Plane paper rotating mechanism suitable for paper financial products
By using a rotary displacement mechanism for paper financial products, the waste edges on both sides are centrally removed, solving the problems of large footprint and high cost in paper financial product production lines, and achieving efficient utilization of equipment and reduced failure rate.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING AREOSTANARD NEW TECH
- Filing Date
- 2025-02-18
- Publication Date
- 2026-05-12
AI Technical Summary
Existing paper-based financial product production lines occupy a large area, have high equipment costs, and have a high equipment failure rate, especially in space-constrained locations where layout is inflexible.
A planar paper rotation mechanism is used to remove waste edges from both sides by rotating and repositioning the paper, reducing the number of cutting blades. The planar rotation mechanism rotates the paper 90° and 180° to remove waste edges.
It saves production line floor space, reduces equipment costs and failure rates, simplifies production line changeover and adaptation, and reduces debugging difficulty.
Smart Images

Figure CN224224034U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of large-sheet conveying technology for paper financial products, specifically to a planar paper rotation mechanism suitable for paper financial products. Background Technology
[0002] The current paper financial product printing industry adopts a "one-to-two" production method, that is, one cutting line is matched with two quality inspection and sorting machines. Although this can meet the needs of the production process, it has the problem of inflexible layout for manufacturers with limited space. In the field of paper financial products, banknotes have cutting edges on both sides, which need to be removed by cutting boxes. The traditional cutting mechanism is a three-sided cutting box mechanism, which occupies a large area and is expensive. Summary of the Invention
[0003] To address the shortcomings of existing technologies, this utility model provides a planar paper rotation mechanism suitable for paper-based financial products. While meeting production capacity requirements, it changes the original edge trimming method. By rotating and repositioning the paper, all waste edges on both sides of the travel direction are cut off through a single cutting blade box. This saves the production line floor space and reduces the number of cutting blade boxes to one, thereby reducing the overall equipment cost and quantity. At the same time, it also reduces the equipment failure rate.
[0004] This utility model provides a planar paper rotation mechanism suitable for paper financial products. The planar paper rotation mechanism is installed on the support frame of a paper financial product trimming production line. The paper financial product trimming production line includes a paper feeding device, a conveying panel, a paper walking power shaft, a cutting knife box, and an X-axis paper pushing mechanism. The planar paper rotation mechanism includes: a planar rotation mechanism support frame and a lower follower rotary disk mechanism. The planar rotation mechanism support frame is installed on the support frame of the production line and connected to the paper walking power shaft. The lower follower rotary disk mechanism is installed on the support frame of the production line and is higher than the conveying panel. The planar rotation mechanism support frame is equipped with a paper financial product conveying pressure strip, an upper rotating pressure plate mechanism, and a rotation lifting mechanism.
[0005] After the main equipment on the paper financial product edge trimming production line is powered on, the paper financial product is conveyed to the flat paper rotating mechanism through the paper feeding device. The upper rotating pressure plate mechanism is lowered to the surface of the paper financial product and pressed by the rotating lifting mechanism. The paper feeding device is moved out of the rotation range. The upper rotating pressure plate mechanism is started to rotate 90° counterclockwise to trim the right side. The upper rotating pressure plate mechanism is raised by the rotating lifting mechanism. The paper financial product is pushed to the cutting knife box for waste edge removal by the paper walking power shaft.
[0006] After cutting off the waste edge on the right side, the paper financial product is pulled back to the rotating position by the paper walking power shaft. The upper rotating pressure plate mechanism is lowered to the surface of the paper financial product and pressed down by the rotating lifting mechanism. The paper walking power shaft is moved out of the rotation range. The upper rotating pressure plate mechanism is started to rotate 180° clockwise to cut the left side. The upper rotating pressure plate mechanism is raised by the rotating lifting mechanism. The paper financial product is pushed to the cutting knife box by the paper walking power shaft for waste edge removal.
