An industrial automatic film cutting machine
By designing an automatic edge removal component and a PLC-controlled industrial automatic membrane cutting machine, the problem of difficult removal of residual membrane rings after reverse osmosis membrane cutting has been solved, realizing automated membrane cutting and waste disposal, and improving production efficiency and aesthetics.
Patent Information
- Application Number
- CN202411979822.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2044-12-31
AI Technical Summary
Existing industrial automatic membrane cutting machines have difficulty automatically removing residual membrane rings after cutting both ends of the reverse osmosis membrane, which affects production efficiency and aesthetics.
An industrial automatic film cutting machine was designed, comprising an automatic edge trimming component, a film conveying component, a film edge discharge component, and a film ejection component. Working in concert with a PLC controller, it achieves automatic edge trimming, cutting, conveying, discharge, and ejection functions.
It effectively removes residual membrane rings after reverse osmosis membrane cutting, improving production efficiency, aesthetics, and production time, and achieving automated membrane cutting and waste disposal.
Smart Images

Figure CN119748532B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of industrial automatic film cutting, and more specifically, to an industrial automatic film cutting machine. Background Technology
[0002] Reverse osmosis technology is a membrane separation and filtration technology that utilizes osmotic pressure difference. The reverse osmosis membrane (RO membrane) is the core component of a pure water machine. Its principle is that under pressure higher than the osmotic pressure of the solution, other substances cannot pass through the semi-permeable membrane, thus separating them from water. The reverse osmosis membrane can retain substances larger than 0.0001 microns, making it the finest type of membrane separation product. It effectively retains all dissolved salts and organic matter with a molecular weight greater than 100, while allowing water molecules to pass through. Therefore, it can effectively remove dissolved impurities from water. During production, the ends of the reverse osmosis membrane may be uneven, affecting both aesthetics and usability. Therefore, the ends of the reverse osmosis membrane need to be cut. However, existing industrial automatic membrane cutting machines often struggle to automatically remove the residual membrane rings at both ends after cutting, affecting the production time of the reverse osmosis membrane. Summary of the Invention
[0003] In view of the problems in related technologies, the present invention proposes an industrial automatic film cutting machine to overcome the above-mentioned technical problems existing in the existing related technologies.
[0004] Therefore, the specific technical solution adopted by the present invention is as follows:
[0005] An industrial automatic film cutting machine includes an automatic film cutting machine mounting frame, an automatic film cutting mounting assembly installed inside the automatic film cutting machine mounting frame, an automatic edge trimming assembly installed inside the automatic film cutting mounting assembly, a film edge discharge assembly provided on one side of the automatic edge trimming assembly, a film roll conveying assembly provided on one side of the film edge discharge assembly, and a film roll ejection assembly provided on one side of the film roll conveying assembly.
[0006] To achieve automatic edge trimming, the automatic edge trimming assembly includes an automatic edge trimming mounting frame, which is connected to the automatic film cutting machine mounting frame. Push rod fixing frames are symmetrically connected to both sides of the automatic edge trimming mounting frame. An electric push rod is installed inside the push rod fixing frame, and a clamping fixing rod is connected to the output end of the electric push rod. The clamping fixing rod passes through the automatic edge trimming mounting frame via a clamping through slot. A lifting electric push rod is connected inside the automatic edge trimming mounting frame, and an ejection mounting frame is connected to the output end of the lifting electric push rod. A rotating rod is movably connected inside the ejection mounting frame, and a drive motor is connected to one end of the rotating rod. The drive motor housing is connected to the ejection mounting frame. An elliptical rotating block is connected to the periphery of the rotating rod, and a moving plate is slidably fitted around the elliptical rotating block. The moving plate slides through the ejection mounting frame, and an ejection arc plate is connected to one side of the moving plate. A return spring is connected between the ejection arc plate and the ejection mounting frame.
