Laser slitting and die cutting all-in-one machine
By designing a laser striping die-cutting machine, combined with structures such as deviation correction accommodating components and feeding components, the problem of poor cutting accuracy of existing striping machines is solved, and the cutting effect of high accuracy and low waste is achieved.
Patent Information
- Application Number
- CN202422095450.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-08-28
AI Technical Summary
When cutting film coils, existing strippers have poor cutting accuracy, resulting in the generation of a large amount of waste.
A laser striping die-cutting machine is designed, including bias correction and accommodation components, material feeding components, laser cutting equipment, winding components, compression components, intelligent control platforms and dust removal components. Through the mutual cooperation of these structures, the accuracy of coil cutting is improved.
Through the design of the laser striping die-cutting machine, the accuracy of coil cutting is significantly improved, the generation of waste is reduced, and the passing rate of coil after cutting is ensured.
Smart Images

Figure CN222833712U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laser cutting, in particular to a laser striping and die-cutting integrated machine. Background Art
[0002] Slitting machine is a kind of equipment that cuts the wide roll of material longitudinally through the slitting tool to the required specifications when rewinding, such as slitting the whole roll of film material into multiple small rolls of film material;
[0003] However, the slitting machine in the prior art only performs a single laser cutting action on the film roll during operation, which results in poor cutting accuracy of the film roll and easily generates a large amount of waste.
[0004] Therefore, it is urgent to redesign a new laser striping and die-cutting machine to solve the above problems. Summary of the invention
[0005] The utility model provides a laser striping and die-cutting integrated machine to solve the technical problems raised in the above background technology.
[0006] The utility model provides a laser striping and die-cutting integrated machine, which includes a shell, a correction accommodating component for ensuring the accuracy of material roll transmission, a material splicing component for splicing new and old material rolls, at least one laser cutting device, at least one winding component, a clamping component for clamping the material on the winding component, an intelligent control platform and a dust removal component for removing dust generated by the laser cutting device in the shell. A feed port is provided at one end of the shell, and at least one discharge port is provided on a side wall of the shell. The correction accommodating component is installed on a side of the shell where the feed port is provided, the material splicing component is installed on the lower side of the correction component, the laser cutting device is installed in the shell, the winding component is installed in the shell, and the position of the winding component corresponds to the position of the discharge port, the clamping component is installed on one side of the winding component, the intelligent control platform is installed on the outside of the shell, and the dust removal component is installed on one side of the shell.
[0007] Optionally, the correction accommodating component includes a correction main board, a first adjustment plate, a second adjustment plate, a first accommodating portion, a second accommodating portion, an adjustment component for driving the distance between the first adjustment plate and the second adjustment plate, a correction bracket, a correction sensor adjustment motor, a correction sensor driving rod, a first correction sensor, a second correction sensor and a correction electric cylinder; the correction main board is installed on one side of the shell, the first adjustment plate and the second adjustment plate are both slidably connected to the correction main board, the first accommodating portion is installed on the first adjustment plate, the second accommodating portion is installed on the second adjustment plate, and the adjustment component is installed on the correction main board away from the one side of the first adjustment plate; the output end of the adjustment component is connected to the first adjustment plate and the second adjustment plate; the correcting bracket is installed on the upper side of the correcting main board, the correcting sensor adjustment motor is installed on the upper side of the correcting bracket, the correcting sensor driving rod is connected to the output end of the correcting sensor adjustment motor, and the first correcting sensor and the second correcting sensor are threadedly connected to the correcting sensor driving rod; the first correcting sensor faces the first adjustment plate, and the second correcting sensor faces the second adjustment plate; the correcting electric cylinder is installed in the shell, and the output end of the correcting electric cylinder is connected to the correcting main board.
[0008] Optionally, the adjustment component includes an adjustment motor, an adjustment screw, a first adjustment connecting block and a second adjustment connecting block, the adjustment motor is installed on the correction main board, the adjustment screw is connected to the output end of the adjustment motor, one end of the first adjustment connecting block is threadedly connected to the adjustment screw, and the other end of the first adjustment connecting block is connected to the first adjustment plate; one end of the second adjustment connecting block is threadedly connected to the adjustment screw, and the other end of the second adjustment connecting block is connected to the second adjustment plate.
