EPE processing and winding mechanism and method convenient for packing
By designing a pearl cotton processing and winding mechanism including a rotating assembly, an adjustable winding assembly, a cutting and rolling assembly and a packaging assembly, the problem of separation of the pearl cotton roll and the rolling roll is solved, and efficient pearl cotton packaging is achieved.
Patent Information
- Application Number
- CN202210632642.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-07
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2042-06-07
AI Technical Summary
During the winding process of existing pearl cotton winding machines, the contact force between the pearl cotton and the rolling roller increases, which makes it inconvenient to separate the pearl cotton roll from the rolling roller after winding, which increases the difficulty of packaging.
A pearl cotton processing and winding mechanism is designed for easy packaging, including a base, a rotating assembly, an adjusting winding assembly, a cutting and rolling assembly and a packaging assembly. By adjusting the opening and tightening state of the winding assembly, combined with the functions of the cutting and compression assembly and the packaging assembly, the smooth winding and packaging of pearl cotton can be achieved.
The problem of difficulty in separating the pearl cotton roll from the rolling roller is effectively solved, reducing the difficulty of packaging, and avoiding the dispersion of the pearl cotton roll through compression treatment, improving the packaging quality and efficiency.
Smart Images

Figure CN114955134B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of EPE processing, and particularly to an EPE processing winding mechanism and method convenient for packing. Background Art
[0002] During the production and processing of EPE coils, it is necessary to wind the produced EPE coils to reduce the storage space occupied, facilitate handling, transportation, and subsequent splitting and other processing.
[0003] Now, a winding machine is designed for EPE winding. As the winding progresses, the contact force component between the EPE and the winding roller increases, and it is not easy to separate the wound EPE coil from the winding roller, increasing the packing difficulty.
[0004] Therefore, an EPE processing winding mechanism and method convenient for packing are proposed to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide an EPE processing winding mechanism and method convenient for packing to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the present invention provides the following technical solution: An EPE processing winding mechanism convenient for packing, including a base, a rotating component is connected to the rear end of the base, and an adjustable winding component is arranged at equal intervals along the circumferential direction at the output end of the rotating component;
[0007] The 30° position of the rotating component is the winding position, the 150° position of the rotating component is the blanking position, and the 270° position of the rotating component is the position to be wound;
[0008] The adjustable winding component includes a driving component and a position adjusting component. The driving components are installed at equal intervals along the circumferential direction on the rotating component. The driving component is connected to the position adjusting component. When winding and waiting to wind, the adjustable winding component is in an open state. When discharging, the adjustable winding component is in a tightened state. The tightened adjustable winding component facilitates the removal of the EPE coil from the adjustable winding component;
[0009] A cutting and pressing component is arranged at the position to be wound of the rotating component on the base. The cutting and pressing component is used for cutting the EPE, and then pressing the cut EPE on the adjustable winding component at the position to be wound;
[0010] A packing component is arranged below the blanking position on the base. The packing component is used for winding the EPE coil, and the packing component presses the EPE coils at the winding position and the blanking position to prevent the wound EPE coils from being scattered.
[0011] Further, the rotating assembly includes a second support plate, a rotating circular plate, a driving shaft, a second bevel gear, a fourth bevel gear, and a second driving motor. The second support plate is installed on the top of the base. A second driving motor is installed on the side wall of the second support plate. The output end of the second driving motor is fixedly connected with a fourth bevel gear. The fourth bevel gear is meshed with a second bevel gear. A driving shaft is installed in the mounting hole of the second bevel gear. The end of the driving shaft away from the second driving motor is fixedly connected with a rotating circular plate. The second support plate is rotationally connected with the driving shaft through a bearing.
[0012] Further, the driving assembly includes a winding roller, a first bevel gear, a third bevel gear, and a first driving motor. The side wall of the first driving motor is installed on the side wall of the rotating circular plate close to the second support plate along the circumferential direction. The output end of the first driving motor is fixedly connected with a third bevel gear. The third bevel gear is meshed with a first bevel gear. The winding roller is installed in the mounting hole opened on the first bevel gear;
[0013] The rotating circular plate is rotationally connected with the winding roller through a bearing.
[0014] Further, the position adjusting assembly includes a hemispherical block, a C-shaped plate, a connecting support plate, an arc-shaped guiding plate, a shrinking plate, an inclined pushing plate, an inclined plate, a square sleeve, a driving block, an inclined groove, a second elastic member, an inner sleeve, a transverse groove, and a second elastic member fixing plate; A connecting support plate is fixedly connected to the outer wall of the second support plate. The connecting support plate is fixedly connected with a C-shaped plate. An arc-shaped guiding plate is fixedly connected to the lower side wall of the C-shaped plate. A second elastic member and an inner sleeve are fixedly connected to the inner front end of the winding roller. The second elastic member is arranged outside the inner sleeve. The inner end of the second elastic member is fixedly connected with a second elastic member fixing plate. The square sleeve is installed in the mounting hole opened on the second elastic member fixing plate. The end of the square sleeve close to the second support plate is fixedly connected with a hemispherical block for cooperating with the C-shaped plate. Driving blocks are fixedly connected to the outer wall of the square sleeve. An inclined pushing plate is fixedly connected to the side wall of the driving block. Transverse grooves are equally spaced along the circumferential direction on the outer wall of the winding roller. A shrinking plate is slidably connected in the transverse groove in a fitting manner. An inclined plate is fixedly connected to the inner wall of the shrinking plate. An inclined groove for cooperating with the inclined pushing plate is opened on the inclined plate.
