A continuous winding device and continuous winding process thereof
By designing a continuous winding device including a flipped pushing mechanism and a cutting mechanism, the problem of shutting down of auxiliary materials or waste materials in the middle of the circular tool machine is solved, and the winding down of the entire production process is achieved.
Patent Information
- Application Number
- CN202410726666.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-06
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2044-06-06
AI Technical Summary
During the production of multi-layer composite tape, the existing round cutter machine needs to be shut down when the intermediate auxiliary materials or waste materials are collected, and it is impossible to achieve continuous shutdown in the entire production process.
A continuous winding device is designed, including a flipped pushing mechanism and a cutting mechanism. When the main machine of the circular tool machine and the discharge shaft are operating normally, the intermediate auxiliary material or waste material tapes to be flipped alternately to the corresponding feeding position through the flipped material pushing mechanism, so as to achieve continuous winding without stopping.
The continuous non-stop winding of intermediate auxiliary materials or waste materials is achieved, and the continuous non-stop unwinding equipment is combined, thereby achieving the non-stop effect of the entire production process of multi-layer composite belts.
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Figure CN118289543B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of winding equipment, and in particular to a continuous winding device and a continuous winding process thereof. Background Art
[0002] Circular knife machines are currently being used more and more widely in various industries, and the process is becoming increasingly complex. Some products require a variety of different materials to be compounded, resulting in an increase in the number of material rolls during unwinding. As the number of material rolls increases, the material strips generated during the production process also need to be collected by a rewinding device. There is now an automatic material changing device for unwinding to achieve uninterrupted unwinding operation, but if the rewinding cannot move continuously like unwinding, the efficiency improvement brought by the uninterrupted unwinding operation will be very limited.
[0003] This has led to a demand for uninterrupted winding. Currently, most non-stop winding machines on the market are independent fixed units located at the rear end of the equipment, responsible only for the uninterrupted winding of finished products. However, there is currently no winding structure that can achieve uninterrupted winding of auxiliary materials used in the production process or waste materials generated. In addition, since the material shaft of the circular knife machine usually requires flexible installation, a winding device that takes up little space and is integrated with the circular knife machine is needed to match it. Therefore, the existing independent fixed continuous winding equipment cannot meet the requirements of the circular knife machine for winding intermediate auxiliary materials or waste materials. Therefore, when the existing circular knife machine is producing multi-layer composite material strips, it still needs to stop when the intermediate auxiliary materials or waste materials are fully wound, and it is impossible to achieve non-stop production throughout the entire process.
[0004] Therefore, a continuous winding device and a continuous winding process thereof are needed to solve the above problems. Summary of the Invention
[0005] The present invention proposes a continuous winding device and a continuous winding process thereof. When the main body of the circular knife machine and the unwinding shaft are operating normally, the intermediate auxiliary materials or waste materials to be connected are alternately sent to the corresponding connecting positions by flipping the pushing mechanism, thereby realizing continuous non-stop winding of the intermediate auxiliary materials or waste materials. Combined with the continuous non-stop unwinding equipment, the entire production process of the multi-layer composite material strip can be achieved without stopping.
[0006] The technical solution of the present invention is achieved as follows:
[0007] A continuous winding device comprises a frame, on which an upper winding shaft and a lower winding shaft are rotatably mounted;
[0008] The turning and pushing mechanism is used to alternately deliver the intermediate auxiliary materials or waste materials to be received to the corresponding receiving positions, and the turning and pushing mechanism is arranged between the upper receiving shaft and the lower receiving shaft, and the turning and pushing mechanism includes a sliding seat and a mounting plate slidably mounted on the frame in a vertical direction, and the sliding seat is connected to a first linear drive mechanism, and a second linear drive mechanism is arranged between the sliding seat and the mounting plate, and a horizontally arranged rotating shaft is rotatably mounted on the mounting plate, and the rotating shaft is respectively arranged parallel to the upper receiving shaft and the lower receiving shaft, and one end of the rotating shaft is fixed A rubber roller mounting plate is fixedly installed, and a first feeding rubber roller and a second feeding rubber roller are rotatably mounted on the rubber roller mounting plate, and the material belt passes between the first feeding rubber roller and the second feeding rubber roller. A flip arm is fixedly installed on the other end of the rotating shaft, and a cam follower is rotatably mounted on the end of the flip arm, and the axis of the cam follower is arranged parallel to and not coaxial with the rotating shaft. A flip plate is fixedly installed on the frame, and a flip guide groove is provided on the flip plate, and the flip guide groove includes an upper linear groove, a middle cam flip groove and a lower linear groove that are continuously arranged together;
[0009] It also includes a cutting mechanism for cutting the material strip when joining the materials.