[0007] To achieve the purpose of film conveying, the film conveying assembly includes a conveying mounting frame. A conveying sliding groove is slidably fitted around the periphery of the conveying mounting frame. The conveying sliding groove is symmetrically located inside the automatic film cutting machine mounting frame. A movable slider is connected to the center of the conveying mounting frame. A threaded rod is threadedly connected inside the movable slider. A fixed mounting plate is symmetrically and movably connected around the threaded rod. One end of the threaded rod is connected to a forward / reverse motor. A film placement plate is connected above the conveying mounting frame, and a film placement groove is formed inside the film placement plate. The forward / reverse motors are electrically connected to each other. Support rods are symmetrically connected to the bottom of the automatic film cutting machine mounting frame, and support seats are connected to the bottom of the support rods.
[0008] Furthermore, a PLC controller is installed on one side of the automatic film cutting machine mounting frame, and the electric push rod, lifting electric push rod, and drive motor are electrically connected to the PLC controller.
[0009] Furthermore, to achieve automatic film cutting, the automatic film cutting assembly includes a cutting pusher mounting bracket, which is connected to the automatic film cutting machine mounting bracket. A cutting electric pusher is installed inside the cutting pusher mounting bracket, and the output end of the cutting electric pusher is connected to the cutting mounting bracket. A cutting mounting rod is installed inside the cutting mounting bracket, and a cutting blade is connected to the periphery of the cutting mounting rod. A cutting motor is connected to one end of the cutting mounting rod. A first electric pusher is installed on one side of the cutting pusher mounting bracket. A sliding mounting bracket is slidably fitted inside the cutting pusher mounting bracket, and a rotary motor is installed inside the sliding mounting bracket. A second electric pusher is connected between the sliding mounting bracket and the cutting pusher mounting bracket.
[0010] Furthermore, the cutting electric actuator, the cutting motor, the first electric actuator, and the second electric actuator are electrically connected to the PLC controller.
[0011] Furthermore, in order to achieve the purpose of film edge discharge, the film edge discharge assembly includes a discharge through groove, which is symmetrically opened inside the automatic film cutting machine mounting frame. A discharge mounting plate is provided below the discharge through groove, and the discharge mounting plate is connected to the automatic film cutting machine mounting frame. A discharge sliding groove is opened inside the discharge mounting plate, and a waste storage box is provided on one side of the discharge mounting plate.
[0012] Furthermore, a waste discharge outlet is provided on one side of the waste storage box, and a discharge door is installed on the other side of the waste discharge outlet.
[0013] Furthermore, in order to achieve the purpose of film ejection, the film ejection assembly includes an ejection mounting groove, which is opened inside the automatic film cutting machine mounting frame. An ejection mounting frame is slidably fitted inside the ejection mounting groove. An ejection arc groove is opened inside the ejection mounting frame. An ejection electric push rod is connected to the bottom of the ejection mounting frame. The ejection electric push rod is electrically connected to the PLC controller.
[0014] The beneficial effects of this invention are as follows:
[0015] (1) In practical use, this invention not only solves the problem that the two ends of the reverse osmosis membrane may be uneven during production, which affects both the appearance and the use, but also cuts the two ends of the reverse osmosis membrane. Furthermore, through the automatic edge removal component, the two ends of the reverse osmosis membrane are pushed out after cutting. This solves the problem that the residual membrane rings at both ends of the reverse osmosis membrane are difficult to remove automatically after the existing industrial automatic membrane cutting machine cuts the two ends of the reverse osmosis membrane, and effectively improves the production time of the reverse osmosis membrane.
[0016] (2) In actual use, the present invention is equipped with a forward and reverse motor, which drives the threaded rod to rotate in the fixed mounting plate. When the threaded rod rotates, it drives the movable slider to move. When the movable slider moves, it drives the conveying mounting frame to move along the conveying sliding groove. When the conveying mounting frame moves, it drives the roll film to move through the roll film placement plate and the roll film placement groove, thereby achieving the function of automatically conveying the roll film.
