Production apparatus for a low release force release film and a production method thereof
The design of the spray tube and cleaning components solves the problems of high power consumption and uneven coating in the production of light release films, achieves efficient air drying, cooling and anti-static performance, and improves the production efficiency and quality of release films.
Patent Information
- Application Number
- CN202311129009.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-04
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-09-04
AI Technical Summary
In the existing production process of light release films, electrostatic dust removal and hot air drying lead to high power consumption and uneven coating, affecting the performance of the release film.
The spray tube and cleaning component design uses high-pressure air to dry and cool the product, and an anti-static layer is set. The spray mechanism allows for quick nozzle replacement and cleaning, enhancing anti-static performance.
It reduces production power consumption, improves coating uniformity and the antistatic performance of the release film, and improves production efficiency and finished product quality.
Smart Images

Figure CN117139023B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of release film production equipment, in particular to a production equipment of a light release force release film and a production method thereof. BACKGROUND
[0002] The prior art of the release film tends to machine automatic adsorption and installation, which requires that the release force of the release film is light enough, and the influence of the release surface of the release film on the surface characteristics of the glue is minimized. In a light release force release film and a manufacturing method thereof with a publication number of 2012102410228, a light release force release film includes a substrate, a primer layer provided on the substrate, and a release layer provided on the primer layer. The light release force release film solves the problem of generally high release transfer of conventional light release films. By increasing the primer layer and improving the chemical cross-linking density of the release layer, the transfer of silicone oil to the glue surface is reduced. Meanwhile, the primer layer increases the adhesion between the release layer and the substrate. The production process of the primer layer is adopted in the production process, which greatly improves the efficiency of the primer layer, the production efficiency, and reduces the loss and energy consumption.
[0003] Although the release film prepared by the process has the above advantages, the following defects still exist during implementation:
[0004] 1) In the process, the surface dust of the substrate is adsorbed by electrostatic adsorption during continuous conveying of the substrate, and then the substrate is subjected to electrostatic removal treatment, which increases the power consumption in the production process.
[0005] 2) After the surface of the substrate is cleaned, the surface of the substrate is dried by hot air. The substrate after drying is directly transmitted and subjected to surface coating. The temperature of the surface of the substrate decreases slowly, the transmission speed is fast, the surface temperature of the substrate is still high during coating, which easily causes rapid solidification of the coating, affects the uniformity of coating, and thus affects the performance of the release film.
[0006] Therefore, the above problems need to be solved. SUMMARY
[0007] In view of the deficiencies of the prior art, the present application provides a production equipment of a light release force release film and a production method thereof, which solves the problem that in the production process of the existing light release force release film, electrostatic dust removal is first adopted, then electrostatic removal treatment is performed, the production power consumption is increased, and after the surface of the substrate is dried by hot air, the substrate is heated, the transmission speed is fast, the substrate cools slowly, the high temperature during coating affects the uniformity of coating, and thus the performance of the release film after forming is reduced.
[0008] In order to achieve the above object, the present application is realized by the following technical scheme: a production equipment of a light release force release film, comprising a spraying pipe, a spraying mechanism is arranged outside the spraying pipe, the spraying mechanism comprises a branch pipe, one end of the branch pipe is in through communication with the inside of the spraying pipe, the other end of the branch pipe is communicated with a nozzle, a cleaning assembly is arranged outside the nozzle, a circular plate is fixedly connected in through on the outer surface of the nozzle, a hydraulic rod is fixedly connected on the outer surface of the circular plate, a rotary motor is fixedly connected on one end of the hydraulic rod, a connecting seat is fixedly connected on the outer surface of the rotary motor, the outer surface of the connecting seat is fixedly connected with the outer surface of the spraying pipe, clamping plates are movably connected on both sides of the outer surface of the nozzle, the outer surfaces of the clamping plates on both sides are movably connected with the outer surface of the branch pipe, fixed rings are movably connected on both sides of the outer surface of the clamping plates, the inner walls of the fixed rings on both sides are fixedly connected with the outer surfaces of the nozzle and the branch pipe, connecting strips are fixedly connected on the other sides of the outer surfaces of the clamping plates on both sides, ball screws are fixedly connected on the outer surfaces of the connecting strips, a reciprocating motor is fixedly connected on one end of the ball screw, fixed plates are arranged on the outer surfaces of the ball screw and the reciprocating motor, and the outer surfaces of the fixed plates on both sides are fixedly connected with the outer surface of the spraying pipe.