[0015] Further, when the inclined pushing plate moves to the innermost end of the inclined groove, the hemispherical block is in close contact with the C-shaped plate. At this time, the shrinking plate moves to the outermost end of the transverse groove; When the inclined pushing plate moves to the outermost end of the inclined groove, the hemispherical block is separated from the C-shaped plate. At this time, the outer end of the shrinking plate is arranged inside the outer wall of the winding roller.
[0016] Further, the hemispherical block is separated from the C-shaped plate before the winding roller moves to the blanking position. The hemispherical block first contacts the arc-shaped guiding plate and then is in close contact with the C-shaped plate before the winding roller moves to the position to be wound.
[0017] Further, the cutting and pressing component includes a first support plate, a pressing roller, a connecting inclined plate, a movable plate, a sliding rod, a cutter, a second linear driving component, a first elastic member, an inclined guide rail and a pressing roller. The first support plate is installed on the side wall of the base. The inner wall of the first support plate is fixedly connected with a second linear driving component and an inclined guide rail. The driving end of the second linear driving component is connected with a movable plate, and the movable plate is in limit sliding connection with the inclined guide rail through a limit sliding groove. The side wall of the movable plate is fixedly connected with first elastic members at equal intervals. The bottom of the first elastic member is fixedly connected with a pressing roller. The top of the pressing roller is fixedly connected with sliding rods at equal intervals. The sliding holes formed in the movable plate are in fitting sliding connection with the sliding rods. The end of the movable plate close to the winding position is fixedly connected with a connecting inclined plate, and the connecting inclined plate is fixedly connected with a cutter. The side wall of the first support plate is rotatably connected with a pressing roller through a bearing.
[0018] Further, the packing component includes a fixed ring, a supporting round rod, a third support plate, a first linear driving component, an arc-shaped pressing plate and a pushing plate. The third support plate and the first linear driving component are both installed on the top of the base. The top of the third support plate is fixedly connected with a fixed ring. The side wall of the fixed ring is fixedly connected with supporting round rods along the circumferential direction at equal intervals. The driving end of the first linear driving component is fixedly connected with an arc-shaped pressing plate. The side wall of the arc-shaped pressing plate is fixedly connected with a pushing plate, and the side wall of the pushing plate is in fitting contact with the end of the EPE coil at the blanking position.
[0019] Further, the inner wall of the arc-shaped pressing plate is in fitting contact with the outer wall of the EPE coil at the winding position and the blanking position.
[0020] To better achieve the purpose of the present invention, the present invention also provides a winding method for a winding mechanism for EPE processing and winding that is convenient for packing. The specific steps are as follows:
[0021] Step 1: Put the packaging bag on the outside of the fixed ring of the packing component. The second driving motor of the rotating component drives the fourth bevel gear to rotate. The fourth bevel gear drives the second bevel gear to rotate. The second bevel gear drives the driving shaft to rotate. The driving shaft drives the rotating circular plate to rotate. The rotating circular plate drives the adjustable winding component to rotate. The winding roller after blanking rotates to the waiting-for-winding position. The winding roller at the waiting-for-winding position rotates to the winding position. The winding roller at the winding position rotates to the blanking position.
[0022] Step 2: During winding, the first driving motor of the rotating component at the winding position drives the third bevel gear to rotate. The third bevel gear drives the first bevel gear to rotate. The first bevel gear drives the winding roller to rotate. The winding roller rotates for winding. After the winding roller at the winding position is wound;
[0023] Step 3: The second linear drive component of the cutting and pressing roller assembly drives the movable plate to move along the inclined guide rail. The movable plate drives the pressing roller to move and press the EPE on the outer wall of the winding roller at the winding position to be wound. The movable plate drives the cutter to continue to move through the connecting inclined plate, and the cutter cuts the EPE. The winding roller at the winding position to be wound pre-winds the cut EPE, and then the second linear drive component drives the pressing roller and the cutter to separate from the EPE. The rotating circular plate drives the adjustable winding component to rotate. The winding roller after discharging rotates to the winding position to be wound, and the winding roller at the winding position to be wound rotates to the winding position;
[0024] Step 4: Before the winding roller at the winding position rotates to the blanking position, the hemispherical block of the position adjustment component separates from the C-shaped plate. The restoring force of the second elastic component pushes the second elastic component fixing plate to move. The second elastic component fixing plate drives the square sleeve to move. The square sleeve drives the driving block to move. The driving block drives the inclined push plate to move to the outer end of the inclined groove. The inclined push plate and the inclined plate cooperate to drive the shrinkage plate to move inward into the winding roller. The EPE coil at the winding position separates from the shrinkage plate. The first linear drive component of the packing component drives the push plate to move. The push plate pushes the EPE coil at the winding position into the fixed ring and then into the packaging bag supported by the supporting round rod to achieve rapid packing.