[0017] (3) In actual use, after the membrane edge is pushed out, it falls into the discharge mounting plate through the waste discharge outlet. Then the membrane edge falls into the waste storage box through the discharge sliding groove, thereby facilitating the storage of the membrane edge and making the waste discharge outlet and discharge door facilitate the discharge of waste. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the main structure of an industrial automatic film cutting machine according to an embodiment of the present invention;
[0020] Figure 2 This is a perspective view of an industrial automatic film cutting machine according to an embodiment of the present invention.
[0021] Figure 3 This is a schematic diagram of the structure of an automatic film cutting assembly in an industrial automatic film cutting machine according to an embodiment of the present invention;
[0022] Figure 4 This is a partial structural diagram of an automatic edge trimming component in an industrial automatic film cutting machine according to an embodiment of the present invention;
[0023] Figure 5 This is a partial structural diagram of an automatic edge trimming component in an industrial automatic film cutting machine according to an embodiment of the present invention;
[0024] Figure 6 This is a schematic diagram of the structure of a film edge discharge assembly in an industrial automatic film cutting machine according to an embodiment of the present invention;
[0025] Figure 7 This is a schematic diagram of the structure of a film ejection assembly in an industrial automatic film cutting machine according to an embodiment of the present invention;
[0026] Figure 8 This is a schematic diagram of the structure of a film conveying assembly in an industrial automatic film cutting machine according to an embodiment of the present invention.
[0027] In the picture:
[0028] 1. Automatic film cutting machine mounting frame; 2. Automatic film cutting mounting assembly; 201. Cutting push rod mounting frame; 202. Cutting electric push rod; 203. Cutting mounting frame; 204. Cutting mounting rod; 205. Cutting blade; 206. Cutting motor; 207. First electric push rod; 208. Sliding mounting frame; 209. Rotary motor; 210. Second electric push rod; 3. Automatic edge trimming assembly; 301. Automatic edge trimming mounting frame; 302. Push rod fixing frame; 303. Electric push rod; 304. Clamping fixing rod; 305. Clamping through slot; 306. Lifting electric push rod; 307. Push-out mounting frame; 308. Rotating rod; 309. Drive motor; 310. Elliptical rotating block; 311. Moving plate; 3 12. Extrusion arc plate; 313. Return spring; 4. Film edge discharge assembly; 401. Discharge through groove; 402. Discharge mounting plate; 403. Discharge sliding groove; 404. Waste storage box; 5. Roll film conveying assembly; 501. Conveyor mounting frame; 502. Conveyor sliding groove; 503. Threaded rod; 504. Fixed mounting plate; 505. Forward and reverse motor; 506. Roll film placement plate; 507. Roll film placement groove; 508. Moving slider; 6. Roll film ejection assembly; 601. Ejection mounting groove; 602. Ejection mounting frame; 603. Ejection arc groove; 604. Ejection electric push rod; 7. PLC controller; 8. Waste discharge port; 9. Discharge door; 10. Support rod; 11. Support base. Detailed Implementation
[0029] 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.
[0030] According to embodiments of the present invention, an industrial automatic film cutting machine is provided, such as... Figure 1-8As shown, it includes an automatic film cutting machine mounting frame 1, an automatic film cutting mounting assembly 2 is installed inside the automatic film cutting machine mounting frame 1, an automatic edge trimming assembly 3 is installed inside the automatic film cutting mounting assembly 2, a film edge discharge assembly 4 is provided on one side of the automatic edge trimming assembly 3, a film roll conveying assembly 5 is provided on one side of the film edge discharge assembly 4, and a film roll ejection assembly 6 is provided on one side of the film roll conveying assembly 5.