[0009] Preferably, the cleaning assembly comprises an air pipe, a booster unit is arranged on the body of the air pipe, one end of the air pipe is communicated with a connecting pipe through an integrated pipe, the outer surface of the connecting pipe is fixedly connected in through with the body of the spraying pipe, the inside of the connecting pipe is communicated with the inside of the branch pipe, and the inside of the air pipe is in through communication.
[0010] Preferably, a piston is movably connected in the inside of the air pipe, a one-way valve is fixedly connected in through on the body of the piston, a connecting rod is movably connected on the outer surface of the piston, the outer surface of the connecting rod is movably connected with the inside of the air pipe, a crankshaft is rotatably connected in through on the other end of the connecting rod, a driving motor is fixedly connected on one end of the crankshaft, and the outer surface of the driving motor and the other end of the crankshaft are provided with support plates, and the outer surfaces of the support plates on both sides are fixedly connected with the outer surface of the air pipe.
[0011] Preferably, the booster unit comprises a booster box, the inside of the booster box is in through communication with the inside of the air pipe, a baffle is movably connected in the inside of the booster box, a linkage module is arranged outside the baffle, a sealing column is movably connected in through on the body of the baffle, a support rod is fixedly connected on one end of the sealing column, and one end of the support rod is fixedly connected with the inside of the air pipe.
[0012] Preferably, the outer side of the baffle is provided with two matched sealing plates, the outer surfaces of the two sealing plates are movably connected with the inside of the supercharging box, the outer surfaces of the two sealing plates are movably connected with the limiting racks, the outer surfaces of the two limiting racks are fixedly connected with the inside of the supercharging box, the outer surface of one of the sealing plates is provided with a sealing groove, the inside of the sealing groove is movably connected with a sealing strip, and the outer surface of the sealing strip is fixedly connected with the outer surface of the other sealing plate.
[0013] Preferably, the linkage module comprises a screw rod, one end of the screw rod is movably connected with the inner wall of the supercharging box, the outer surface of the screw rod is movably connected with the inside of the baffle, and one end of the screw rod is fixedly connected with a rotating rod, and one end of the rotating rod is movably connected with the inner wall of the supercharging box.
[0014] Preferably, the outer surfaces of the two rotating rods are movably connected with two winding wheels, the outer surfaces of the two winding wheels are wound with two traction ropes, one end of one of the traction ropes is woundly connected with the outer surface of the sealing plate, the other traction rope is provided with a spring rod outside, the two ends of the spring rod are fixedly connected with two electromagnets, the outer surface of one of the electromagnets is fixedly connected with the inside of the supercharging box, and the outer surface of the other electromagnet is woundly connected with one end of the other traction rope.
[0015] The application also discloses a production method of the production equipment of the light release force release film, and specifically comprises the following steps: step one, the moisture on the surface of the base material is dried by using hot air in advance, then the surface of the base material is blown by a group of spraying pipes, branch pipes, integrated pipes and a supercharging box, so that the dust on the surface of the base material is blown off;
[0016] Step two, the cleaned base material is conveyed and passes through another two groups of spraying pipes, branch pipes and nozzles on the other two spraying pipes, and the graphene and ceramic materials are sprayed on the surface of the base material in sequence by an external supercharging pump and a feeding device, so as to form an antistatic layer composed of a graphene coating and a ceramic coating;
[0017] Step three, the base material after the preliminary treatment is introduced into an existing coating machine, and the coating of the base material is performed on the primer layer and the release layer respectively, then the base material is heated and solidified, and then the base material is wound and packaged.