[0025] The beneficial effects of the present invention are:
[0026] 1. The rotating circular plate of the present invention drives the drive component and the position adjustment component of the adjustable winding component. The position adjustment component drives the hemispherical block to be in close contact with the arc-shaped guiding plate, and then the hemispherical block is in close contact with the C-shaped plate. The hemispherical block drives the square sleeve to move. The square sleeve drives the driving block to move. The driving block drives the inclined push plate to move. The inclined push plate moves to the innermost end of the inclined groove. The inclined push plate drives the shrinkage plate to move outward through the cooperation of the inclined plate and the inclined groove. After the shrinkage plate moves outward, the position adjustment component is in an open state. After the position adjustment component is opened, pre-winding and winding are carried out. After the winding is completed, before the winding roller at the winding position rotates to the blanking position, the hemispherical block of the position adjustment component separates from the C-shaped plate. The restoring force of the second elastic component pushes the second elastic component fixing plate to move. The second elastic component fixing plate drives the square sleeve to move. The square sleeve drives the driving block to move. The driving block drives the inclined push plate to move to the outer end of the inclined groove. The inclined push plate and the inclined plate cooperate to drive the shrinkage plate to move inward into the winding roller. The EPE coil at the winding position separates from the shrinkage plate, which is convenient for separating from the winding roller and the shrinkage plate and reduces the packing difficulty.
[0027] 2. The second linear drive assembly of the cutting and pressing roller assembly of the present invention drives the movable plate to move along the inclined guide rail. The movable plate drives the pressing roller to move and press the EPE foam against the outer wall of the winding roller at the winding position to be wound. The movable plate drives the cutting knife to continue to move through the connecting inclined plate, and the cutting knife cuts the EPE foam. The winding roller at the winding position to be wound performs pre-winding treatment on the cut EPE foam, and then the second linear drive assembly drives the pressing roller and the cutting knife to separate from the EPE foam, facilitating the cutting and pressing of the EPE foam on the outside of the winding roller at the winding position to be wound.
[0028] 3. The first linear drive assembly of the packing assembly of the present invention drives the pushing plate to move. The pushing plate pushes the EPE foam coil at the winding position to move into the fixed ring and then into the packaging bag supported by the supporting round rod, facilitating fast packing treatment. At the same time, the arc-shaped pressing plate presses the EPE foam coil during winding and feeding, preventing the EPE foam coil on the winding roller from loosening and ensuring the packing quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0030] Figure 1 is the three-dimensional structure of the present invention Figure 1 ;
[0031] Figure 2 is the front view of the present invention;
[0032] Figure 3 is the three-dimensional structure of the present invention Figure 2 ;
[0033] Figure 4 is the three-dimensional structure of the present invention Figure 3 ;
[0034] Figure 5 is the three-dimensional structure of the present invention Figure 4 ;
[0035] Figure 6 is the sectional view of the present invention along the Figure 2 A-A direction;
[0036] Figure 7 is Figure 6 the enlarged view of the structure at B;
[0037] Figure 8 is Figure 6 the enlarged view of the structure at C.
[0038] In the drawings, the list of components represented by each reference numeral is as follows:
[0039] 1. Base 2. First support plate 3. Second support plate 4. Pressing roller 5. Connecting inclined plate 6. Movable plate 7. Slide bar 8. Cutting knife 9. Rotating circular plate 10. Winding roller 11. Fixed ring 12. Support circular rod 13. Third support plate 14. First linear drive assembly 15. Second linear drive assembly 16. Arc-shaped pressing plate 17. First elastic member 18. Pushing plate 19. Hemispherical block 20. Drive shaft 21. First bevel gear 22. C-shaped plate 23. Connecting support plate 24. Second bevel gear 25. Third bevel gear 26. First drive motor 27. Fourth bevel gear 28. Second drive motor 29. Arc-shaped guiding plate 30. Shrinking plate 31. Inclined pushing plate 32. Inclined plate 33. Square sleeve 34. Drive block 35. Inclined groove 36. Second elastic member 37. Inner sleeve 38. Horizontal groove 39. Second elastic member fixing plate 40. Inclined guide rail 41. Pressing and pasting roller. Detailed implementation manner
[0040] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
[0041] The present invention will be further described below in conjunction with the embodiments.