[0031] Example 1;
[0032] like Figure 1-5 As shown, the high-efficiency cooling device for a hydraulic station according to an embodiment of the present invention includes an automatic edge trimming assembly 3 comprising an automatic edge trimming mounting frame 301 connected to an automatic film cutting machine mounting frame 1. Push rod fixing frames 302 are symmetrically connected to both sides of the automatic edge trimming mounting frame 301. An electric push rod 303 is installed inside the push rod fixing frame 302. A clamping fixing rod 304 is connected to the output end of the electric push rod 303. The clamping fixing rod 304 passes through the automatic edge trimming mounting frame 301 via a clamping through-slot 305. A lifting electric push rod 306 is connected inside the automatic edge trimming mounting frame 301. The output end of the electric actuator 306 is connected to an ejection mounting bracket 307. A rotating rod 308 is movably connected inside the ejection mounting bracket 307. One end of the rotating rod 308 is connected to a drive motor 309. The housing of the drive motor 309 is connected to the ejection mounting bracket 307. An elliptical rotating block 310 is connected to the periphery of the rotating rod 308. A movable plate 311 is slidably fitted around the elliptical rotating block 310. The movable plate 311 slides through the ejection mounting bracket 307. An ejection arc plate 312 is connected to one side of the movable plate 311. A return spring 313 is connected between the ejection arc plate 312 and the ejection mounting bracket 307.
[0033] Through the above technical solution, by setting an electric push rod 303, the electric push rod 303, under the fixation of the push rod fixing frame 302, can drive the clamping fixing rod 304 to move along the clamping through groove 305. At this time, the cut film roll ejected by the film roll ejection assembly 6 will be fixed by the groove in the clamping fixing rod 304. Then, the lifting electric push rod 306, under the fixation of the automatic edge trimming mounting frame 301, drives the ejection mounting frame 307 to descend. At this time, the ejection arc plate 312 is inserted into the cutting groove of the cut film roll. Then, the drive motor 309 drives the rotating rod 3 08 rotates within the ejection mounting frame 307. When the rotating rod 308 rotates, it drives the elliptical rotating block 310 to rotate. When the elliptical rotating block 310 rotates, it drives the moving plate 311 to move along the ejection mounting frame 307. The moving plate 311 drives the ejection arc plate 312 to move. At this time, the ejection arc plate 312 can drive the cut film edge to be ejected. The return spring 313 drives the ejection arc plate 312 to return to its original position. By setting a PLC controller 7, it is possible to easily control the electric push rod 303, the lifting electric push rod 306, and the drive motor 309.
[0034] Example 2;
[0035] like Figure 3 As shown, in the high-efficiency cooling device for the hydraulic station according to an embodiment of the present invention, the film ejection assembly 6 includes a cutting pusher mounting bracket 201. The cutting pusher mounting bracket 201 is connected to the automatic film cutting machine mounting bracket 1. A cutting electric pusher 202 is installed inside the cutting pusher mounting bracket 201. A cutting mounting bracket 203 is connected to the output end of the cutting electric pusher 202. A cutting mounting rod 204 is installed inside the cutting mounting bracket 203. A cutting blade 205 is connected to the periphery of the cutting mounting rod 204. The cutting motor 206 is connected to the end of the cutting push rod mounting bracket 201. A first electric push rod 207 is installed on one side of the cutting push rod mounting bracket 201. A sliding mounting bracket 208 is slidably fitted inside the cutting push rod mounting bracket 201. A rotary motor 209 is installed inside the sliding mounting bracket 208. A second electric push rod 210 is connected between the sliding mounting bracket 208 and the cutting push rod mounting bracket 201. The cutting electric push rod 202, the cutting motor 206, the first electric push rod 207, and the second electric push rod 210 are electrically connected to the PLC controller 7.
