Corrugated paper aligning and straightening assembly with multi-direction adaptive adjustment function and control method of corrugated paper aligning and straightening assembly
The multi-directional adaptive corrugated paper leveling and alignment component enables bidirectional synchronous adaptation of the width and length of the corrugated paper and synchronous alignment of all four sides, solving the problems of single adaptability and poor synchronization of existing equipment, and improving the leveling accuracy and work efficiency.
Patent Information
- Application Number
- CN202512051060.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-31
- Publication Date
- 2026-02-24
AI Technical Summary
Existing corrugated paper processing auxiliary equipment suffers from problems such as single adaptability, inconsistent adjustment, and poor synchronization when adjusting width and length, resulting in insufficient alignment accuracy and poor operation continuity.
The corrugated paper leveling and alignment component adopts multi-directional adaptive adjustment, including an adjustable side leveling plate, a synchronous drive component, and an adjustable distance baffle component. It achieves bi-directional synchronous adaptation in width and length through visual adjustment, and combined with a synchronous reciprocating control component, it ensures that all four sides are synchronously level.
It achieves high-precision alignment of corrugated paper of various specifications, simplifies adjustment operations, improves work efficiency, avoids material jamming problems, and ensures continuous operation.
Smart Images

Figure CN121553758A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of corrugated paper processing auxiliary equipment, and in particular to a multi-directional adaptive adjustment corrugated paper alignment component and its control method. Background Technology
[0002] During the production, cutting, and stacking of corrugated paper, issues such as unevenness on both sides and misalignment at the front and back are prone to occur. Subsequent processes such as packaging, lamination, and printing require the corrugated paper to maintain a neat and orderly state. Therefore, it is necessary to use alignment and straightening equipment to position and straighten the corrugated paper. Most existing corrugated paper alignment equipment has a fixed specification adaptation structure, which can only accommodate corrugated paper of a single width and length. When changing the specifications of corrugated paper, it is necessary to disassemble and replace the adaptation baffle, side plate, and other components, which is cumbersome and has low adjustment efficiency. Some adjustable alignment equipment can only adjust the width or length in one direction, and cannot achieve bidirectional synchronous adaptation. Moreover, the lack of a synchronous control structure during the adjustment process can easily lead to inconsistent adjustment spacing on both sides and front and back positioning deviations, resulting in insufficient alignment accuracy. At the same time, the alignment action of existing equipment has poor coordination with the feeding and discharging actions. Untimely limit unlocking can easily cause corrugated paper to jam, affecting the continuity of processing and making it difficult to meet the high-efficiency and accurate alignment requirements of multi-specification corrugated paper.
[0003] Based on the shortcomings of the existing technology, there is an urgent need to develop a corrugated paper alignment component and control method that can achieve bidirectional visual adjustment of width and length, adapt to multiple specifications of corrugated paper, achieve high alignment accuracy and continuous operation.
[0004] Therefore, the existing technology of corrugated paper processing auxiliary equipment needs further improvement. Summary of the Invention
[0005] The purpose of this invention is to provide a multi-directional adaptive adjustment corrugated paper alignment component and its control method, which enables bidirectional synchronous adjustment of the width and length of corrugated paper of various specifications, improves alignment accuracy and work efficiency, and simplifies adjustment operations.
[0006] To achieve the above objectives, the present invention adopts the following solution:
[0007] A multi-directional adaptive corrugated paper alignment component includes an alignment base and an input conveyor belt for feeding corrugated paper onto the alignment base. Side push components are disposed on both sides of the alignment base. Each side push component has an adjustable side alignment plate that can be adjusted left and right relative to the side push component. A control component for controlling the displacement distance of the adjustable side alignment plate on the side push component is disposed between the adjustable side alignment plate and the side push component. A synchronous drive component is disposed between the two control components. A front alignment component is disposed at the rear end of the alignment base, and an adjustable distance baffle component for positioning the front end of the corrugated paper is disposed at the front end of the alignment base.
[0008] The alignment base is equipped with a synchronous reciprocating control component for synchronously controlling the reciprocating motion of the two adjustable side alignment plates and the front alignment component.
[0009] Furthermore, the side-pushing assembly includes a positioning seat disposed at the front end of the aligning base. A plurality of transverse guide grooves are provided on one side of the bottom of the positioning seat. A transverse guide rod is movably disposed in the transverse guide grooves, and a connecting vertical plate is provided between the outer ends of the plurality of transverse guide rods.
