Anti-rolling film pasting device
By introducing a rolling mechanism and a heating roller into the film laminating device, the problem of insufficient adhesion between the water-based adhesive film and the release film is solved, and a better laminating effect and glue viscosity stimulation are achieved.
Patent Information
- Application Number
- CN202422813672.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-19
AI Technical Summary
In traditional film laminating devices, the adhesion between the hydrogel film and the release film is insufficient, resulting in poor laminating effect.
The anti-curling film laminating device is adopted, which includes a rolling mechanism and a heating roller. The rolling mechanism improves the adhesion effect between the water-based adhesive film and the release film, and the heating roller transfers heat to stimulate the viscosity of the glue.
It effectively improves the adhesion effect of water-based adhesive film and release film, prevents curling, ensures that the glue does not dry out prematurely, and enhances adhesion.
Smart Images

Figure CN223431994U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a film pasting equipment field, concretely is a kind of anti-material winding film pasting device. BACKGROUND
[0002] Water adhesive film is made and needs to be attached to release film on the glue surface of water adhesive film.Aiming at the attachment of the sliced water adhesive film to release film, the commonly used mechanism is to place the water adhesive film on one side and release film on the other side, then attach the sliced water adhesive film to release film.The traditional mechanism only places the water adhesive film on the glue surface of release film after being sucked by suction plate.This structure may cause insufficient adhesion after the attachment of water adhesive film to release film.
[0003] Therefore, it is necessary to provide an anti-material winding film pasting device. SUMMARY
[0004] The anti-material winding film pasting device effectively solves the problem of material winding caused by the existing film pasting device.
[0005] The technical solution adopted by the utility model is as follows:
[0006] The anti-material winding film pasting device comprises a rack, a separation die-cutting mechanism arranged on the rack along the X direction, a gantry attachment mechanism and a material winding traction mechanism, further comprises a rolling mechanism arranged on the rack for rolling the product on the material winding traction mechanism, the rolling mechanism comprises a No.
[0007] Further, the mounting seat is further provided with a heat shield, the heat shield is provided with a semicircular groove with a notch downward, and the upper half of the heating roller is located in the semicircular groove.
[0008] Furthermore, the coil traction mechanism includes a No. 1 vacuum adsorption platform, a No. 2 vacuum adsorption platform and a traction assembly arranged on the frame along the X direction, the traction assembly includes a No. 1 seat arranged on the frame, an active roller arranged on the No. 1 seat along the Y direction, a motor arranged on the No. 1 seat for driving the active roller to rotate, a No. 1 rotating shaft arranged on the No. 1 seat, a No. 2 shaft fixedly connected to the locking handle, a rotating plate fixedly connected to the No. 2 shaft, a locking handle fixedly connected to the end of the No. 1 rotating shaft and the No. 2 shaft, a connecting piece vertically slidably connected to the No. 1 seat, a No. 3 shaft arranged on the connecting piece, a rubber pressure wheel arranged on the No. 3 shaft and a spring arranged up and down with both ends respectively resisting the rotating plate and the connecting piece, an arc groove and a vertical slide groove are provided on the mounting seat, the connecting piece is slidably connected to the No. 1 seat through the vertical slide groove, and the No. 2 shaft is fixedly connected to the locking handle through the arc groove.
[0009] Furthermore, the connecting member includes a connecting bar slidably connected to the vertical slide groove, a flat plate connected to the side of the connecting bar in the horizontal direction, a top plate fixedly connected to the upper end of the connecting bar, and a connecting block connected to the lower end of the connecting bar. The third shaft is fixedly connected to the connecting block, and the lower end of the spring is fixedly set on the flat plate.
[0010] Furthermore, the gantry attachment mechanism includes a No. 2 seat arranged on the frame, a No. 2 linear module A arranged on the No. 2 seat along the X direction, a No. 2 linear module B fixedly arranged at the output end of the No. 2 linear module A along the Y direction, a No. 2 linear module C fixedly arranged at the output end of the No. 2 linear module B along the Z direction, a No. 2 cylinder fixedly arranged at the output end of the No. 2 linear module C, and a suction plate arranged at the output end of the No. 2 cylinder.
