A wick outer cotton rod arrangement device
Patent Information
- Application Number
- CN202522178261.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-14
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-10-14
AI Technical Summary
[0005]为了克服现有技术的不足,本实用新型提供一种雾化芯外棉条整理装置,能够将拉棉、剪棉、叠棉和压棉工序整合到同一设备上,通过转盘实现自动化流水线作业,降低操作人员的劳动强度,大大提高了生产效率,同时,能够保证每个工件处理的一致性,避免人工操作时的力度、位置不稳定等问题,保证外棉条紧密贴合五金件,且外棉条的端部整齐叠放并压紧,进而保证后续外壳顺利套入
[0017] The beneficial effects of this utility model are as follows: This utility model provides a device for sorting the outer cotton strip of an atomizing core. By setting up a cotton pulling mechanism, a cotton cutting mechanism, a cotton stacking mechanism, and a cotton pressing mechanism, the cotton pulling, cotton cutting, cotton stacking, and cotton pressing processes can be integrated into the same equipment. The turntable realizes automated assembly line operation, reduces the labor intensity of operators, and greatly improves production efficiency. At the same time, it can ensure the consistency of each workpiece processing, avoid problems such as unstable force and position during manual operation, ensure that the outer cotton strip is tightly attached to the hardware, and that the ends of the outer cotton strip are neatly stacked and pressed, thereby ensuring that the subsequent outer shell is smoothly fitted in.
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Figure CN224710571U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of atomizing core assembly equipment, specifically to a device for sorting the outer cotton strip of an atomizing core. Background Technology
[0002] An electronic cigarette is an electronic product that generates an aerosol by heating e-liquid. Its core component, the atomizer coil, consists of a coil rod, a heating element, an inner wick, an outer wick, hardware, and a casing. During assembly, the coil rod, with the heating element and inner wick wrapped around it, is first inserted into the hardware to form a semi-finished product. Then, the outer wick is wrapped around the outer circumference of the hardware. Finally, the casing is fitted onto the hardware wrapped with the outer wick to assemble the atomizer coil. To ensure that the e-liquid is fully absorbed and atomized by the heating element, and that the generated vapor evaporates smoothly, windows are provided on the peripheral walls of both the hardware and the casing. These two windows must be precisely aligned during final assembly. To facilitate identification and positioning of the hardware windows during assembly, a slot is typically machined on the top of the hardware, with the end of the slot corresponding to the window position.
[0003] In existing technology, after wrapping the outer cotton strip around the hardware, its two ends need to be tidied up. This process usually includes: pulling the two ends of the outer cotton strip outward to make it fit tightly against the hardware, cutting off the excess length, stacking the cut ends neatly, and finally pressing them tightly to fix them.
[0004] However, the finishing of existing outer cotton strips is usually done manually. This manual operation is cumbersome, slow, and difficult to meet the needs of large-scale production. Furthermore, the force applied to the cotton strip, the cutting position, and the neatness of the stacking are all inconsistent, leading to poor product consistency. If the outer cotton strip is not tightly attached to the hardware, or if the ends are not stacked evenly or pressed firmly, it will be difficult to fit the outer shell in, affecting the assembly effect of the atomizing core. Utility Model Content
[0005] To overcome the shortcomings of existing technologies, this utility model provides an atomizing core outer cotton strip sorting device that integrates the processes of pulling, cutting, stacking, and pressing cotton into the same equipment. It achieves automated assembly line operation through a turntable, reducing the labor intensity of operators and greatly improving production efficiency. At the same time, it can ensure the consistency of each workpiece processing, avoid problems such as unstable force and position during manual operation, ensure that the outer cotton strip is tightly attached to the hardware, and that the ends of the outer cotton strip are neatly stacked and pressed, thereby ensuring that the subsequent outer shell can be smoothly fitted in.
[0006] The technical solution adopted by this utility model to solve its technical problem is:
[0007] A device for tidying up the outer cotton strip of an atomizing core includes a machine base, a turntable rotatably connected to the machine base, and a driving component for driving the turntable to rotate. The turntable is characterized by having multiple fixtures arranged in a circular array, each fixture having an elastic clamp. A cotton-pulling mechanism, a cotton-cutting mechanism, a cotton-stacking mechanism, and a cotton-pressing mechanism are sequentially arranged along the outer periphery of the turntable. The cotton-pulling mechanism pulls both ends of the outer cotton strip outwards to tightly adhere it to the outer periphery of the hardware component. The cotton-cutting mechanism cuts the pulled-out portion of the outer cotton strip. The cotton-stacking mechanism stacks the cut ends of the outer cotton strip together. The cotton-pressing mechanism presses the stacked outer cotton strip tightly.