[0007] After the left waste edge is cut off, the paper financial product is pulled back to the rotating position by the paper walking power shaft. The upper rotating pressure plate mechanism is lowered to the surface of the paper financial product and pressed down by the rotating lifting mechanism. The paper walking power shaft is moved out of the rotation range. The upper rotating pressure plate mechanism is started to rotate 90° counterclockwise and return to the normal conveying position. The upper rotating pressure plate mechanism is raised by the rotating lifting mechanism. The subsequent strip cutting work is carried out by the X-axis paper pushing mechanism.
[0008] Preferably, the planar rotating mechanism support frame is connected to the production line support frame by locking bolts, and the two frames are welded together after debugging; the planar rotating mechanism support frame is made of solid carbon structural steel.
[0009] Preferably, the planar rotating mechanism support frame includes: a vertical connecting column, an upper horizontal connecting beam, a lower horizontal connecting beam, a guide rail mounting plate, and a cylinder mounting plate. The vertical connecting column connects to the support frame of the production line and forms a frame structure with the upper horizontal connecting beam and the lower horizontal connecting beam. The guide rail mounting plate and the cylinder mounting plate are mounted on the frame structure. The upper rotating pressure plate mechanism and the rotating lifting mechanism are mounted on the guide rail mounting plate.
[0010] Preferably, the paper financial product conveying strip is placed on the surface of the paper financial product to prevent curling or warping of the edges during rotation and conveying. The paper financial product conveying strip includes: a mechanism mounting plate, a lifting cylinder, a right-angle connector, and a stainless steel strip. The mechanism mounting plate is mounted on the planar rotating mechanism support frame, the lifting cylinder is mounted on the mechanism mounting plate, one side of the right-angle connector is connected to the output end of the lifting cylinder, and the other side of the right-angle connector is connected to the stainless steel strip. The stainless steel strip contacts the paper financial product. When the paper financial product passes by, the lifting cylinder extends, causing the stainless steel strip to descend and make slight contact with the paper financial product.
[0011] Preferably, the lower follower rotary disk mechanism includes: a rotary disk connecting base plate, a lower rotary disk, and a load-bearing angular contact bearing. The rotary disk connecting base plate is mounted on the support frame of the production line, and the load-bearing angular contact bearing is mounted on the rotary disk connecting base plate. The machining clearance of the rotary disk connecting base plate ensures the fit between the two. The lower rotary disk is mounted on the load-bearing angular contact bearing.
[0012] Preferably, the upper rotating pressure plate mechanism includes: a lifting guide rail slider, a rotating frame, a servo motor, a cycloidal reducer, and an upper pressure plate. The servo motor is connected to the cycloidal reducer to provide rotational power. The end of the cycloidal reducer is connected to the upper pressure plate, which transmits the rotational power to the paper financial product to realize the rotation of the paper financial product. The lifting guide rail slider is connected to the rotating frame, and the rotating frame is connected to the rotating lifting mechanism. The upper pressure plate has openings on its surface and is flat.