[0010] As a preferred technical solution, the middle cam flip groove includes a first flip arc groove, an intermediate connecting arc groove and a second flip arc groove that are continuously arranged together, and the first flip arc groove and the second flip arc groove are symmetrically arranged.
[0011] As a preferred technical solution, a first slide rail is provided on the frame, the mounting plate is slidably installed on the first slide rail along the vertical direction, the first linear drive mechanism includes a first rodless cylinder fixedly installed on the frame, the sliding seat is fixedly installed on the body of the first rodless cylinder, the second linear drive mechanism includes a first driving cylinder fixedly installed on the sliding seat, and the cylinder rod of the first driving cylinder is fixedly connected to the mounting plate.
[0012] As a preferred technical solution, the cutting mechanism includes a cutting seat slidably mounted on the frame in a vertical direction, the cutting seat is connected to a third linear drive mechanism, and a cutting knife is slidably mounted on the cutting seat in a horizontal direction via a fourth linear drive mechanism.
[0013] As a preferred technical solution, a second slide rail is provided on the frame, the third linear drive mechanism includes a second rodless cylinder fixedly mounted on the frame, the cutting seat is slidably mounted on the second slide rail along the vertical direction through the second rodless cylinder, the fourth linear drive mechanism includes a second drive cylinder fixedly mounted on the cutting seat, a cutter fixing plate is slidably mounted on the cutting seat along the horizontal direction, the cutting knife is fixedly mounted on the cutter fixing plate, the piston rod of the second drive cylinder is fixedly connected to the cutter fixing plate, and a pair of guide columns are provided between the cutter fixing plate and the cutting seat.
[0014] As a preferred technical solution, the end of the cutting knife is provided with saw teeth.
[0015] The continuous winding process of the continuous winding device specifically includes the following steps:
[0016] S1, the material strip passes through the first feeding rubber roller and the second feeding rubber roller and is wound around the lower receiving shaft for winding; a spare paper core is placed on the upper receiving shaft, and a splicing tape is provided on the outer surface of the paper core. The first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to rise for the first time in the upper linear groove and reach the upper splicing position. At this time, the material strip is located on the upper surface of the second feeding rubber roller and corresponds to the upper receiving shaft;
[0017] S2. When the lower take-up shaft is nearly full of material, the second linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to rise for the second time in the upper linear groove, pushing the material strip to be connected upward and sticking it to the paper core above; at the same time, the material strip is cut by the cutting mechanism under the action of tension, the upper take-up shaft starts to rewind, the lower take-up shaft completes rewinding and takes off the full material roll, and then places the spare paper core on the lower take-up shaft;
[0018] S3, the first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to descend in the upper linear groove for the first time, and when the cam follower passes through the middle cam flip groove, under the action of the middle cam flip groove, the first feeding rubber roller and the second feeding rubber roller complete a 180° flip, at which time the material strip is located on the lower surface of the first feeding rubber roller and corresponds to the lower material receiving shaft, and then the first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to continue to descend in the lower linear groove and reach the lower material receiving position;
[0019] S4. When the upper take-up shaft is nearly full of material, the second linear drive mechanism drives the first and second feed rubber rollers to descend in the lower linear groove for the second time, pushing the material strip downward and sticking it to the paper core below; at the same time, the material strip is cut by the cutting mechanism under the action of tension, and after cutting, the lower take-up shaft starts to rewind, and the upper take-up shaft completes rewinding and removes the full roll of material;
[0020] S5, and so on, that is, the continuous winding of the material strip is completed without stopping the entire production process.