[0009] Optionally, a first thread is provided at the connection between the adjusting screw and the first adjusting connecting block; a second thread is provided at the connection between the adjusting screw and the second adjusting connecting block; and the directions in which the first thread and the second thread are provided are exactly opposite.
[0010] Optionally, the first accommodating portion includes a first accommodating frame, a first accommodating motor and a first expansion shaft, the first accommodating frame is installed on the first adjustment plate, the first accommodating motor is installed in the first accommodating frame, the first expansion shaft is installed on one side of the first accommodating motor, and the output end of the first accommodating motor is connected to the first expansion shaft; the second accommodating portion has the same structure as the first accommodating portion.
[0011] Optionally, the material receiving assembly includes a first material receiving bracket, a first material receiving clamping strip and a second material receiving clamping strip, the first material receiving bracket is installed on one side of the deviation correction accommodating assembly, and the first material receiving clamping strip and the second material receiving clamping strip are both installed on the first material receiving bracket.
[0012] Optionally, the winding assembly includes two winding baffles and a winding differential shaft, the two winding baffles are installed in the outer shell, the winding differential shaft is installed between the two winding baffles, and the winding differential shaft is provided with a plurality of accommodating and limiting grooves for accommodating and limiting the coiled material.
[0013] Optionally, the clamping assembly includes at least one clamping cylinder, at least one clamping connecting block, a clamping rotating column, a plurality of clamping transfer rods and a plurality of clamping rollers, the clamping cylinder is installed in the outer shell, the clamping rotating column is rotatably arranged in the outer shell, and the output end of the clamping cylinder is connected to one end of the clamping connecting block, and the other end of the clamping connecting block is connected to the clamping rotating column, a plurality of the clamping transfer rods are installed on the clamping rotating column, the clamping roller is installed at one end of the clamping transfer rod away from the clamping rotating column, and the clamping roller faces the winding assembly.
[0014] Optionally, the intelligent control platform includes a limit slide rail, a limit connection part and an operating table, the limit slide rail is installed on the upper side of the shell, one end of the limit connection part is slidably connected to the limit slide rail, and the other end of the limit connection part is connected to the operating table, and the dust removal component includes a dust removal exhaust fan and at least one dust removal pipe, the dust removal exhaust fan is installed on one side of the shell, one end of the dust removal pipe is connected to the output end of the dust removal exhaust fan, and the other end of the dust removal pipe extends into the shell.
[0015] The beneficial effects of the utility model are as follows:
[0016] The laser striping and die-cutting integrated machine comprises a shell, a deviation correction accommodating component for ensuring the accuracy of material roll transmission, a material splicing component for splicing new and old coils, at least one laser cutting device, at least one winding component, a pressing component for pressing the coil on the winding component, an intelligent control platform, and a dust removal component for removing dust generated by the laser cutting device in the shell. A feed port is provided at one end of the shell, and at least one discharge port is provided on the side wall of the shell. The deviation correction accommodating component is installed on a side of the shell where the feed port is provided, the material splicing component is installed on the lower side of the deviation correction component, the laser cutting device is installed in the shell, the winding component is installed in the shell, and the position of the winding component corresponds to the position of the discharge port, the pressing component is installed on one side of the winding component, the intelligent control platform is installed on the outside of the shell, and the dust removal component is installed on one side of the shell. The laser striping and die-cutting integrated machine of the utility model improves the accuracy of coil cutting through the mutual cooperation of various structures, thereby ensuring the qualified rate of the coil after cutting. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0018] Figure 1 This is a structural schematic diagram of the laser striping and die-cutting integrated machine provided by the utility model from a first perspective;
[0019] Figure 2 This is a structural schematic diagram of the laser striping and die-cutting integrated machine provided by the utility model from a second viewing angle;
[0020] Figure 3 yes Figure 2 A partial enlarged view of the middle A area;
[0021] Figure 4 It is a structural schematic diagram of the laser striping and die-cutting integrated machine provided by the utility model from a third viewing angle;
[0022] Figure 5 yes Figure 4 A partial enlarged view of the middle B area;
[0023] Figure 6 This is a structural schematic diagram of the laser striping and die-cutting integrated machine provided by the utility model from a fourth viewing angle;
[0024] Figure 7 yes Figure 6A partial enlarged view of the middle C area;
[0025] Figure 8 yes Figure 6 A partial enlarged view of the D area in the middle. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. It is understandable that the specific embodiments described herein are only used to explain the utility model, rather than to limit the utility model. It should also be noted that, for ease of description, only the parts related to the utility model rather than all structures are shown in the drawings. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.