[0042] Embodiment 1
[0043] As Figure 1 、 2 shown in 3, 4, 5, 6, 7 and 8, the EPE processing and winding mechanism convenient for packing includes a base 1, a rotating assembly is connected to the rear end of the base 1, and an adjustable winding assembly is arranged at equal intervals along the circumferential direction at the output end of the rotating assembly;
[0044] The winding position is at the 30° position of the rotating assembly, the blanking position is at the 150° position of the rotating assembly, and the position to be wound is at the 270° position of the rotating assembly;
[0045] The rotating assembly includes a second support plate 3, a rotating circular plate 9, a driving shaft 20, a second bevel gear 24, a fourth bevel gear 27, and a second driving motor 28. The second support plate 3 is installed on the top of the base 1. A second driving motor 28 is installed on the side wall of the second support plate 3. The output end of the second driving motor 28 is fixedly connected to a fourth bevel gear 27. The fourth bevel gear 27 is meshed and connected with a second bevel gear 24. A driving shaft 20 is installed in the mounting hole of the second bevel gear 24. The end of the driving shaft 20 away from the second driving motor 28 is fixedly connected to a rotating circular plate 9. The second support plate 3 is rotationally connected to the driving shaft 20 through a bearing;
[0046] The adjustable winding assembly includes a driving assembly and a position adjusting assembly. The driving assemblies are equidistantly installed along the circumferential direction on the rotating assembly. The driving assembly is connected to the position adjusting assembly. When the adjustable winding assembly is in the winding and waiting-for-winding states, the adjustable winding assembly is in an open state. When the adjustable winding assembly is discharging, the adjustable winding assembly is in a tightened state. The tightened adjustable winding assembly facilitates the removal of the EPE coil from the adjustable winding assembly;
[0047] The driving assembly includes a winding roller 10, a first bevel gear 21, a third bevel gear 25, and a first driving motor 26. The side wall of the first driving motor 26 is installed on the side wall of the rotating circular plate 9 close to the second support plate 3 along the circumferential direction. The output end of the first driving motor 26 is fixedly connected to a third bevel gear 25. The third bevel gear 25 is meshed and connected with a first bevel gear 21. The winding roller 10 is installed in the mounting hole opened in the first bevel gear 21;
[0048] The rotating circular plate 9 is rotationally connected to the winding roller 10 through a bearing;
[0049] The 30° azimuth of the rotating circular plate 9 is the winding position, the 150° azimuth of the rotating circular plate 9 is the blanking position, and the 270° azimuth of the rotating circular plate 9 is the waiting-for-winding position;
[0050] The position adjustment assembly includes a hemispherical block 19, a C-shaped plate 22, a connecting support plate 23, an arc-shaped guide plate 29, a contraction plate 30, an inclined push plate 31, an inclined plate 32, a square sleeve 33, a driving block 34, an inclined groove 35, a second elastic member 36, an inner sleeve 37, a transverse groove 38, and a second elastic member fixing plate 39; a connecting support plate 23 is fixedly connected to the outer wall of the second support plate 3, the connecting support plate 23 is fixedly connected to the C-shaped plate 22, an arc-shaped guide plate 29 is fixedly connected to the lower end side wall of the C-shaped plate 22, a second elastic member 36 and an inner sleeve 37 are fixedly connected to the inner front end of the winding roller 10, the second elastic member 36 is arranged outside the inner sleeve 37, the inner end of the second elastic member 36 is fixedly connected to the second elastic member fixing plate 39, the square sleeve 33 is installed in the installation hole opened on the second elastic member fixing plate 39, a hemispherical block 19 used in cooperation with the C-shaped plate 22 is fixedly connected to the end of the square sleeve 33 close to the second support plate 3, driving blocks 34 are fixedly connected to the outer wall of the square sleeve 33, an inclined push plate 31 is fixedly connected to the side wall of the driving block 34, transverse grooves 38 are equidistantly arranged along the circumferential direction on the outer wall of the winding roller 10, a contraction plate 30 is in fitting sliding connection in the transverse grooves 38, an inclined plate 32 is fixedly connected to the inner wall of the contraction plate 30, and an inclined groove 35 used in cooperation with the inclined push plate 31 is opened on the inclined plate 32;
[0051] When the inclined push plate 31 moves to the innermost end of the inclined groove 35, the hemispherical block 19 is in fitting contact with the C-shaped plate 22, and at this time, the contraction plate 30 moves to the outermost end of the transverse groove 38; when the inclined push plate 31 moves to the outermost end of the inclined groove 35, the hemispherical block 19 is separated from the C-shaped plate 22, and at this time, the outer end of the contraction plate 30 is arranged inside the outer wall of the winding roller 10;
[0052] Before the winding roller 10 moves to the blanking position, the hemispherical block 19 is separated from the C-shaped plate 22. Before the winding roller 10 moves to the position to be wound, the hemispherical block 19 first contacts the arc-shaped guide plate 29 and then is in fitting contact with the C-shaped plate 22;
[0053] The rotating circular plate 9 drives the drive assembly and the position adjustment assembly of the adjustable winding assembly. The position adjustment assembly drives the hemispherical block 19 to be in close contact with the arc-shaped guide plate 29. The hemispherical block 19 then contacts the C-shaped plate 22. The hemispherical block 19 drives the square sleeve 33 to move. The square sleeve 33 drives the drive block 34 to move. The drive block 34 drives the inclined push plate 31 to move. The inclined push plate 31 moves to the innermost end of the inclined groove 35. The inclined push plate 31 drives the shrinkage plate 30 to move outwards through the cooperation of the inclined plate 32 and the inclined groove 35. After the shrinkage plate 30 moves outwards, the position adjustment assembly is in an open state. After the position adjustment assembly is opened, pre-winding and winding are carried out. After the winding is completed, the winding roller 10 at the winding position rotates to the position in front of the blanking position, and the hemispherical block 19 of the position adjustment assembly is separated from the C-shaped plate 22. The restoring force of the second elastic member 36 pushes the second elastic member fixing plate 39 to move. The second elastic member fixing plate 39 drives the square sleeve 33 to move. The square sleeve 33 drives the drive block 34 to move. The drive block 34 drives the inclined push plate 31 to move to the outer end of the inclined groove 35. The inclined push plate 31 and the inclined plate 32 cooperate to drive the shrinkage plate 30 to move inwards into the winding roller 10. The EPE coil at the winding position is separated from the shrinkage plate 30, which is convenient for separating from the winding roller 10 and the shrinkage plate 30, reducing the packaging difficulty.