[0008] As a further improvement to the above technical solution, the cotton stacking mechanism includes a first base plate, a first translation component disposed on the first base plate, and two cotton smoothing components disposed on the first translation component. The first base plate is mounted on the machine platform, and the first translation component is used to drive the two cotton smoothing components to move horizontally closer to or away from the center of the turntable.
[0009] As a further improvement to the above technical solution, the first translation component includes a first cylinder, a first translation seat disposed at the telescopic end of the first cylinder, and a first mounting plate disposed on the first translation seat. The two cotton-plastering components are disposed on the first mounting plate and are symmetrically arranged along its central axis.
[0010] As a further improvement to the above technical solution, a guide rail is provided on the first base plate, and a slider is provided at the bottom of the first translation seat. The slider is slidably connected to the guide rail, and one end of the guide rail faces the center of the turntable.
[0011] As a further improvement to the above technical solution, the cotton-plastering assembly includes a second cylinder and a cotton-plastering block disposed at the telescopic end of the second cylinder. The second cylinder is mounted on the first mounting plate, and the end of the cotton-plastering block away from the second cylinder has a pointed end.
[0012] As a further improvement to the above technical solution, a guide block is provided on the first mounting plate, the guide block has a guide hole, and the cotton padding block is slidably connected to the guide hole.
[0013] As a further improvement to the above technical solution, the cotton pressing mechanism includes a first support, a third cylinder mounted on the first support, and a pressing block mounted on the telescopic end of the third cylinder. The third cylinder is horizontally mounted, and the telescopic end of the third cylinder faces the center of the turntable.
[0014] As a further improvement to the above technical solution, the cotton pulling mechanism includes a second base plate, a second translation component disposed on the second base plate, and a clamping component disposed on the second translation component. The second base plate is mounted on the machine platform. The second translation component is used to drive the clamping component to move horizontally closer to or away from the center of the turntable. The clamping component is used to clamp or release both ends of the outer cotton strip.
[0015] As a further improvement to the above technical solution, the cotton shearing mechanism includes a third base plate, a third translation component disposed on the third base plate, and a cutting component disposed on the third translation component. The third base plate is mounted on the machine platform, and the third translation component is used to drive the cutting component to move horizontally closer to or away from the center of the turntable. The cutting component is used to cut cotton strips.
[0016] As a further improvement to the above technical solution, a correction mechanism is also included. The correction mechanism corresponds to the cotton stacking mechanism. The correction mechanism includes a second bracket, a fourth cylinder disposed on the second bracket, and a correction plate disposed on the telescopic end of the fourth cylinder. The fourth cylinder is used to drive the correction plate to insert into or retract from the slot on the hardware to correct the radial position of the hardware.
[0017] The beneficial effects of this utility model are as follows: This utility model provides a device for sorting the outer cotton strip of an atomizing core. By setting up a cotton pulling mechanism, a cotton cutting mechanism, a cotton stacking mechanism, and a cotton pressing mechanism, the cotton pulling, cotton cutting, cotton stacking, and cotton pressing processes can be integrated into the same equipment. The turntable realizes automated assembly line operation, reduces the labor intensity of operators, and greatly improves production efficiency. At the same time, it can ensure the consistency of each workpiece processing, avoid problems such as unstable force and position during manual operation, ensure that the outer cotton strip is tightly attached to the hardware, and that the ends of the outer cotton strip are neatly stacked and pressed, thereby ensuring that the subsequent outer shell is smoothly fitted in. Attached Figure Description
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 This is a structural schematic diagram provided by an example of this utility model;
[0020] Figure 2 yes Figure 1 Schematic diagram of the stacking mechanism and the correction mechanism;
[0021] Figure 3 yes Figure 1 Schematic diagram of the cotton-pulling mechanism;
[0022] Figure 4 yes Figure 1 Schematic diagram of the cotton shearing mechanism;
[0023] Figure 5 yes Figure 1 A schematic diagram of the medium-pressure cotton mechanism.