[0036] Through the above technical solution, the film roll moves between the first electric push rod 207 and the second electric push rod 210 via the film roll ejector assembly 6. After the first electric push rod 207 and the second electric push rod 210 are started, the second electric push rod 210 drives the rotary motor 209 on the sliding mounting frame 208 to move along the cutting push rod mounting frame 201. One end of the first electric push rod 207 and one end of the rotary motor 209 are fixed to the film roll center tube through the groove. The rotary motor 209 drives the film roll to rotate. Then, the cutting electric push rod 202 drives the cutting mounting frame 203 to move under the fixation of the cutting push rod mounting frame 201. The cutting motor 206 drives the cutting mounting rod 204 to rotate in the cutting mounting frame 203. The cutting mounting rod 204 can then drive the cutting blade 205 to cut the two ends of the rotating film roll, thereby achieving the purpose of automatic film cutting.
[0037] Example 3;
[0038] like Figure 6 As shown, in the high-efficiency cooling device for hydraulic stations according to an embodiment of the present invention, the film edge discharge assembly 4 includes a discharge through groove 401, which is symmetrically opened inside the automatic film cutting machine mounting frame 1. A discharge mounting plate 402 is provided below the discharge through groove 401. The discharge mounting plate 402 is connected to the automatic film cutting machine mounting frame 1. A discharge sliding groove 403 is opened inside the discharge mounting plate 402. A waste storage box 404 is provided on one side of the discharge mounting plate 402. A waste discharge outlet 8 is opened on one side of the waste storage box 404. A discharge door 9 is installed on one side of the waste discharge outlet 8.
[0039] With the above technical solution, after the membrane edge is pushed out, it falls onto the discharge mounting plate 402 through the waste discharge outlet 8. Then, the membrane edge falls into the waste storage box 404 through the discharge sliding groove 403, thereby achieving the purpose of facilitating the storage of the membrane edge and making the waste discharge outlet 8 and the discharge door 9 facilitate the discharge of waste.
[0040] Example 4;
[0041] like Figure 7 As shown, in the high-efficiency cooling device for hydraulic stations according to an embodiment of the present invention, the film ejection assembly 6 includes an ejection mounting groove 601, which is formed inside the automatic film cutting machine mounting frame 1. An ejection mounting frame 602 is slidably fitted inside the ejection mounting groove 601. An ejection arc groove 603 is formed inside the ejection mounting frame 602. An ejection electric push rod 604 is connected to the bottom of the ejection mounting frame 602. The ejection electric push rod 604 is electrically connected to the PLC controller 7.
[0042] Through the above technical solution, by setting the ejector mounting groove 601, the purpose of installing the ejector mounting frame 602 is achieved. The ejector electric push rod 604 can drive the ejector mounting frame 602 to lift the roll film through the ejector arc groove 603.
[0043] Example 5;
[0044] like Figure 8 As shown, in the high-efficiency cooling device for hydraulic stations according to an embodiment of the present invention, the film conveying assembly 5 includes a conveying mounting frame 501. A conveying sliding groove 502 is slidably fitted around the periphery of the conveying mounting frame 501. The conveying sliding groove 502 is symmetrically opened inside the automatic film cutting machine mounting frame 1. A movable slider 508 is connected to the middle of the conveying mounting frame 501. A threaded rod 503 is threadedly connected inside the movable slider 508. A fixed mounting plate 504 is symmetrically and movably connected around the periphery of the threaded rod 503. A forward and reverse motor 505 is connected to one end of the threaded rod 503. A film placing plate 506 is connected above the conveying mounting frame 501. A film placing groove 507 is opened inside the film placing plate 506. The forward and reverse motor 505 is electrically connected to each other. Support rods 10 are symmetrically connected to the bottom of the automatic film cutting machine mounting frame 1. A support base 11 is connected to the bottom of the support rods 10.
[0045] Through the above technical solution, by setting a forward and reverse motor 505, the forward and reverse motor 505 can drive the threaded rod 503 to rotate in the fixed mounting plate 504. When the threaded rod 503 rotates, it can drive the movable slider 508 to move. When the movable slider 508 moves, it can drive the conveying mounting frame 501 to move along the conveying sliding groove 502. When the conveying mounting frame 501 moves, it can drive the roll film to move through the roll film placement plate 506 and the roll film placement groove 507. By setting the support rod 10 and the support base 11, the automatic film cutting machine mounting frame 1 can be supported.
