Processing system and method of wear-resistant RPVB regenerated environment-friendly membrane composite fabric

By using a scraper and a flat plate to smooth the adhesive in the wear-resistant RPVB recycled environmentally friendly membrane composite fabric processing system, and by using a guide channel and a water pump to reuse the excess adhesive, the problem of uneven product edges caused by adhesive overflow was solved, product quality was improved, and energy saving and environmental protection were achieved.

CN118528630BActive Publication Date: 2026-03-27YONGSHENG HAEIL DIFFERENTIAL FABRIC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-11
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

During the processing of wear-resistant RPVB recycled environmentally friendly membrane composite fabrics, the adhesive tends to flow out from the edges during hot pressing and shaping, resulting in uneven product edges and affecting quality.

Method used

A processing system for a wear-resistant RPVB recycled environmentally friendly membrane composite fabric includes an environmentally friendly membrane body, a composite fabric body, an adhesive dispensing box, a leveling component, and a recycling component. The adhesive is leveled by a scraper and a flat plate, excess adhesive is collected by a guide channel and a collection box, and then reused by a water pump.

Benefits of technology

It achieves uniform coating of adhesive between composite fabric and environmentally friendly film, preventing adhesive from flowing out from the edges, improving product quality, and enabling the reuse of adhesive, thus saving energy and protecting the environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a processing system and method of wear-resistant RPVB regenerated environment-friendly membrane composite fabric, and relates to the technical field of composite fabric processing. The processing system and method of wear-resistant RPVB regenerated environment-friendly membrane composite fabric comprises an environment-friendly membrane body and a composite fabric body, a leveling assembly for adjusting the amount of glue coating and a recycling assembly for assisting glue recycling are arranged in the processing machine shell, the leveling assembly comprises a scraper which is slidingly installed in the processing machine shell and used for leveling the coated glue, and a limiting rod is slidingly installed in the scraper; a flattening plate is fixedly installed at one end of the limiting rod and used for leveling the coated glue, a guide rod one is slidingly arranged in the flattening plate, and one end of the guide rod one is fixed in the processing machine shell, so that the glue cannot flow out from the edge of the contact surface between the environment-friendly membrane body and the composite fabric body when the environment-friendly membrane body and the composite fabric body are combined together, the edge is not uneven, and the product quality is not affected by the fluff.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of composite fabric processing, in particular to a processing system and method for wear-resistant RPVB regenerated environment-friendly film composite fabric. BACKGROUND

[0002] In the process of processing the wear-resistant RPVB regenerated environment-friendly film composite fabric, glue or coating material needs to be coated between the regenerated environment-friendly film and the composite fabric, and then the regenerated environment-friendly film and the composite fabric coated with the glue or the coating material are subjected to hot-pressing composite shaping, but when the glue is coated between the regenerated environment-friendly film and the composite fabric, the glue will be fully covered on the surface of the regenerated environment-friendly film or the composite fabric, and then when the hot-pressing composite shaping is performed, the glue will flow out from the edge of the contact surface between the regenerated environment-friendly film and the composite fabric and be shaped due to the space reduction and external force extrusion, so that the edges of the composite product are uneven and prone to fuzzing, which affects the product quality, for example, the composite device for combining woven fabric and three-layer PVC film disclosed in the application with the publication number CN205439516U has the problem that the glue is prone to flowing out from the edge of the contact surface between the two and being shaped due to external force extrusion during the composite, so that the edges of the composite product are uneven and prone to fuzzing, which affects the product quality, the uniform coating device for the flame-retardant composite fabric disclosed in the application with the publication number CN220048800U can make the glue better penetrate on the fabric, but when the hot-pressing composite shaping is performed, the glue will still flow out from the edge of the contact surface between the two and be shaped, so that the edges of the composite product are uneven and prone to fuzzing, which affects the product quality, therefore, the processing system and method for the wear-resistant RPVB regenerated environment-friendly film composite fabric are proposed. SUMMARY

[0003] In view of the defects of the prior art, the processing system and method for the wear-resistant RPVB regenerated environment-friendly film composite fabric are provided, and the problem that when the glue coated between the regenerated environment-friendly film and the composite fabric is subjected to hot-pressing composite shaping, the glue will flow out from the edge of the contact surface between the regenerated environment-friendly film and the composite fabric and be shaped due to the space reduction and external force extrusion after the pressing, so that the edges of the composite product are uneven and prone to fuzzing, which affects the product quality, is solved.

