A new material film winding and cutting device

By designing an automated winding and cutting device, the problems of low efficiency and easy wrinkling of manual winding of new material films were solved, and the automated processing of quantitative winding and cutting was realized.

CN113071944BActive Publication Date: 2026-04-14NANJING HONGHENGHUANG TRADING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-03-05
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing technologies, the winding of new material films requires manual operation, which results in low efficiency and easy wrinkling, making it impossible to achieve quantitative winding.

Method used

An automated device was designed, comprising a winding component, a flattening component, a cutting component, and a pushing component. The device uses a geared motor to drive the rollers to wind the film, the flattening component to slide and flatten the film, the cutting component to perform quantitative cutting, and the pushing component to perform automatic cutting.

Benefits of technology

It enables automated quantitative winding of new material films, avoiding wrinkles, improving work efficiency, and allowing for cutting as needed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of winding cutting device, more particularly to a kind of new material film winding cutting device.It provides a kind of new material film that can be automatically wound, new material film will not be wrinkled, can be quantitatively wound new material film winding cutting device.A kind of new material film winding cutting device, including: mounting base;Winding assembly, installed on mounting base, winding is carried out by rotating mode;Flattening assembly, installed on mounting base, flattening is carried out by sliding mode.The present application can be wound to new material film by winding assembly, can flatten new material film when winding new material film by flattening assembly, avoid new material film to be wrinkled, can be cut to new material film by cutting assembly, can be cut to new material film automatically according to people's needs by pushing assembly.
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Description

Technical Field

[0001] This invention relates to a winding and cutting device, and more particularly to a winding and cutting device for a novel material film. Background Technology

[0002] A film is a thin, flexible, transparent sheet. It is made of plastics, adhesives, rubber, or other materials. Film materials refer to thin layers of metal or organic matter with a thickness ranging from a single atom to a few millimeters.

[0003] During the processing of new material films, they need to be quantitatively rolled into a tube for easy storage and use. Currently, the new material films are rolled up manually. This manual rolling method requires a lot of manpower, cannot be quantitatively rolled, and easily wrinkles the new material films, resulting in low work efficiency.

[0004] Therefore, it is necessary to design a new material film winding and cutting device that can automatically wind up the new material film without causing wrinkles and can perform quantitative winding to solve the above problems. Summary of the Invention

[0005] In order to overcome the shortcomings of requiring manual winding of new material films, which cannot be quantitatively wound, easily wrinkles the new material films, and has low work efficiency, the technical problem of the present invention is to provide a winding and cutting device for new material films that can automatically wind up the new material films without causing wrinkles and can quantitatively wind them up.

[0006] The technical solution is as follows: A new material film winding and cutting device includes: a mounting base; a winding assembly mounted on the mounting base, which winds the film by rotation; and a flattening assembly mounted on the mounting base, which flattens the film by sliding.

[0007] Optionally, the winding assembly includes: a geared motor mounted on a mounting base; a rotating shaft mounted on the output shaft of the geared motor; a roller mounted on the rotating shaft, the roller having a wedge-shaped groove; a fixed plate rotatably mounted on the roller; a contact block mounted on the fixed plate; a first spring mounted between the fixed plate and the roller; an annular block rotatably mounted on the roller; a push block mounted on the annular block, the push block cooperating with the contact block; a mounting sleeve mounted on the annular block; a cylindrical rod slidably mounted on the mounting sleeve; a second spring mounted between the cylindrical rod and the mounting sleeve; and a wedge block mounted on the cylindrical rod, the wedge-shaped groove cooperating with the wedge block.

[0008] Optionally, the flattening assembly includes: two mounting brackets, both mounted on a mounting base; a strip plate mounted between the two mounting brackets; two prismatic guide sleeves, both mounted on the strip plate; two prismatic slide rods, both slidably mounted inside the prismatic guide sleeves; two third springs, both mounted between the prismatic slide rods and the prismatic guide sleeves; and an arc-shaped pressure plate mounted between the two prismatic slide rods.

