Laser film removing machine for coil stock

By placing the laser source assembly in the lower zone of the laser film removal machine and using multiple reflectors to guide the beam to the galvanometer assembly, the problems of large size and large space occupation of the laser film removal machine are solved, achieving a compact layout of the equipment and adaptability to production needs.

CN223801754UActive Publication Date: 2026-01-16DONGGUAN HIPATEK CO LTD
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Patent Information

Application Number
CN202423233281.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-01-16
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing laser film removal machines are large in size and occupy a lot of space, which cannot meet the production needs of those with limited space.

Method used

The laser source assembly is placed in the lower section of the film removal machine, and the laser beam is guided to the galvanometer assembly through multiple reflectors, thus achieving a reasonable layout of the laser source assembly and reducing the space occupied by the equipment.

Benefits of technology

It effectively reduces the space occupied by the laser film removal machine and meets the usage needs under different production conditions.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223801754U_ABST
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Abstract

The utility model relates to the technical field of laser film removing equipment, in particular to a roll material laser film removing machine. Comprising a box body, a workbench assembly, a laser source assembly, a light reflecting assembly and a galvanometer assembly. The workbench assembly is arranged in the box body and divides the box body into an upper area and a lower area, the galvanometer assembly is arranged in the upper area, and the laser source assembly is arranged in the lower area; the light reflecting assembly comprises a hollow pipe, a first reflector, a second reflector, a third reflector and a fourth reflector, the two ends of the hollow pipe are connected with the laser source assembly and the first reflector respectively, and the first reflector, the second reflector, the third reflector and the fourth reflector are all located in the upper area. The first reflective mirror, the second reflective mirror, the third reflective mirror and the fourth reflective mirror reach the galvanometer assembly, the galvanometer assembly conducts laser machining on an external workpiece placed on the workbench assembly, reasonable layout of the laser source assembly is achieved, the occupied space of the laser film removing machine is reduced, and production requirements under different conditions are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to laser film removing equipment technical field especially relates to a roll stock laser film removing machine. BACKGROUND

[0002] The film layer on the product surface is processed by adopting laser technology, it is the technology that is often used in production process, because the laser equipment has the characteristics of big volume and heavy weight, adopts the traditional layout to make the volume of film removing machine bigger, occupies more space, cannot satisfy the production condition of limited space, so need to arrange the laser equipment reasonably, make the total volume of laser film removing machine satisfy the production demand. SUMMARY

[0003] In order to overcome the film removing machine of prior art existing and cannot satisfy the production space limited production environment, the utility model discloses a roll stock laser film removing machine, satisfies different production demand.

[0004] In order to realize the above-mentioned purpose, the technical scheme of the utility model is as follows:

[0005] A roll stock laser film removing machine, including box, workstation assembly, laser source assembly, light reflection component and galvanometer component,

[0006] The workstation assembly is arranged in the middle of the box, and the workstation assembly divides the box into an upper region and a lower region, the galvanometer component is arranged in the upper region, and the galvanometer component is spaced apart from the workstation assembly, and the laser source assembly is arranged in the lower region.

[0007] The light reflection component includes a hollow tube, a first mirror, a second mirror, a third mirror and a fourth mirror, both ends of the hollow tube are connected to the laser source assembly and the first mirror respectively, the first mirror, the second mirror, the third mirror and the fourth mirror are all located in the upper region, the first mirror is used to receive the light beam from the laser source assembly, the second mirror is used to receive the light beam from the first mirror, the third mirror is used to receive the light beam from the second mirror, the fourth mirror is used to receive the light beam from the third mirror, and the galvanometer component is used to receive the light beam from the fourth mirror.

[0008] Further, the roll stock laser film removing machine further includes a first sliding table, a second sliding table and a mounting seat, the first sliding table is arranged on the workstation assembly, the second sliding table is slidingly connected to the first sliding table, the mounting seat is slidingly connected to the second sliding table, the first mirror is arranged on the box, the second mirror is connected to the second sliding table, the third mirror, the fourth mirror and the galvanometer component are all arranged on the mounting seat, and the sliding direction of the mounting seat intersects with the sliding direction of the second sliding table.

