Layered film material laminating and forming system with synchronous feeding structure and layered film material

By integrating a simultaneous feeding structure for surface coating and curing and base layer printing and silicone coating and curing, the problem of multiple processing steps in the traditional production of layered film materials has been solved, achieving efficient and environmentally friendly production, and improving product quality and equipment utilization.

CN223850059UActive Publication Date: 2026-01-30ZHEJIANG FULAI NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202520150523.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-01-30
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Traditional layered membrane material production processes require multiple independent processing steps, resulting in high labor costs, significant losses, low production capacity, and issues related to warehousing pressure and environmental pollution.

Method used

Design a layered film bonding and molding system with a synchronous feeding structure, integrating surface coating and curing, base layer printing and silicone coating curing, and bonding functions, and using UV curing technology to achieve multiple processes in one go.

Benefits of technology

It improved product quality and yield, reduced manpower and working hours, reduced losses and environmental pollution, and increased production capacity and equipment utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a layered film material laminating and forming system with a synchronous feeding structure and a layered film material, and the system comprises a surface layer feeding mechanism, a surface layer glue coating mechanism, a glue coating and curing mechanism, a base layer feeding mechanism, a base layer printing mechanism, a base layer silicon coating mechanism, a silicon coating and curing mechanism, a rolling and laminating mechanism and a finished product receiving mechanism, the laminated film material laminating and forming system integrates multiple functions of gluing and curing of a surface layer film material, printing, silicon coating and curing of a base layer film material, laminating of the surface layer film material and the base layer film material and the like, multiple process treatments can be completed at a time, loss and errors in multiple processing and transmission processes are avoided, the overall performance and quality of products are improved, three procedures are completed at a time, and the production efficiency is improved. Repeated winding and unwinding processes and a warehousing and transferring process between winding and unwinding are omitted, manpower and working hours are saved, warehousing pressure is relieved, more production lines can be contained, the amount of paper used for penetrating through a drying oven and adjusting the process is reduced, loss is small, the yield is higher, meanwhile, emission of volatile organic compounds can be reduced, and the environment-friendly requirement is better met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a film production equipment especially to a laminated film material laminating and forming system with synchronous feeding structure and laminated film material. BACKGROUND

[0002] Common advertising film material products, such as cold laminating film, car body stickers, etc., are usually composed of a laminated structure, the most common laminated structure including a surface layer, an adhesive layer, a release layer and a substrate layer stacked in turn from top to bottom. The material of the surface layer is PVC, TPU, PP, PE or PET, the material of the adhesive layer is adhesive, the material of the release layer is silicone release agent, and the material of the substrate layer is PET, PP synthetic paper, pearl film, PEK film paper, CCK paper, kraft paper, glassine paper and other film base materials or paper base materials. To produce such advertising film material products, the traditional process usually needs to go through three independent processing procedures, which are coating thermosetting silicone release agent, printing ink and adhesive lamination, and the processing flow is as shown in Figure 1 The three procedures undergo repeated unwinding and winding processes, and usually also include transportation and storage processes after winding. This process needs repeated winding and unwinding, consumes manpower and working hours, and usually needs storage and transportation before winding is completed and the next procedure starts, which not only consumes manpower but also increases storage pressure. Re-winding before the next procedure starts, paper feeding through the oven, waste and loss, low production capacity, many employees, and many abnormal product quality and large loss. Therefore, it is necessary to optimize the structure of such film forming equipment to overcome the above-mentioned defects. SUMMARY

[0003] The utility model aims at providing a laminated film material laminating and forming system with synchronous feeding structure and laminated film material.

[0004] The utility model provides a laminated film material laminating and forming system with synchronous feeding structure and laminated film material, which comprises:

[0005] A laminated film material laminating and forming system with synchronous feeding structure comprises:

[0006] A surface layer feeding mechanism, which has a surface layer film material containing space, and supplies the surface layer film material outwardly from the surface layer feeding mechanism;

[0007] A surface layer adhesive coating mechanism, which is connected with the surface layer feeding mechanism, and performs adhesive coating treatment on the surface layer film material supplied by the surface layer feeding mechanism;

[0008] An adhesive curing mechanism, which is connected with the surface layer adhesive coating mechanism, and performs adhesive ultraviolet curing treatment on the surface layer film material after adhesive coating treatment by the surface layer adhesive coating mechanism;