[0024] Reference numerals: 110-turntable, 120-drive component, 130-jig, 200-cotton pulling mechanism, 210-second base plate, 220-second translation component, 230-clamping component, 300-cotton cutting mechanism, 310-third base plate, 320-third translation component, 330-cutting component, 400-cotton stacking mechanism, 410-first base plate, 420-first translation component, 421-first cylinder, 422-first translation seat, 423-first mounting plate, 424-guide rail, 425-slider, 430-cotton smoothing component, 431-second cylinder, 432-cotton smoothing block, 433-guide block, 500-cotton pressing mechanism, 510-first bracket, 520-third cylinder, 530-pressing block, 600-correction mechanism, 610-second bracket, 620-fourth cylinder, 630-correction plate. Detailed Implementation
[0025] The following will clearly and completely describe the concept, specific structure, and technical effects of this utility model in conjunction with embodiments and accompanying drawings, so as to fully understand the purpose, features, and effects of this utility model. Obviously, the described embodiments are only a part of the embodiments of this utility model, not all of them. Other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are all within the scope of protection of this utility model. Furthermore, all connections / linkages involved in the patent do not simply refer to direct contact between components, but rather to the ability to form a better connection structure by adding or reducing connecting accessories according to specific implementation conditions. The various technical features in this utility model can be combined interactively without contradicting each other.
[0026] Reference Figure 1 This utility model provides an example of an atomizing core outer cotton strip sorting device, including a machine base (not shown in the attached drawings), a turntable 110 rotatably connected to the machine base, and a driving component 120 for driving the turntable 110 to rotate. The turntable 110 is provided with a plurality of jigs 130 arranged in a ring array. Each jig 130 is provided with an elastic clamp. Along the outer periphery of the turntable 110, a cotton pulling mechanism 200, a cotton cutting mechanism 300, a cotton stacking mechanism 400, and a cotton pressing mechanism 500 are arranged in sequence. The cotton pulling mechanism 200 is used to pull out both ends of the outer cotton strip to make the outer cotton strip tightly adhere to the outer periphery of the hardware. The cotton cutting mechanism 300 is used to cut the pulled-out part of the outer cotton strip. The cotton stacking mechanism 400 is used to stack the two ends of the cut outer cotton strip together. The cotton pressing mechanism 500 is used to press the stacked outer cotton strip tightly.
[0027] Among them, the cotton pulling mechanism 200, the cotton cutting mechanism 300, the cotton stacking mechanism 400, and the cotton pressing mechanism 500 correspond to the cotton pulling station, the cotton cutting station, the cotton stacking station, and the cotton pressing station, respectively.
[0028] During operation, the feeding mechanism places the semi-finished atomizing core wrapped with outer cotton strips one by one onto the fixture 130 of the turntable 110. The elastic clamps on the fixture 130 clamp and fix them. At this time, the two ends of the outer cotton strips protrude from the jaws of the elastic clamps. Then, the drive unit 120 drives the turntable 110 to rotate intermittently. The turntable 110 drives the fixture 130 and the workpiece to be transported to each station in sequence. When the workpiece reaches the cotton pulling station, the cotton pulling mechanism 200 pulls both ends of the outer cotton strip outward, straightening and taut it so that it fits tightly against the outer periphery of the hardware. Next, the drive unit 120 continues to drive the turntable 110 to rotate intermittently. The turntable 110 carries the fixture 130 and the workpiece to the cotton cutting station, where the cotton cutting mechanism 300 cuts the pulled-out portion of the outer cotton strip. At this time, both ends of the outer cotton strip will still protrude from the jaws of the elastic clamps. Then, the drive unit 120 continues to drive the turntable 110 to rotate intermittently, and the turntable 110 carries the fixture 130 and the workpiece to the cotton stacking station. At the workstation, the cotton stacking mechanism 400 first moves one end of the outer cotton strip to make it adhere to the outer periphery of the hardware, and then moves the other end of the outer cotton strip to make the two ends of the outer cotton strip overlap together; next, the drive unit 120 continues to drive the turntable 110 to rotate intermittently, and the turntable 110 carries the fixture 130 and the workpiece to the cotton pressing station, where the cotton pressing mechanism 500 presses the stacked outer cotton strip onto the hardware, completing the entire sorting process; finally, the drive unit 120 continues to drive the turntable 110 to rotate intermittently, and the turntable 110 carries the fixture 130 and the sorted workpiece to the next workstation.