[0009] Further, the light reflection assembly further comprises a lifting driving source and a lifting plate, the lifting driving source is arranged in the mounting seat, the lifting driving source drives the lifting plate to lift, and the galvanometer assembly and the fourth reflecting mirror are arranged on the lifting plate.

[0010] Further, the light reflection assembly further comprises a dust cover, the third reflecting mirror is arranged in the dust cover, and the fourth reflecting mirror is arranged in the dust cover.

[0011] Further, the center line of the first reflecting mirror and the second reflecting mirror is arranged along the X axis, the center line of the second reflecting mirror and the third reflecting mirror is arranged along the Y axis, and the center line of the third reflecting mirror and the fourth reflecting mirror is arranged along the Z axis.

[0012] Further, the workbench assembly comprises a base and a loading plate, the base is arranged in the box body, the loading plate is arranged above the base, the loading plate is arranged at a distance from the base, and the loading plate is located directly below the galvanometer assembly.

[0013] Further, the roll material laser film removing machine further comprises a feeding assembly and a material collecting assembly, the feeding assembly is arranged in the base, the material collecting assembly is arranged in the base, and the feeding assembly and the material collecting assembly are respectively arranged on opposite sides of the loading plate.

[0014] Further, the roll material laser film removing machine further comprises a pressing shaft, the pressing shaft is located between the feeding assembly and the material collecting assembly, and the pressing shaft is arranged close to the loading plate.

[0015] Further, the galvanometer assembly further comprises a laser generator and a beam expander, the beam expander is used for receiving a light beam from the laser generator, and the beam expander sends the light beam to the first reflecting mirror.

[0016] The roll material laser film removing machine has the advantages that the box body is divided into an upper region and a lower region by arranging the workbench assembly in the box body, the laser source assembly with large volume and weight is placed in the lower region, the laser beam emitted by the laser source assembly reaches the galvanometer assembly through multiple reflections of the first reflecting mirror, the second reflecting mirror, the third reflecting mirror and the fourth reflecting mirror, the galvanometer assembly performs laser processing on the external workpiece placed on the workbench assembly, the laser source assembly is reasonably arranged, the occupied space of the laser film removing machine is reduced, and the production requirements under different conditions are met. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;

[0018] Figure 2 It is a three-dimensional structure schematic diagram of the utility model;

[0019] Figure 3The utility model discloses a laser source subassembly and the schematic diagram of principle structure of light reflection subassembly.

[0020] Figure 4 The utility model discloses the schematic diagram of partial structure in the inside.

[0021] Figure 5 The utility model discloses the schematic diagram of structure of feed assembly, pressure material axle, load plate, material receiving assembly.

[0022] Figure 6 The utility model discloses the schematic diagram of structure of third reflector of installing dust cover and fourth reflector of installing dust cover.

[0023] Figure 7 The utility model discloses the schematic diagram of structure of third reflector, fourth reflector and galvanometer subassembly.

[0024] The reference signs include:

[0025] 1 - box 2 - workstation subassembly 21 - base

[0026] 22 - load plate 3 - light source subassembly 31 - laser generator

[0027] 32 - beam expander 4 - light reflection subassembly 40 - hollow tube

[0028] 41 - first reflector 42 - second reflector 43 - third reflector

[0029] 44 - fourth reflector 45 - lifting drive source 46 - dust cover

[0030] 47 - lifting plate 6 - first sliding table 7 - second sliding table

[0031] 8 - mounting seat 91 - feed assembly 92 - material receiving assembly

[0032] 93 - pressure material axle. Specific implementation

[0033] In order to facilitate the understanding of the person skilled in the art, the utility model is further explained below in combination with the embodiment and the drawing, and the content mentioned in the implementation is not the limitation of the utility model.