[0004] In order to achieve the above object, the present application is realized by the following technical scheme: a processing system of wear-resistant RPVB regenerated environment-friendly film composite fabric, comprising an environment-friendly film body, a composite fabric body and a processing machine shell, one end of the environment-friendly film body and the composite fabric body is threaded through the processing machine shell, a glue outlet box for coating glue is fixed in the processing machine shell, a leveling assembly for adjusting the amount of glue coating and a recycling assembly for assisting glue reuse are arranged in the processing machine shell, the leveling assembly comprises:

[0005] A scraper is slidingly installed in the processing machine shell for leveling the coated glue, a limiting rod is slidingly installed in the scraper;

[0006] A flattening plate is fixedly installed at one end of the limiting rod for leveling the coated glue, a guide rod one is slidingly threaded in the flattening plate, one end of the guide rod one is fixed in the processing machine shell;

[0007] The recycling assembly comprises:

[0008] A flow guide groove is fixed in the processing machine shell for guiding the flow direction of the glue, a flow-through hole is formed in the processing machine shell, a collection box is fixed in the processing machine shell below the outlet of the flow guide groove.

[0009] Preferably, a winding rope one is fixed on the side wall of the flattening plate, one end of the winding rope one is slidingly threaded in the processing machine shell, a winding wheel one is fixed at one end of the winding rope one, a transmission shaft is fixed in the winding wheel one, a driven bevel gear is fixed at one end of the transmission shaft.

[0010] Preferably, a power bevel gear is engaged with the driven bevel gear, a rotating shaft is fixed on the power bevel gear, a driving motor is fixed at one end of the rotating shaft.

[0011] Preferably, a glue storage box is fixed on the top of the processing machine shell and communicates with the glue outlet box, an upper electric telescopic rod is fixed on the top of the processing machine shell, an upper sliding rod is fixed at one end of the upper electric telescopic rod, one end of the upper sliding rod is slidingly threaded in the processing machine shell, an upper pressing plate is fixed at one end of the upper sliding rod, one end of the upper pressing plate abuts against the composite fabric body.

[0012] Preferably, a lower electric telescopic rod is fixed on the bottom of the processing machine shell, a lower sliding rod is fixed at one end of the lower electric telescopic rod, one end of the lower sliding rod is slidingly threaded in the processing machine shell, a lower pressing plate is fixed at one end of the lower sliding rod, one end of the lower pressing plate abuts against the environment-friendly film body.

[0013] Preferably, a fixed wheel is fixed on the rotating shaft, a connecting rope is fixed on the fixed wheel, a guide block is slidably connected to the connecting rope, the guide block is fixed on the side wall of the processing machine shell, a guide rod two is slidably connected to the connecting rope, one end of the guide rod two is fixed on the bottom of the inner wall of the processing machine shell, and one end of the connecting rope is fixed with a fixed rod.

[0014] Preferably, a support rod is slidably arranged in the fixed rod, one end of the support rod is fixed on the bottom of the inner wall of the processing machine shell, one end of the fixed rod is fixed with a push plate, the push plate is arranged in the collecting box, a positioning rod is fixed on the side wall of the fixed rod, a magnet one is fixed on the side wall of the positioning rod, a fixed block is fixed on the side wall of the inner wall of the processing machine shell, and a sliding block is slidably arranged in the fixed block.

[0015] Preferably, a spring one is fixed on the side wall of the sliding block, the other end of the spring one is fixed in the fixed block, a magnet two is fixed on the side wall of the sliding block, the magnet two is arranged to be magnetically attracted to the magnet one, a baffle for shielding the outlet of the flow guide groove is fixed on the side wall of the sliding block, a transfer cabin is communicated with the collecting box, a water pump is fixed on the processing machine shell, a flow guide pipe is communicated with the water pump, one end of the flow guide pipe is connected to the transfer cabin, and the other end of the flow guide pipe is connected to the glue storage box.