[0046] In practical use, this invention, such as Figure 1-8 As shown, it includes the following steps:
[0047] Step 1: By setting up a forward and reverse motor 505, the forward and reverse motor 505 can drive the threaded rod 503 to rotate in the fixed mounting plate 504. When the threaded rod 503 rotates, it can drive the movable slider 508 to move. When the movable slider 508 moves, it can drive the conveyor mounting frame 501 to move along the conveyor sliding groove 502. When the conveyor mounting frame 501 moves, it can drive the film to move to the center through the film placement plate 506 and the film placement groove 507.
[0048] Step 2: The film roll moves between the first electric push rod 207 and the second electric push rod 210 via the film roll ejector assembly 6. After the first electric push rod 207 and the second electric push rod 210 are activated, the second electric push rod 210 drives the rotary motor 209 on the sliding mounting frame 208 to move along the cutting push rod mounting frame 201. One end of the first electric push rod 207 and one end of the rotary motor 209 are fixed to the film roll center tube through a groove. The rotary motor 209 drives the film roll to rotate. Then, the cutting electric push rod 202 drives the cutting mounting frame 203 to move under the fixation of the cutting push rod mounting frame 201. The cutting motor 206 drives the cutting mounting rod 204 to rotate in the cutting mounting frame 203. The cutting mounting rod 204 can then drive the cutting blade 205 to cut both ends of the rotating film roll, thereby achieving the purpose of automatic film cutting.
[0049] Step 3: The film conveying assembly 5 then moves the cut film roll to the automatic edge trimming assembly 3. An electric push rod 303, fixed by the push rod fixing bracket 302, drives the clamping fixing rod 304 to move along the clamping through groove 305. At this time, the cut film roll ejected by the film ejection assembly 6 is fixed by the groove in the clamping fixing rod 304. Then, the lifting electric push rod 306, fixed by the automatic edge trimming mounting bracket 301, drives the ejection mounting bracket 307 to descend. The ejection arc plate 312 then inserts into the cutting groove of the cut film roll, and then the drive... Motor 309 drives rotating rod 308 to rotate in ejection mounting frame 307. When rotating rod 308 rotates, it drives elliptical rotating block 310 to rotate. When elliptical rotating block 310 rotates, it drives moving plate 311 to move along ejection mounting frame 307. Moving plate 311 drives ejection arc plate 312 to move. At this time, ejection arc plate 312 can push out the cut film edge. The ejection arc plate 312 is driven to return to its original position by return spring 313. By setting PLC controller 7, it is possible to easily control electric push rod 303, lifting electric push rod 306, and drive motor 309.
[0050] Step 4: After the membrane edge is pushed out, it falls onto the discharge mounting plate 402 through the waste discharge outlet 8. Then, the membrane edge falls into the waste storage box 404 through the discharge sliding groove 403, thereby facilitating the storage of the membrane edge and making the waste discharge outlet 8 and the discharge door 9 convenient for waste discharge.
[0051] To facilitate understanding of the above technical solutions of the present invention, the working principle or operation method of the present invention in actual process will be described in detail below.
[0052] In summary, with the aid of the above-mentioned technical solution of the present invention, the film roll is moved between the first electric push rod 207 and the second electric push rod 210 by the film roll ejection assembly 6. After the first electric push rod 207 and the second electric push rod 210 are started, the second electric push rod 210 drives the rotary motor 209 on the sliding mounting frame 208 to move along the cutting push rod mounting frame 201. One end of the first electric push rod 207 and one end of the rotary motor 209 are fixed to the film roll center tube through the groove. The rotary motor 209 drives the film roll to rotate. Then, the cutting electric push rod 202 drives the cutting mounting frame 203 to move under the fixation of the cutting push rod mounting frame 201. The cutting motor 206 drives the cutting mounting rod 204 to rotate in the cutting mounting frame 203. The cutting mounting rod 204 can then drive the cutting blade 205 to cut the two ends of the rotating film roll, thereby achieving the purpose of automatic film cutting.