[0009] a base layer feeding mechanism having a base layer film material accommodating space, and supplying the base layer film material from the base layer feeding mechanism outwardly;

[0010] a base layer printing mechanism connected with the base layer feeding mechanism, and performing printing process on one side of the base layer film material supplied from the base layer feeding mechanism;

[0011] a base layer silicon coating mechanism connected with the base layer printing mechanism, and conveying the base layer film material after printing process from the base layer printing mechanism to the base layer silicon coating mechanism, and performing silicon oil coating process on the other side of the base layer film material by the base layer silicon coating mechanism;

[0012] a silicon coating curing mechanism connected with the base layer silicon coating mechanism, and conveying the base layer film material after silicon oil coating process from the base layer silicon coating mechanism to the silicon coating curing mechanism, and performing ultraviolet curing process on the base layer film material by the silicon coating curing mechanism;

[0013] a roll pressing and adhering mechanism connected with the silicon coating curing mechanism and the adhesive layer curing mechanism, and conveying the base layer film material after silicon oil curing process from the silicon coating curing mechanism to the roll pressing and adhering mechanism, conveying the surface layer film material after adhesive layer curing process from the adhesive layer curing mechanism to the roll pressing and adhering mechanism, and performing roll pressing and adhering process on the base layer film material and the surface layer film material by the roll pressing and adhering mechanism, so that the silicon coated surface of the base layer film material and the adhesive coated surface of the surface layer film material adhere to each other, and a film material finished product is formed;

[0014] a finished product collecting mechanism connected with the roll pressing and adhering mechanism, and conveying the film material finished product after roll pressing and adhering from the roll pressing and adhering mechanism to the finished product collecting mechanism, and performing storage process or conveying process to the slitting mechanism for slitting process by the finished product collecting mechanism.

[0015] Specifically, the surface layer feeding mechanism comprises:

[0016] a surface layer unwinding drum having a surface layer film material winding space, and being installed in the rack through a rotating shaft, and being connected with the driving mechanism through a transmission chain, and being rotated by the driving mechanism, and outputting the surface layer film material by the surface layer unwinding drum;

[0017] a surface layer guide roller being installed in the rack through a rotating shaft, and being located outside the surface layer unwinding drum, and the surface layer film material output from the surface layer unwinding drum winding around the surface layer guide roller, and the output process being guided by the surface layer guide roller.

[0018] the surface layer adhesive coating mechanism comprises:

[0019] a carrier cooling roller being installed in the rack through a rotating shaft, and being connected with the surface layer feeding mechanism, and carrying and cooling the base layer film material supplied from the surface layer feeding mechanism by the carrier cooling roller;

[0020] The glue coating head is installed in the rack and cooperates with the carrier cooling roller. The glue coating head performs glue coating treatment on the surface layer film material on the carrier cooling roller.

[0021] The glue coating mechanism comprises:

[0022] The glue coating guide roller is installed in the rack through a rotating shaft, is connected with the surface layer glue coating mechanism, and is communicated with the cooling water circulating device. The glue coating guide roller guides the surface layer film material output by the surface layer glue coating mechanism.

[0023] The ultraviolet curing cover is installed in the rack and cooperates with the glue coating guide roller. The ultraviolet curing cover performs glue ultraviolet curing treatment on the surface layer film material on the glue coating guide roller.

[0024] The base layer supply mechanism comprises:

[0025] The base layer unwinding drum has a base layer film material winding space. The base layer unwinding drum is installed in the rack through a rotating shaft and is connected with the driving mechanism through a transmission chain. The driving mechanism drives the base layer unwinding drum to rotate, and the base layer unwinding drum unwinds and outputs the base layer film material.

[0026] The base layer guide roller is installed in the rack through a rotating shaft and is located outside the base layer unwinding drum. The base layer film material output from the base layer unwinding drum passes around the base layer guide roller. The base layer guide roller guides the output process.

[0027] The base layer printing mechanism comprises:

[0028] The printing carrier roller is installed in the rack through a rotating shaft and is connected with the base layer supply mechanism. The printing carrier roller carries the base layer film material supplied by the base layer supply mechanism.