[0021] By adopting the above technical solution, the beneficial effects of the present invention are:
[0022] Since a continuous winding device and its continuous winding process include a flipping and pushing mechanism, when using this device, the first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to rise for the first time, and when the lower material receiving shaft is almost full of material, the second linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to rise for the second time, pushing the material strip to be connected upward and sticking it to the paper core above. At the same time, the material strip is cut, the upper material receiving shaft is wound, the lower material receiving shaft completes the winding and removes the full material roll, and then a spare paper core is placed on the lower material receiving shaft, and the first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to descend for the first time. When the cam follower passes through the middle cam flip groove, the first feeding rubber roller and the second feeding rubber roller complete a 180° flip and are in the lower straight The material strip continues to descend in the line trough, and when the upper material-receiving shaft is almost full of material, the second linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to descend for the second time, pushing the material strip downward and sticking it to the paper core below. At the same time, the material strip is cut, and the lower material-receiving shaft rewinds it after cutting, and the upper material-receiving shaft completes the rewinding and takes out the full material roll, and so on. That is, the continuous rewinding of the material strip is completed without stopping the entire production process. When the main body of the circular knife machine and the unwinding shaft are operating normally, the present invention flips the pushing mechanism to alternately send the material strips of the intermediate auxiliary materials or waste materials to be connected to the corresponding material connection position, thereby realizing the continuous non-stop winding of the intermediate auxiliary materials or waste materials, and cooperates with the continuous non-stop unwinding equipment to achieve the effect of non-stopping the entire production process of the multi-layer composite material strip.
[0023] The flipping and pushing mechanism is driven by the first linear drive mechanism to approach the material connection position, and the cooperation between the cam follower and the flip plate realizes the forward and reverse rotation of the first feeding rubber roller and the second feeding rubber roller, so that the material belt can be moved to the vicinity of the upper material receiving shaft or the lower material receiving shaft before connecting the material. Then, through the drive of the second linear drive mechanism, the material belt is quickly brought into contact with the material shaft to be switched when connecting the material, realizing non-stop winding.
[0024] The power that keeps the material strip on this device pressed against the paper core comes from the cylinder. When the material is pressed tightly, since the force of the cylinder comes from an external air source, when the force is greater than the force provided by the external air source, the cylinder can act as a buffer, preventing the risk of damage to equipment components and the material strip caused by hard contact.
[0025] When the flip pushing mechanism is driven downward by the first rodless cylinder, the first feeding rubber roller and the second feeding rubber roller move toward the direction close to the lower receiving shaft, and the cam follower roller moves along the flip guide groove. When the cam follower roller slides in the middle cam flip groove, the cam follower will have a certain displacement in the horizontal direction, and the flip arm will continue to move downward under the drive of the first rodless cylinder. The flip arm will rotate with the cam follower roller as the axis, and the first feeding rubber roller and the second feeding rubber roller will flip.
[0026] Due to the ingenious design of the flip guide groove, the lifting and flipping of the feeding rubber roller are all driven by a set of power devices. The device has a compact structure and can be integrated and installed in multiple positions of the circular knife machine. The device can also be slidably set on the circular knife machine, which is flexible and convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0028] Figure 1 It is a structural schematic diagram of the present invention;
[0029] Figure 2 A schematic structural diagram of another perspective of the present invention;
[0030] Figure 3 It is a structural diagram of the flipping and pushing mechanism;
[0031] Figure 4 This is a reference diagram of the material strip before cutting;
[0032] Figure 5 This is a reference diagram of the state after the material strip is cut;
[0033] Figure 6 This is the reference diagram of the state after joining the materials;
[0034] Figure 7 A reference diagram of one of the states of rotation of the first feeding rubber roller and the second feeding rubber roller;
[0035] Figure 8A reference diagram of another state in which the first feeding rubber roller and the second feeding rubber roller rotate;
[0036] Figure 9 This is a reference diagram of the state after the first feeding rubber roller and the second feeding rubber roller rotate.