[0034] Please refer to Figures 1 to 7 The utility model discloses a roll material laser film removing machine, including box 1, workstation subassembly 2, laser source subassembly 3, light reflection subassembly 4 and galvanometer subassembly 5.

[0035] The workbench assembly 2 is arranged in the middle of the box body 1, and the workbench assembly 2 divides the box body 1 into an upper area 101 and a lower area 102, the galvanometer assembly 5 is arranged in the upper area 101, and the galvanometer assembly 5 is arranged at a distance from the workbench assembly 2, and the laser source assembly 3 is arranged in the lower area 102;

[0036] The light reflection assembly 4 comprises a hollow tube 40, a first reflector 41, a second reflector 42, a third reflector 43 and a fourth reflector 44, both ends of the hollow tube 40 are connected with the laser source assembly 3 and the first reflector 41 respectively, the first reflector 41, the second reflector 42, the third reflector 43 and the fourth reflector 44 are all arranged in the upper area 101, the first reflector 41 is used for receiving the light beam from the laser source assembly 3, the second reflector 42 is used for receiving the light beam from the first reflector 41, the third reflector 43 is used for receiving the light beam from the second reflector 42, the fourth reflector 44 is used for receiving the light beam from the third reflector 43, and the galvanometer assembly 5 is used for receiving the light beam from the fourth reflector 44.

[0037] Specifically, in the embodiment, the box body 1 is processed by metal iron pipes and metal iron plates, a middle partition plate is arranged in the middle of the box body, the middle partition plate divides the box body 1 into the upper area 101 and the lower area 102, the laser source assembly 3 is arranged in the lower area 102, the workbench assembly 2 is arranged on the middle partition plate and above the middle partition plate, the middle partition plate is processed with a through hole, the hollow tube 40 penetrates through the through hole, one end of the hollow tube 40 is arranged in the lower area 102, the other end of the hollow tube 40 is arranged in the upper area 101, the first reflector 41 is arranged at the end of the hollow tube 40, the first reflector 41, the second reflector 42 and the third reflector 43 are all arranged on the same horizontal plane, the fourth reflector 44 is arranged below the third reflector 43, the galvanometer assembly 5 is arranged close to the fourth reflector 44, the light beam emitted by the laser source assembly 3 passes through the first reflector 41, the second reflector 42, the third reflector 43 and the fourth reflector 44 in sequence to reach the galvanometer assembly 5, and the galvanometer assembly 5 processes the external workpiece on the surface of the workbench assembly 2 to meet the production requirements.

[0038] The box body 1 is divided into the upper area 101 and the lower area 102 by arranging the workbench assembly 2 in the box body 1, the laser source assembly 3 with large volume and weight is arranged in the lower area 102, the laser beam emitted by the laser source assembly 3 reaches the galvanometer assembly 5 through multiple reflections of the first reflector 41, the second reflector 42, the third reflector 43 and the fourth reflector 44, and the galvanometer assembly 5 processes the external workpiece arranged on the workbench assembly 2 by laser, so that the laser source assembly 3 is arranged reasonably, the occupied space of the laser film removing machine is reduced, and the production requirements under different conditions are met.

[0039] The roll laser film removing machine further comprises a first sliding table 6, a second sliding table 7 and a mounting base 8, the first sliding table 6 is arranged on the workbench assembly 2, the second sliding table 7 is slidingly connected to the first sliding table 6, the mounting base 8 is slidingly connected to the second sliding table 7, the first reflector 41 is arranged on the box 1, the second reflector 42 is connected to the second sliding table 7, the third reflector 43, the fourth reflector 44 and the galvanometer assembly 5 are arranged on the mounting base 8, the sliding direction of the mounting base 8 is arranged to intersect with the sliding direction of the second sliding table 7, preferably, the first sliding table 6 is fixedly arranged on the workbench assembly 2, the length direction of the first sliding table 6 is arranged along the X direction, the second sliding table 7 is slidingly connected to the first sliding table 6, the length direction of the second sliding table 7 is arranged along the Y direction, the mounting base 8 is arranged on the second sliding table 7, the mounting base 8 slides along the Y direction, that is, the third reflector 43, the fourth reflector 44 and the galvanometer assembly 5 move along the Y direction synchronously with the mounting base 8, in the use process, the position of the second sliding table 7 in the X direction is adjusted as required, synchronously, the first reflector 41 moves synchronously with the second sliding table 7, and the movement of the galvanometer assembly 5 along the X and Y directions is realized.