[0029] The rolling transfer cylinder is installed in the rack through a rotating shaft and cooperates with the printing carrier roller. The rolling transfer cylinder performs printing on the base layer film material on the printing carrier roller.

[0030] The base layer silicon coating mechanism comprises:

[0031] The silicone oil transfer roller is installed in the rack through a rotating shaft, is connected with the base layer printing mechanism, and cooperates with the silicone oil supply mechanism. The silicone oil transfer roller performs silicone oil coating treatment on the base layer film material output by the base layer printing mechanism.

[0032] The silicon coating curing mechanism comprises:

[0033] The silicon coating guide roller is installed in the rack through a rotating shaft and is connected with the base layer silicon coating mechanism. The silicon coating guide roller guides the base layer film material output by the base layer silicon coating mechanism.

[0034] The silicon coating curing cover is installed in the frame and cooperates with the silicon coating guide roller, and the base layer film material on the silicon coating guide roller is subjected to the silicon coating curing treatment by the silicon coating curing cover.

[0035] The roll bonding mechanism comprises:

[0036] The cooling pressure cylinder is installed in the frame through a rotating shaft and is connected with the silicon coating curing mechanism and the rubber coating curing mechanism, and the base layer film material output by the silicon coating curing mechanism and the surface layer film material output by the rubber coating curing mechanism are carried and cooled by the cooling pressure cylinder.

[0037] The rotating pressure roller is installed in the frame through a rotating shaft, cooperates with the cooling pressure cylinder, and is connected with the driving mechanism through a transmission chain, the rotating pressure roller is driven to rotate by the driving mechanism, and the surface layer film material and the base layer film material on the cooling pressure cylinder are subjected to the roll bonding treatment by the rotating pressure roller to form the film material product.

[0038] The product collecting mechanism comprises:

[0039] The winding guide roller is installed in the frame through a rotating shaft and is connected with the roll bonding mechanism, and the film material product output by the roll bonding mechanism is guided by the winding guide roller.

[0040] The product winding cylinder has a film material product winding space, is installed in the frame through a rotating shaft, is connected with the winding guide roller, and is connected with the driving mechanism through a transmission chain, the product winding cylinder is driven to rotate by the driving mechanism, and the film material product output by the roll bonding mechanism is wound and stored by the product winding cylinder.

[0041] A layered film material is formed by the forming system.

[0042] The layered film material forming system has the advantages that:

[0043] The layered film material forming system integrates the rubber coating and curing of the surface layer film material, the printing, silicon coating and curing of the base layer film material, and the bonding of the two, can complete multiple process treatments at one time, avoids the loss and error in multiple processing and transmission processes, improves the overall performance and quality of the product, completes three processes at one time, eliminates the repeated winding and unwinding processes and the storage and transportation process between the winding and unwinding processes, saves manpower and working hours, reduces the storage pressure, the silicon coating process and the rubber coating process both adopt the UV curing mode, compared with the traditional heat curing oven, the UV curing equipment has a small footprint, more production lines can be accommodated in the same site, the amount of paper for passing through the oven and adjusting the process is reduced, the loss is small, the yield is higher, and the emission of volatile organic compounds is reduced, which is more in line with environmental protection requirements. BRIEF DESCRIPTION OF DRAWINGS

[0044] Figure 1 is the processing flow diagram of the layered film material in the prior art;

[0045] Figure 2 is the structure diagram of the layered film material laminating forming system with the synchronous feeding structure;

[0046] Figure 3 is the running flow diagram of the layered film material laminating forming system. DETAILED DESCRIPTION

[0047] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.