[0010] Furthermore, the adjustable side-alignment plate includes a positioning side plate body, which is provided with a plurality of transverse guide holes. The transverse guide holes are fitted onto a corresponding transverse guide rod and can move left and right.
[0011] Furthermore, the control component includes a vertical guide groove disposed on the connecting vertical plate, a lifting adjustment component is movably disposed in the vertical guide groove, a first hinge seat is disposed on the side wall of the lifting adjustment component, a second hinge seat is disposed on the positioning side plate body, and a control link is hinged between the first hinge seat and the second hinge seat.
[0012] Furthermore, the synchronous drive assembly includes a connecting frame, on which multiple vertical rails are provided, and vertical sliders are movably disposed on the vertical rails. A lifting crossbar is connected between two vertical sliders, and a transverse guide rail is provided on the lifting crossbar. A vertical extension rod is provided on the lifting adjustment component, and a transverse slider is provided at the upper end of the vertical extension rod. The transverse slider is movably installed in the transverse guide rail. A lifting drive device for controlling the up and down movement of the lifting adjustment component is provided on the connecting frame.
[0013] The horizontal guide rail is raised and lowered, thereby causing the horizontal slider to follow the rise and fall, and the horizontal slider simultaneously causes the lifting adjustment component to rise and fall.
[0014] Furthermore, the front flushing assembly includes a longitudinal guide groove disposed at the rear end of the bottom of the positioning seat, a longitudinal guide rod movably disposed within the longitudinal guide groove, and a front push-flush plate disposed at the rear end of the longitudinal guide rod.
[0015] Furthermore, the adjustable distance baffle assembly includes two transverse unlocking slide rails disposed at the front end of the positioning seat. The two transverse unlocking slide rails are symmetrically disposed on both sides of the positioning seat. A transverse unlocking slider is movably disposed on the transverse unlocking slide rail. A longitudinal adjustment track for adjusting the positioning length of the corrugated paper is disposed on the transverse unlocking slider. A longitudinal adjustment slider is movably disposed within the longitudinal adjustment track. A limit baffle is disposed on the longitudinal adjustment slider.
[0016] Furthermore, the synchronous reciprocating control component includes a central drive motor disposed on the lower surface of the positioning seat, a synchronous control disk disposed at the output end of the central drive motor, a plurality of eccentric hinge shafts evenly distributed on the circumference of the end face of the synchronous control disk, a synchronous hinge shaft disposed on each of the longitudinal guide rod and the two transverse guide rods, and a synchronous connecting rod hinged between the eccentric hinge shaft and a corresponding synchronous hinge shaft.
[0017] Furthermore, an output plate is provided at the rear end of the positioning seat, and multiple drive pulleys are evenly distributed on the upper surface of the output plate and the upper surface of the positioning seat.
[0018] One control method, which uses visual adjustment of the size of the flushing space to adapt to the flushing of corrugated paper of different specifications, includes the following steps:
[0019] S1. First, enter the target width and length parameters of the corrugated paper. These parameters control the width matching space of the two adjustable side flush plates and the length matching space of the limiting baffle and the forward push flush plate.
[0020] S2. Start the synchronous drive component. The lifting drive device drives the lifting crossbar to rise and fall. Through the horizontal guide rail, the horizontal sliding slider, and the vertical extension rod, the lifting adjustment components on both sides rise and fall synchronously. The lifting adjustment components pull the adjustable side flat plate to move horizontally along the horizontal guide rod through the control linkage. After matching the target width, it is locked to ensure that the position of the adjustable side flat plate relative to the side push component remains unchanged.
[0021] S3. Adjust the adjustable distance baffle assembly. The horizontal unlocking slider and the vertical adjustment slider move along the corresponding horizontal unlocking slide rail and vertical adjustment rail, respectively, which drives the limit baffle to move and controls the distance between it and the front push-flat plate. After matching the target length, lock it.
[0022] S4. Start the synchronous reciprocating control component. The central drive motor drives the synchronous control disc to rotate. Through the eccentric hinge shaft and synchronous connecting rod, it synchronously drives the two adjustable side flat plates to reciprocate opening and closing left and right, and pushes the flat plates forward and backward to reciprocate extension and retraction, so as to perform flattening work on the four sides of the continuously falling corrugated paper.