[0018] Step four, in the implementation process of step two, if the nozzle is blocked, the output end of the hydraulic rod is extended, the nozzle is moved by the circular plate, the rotating motor drives the nozzle to rotate and adjust the position by the circular plate, the transparent nozzle is aligned with the branch pipe, then the output end of the hydraulic rod is retracted to connect the transparent nozzle with the branch pipe, then the reciprocating motor drives the two clamping plates to approach each other by the ball screw and the connecting strip, and the nozzle and the branch pipe are clamped by the two fixed rings, so that the sealing and fixing of the connection between the nozzle and the branch pipe are completed. Advantages
[0019] The application provides a production equipment of a light release force release film and a production method thereof. Compared with the prior art, the following beneficial effects are achieved:
[0020] (1) The release film prepared by the process is dried by high-pressure air blowing, which can dry the surface of the substrate and rapidly cool the dried substrate, thereby avoiding high-temperature accelerated curing of the coating and affecting the performance of the formed release film. The antistatic layer is provided to enhance the antistatic performance of the release film, so that the formed release film will not adsorb dust and affect use.
[0021] (2) The spraying mechanism is provided, which can change the position of the plurality of nozzles driven by the circular plate and communicate with the branch pipes, thereby realizing rapid replacement of multiple types or replacement of the same type nozzle when a nozzle of a single specification is blocked, avoiding affecting the coating of the coating, thereby improving the coating efficiency.
[0022] (3) The cleaning assembly is provided, the piston is driven by the crankshaft and connecting rod to reciprocate in the air pipe, and the outside air is pumped into the air pipe through the one-way valve, so that the substrate surface can be dried and cleaned or cooled and cleaned through one side of the spraying pipe and the branch pipe. The other two groups of spraying pipes and branch pipes can clean the inside of the blocked nozzle, thereby realizing automatic cleaning and improving the cleaning efficiency of the nozzle.
[0023] (4) The booster unit is provided, which can store the pumped air in the booster box by the combination of the sealing column and the baffle, and the combination of the sealing plate and the limiting frame, so that the air pressure in the booster box is increased, the air pressure and airflow speed of the sprayed air are increased, and the efficiency of drying, cooling and cleaning the inside of the nozzle is improved.
[0024] (5) The linkage module is provided, which can drive the sealing plate to move by the combination of the screw rod, the rotating rod, the reel and the traction rope, so that the air can flow and be pressurized. The spring rod facilitates air pressurization and sealing plate reset, and the two electromagnets are magnetically attracted, increasing the resistance of the spring rod, thereby facilitating adjustment of the pressurization value according to the demand. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is an external structure perspective view of the application;
[0026] Figure 2 It is an external structure perspective view of the circular plate of the application;
[0027] Figure 3 It is an external structure perspective view of the branch pipe of the application;
[0028] Figure 4 The internal structure of the pressure box of the application is shown in the sectional view;
[0029] Figure 5 The exploded view of the external structure of the sealing plate of the application is shown in the figure;
[0030] Figure 6 The external structure of the crankshaft of the application is shown in the perspective view.