[0013] Preferably, the rotary lifting mechanism includes: a lifting cylinder, a cylinder connecting seat, a cylinder front end shaft connector, and a connecting seat. The connecting seat is installed on the back of the rotary frame. The cylinder front end shaft connector is connected to the connecting seat. The lifting cylinder is connected to the cylinder front end shaft connector. The lifting cylinder controls the lifting and pressing actions of the rotary frame. The air intake and pressing force are adjusted by the exhaust throttle valve and the air control valve at the two air inlets of the lifting cylinder.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0015] This invention utilizes the planar rotation of paper to redirect the waste edges that would otherwise require cutting on both sides to the direction of product travel, significantly saving production line floor space. The rotation also eliminates the need for mechanisms that require adjusting the width of both sides to accommodate various products, greatly reducing on-site production line changeover work; it can be accomplished simply by switching control modes. This planar paper rotation mechanism eliminates the need for side-cutting devices, reducing debugging difficulty and the overall production line failure rate. Attached Figure Description
[0016] Figure 1 A schematic diagram (left top view) of a planar paper rotating mechanism (suitable for paper-based financial products) provided by this utility model;
[0017] Figure 2 A schematic diagram (top right view) of a planar paper rotating mechanism (suitable for paper-based financial products) provided by this utility model;
[0018] Figure 3 A schematic diagram of a production line for a planar paper rotating mechanism suitable for paper financial products provided by this utility model;
[0019] Figure 4 A schematic diagram of the structural support frame for the planar rotation mechanism provided by this utility model;
[0020] Figure 5 A schematic diagram of the structure of the paper financial product conveying strip (left top view) provided by this utility model;
[0021] Figure 6 A schematic diagram of the structure of the paper financial product conveying strip (right side) provided by this utility model;
[0022] Figure 7 A schematic diagram of the structure of the lower follower rotating disk (left top view) provided by this utility model;
[0023] Figure 8 A schematic diagram of the structure of the lower follower rotating disk (right side) provided by this utility model;
[0024] Figure 9 This is a schematic diagram of the upper rotating pressure plate mechanism provided by this utility model;
[0025] Figure 10 A schematic diagram of the rotary lifting mechanism provided by this utility model;
[0026] In the diagram: 1-Planar rotating mechanism support frame; 2-Paper financial product conveying strip; 3-Lower follower rotary disk; 4-Upper rotating pressure plate mechanism; 5-Rotary lifting mechanism; 101-Vertical connecting column; 102-Upper horizontal connecting beam; 103-Lower horizontal connecting beam; 104-Guide rail mounting plate; 105-Cylinder mounting plate; 201-Mechanism mounting plate; 202-Lifting cylinder; 203-Right angle connector; 204-Stainless steel pressure strip; 301-Rotary disk connecting base plate; 3 02-Load-bearing angular contact bearing; 303-Lower rotary disk; 401-Lifting guide rail slider; 402-Rotating frame; 403-Servo motor; 404-Cycloidal reducer; 405-Upper disc; 501-Lifting cylinder; 502-Cylinder connecting seat; 503-Cylinder front end shaft joint; 504-Connecting seat; 6-Planar paper rotation mechanism; 7-Support frame of production line; 8-Paper feeding device; 9-Conveying panel; 10-Paper walking power shaft; 11-Strip cutting box. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0028] This invention is a novel planar paper rotation mechanism, particularly for the rotation of paper financial products. Combined with a cutting box mechanism, it removes the waste edges of the financial products, changing the traditional method of three-sided cutting box waste edge removal and providing a completely new way to remove waste edges along the cutting line.
[0029] The present invention will now be described in further detail with reference to the accompanying drawings.
[0030] like Figures 1-3 As shown, this utility model embodiment provides a planar paper rotation mechanism suitable for paper financial products. The planar paper rotation mechanism 6 is installed on the support frame 7 of the paper financial product trimming production line. The paper financial product trimming production line includes a paper feeding device 8, a conveying panel 9, a paper walking power shaft 10, a cutting knife box 11, and an X-axis paper pushing mechanism. The planar paper rotation mechanism 6 includes: a planar rotation mechanism support frame 1 and a lower follower rotating disk mechanism 3. The planar rotation mechanism support frame 1 is installed on the support frame 7 of the production line and is connected to the paper walking power shaft 10. The lower follower rotating disk mechanism 3 is installed on the support frame 7 of the production line and is higher than the conveying panel. The planar rotation mechanism support frame 1 is equipped with a paper financial product conveying pressure strip 2, an upper rotating pressure plate mechanism 4, and a rotating lifting mechanism 5.
[0031] After the main equipment on the paper financial product edge trimming production line is powered on, the paper financial product is conveyed to the flat paper rotating mechanism 6 through the paper feeding device 8. The upper rotating pressure plate mechanism 4 is lowered to the surface of the paper financial product and pressed by the rotating lifting mechanism 5. The paper feeding device 8 is moved out of the rotation range, and the upper rotating pressure plate mechanism 4 is started to rotate 90° counterclockwise to trim the right side. The upper rotating pressure plate mechanism 4 is raised by the rotating lifting mechanism 5, and the paper financial product is pushed to the cutting knife box 11 for waste edge removal through the paper walking power shaft 10.