[0023] S5. After the alignment is completed, the limit baffle is unlocked horizontally, and the corrugated paper is sent out by the output plate via the drive pulley.
[0024] In summary, the advantages of this invention over the prior art are:
[0025] This invention addresses the shortcomings of existing corrugated paper processing auxiliary equipment. Through its structural design, it offers the following advantages: strong adaptability, enabling bidirectional adjustment of multiple corrugated paper specifications. The invention achieves width adjustment through adjustable side-alignment plates and a synchronous drive assembly, and length adjustment through an adjustable distance baffle assembly and a front alignment assembly. This eliminates the need for disassembly or replacement of components, adapting to corrugated paper of different widths and lengths, thus providing a wide range of adaptability and solving the problem of limited compatibility in existing equipment. The synchronous drive assembly ensures synchronized spacing adjustment of the adjustable side-alignment plates on both sides, avoiding unilateral deviation. The synchronous reciprocating control assembly achieves side-pushing alignment and... The front and rear push-and-align synchronous action ensures that all four sides of the corrugated paper are aligned synchronously, significantly improving alignment accuracy and solving the defects of asynchronous adjustment and insufficient accuracy in existing equipment. It allows the adjustable side alignment plate to be displaced relative to the side push component, completing the spacing adjustment after the side push component drives the adjustable side alignment plate to close, and ensuring that the adjustable side alignment plate is always consistent with the relative position of the side push component at any lateral position within the range. The adjustable distance baffle component has both positioning and unlocking functions. After the corrugated paper is aligned, it can be quickly unlocked laterally to limit the movement. It works with the drive pulley to achieve smooth material discharge and seamlessly connects with the feeding action of the input conveyor belt to ensure continuous operation and avoid material jamming problems. Attached Figure Description
[0026] Figure 1 This is one of the perspective views of the present invention;
[0027] Figure 2 This is a second perspective view of the present invention;
[0028] Figure 3 For the present invention Figure 2 A magnified view of part A;
[0029] Figure 4 For the present invention Figure 2 A magnified view of section B;
[0030] Figure 5 This is the third perspective view of the present invention;
[0031] Figure 6 This is a right view of the present invention;
[0032] Figure 7 For the present invention Figure 6 Sectional view along line CC;
[0033] Figure 8 For the present invention Figure 7 Sectional view along line DD. Detailed Implementation
[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] Please see Figures 1-8 This invention provides a multi-directional adaptive adjustable corrugated paper alignment component, including an alignment base 1 and an input conveyor belt 2 for conveying corrugated paper to the alignment base 1. Side push components 3 are provided on both sides of the alignment base 1. Each side push component 3 is equipped with an adjustable side alignment plate 4 that can be adjusted left and right relative to the side push component 3. By adjusting the displacement distance of the two adjustable side alignment plates 4, different spacings are formed when the side push components 3 are closed, thereby adapting to the positioning of different corrugated paper widths. A control mechanism is provided between the adjustable side alignment plates 4 and the side push components 3. 4. A displacement distance control component 5 on the side push assembly 3, and a synchronous drive component 6 is provided between the two control components 5. The synchronous drive component 6 can maintain the lateral displacement distance between the adjustable side alignment plate 4 and the side push assembly 3 within any lateral range, so that when the adjustable side alignment plate 4 moves left and right with the side push assembly 3, the relative position of the adjustable side alignment plate 4 on the side push assembly 3 is still maintained, and the adjustable side alignment plates 4 on both sides can be controlled to open and close synchronously. A front alignment component 7 is provided at the rear end of the straightening base 1, and an adjustable distance baffle component 8 for positioning the front end of the corrugated paper is provided at the front end of the straightening base 1.
[0036] The adjustable distance baffle assembly 8 can be set to move back and forth, and together with the front flush assembly 7, it forms a space that adapts to the length of the corrugated paper. The two adjustable side flush plates 4 can adjust the spacing and form a space that adapts to the width of the corrugated paper. At the same time, the adjustable distance baffle assembly 8 can also unlock the stacked corrugated paper limit, so that the corrugated paper can be delivered smoothly.
[0037] The alignment base 1 is provided with a synchronous reciprocating control component 9 for synchronously controlling the synchronous reciprocating motion of the two adjustable side alignment plates 4 and the front alignment component 7.