[0027] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present invention. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0028] See also Figures 1 to 8 The laser striping and die-cutting integrated machine of the utility model comprises a housing 1000, a deviation correction accommodating component for ensuring the accuracy of the material roll transmission, a material receiving component for receiving a new material roll and an old material roll, at least one laser cutting device, at least one winding component, a pressing component for pressing the material roll on the winding component, an intelligent control platform, and a dust removal component for removing dust generated by the laser cutting device in the housing 1000;
[0029] A feed port 1100 is provided at one end of the shell 1000, at least one discharge port 1200 is provided on a side wall of the shell 1000, the deviation correction accommodating component is installed on a side of the shell 1000 where the feed port 1100 is provided, the material receiving component is installed on the lower side of the deviation correction component, the laser cutting device is installed in the shell 1000, the winding component is installed in the shell 1000, and the position of the winding component corresponds to the position of the discharge port 1200, the pressing component is installed on one side of the winding component, the intelligent control platform is installed on the outside of the shell 1000, and the dust removal component is installed on one side of the shell 1000;
[0030] The housing 1000 plays a role in fixing and supporting each structure in the laser striping and die-cutting integrated machine of the utility model;
[0031] Specifically, when the user needs to cut the coil into strips, first, the rolled coil is placed in the deviation correction accommodating component, and the deviation correction accommodating component ensures the accuracy of the coil loading. Then, the coil enters the material splicing component, and the material splicing component can complete the connection between the new and old coils. Then, the coil enters the housing 1000 and is laser cut by the laser cutting device. Then, the cut coil enters the rewinding component;
[0032] More specifically, the pressing assembly performs a pressing action on the coiled material in the winding assembly to ensure the stability of the winding;
[0033] Furthermore, the intelligent control platform can satisfy the user's multi-angle operation of the laser striping and die-cutting integrated machine of the utility model, so that the laser striping and die-cutting integrated machine of the utility model can meet more application scenarios;
[0034] Furthermore, the dust removal component can clean the dust generated by the laser cutting equipment when cutting the coil in real time.
[0035] In this embodiment, the correction accommodating component includes a correction main board 2100, a first adjustment plate 2200, a second adjustment plate 2300, a first accommodating portion 2400, a second accommodating portion 2500, an adjustment component for driving the distance between the first adjustment plate 2200 and the second adjustment plate 2300, a correction bracket 2700, a correction sensor adjustment motor 2710, a correction sensor driving rod 2720, a first correction sensor 2810 and a second correction sensor 2820; the correction main board 2100 is installed on one side of the housing 1000, the first adjustment plate 2200 and the second adjustment plate 2300 are both slidably connected to the correction main board 2100, the first accommodating portion 2400 is installed on the first adjustment plate 2200, and the second accommodating portion 2500 is installed on the second adjustment plate 2300, the adjustment component is installed on the side of the deflection correction main board 2100 away from the first adjustment plate 2200; the output end of the adjustment component is connected to the first adjustment plate 2200 and the second adjustment plate 2300; the deflection correction bracket 2700 is installed on the upper side of the deflection correction main board 2100, the deflection correction sensor adjustment motor 2710 is installed on the upper side of the deflection correction bracket 2700, the deflection correction sensor driving rod 2720 is connected to the output end of the deflection correction sensor adjustment motor 2710, the first deflection correction sensor 2810 and the second deflection correction sensor 2820 are threadedly connected to the deflection correction sensor driving rod 2720; the first deflection correction sensor 2810 faces the first adjustment plate 2200, and the second deflection correction sensor 2820 faces the second adjustment plate 2300;
[0036] The deflection correction electric cylinder 2101 is installed in the housing 1000, and the output end of the deflection correction electric cylinder 2101 is connected to the deflection correction main board 2100;