[0016] The application also provides a processing method suitable for the processing system of the wear-resistant RPVB regenerated environment-friendly film composite fabric, and the processing method comprises the following steps:

[0017] S1, the environment-friendly film body and the composite fabric body to be subjected to hot-pressing composite shaping processing are taken out from the processing machine shell;

[0018] S2, glue is applied to the environment-friendly film body through the glue outlet box;

[0019] S3, the applied glue is leveled by the leveling assembly, and the excess glue is removed;

[0020] S4, the excess glue is collected and reused by the recycling assembly;

[0021] S5, the environment-friendly film body and the composite fabric body after being coated with glue and leveled are conveyed to the hot-pressing composite part for shaping.

[0022] Preferably, the moving speed of the environment-friendly film body and the composite fabric body in the processing machine shell is between 20 m / min and 40 m / min.

[0023] The application provides a processing system and method of a wear-resistant RPVB regenerated environment-friendly film composite fabric.

[0024] (1), the processing system and method of the wear-resistant RPVB renewable environment-friendly film composite fabric, by setting the environment-friendly film body, the composite fabric body, the upper electric telescopic rod, the upper sliding rod, the upper pressing plate, the lower electric telescopic rod, the lower sliding rod, the lower pressing plate, the glue outlet box, the glue storage box, the processing machine shell, by passing through the environment-friendly film body and the composite fabric body to be bonded together from the processing machine shell, and by cooperating with each other between the lower pressing plate and the upper pressing plate, the environment-friendly film body and the composite fabric body can be closely bonded together, at the same time, glue is flowed out from the glue outlet box and coated between the environment-friendly film body and the composite fabric body, so that the environment-friendly film body and the composite fabric body are bonded together, the distance between the upper pressing plate and the lower pressing plate can be adjusted according to the bonding of fabrics with different thicknesses, and glue can be coated between the environment-friendly film body and the composite fabric body, the process flow is shortened, and the work efficiency is improved.

[0025] (2), the processing system and method of the wear-resistant RPVB renewable environment-friendly film composite fabric, by setting the driving motor, the rotating shaft, the power bevel gear, the driven bevel gear, the transmission shaft, the winding wheel one, the winding rope one, the spreading plate, the guide rod one, the limiting rod, the scraper, the flow guide groove and the collection box, when the glue flows between the environment-friendly film body and the composite fabric body through the glue outlet box, the driving motor is controlled to start, so that the spreading plate can move along the guide rod one in a straight line under the drive of the winding rope one, at the same time, the spreading plate provides support force for the scraper through the limiting rod, the glue between the composite fabric body and the environment-friendly film body is spread by the spreading plate, the glue between the composite fabric body and the environment-friendly film body is scraped by the scraper, the excess part of the glue will flow to the direction of the inner wall of the processing machine shell under the action of the spreading plate and the scraper, and flow into the flow guide groove through the through hole opened on the surface of the processing machine shell, and then flow into the collection box below along the flow guide groove for collection, so that the glue between the composite fabric body and the environment-friendly film body will not flow out from the edge of the contact surface when the two are compounded, avoiding the situation that the glue flows out from the edge of the contact surface when the environment-friendly film body and the composite fabric body are compounded, resulting in uneven edge and easy fluffing, which affects the product quality.

[0026] (3), the processing system and method of the wear-resistant RPVB regenerated environment-friendly membrane composite fabric, through setting the poking plate, fixed rod, support rod, guide rod two, guide block, connecting rope, fixed wheel, positioning rod, magnet one, magnet two, baffle, sliding block, spring one, fixed block, flow guide pipe, water pump, when the rotating shaft drives the power bevel gear to rotate, the rotating shaft synchronously drives the fixed wheel to rotate, so that the poking plate can push the glue collected in the collection box to the side where the transfer cabin is located, so that the glue collected in the collection box flows into the transfer cabin, at the same time, the outlet of the flow guide groove is shielded by the baffle, so that the glue in the flow guide groove cannot flow into the collection box when the poking plate pushes the glue in the collection box into the transfer cabin, the glue collected in the transfer cabin is conveyed back into the glue storage box through the flow guide pipe by controlling the water pump to start again, the excess glue during compounding can be collected, and the collected glue can be reused, waste is not generated, and it is more energy-saving and environment-friendly. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is the overall structure schematic diagram of the application;

[0028] Figure 2 It is another view structure diagram of the processing machine shell of the application;