[0054] The base 1 is provided with a cutting and pressing winding assembly at the winding position of the rotating assembly. The cutting and pressing winding assembly is used for EPE cutting, and then the cut EPE is pressed tightly on the winding roller 10 at the winding position.
[0055] The cutting and pressing winding assembly includes a first support plate 2, a pressing roller 4, a connecting inclined plate 5, a movable plate 6, a sliding rod 7, a cutting knife 8, a second linear drive assembly 15, a first elastic member 17, an inclined guide rail 40 and a pressing roller 41. The first support plate 2 is installed on the side wall of the base 1. The inner wall of the first support plate 2 is fixedly connected with the second linear drive assembly 15 and the inclined guide rail 40. The driving end of the second linear drive assembly 15 is connected with the movable plate 6, and the movable plate 6 is limitedly slidably connected with the inclined guide rail 40 through a limiting chute. The side wall of the movable plate 6 is fixedly connected with the first elastic members 17 at equal intervals. The bottom of the first elastic member 17 is fixedly connected with the pressing roller 41. The top of the pressing roller 41 is fixedly connected with the sliding rods 7 at equal intervals. The sliding holes formed in the movable plate 6 are in sliding fit with the sliding rods 7. The end of the movable plate 6 close to the winding position is fixedly connected with the connecting inclined plate 5. The connecting inclined plate 5 is fixedly connected with the cutting knife 8. The side wall of the first support plate 2 is rotatably connected with the pressing roller 4 through a bearing.
[0056] When the pressing roller 4 is in close contact with the EPE, the EPE is pressed against the outer wall of the winding roller 10 at the winding position.
[0057] The second linear drive assembly 15 is selected as a cylinder.
[0058] The second linear drive component 15 of the cutting and rolling assembly drives the movable plate 6 to move along the inclined guide rail 40, and the movable plate 6 drives the pressing roller 41 to move to press the pearl cotton on the outer wall of the winding roller 10 to be rolled up. The movable plate 6 drives the cutter 8 to continue to move by connecting the inclined plate 5, and the cutter 8 cuts the pearl cotton. The winding roller 10 to be rolled up will pre-roll the cut pearl cotton, and then the second linear drive component 15 drives the pressing roller 41 and the cutter 8 to separate from the pearl cotton, so as to facilitate the cutting of the pearl cotton and press it tightly on the outside of the winding roller 10 to be rolled up.
[0059] Example 2
[0060] Based on Example 1, see Figure 1 , 3 As shown in Figure 4, the base 1 is provided with a packing assembly below the material discharge position, and the packing assembly is used for rolling up the pearl cotton coils, and the packing assembly compacts the pearl cotton coils at the rolling position and the material discharge position to avoid the dispersion of the rolled pearl cotton coils;
[0061] The packaging assembly includes a fixed ring 11, a supporting round rod 12, a third supporting plate 13, a first linear drive assembly 14, an arc-shaped pressing plate 16 and a pushing plate 18. The third supporting plate 13 and the first linear drive assembly 14 are both installed on the top of the base 1. The top of the third supporting plate 13 is fixedly connected with the fixed ring 11, and the side wall of the fixed ring 11 is fixedly connected with the supporting round rod 12 at equal intervals along the circumferential direction. The driving end of the first linear drive assembly 14 is fixedly connected with the arc-shaped pressing plate 16, and the side wall of the arc-shaped pressing plate 16 is fixedly connected with the pushing plate 18. The side wall of the pushing plate 18 is in contact with the end of the pearl cotton coil at the unloading position;
[0062] The first linear drive assembly 14 uses a linear module slide.
[0063] The center of the arc-shaped pressing plate 16 coincides with the center of the rotating circular plate 9 .
[0064] The inner wall of the arc-shaped pressing plate 16 is in contact with the outer wall of the pearl cotton coil at the winding position and the unloading position.
[0065] The first linear drive component 14 of the packaging component drives the push plate 18 to move, and the push plate 18 pushes the pearl cotton coil at the winding position to move into the fixed ring 11, and then moves into the packaging bag supported by the supporting round rod 12, which is convenient for quick packaging. At the same time, the arc-shaped pressing plate 16 presses the rolled and unrolled pearl cotton coil to prevent the pearl cotton coil on the winding roller 10 from loosening, thereby ensuring the packaging quality.