[0037] The correction mainboard 2100 plays a role in fixing and supporting each structure in the correction accommodation component;
[0038] When the coil is placed in the deflection correction accommodating assembly, first, the coil is placed in the first accommodating portion 2400 and the second accommodating portion 2500, and then the deflection correction sensor adjustment motor 2710 enters the working state, and the deflection correction sensor adjustment motor 2710 drives the deflection correction sensor driving rod 2720 to rotate, so that the deflection correction sensor driving rod 2720 drives the first deflection correction sensor 2810 and the second deflection correction sensor 2820 to move, and the first deflection correction sensor 2810 and the second deflection correction sensor 2820 perform position recognition on the coil between the first accommodating portion 2400 and the second accommodating portion 2500. The first deviation correction sensor 2810 and the second deviation correction sensor 2820 detect that the position of the coil is offset, and the adjustment component enters the working state. Then, the adjustment component drives the distance between the first adjustment plate 2200 and the second adjustment plate 2300, so that the first adjustment plate 2200 drives the first accommodating portion 2400 to move, and the second adjustment plate 2300 drives the second accommodating portion 2500 to move, thereby correcting the position of the coil between the first accommodating portion 2400 and the second accommodating portion 2500, thereby ensuring the stability of the coil loading;
[0039] At the same time, when the first correction sensor 2810 and the second correction sensor 2820 detect that there is a deviation in the position of the coil, the correction cylinder 2101 will also enter the working state, so that the correction cylinder 2101 drives the correction main board 2100 to move as a whole, thereby realizing further correction action on the coil.
[0040] In this embodiment, the adjustment component includes an adjustment motor 2610, an adjustment screw 2620, a first adjustment connecting block 2630 and a second adjustment connecting block 2640. The adjustment motor 2610 is installed on the correction main board 2100, and the adjustment screw 2620 is connected to the output end of the adjustment motor 2610. One end of the first adjustment connecting block 2630 is threadedly connected to the adjustment screw 2620, and the other end of the first adjustment connecting block 2630 is connected to the first adjustment plate 2200; one end of the second adjustment connecting block 2640 is threadedly connected to the adjustment screw 2620, and the other end of the second adjustment connecting block 2640 is connected to the second adjustment plate 2300.
[0041] When the adjustment assembly drives the first adjustment plate 2200 and the second adjustment plate 2300 to move, the adjustment motor 2610 enters the working state, and the adjustment motor 2610 drives the adjustment screw 2620 to rotate, so that the adjustment screw 2620 drives the first adjustment connection block 2630 to move on the adjustment screw 2620, and then the first adjustment connection block 2630 drives the first adjustment plate 2200 to move;
[0042] At the same time, the adjusting screw 2620 will also drive the second adjusting connecting block 2640 to move, and then the second adjusting connecting block 2640 will drive the second adjusting plate 2300 to move.
[0043] In this embodiment, a first thread is provided at the connection between the adjusting screw 2620 and the first adjusting connecting block 2630; a second thread is provided at the connection between the adjusting screw 2620 and the second adjusting connecting block 2640; and the directions of the first thread and the second thread are exactly opposite.
[0044] Among them, since the directions of the first thread and the second thread are exactly opposite, when the adjusting screw 2620 rotates, it can ensure that the movement directions of the first adjustment plate 2200 and the second adjustment plate 2300 are exactly opposite, thereby achieving the purpose of adjusting the distance between the first accommodating portion 2400 and the second accommodating portion 2500.
[0045] In this embodiment, the first accommodating portion 2400 includes a first accommodating frame 2410, a first accommodating motor and a first expansion shaft 2430, the first accommodating frame 2410 is installed on the first adjustment plate 2200, the first accommodating motor is installed in the first accommodating frame 2410, the first expansion shaft 2430 is installed on one side of the first accommodating motor, and the output end of the first accommodating motor is connected to the first expansion shaft 2430; the second accommodating portion 2500 has the same structure as the first accommodating portion 2400.