[0029] Figure 3 It is the structure diagram of the driving motor of the application;

[0030] Figure 4 It is the structure diagram of the application Figure 3 It is the enlarged view of A in the application;

[0031] Figure 5 It is the structure diagram of the water pump of the application;

[0032] Figure 6 It is the structure diagram of the glue outlet box of the application;

[0033] Figure 7 It is the position diagram of the collection box of the application;

[0034] Figure 8 It is the structure diagram of the flattening assembly of the application;

[0035] Figure 9 It is the structure diagram of the recycling assembly of the application;

[0036] Figure 10 It is the enlarged view of B in the application Figure 9 It is the structure diagram of the flow guide groove of the application.

[0037] Figure 11 It is the structure diagram of the flow guide groove of the application.

[0038] In the figure: 1, the environment-friendly film body; 11, the composite fabric body; 12, the upper electric telescopic rod; 13, the upper sliding rod; 14, the upper pressing plate; 15, the lower electric telescopic rod; 16, the lower sliding rod; 17, the lower pressing plate; 18, the glue outlet box; 19, the glue storage box; 2, the processing machine shell; 3, the driving motor; 31, the rotating shaft; 32, the power bevel gear; 33, the driven bevel gear; 34, the transmission shaft; 35, the winding wheel one; 36, the winding rope one; 37, the flattening plate; 38, the guide rod one; 39, the limiting rod; 310, the scraper; 311, the guide groove; 4, the collection box; 41, the push plate; 42, the fixed rod; 43, the supporting rod; 44, the guide rod two; 45, the guide block; 46, the connecting rope; 47, the fixed wheel; 48, the positioning rod; 49, the magnet one; 410, the magnet two; 411, the baffle; 412, the sliding block; 413, the spring one; 414, the fixed block; 415, the guide pipe; 416, the water pump. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0040] Please refer to Figures 1 to 11 The present application provides the following technical solutions:

[0041] Embodiment one: a processing system of wear-resistant RPVB regenerated environment-friendly film composite fabric, comprising an environment-friendly film body 1, a composite fabric body 11 and a processing machine shell 2, one end of the environment-friendly film body 1 and the composite fabric body 11 are both arranged to pass through the processing machine shell 2, a glue outlet box 18 for coating glue is fixedly installed in the processing machine shell 2, a glue storage box 19 in communication with the glue outlet box 18 is fixedly installed on the top of the processing machine shell 2, an upper electric telescopic rod 12 is fixedly installed on the top of the processing machine shell 2, one end of the upper electric telescopic rod 12 is fixedly installed with an upper sliding rod 13, one end of the upper sliding rod 13 is slidably arranged in the processing machine shell 2, the other end of the upper sliding rod 13 is fixedly installed with an upper pressing plate 14, one end of the upper pressing plate 14 is slidably abutted on the composite fabric body 11, a lower electric telescopic rod 15 is fixedly installed on the bottom of the processing machine shell 2, one end of the lower electric telescopic rod 15 is fixedly installed with a lower sliding rod 16, one end of the lower sliding rod 16 is slidably arranged in the processing machine shell 2, the other end of the lower sliding rod 16 is fixedly installed with a lower pressing plate 17, one end of the lower pressing plate 17 is slidably abutted on the environment-friendly film body 1.

[0042] In use, the RPVB regenerated environment-friendly film to be bonded together is passed through the processing machine shell 2, and the upper sliding rod 13 is moved by the upper electric telescopic rod 12, the upper sliding rod 13 moves the upper pressing plate 14, so that the upper pressing plate 14 tightly abuts the composite fabric body 11 against the environment-friendly film body 1, then the lower sliding rod 16 is moved by the lower electric telescopic rod 15, the lower sliding rod 16 moves the lower pressing plate 17, so that the lower pressing plate 17 and the upper pressing plate 14 are matched with each other to tightly fit the environment-friendly film body 1 and the composite fabric body 11 together, and the glue is coated between the environment-friendly film body 1 and the composite fabric body 11 through the glue flowing out of the glue outlet box 18, so that the environment-friendly film body 1 and the composite fabric body 11 are bonded together, and the glue in the glue outlet box 18 can be replenished in time by storing the glue in the glue storage box 19.