[0048] As Figure 2As shown, the layered film lamination system with synchronous feeding structure proposed in this utility model includes a surface layer feeding mechanism, a surface layer adhesive coating mechanism, an adhesive coating and curing mechanism, a base layer feeding mechanism, a base layer printing mechanism, a base layer silicone coating mechanism, a silicone coating and curing mechanism, a roll pressing and laminating mechanism, and a finished product receiving mechanism. The surface layer feeding mechanism has a surface layer film material receiving space and supplies the surface layer film material outwards. The surface layer adhesive coating mechanism is connected to the surface layer feeding mechanism and performs adhesive coating treatment on the surface layer film material supplied by the surface layer feeding mechanism. The adhesive coating and curing mechanism is connected to the surface layer adhesive coating mechanism and transports the adhesive-coated surface layer film material to the adhesive coating and curing mechanism, where it undergoes UV adhesive curing treatment. The base layer feeding mechanism has a base layer film material receiving space and supplies the base layer film material outwards. The base layer printing mechanism is connected to the base layer feeding mechanism and performs printing treatment on one side of the base layer film material supplied by the base layer feeding mechanism. The base layer silicone coating mechanism is connected to the base layer printing mechanism. Next, the surface printing mechanism conveys the printed base film to the base coating mechanism, where the other side is coated with silicone oil. The silicone coating and curing mechanism connects to the base coating mechanism, conveying the silicone-coated base film to the silicone curing mechanism for UV curing. The roll laminating mechanism connects to the silicone curing and adhesive coating curing mechanisms, conveying the silicone-cured base film to the roll laminating mechanism. In this process, the adhesive curing mechanism transports the cured surface film material to the roll lamination mechanism, where the base film material and the surface film material are rolled together to bond the silicone-coated surface of the base film material with the adhesive-coated surface of the surface film material, forming the finished film material. The finished product receiving mechanism is connected to the roll lamination mechanism, which transports the rolled laminated film material to the finished product receiving mechanism, where it is either stored or transported to the slitting mechanism for slitting.

[0049] In this embodiment, the surface layer feeding mechanism includes a surface layer unwinding drum 29 and surface layer guide rollers 25 and 24. The surface layer unwinding drum has a surface layer film winding space. It is installed in the frame via a rotating shaft and connected to the drive mechanism via a transmission chain. The drive mechanism drives the surface layer unwinding drum to rotate and unwinds the surface layer film. The surface layer guide roller is installed in the frame via a rotating shaft and is located outside the surface layer unwinding drum. The surface layer film output from the surface layer unwinding drum passes over the surface layer guide roller, which guides its output process.

[0050] The surface layer glue coating mechanism comprises a supporting cooling roller 23 and a glue coating head 26. The supporting cooling roller 23 is installed in the frame through a rotating shaft, is communicated with the cooling water circulating device, and is connected with the surface layer guide roller 24. The surface layer film material supplied by the surface layer feeding mechanism is supported and cooled by the supporting cooling roller. The glue coating head is installed in the frame and is matched with the supporting cooling roller. The surface layer film material on the supporting cooling roller is coated with glue by the glue coating head.

[0051] The glue coating curing mechanism comprises a glue coating guide roller 22 and a UV curing cover 31. The glue coating guide roller is installed in the frame through a rotating shaft and is connected with the supporting cooling roller 23 and the glue coating head 26. The surface layer film material output by the surface layer glue coating mechanism is guided by the glue coating guide roller. The UV curing cover is installed in the frame and is matched with the glue coating guide roller. The surface layer film material on the glue coating guide roller is cured with UV glue by the UV curing cover. Meanwhile, the glue coating guide roller 22 is communicated with the cooling water circulating device. The cooling water circulating device supplies cooling water to the glue coating guide roller, and the surface layer film material is cooled by the glue coating guide roller to avoid deformation caused by excessive heating of the UV curing cover.

[0052] The base layer feeding mechanism comprises a base layer unwinding drum 27 and a base layer guide roller 1. The base layer unwinding drum has a base layer film material winding space and is installed in the frame through a rotating shaft. The base layer unwinding drum is connected with the driving mechanism through a transmission chain. The base layer unwinding drum is driven to rotate by the driving mechanism, and the base layer film material is unwound and output by the base layer unwinding drum. The base layer guide roller is installed in the frame through a rotating shaft and is located outside the base layer unwinding drum. The base layer film material output from the base layer unwinding drum passes through the base layer guide roller. The output process of the base layer film material is guided by the base layer guide roller.

[0053] The base layer printing mechanism comprises a printing supporting roller 3 and a rolling transfer drum 2. The printing supporting roller is installed in the frame through a rotating shaft and is connected with the base layer guide roller 1. The base layer film material supplied by the base layer feeding mechanism is supported by the printing supporting roller. The rolling transfer drum is installed in the frame through a rotating shaft and is matched with the printing supporting roller. The base layer film material on the printing supporting roller is printed by the rolling transfer drum.