[0031] In the figure: 1, spraying pipe; 2, branch pipe; 3, nozzle; 4, cleaning assembly; 41, air pipe; 42, pressure unit; 421, pressure box; 422, baffle; 423, linkage module; 4231, screw rod; 4232, rotating rod; 4233, winding wheel; 4234, spring rod; 4235, electromagnet; 424, sealing column; 425, supporting rod; 426, sealing plate; 427, limiting frame; 428, sealing groove; 429, sealing strip; 43, connecting pipe; 44, air pipe; 45, piston; 46, connecting rod; 47, crankshaft; 48, driving motor; 49, supporting plate; 5, round plate; 6, hydraulic rod; 7, rotary motor; 8, connecting seat; 9, clamping plate; 10, fixed ring; 11, connecting strip; 12, ball screw; 13, reciprocating motor; 14, fixed plate. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0033] Please refer to Figures 1-6 The application provides a technical solution: a production equipment of a light release force release film. Embodiment one:
[0034] A spray mechanism is provided on the outside of the spray pipe 1. The spray pipe 1 is a group of upper and lower parts, and at least three groups are provided. Two of the groups are connected to the external booster pump and the paint feeding equipment. The spray mechanism includes a branch pipe 2. One end of the branch pipe 2 is connected to the inside of the spray pipe 1. The other end of the branch pipe 2 is connected to a nozzle 3. A cleaning component 4 is provided on the outside of the nozzle 3. A circular plate 5 is fixedly connected to the outer surface of the nozzle 3. The nozzle 3 is mounted on the circular plate 5 through an existing detachable fixing structure, and multiple nozzles are equidistantly provided. According to actual coating requirements, multiple different specifications can be provided. Or multiple of the same specifications, the outer surface of the circular plate 5 is fixedly connected with a hydraulic rod 6, the hydraulic rod 6 is connected to the external control cylinder, one end of the hydraulic rod 6 is fixedly connected with a rotating motor 7, the rotating motor 7 is made of a servo motor and is electrically connected to the external control circuit, the outer surface of the rotating motor 7 is fixedly connected with a connecting seat 8, the outer surface of the connecting seat 8 is fixedly connected to the outer surface of the spray pipe 1, the outer surface of the nozzle 3 is movably connected with a splint 9 on both sides, the splint 9 is made of a material that is resistant to pressure, wear-resistant and has good sealing properties, and the outer surfaces of the splints 9 on both sides are connected to the surface of the branch pipe 2 The surface is movably connected, and both sides of the outer surface of the splint 9 are movably connected with a fixed ring 10. The fixed ring 10 improves the connection stability and sealing between the nozzle 3 and the branch pipe 2. The inner walls of the fixed rings 10 on both sides are fixedly connected to the outer surfaces of the nozzle 3 and the branch pipe 2 respectively. The other sides of the outer surfaces of the splints 9 on both sides are fixedly connected with a connecting bar 11. The outer surfaces of the connecting bars 11 on both sides are fixedly connected with a ball screw 12. One end of the ball screw 12 is fixedly connected to a reciprocating motor 13. The reciprocating motor 13 is made of a servo motor and is electrically connected to the external control circuit. The ball screw 12 and the reciprocating motor The outer surface of the machine 13 is provided with a fixed plate 14, and the other end of the ball screw 12 is embedded and rotatably connected to the surface of the fixed plate 14 on one side, and the outer surfaces of the fixed plates 14 on both sides are fixedly connected to the outer surface of the spray pipe 1. By setting up a spraying mechanism, when coating and forming the antistatic layer, the circular plate 5 drives multiple nozzles 3 to exchange positions and is connected to the branch pipe 2, thereby realizing rapid replacement of multiple types, or when a nozzle 3 of a single specification is blocked, the nozzle 3 of the same specification can be quickly replaced to avoid affecting the coating of the coating, thereby improving the coating efficiency. Example 2:
[0035] The cleaning assembly 4 comprises a wind pipe 41 made of pressure-resistant and wear-resistant material, a booster unit 42 is arranged on the body of the wind pipe 41, one end of the wind pipe 41 is communicated with a connecting pipe 43 through an integrated pipe, the outer surface of the connecting pipe 43 is fixedly connected with the body of the spraying pipe 1, the inner part of the connecting pipe 43 is communicated with the inner part of the branch pipe 2, the inner part of the wind pipe 41 is communicated with an air pipe 44, the air pipe 44 is made of pressure-resistant and wear-resistant material, the inner part of the air pipe 44 movably connects a piston 45, the piston 45 is made of pressure-resistant, wear-resistant and good sealing material, the body of the piston 45 fixedly