[0043] In the second embodiment, the difference between the technical scheme of the first embodiment is that the processing machine shell 2 is provided with a leveling assembly for adjusting the amount of glue coating, the leveling assembly comprises a driving motor 3, a rotating shaft 31, a power bevel gear 32, a driven bevel gear 33, a transmission shaft 34, a winding wheel one 35, a winding rope one 36, a flattening plate 37, a guide rod one 38, a limiting rod 39, and a scraper 310, the side wall of the scraper 310 is slidably installed in the processing machine shell 2 for leveling the coated glue, a limiting rod 39 is slidably installed in the scraper 310, the side wall of the flattening plate 37 is fixedly installed at one end of the limiting rod 39 for leveling the coated glue, a guide rod one 38 is slidably installed in the flattening plate 37, the two ends of the guide rod one 38 are fixedly installed on the inner walls of the two sides of the processing machine shell 2, a winding rope one 36 is fixedly installed on the side wall of the flattening plate 37, one end of the winding rope one 36 is slidably installed in the processing machine shell 2, one end of the winding rope one 36 is fixedly installed with a winding wheel one 35, a transmission shaft 34 is fixedly installed in the winding wheel one 35, the side wall of the transmission shaft 34 is movably installed on the side wall of a support plate one through a bearing, one end of the support plate one is fixedly installed on the side wall of the processing machine shell 2, one end of the transmission shaft 34 is fixedly installed with a driven bevel gear 33, the driven bevel gear 33 is meshingly connected with a power bevel gear 32, the bottom of the power bevel gear 32 is fixedly installed with a rotating shaft 31, one end of the rotating shaft 31 is fixedly installed on the output end of the driving motor 3 through a coupling, and an outer cover of the driving motor 3 is covered with a cover shell which is detachably installed on the side wall of the processing machine shell 2.

[0044] A winding rope two is fixedly installed on the other side wall of the flattening plate 37, one end of the winding rope two is also slidably installed in the processing machine shell 2, one end of the winding rope two is fixedly installed with an iron sheet, the iron sheet is wound on a winding wheel two, a support shaft is fixedly installed in the winding wheel two, the support shaft is movably installed on a support plate two through a bearing, and one end of the support plate two is fixedly installed on the side wall of the processing machine shell 2.

[0045] In use, when the glue flows between the environmental protection film body 1 and the composite fabric body 11 through the glue outlet box 18, the driving motor 3 is controlled to start, the driving motor 3 drives the rotating shaft 31 to rotate, the rotating shaft 31 drives the power bevel gear 32 to rotate, the power bevel gear 32 drives the driven bevel gear 33 to rotate, the driven bevel gear 33 drives the transmission shaft 34 to rotate, the transmission shaft 34 drives the winding wheel one 35 to rotate, the winding wheel one 35 drives the winding rope one 36 to move, so that the winding rope one 36 is wound on the winding wheel one 35, and the winding rope one 36 drives the flattening plate 37 to move, and the flattening plate 37 is in sliding fit between the guide rod one 38 and the flattening plate 37, so that the flattening plate 37 can move linearly along the guide rod one 38 under the driving of the winding rope one 36;

[0046] Meanwhile, the flattening plate 37 provides support force for the limiting rod 39, the limiting rod 39 provides support force for the scraper 310, and the limiting rod 39 is in sliding fit with the scraper 310, so that the limiting rod 39 can move in the scraper 310 under the driving of the flattening plate 37. The flattening plate 37 flattens the glue flowing between the environmental protection film body 1 and the composite fabric body 11 from the glue outlet box 18, and the scraper 310 scrapes the glue between the environmental protection film body 1 and the composite fabric body 11 flat. The excess glue flows to the direction of the two side inner walls of the processing machine shell 2 under the action of the flattening plate 37 and the scraper 310, flows into the flow guide groove 311 through the flow-through hole on the surface of the processing machine shell 2, and is collected in the collection box 4 below.

[0047] So that the glue between the composite fabric body and the environmental protection film body does not overflow from the edge of the contact surface when the two are compounded. When the flattening plate 37 moves to one side of the processing machine shell 2, the driving motor 3 is reversed to make the winding wheel one 35 no longer apply winding force to the winding rope one 36. At this time, the iron sheet wound on the winding wheel two applies force to the winding rope two, so that the winding rope two is wound on the winding wheel two, and the flattening plate 37 moves to the other side of the processing machine shell 2, so that the flattening plate 37 can move back and forth in the processing machine shell 2, thereby flattening the glue between the environmental protection film body 1 and the composite fabric body 11.