[0037] Among them: 1. Frame; 2. Upper receiving shaft; 3. Lower receiving shaft; 4. Material belt; 5. Sliding seat; 6. Mounting plate; 7. Rotating shaft; 8. Rubber roller mounting plate; 9. First feeding rubber roller; 10. Second feeding rubber roller; 11. Flip arm; 12. Cam follower; 13. Flip plate; 14. Flip guide groove; 15. Upper linear groove; 16. Middle cam flip groove; 17. Lower linear groove; 18. First flip arc groove; 19. Middle connecting arc groove; 20. Second flip arc groove; 21. First slide rail; 22. First rodless cylinder; 23. First driving cylinder; 24. Cutting seat; 25. Cutting knife; 26. Second slide rail; 27. Second rodless cylinder; 28. Second driving cylinder; 29. Cutting knife fixing plate; 30. Guide column; 31. Driving motor; 32. Paper core. DETAILED DESCRIPTION
[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0039] Example 1:
[0040] like Figures 1-9 As shown together, a continuous winding device includes a frame 1, on which an upper winding shaft 2 and a lower winding shaft 3 are rotatably mounted.
[0041] The flip pushing mechanism is used to alternately deliver the intermediate auxiliary materials or waste materials to be received to the corresponding receiving position. The flip pushing mechanism is arranged between the upper receiving shaft 2 and the lower receiving shaft 3. The flip pushing mechanism includes a sliding seat 5 and a mounting plate 6 mounted on the frame 1 in a vertical direction. The sliding seat 5 is connected to a first linear drive mechanism. A second linear drive mechanism is arranged between the sliding seat 5 and the mounting plate 6. A horizontally arranged rotating shaft 7 is rotatably installed on the mounting plate 6. The rotating shaft 7 is respectively arranged parallel to the upper receiving shaft 2 and the lower receiving shaft 3. A rubber roller mounting plate 8 is fixedly installed at one end of the rotating shaft 7. A first feeding rubber roller 9 and a second feeding rubber roller 10 are rotatably mounted on the roller mounting plate 8, and the material belt 4 passes between the first feeding rubber roller 9 and the second feeding rubber roller 10. A flip arm 11 is fixedly mounted on the other end of the rotating shaft 7, and a cam follower 12 is rotatably mounted on the end of the flip arm 11. The axis of the cam follower 12 is arranged parallel to the rotating shaft 7 and is not coaxial. A flip plate 13 is fixedly mounted on the frame 1, and a flip guide groove 14 is provided on the flip plate 13. The flip guide groove 14 includes an upper linear groove 15, a middle cam flip groove 16 and a lower linear groove 17 which are continuously arranged together.
[0042] It also includes a cutting mechanism for cutting the material strip 4 when joining the materials.
[0043] The middle cam reversal groove 16 includes a first reversal arc groove 18 , an intermediate connecting arc groove 19 and a second reversal arc groove 20 which are continuously arranged together. The first reversal arc groove 18 and the second reversal arc groove 20 are symmetrically arranged.
[0044] In addition, a first slide rail 21 is provided on the frame 1, and the mounting plate 6 is slidably installed on the first slide rail 21 along the vertical direction. The first linear drive mechanism includes a first rodless cylinder 22 fixedly installed on the frame 1, and the sliding seat 5 is fixedly installed on the body of the first rodless cylinder 22. The second linear drive mechanism includes a first driving cylinder 23 fixedly installed on the sliding seat 5, and the cylinder rod of the first driving cylinder 23 is fixedly connected to the mounting plate 6.
[0045] In addition, the cutting mechanism includes a cutting seat 24 slidably mounted on the frame 1 along the vertical direction, the cutting seat 24 is connected to a third linear drive mechanism, and a cutting knife 25 is slidably mounted on the cutting seat 24 along the horizontal direction through a fourth linear drive mechanism.
[0046] Secondly, a second slide rail 26 is provided on the frame 1, and the third linear drive mechanism includes a second rodless cylinder 27 fixedly mounted on the frame 1. The cutting seat 24 is slidably mounted on the second slide rail 26 along the vertical direction through the second rodless cylinder 27. The fourth linear drive mechanism includes a second drive cylinder 28 fixedly mounted on the cutting seat 24. A cutter fixing plate 29 is slidably mounted on the cutting seat 24 along the horizontal direction. The cutting knife 25 is fixedly mounted on the cutter fixing plate 29. The piston rod of the second drive cylinder 28 is fixedly connected to the cutter fixing plate 29. A pair of guide columns 30 are provided between the cutter fixing plate 29 and the cutting seat 24.
[0047] The end of the cutting blade 25 is provided with saw teeth.