[0029] Therefore, this utility model can integrate the processes of pulling, cutting, stacking, and pressing cotton into the same equipment, realize automated assembly line operation through turntable 110, reduce the labor intensity of operators, greatly improve production efficiency, and at the same time, ensure the consistency of each workpiece processing, avoid problems such as unstable force and position during manual operation, ensure that the outer cotton strip is tightly attached to the hardware, and that the ends of the outer cotton strip are neatly stacked and pressed, thereby ensuring that the subsequent outer shell is smoothly fitted in.
[0030] Reference Figure 2 In some preferred embodiments, the cotton stacking mechanism 400 includes a first base plate 410, a first translation component 420 disposed on the first base plate 410, and two cotton smoothing components 430 disposed on the first translation component 420. The first base plate 410 is mounted on the machine platform, and the first translation component 420 is used to drive the two cotton smoothing components 430 to move horizontally toward or away from the center of the turntable 110.
[0031] Understandably, when the workpiece arrives at the cotton stacking station, the first translation component 420 drives the two cotton smoothing components 430 to move horizontally towards the center of the turntable 110. Then, the two cotton smoothing components 430 sequentially push the two ends of the outer cotton strip inward and press them down on the outer periphery of the hardware, so that the two ends of the outer cotton strip are stacked together. The sequential actions of the first translation component 420 and the two cotton smoothing components 430 can avoid interference between the mechanisms.
[0032] Furthermore, the first translation component 420 includes a first cylinder 421, a first translation seat 422 disposed at the telescopic end of the first cylinder 421, and a first mounting plate 423 disposed on the first translation seat 422. Two cotton-plastering components 430 are disposed on the first mounting plate 423 and are symmetrically arranged along its central axis.
[0033] Understandably, the first cylinder 421 drives the first translation seat 422 to extend, and the first translation seat 422 drives the first mounting plate 423 and the two cotton-plastering components 430 to move together. The first cylinder 421 has a simple structure, reducing the manufacturing cost of the equipment, and is convenient to install and maintain. By symmetrically arranging the two cotton-plastering components 430 along the central axis of the first mounting plate 423, it can be ensured that the force exerted by the two cotton-plastering components 430 on both ends of the outer cotton strip is balanced, ensuring the consistency of the stacking effect at both ends of the outer cotton strip.
[0034] Furthermore, a guide rail 424 is provided on the first base plate 410, and a slider 425 is provided at the bottom of the first translation seat 422. The slider 425 is slidably connected to the guide rail 424, and one end of the guide rail 424 faces the center of the turntable 110. This can prevent shaking and deflection when the first cylinder 421 drives the first translation seat 422, the first mounting plate 423 and the two cotton-plastering components 430 to move together, ensuring that the two cotton-plastering components 430 can reach the same position every time, thereby ensuring product consistency.
[0035] In some preferred embodiments, the patting component 430 includes a second cylinder 431 and a patting block 432 disposed at the telescopic end of the second cylinder 431. The second cylinder 431 is mounted on a first mounting plate 423, and the patting block 432 has a pointed end away from the second cylinder 431.
[0036] Understandably, when the first cylinder 421 drives the two cotton-smoothing components 430 to move as a whole to the jaws of the elastic clamp, the second cylinder 431 is in a retracted state, and the tip of the cotton-smoothing block 432 is not in contact with the outer cotton strip. Then, the second cylinder 431 of one of the cotton-smoothing components 430 drives the cotton-smoothing block 432 to move forward, and the tip of the cotton-smoothing block 432 pushes the outer cotton strip. At the same time, the side of the cotton-smoothing block 432 near the hardware presses one end of the outer cotton strip against the outer periphery of the hardware. Then, the second cylinder 431 drives the cotton-smoothing block 432 to retract. Then, the other cotton-smoothing component 43... The second cylinder 431 drives the cotton-pressing block 432 to move forward. The tip of the cotton-pressing block 432 pushes the outer cotton strip. At the same time, the side of the cotton-pressing block 432 near the hardware places the other end of the outer cotton strip on top of the outer cotton strip. Finally, the second cylinder 431 drives the cotton-pressing block 432 to retreat. The first cylinder 421 drives the two cotton-pressing components 430 to retreat to the initial position, waiting for the next workpiece to be stacked. Thus, the tip of the cotton-pressing block 432 can accurately act on the position of the outer cotton strip that needs to be stacked, realizing precise guidance of the stacking direction of the outer cotton strip, and ensuring the reliability and consistency of the stacking action.