[0032] After cutting off the waste edge on the right side, the paper financial product is pulled back to the rotating position by the paper walking power shaft 10. The upper rotating pressure plate mechanism 4 is lowered to the surface of the paper financial product and pressed by the rotating lifting mechanism 5. The paper walking power shaft 10 is moved out of the rotation range. The upper rotating pressure plate mechanism 4 is started to rotate 180° clockwise to cut the left side. The upper rotating pressure plate mechanism 4 is raised by the rotating lifting mechanism 5. The paper financial product is pushed to the cutting knife box 11 by the paper walking power shaft 10 for waste edge removal.
[0033] After cutting off the waste edge on the left side, the paper financial product is pulled back to the rotating position by the paper walking power shaft 10. The upper rotating pressure plate mechanism 4 is lowered to the surface of the paper financial product and pressed by the rotating lifting mechanism 5. The paper walking power shaft 10 is moved out of the rotating range. The upper rotating pressure plate mechanism 4 is started to rotate 90° counterclockwise and return to the normal conveying position. The upper rotating pressure plate mechanism 4 is raised by the rotating lifting mechanism 5. The subsequent strip cutting work is carried out by the X-axis paper pushing mechanism.
[0034] like Figure 4 As shown in the embodiment of this utility model, the planar rotating mechanism support frame 1 and the production line support frame 7 are connected by locking bolts. After debugging, the two frames are welded together to ensure that no vibration or other unnecessary movements occur during equipment use. The planar rotating mechanism support frame 1 is made of solid carbon structural steel. The planar rotating mechanism support frame 1 includes: a vertical connecting column 101, an upper horizontal connecting beam 102, a lower horizontal connecting beam 103, a guide rail mounting plate 104, and a cylinder mounting plate 105. The vertical connecting column 101 connects to the production line support frame and forms a frame structure with the upper horizontal connecting beam 102 and the lower horizontal connecting beam 103. The guide rail mounting plate 104 and the cylinder mounting plate 105 are mounted on this frame structure. The upper rotating pressure plate mechanism 4 and the rotating lifting mechanism 5 are mounted on the guide rail mounting plate 104.
[0035] like Figures 5-6 As shown in the embodiment of this utility model, the paper financial product conveying strip 2 is placed on the surface of the paper financial product to prevent the paper financial product from curling or warping during rotation and conveying. The paper financial product conveying strip 2 includes: a mechanism mounting plate 201, a lifting cylinder 202, a right-angle connector 203, and a stainless steel strip 204. The mechanism mounting plate 201 is mounted on the planar rotating mechanism support frame 1, the lifting cylinder 202 is mounted on the mechanism mounting plate 201, one side of the right-angle connector 203 is connected to the output end of the lifting cylinder 202, and the other side of the right-angle connector 203 is connected to the stainless steel strip 204. The stainless steel strip 204 contacts the paper financial product. When the paper financial product passes by, the lifting cylinder 202 extends, causing the stainless steel strip 204 to descend and make slight contact with the paper financial product.
[0036] like Figures 7-8As shown in the embodiment of this utility model, the lower follower rotary disk mechanism 3 includes: a rotary disk connecting base plate 301, a lower rotary disk 302, and a load-bearing angular contact bearing 303. The rotary disk connecting base plate 301 is installed on the support frame of the production line, and the load-bearing angular contact bearing 303 is installed on the rotary disk connecting base plate 301. The machining gap of the rotary disk connecting base plate 301 ensures the fit between the two. The lower rotary disk 302 is installed on the load-bearing angular contact bearing 303. It is necessary to ensure that the friction force of the follower rotation is not greater than the friction force of the paper surface itself, and to ensure the running space between each component. The lower follower rotary disk mechanism 3 is used to assist the rotation during the rotation of the upper rotary pressure plate. The lower follower rotary disk mechanism 3 is installed on the support frame of the production line and is part of the conveying panel. The lower follower rotary disk mechanism 3 is slightly higher than the conveying panel. It is necessary to ensure the smooth rotation of the paper financial products and the smoothness of the paper conveying before and after rotation, and to avoid the financial paper curling or warping.