[0048] In the third embodiment, the difference from the technical scheme of the second embodiment is that the processing machine shell 2 is provided with a recycling assembly for assisting in recycling the glue. The recycling assembly comprises a flow guide groove 311, a flow-through hole, a collection box 4, a pushing plate 41, a fixed rod 42, a support rod 43, a guide rod two 44, a guide block 45, a connecting rope 46, a fixed wheel 47, a positioning rod 48, a magnet one 49, a magnet two 410, a baffle 411, a sliding block 412, a spring one 413, a fixed block 414, a flow guide pipe 415, and a water pump 416.

[0049] The side wall of the flow guide groove 311 is fixedly installed in the processing machine shell 2 for guiding the flow direction of the glue. The processing machine shell 2 is provided with a flow-through hole. Half of the water inlet of the flow-through hole is located above the environment-friendly film body 1, and the other half is located below the environment-friendly film body 1. The water outlet of the flow-through hole is located at the water inlet of the flow guide groove 311. A collection box 4 is detachably installed in the processing machine shell 2 below the outlet of the flow guide groove 311;

[0050] A fixed wheel 47 is fixedly arranged on the rotating shaft 31. A connecting rope 46 is fixedly installed on the fixed wheel 47. A guide block 45 is slidably arranged on the connecting rope 46. The guide block 45 is fixedly installed on the side wall of the processing machine shell 2. A guide rod two 44 is slidably arranged on the connecting rope 46. One end of the guide rod two 44 is fixedly installed on the bottom of the inner wall of the processing machine shell 2. One end of the connecting rope 46 is fixedly installed with a fixed rod 42. A support rod 43 is slidably arranged in the fixed rod 42. One end of the support rod 43 is fixedly installed on the bottom of the inner wall of the processing machine shell 2. A spring two is fixedly installed on the side wall of the support rod 43. The other end of the spring two is fixedly installed on the inner wall of the fixed rod 42. A push plate 41 is fixedly installed on one end of the fixed rod 42. The push plate 41 is located in the collection box 4. A positioning rod 48 is fixedly installed on the side wall of the fixed rod 42. A magnet one 49 is fixedly installed on the side wall of the positioning rod 48. A fixed block 414 is fixedly installed on the side of the inner wall of the processing machine shell 2. A sliding block 412 is slidably arranged in the fixed block 414. A spring one 413 is fixedly installed on the side wall of the sliding block 412. The other end of the spring one 413 is fixedly installed in the fixed block 414. A magnet two 410 is fixedly installed on the side wall of the sliding block 412. The magnet two 410 is magnetically attracted to the magnet one 49. A baffle 411 is fixedly installed on the side wall of the sliding block 412 for shielding the outlet of the flow guide groove 311. The number of the flow guide groove 311, the flow-through hole, the positioning rod 48, the magnet one 49, the magnet two 410, the baffle 411, the sliding block 412, the spring one 413, and the fixed block 414 is two groups. The two groups of the flow guide groove 311, the flow-through hole, the positioning rod 48, the magnet one 49, the magnet two 410, the baffle 411, the sliding block 412, the spring one 413, and the fixed block 414 are symmetrically distributed on both sides of the collection box 4.

[0051] A transfer cabin is communicated with the collection box 4 through a one-way valve. A water pump 416 is fixedly installed on the processing machine shell 2. A flow guide pipe 415 is communicated with the water pump 416. One end of the flow guide pipe 415 is fixedly connected to the transfer cabin. The other end of the flow guide pipe 415 is fixedly connected to the glue storage box 19.

[0052] In use, while the rotating shaft 31 drives the power bevel gear 32 to rotate, the rotating shaft 31 also drives the fixed wheel 47 to rotate. The fixed wheel 47 drives the connecting rope 46 to move, so that the connecting rope 46 is wound on the fixed wheel 47. The guide block 45 and the guide rod 44 guide the connecting rope 46, so that the connecting rope 46 can drive the fixed rod 42 to move. The support rod 43 and the fixed rod 42 slide together, so that the fixed rod 42 can move linearly along the support rod 43 under the action of the connecting rope 46.