[0054] The base layer silicon coating mechanism comprises silicon oil transfer rollers 7, 8, 9, 10, 11 and 12. The silicon oil transfer rollers are installed in the frame through rotating shafts and are connected with the base layer printing mechanism through transfer guide rollers 4, 5 and 6 and matched with the silicon oil supply mechanism. The base layer film material output by the base layer printing mechanism is coated with silicon oil by the silicon oil transfer rollers. In this technology, the preferred base layer silicon coating method is roll coating. The detailed structure is a prior art, so it is not described in detail. Other common release agent coating methods such as anilox roll coating, micro-concave coating, doctor blade coating and curtain coating can also be used.

[0055] The silicon coating curing mechanism comprises silicon coating guide rollers 13 and 14 and a silicon coating curing cover 30, the silicon coating guide rollers are installed in the frame through rotating shafts and are connected with the silicon oil transfer roller 12, the silicon coating guide rollers guide the base layer film material output by the base layer silicon coating mechanism, and the silicon coating curing cover is installed in the frame and cooperates with the silicon coating guide rollers, the silicon coating curing cover performs silicon coating curing treatment on the base layer film material on the silicon coating guide rollers.

[0056] In the embodiment, the silicon coating curing cover and the ultraviolet curing cover adopt a UV curing device, i.e., an ultraviolet curing device, the structure of which is a prior art, and thus is not described in detail.

[0057] The roll pressing and laminating mechanism comprises a cooling pressure bearing cylinder 19 and a rotating pressing roller 18, the cooling pressure bearing cylinder is installed in the frame through a rotating shaft and is connected with the silicon coating curing cover 30 and the ultraviolet curing cover 31 through the connecting guide rollers 15, 16 and 17, the cooling pressure bearing cylinder bears and cools the base layer film material output by the silicon coating curing mechanism and the surface layer film material output by the glue coating curing mechanism, the rotating pressing roller is installed in the frame through a rotating shaft, cooperates with the cooling pressure bearing cylinder and is connected with the driving mechanism through a transmission chain, the driving mechanism drives the rotating pressing roller to rotate, the rotating pressing roller performs roll pressing and laminating treatment on the base layer film material and the surface layer film material on the cooling pressure bearing cylinder, and a film material finished product is formed.

[0058] The finished product collecting mechanism comprises a winding guide roller 20 and a finished product winding cylinder 28, the winding guide roller is installed in the frame through a rotating shaft and is connected with the cooling pressure bearing cylinder 19, the winding guide roller guides the film material finished product output by the roll pressing and laminating mechanism, the finished product winding cylinder has a film material finished product winding space, is installed in the frame through a rotating shaft, is connected with the winding guide roller and is connected with the driving mechanism through a transmission chain, the driving mechanism drives the finished product winding cylinder to rotate, and the finished product winding cylinder winds and stores the film material finished product output by the roll pressing and laminating mechanism.

[0059] The layered film material is made by using the forming system, and the operation flow is as shown in Figure 3 .

[0060] In the description of the utility model, it is necessary to explain that when the terms of indicating the orientation or position relationship such as "upper", "lower", "inner", "outer", "left", "right" and the like appear, it should be understood as the orientation or position relationship based on the orientation or position relationship shown in the drawings, or the orientation or position relationship of the utility model product when it is usually placed, or the orientation or position relationship commonly understood by the person skilled in the art, and it is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element indicated must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the utility model. In addition, when the terms such as "first", "second" and the like appear, they are only used for distinguishing the description, and cannot be understood as indicating or implying relative importance. In the description of the utility model, it is also necessary to explain that unless otherwise explicitly specified and limited, the terms such as "mounting", "setting", "connecting" and the like should be understood in a broad sense, for example, "connecting" can be fixed connection, can also be detachable connection, or integral connection; can be mechanical connection, can also be electrical connection; can be direct connection, can also be indirect connection through an intermediate medium, can be the communication inside two elements. For the person skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