[0037] like Figure 9 As shown in the embodiment of this utility model, the upper rotating pressure plate mechanism 4 includes: a lifting guide rail slider 401, a rotating frame 402, a servo motor 403, a cycloidal reducer 404, and an upper pressure plate 405. The servo motor 403 is connected to the cycloidal reducer 404 to provide rotational power. The end of the cycloidal reducer 404 is connected to the upper pressure plate 405, and the rotational power is transmitted to the paper financial product through the upper pressure plate 405 to realize the rotational action of the paper financial product. The lifting guide rail slider 401 is connected to the rotating frame 402, and the rotating frame 402 is connected to the rotating lifting mechanism 5. The upper pressure plate 405 has openings on its surface and the surface is flat.
[0038] like Figure 10 As shown in the embodiment of this utility model, the rotary lifting mechanism 5 includes: a lifting cylinder 501, a cylinder connecting seat 502, a cylinder front shaft connector 503, and a connecting seat 504. The connecting seat 504 is installed on the back of the rotary frame 402. The cylinder front shaft connector 503 is connected to the connecting seat 504. The lifting cylinder 501 is connected to the cylinder front shaft connector 503. The lifting cylinder 501 controls the lifting and pressing actions of the rotary frame 402. The air intake volume and pressing force are adjusted by the exhaust throttle valve and the air control valve at the two air inlets of the lifting cylinder 501.
[0039] Combination Figures 1-10 The planar paper rotating mechanism of this utility model embodiment is specifically used for:
[0040] After the main equipment on the paper financial product edge trimming production line is powered on, the paper financial product is conveyed to the flat paper rotating mechanism through the paper feeding device. The upper rotating pressure plate mechanism 4 is lowered to the surface of the paper financial product and pressed by the lifting cylinder 501 of the rotating lifting mechanism 5. The paper feeding device is moved out of the rotation range. The servo motor 403 of the upper rotating pressure plate mechanism 4 is started, which drives the upper pressure plate 405 to rotate 90° counterclockwise, so that the right side of the paper financial product faces forward. The upper rotating pressure plate mechanism 4 is raised by the lifting cylinder 501. The paper financial product is pushed to the cutting knife box for waste edge trimming through the paper walking power shaft.
[0041] After the waste edge on the right side is cut off, the paper financial product is pulled back to the rotating position by the paper walking power shaft. The upper rotating pressure plate mechanism 4 is lowered to the surface of the paper financial product and pressed by the lifting cylinder 501 of the rotating lifting mechanism 5. The paper walking power shaft is moved out of the rotation range. The servo motor 403 of the upper rotating pressure plate mechanism 4 is started, which drives the upper pressure plate 405 to rotate 180° clockwise, so that the left side of the paper financial product faces forward. The upper rotating pressure plate mechanism 4 is raised by the lifting cylinder 501. The paper financial product is pushed to the cutting knife box for waste edge removal by the paper walking power shaft.
[0042] After the left waste edge is cut off, the paper financial product is pulled back to the rotating position by the paper walking power shaft. The upper rotating pressure plate mechanism 4 is lowered to the surface of the paper financial product and pressed by the lifting cylinder 501 of the rotating lifting mechanism 5. The paper walking power shaft is moved out of the rotation range. The servo motor 403 of the upper rotating pressure plate mechanism 4 is started, which drives the upper pressure plate 405 to rotate 90° counterclockwise and return to the normal conveying position. The upper rotating pressure plate mechanism 4 is raised by the lifting cylinder 501, and the subsequent strip cutting work is carried out by the X-axis paper pushing mechanism.