[0046] The first accommodating frame 2410 plays a role of fixing and supporting each structure in the first accommodating portion 2400;
[0047] Specifically, when the coil in the first accommodating portion 2400 needs to be loaded, first, the first accommodating motor enters the working state, so that the output shaft of the first accommodating motor drives the first expansion shaft 2430 to rotate, and then the first expansion shaft 2430 can drive the coil to rotate, thereby improving the efficiency of coil loading;
[0048] Meanwhile, the structures of the second accommodating portion 2500 and the first accommodating portion 2400 are completely the same, and therefore, the working principle of the second accommodating portion 2500 is completely the same as the working principle of the first accommodating portion 2400, which will not be described in detail herein.
[0049] In this embodiment, the material receiving assembly includes a first material receiving bracket 3100, a first material receiving clamping strip 3200 and a second material receiving clamping strip 3300. The first material receiving bracket 3100 is installed on one side of the correction accommodating assembly, and the first material receiving clamping strip 3200 and the second material receiving clamping strip 3300 are both installed on the first material receiving bracket 3100.
[0050] The first material receiving bracket 3100 plays a role of fixing and supporting various structures in the material receiving assembly;
[0051] When the coil material that has entered the material splicing component after the loading action needs to be spliced, first, the old coil material enters the first material splicing clamping strip 3200 and the second material splicing clamping strip 3300, and then, the first material splicing clamping strip 3200 and the second material splicing clamping strip 3300 pre-compact the coil material, and then the user uses external tape or the like to bond the new coil material and the old coil material to be spliced together, thereby ensuring the continuity and integrity of the coil material processing.
[0052] In this embodiment, the winding assembly includes two winding baffles 5100 and a winding differential shaft 5200, the two winding baffles 5100 are installed in the outer shell 1000, the winding differential shaft 5200 is installed between the two winding baffles 5100, and the winding differential shaft 5200 is provided with a plurality of accommodating and limiting grooves 5210 for accommodating and limiting the coiled material.
[0053] The winding baffle 5100 limits the coil in the winding differential slip shaft 5200, and the accommodating limit groove 5210 can accommodate the cut strip coil, thereby ensuring the stability of the winding of the cut coil;
[0054] It is worth noting that the winding slip shaft 5200 can be used to adjust the rotation speed through an external adjustment mechanism to adjust the winding speed of each material roll to be uniform, thereby further ensuring the stability of the winding.
[0055] In this embodiment, the clamping assembly includes at least one clamping cylinder 6100, at least one clamping connecting block 6200, a clamping rotating column 6300, a plurality of clamping transfer rods 6400 and a plurality of clamping rollers 6500. The clamping cylinder 6100 is installed in the outer shell 1000, the clamping rotating column 6300 is rotatably arranged in the outer shell 1000, and the output end of the clamping cylinder 6100 is connected to one end of the clamping connecting block 6200, and the other end of the clamping connecting block 6200 is connected to the clamping rotating column 6300. The plurality of clamping transfer rods 6400 are all installed on the clamping rotating column 6300, and the clamping roller 6500 is installed at one end of the clamping transfer rod 6400 away from the clamping rotating column 6300, and the clamping roller 6500 faces the winding assembly.
[0056] Among them, after the winding component winds up the cut coil, the clamping cylinder 6100 enters the working state, so that the clamping cylinder 6100 drives the clamping connection block 6200 to rotate, and then the clamping connection block 6200 drives the clamping rotating column 6300, so that the clamping rotating column 6300 drives multiple clamping transfer rods 6400 to have an angular deviation, and then the clamping transfer rod 6400 drives multiple clamping rollers 6500 to rotate, until the multiple clamping rollers 6500 abut against the outside of the winding component, so that the multiple clamping rollers 6500 complete the clamping effect on the coil, thereby ensuring the stability of the coil after winding.
[0057] In this embodiment, the intelligent control platform includes a limiting slide rail 7100, a limiting connection part 7200 and an operating table 7300. The limiting slide rail 7100 is installed on the upper side of the shell 1000, one end of the limiting connection part 7200 is slidably connected to the limiting slide rail 7100, and the other end of the limiting connection part 7200 is connected to the operating table 7300.
