7412) and the horizontal groove (7411) are communicated to form a guide groove (741). The support rod (65) is slidably inserted into the guide groove (741). A groove (75) is opened on the ground, and the groove (75) is located below the vertical groove (7412).

2. A corrugated paper processing device according to claim 1, characterized in that: A fixing groove (22) is formed in the side wall of the winding roller (2). The clamping member (3) includes a clamping plate (31). The clamping plate (31) is hinged to one of the groove walls of the fixing groove (22). A plurality of torsion springs (32) are fixedly connected to the clamping plate (31). One end of the torsion spring (32) away from the clamping plate (31) is fixedly connected to the groove wall of the fixing groove (22). The torsion spring (32) makes the clamping plate (31) abut against the corresponding groove wall of the fixing groove (22).

3. A corrugated paper processing device according to claim 1, characterized in that: A guiding member (72) for moving the driving plate (71) in the vertical direction is provided on the ground.

4. A corrugated paper processing device according to claim 3, characterized in that: The guiding member (72) includes a plurality of sleeves (722) fixedly connected to the ground. The plurality of sleeves (722) are distributed along the length direction of the driving plate (71). A plugging rod (721) is slidably inserted into the sleeve (722). The upper end of the plugging rod (721) is fixedly connected to the lower surface of the driving plate (71). The lower end of the supporting spring (73) is fixedly connected to the inner bottom wall of the sleeve (722). The upper end of the supporting spring (73) is fixedly connected to the lower end surface of the plugging rod (721).

5. A corrugated paper processing device according to claim 1, characterized in that: A shaft support (63) is fixedly connected to the upper surface of the support plate (6). The shaft support (63) is in a semi-circular ring shape and bends downward. The shaft support (63) is arranged coaxially with the rotating shaft (21).

6. A corrugated paper processing device according to claim 1, characterized in that: A positioning assembly (8) for positioning the support plate (6) is provided on the ground.

7. A corrugated paper processing device according to claim 6, characterized in that: An installation groove (81) is formed in the ground. A driving spring (83) is fixedly connected to the bottom wall of the installation groove (81). The upper end of the driving spring (83) is fixedly connected to a positioning block (82). The positioning block (82) is slidably inserted into the installation groove (81). One end of the positioning block (82) protruding from the installation groove (81) is hemispherical. The support rod (65) contacts the groove wall of the horizontal groove (7411) far away from one end of the vertical groove (7412). The positioning block (82) contacts the side wall of the support plate (6) far away from the installation plate (1).

8. A processing technology of corrugated paper, characterized in that, using the corrugated paper processing device according to any one of claims 1-7 to process corrugated paper, and the specific steps are as follows: S1. Prepare raw materials and make the raw materials into raw paper pulp; S2. Add a modifier to the raw paper pulp to make sizing pulp; S3. The sizing pulp is made into paper by a paper machine; S4. Preheat the paper and apply an adhesive on the surface of the paper by a sizing machine; S5. Compose the raw paper by a corrugating machine to form corrugated paper; S6. Use the above processing device to wind the corrugated paper to form a corrugated paper tube.

Citation Information

Patent Citations

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    CN209306629U

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