[0053] The fixed rod 42 drives the actuating plate 41 to move, causing the actuating plate 41 to push the glue collected in the collection box 4 towards the side where the transfer chamber is located, so that the glue collected in the collection box 4 flows into the transfer chamber. At the same time, the fixed rod 42 drives the positioning rod 48 to move, and the positioning rod 48 drives the magnet 49 to move. The magnet 49 and the magnet 410 are further and further apart, so that the magnetic attraction between the magnet 49 and the magnet 410 is weaker and weaker. The magnetic attraction can no longer counteract the elastic force provided by the spring 413. At this time, the spring 413 will provide elastic force to the sliding block 412, so that the sliding block 412 drives the baffle 411 to move away from the guide block 45. The baffle 411 blocks the outlet of the guide channel 311, so that when the actuating plate 41 pushes the glue in the collection box 4 into the transfer chamber, the glue in the guide channel 311 cannot flow into the collection box 4.

[0054] By controlling the water pump 416 to start, the glue collected in the transfer chamber is transported back to the glue storage box 19 through the guide pipe 415 for reuse. Then, the drive motor 3 reverses, so that the connecting rope 46 no longer applies force to the fixing rod 42. At this time, the fixing rod 42 drives the actuating plate 41 to return to its original position under the action of the spring. Figure 9 As shown in the image, with the fixing rod 42 resetting, magnet 49 will also reset to its original position. Figure 10 At the position shown, under the magnetic attraction of magnet 49 and magnet 410, magnet 410 is attracted to the position again. Figure 10 The position shown allows the baffle 411 to no longer block the outlet of the guide channel 311, so that excess glue can continue to flow from the guide channel 311 into the collection box 4 for collection.

[0055] This invention also provides a processing method for a processing system suitable for a wear-resistant RPVB recycled environmentally friendly membrane composite fabric, comprising the following steps:

[0056] S1. The environmentally friendly membrane body 1 and the composite fabric body 11 to be hot-pressed and composite-shaped are passed out from the processing machine housing 2. The moving speed of the environmentally friendly membrane body 1 and the composite fabric body 11 in the processing machine housing 2 is between 20m / min and 40m / min.

[0057] S2, applying glue to the environment-friendly film body 1 through the glue outlet box 18;

[0058] S3, using the leveling assembly to level the applied glue and remove the excess glue;

[0059] S4, using the recycling assembly to collect and recycle the excess glue;

[0060] S5, conveying the glued and leveled environment-friendly film body 1 and the composite fabric body 11 to the hot-pressing composite station for shaping.

[0061] Meanwhile, the contents not described in detail in the specification all belong to the prior art known by those skilled in the art.

[0062] It should be noted that, in this document, the relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or sequence between the entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.