connects a one-way valve, the flow direction of the one-way valve is one-way flow into the wind pipe 41, the outer surface of the piston 45 movably connects a connecting rod 46, the connecting rod 46 is made of pressure-resistant, wear-resistant and corrosion-resistant material, the outer surface of the connecting rod 46 movably connects with the inner part of the air pipe 44, the other end of the connecting rod 46 rotatably connects a crankshaft 47, one end of the crankshaft 47 fixedly connects a driving motor 48, the driving motor 48 is electrically connected with an external control circuit, the outer surface of the driving motor 48 and the other end of the crankshaft 47 are provided with a support plate 49, the other end of the crankshaft 47 is rotatably connected with the outer surface of the support plate 49, the outer surfaces of the two support plates 49 are fixedly connected with the outer surface of the wind pipe 41, by arranging the cleaning assembly 4, the driving motor 48 drives the piston 45 to reciprocate in the air pipe 44 through the crankshaft 47 and the connecting rod 46, and the external air can be pumped into the wind pipe 41 through the one-way valve, so that the surface of the base material can be dried and cleaned or cooled and cleaned through one side of the spraying pipe 1 and the branch pipe 2, and the other two groups of spraying pipes 1 and branch pipes 2 can clean the inside of the blocked nozzle 3, so as to realize automatic cleaning and improve the cleaning efficiency of the nozzle 3. Example three:
[0036] The booster unit 42 comprises a booster box 421 made of pressure-resistant and wear-resistant material, the inside of the booster box 421 is in through communication with the inside of the air pipe 41, the booster box 421 is movably connected with a baffle 422 made of pressure-resistant, wear-resistant and good sealing material, the outside of the baffle 422 is provided with a linkage module 423, the body of the baffle 422 is movably connected with a sealing column 424 made of pressure-resistant, wear-resistant and good sealing material, one end of the sealing column 424 is fixedly connected with a supporting rod 425 made of pressure-resistant, wear-resistant and good sealing material, one end of the supporting rod 425 is fixedly connected with the inside of the air pipe 41, the outside of the baffle 422 is provided with two abutting sealing plates 426 made of pressure-resistant, wear-resistant and good sealing material, one side of the outer surface of the sealing plate 426 is connected with the inner wall of the booster box 421 through a spring (not shown in the figure) to facilitate resetting by elastic force, the outer surfaces of the two sealing plates 426 are movably connected with the inside of the booster box 421, the outer surfaces of the two sealing plates 426 are movably connected with limiting racks 427 made of pressure-resistant and wear-resistant material, the outer surfaces of the two limiting racks 427 are fixedly connected with the inside of the booster box 421, the outer surface of one side of the sealing plate 426 is provided with a sealing groove 428, the inside of the sealing groove 428 is movably connected with a sealing strip 429 made of pressure-resistant, wear-resistant and good sealing material, the outer surface of the sealing strip 429 is fixedly connected with the outer surface of the other side of the sealing plate 426, by setting the booster unit 42, the combination of the sealing column 424 and the baffle 422, and the combination of the sealing plate 426 and the limiting rack 427, the pumped air can be stored in the inside of the booster box 421, so that the air pressure in the inside of the booster box 421 is increased, so that the air pressure and the air flow speed of the sprayed air are increased, thereby improving the efficiency of air drying, cooling cleaning and nozzle 3 inside cleaning. Example four:
[0037] The linkage module 423 comprises a screw rod 4231 made of a material resistant to compression, wear and good sealing, and the outer shape is helical, one end of the screw rod 4231 is movably connected with the inner wall of the booster tank 421, the outer surface of the screw rod 4231 is movably connected with the inside of the baffle 422, one end of the screw rod 4231 is fixedly connected with a rotating rod 4232 made of a material resistant to compression and wear, one end of the rotating rod 4232 is movably connected with the inner wall of the booster tank 421, both sides of the outer surface of the rotating rod 4232 are fixedly connected with a winding wheel 4233, the outer surfaces of the winding wheels 4233 on both sides are wound with a traction rope made of a material resistant to compression, wear and stretching, one end of the traction rope on one side is woundly connected with the outer surface of the sealing plate 426, the outside of the traction rope on the other side is provided with a spring rod 4234 made of a material resistant to wear and fatigue, both ends of the spring rod 