[0066] In order to better achieve the purpose of the present invention, the present invention also provides a winding method of a pearl cotton processing winding mechanism that is convenient for packaging, and the specific steps are as follows:
[0067] Step 1: Put the packaging bag outside the fixed ring 11 of the packing assembly. The second drive motor 28 of the rotating assembly drives the fourth bevel gear 27 to rotate. The fourth bevel gear 27 drives the second bevel gear 24 to rotate. The second bevel gear 24 drives the drive shaft 20 to rotate. The drive shaft 20 drives the rotating circular plate 9 to rotate. The rotating circular plate 9 drives the adjustable winding assembly to rotate. After blanking, the winding roller 10 rotates to the waiting-for-winding position. The winding roller 10 at the waiting-for-winding position rotates to the winding position. The winding roller 10 at the winding position rotates to the blanking position;
[0068] Step 2: During winding, the first drive motor 26 of the rotating assembly at the winding position drives the third bevel gear 25 to rotate. The third bevel gear 25 drives the first bevel gear 21 to rotate. The first bevel gear 21 drives the winding roller 10 to rotate. The winding roller 10 performs rotational winding. After the winding roller 10 at the winding position is wound;
[0069] Step 3: The second linear drive assembly 15 of the cutting and pressing winding assembly drives the movable plate 6 to move along the inclined guide rail 40. The movable plate 6 drives the pressing roller 41 to move and press the EPE foam against the outer wall of the winding roller 10 at the waiting-for-winding position. The movable plate 6 drives the cutting knife 8 to continue moving through the connecting inclined plate 5. The cutting knife 8 cuts the EPE foam. The winding roller 10 at the waiting-for-winding position pre-winds the cut EPE foam. Then the second linear drive assembly 15 drives the pressing roller 41 and the cutting knife 8 to separate from the EPE foam, facilitating the cutting and pressing of the EPE foam against the outer side of the winding roller 10 at the waiting-for-winding position. The rotating circular plate 9 drives the adjustable winding assembly to rotate. After blanking, the winding roller 10 rotates to the waiting-for-winding position. The winding roller 10 at the waiting-for-winding position rotates to the winding position;
[0070] Step 4: Before the winding roller 10 at the winding position rotates to the blanking position, the hemispherical block 19 of the position adjustment assembly separates from the C-shaped plate 22. The restoring force of the second elastic member 36 pushes the second elastic member fixing plate 39 to move. The second elastic member fixing plate 39 drives the square sleeve 33 to move. The square sleeve 33 drives the driving block 34 to move. The driving block 34 drives the inclined push plate 31 to move to the outer end of the inclined groove 35. The inclined push plate 31 and the inclined plate 32 cooperate to drive the contraction plate 30 to move inward into the winding roller 10. The EPE foam coil at the winding position separates from the contraction plate 30, facilitating the separation from the winding roller 10 and the contraction plate 30, reducing the packing difficulty. The first linear drive assembly 14 of the packing assembly drives the pushing plate 18 to move. The pushing plate 18 pushes the EPE foam coil at the winding position into the fixed ring 11 and then into the packaging bag supported by the support round rod 12, facilitating fast packing. Winding and blanking can be carried out synchronously, improving the winding efficiency.
[0071] Among them, when the rotating circular plate 9 rotates from the blanking position to the winding position to be wound, the rotating circular plate 9 drives the driving component and the position adjusting component of the adjustable winding component. The position adjusting component drives the hemispherical block 19 to be in close contact with the arc-shaped guiding plate 29. Then, the hemispherical block 19 is in close contact with the C-shaped plate 22. The hemispherical block 19 drives the square sleeve 33 to move. The square sleeve 33 drives the driving block 34 to move. The driving block 34 drives the inclined pushing plate 31 to move. The inclined pushing plate 31 moves to the innermost end of the inclined groove 35. The inclined pushing plate 31 drives the shrinkage plate 30 to move outwards through the cooperation of the inclined plate 32 and the inclined groove 35. After the shrinkage plate 30 moves outwards, the position adjusting component is in an open state. After the position adjusting component is opened, pre-winding and winding are carried out. After the winding is completed, the winding roller 10 at the winding position rotates to a position in front of the blanking position, and the hemispherical block 19 of the position adjusting component is separated from the C-shaped plate 22. The restoring force of the second elastic member 36 pushes the second elastic member fixing plate 39 to move. The second elastic member fixing plate 39 drives the square sleeve 33 to move. The square sleeve 33 drives the driving block 34 to move. The driving block 34 drives the inclined pushing plate 31 to move to the outer end of the inclined groove 35. The inclined pushing plate 31 and the inclined plate 32 cooperate to drive the shrinkage plate 30 to move inwards into the winding roller 10. The EPE coil material at the winding position is separated from the shrinkage plate 30, which is convenient for separating from the winding roller 10 and the shrinkage plate 30, and reduces the packaging difficulty.
[0072] In the description of this specification, the descriptions referring to terms such as "one embodiment", "example", "specific example", etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.
[0073] The above-disclosed preferred embodiments of the present invention are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the present invention to only the specific embodiments. Obviously, many modifications and variations can be made according to the content of this specification. These embodiments are selected and specifically described in this specification to better explain the principles and practical applications of the present invention, so that those skilled in the relevant technical field can well understand and utilize the present invention. The present invention is only limited by the claims and their full scope and equivalents.