[0053] By setting an electric push rod 303, which, under the fixation of the push rod fixing bracket 302, can drive the clamping fixing rod 304 to move along the clamping through groove 305. At this time, the cut film roll ejected by the film roll ejection assembly 6 will be fixed by the groove in the clamping fixing rod 304. Then, the lifting electric push rod 306, under the fixation of the automatic edge trimming mounting bracket 301, drives the ejection mounting bracket 307 to descend. At this time, the ejection arc plate 312 is inserted into the cutting groove of the cut film roll. Then, the drive motor 309 drives the rotating rod 308 to eject. When the mounting bracket 307 rotates, the rotating rod 308 can drive the elliptical rotating block 310 to rotate. When the elliptical rotating block 310 rotates, it can drive the moving plate 311 to move along the ejection mounting bracket 307. The moving plate 311 drives the ejection arc plate 312 to move. At this time, the ejection arc plate 312 can drive the cut film edge to be ejected. The return spring 313 drives the ejection arc plate 312 to return to its original position. By setting a PLC controller 7, it is possible to easily control the electric push rod 303, the lifting electric push rod 306, and the drive motor 309.
[0054] After the membrane edge is pushed out, it falls onto the discharge mounting plate 402 through the waste discharge outlet 8. Then, the membrane edge falls into the waste storage box 404 through the discharge sliding groove 403, thereby facilitating the storage of the membrane edge and making the waste discharge outlet 8 and the discharge door 9 facilitate the discharge of waste.
[0055] By setting the ejection mounting groove 601, the purpose of installing the ejection mounting frame 602 is achieved. The ejection electric push rod 604 can drive the ejection mounting frame 602 to lift the film roll through the ejection arc groove 603.
[0056] By setting a forward and reverse motor 505, the forward and reverse motor 505 can drive the threaded rod 503 to rotate in the fixed mounting plate 504. When the threaded rod 503 rotates, it can drive the movable slider 508 to move. When the movable slider 508 moves, it can drive the conveyor mounting frame 501 to move along the conveyor sliding groove 502. When the conveyor mounting frame 501 moves, it can drive the roll film to move through the roll film placement plate 506 and the roll film placement groove 507. By setting the support rod 10 and the support base 11, the automatic film cutting machine mounting frame 1 can be supported.
[0057] The above are merely preferred embodiments of the present invention and are 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 within the protection scope of the present invention.
Claims
1. An industrial automatic film cutting machine, characterized in that, The system includes an automatic film cutting machine mounting frame (1), an automatic film cutting mounting assembly (2) is installed inside the automatic film cutting machine mounting frame (1), an automatic edge trimming assembly (3) is installed inside the automatic film cutting mounting assembly (2), a film edge discharge assembly (4) is provided on one side of the automatic edge trimming assembly (3), a film roll conveying assembly (5) is provided on one side of the film edge discharge assembly (4), and a film roll ejection assembly (6) is provided on one side of the film roll conveying assembly (5). The automatic edge trimming assembly (3) includes an automatic edge trimming mounting frame (301), which is connected to the automatic film cutting machine mounting frame (1). Push rod fixing frames (302) are symmetrically connected to both sides of the automatic edge trimming mounting frame (301). An electric push rod (303) is installed inside the push rod fixing frame (302). A clamping fixing rod (304) is connected to the output end of the electric push rod (303). The clamping fixing rod (304) passes through the automatic edge trimming mounting frame (301) via a clamping through-slot (305). A lifting electric push rod (306) is connected inside the automatic edge trimming mounting frame (301). An ejector is connected to the output end of the lifting electric push rod (306). The ejector mounting bracket (307) has a rotating rod (308) movably connected inside. One end of the rotating rod (308) is connected to a drive motor (309). The housing of the drive motor (309) is connected to the ejector mounting bracket (307). An elliptical rotating block (310) is connected to the periphery of the rotating rod (308). A moving plate (311) is slidably fitted around the elliptical rotating