[0058] When the user needs to control the laser striping and die-cutting integrated machine of the utility model to work, the user can control the working state of the entire laser striping and die-cutting integrated machine through the operating table 7300;
[0059] Furthermore, when the user needs to change the control position, the user controls the limit connection part 7200 to slide on the limit slide rail 7100, so that the limit connection part 7200 drives the operating table 7300 to move in the horizontal direction, thereby ensuring that the user can control the working status of the laser striping and die-cutting machine in real time.
[0060] In this embodiment, the dust removal component includes a dust removal exhaust fan 8100 and at least one dust removal duct 8200. The dust removal exhaust fan 8100 is installed on one side of the outer shell 1000. One end of the dust removal duct 8200 is connected to the output end of the dust removal exhaust fan 8100, and the other end of the dust removal duct 8200 extends into the outer shell 1000.
[0061] Among them, when it is necessary to remove the dust in the outer shell 1000, the dust removal exhaust fan 8100 enters the working state, so that the dust removal exhaust fan 8100 absorbs the dust generated by the laser cutting equipment in the outer shell 1000 through the dust removal duct 8200, thereby avoiding the accumulation of dust in the outer shell 1000. On the one hand, it ensures the safety of the user when using the laser striping and die-cutting machine of the utility model, and on the other hand, it can also ensure the normal operation of the laser striping and die-cutting machine.
[0062] The laser striping and die-cutting integrated machine includes a housing 1000, a deviation correction accommodating component for ensuring the accuracy of material roll transmission, a material splicing component for splicing new and old material rolls, at least one laser cutting device, at least one winding component, a pressing component for pressing the material roll on the winding component, an intelligent control platform, and a dust removal component for removing dust generated by the laser cutting device in the housing 1000. A material feed port 1100 is provided at one end of the housing 1000, and at least one material discharge port 1200 is provided on the side wall of the housing 1000. The deviation correction accommodating component is installed on the housing 1000. 0 is provided with a side of the feed port 1100, the material receiving assembly is installed at the lower side of the deviation correcting assembly, the laser cutting equipment is installed in the shell 1000, the winding assembly is installed in the shell 1000, and the position of the winding assembly corresponds to the position of the discharge port 1200, the pressing assembly is installed on one side of the winding assembly, the intelligent control platform is installed on the outside of the shell 1000, and the dust removal assembly is installed on one side of the shell 1000, wherein the laser striping and die-cutting integrated machine of the utility model improves the accuracy of coil cutting through the mutual cooperation of various structures, thereby ensuring the qualified rate of the coiled material after cutting.
[0063] The above description is only an implementation method of the present utility model, and does not limit the patent scope of the present utility model. Any equivalent structure or equivalent process transformation made by using the contents of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present utility model.
Claims
1. A laser striping and die-cutting integrated machine, characterized in that: include A shell, wherein one end of the shell is provided with a feed inlet, and a side wall of the shell is provided with at least one discharge outlet; A deviation correction accommodating component for ensuring the accuracy of the material roll transmission, wherein the deviation correction accommodating component is installed on a side of the housing where the material feed port is opened; A material splicing component for splicing new coils and old coils, wherein the material splicing component is installed at the lower side of the deviation-correcting accommodating component; at least one laser cutting device mounted within the housing; At least one winding assembly, the winding assembly is installed in the housing, and the position of the winding assembly corresponds to the position of the discharge port; A pressing assembly for pressing the coiled material on the winding assembly, wherein the pressing assembly is installed on one side of the winding assembly; An intelligent control platform, wherein the intelligent control platform is installed outside the housing; A dust removal component is used for removing dust generated by the laser cutting equipment in the housing, and the dust removal component is installed on one side of the housing.