4234 are fixedly connected with an electromagnet 4235, the electromagnet 4235 is electrically connected with an external control circuit, the outer surface of the electromagnet 4235 on one side is fixedly connected with the inside of the booster tank 421, the outer surface of the electromagnet 4235 on the other side is woundly connected with one end of the traction rope on the other side, by arranging the linkage module 423, the combination of the screw rod 4231, the rotating rod 4232 and the winding wheel 4233 and the traction rope can make the baffle 422 move to drive the sealing plate 426 to move, so that the air can circulate and be pressurized, and the spring rod 4234 facilitates the pressurization of the air and the resetting of the sealing plate 426, and the electromagnets 4235 on both sides are attracted by magnetism, increasing the resistance of the spring rod 4234, so as to facilitate the adjustment of the size of the pressurization value according to the demand. Example five:
[0038] Combining examples one to four obtains the present embodiment, using high-pressure air blowing, on the one hand, the surface of the substrate can be dried, on the other hand, the dried substrate can be rapidly cooled to avoid high temperature accelerating the curing of the coating, thereby affecting the performance of the release film after forming, and at the same time, the antistatic layer is arranged to enhance the antistatic performance of the release film, so that it will not adsorb dust after forming to affect use.
[0039] The application also discloses a production method of a production equipment of a light release force release film.
[0040] Step one, the moisture on the surface of the substrate is dried in advance using hot air, and at the same time, the resistance of the spring rod 4234 is adjusted by different sizes of magnetic force adsorption according to the two side electromagnets 4235, and the rotation speed of the driving motor 48 can be adjusted according to the resistance of the spring rod 4234, so that the plurality of pistons 45 make reciprocating motion in the air pipe 44, thereby pumping external air into the air pipe 41 through the one-way valve and the air pipe 44, then the air enters the booster box 421 through the air pipe 41, and pushes the baffle 422 into the booster box 421, the baffle 422 rotates the screw rod 4231 during movement, thereby making the rotating rod 4232 drive the two side winding wheels 4233 to rotate and wind the two side traction ropes, then the one side traction rope stretches the output end of the spring rod 4234, and the other side traction rope pulls the sealing plate 426 to separate from the shielding of the communication port of the air pipe 41 and the booster box 421, and when the baffle 422 moves and separates from the sealing column 424, the high-pressure gas flows from one side to the other side through the connection between the baffle 422 and the support rod 425, and then flows out through the other end of the air pipe 41, and then blows the substrate surface through a group of spraying pipes 1, branch pipes 2, connecting pipes 43, integrated pipes and booster boxes 421, so that the dust on the surface of the substrate is blown off, and the substrate is cooled to room temperature;
[0041] Step two, the cleaned substrate is conveyed through another two groups of spraying pipes 1, branch pipes 2 and nozzles 3 on the other two sides of the spraying pipes 1, and then graphene and ceramic materials are sprayed on the surface of the substrate in sequence through external booster pumps and feeding equipment to form an antistatic layer composed of graphene coating and ceramic coating;
[0042] Step three, the preliminarily processed substrate enters the existing coating machine, and the bottom coating and release layer are coated respectively, then heated and solidified, and then wound and packaged;
[0043] Step four, during the implementation of step two, if the nozzle 3 is blocked, the output end of the hydraulic rod 6 is extended, the nozzle 3 is driven to move through the circular plate 5, then the rotating motor 7 drives the nozzle 3 to rotate and adjust the position through the circular plate 5, so that the transparent nozzle 3 is aligned with the branch pipe 2, then the output end of the hydraulic rod 6 is retracted to connect the transparent nozzle 3 with the branch pipe 2, then the reciprocating motor 13 drives the two clamping plates 9 to approach and adhere to each other through the ball screw 12 and the connecting strip 11, and clamps the nozzle 3 and the branch pipe 2 through the two side fixed rings 10 to complete the sealing and fixing of the communication between them, after the coating is completed, the above steps and step one are repeated, the inside of the nozzle 3 can be cleaned by high-pressure gas, and when the cleaning is completed, the driving motor 48 stops rotating, the baffle 422 is not pressed, the output end of the spring rod 4234 is retracted by the elastic force, so that the sealing plate 426 is reset.