[0011] Furthermore, the separation die-cutting mechanism includes a No. 3 seat provided on the frame, an unwinding assembly provided on the No. 3 seat along the X direction, a peeling assembly, a roller drive assembly, a cutting assembly, a No. 1 camera assembly for photographing the top of the hydrogel film to be cut, a lifting adsorption platform for cooperating with the cutting assembly, and a No. 2 camera assembly for photographing and positioning the hydrogel film adsorbed by the gantry adsorption mechanism after cutting from below;
[0012] The beneficial effects of the utility model are as follows: by setting up a rolling mechanism, the adhesion effect between the water-gel film and the release film can be improved to prevent the material from curling up. At the same time, the heat is transferred to the water-gel film through the heating roller, so that the water-gel film and the release film will not dry out immediately after being attached, and the adhesive between the water-gel film and the release film can be effectively stimulated. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is an overall schematic diagram of the anti-curling film laminating device provided in an embodiment of the present application.
[0014] Figure 2Schematic diagram of the rolling mechanism of the anti-curling film laminating device provided in an embodiment of the present application.
[0015] Figure 3 This is a schematic diagram of the traction component of the anti-curling film laminating device provided in an embodiment of the present application.
[0016] Figure 4 This is an exploded view of the connecting member, the second shaft, the rotating plate and the first rotating shaft of the traction assembly of the anti-curling film laminating device provided in an embodiment of the present application.
[0017] Figure 5 This is a schematic diagram of the gantry attachment mechanism of the anti-curling film laminating device provided in an embodiment of the present application.
[0018] Figure 6 This is a schematic diagram of the separation die-cutting mechanism of the anti-curling film laminating device provided in an embodiment of the present application.
[0019] The following are marked in the figure: 1. Frame; 2. Separation die-cutting mechanism; 3. Gantry attachment mechanism; 4. Coil pulling mechanism; 5. Rolling mechanism; 51. Bracket No. 1; 52. Linear module No. 1; 53. Connecting frame No. 1; 54. Lifting frame No. 1; 55. Cylinder No. 1; 56. Mounting seat; 57. Heating roller; 58. Heat shield; 41. Vacuum adsorption platform No. 1; 42. Vacuum adsorption platform No. 2; 43. Pulling assembly; 4301. Base No. 1; 4302. Active roller; 4303. Motor; 4304. Rotating shaft No. 1; 4305. Rotating shaft No. 2; 4306. Rotating plate; 4307. Locking handle; 4 308, connector; 4309, shaft No. 3; 4310, rubber pressure roller; 4311, spring; 401, arc groove; 402, vertical slide; 801, connecting bar; 802, flat plate; 803, top plate; 804, connecting block; 31, seat No. 2; 32, linear module No. 2 A; 33, linear module No. 2 B; 34, linear module No. 2 C; 35, cylinder No. 2; 36, suction plate; 21, seat No. 3; 22, unwinding assembly; 23, peeling assembly; 24, roller drive assembly; 25, cutting assembly; 26, camera No. 1 assembly; 27, lifting adsorption platform; 28, camera No. 2 assembly; DETAILED DESCRIPTION
[0020] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0021] like Figure 1As shown, the anti-rolling film laminating device provided in the embodiment of the present application comprises a frame 1, a separation die-cutting mechanism 2 arranged on the frame 1 along the X direction, a gantry laminating mechanism 3 and a roll material traction mechanism 4, and further comprises a rolling mechanism 5 arranged on the frame 1 for rolling the product on the roll material traction mechanism 4. Figure 2 As shown, the rolling mechanism 5 includes a No. 1 bracket 51 arranged on the frame 1, a No. 1 linear module 52 arranged on the No. 1 bracket 51 along the Y direction, a No. 1 connecting frame 53 fixedly arranged at the output end of the No. 1 linear module 52, a No. 1 lifting frame 54 connected to the No. 1 connecting frame 53 for lifting and sliding, a No. 1 cylinder 55 fixedly arranged on the No. 1 connecting frame 53 for driving the No. 1 lifting frame 54 to lift and lower, a mounting seat 56 arranged on the lower end surface of the No. 1 connecting frame 53 and a heating roller 57 rotatably arranged on the mounting seat 56, and the axial direction of the heating roller 57 extends along the X direction.
[0022] It should be noted that the heating roller 57 generates heat through a built-in heating wire.