[0048] Two driving motors 31 are provided on the frame 1 , and the upper receiving shaft 2 and the lower receiving shaft 3 are respectively connected to a driving motor 31 .
[0049] Example 2:
[0050] A continuous winding process of a continuous winding device specifically comprises the following steps:
[0051] S1, such as Figure 4 As shown, the material belt 4 passes through the first feeding rubber roller 9 and the second feeding rubber roller 10 and is wound around the lower receiving shaft 3 for winding. A spare paper core 32 is placed on the upper receiving shaft 2. The outer surface of the paper core 32 is provided with a splicing tape. The first linear drive mechanism drives the first feeding rubber roller 9 and the second feeding rubber roller 10 to rise for the first time in the upper linear groove 15 and reach the upper splicing position. At this time, the material belt 4 is located on the upper surface of the second feeding rubber roller 10 and corresponds to the upper receiving shaft 2.
[0052] S2, such as Figure 5 and Figure 6 As shown in the figure, when the lower take-up shaft 3 is almost full of material, the second linear drive mechanism drives the first feeding rubber roller 9 and the second feeding rubber roller 10 to rise for the second time in the upper linear groove 15, pushing the material strip 4 to be connected upward and sticking it to the paper core 32 above. At the same time, the material strip 4 is cut by the cutting mechanism under the action of the tension force, the upper take-up shaft 2 starts to reel, the lower take-up shaft 3 completes reeling and removes the full material roll, and then places a spare paper core 32 on the lower take-up shaft 3.
[0053] S3, such as Figure 7-Figure 9As shown together, the first linear drive mechanism drives the first feeding rubber roller 9 and the second feeding rubber roller 10 to descend for the first time in the upper linear groove 15. When the cam follower 12 passes through the middle cam flip groove 16, under the action of the middle cam flip groove 16, the first feeding rubber roller 9 and the second feeding rubber roller 10 complete a 180° flip. At this time, the material belt 4 is located on the lower surface of the first feeding rubber roller 9 and corresponds to the lower receiving shaft 3. Then the first linear drive mechanism drives the first feeding rubber roller 9 and the second feeding rubber roller 10 to continue to descend in the lower linear groove 17 and reach the lower material receiving position.
[0054] S4. When the upper take-up shaft 2 is nearly full of material, the second linear drive mechanism drives the first feeding rubber roller 9 and the second feeding rubber roller 10 to descend for the second time in the lower linear groove 17, pushing the material strip 4 downward and sticking it to the paper core 32 below. At the same time, the material strip 4 is cut by the cutting mechanism under the action of the tensioning force. After cutting, the lower take-up shaft 3 starts to reel, and the upper take-up shaft 2 completes reeling and takes off the full roll.
[0055] S5, and so on, that is, the continuous winding of the material strip 4 is completed without stopping the entire production process.
[0056] In summary, when the main body of the circular knife machine and the unwinding shaft are operating normally, the present invention flips the pushing mechanism to alternately deliver the intermediate auxiliary materials or waste materials to be connected to the corresponding connecting position, thereby realizing continuous non-stop winding of the intermediate auxiliary materials or waste materials, and cooperating with the continuous non-stop unwinding equipment, thereby achieving the effect of non-stop production of the entire multi-layer composite material strip 4.