[0044] Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and not of limitation. Any terminology consistent with the technical field of the application, and techniques consistent with the application described are intended to be included in the scope of the present application. Numerous modifications and adaptations thereof will be apparent to those skilled in the art without departing from the spirit and scope of the present application.
[0045] While the embodiments of the application have been shown and described herein, it is to be understood that the application is not limited to these embodiments. Since modifications, variations, substitutions, and changes can be made to these embodiments without departing from the spirit and the scope of the application as set forth in the claims and their equivalents, it is intended that the present application encompass such modifications, variations, substitutions, and changes.
Claims
1. A production device for a light release force release film, comprising a spray tube (1), characterized in that: The spraying pipe (1) is provided with a spraying mechanism on the outside, and the spraying mechanism includes a branch pipe (2), one end of the branch pipe (2) is connected to the inside of the spraying pipe (1), the other end of the branch pipe (2) is connected to a nozzle (3), and a cleaning assembly (4) is provided on the outside of the nozzle (3), and a circular plate (5) is fixedly connected to the outer surface of the nozzle (3), and a hydraulic rod (6) is fixedly connected to the outer surface of the circular plate (5), and one end of the hydraulic rod (6) is fixedly connected to a rotating motor (7), and the outer surface of the rotating motor (7) is fixedly connected to a connecting seat (8), and the outer surface of the connecting seat (8) is fixedly connected to the outer surface of the spraying pipe (1), and both sides of the outer surface of the nozzle (3) are movably connected to clamps ( 9), the outer surfaces of the splints (9) on both sides are movably connected to the outer surface of the branch pipe (2), the outer surfaces of the splints (9) are movably connected to fixed rings (10) on both sides, the inner walls of the fixed rings (10) on both sides are fixedly connected to the outer surfaces of the nozzle (3) and the branch pipe (2), respectively, the other sides of the outer surfaces of the splints (9) on both sides are fixedly connected to connecting bars (11), the outer surfaces of the connecting bars (11) on both sides are fixedly connected to ball screws (12), one end of the ball screw (12) is fixedly connected to a reciprocating motor (13), the outer surfaces of the ball screw (12) and the reciprocating motor (13) are both provided with fixed plates (14), the outer surfaces of the fixed plates (14) on both sides are fixedly connected to the outer surface of the spray pipe (1); The cleaning assembly (4) includes an air duct (41), a booster unit is provided on the body of the air duct (41), one end of the air duct (41) is connected to a connecting pipe (43) through an integrated pipe, the outer surface of the connecting pipe (43) is fixedly connected to the body of the spray pipe (1), and the interior of the connecting pipe (43) is connected to the interior of the branch pipe (2); The boost unit includes a boost box (421), the interior of the boost box (421) is in communication with the interior of the air duct (41), the interior of the boost box (421) is movably connected to a baffle (422), the exterior of the baffle (422) is provided with a linkage module (423), the body of the baffle (422) is movably connected to a sealing column (424), one end of the sealing column (424) is fixedly connected to a support rod (425), and one end of the support rod (425) is fixedly connected to the interior of the air duct (41); Two sealing plates (426) are provided on the outside of the baffle (422), and the outer surfaces of the sealing plates (426) on both sides are movably connected to the inside of the boost box (421); The linkage module (423) includes a screw (4231), one end of the screw (4231) is embedded in the inner wall of the boost box (421) and is movably connected, the outer surface of the screw (4231) is penetrated and movably connected to the inside of the baffle (422), one end of the screw (4231) is fixedly connected to a rotating rod (4232), and one end of the rotating rod (4232) is embedded in the inner wall of the boost box (421) and is movably connected; Reels (4233) are fixedly connected to both sides of the outer surface of the rotating rod (4232), and traction ropes are wound around the outer surfaces of the reels (4233) on both sides. One end of the traction rope on one side is wound and connected to the outer surface of the sealing plate (426), and a spring rod (4234) is provided on the outside of the traction rope on the other side. Both ends of the spring rod (4234) are fixedly connected to electromagnets (4235), and the outer surface of the electromagnet (4235) on one side is fixedly connected to the inside of the boost box (421), and the outer surface of the electromagnet (4235) on the other side is wound and connected to one end of the traction rope on the other side.