Claims
1. A pearl cotton processing and winding mechanism for convenient packing, comprising a base (1), Characterized in that: A rotating component is connected to the rear end of the base (1), and an adjustable winding component is arranged at equal intervals along the circumferential direction at the output end of the rotating component; The 30° position of the rotating component is the winding position, the 150° position of the rotating component is the blanking position, and the 270° position of the rotating component is the position to be wound; The adjustable winding component includes a driving component and a position adjusting component. The driving components are installed at equal intervals along the circumferential direction on the rotating component. The driving component is connected with the position adjusting component. The adjustable winding component is in an open state when winding and waiting to wind, and the adjustable winding component is in a tightened state when discharging. The adjustable winding component in the tightened state facilitates the removal of the pearl cotton coil from the adjustable winding component; A cutting and pressing coil component is arranged at the position to be wound of the rotating component on the base (1). The cutting and pressing coil component is used for cutting the pearl cotton, and then pressing the cut pearl cotton on the adjustable winding component; A packing component is arranged below the blanking position of the base (1). The packing component is used for winding the pearl cotton coil, and the packing component presses the pearl cotton coils at the winding position and the blanking position to prevent the wound pearl cotton coils from being scattered; The rotating component includes a second support plate (3) installed on the base (1) and a rotating circular plate (9) rotatably connected to the second support plate (3). The driving component includes a winding roller (10) rotatably connected to the rotating circular plate (9); The position adjusting assembly includes a hemispherical block (19), a C-shaped plate (22), a connecting support plate (23), an arc-shaped guiding plate (29), a shrinking plate (30), an inclined pushing plate (31), an inclined plate (32), a square sleeve (33), a driving block (34), an inclined groove (35), a second elastic member (36), an inner sleeve (37), a transverse groove (38) and a second elastic member fixing plate (39); a connecting support plate (23) is fixedly connected to the outer wall of the second support plate (3), the connecting support plate (23) is fixedly connected to a C-shaped plate (22), an arc-shaped guiding plate (29) is fixedly connected to the lower side wall of the C-shaped plate (22), a second elastic member (36) and an inner sleeve (37) are fixedly connected to the inner front end of the winding roller (10), the second elastic member (36) is arranged outside the inner sleeve (37), the inner end of the second elastic member (36) is fixedly connected to a second elastic member fixing plate (39), the square sleeve (33) is installed in the installation hole formed in the second elastic member fixing plate (39), a hemispherical block (19) which is used in cooperation with the C-shaped plate (22) is fixedly connected to the end of the square sleeve (33) close to the second support plate (3), driving blocks (34) are fixedly connected to the outer wall of the square sleeve (33), an inclined pushing plate (31) is fixedly connected to the side wall of the driving block (34), transverse grooves (38) are equidistantly formed in the circumferential direction on the outer wall of the winding roller (10), a shrinking plate (30) is in fitting sliding connection in the transverse grooves (38), an inclined plate (32) is fixedly connected to the inner wall of the shrinking plate (30), and an inclined groove (35) which is used in cooperation with the inclined pushing plate (31) is formed in the inclined plate (32). When the inclined pushing plate (31) moves to the innermost end of the inclined groove (35), the hemispherical block (19) is in fitting contact with the C-shaped plate (22), and at this time, the shrinking plate (30) moves to the outermost end of the transverse groove (38); when the inclined pushing plate (31) moves to the outermost end of the inclined groove (35), the hemispherical block (19) is separated from the C-shaped plate (22), and at this time, the outer end of the shrinking plate (30) is arranged inside the outer wall of the winding roller (10). Before the winding roller (10) moves to the blanking position, the hemispherical block (19) is separated from the C-shaped plate (22), and before the winding roller (10) moves to the winding position to be wound, the hemispherical block (19) first contacts the arc-shaped guiding plate (29) and then is in fitting contact with the C-shaped plate (22).
2. The EPE processing and winding mechanism for convenient packing according to claim 1, characterized in that: The rotating assembly includes a second support plate (3), a rotating circular plate (9), a driving shaft (20), a second bevel gear (24), a fourth bevel gear (27), and a second driving motor (28). The second support plate (3) is installed on the top of the base (1). A second driving motor (28) is installed on the side wall of the second support plate (3). The output end of the second driving motor (28) is fixedly connected to a fourth bevel gear (27). The fourth bevel gear (27) is meshed with a second bevel gear (24). A driving shaft (20) is installed in the mounting hole of the second bevel gear (24). The end of the driving shaft (20) away from the second driving motor (28) is fixedly connected to a rotating circular plate (9). The second support plate (3) is rotationally connected to the driving shaft (20) through a bearing.
3. The EPE processing and winding mechanism for convenient packaging according to claim 1, wherein: The driving assembly includes a winding roller (10), a first bevel gear (21), a third bevel gear (25), and a first driving motor (26). The side wall of the first driving motor (26) is installed on the side wall of the rotating circular plate (9) close to the second support plate (3) along the circumferential direction. The output end of the first driving motor (26) is fixedly connected to a third bevel gear (25). The third bevel gear (25) is meshed with a first bevel gear (21). The winding roller (10) is installed in the mounting hole opened in the first bevel gear (21); The rotating circular plate (9) is rotationally connected to the winding roller (10) through a bearing.