[0043] As a novel production method for cutting lines, the flat paper rotating mechanism provided by this utility model is the core mechanism of a "one-to-one" production line. Large sheets of financial paper are manually loaded and then conveyed to the working area of the flat paper rotating mechanism via a conveyor. The flat paper rotating mechanism rotates and repositions the product, achieving the removal of waste edges on both sides, thus saving on the number of cutter boxes and reducing the floor space required. Existing flat rotating support frames are relatively unstable vertical frames on a standalone flat paper rotating mechanism. However, due to the presence of the paper travel drive shaft, the two mechanisms are connected, forming a three-dimensional spatial frame mechanism that ensures stability during lifting and rotation.
[0044] After the conveying mechanism transports the product to the working area of the flat paper rotating mechanism in this embodiment of the utility model, the flat paper rotating mechanism receives a signal and its own program starts running. The rotating lifting mechanism 5 operates, lowering the upper rotating pressure plate mechanism 4 to contact the large sheet of financial product. The conveying mechanism then moves out of the product's rotating working range. Upon reaching the designated position, the flat paper rotating mechanism's own program runs, the servo motor 403 starts working, driving the upper pressure plate 405 to rotate counterclockwise by 90° so that the right side of the paper financial product faces forward. The rotating lifting mechanism 5 then drives the upper rotating pressure plate machine... When structure 4 rises, by opening holes and leveling the surface of the upper pressure plate 405, the mechanism can prevent negative pressure from being applied to the financial product during the rising process, thus preventing the product from being misaligned and sucked up. After being lifted, the paper travel drive shaft pushes the product to the cutting knife box for side cutting. After that, the paper travel shaft pulls the product back to the working area of the planar paper rotation mechanism and repeats the above work to continue cutting the side of the product. After both sides are cut, it is pulled back to the rotation working area, the rotation mechanism resets the product, and then the X-axis cutting and conveying mechanism pushes the product to cut the two front and rear sides and cut strips.
[0045] Compared with the prior art, the present invention has the following specific advantages:
[0046] 1. In the field of paper financial products, banknotes have cutting edges on both sides, which need to be removed by a cutting box. The traditional cutting mechanism is a three-sided cutting box mechanism, which occupies a large area and is costly. This utility model rotates the paper clockwise and counterclockwise so that the two sides are aligned with the cutting box and the waste edges on both sides are removed. The cutting box mechanism that needs to be cut is reduced to one set. This utility model is applicable to all fields that require the rotation of flat paper products.
[0047] 2. This invention can rotate the paper plane to transfer the waste edges that would otherwise need to be cut on both sides to the product's travel direction, greatly saving production line floor space. The rotation eliminates the need for adjusting the width of both sides to accommodate various products, significantly reducing on-site production line changeover work; it can be completed simply by switching control modes. The mechanism provided by this invention can eliminate the need for a side-cutting box device, reducing debugging difficulty and the overall production line failure rate.
[0048] 3. This utility model adopts a rotary disc clamping friction method. The product is lowered and pressed by a cylinder, and servo rotation is achieved through surface friction. The force of the cylinder lowering and pressing the product can be adjusted by increasing or decreasing the air pressure. Due to the special nature of paper financial products, rotation must not cause scratches or other damage. The rotation angle can be adjusted according to needs; both forward and reverse rotation are possible. After rotation, the rotary disc is raised, preventing misalignment or separation of the paper financial products.
[0049] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A planar paper rotating mechanism suitable for paper-based financial products, characterized in that, The flat paper rotating mechanism is installed on the support frame of the paper financial product trimming production line. The paper financial product trimming production line includes a paper feeding device, a conveying panel, a paper walking power shaft, a cutting knife box, and an X-axis paper pushing mechanism. The flat paper rotating mechanism includes: a flat rotating mechanism support frame (1) and a lower follower rotating disk mechanism (3). The flat rotating mechanism support frame (1) is installed on the support frame of the production line and is connected to the paper walking power shaft. The lower follower rotating disk mechanism (3) is installed on the support frame of the production line and is higher than the conveying panel. The flat rotating mechanism support frame (1) is equipped with a paper financial product conveying pressure strip (2), an upper rotating pressure plate mechanism (4), and a rotating lifting mechanism (5).