block (310). The moving plate (311) slides through the ejector mounting bracket (307). An ejector arc plate (312) is connected to one side of the moving plate (311). A return spring (313) is connected between the ejector arc plate (312) and the ejector mounting bracket (307). The film conveying assembly (5) includes a conveying mounting frame (501), a conveying sliding groove (502) that slides around the conveying mounting frame (501), the conveying sliding groove (502) being symmetrically opened inside the automatic film cutting machine mounting frame (1), a movable slider (508) connected to the middle of the conveying mounting frame (501), a threaded rod (503) threadedly connected inside the movable slider (508), a fixed mounting plate (504) symmetrically and movably connected around the threaded rod (503), a forward and reverse motor (505) connected to one end of the threaded rod (503), a film placement plate (506) connected above the conveying mounting frame (501), a film placement groove (507) opened inside the film placement plate (506); the forward and reverse motor (505) is electrically connected to itself; a support rod (10) is symmetrically connected to the bottom of the automatic film cutting machine mounting frame (1), and a support base (11) is connected to the bottom of the support rod (10).
2. The industrial automatic film cutting machine according to claim 1, characterized in that, The automatic film cutting machine mounting frame (1) is equipped with a PLC controller (7) on one side. The electric push rod (303), the lifting electric push rod (306), and the drive motor (309) are electrically connected to the PLC controller (7).
3. An industrial automatic film cutting machine according to claim 2, characterized in that, The automatic film cutting mounting assembly (2) includes a cutting pusher mounting frame (201), which is connected to the automatic film cutting machine mounting frame (1). A cutting electric pusher (202) is installed inside the cutting pusher mounting frame (201). A cutting mounting frame (203) is connected to the output end of the cutting electric pusher (202). A cutting mounting rod (204) is installed inside the cutting mounting frame (203). A cutting blade (205) is connected to the periphery of the cutting mounting rod (204). A cutting motor (206) is connected to one end of the cutting mounting rod (204). A first electric pusher (207) is installed on one side of the cutting pusher mounting frame (201). A sliding mounting frame (208) is slidably fitted inside the cutting pusher mounting frame (201). A rotary motor (209) is also installed inside the sliding mounting frame (208). A second electric pusher (210) is connected between the sliding mounting frame (208) and the cutting pusher mounting frame (201).
4. An industrial automatic film cutting machine according to claim 3, characterized in that, The cutting electric actuator (202), the cutting motor (206), the first electric actuator (207), and the second electric actuator (210) are electrically connected to the PLC controller (7).
5. An industrial automatic film cutting machine according to claim 4, characterized in that, The film edge discharge assembly (4) includes a discharge through groove (401), which is symmetrically opened inside the automatic film cutting machine mounting frame (1). A discharge mounting plate (402) is provided below the discharge through groove (401), and the discharge mounting plate (402) is connected to the automatic film cutting machine mounting frame (1). A discharge sliding groove (403) is opened inside the discharge mounting plate (402), and a waste storage box (404) is provided on one side of the discharge mounting plate (402).
6. An industrial automatic film cutting machine according to claim 5, characterized in that, The waste storage box (404) has a waste discharge outlet (8) on one side, and a discharge door (9) is installed on one side of the waste discharge outlet (8).
7. An industrial automatic film cutting machine according to claim 6, characterized in that, The roll film ejection assembly (6) includes an ejection mounting groove (601), which is located inside the automatic film cutting machine mounting frame (1). An ejection mounting bracket (602) is slidably fitted inside the ejection mounting groove (601). An ejection arc groove (603) is provided inside the ejection mounting bracket (602). An ejection electric push rod (604) is connected to the bottom of the ejection mounting bracket (602). The ejection electric push rod (604) is electrically connected to the PLC controller (7).
Citation Information
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