[0038] The input conveyor belt 2 transports the corrugated paper to the alignment base 1. The adjustable side-alignment plates 4 on both sides of the side-push assembly 3 adjust their spacing through the control assembly 5. The synchronous drive assembly 6 ensures that the adjustable side-alignment plates 4 on both sides adjust synchronously and remain in the same position relative to the side-push assembly 3. The front alignment assembly 7 at the rear end of the alignment base 1 and the front adjustable distance baffle assembly 8 cooperate to form a space that adapts to the length of the corrugated paper. The synchronous reciprocating control assembly 9 synchronously drives the adjustable side-alignment plates 4 to open and close repeatedly and the front alignment assembly 7 to extend and retract repeatedly, so as to achieve bidirectional alignment of the width and length of the corrugated paper. After completion, the adjustable distance baffle assembly 8 is unlocked and the corrugated paper is successfully delivered.
[0039] The side-pushing assembly 3 of the present invention includes a positioning seat 301 disposed at the front end of the aligning base 1. A plurality of transverse guide grooves 302 are provided on one side of the bottom of the positioning seat 301. A transverse guide rod 303 is movably disposed in the transverse guide groove 302. A connecting vertical plate 304 is disposed between the outer ends of the plurality of transverse guide rods 303. The positioning seat 301 of the side-pushing assembly 3 is fixed to the front end of the aligning base 1. The transverse guide grooves 302 at the bottom of the positioning seat 301 provide transverse movement guidance for the transverse guide rods 303. The connecting vertical plate 304 connects the plurality of transverse guide rods 303 into one unit, ensuring that the plurality of transverse guide rods 303 move back and forth synchronously, providing stable support and a moving track for the adjustable side-aligning plate 4.
[0040] The adjustable side-alignment plate 4 of the present invention includes a positioning side plate body 401. The positioning side plate body 401 is provided with a plurality of transverse guide holes 402. The transverse guide holes 402 are sleeved on a corresponding transverse guide rod 303 and can move left and right. The positioning side plate body 401 of the adjustable side-alignment plate 4 is sleeved on the transverse guide rod 303 through the transverse guide holes 402. The positioning side plate body 401 can slide left and right along the transverse guide rod 303 to adjust the distance between the two positioning side plate bodies 401 and adapt to corrugated paper of different widths.
[0041] The control component 5 of the present invention includes a vertical guide groove 501 disposed on the connecting vertical plate 304. A lifting adjustment component 502 is movably disposed within the vertical guide groove 501. A first hinge seat 503 is disposed on the side wall of the lifting adjustment component 502. A second hinge seat 504 is disposed on the positioning side plate body 401. A control connecting rod 505 is hinged between the first hinge seat 503 and the second hinge seat 504. The lifting adjustment component 502 of the control component 5 moves up and down along the vertical guide groove 501 on the connecting vertical plate 304. The lifting adjustment component 502 drives the connecting rod 505 to move through the first hinge seat 503. The other end of the connecting rod 505 pulls the positioning side plate body 401 to slide along the transverse guide rod 303 through the second hinge seat 504, thereby converting the lifting motion of the lifting adjustment component 502 into the transverse movement of the positioning side plate body 401, achieving precise spacing control.
[0042] The synchronous drive assembly 6 of the present invention includes a connecting frame 601, on which a plurality of vertical rails 6010 are provided. Vertical sliders 602 are movably disposed on the vertical rails 6010. A lifting crossbar 603 is connected between two vertical sliders 602. A transverse guide rail 6030 is provided on the lifting crossbar 603. A vertical extension rod 604 is provided on the lifting adjustment member 502. A transverse slider 605 is provided at the upper end of the vertical extension rod 604. The transverse slider 605 is movably installed in the transverse guide rail 6030. A lifting drive device 606 for controlling the up and down movement of the lifting adjustment member 502 is provided on the connecting frame 601.
[0043] The horizontal guide rail 6030 is raised and lowered, thereby driving the horizontal slider 605 to rise and fall accordingly. The horizontal slider 605 simultaneously drives the lifting adjustment component 502 to rise and fall. Since the lifting adjustment component 502 will move left and right along with the connecting vertical plate 304, the horizontal guide rail 6030 provides space for the horizontal slider 605 to move laterally. The horizontal guide rail 6030 cannot interfere with the horizontal slider 605 to move left and right relative to the horizontal guide rail 6030, but the horizontal guide rail 6030 can control the horizontal slider 605 at any horizontal position to rise and fall synchronously.