2. The laser striping and die-cutting integrated machine according to claim 1, characterized in that: The deflection correction accommodating component includes a deflection correction main board, a first adjustment plate, a second adjustment plate, a first accommodating portion, a second accommodating portion, an adjusting component for driving the distance between the first adjustment plate and the second adjustment plate, a deflection correction bracket, a deflection correction sensor adjustment motor, a deflection correction sensor driving rod, a first deflection correction sensor, a second deflection correction sensor and a deflection correction electric cylinder; The deflection correcting main board is mounted on one side of the housing, the first adjustment plate and the second adjustment plate are both slidably connected to the deflection correcting main board, the first accommodation portion is mounted on the first adjustment plate, the second accommodation portion is mounted on the second adjustment plate, and the adjustment assembly is mounted on a side of the deflection correcting main board away from the first adjustment plate; The output end of the regulating component is connected to the first regulating plate and the second regulating plate; The deflection correction bracket is installed on the upper side of the deflection correction main board, the deflection correction sensor adjustment motor is installed on the upper side of the deflection correction bracket, the deflection correction sensor driving rod is connected to the output end of the deflection correction sensor adjustment motor, and the first deflection correction sensor and the second deflection correction sensor are threadedly connected to the deflection correction sensor driving rod; The first deflection correcting sensor faces the first adjustment plate, and the second deflection correcting sensor faces the second adjustment plate; The deflection-correcting electric cylinder is installed in the shell, and the output end of the deflection-correcting electric cylinder is connected to the deflection-correcting mainboard.
3. The laser striping and die-cutting integrated machine according to claim 2, characterized in that: The adjustment assembly includes an adjustment motor, an adjustment screw, a first adjustment connection block and a second adjustment connection block, wherein the adjustment motor is mounted on the deviation correction main board, the adjustment screw is connected to the output end of the adjustment motor, one end of the first adjustment connection block is threadedly connected to the adjustment screw, and the other end of the first adjustment connection block is connected to the first adjustment plate; One end of the second adjustment connection block is threadedly connected to the adjustment screw, and the other end of the second adjustment connection block is connected to the second adjustment plate.
4. The laser striping and die-cutting integrated machine according to claim 3, characterized in that: A first thread is provided at the connection between the adjusting screw and the first adjusting connecting block; A second thread is provided at the connection between the adjusting screw and the second adjusting connecting block; Furthermore, the first thread and the second thread are opened in opposite directions.
5. The laser striping and die-cutting integrated machine according to claim 2, characterized in that: The first accommodating portion includes a first accommodating frame, a first accommodating motor and a first expansion shaft, wherein the first accommodating frame is mounted on the first adjusting plate, the first accommodating motor is mounted in the first accommodating frame, the first expansion shaft is mounted on one side of the first accommodating motor, and the output end of the first accommodating motor is connected to the first expansion shaft; The second accommodating portion has the same structure as the first accommodating portion.
6. The laser striping and die-cutting integrated machine according to claim 1, characterized in that: The material receiving assembly includes a first material receiving bracket, a first material receiving pressing strip and a second material receiving pressing strip. The first material receiving bracket is installed on one side of the deviation correction accommodating assembly, and the first material receiving pressing strip and the second material receiving pressing strip are both installed on the first material receiving bracket.
7. The laser striping and die-cutting integrated machine according to claim 1, characterized in that: The winding assembly includes two winding baffles and a winding differential shaft. The two winding baffles are installed in the shell, the winding differential shaft is installed between the two winding baffles, and the winding differential shaft is provided with a plurality of accommodating and limiting grooves for accommodating and limiting the coil.
8. The laser striping and die-cutting integrated machine according to claim 1, characterized in that: The clamping assembly includes at least one clamping cylinder, at least one clamping connecting block, a clamping rotating column, a plurality of clamping transfer rods and a plurality of clamping rollers. The clamping cylinder is installed in the outer shell, and the clamping rotating column is rotatably arranged in the outer shell, and the output end of the clamping cylinder is connected to one end of the clamping connecting block, and the other end of the clamping connecting block is connected to the clamping rotating column, and a plurality of the clamping transferring rods are installed on the clamping rotating column, and the clamping roller is installed at one end of the clamping transferring rod away from the clamping rotating column, and the clamping roller faces the winding assembly.
9. The laser striping and die-cutting integrated machine according to claim 1, characterized in that: The intelligent control platform comprises a limit slide rail, a limit connection part and an operating table, wherein the limit slide rail is installed on the upper side of the shell, one end of the limit connection part is slidably connected to the limit slide rail, and the other end of the limit connection part is connected to the operating table; The dust removal component includes a dust removal exhaust fan and at least one dust removal pipe. The dust removal exhaust fan is installed on one side of the shell. One end of the dust removal pipe is connected to the output end of the dust removal exhaust fan, and the other end of the dust removal pipe extends into the shell.