4. The EPE processing and winding mechanism for convenient packaging according to claim 1, wherein: The cutting and pressing and winding assembly includes a first support plate (2), a pressing roller (4), a connecting inclined plate (5), a movable plate (6), a sliding rod (7), a cutter (8), a second linear driving assembly (15), a first elastic member (17), an inclined guide rail (40), and a pressing and pasting roller (41). The first support plate (2) is installed on the side wall of the base (1). A second linear driving assembly (15) and an inclined guide rail (40) are fixedly connected to the inner wall of the first support plate (2). The driving end of the second linear driving assembly (15) is connected to a movable plate (6), and the movable plate (6) is slidably connected to the inclined guide rail (40) through a limiting chute. A first elastic member (17) is fixedly connected to the side wall of the movable plate (6) at equal intervals. The bottom of the first elastic member (17) is fixedly connected to a pressing and pasting roller (41). A sliding rod (7) is fixedly connected to the top of the pressing and pasting roller (41) at equal intervals. The sliding hole opened in the movable plate (6) is in sliding fit with the sliding rod (7). A connecting inclined plate (5) is fixedly connected to the end of the movable plate (6) close to the winding position. A cutter (8) is fixedly connected to the connecting inclined plate (5). A pressing roller (4) is rotationally connected to the side wall of the first support plate (2) through a bearing.
5. The EPE processing and winding mechanism for convenient packaging according to claim 1, wherein: The packing component includes a fixing ring (11), a supporting round rod (12), a third supporting plate (13), a first linear driving component (14), an arc-shaped pressing plate (16) and a pushing plate (18). The third supporting plate (13) and the first linear driving component (14) are both installed on the top of the base (1). A fixing ring (11) is fixedly connected to the top of the third supporting plate (13). The side wall of the fixing ring (11) is fixedly connected with supporting round rods (12) at equal intervals along the circumferential direction. The driving end of the first linear driving component (14) is fixedly connected with an arc-shaped pressing plate (16). The side wall of the arc-shaped pressing plate (16) is fixedly connected with a pushing plate (18). The side wall of the pushing plate (18) is in fitting contact with the end of the EPE coil at the blanking position.
6. The EPE processing and winding mechanism for convenient packing according to claim 5, characterized in that: The inner wall of the arc-shaped pressing plate (16) is in fitting contact with the outer wall of the EPE coil at the winding position and the blanking position.
7. A winding method of the EPE processing and winding mechanism for convenient packing according to claim 5, characterized in that: The specific steps are as follows: Step 1: Put the packaging bag on the outside of the fixing ring (11) of the packing component. The second driving motor (28) of the rotating component drives the fourth bevel gear (27) to rotate. The fourth bevel gear (27) drives the second bevel gear (24) to rotate. The second bevel gear (24) drives the driving shaft (20) to rotate. The driving shaft (20) drives the rotating circular plate (9) to rotate. The rotating circular plate (9) drives the adjustable winding component to rotate. The winding roller (10) after blanking rotates to the waiting winding position. The winding roller (10) at the waiting winding position rotates to the winding position. The winding roller (10) at the winding position rotates to the blanking position; Step 2: During winding, the first driving motor (26) of the rotating component at the winding position drives the third bevel gear (25) to rotate. The third bevel gear (25) drives the first bevel gear (21) to rotate. The first bevel gear (21) drives the winding roller (10) to rotate. The winding roller (10) performs rotational winding. After the winding roller (10) at the winding position is wound; Step 3: The second linear driving component (15) of the cutting and pressing winding component drives the movable plate (6) to move along the inclined guide rail (40). The movable plate (6) drives the pressing roller (41) to move to press the EPE on the outer wall of the winding roller (10) at the waiting winding position. The movable plate (6) drives the cutter (8) to continue moving through the connecting inclined plate (5). The cutter (8) cuts the EPE. The winding roller (10) at the waiting winding position pre-winds the cut EPE. Then the second linear driving component (15) drives the pressing roller (41) and the cutter (8) to separate from the EPE. The rotating circular plate (9) drives the adjustable winding component to rotate. The winding roller (10) after blanking rotates to the waiting winding position. The winding roller (10) at the waiting winding position rotates to the winding position; Step 4: The winding roller (10) at the winding position rotates to a position before the material discharging position, and the hemispherical block (19) of the position adjusting assembly is separated from the C-shaped plate (22). The restoring force of the second elastic member (36) pushes the second elastic member fixing plate (39) to move. The second elastic member fixing plate (39) drives the square sleeve (33) to move. The square sleeve (33) drives the driving block (34) to move. The driving block (34) drives the inclined push plate (31) to move to the outer end of the inclined groove (35). The inclined push plate (31) and the inclined plate (32) cooperate to drive the shrinkage plate (30) to move inward into the winding roller (10). The EPE coil at the winding position is separated from the shrinkage plate (30). The first linear driving assembly (14) of the packing assembly drives the pushing plate (18) to move. The pushing plate (18) pushes the EPE coil at the winding position to move into the fixing ring (11), and then moves into the packaging bag supported by the supporting round rod (12), realizing fast packing processing.
Citation Information
Patent Citations
Dust-free packaging bag film roll winding structure
CN215885720U