[0009] Optionally, it also includes a cutting assembly, which includes: a shaped mounting block mounted on an arc-shaped pressure plate; two cylindrical slide rods, both slidably mounted on the shaped mounting block; two fourth springs, both mounted between the cylindrical slide rods and the shaped mounting block; and a blade mounted between the two cylindrical slide rods.

[0010] Optionally, it also includes a pushing assembly, which includes: a mounting plate installed between two mounting brackets; two cylindrical guide sleeves, each installed on the mounting plate; two vertical rods, each slidably installed within the cylindrical guide sleeves; two contact plates, each installed on the vertical rods; two connecting plates, each installed on the vertical rods; a nut installed between the two connecting plates; a screw rotatably installed on the mounting plate, the screw engaging with the nut; and a handle installed on the screw.

[0011] The beneficial effects are: the present invention can wind up the new material film through the winding component, flatten the new material film during winding through the flattening component to avoid wrinkles in the new material film, cut the new material film through the cutting component, and automatically cut the new material film according to people's needs through the pushing component. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0013] Figure 2 This is a three-dimensional structural diagram of the winding assembly of the present invention.

[0014] Figure 3 This is a partial three-dimensional structural diagram of the winding assembly of the present invention.

[0015] Figure 4 This is a three-dimensional structural diagram of the flattening component of the present invention.

[0016] Figure 5 This is a three-dimensional structural diagram of the cutting component of the present invention.

[0017] Figure 6 This is a three-dimensional structural diagram of the driving component of the present invention.

[0018] The following are the label names in the diagram: 1. Mounting base, 2. Rewinding assembly, 21. Gear motor, 22. Shaft, 23. Roller, 24. Fixing plate, 25. Contact block, 26. First spring, 27. Annular block, 28. Push block, 29. Mounting sleeve, 291. Columnar rod, 292. Second spring, 293. Wedge block, 294. Wedge groove, 3. Flattening assembly, 31. Mounting bracket, 32. Strip plate, 33. Prism-shaped guide sleeve, 34. Prism-shaped slide bar, 35. Third spring, 36. Arc-shaped pressure plate, 4. Cutting assembly, 41. Irregular mounting block, 42. Columnar slide bar, 43. Fourth spring, 44. Blade, 5. Pushing assembly, 51. Mounting plate, 52. Columnar guide sleeve, 53. Vertical rod, 54. Contact plate, 55. Connecting plate, 56. Nut, 57. Screw, 58. Handle. Detailed Implementation

[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0020] Example 1

[0021] A new type of film winding and cutting device, such as Figure 1-6 As shown, it includes a mounting base 1, a winding assembly 2, and a flattening assembly 3. The mounting base 1 is provided with a winding assembly 2 that is wound by rotation, and the mounting base 1 is provided with a flattening assembly 3 that is flattened by sliding.

[0022] When using the device, the staff starts the winding assembly 2 to wind up the new material film. At the same time, the flattening assembly 3 can be used to flatten the new material film. After the winding is completed, the staff turns off the winding assembly 2 and then removes the wound new material film for collection.

[0023] like Figure 1 , Figure 2 and Figure 3As shown, the winding assembly 2 includes a geared motor 21, a rotating shaft 22, a roller 23, a fixing plate 24, a contact block 25, a first spring 26, an annular block 27, a push block 28, a mounting sleeve 29, a cylindrical rod 291, a second spring 292, and a wedge block 293. The geared motor 21 is bolted to the left side of the mounting base 1. The output shaft of the geared motor 21 is connected to the rotating shaft 22. The roller 23 is mounted on the rotating shaft 22. The fixing plate 24 is rotatably mounted on the roller 23. The contact block 25 is located on the right side of the fixing plate 24. The fixing plate 24 and the roller... A first spring 26 is connected between rollers 23. A ring block 27 is rotatably provided on the right side of roller 23. A push block 28 is provided on the ring block 27. The push block 28 cooperates with the contact block 25. An installation sleeve 29 is provided on the ring block 27. A cylindrical rod 291 is slidably provided on the installation sleeve 29. A second spring 292 is wound between the cylindrical rod 291 and the installation sleeve 29. The second spring 292 is in a compressed state. A wedge block 293 is provided on the left side of the cylindrical rod 291. A wedge groove 294 is opened on the right side of roller 23. The wedge groove 294 cooperates with the wedge block 293.