[0023] In actual use, the roll of water-based film is conveyed through the separation die-cutting mechanism 2 toward the gantry attachment mechanism 3. It is then cut according to preset specifications by the separation die-cutting mechanism 2. The release film is then pulled by the roll traction mechanism 4 toward the rolling mechanism 5. When the gantry attachment mechanism 3 picks up the cut water-based film and moves it to a working position above the release film being pulled by the roll traction mechanism 4, the roll traction mechanism 4 stops conveying the release film. The gantry attachment mechanism 3 then lowers the water-based film onto the release film. The rolling mechanism 5 then rolls the water-based film attached to the release film. During rolling, the first linear module 52 drives the first connecting frame 53 to move in the Y direction, while the first cylinder 55 drives the first lifting frame 54 downward, causing the heating roller 57 to roll the water-based film.
[0024] In the above design, by providing the rolling mechanism 5, the adhesion effect between the hydrogel film and the release film can be improved to prevent the material from curling. At the same time, the heat is transferred to the hydrogel film through the heating roller 57, so that the hydrogel film and the release film will not dry out immediately after being attached, and the adhesive between the hydrogel film and the release film is effectively stimulated.
[0025] Specifically: Figure 2 As shown, a heat shield 58 is further provided on the mounting seat 56 , and the heat shield 58 is provided with a semicircular groove with the notch facing downward, and the upper half of the heating roller 57 is located in the semicircular groove.
[0026] During actual use, the upper portion of the heat-generating roller 57 is shielded by a heat-insulating cover 58 .
[0027] In the above design, the heat shield 58 is designed to prevent heat loss to the heating roller 57 .
[0028] Specifically: Figure 1 As shown, the coil traction mechanism 4 includes a first vacuum adsorption platform 41, a second vacuum adsorption platform 42 and a traction assembly 43 arranged on the frame 1 along the X direction. Figure 3 and Figure 4 As shown, the traction assembly 43 includes a No. 1 seat 4301 set on the frame 1, an active roller 4302 set on the No. 1 seat 4301 along the Y direction, a motor 4303 set on the No. 1 seat 4301 for driving the active roller 4302 to rotate, a No. 1 rotating shaft 4304 set on the No. 1 seat 4301, a No. 2 shaft 4305 fixedly connected to the locking handle 4307, a rotating plate 4306 fixedly connected to the No. 2 shaft 4305, a locking handle 4307 fixedly connected to the end of the No. 1 rotating shaft 4304 and the No. 2 shaft 4305, and a rotating plate 4306 fixedly connected to the No. 1 rotating shaft 4304 and the No. 2 shaft 4305. 4301 is a vertically sliding connection connecting piece 4308, a third shaft 4309 is arranged on the connecting piece 4308, a rubber pressure wheel 4310 is arranged on the third shaft 4309, and a spring 4311 is arranged up and down and the two ends are respectively against the rotating plate 4306 and the connecting piece 4308, the mounting seat 56 is provided with an arc groove 401 and a vertical sliding groove 402, the connecting piece 4308 is slidingly connected to the No. 1 seat 4301 through the vertical sliding groove 402, and the No. 2 shaft 4305 passes through the arc groove 401 and is fixedly connected to the locking handle 4307.
[0029] In actual use, the release film, pulled by the traction assembly 43, moves along the upper surface of the first vacuum adsorption platform 41 toward the side of the second vacuum adsorption platform 42. When the hydrogel film needs to be attached to the release film, the first and second vacuum adsorption platforms 41 and 42 apply suction to the release film from below. The traction assembly 43 operates as follows: a motor 4303 drives the active roller 4302 to rotate. As the release film passes over the active roller 4302, the hydrogel film adhered to the upper surface of the release film is pressed by the rubber pressure roller 4310. The combined action of the active roller and the rubber pressure roller 4310 achieves product drive. When the rubber pressure roller 4310 presses down on the product, the lower edge of the rubber pressure roller 4310 cannot remain in a fixed position because several hydrogel films are equidistantly attached to the release film in the form of sheets. Therefore, the upper and lower ends of the spring 4311 respectively abut against the rotating plate 4306 and the connecting member 4308, allowing the connecting member 4308 to elastically rise and fall with the mounting base 56, thereby ensuring the elastic rise and fall of the rubber pressure roller 4310. When the height of the rotating plate 4306 needs to be adjusted, the locking handle 4307 is turned to rotate the first rotating shaft 4304, causing the second shaft 4305 to slide along the arc groove 401, causing the rotating plate 4306 to change height.
[0030] In the above design, the structural design and specific implementation of the coil traction mechanism 4 can effectively achieve stable roller feeding of the product.