[0044] The lifting drive device 606 of the synchronous drive assembly 6 drives the lifting crossbar 603 to rise and fall along the vertical track 6010 of the connecting frame 601. The transverse guide rail 6030 on the lifting crossbar 603 drives the transverse slider 605 to rise and fall synchronously. The transverse slider 605 drives the lifting adjustment component 502 to rise and fall through the vertical extension rod 604. At the same time, the transverse guide rail 6030 provides transverse displacement space for the transverse slider 605, ensuring that the side push assembly 3 drives the lifting adjustment component 502 to move laterally without interference, and realizes the synchronous adjustment of the adjustable side level plates 4 on both sides.
[0045] The front alignment component 7 of the present invention includes a longitudinal guide groove 701 disposed at the rear end of the bottom of the positioning seat 301, a longitudinal guide rod 702 movably disposed in the longitudinal guide groove 701, and a front push alignment plate 703 disposed at the rear end of the longitudinal guide rod 702; the longitudinal guide groove 701 of the front alignment component 7 provides longitudinal movement guidance for the longitudinal guide rod 702, the longitudinal guide rod 702 drives the front push alignment plate 703 at the front end to move back and forth, and the front push alignment plate 703 cooperates with the adjustable distance baffle assembly 8 to push the front and rear end surfaces of the corrugated paper to be aligned.
[0046] The adjustable distance baffle assembly 8 of the present invention includes two transverse unlocking slide rails 801 disposed at the front end of the positioning base 301. The two transverse unlocking slide rails 801 are symmetrically disposed on both sides of the positioning base 301. A transverse unlocking slider 802 is movably disposed on the transverse unlocking slide rail 801. A longitudinal adjusting track 803 for adjusting the positioning length of the corrugated paper is disposed on the transverse unlocking slider 802. A longitudinal adjusting slider 804 is movably disposed within the longitudinal adjusting track 803. A limit baffle 805 is disposed on the longitudinal adjusting slider 804. The limit baffle 805 cooperates with the reciprocating motion of the forward pushing flat plate 703. The movement causes the corrugated paper continuously falling onto the positioning seat 301 to achieve front and back surface alignment. By adjusting the distance between the limiting baffle 805 and the forward-pushing aligning plate 703, it can adapt to the front and back alignment of corrugated paper of different lengths. The lateral unlocking slider 802 of the adjustable distance baffle assembly 8 slides laterally along the lateral unlocking slide rail 801, and the longitudinal adjustment slider 804 slides back and forth along the longitudinal adjustment track 803, thereby driving the limiting baffle 805 to adjust its front and back position to adapt to corrugated paper of different lengths. After the corrugated paper is aligned, the lateral unlocking slider 802 drives the limiting baffle 805 to slide laterally, releasing the restriction on the corrugated paper.
[0047] The synchronous reciprocating control component 9 of the present invention includes a central drive motor 901 disposed on the lower surface of the positioning seat 301. A synchronous control disk 903 is disposed at the output end of the central drive motor 901. A plurality of eccentric hinge shafts 904 are evenly distributed around the end face of the synchronous control disk 903. A synchronous hinge shaft 905 is disposed on each of the longitudinal guide rod 702 and the two transverse guide rods 303. A synchronous connecting rod 9 is hinged between each eccentric hinge shaft 904 and a corresponding synchronous hinge shaft 905. 06; The central drive motor 901 of the synchronous reciprocating control component 9 drives the synchronous control disk 903 to rotate. The eccentric hinge shaft 904 on the synchronous control disk 903 is connected to the synchronous hinge shaft 905 on the longitudinal guide rod 702 and the transverse guide rod 303 respectively through the synchronous connecting rod 906, so as to convert the rotational motion of the synchronous control disk 903 into the longitudinal reciprocating motion of the longitudinal guide rod 702 and the transverse reciprocating motion of the transverse guide rod 303, thereby realizing the synchronous drive of the adjustable side level plate 4 and the front level component 7.
[0048] The positioning base 301 of the present invention is provided with an output plate 100 at its rear end. Multiple drive pulleys 200 are evenly distributed on the upper surface of the output plate 100 and the upper surface of the positioning base 301. The output plate 100 at the rear end of the positioning base 301 and the drive pulleys 200 on the upper surface of the positioning base 301 reduce the friction between the corrugated paper and the contact surface of the equipment. After the corrugated paper is aligned, it is smoothly conveyed to the output plate 100 and enters the next process with the assistance of the drive pulleys 200.