[0024] When winding the new material film, the worker first places one end of the new material film under the fixing plate 24. After placing it, the worker rotates the annular block 27. The rotation of the annular block 27 drives the contact block 25 to rotate upward through the push block 28. The upward rotation of the contact block 25 drives the fixing plate 24 to rotate downward, pressing one end of the new material film. The first spring 26 is compressed. The rotation of the annular block 27 drives the cylindrical rod 291 to rotate through the mounting sleeve 29. The wedge block 293 rotates accordingly. When the wedge block 293 rotates to engage with the wedge slot 294, under the action of the second spring 292 resetting, the cylindrical rod 291 drives the wedge block 293 to move to the left and engage with the wedge slot 294. Then, the worker starts the reduction motor 21. The rotation of the reduction motor 21 drives the rotating shaft 22 to rotate. The rotation of the rotating shaft 22 drives the roller 23 to rotate, winding the new material film. In this way, the new material film can be wound up.

[0025] like Figure 1 , Figure 4 , Figure 5 and Figure 6 As shown, the flattening assembly 3 includes a mounting bracket 31, a strip plate 32, a prismatic guide sleeve 33, a prismatic slide rod 34, a third spring 35, and an arc-shaped pressure plate 36. The mounting base 1 has two mounting brackets 31 at the rear. A strip plate 32 is provided between the upper parts of the two mounting brackets 31. Prismatic guide sleeves 33 are provided on both the left and right sides of the strip plate 32. Prismatic slide rods 34 are slidably provided inside the prismatic guide sleeves 33. A third spring 35 is wound between the prismatic slide rods 34 and the prismatic guide sleeves 33. An arc-shaped pressure plate 36 is provided between the front ends of the two prismatic slide rods 34.

[0026] When the new material film is wound up, the new material film pushes the arc-shaped pressure plate 36 to move backward. The arc-shaped pressure plate 36 moves backward and drives the prismatic slide bar 34 to slide backward in the prismatic guide sleeve 33. The third spring 35 is compressed. In this way, the new material film can be flattened when it is wound up, and wrinkles can be avoided.

[0027] Example 2

[0028] Based on Example 1, such as Figure 1 and Figure 5 As shown, it also includes a cutting component 4, which includes a shaped mounting block 41, a cylindrical slide rod 42, a fourth spring 43, and a blade 44. The arc-shaped pressure plate 36 is provided with shaped mounting blocks 41 on both the left and right sides. The cylindrical slide rod 42 is slidably provided on each shaped mounting block 41. The fourth spring 43 is wound between the cylindrical slide rod 42 and the shaped mounting block 41. The blade 44 is provided between the front ends of the two cylindrical slide rods 42 on the left and right sides.

[0029] When the new material film is wound up, after the new material film is wound up to a certain amount, the worker pushes the cylindrical slide bar 42 to slide forward on the irregular mounting block 41. The fourth spring 43 is compressed, and the cylindrical slide bar 42 slides forward, driving the blade 44 to move forward to cut the new material film. After the cutting is completed, the worker releases the cylindrical slide bar 42. Under the action of the fourth spring 43 returning to its original position, the cylindrical slide bar 42 drives the blade 44 to move backward to return to its original position. In this way, the new material film can be cut.

[0030] Based on Example 1, such as Figure 1 and Figure 6 As shown, it also includes a pushing assembly 5, which includes a mounting plate 51, a cylindrical guide sleeve 52, a vertical rod 53, a contact plate 54, a connecting plate 55, a nut 56, a screw 57, and a handle 58. The mounting plate 51 is located between the tops of the two mounting brackets 31. The mounting plate 51 has cylindrical guide sleeves 52 on both the left and right sides. The vertical rod 53 is slidably located inside the cylindrical guide sleeves 52. The front end of the vertical rod 53 is provided with a contact plate 54, which cooperates with the cylindrical slide rod 42. The rear end of the vertical rod 53 is provided with a connecting plate 55. The nut 56 is located between the two connecting plates 55. The screw 57 is rotatably located on the mounting plate 51. The screw 57 cooperates with the nut 56. The rear end of the screw 57 is provided with a handle 58.