2. The planar paper rotating mechanism according to claim 1, characterized in that, The planar rotating mechanism support frame (1) is connected to the production line support frame by locking bolts. After debugging, the two frames are welded together. The planar rotating mechanism support frame (1) is made of solid carbon structural steel.
3. The planar paper rotating mechanism according to claim 1, characterized in that, The planar rotating mechanism support frame (1) includes: a vertical connecting column (101), an upper horizontal connecting beam (102), a lower horizontal connecting beam (103), a guide rail mounting plate (104), and a cylinder mounting plate (105). The vertical connecting column (101) connects to the support frame of the production line and forms a frame structure with the upper horizontal connecting beam (102) and the lower horizontal connecting beam (103). The guide rail mounting plate (104) and the cylinder mounting plate (105) are mounted on the frame structure. The upper rotating pressure plate mechanism (4) and the rotating lifting mechanism (5) are mounted on the guide rail mounting plate (104).
4. The planar paper rotating mechanism according to claim 1, characterized in that, The paper financial product conveying strip (2) is used to place on the surface of the paper financial product to prevent the paper financial product from curling or warping during rotation and conveying. The paper financial product conveying strip (2) includes: a mechanism mounting plate (201), a lifting cylinder (202), a right-angle connector (203), and a stainless steel strip (204). The mechanism mounting plate (201) is mounted on the planar rotating mechanism support frame (1). The lifting cylinder (202) is mounted on the mechanism mounting plate (201). One side of the right-angle connector (203) is connected to the output end of the lifting cylinder (202), and the other side of the right-angle connector (203) is connected to the stainless steel strip (204). The stainless steel strip (204) contacts the paper financial product. When the paper financial product passes through, the lifting cylinder (202) extends, causing the stainless steel strip (204) to descend and make slight contact with the paper financial product.
5. The planar paper rotating mechanism according to claim 1, characterized in that, The lower follower rotary disk mechanism (3) includes: a rotary disk connecting base plate (301), a lower rotary disk (302), and a load-bearing angular contact bearing (303). The rotary disk connecting base plate (301) is mounted on the support frame of the production line, and the load-bearing angular contact bearing (303) is mounted on the rotary disk connecting base plate (301). The machining clearance of the rotary disk connecting base plate (301) ensures the fit between the two. The lower rotary disk (302) is mounted on the load-bearing angular contact bearing (303).
6. The planar paper rotating mechanism according to claim 1, characterized in that, The upper rotating pressure plate mechanism (4) includes: a lifting guide rail slider (401), a rotating frame (402), a servo motor (403), a cycloidal reducer (404), and an upper pressure plate (405). The servo motor (403) is connected to the cycloidal reducer (404) to provide rotational power. The end of the cycloidal reducer (404) is connected to the upper pressure plate (405), and the rotational power is transmitted to the paper financial product through the upper pressure plate (405) to realize the rotational action of the paper financial product. The lifting guide rail slider (401) is connected to the rotating frame (402), and the rotating frame (402) is connected to the rotating lifting mechanism (5). The upper pressure plate (405) has openings on its surface and the surface is flat.
7. The planar paper rotating mechanism according to claim 6, characterized in that, The rotary lifting mechanism (5) includes: a lifting cylinder (501), a cylinder connecting seat (502), a cylinder front end shaft connector (503), and a connecting seat (504). The connecting seat (504) is installed on the back of the rotary frame (402). The cylinder front end shaft connector (503) is connected to the connecting seat (504). The lifting cylinder (501) is connected to the cylinder front end shaft connector (503). The lifting cylinder (501) controls the lifting and pressing action of the rotary frame (402). The air intake volume and pressing force are adjusted by the exhaust throttle valve and the air control valve of the two air intake ports of the lifting cylinder (501).