[0031] Specifically: Figure 4 As shown, the connecting member 4308 includes a connecting bar 801 slidingly connected to the vertical slide groove 402, a flat plate 802 connected to the side of the connecting bar 801 in the horizontal direction, a top plate 803 fixedly connected to the upper end of the connecting bar 801, and a connecting block 804 connected to the lower end of the connecting bar 801. The third shaft 4309 is fixedly connected to the connecting block 804, and the lower end of the spring 4311 is fixedly set on the flat plate 802.
[0032] In actual use, the connecting bar 801 and the mounting seat 56 slide and rise and fall, the lower end of the spring 4311 is fixed on the flat plate 802, and when the rotating plate 4306 rotates, it drives the top plate 803 to realize the lifting of the entire connecting member 4308.
[0033] In the above design, the structural design and specific implementation of the connecting member 4308 can effectively cooperate with the spring 4311 and the mounting seat 56.
[0034] Specifically: Figure 5 As shown, the gantry attachment mechanism 3 includes a No. 2 seat 31 arranged on the frame 1, a No. 2 linear module A32 arranged on the No. 2 seat 31 along the X direction, a No. 2 linear module B33 fixedly arranged at the output end of the No. 2 linear module A32 along the Y direction, a No. 2 linear module C34 fixedly arranged at the output end of the No. 2 linear module B33 along the Z direction, a No. 2 cylinder 35 fixedly arranged at the output end of the No. 2 linear module C34, and a suction plate 36 arranged at the output end of the No. 2 cylinder 35.
[0035] In actual use, the No. 2 linear module A32 drives the No. 2 linear module B33 to move along the X direction, the No. 2 linear module B33 drives the No. 2 linear module C34 to move along the Y direction, and the No. 2 linear module C34 drives the No. 2 cylinder 35 to rise and fall along the Z direction, realizing the synchronous rise and fall of the suction plate 36, and the suction plate 36 adsorbs the water-gel film cut by the separation die-cutting mechanism 2.
[0036] In the above design, the structural design and specific implementation of the gantry attachment mechanism 3 can effectively achieve rapid adsorption and stable transfer of the hydrogel film.
[0037] Specifically: Figure 1 and Figure 6As shown, the separation die-cutting mechanism 2 includes a No. 3 seat 21 arranged on the frame 1, a reeling assembly 22 arranged on the No. 3 seat 21 along the X direction, a peeling assembly 23, a roller driving assembly 24, a cutting assembly 25, a No. 1 camera assembly 26 for taking pictures of the top of the water-gel film to be cut, a lifting adsorption platform 27 for cooperating with the cutting assembly 25, and a No. 2 camera assembly 28 for taking pictures and positioning the water-gel film adsorbed by the gantry attaching mechanism 3 after cutting from the bottom.
[0038] It should be noted that the unwinding assembly 22, the peeling assembly 23, the roller driving assembly 24, and the cutting assembly 25 are all existing mechanisms, so the applicant will not elaborate on them.
[0039] In actual use, the hydrocolloid film on the unwinding assembly 22 is manually pulled through the peeling assembly 23 and then to the roller drive assembly 24. Driven by the roller drive assembly 24, the hydrocolloid film is automatically unwound from the unwinding assembly 22. As it passes through the peeling assembly 23, the peeling assembly 23 peels away any unwanted layers of the hydrocolloid film. Driven continuously by the roller drive assembly 24, the stripped hydrocolloid film enters the cutting assembly 25. The first camera assembly 26 then takes a photo and positions the hydrocolloid film from above. The lifting and suction platform 27 then rises to engage the cutting assembly 25, allowing the film to be cut. After cutting, the cut hydrocolloid film is held by the gantry attachment mechanism 3, where the second camera assembly 28 takes a photo and positions the film from below.
[0040] In the above design, the structural design and specific implementation of the separation film cutting mechanism facilitate the automatic unwinding and cutting of the rolled hydrogel film.