[0040] The light reflecting assembly 4 further comprises a lifting driving source 45 and a lifting plate 47, the lifting driving source 45 is arranged on the mounting base 8, the lifting driving source 45 drives the lifting plate 47 to lift, the fourth reflector 44 and the galvanometer assembly 5 are arranged on the lifting plate 47, preferably, the lifting driving source 45 adopts a servo motor structure to drive the lifting plate 47 to slide along the height direction of the mounting base 8, so that the fourth reflector 44 is close to or away from the third reflector 43, and different processing requirements are met.

[0041] The light reflecting assembly 4 further comprises a dust cover 46, the third reflector 43 is arranged in the dust cover 46, the fourth reflector 44 is arranged in the dust cover 46, the number of the dust cover 46 is two, one cover is arranged with the third reflector 43, and the other cover is arranged with the fourth reflector 44, waste gas generated in the processing and production process is shielded, the third reflector 43 and the fourth reflector 44 are effectively protected, and the service life of the equipment is improved.

[0042] The center line of the first reflector 41 and the second reflector 42 is arranged along the X axis, the center line of the second reflector 42 and the third reflector 43 is arranged along the Y axis, and the center line of the third reflector 43 and the fourth reflector 44 is arranged along the Z axis, so as to ensure the effectiveness of the light beam reflection.

[0043] The workbench assembly 2 comprises a base 21 and a material loading plate 22, the base 21 is arranged on the box 1, the material loading plate 22 is arranged above the base 21, the material loading plate 22 is arranged at a distance from the base 21, the material loading plate 22 is directly below the galvanometer assembly 5, preferably, the base 21 adopts a marble plate, which enhances the stability of the base 21, thereby ensuring that the material loading plate 22 is in a relatively accurate state during processing, and the material loading plate 22 adopts a vacuum adsorption plate structure to fix the workpiece outside.

[0044] The roll laser film removing machine further comprises a feeding assembly 91 and a material collecting assembly 92, the feeding assembly 91 is arranged on the base 21, the material collecting assembly 92 is arranged on the base 21, the feeding assembly 91 and the material collecting assembly 92 are respectively arranged on opposite sides of the material loading plate 22, the feeding assembly 91 adopts a reel structure to feed, the material collecting assembly 92 adopts a reel structure to collect, thereby completing the feeding and collecting of the roll material outside, and improving the production automation.

[0045] The roll laser film removing machine further comprises a material pressing shaft 93, the material pressing shaft 93 is arranged between the feeding assembly 91 and the material collecting assembly 92, the material pressing shaft 93 is arranged close to the material loading plate 22, the number of the material pressing shaft 93 is two, one material pressing shaft 93 is arranged between the feeding assembly 91 and the material loading plate 22, and the other material pressing shaft 93 is arranged between the material loading plate 22 and the material collecting assembly 92, thereby tightening the single-layer material outside in the processing state, and improving the processing accuracy.

[0046] The galvanometer assembly 5 further comprises a laser generator 31 and a beam expander 32, the beam expander 32 is used for receiving the light beam from the laser generator 31, and the beam expander 32 sends the light beam to the first reflecting mirror 41, and the processing through the beam expander 32 makes the used laser energy reach the use condition.

[0047] The above is only a preferred embodiment of the present application, for those skilled in the art, according to the idea of the present application, the specific implementation and application range will be changed, and the content of the specification should not be understood as the limitation of the present application.