[0057] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A continuous winding device, comprising a frame, characterized in that: An upper material receiving shaft and a lower material receiving shaft are rotatably mounted on the frame; The turning and pushing mechanism is used to alternately deliver the intermediate auxiliary materials or waste materials to be received to the corresponding receiving positions, and the turning and pushing mechanism is arranged between the upper receiving shaft and the lower receiving shaft. The turning and pushing mechanism includes a sliding seat and a mounting plate slidably installed on the frame along the vertical direction, and the sliding seat is connected to a first linear drive mechanism, and a second linear drive mechanism is arranged between the sliding seat and the mounting plate. A horizontally arranged rotating shaft is rotatably installed on the mounting plate, and the rotating shaft is respectively arranged parallel to the upper receiving shaft and the lower receiving shaft, and a rubber roller mounting plate is fixedly installed at one end of the rotating shaft, and a first feeding rubber roller and a second feeding rubber roller are rotatably installed on the rubber roller mounting plate. The rubber roller, the material belt passes through between the first feeding rubber roller and the second feeding rubber roller, the other end of the rotating shaft is fixedly installed with a flip arm, the end of the flip arm is rotatably installed with a cam follower, the axis of the cam follower is arranged parallel to the rotating shaft and is not coaxial, a flip plate is fixedly installed on the frame, and a flip guide groove is arranged on the flip plate, the flip guide groove includes an upper straight groove, a middle cam flip groove and a lower straight groove which are arranged continuously, the middle cam flip groove includes a first flip arc groove, an intermediate connecting arc groove and a second flip arc groove which are arranged continuously, and the first flip arc groove and the second flip arc groove are symmetrically arranged; It also includes a cutting mechanism for cutting the material strip when joining the materials; The specific steps include: S1, the material belt passes through the first feeding rubber roller and the second feeding rubber roller and is wound around the lower receiving shaft for winding; a spare paper core is placed on the upper receiving shaft, and a material splicing tape is provided on the outer surface of the paper core. The first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to rise for the first time in the upper linear groove and reach the upper material splicing position. At this time, the material belt is located on the upper surface of the second feeding rubber roller and corresponds to the upper receiving shaft; S2, when the lower material receiving shaft is nearly full, the second linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to rise in the upper linear groove for the second time, pushing the material strip to be received upward and sticking it to the paper core above; at the same time, the material strip is cut by the cutting mechanism under the action of the tension force, the upper material receiving shaft starts to reel, the lower material receiving shaft completes reeling and takes off the full material roll, and then places the spare paper core on the lower material receiving shaft; S3, the first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to descend in the upper linear groove for the first time, and when the cam follower passes through the middle cam flip groove, under the action of the middle cam flip groove, the first feeding rubber roller and the second feeding rubber roller complete a 180° flip, at which time the material belt is located on the lower surface of the first feeding rubber roller and corresponds to the lower material receiving shaft, and then the first linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to continue to descend in the lower linear groove and reach the lower material receiving position; S4, when the upper take-up shaft is nearly full of material, the second linear drive mechanism drives the first feeding rubber roller and the second feeding rubber roller to descend in the lower linear groove for the second time, pushing the material strip downward and sticking it to the paper core below; at the same time, the material strip is cut by the cutting mechanism under the action of the tension force, and after cutting, the lower take-up shaft starts to reel, and the upper take-up shaft completes reeling and takes off the full roll; S5, and so on and so forth, that is, the continuous winding of the material strip is completed without stopping the entire production process.
2. A continuous winding device according to claim 1, characterized in that: A first slide rail is arranged on the frame, the mounting plate is slidably mounted on the first slide rail along a vertical direction, the first linear drive mechanism includes a first rodless cylinder fixedly mounted on the frame, the sliding seat is fixedly mounted on the body of the first rodless cylinder, the second linear drive mechanism includes a first driving cylinder fixedly mounted on the sliding seat, and the cylinder rod of the first driving cylinder is fixedly connected to the mounting plate.
3. A continuous winding device according to claim 1, characterized in that: The cutting mechanism comprises a cutting seat slidably mounted on the frame along a vertical direction, the cutting seat is connected to a third linear drive mechanism, and a cutting knife is slidably mounted on the cutting seat along a horizontal direction via a fourth linear drive mechanism.
4. A continuous winding device according to claim 3, characterized in that: A second slide rail is arranged on the frame, the third linear drive mechanism includes a second rodless cylinder fixedly mounted on the frame, the cutting seat is slidably mounted on the second slide rail along the vertical direction through the second rodless cylinder, the fourth linear drive mechanism includes a second drive cylinder fixedly mounted on the cutting seat, a cutter fixing plate is slidably mounted on the cutting seat along the horizontal direction, the cutting knife is fixedly mounted on the cutter fixing plate, a piston rod of the second drive cylinder is fixedly connected to the cutter fixing plate, and a pair of guide columns are arranged between the cutter fixing plate and the cutting seat.
5. The continuous winding device according to claim 3, characterized in that: The end of the cutting knife is provided with saw teeth.
Citation Information
Patent Citations
Composite tape splicing and roll changing mechanism and tape splicing and roll changing method
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Eccentric wheel lifting and clamping mechanism
CN220744538U