[0063] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A processing system for wear-resistant RPVB recycled environmentally friendly membrane composite fabric, comprising an environmentally friendly membrane body (1), a composite fabric body (11), and a processing machine housing (2), characterized in that: The environment-friendly film body (1) and one end of the composite fabric body (11) are passed through the processing machine shell (2), the processing machine shell (2) is fixed with a glue outlet box (18) for coating glue, the processing machine shell (2) is provided with a leveling assembly for adjusting the amount of glue coating and a recycling assembly for assisting glue recycling, the leveling assembly comprises: A scraper (310) is slidingly installed in the processing machine shell (2) for leveling the coated glue, the scraper (310) is slidingly installed with a limiting rod (39); A flattening plate (37) is fixedly installed at one end of the limiting rod (39) for leveling the coated glue, the flattening plate (37) is slidingly passed with a guide rod (38), one end of the guide rod (38) is fixed in the processing machine shell (2), a winding rope (36) is fixed on the side wall of the flattening plate (37), one end of the winding rope (36) is slidingly passed in the processing machine shell (2), one end of the winding rope (36) is fixed with a winding wheel (35), the winding wheel (35) is fixed with a transmission shaft (34), one end of the transmission shaft (34) is fixed with a driven bevel gear (33), the driven bevel gear (33) is engaged with a power bevel gear (32), the power bevel gear (32) is fixed with a rotating shaft (31), one end of the rotating shaft (31) is fixed with a driving motor (3), the rotating shaft (31) is fixedly passed with a fixed wheel (47), the fixed wheel (47) is fixed with a connecting rope (46), the connecting rope (46) is slidingly abutted with a guide block (45), the guide block (45) is fixed on the side wall of the processing machine shell (2), the connecting rope (46) is slidingly abutted with a guide rod (44), one end of the guide rod (44) is fixed on the bottom of the inner wall of the processing machine shell (2), one end of the connecting rope (46) is fixed with a fixed rod (42), the fixed rod (42) is slidingly passed with a supporting rod (43), one end of the supporting rod (43) is fixed on the bottom of the inner wall of the processing machine shell (2); The recycling assembly comprises: A flow guide groove (311) is fixed in the processing machine shell (2) for guiding the flow direction of the glue, a flow-through hole is formed in the processing machine shell (2), a collecting box (4) is fixed in the processing machine shell (2) below the outlet of the flow guide groove (311), one end of the fixed rod (42) is fixed with a toggle plate (41), the toggle plate (41) is located in the collecting box (4), a positioning rod (48) is fixed on the side wall of the fixed rod (42), a magnet (49) is fixed on the side wall of the positioning rod (48), a fixed block (414) is fixed on the side of the inner wall of the processing machine shell (2), a sliding block (412) is slidingly passed in the fixed block (414).

2. The processing system of the wear-resistant RPVB regenerated environment-friendly membrane composite fabric according to claim 1, characterized in that: The top of the processing machine shell (2) is fixed with a glue storage box (19) communicated with the glue outlet box (18), the top of the processing machine shell (2) is fixed with an upper electric telescopic rod (12), one end of the upper electric telescopic rod (12) is fixed with an upper sliding rod (13), one end of the upper sliding rod (13) slides through the processing machine shell (2), one end of the upper sliding rod (13) is fixed with an upper pressing plate (14), one end of the upper pressing plate (14) abuts on the composite fabric body (11).

3. The processing system of claim 2, wherein the processing system is characterized by: The bottom of the processing machine shell (2) is fixed with a lower electric telescopic rod (15), one end of the lower electric telescopic rod (15) is fixed with a lower sliding rod (16), one end of the lower sliding rod (16) slides through the processing machine shell (2), one end of the lower sliding rod (16) is fixed with a lower pressing plate (17), one end of the lower pressing plate (17) abuts on the environment-friendly film body (1).

4. The processing system of the wear-resistant RPVB regenerated environment-friendly membrane composite fabric according to claim 1, characterized in that: The side wall of the sliding block (412) is fixed with a spring one (413), the other end of the spring one (413) is fixed in the fixed block (414), the side wall of the sliding block (412) is fixed with a magnet two (410), the magnet two (410) and the magnet one (49) are magnetically attracted, the side wall of the sliding block (412) is fixed with a baffle (411) for shielding the outlet of the flow guide groove (311), the collection box (4) is communicated with a transfer cabin, the processing machine shell (2) is fixed with a water pump (416), the water pump (416) is communicated with a flow guide pipe (415), one end of the flow guide pipe (415) is connected to the transfer cabin, the other end of the flow guide pipe (415) is connected to the glue storage box (19).

5. A processing method suitable for the processing system of the wear-resistant RPVB regenerated environment-friendly membrane composite fabric according to any one of claims 1-4, characterized in that, The following steps are included: S1, the environment-friendly film body (1) and the composite fabric body (11) to be subjected to hot pressing composite shaping processing are pulled out from the processing machine shell (2); S2, glue is applied to the environment-friendly film body (1) through the glue outlet box (18); S3, the applied glue is leveled by using the leveling assembly, and the excess glue is removed; S4, the excess glue is collected and reused by using the recycling assembly; S5, the environment-friendly film body (1) and the composite fabric body (11) after being coated with glue and leveled are conveyed to the hot pressing composite for shaping.

6. The processing method of the processing system of the wear-resistant RPVB regenerated environment-friendly membrane composite fabric according to claim 5, characterized in that: The moving speed of the environment-friendly film body (1) and the composite fabric body (11) in the processing machine shell (2) is between 20 m / min and 40 m / min.

Citation Information

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