[0049] One control method, which uses visual adjustment of the size of the flushing space to adapt to the flushing of corrugated paper of different specifications, includes the following steps:
[0050] S1. First, input the target width and length parameters of the corrugated paper. These parameters control the width adaptation space of the two adjustable side flat plates 4 and the length adaptation space of the limiting baffle 805 and the forward push flat plate 703.
[0051] S2. Start the synchronous drive component 6. The lifting drive device 606 drives the lifting crossbar 603 to rise and fall. Through the horizontal guide rail 6030, the horizontal sliding slider 605, and the vertical extension rod 604, the lifting adjustment components 502 on both sides rise and fall synchronously. The lifting adjustment component 502 pulls the adjustable side level plate 4 to move horizontally along the horizontal guide rod 303 through the control link 505. After matching the target width, it is locked to ensure that the position of the adjustable side level plate 4 relative to the side push component 3 remains unchanged.
[0052] S3. Adjust the adjustable distance baffle assembly 8. The horizontal unlocking slider 802 and the vertical adjustment slider 804 move along the corresponding horizontal unlocking slide rail 801 and vertical adjustment track 803, respectively, driving the limit baffle 805 to move and controlling the distance between it and the forward push-flat plate 703. After matching the target length, lock it.
[0053] S4. Start the synchronous reciprocating control component 9. The central drive motor 901 drives the synchronous control disc 903 to rotate. Through the eccentric hinge shaft 904 and the synchronous connecting rod 906, the two adjustable side flat plates 4 are synchronously driven to open and close left and right, and the forward push flat plate 703 is pushed back and forth to extend and retract, so as to perform the flat work of the four sides of the continuously falling corrugated paper.
[0054] S5. After the alignment is completed, the limit baffle 805 is unlocked laterally, and the corrugated paper is sent out by the output plate 100 via the drive pulley 200.
[0055] The foregoing has shown and described the basic principles and main features of the present invention, as well as its advantages. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the present invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A multi-directional adaptive corrugated paper alignment component, comprising an alignment base (1) and an input conveyor belt (2) for conveying corrugated paper to the alignment base (1), characterized in that: A side push assembly (3) is provided on each side of the straightening base (1). An adjustable side level plate (4) is provided on the side push assembly (3) and can be adjusted to the left and right position relative to the side push assembly (3). A control assembly (5) for controlling the displacement distance of the adjustable side level plate (4) on the side push assembly (3) is provided between the adjustable side level plate (4) and the side push assembly (3). A synchronous drive assembly (6) is provided between the two control assemblies (5). A front level assembly (7) is provided at the rear end of the straightening base (1). An adjustable distance baffle assembly (8) for positioning the front end of the corrugated paper is provided at the front end of the straightening base (1). The alignment base (1) is provided with a synchronous reciprocating control component (9) for synchronously controlling the synchronous reciprocating motion of the two adjustable side alignment plates (4) and the front alignment component (7).
2. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 1, characterized in that: The side-pushing assembly (3) includes a positioning seat (301) disposed at the front end of the positioning base (1). A plurality of transverse guide grooves (302) are provided on one side of the bottom of the positioning seat (301). A transverse guide rod (303) is movably disposed in the transverse guide groove (302). A connecting vertical plate (304) is provided between the outer ends of the plurality of transverse guide rods (303).
3. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 2, characterized in that: The adjustable side plate (4) includes a positioning side plate body (401), and the positioning side plate body (401) is provided with a plurality of transverse guide holes (402). The transverse guide holes (402) are sleeved on a corresponding transverse guide rod (303) and can move left and right.
4. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 3, characterized in that: The control component (5) includes a vertical guide groove (501) disposed on the connecting vertical plate (304), a lifting adjustment component (502) is disposed vertically in the vertical guide groove (501), a first hinge seat (503) is disposed on the side wall of the lifting adjustment component (502), a second hinge seat (504) is disposed on the positioning side plate body (401), and a control link (505) is hinged between the first hinge seat (503) and the second hinge seat (504).
5. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 4, characterized in that: The synchronous drive assembly (6) includes a connecting frame (601), on which multiple vertical rails (6010) are provided. Vertical sliders (602) are movably arranged on the vertical rails (6010). A lifting crossbar (603) is connected between two vertical sliders (602). A transverse guide rail (6030) is provided on the lifting crossbar (603). A vertical extension rod (604) is provided on the lifting adjustment component (502). A transverse slider (605) is provided at the upper end of the vertical extension rod (604). The transverse slider (605) is movably installed in the transverse guide rail (6030). A lifting drive device (606) for controlling the up and down movement of the lifting adjustment component (502) is provided on the connecting frame (601). The horizontal guide rail (6030) is raised and lowered, thereby driving the horizontal slider (605) to follow the rise and fall. The horizontal slider (605) simultaneously drives the lifting adjustment component (502) to rise and fall.
6. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 5, characterized in that: The front flushing component (7) includes a longitudinal guide groove (701) disposed at the rear end of the bottom of the positioning seat (301), a longitudinal guide rod (702) movably disposed in the longitudinal guide groove (701), and a front push flushing plate (703) disposed at the rear end of the longitudinal guide rod (702).
7. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 6, characterized in that: The adjustable distance baffle assembly (8) includes two transverse unlocking slide rails (801) disposed at the front end of the positioning seat (301). The two transverse unlocking slide rails (801) are symmetrically disposed on both sides of the positioning seat (301). A transverse unlocking slider (802) is movably disposed on the transverse unlocking slide rail (801). A longitudinal adjustment track (803) for adjusting the positioning length of the corrugated paper is disposed on the transverse unlocking slider (802). A longitudinal adjustment slider (804) is movably disposed in the longitudinal adjustment track (803). A limit baffle (805) is disposed on the longitudinal adjustment slider (804).
8. The multi-directional adaptive adjustment corrugated paper alignment component according to claim 7, characterized in that: The synchronous reciprocating control component (9) includes a central drive motor (901) disposed on the lower surface of the positioning seat (301). A synchronous control disk (903) is disposed at the output end of the central drive motor (901). A plurality of eccentric hinge shafts (904) are evenly distributed around the end face of the synchronous control disk (903). A synchronous hinge shaft (905) is disposed on each of the longitudinal guide rod (702) and the two transverse guide rods (303). A synchronous connecting rod (906) is hinged between the eccentric hinge shaft (904) and a corresponding synchronous hinge shaft (905).
9. A multi-directional adaptive adjustment corrugated paper alignment component according to claim 8, characterized in that: The positioning seat (301) has an output plate (100) at its rear end, and multiple drive pulleys (200) are evenly distributed on the upper surface of the output plate (100) and the upper surface of the positioning seat (301).
10. A control method for the corrugated paper alignment component according to claim 9, characterized in that, The specific steps for visually adjusting the size of the alignment space to fit different sizes of corrugated paper are as follows: S1. First, input the target width and length parameters of the corrugated paper. These parameters control the width adaptation space of the two adjustable side flat plates (4), the length adaptation space of the limiting baffle (805) and the forward push flat plate (703). S2. Start the synchronous drive assembly (6). The lifting drive device (606) drives the lifting crossbar (603) to rise and fall. Through the horizontal guide rail (6030), the horizontal sliding slider (605), and the vertical extension rod (604), the lifting adjustment parts (502) on both sides rise and fall synchronously. The lifting adjustment parts (502) pull the adjustable side level plate (4) to move horizontally along the horizontal guide rod (303) through the control link (505). After matching the target width, it is locked to ensure that the position of the adjustable side level plate (4) relative to the side push assembly (3) remains unchanged. S3. Adjust the adjustable distance baffle assembly (8). The horizontal unlocking slider (802) and the vertical adjustment slider (804) move along the corresponding horizontal unlocking slide rail (801) and vertical adjustment track (803) respectively, driving the limit baffle (805) to move and control the distance between it and the front push flat plate (703). After matching the target length, lock it. S4. Start the synchronous reciprocating control component (9). The central drive motor (901) drives the synchronous control disc (903) to rotate. Through the eccentric hinge shaft (904) and synchronous connecting rod (906), the two adjustable side flat plates (4) are synchronously driven to open and close left and right, and the forward push flat plate (703) is pushed back and forth to extend and retract, so as to perform flat work on the four sides of the continuously falling corrugated paper. S5. After the alignment is completed, the limit baffle (805) is unlocked laterally, and the corrugated paper is sent out by the output plate (100) via the drive pulley (200).