Claims

1. A roll-to-roll laser demaskine, characterized by: The laser film removing machine comprises a box (1), a workbench assembly (2), a laser source assembly (3), a light reflection assembly (4) and a galvanometer assembly (5). The workbench assembly (2) is arranged in the middle of the box (1), and the workbench assembly (2) divides the box (1) into an upper area (101) and a lower area (102), the galvanometer assembly (5) is arranged in the upper area (101), and the galvanometer assembly (5) is arranged at a distance from the workbench assembly (2), and the laser source assembly (3) is arranged in the lower area (102). The light reflection assembly (4) comprises a hollow tube (40), a first reflector (41), a second reflector (42), a third reflector (43) and a fourth reflector (44), the two ends of the hollow tube (40) are connected with the laser source assembly (3) and the first reflector (41) respectively, the first reflector (41), the second reflector (42), the third reflector (43) and the fourth reflector (44) are all arranged in the upper area (101), the first reflector (41) is used for receiving a light beam from the laser source assembly (3), the second reflector (42) is used for receiving a light beam from the first reflector (41), the third reflector (43) is used for receiving a light beam from the second reflector (42), the fourth reflector (44) is used for receiving a light beam from the third reflector (43), and the galvanometer assembly (5) is used for receiving a light beam from the fourth reflector (44).

2. The roll laser deflasher of claim 1, wherein: The laser film removing machine further comprises a first sliding table (6), a second sliding table (7) and a mounting seat (8), the first sliding table (6) is arranged on the workbench assembly (2), the second sliding table (7) is slidably connected with the first sliding table (6), the mounting seat (8) is slidably connected with the second sliding table (7), the first reflector (41) is arranged on the box (1), the second reflector (42) is connected with the second sliding table (7), the third reflector (43), the fourth reflector (44) and the galvanometer assembly (5) are all arranged on the mounting seat (8), and the sliding direction of the mounting seat (8) intersects with the sliding direction of the second sliding table (7).

3. The roll laser film stripper of claim 2, wherein: The light reflection assembly (4) further comprises a lifting driving source (45) and a lifting plate (47), the lifting driving source (45) is arranged on the mounting seat (8), the lifting driving source (45) drives the lifting plate (47) to lift, and the galvanometer assembly (5) and the fourth reflector (44) are both arranged on the lifting plate (47).

4. The roll laser film stripper of claim 2, wherein: The light reflection assembly (4) further comprises a dust cover (46), the third reflector (43) is arranged in the dust cover (46), and the fourth reflector (44) is arranged in the dust cover (46).

5. The roll laser deflasher of claim 1, wherein: The center line of the first reflector (41) and the second reflector (42) is arranged along the X axis, the center line of the second reflector (42) and the third reflector (43) is arranged along the Y axis, and the center line of the third reflector (43) and the fourth reflector (44) is arranged along the Z axis.

6. The roll mill laser demask machine of claim 1, wherein: The workbench assembly (2) comprises a base (21) and a material loading plate (22), the base (21) is arranged on the box (1), the material loading plate (22) is arranged above the base (21), the material loading plate (22) is arranged at a distance from the base (21), and the material loading plate (22) is located directly below the galvanometer assembly (5).

7. The roll laser deflasher of claim 6, wherein: The roll material laser film removing machine further comprises a feeding assembly (91) and a material collecting assembly (92), the feeding assembly (91) is arranged on the base (21), the material collecting assembly (92) is arranged on the base (21), and the feeding assembly (91) and the material collecting assembly (92) are respectively arranged on opposite sides of the material loading plate (22).

8. The roll laser deflasher of claim 7, wherein: The roll material laser film removing machine further comprises a material pressing shaft (93), the material pressing shaft (93) is arranged between the feeding assembly (91) and the material collecting assembly (92), and the material pressing shaft (93) is arranged close to the material loading plate (22).

9. The roll laser deflasher of claim 1, wherein: The galvanometer assembly (5) further comprises a laser generator (31) and a beam expander (32), the beam expander (32) is used for receiving a light beam from the laser generator (31), and the beam expander (32) sends the light beam to the first mirror (41).