[0031] When winding the new material film, the operator turns the handle 58. The turn of the handle 58 drives the screw 57 to rotate, which in turn drives the nut 56 to move back and forth. The movement of the nut 56, through the connecting plate 55, causes the vertical rod 53 to slide back and forth within the cylindrical guide sleeve 52. The sliding of the vertical rod 53 causes the contact plate 54 to move back and forth. When the contact plate 54 has moved to the appropriate position, the operator stops turning the handle 58. When the arc-shaped pressure plate 36 moves backward, it drives the cylindrical slide rod 42 to move backward through the irregular mounting block 41 until it contacts the contact plate 54. The contact plate 54 pushes the cylindrical slide rod 42 to slide forward within the irregular mounting block 41. The forward sliding of the cylindrical slide rod 42 causes the blade 44 to move forward to cut the new material film. In this way, the new material film can be automatically cut according to people's needs.

[0032] The above embodiments are provided for those skilled in the art to implement or use the present invention. Those skilled in the art can make various modifications or changes to the above embodiments without departing from the inventive concept of the present invention. Therefore, the protection scope of the present invention is not limited to the above embodiments, but should be the maximum scope that conforms to the innovative features mentioned in the claims.

Claims

1. A new material film winding and cutting device, characterized in that, It includes: a mounting base (1); a winding assembly (2), which is mounted on the mounting base (1) and is wound up by rotation; and a flattening assembly (3), which is mounted on the mounting base (1) and is flattened by sliding. The winding assembly (2) includes: a geared motor (21) mounted on the mounting base (1); a rotating shaft (22) mounted on the output shaft of the geared motor (21); a roller (23) mounted on the rotating shaft (22), with a wedge-shaped groove (294) on the roller (23); a fixing plate (24) rotatably mounted on the roller (23); a contact block (25) mounted on the fixing plate (24); a first spring (26) mounted between the fixing plate (24) and the roller (23); and an annular block (27). The components are: a rotating mounting on the roller (23); a push block (28) mounted on the annular block (27), which engages with the contact block (25); a mounting sleeve (29) mounted on the annular block (27); a cylindrical rod (291) slidably mounted on the mounting sleeve (29); a second spring (292) mounted between the cylindrical rod (291) and the mounting sleeve (29); and a wedge block (293) mounted on the cylindrical rod (291), with a wedge groove (294) engaging with the wedge block (293). The flattening assembly (3) includes: a mounting bracket (31), two mounting brackets (31) are mounted on the mounting base (1); a strip plate (32) is mounted between the two mounting brackets (31); two prismatic guide sleeves (33) are mounted on the strip plate (32); two prismatic slide rods (34) are slidably mounted inside the prismatic guide sleeves (33); two third springs (35) are mounted between the prismatic slide rods (34) and the prismatic guide sleeves (33); and an arc-shaped pressure plate (36) is mounted between the two prismatic slide rods (34). It also includes a cutting component (4), which includes: a shaped mounting block (41) mounted on an arc-shaped pressure plate (36); two cylindrical slide rods (42) mounted on the shaped mounting block (41); two fourth springs (43) mounted between the cylindrical slide rods (42) and the shaped mounting block (41); and a blade (44) mounted between the two cylindrical slide rods (42).

2. The winding and cutting device for a new material film according to claim 1, characterized in that, It also includes a push assembly (5), which includes: a mounting plate (51) installed between two mounting brackets (31); two cylindrical guide sleeves (52), both installed on the mounting plate (51); two vertical rods (53), both slidably installed inside the cylindrical guide sleeves (52); two contact plates (54), both installed on the vertical rods (53); two connecting plates (55), both installed on the vertical rods (53); a nut (56) installed between the two connecting plates (55); a screw (57) rotatably installed on the mounting plate (51), the screw (57) cooperating with the nut (56); and a handle (58) installed on the screw (57).

3. The winding and cutting device for a new material film according to claim 2, characterized in that, It also includes: a geared motor (21), which is a rotary motor.

Citation Information

Patent Citations

  • PET film rolling machine

    CN212197702U