[0041] To further explain in detail, it should be understood that the above is only a specific embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An anti-rolling film laminating device, comprising a frame (1), a separation die-cutting mechanism (2) arranged on the frame (1) along the X direction, a gantry laminating mechanism (3) and a roll material pulling mechanism (4), characterized in that: The invention also includes a rolling mechanism (5) arranged on the frame (1) for rolling the product on the coil traction mechanism (4), wherein the rolling mechanism (5) includes a No. 1 bracket (51) arranged on the frame (1), a No. 1 linear module (52) arranged on the No. 1 bracket (51) along the Y direction, a No. 1 connecting frame (53) fixedly arranged at the output end of the No. 1 linear module (52), a No. 1 lifting frame (54) connected to the No. 1 connecting frame (53) in a lifting and sliding manner, a No. 1 cylinder (55) fixedly arranged on the No. 1 connecting frame (53) for driving the No. 1 lifting frame (54) to move up and down, a mounting seat (56) arranged on the lower end surface of the No. 1 connecting frame (53), and a heating roller (57) rotatably arranged on the mounting seat (56), wherein the axial direction of the heating roller (57) extends along the X direction.
2. The anti-curling film laminating device according to claim 1, characterized in that: The mounting seat (56) is further provided with a heat shield (58), and the heat shield (58) is provided with a semicircular groove with the notch facing downwards, and the upper half of the heating roller (57) is located in the semicircular groove.
3. The anti-curling film laminating device according to claim 1, characterized in that: The coil traction mechanism (4) comprises a No. 1 vacuum adsorption platform (41) and a No. 2 vacuum adsorption platform (42) arranged on the frame (1) along the X direction, and a traction assembly (43); the traction assembly (43) comprises a No. 1 seat (4301) arranged on the frame (1), an active roller (4302) arranged on the No. 1 seat (4301) along the Y direction, a motor (4303) arranged on the No. 1 seat (4301) for driving the active roller (4302) to rotate, a No. 1 rotating shaft (4304) arranged on the No. 1 seat (4301), a No. 2 shaft (4305) fixedly connected to a locking handle (4307), a rotating plate (4306) fixedly connected to the No. 2 shaft (4305), and a No. 1 rotating shaft (4304) and a rotating plate (4307) fixedly connected to the No. 2 shaft (4305). A locking handle (4307) fixedly connected to the No. 2 shaft (4305), a connecting piece (4308) vertically slidably connected to the No. 1 seat (4301), a No. 3 shaft (4309) arranged on the connecting piece (4308), a rubber pressure wheel (4310) arranged on the No. 3 shaft (4309), and a spring (4311) arranged up and down and with both ends respectively against the rotating plate (4306) and the connecting piece (4308), the mounting seat (56) is provided with an arc groove (401) and a vertical sliding groove (402), the connecting piece (4308) is slidably connected to the No. 1 seat (4301) through the vertical sliding groove (402), and the No. 2 shaft (4305) passes through the arc groove (401) and is fixedly connected to the locking handle (4307).
4. The anti-curling film laminating device according to claim 3, characterized in that: The connecting member (4308) includes a connecting bar (801) slidably connected to the vertical slide groove (402), a flat plate (802) connected to the side of the connecting bar (801) in the horizontal direction, a top plate (803) fixedly connected to the upper end of the connecting bar (801), and a connecting block (804) connected to the lower end of the connecting bar (801), the third shaft (4309) is fixedly connected to the connecting block (804), and the lower end of the spring (4311) is fixedly set on the flat plate (802).
5. The anti-curling film laminating device according to claim 1, characterized in that: The gantry attachment mechanism (3) comprises a No. 2 seat (31) arranged on the frame (1), a No. 2 linear module A (32) arranged on the No. 2 seat (31) along the X direction, a No. 2 linear module B (33) fixedly arranged at the output end of the No. 2 linear module A (32) along the Y direction, a No. 2 linear module C (34) fixedly arranged at the output end of the No. 2 linear module B (33) along the Z direction, a No. 2 air cylinder (35) fixedly arranged at the output end of the No. 2 linear module C (34), and a suction plate (36) arranged at the output end of the No. 2 air cylinder (35).
6. The anti-curling film laminating device according to claim 1, characterized in that: The separation die-cutting mechanism (2) comprises a No. 3 seat (21) arranged on the frame (1), a reeling assembly (22) arranged on the No. 3 seat (21) along the X direction, a peeling assembly (23), a roller driving assembly (24), a cutting assembly (25), a No. 1 camera assembly (26) for taking pictures from above the hydrogel film to be cut, a lifting adsorption platform (27) for cooperating with the cutting assembly (25), and a No. 2 camera assembly (28) for taking pictures and positioning the hydrogel film adsorbed by the gantry adhering mechanism (3) after cutting from below.