[0037] Furthermore, a guide block 433 is provided on the first mounting plate 423, and the guide block 433 has a guide hole, and the cotton padding block 432 is slidably connected to the guide hole.
[0038] Understandably, when the second cylinder 431 drives the cotton-patterning block 432 to move, the cotton-patterning block 432 slides along the direction of the guide hole, thereby ensuring the stability of the cotton-patterning block 432 during movement and improving the positional accuracy of the cotton-patterning block 432 when it moves the outer cotton strip.
[0039] Reference Figure 5 In some preferred embodiments, the cotton pressing mechanism 500 includes a first support 510, a third cylinder 520 disposed on the first support 510, and a pressing block 530 disposed on the telescopic end of the third cylinder 520. The third cylinder 520 is horizontally disposed, and the telescopic end of the third cylinder 520 faces the center of the turntable 110.
[0040] Understandably, when the stacked workpieces are moved to the cotton pressing station, the third cylinder 520 extends horizontally and drives the pressing block 530 to push horizontally towards the stacked outer cotton strip ends. The pressing block 530 applies a continuous pressure to compact the fluffy cotton fibers and make them adhere tightly to the surface of the hardware, thereby ensuring that the outer cotton strips will not come apart during the subsequent assembly of the outer shell and ensuring the subsequent assembly quality.
[0041] Reference Figure 3In some preferred embodiments, the cotton pulling mechanism 200 includes a second base plate 210, a second translation component 220 disposed on the second base plate 210, and a clamping component 230 disposed on the second translation component 220. The second base plate 210 is mounted on the machine platform. The second translation component 220 is used to drive the clamping component 230 to move horizontally closer to or away from the center of the turntable 110. The clamping component 230 is used to clamp or release both ends of the outer cotton strip.
[0042] Understandably, the second translation component 220 drives the clamping component 230 to approach the jaws of the elastic clamp of the fixture 130 horizontally. Then, the clamping component 230 clamps the two ends of the outer cotton strip that protrude from the jaws of the elastic clamp. Then, the second translation component 220 drives the clamping component 230 away from the fixture 130, thereby pulling out and tightening the outer cotton strip so that it fits tightly against the outer periphery of the hardware, which is convenient for subsequent precise cutting.
[0043] Reference Figure 4 In some preferred embodiments, the cotton shearing mechanism 300 includes a third base plate 310, a third translation component 320 disposed on the third base plate 310, and a cutting component 330 disposed on the third translation component 320. The third base plate 310 is mounted on the machine platform. The third translation component 320 is used to drive the cutting component 330 to move horizontally closer to or away from the center of the turntable 110. The cutting component 330 is used to cut cotton strips.
[0044] Understandably, when the outer cotton strip is stretched, the third translation component 320 moves the cutting component 330 close to the jaws of the elastic clamp of the fixture 130. Then, the cutting component 330 performs a cutting action to cut the outer cotton strip that protrudes from the jaws of the elastic clamp.
[0045] Furthermore, the cotton shearing mechanism 300 also includes a waste collection box, which is used to collect the cut outer cotton sliver ends, thereby preventing the outer cotton sliver ends from falling onto other parts of the equipment and affecting its operation.
[0046] Reference Figure 2 In some preferred embodiments, a correction mechanism 600 is also included, which corresponds to the cotton stacking mechanism 400. The correction mechanism 600 includes a second bracket 610, a fourth cylinder 620 disposed on the second bracket 610, and a correction plate 630 disposed on the telescopic end of the fourth cylinder 620. The fourth cylinder 620 is used to drive the correction plate 630 to insert or retract into the slot on the hardware to correct the radial position of the hardware.
[0047] Understandably, when the two ends of the outer cotton strip are neatly stacked, the hardware may experience slight deflection during the stacking process. The slot on the top of the hardware has a certain width. When the fourth cylinder 620 drives the straightening plate 630 to approach the slot on the hardware, the edge of the straightening plate 630 will first contact the side wall of the slot. As the straightening plate 630 continues to extend, the contact between the straightening plate 630 and the side wall of the slot will generate a tangential component force and form a torsional torque. At this time, this torsional torque is greater than the static friction between the cotton strip in the elastic clamp and the hardware. The hardware component undergoes a slight, controllable rotation within the clamp. Under the thrust of the correction plate 630, the hardware component is forced to rotate until its deflection is completely eliminated. At this point, the direction of the slot is completely aligned with the direction of the correction plate 630, completing the correction of the hardware component. Finally, the fourth cylinder 620 drives the correction plate 630 to exit from the slot and return to its initial position. This automatically corrects the radial deflection of the hardware component during the stacking of the cotton, ensuring the alignment accuracy of the hardware component's window with the outer shell's window during subsequent assembly, thus improving the product quality and consistency of the atomizing core.