2. The production equipment of a light release force release film according to claim 1, characterized in that: The interior of the air duct (41) is connected to an air duct (44).
3. The production equipment of a light release force release film according to claim 2, characterized in that: The interior of the air pipe (44) is movably connected to a piston (45), the body of the piston (45) is fixedly connected to a one-way valve, the outer surface of the piston (45) is movably connected to a connecting rod (46), the outer surface of the connecting rod (46) is movably connected to the interior of the air pipe (44), the other end of the connecting rod (46) is rotatably connected to a crankshaft (47), one end of the crankshaft (47) is fixedly connected to a driving motor (48), the outer surface of the driving motor (48) and the other end of the crankshaft (47) are both provided with support plates (49), and the outer surfaces of the support plates (49) on both sides are fixedly connected to the outer surface of the air pipe (41).
4. The production equipment of a light release force release film according to claim 3, characterized in that: Both sides of the outer surfaces of the two sealing plates (426) are movably connected to the limiting frames (427), and the outer surfaces of the limiting frames (427) on both sides are fixedly connected to the inside of the boost box (421). A sealing groove (428) is provided on the outer surface of one side of the sealing plate (426), and a sealing strip (429) is movably connected to the inside of the sealing groove (428), and the outer surface of the sealing strip (429) is fixedly connected to the outer surface of the sealing plate (426) on the other side.
5. A method for producing a light release force release film production device, characterized in that: The production equipment of the light release force release film according to claim 4 specifically comprises the following steps: Step 1: Use hot air to dry the moisture on the surface of the substrate in advance, and then blow air to the surface of the substrate through a group of spray pipes (1), upper branch pipes (2), connecting pipes (43), integrated pipes and booster boxes (421) to blow off the dust on the surface; Step 2: The cleaned substrate is transported through another two sets of spray pipes (1), the branch pipes (2) and the nozzles (3) on the other two sets of spray pipes (1), and the graphene and ceramic materials are sprayed on the surface of the substrate in sequence through an external booster pump and a feeding device to form an antistatic layer composed of a composite of a graphene coating and a ceramic coating; Step 3: The substrate after preliminary treatment enters the existing coating machine, where it is coated with a primer layer and a release layer, then heated and cured to form, and then wound and packaged; Step 4. During the implementation of step 2, if the nozzle (3) is blocked, the output end of the hydraulic rod (6) extends and drives the nozzle (3) to move through the circular plate (5), and then the rotary motor (7) drives the nozzle (3) to rotate and adjust the position through the circular plate (5) so that the transparent nozzle (3) is aligned with the branch pipe (2), and then the output end of the hydraulic rod (6) retracts to drive the transparent nozzle (3) to connect with the branch pipe (2), and then the reciprocating motor (13) drives the two side clamps (9) to approach each other through the ball screw (12) and the connecting bar (11), and clamps the nozzle (3) and the branch pipe (2) through the fixed rings (10) on both sides to complete the sealing and fixation of the connection between the two.
Citation Information
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