[0048] The above is a detailed description of the preferred embodiments of the present utility model. However, the present utility model is not limited to the described embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present utility model. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.
Claims
1. A device for finishing the outer cotton strip of an atomizing core, comprising a machine base, a turntable rotatably connected to the machine base, and a driving component for driving the turntable to rotate, characterized in that, The turntable is equipped with multiple fixtures arranged in a circular array. Each fixture is equipped with a flexible clamp. Along the outer periphery of the turntable, a cotton pulling mechanism, a cotton cutting mechanism, a cotton stacking mechanism, and a cotton pressing mechanism are arranged in sequence. The cotton pulling mechanism is used to pull the two ends of the outer cotton strip outward to make the outer cotton strip tightly adhere to the outer periphery of the hardware. The cotton cutting mechanism is used to cut the pulled-out portion of the outer cotton strip. The cotton stacking mechanism is used to stack the two ends of the cut outer cotton strip together. The cotton pressing mechanism is used to press the stacked outer cotton strip tightly.
2. The atomizing core outer cotton strip finishing device according to claim 1, characterized in that, The cotton stacking mechanism includes a first base plate, a first translation component disposed on the first base plate, and two cotton smoothing components disposed on the first translation component. The first base plate is mounted on the machine platform, and the first translation component is used to drive the two cotton smoothing components to move horizontally closer to or away from the center of the turntable.
3. The atomizing core outer cotton strip finishing device according to claim 2, characterized in that, The first translation component includes a first cylinder, a first translation seat disposed at the telescopic end of the first cylinder, and a first mounting plate disposed on the first translation seat. The two cotton-plastering components are disposed on the first mounting plate and are symmetrically arranged along its central axis.
4. The atomizing core outer cotton strip finishing device according to claim 3, characterized in that, A guide rail is provided on the first base plate, and a slider is provided at the bottom of the first translation seat. The slider is slidably connected to the guide rail, and one end of the guide rail faces the center of the turntable.
5. The atomizing core outer cotton sliver finishing device according to claim 3, characterized in that, The cotton-plastering assembly includes a second cylinder and a cotton-plastering block disposed at the telescopic end of the second cylinder. The second cylinder is mounted on the first mounting plate, and the end of the cotton-plastering block away from the second cylinder has a pointed end.
6. The atomizing core outer cotton sliver finishing device according to claim 5, characterized in that, The first mounting plate is provided with a guide block, the guide block has a guide hole, and the cotton padding block is slidably connected to the guide hole.
7. The atomizing core outer cotton strip finishing device according to claim 1, characterized in that, The cotton pressing mechanism includes a first support, a third cylinder mounted on the first support, and a pressing block mounted on the telescopic end of the third cylinder. The third cylinder is horizontally positioned, and the telescopic end of the third cylinder faces the center of the turntable.
8. The atomizing core outer cotton sliver finishing device according to claim 1, characterized in that, The cotton pulling mechanism includes a second base plate, a second translation component disposed on the second base plate, and a clamping component disposed on the second translation component. The second base plate is mounted on the machine platform. The second translation component is used to drive the clamping component to move horizontally closer to or away from the center of the turntable. The clamping component is used to clamp or release both ends of the outer cotton strip.
9. The atomizing core outer cotton strip finishing device according to claim 1, characterized in that, The cotton shearing mechanism includes a third base plate, a third translation component disposed on the third base plate, and a cutting component disposed on the third translation component. The third base plate is mounted on the machine platform. The third translation component is used to drive the cutting component to move horizontally closer to or away from the center of the turntable. The cutting component is used to cut cotton strips.
10. The atomizing core outer cotton strip finishing device according to claim 1, characterized in that, It also includes a correction mechanism, which corresponds to the cotton stacking mechanism. The correction mechanism includes a second bracket, a fourth cylinder mounted on the second bracket, and a correction plate mounted on the telescopic end of the fourth cylinder. The fourth cylinder is used to drive the correction plate to insert into or retract from the slot on the hardware to correct the radial position of the hardware.