Claims

1. A laminar film material conforming forming system having a synchronous feeding structure, characterized in that, The application relates to a film material production device. The device comprises a surface layer supply mechanism, a surface layer glue coating mechanism, a glue curing mechanism, a base layer supply mechanism, a base layer printing mechanism, a base layer silicon coating mechanism, a silicon curing mechanism, a roll pressing and adhering mechanism, and a product collecting mechanism. The surface layer supply mechanism has a surface layer film material containing space, and supplies the surface layer film material outwardly. The surface layer glue coating mechanism is connected with the surface layer supply mechanism, and performs glue coating treatment on the surface layer film material supplied by the surface layer supply mechanism. The glue curing mechanism is connected with the surface layer glue coating mechanism, and performs glue ultraviolet curing treatment on the surface layer film material coated with glue by the surface layer glue coating mechanism. The base layer supply mechanism has a base layer film material containing space, and supplies the base layer film material outwardly. The base layer printing mechanism is connected with the base layer supply mechanism, and performs printing treatment on one side of the base layer film material supplied by the base layer supply mechanism. The base layer silicon coating mechanism is connected with the base layer printing mechanism, and performs silicon oil coating treatment on the other side of the base layer film material printed by the base layer printing mechanism. The silicon curing mechanism is connected with the base layer silicon coating mechanism, and performs ultraviolet curing treatment on the base layer film material coated with silicon oil by the base layer silicon coating mechanism. The roll pressing and adhering mechanism is connected with the silicon curing mechanism and the glue curing mechanism, and performs roll pressing and adhering treatment on the base layer film material and the surface layer film material, so that the silicon coated surface of the base layer film material and the glue coated surface of the surface layer film material adhere to each other, and a film material product is formed.

2. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The product collecting mechanism is connected with the roll pressing and adhering mechanism, and performs storage treatment or cutting treatment on the film material product. The surface layer supply mechanism comprises a surface layer unwinding drum having a surface layer film material winding space, which is installed in a frame through a rotating shaft and connected with a driving mechanism through a transmission chain. The surface layer guide roller is installed in the frame through a rotating shaft and located outside the surface layer unwinding drum.

3. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The surface layer glue coating mechanism comprises a carrier cooling roller installed in the frame through a rotating shaft and connected with the surface layer supply mechanism. The glue coating head is installed in the frame and matched with the carrier cooling roller. The glue curing mechanism comprises a glue guide roller installed in the frame through a rotating shaft, which is connected with the surface layer glue coating mechanism and communicated with a cooling water circulating device.

4. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The ultraviolet curing cover is installed in the frame and matched with the glue guide roller. The base layer supply mechanism comprises a base layer unwinding drum having a base layer film material winding space, which is installed in the frame through a rotating shaft and connected with a driving mechanism through a transmission chain. The base layer guide roller is installed in the frame through a rotating shaft and located outside the base layer unwinding drum.

5. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, ​ ​ ​ 6. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The base layer printing mechanism comprises: a printing carrier roller installed in the frame through a rotating shaft and connected with the base layer feeding mechanism; a rolling transfer cylinder installed in the frame through a rotating shaft and matched with the printing carrier roller.

7. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The base layer silicon coating mechanism comprises: a silicon oil transfer roller installed in the frame through a rotating shaft, connected with the base layer printing mechanism and matched with the silicon oil supply mechanism.

8. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The silicon coating curing mechanism comprises: a silicon coating guide roller installed in the frame through a rotating shaft and connected with the base layer silicon coating mechanism; a silicon coating curing cover installed in the frame and matched with the silicon coating guide roller.

9. The laminar film material conforming and forming system with a synchronous feeding structure according to claim 1, characterized in that, The rolling lamination mechanism comprises: a cooling pressure cylinder installed in the frame through a rotating shaft, connected with the silicon coating curing mechanism and the adhesive coating curing mechanism, and used to carry and cool the base layer film material output by the silicon coating curing mechanism and the surface layer film material output by the adhesive coating curing mechanism; a rotating pressing roller installed in the frame through a rotating shaft, matched with the cooling pressure cylinder and connected with the driving mechanism through a transmission chain.

10. The layered film material lamination forming system with a synchronous feeding structure according to claim 1, wherein The finished product collecting mechanism comprises: a winding guide roller installed in the frame through a rotating shaft and connected with the rolling lamination mechanism; a finished product winding cylinder with a film finished product winding space installed in the frame through a rotating shaft, connected with the winding guide roller and connected with the driving mechanism through a transmission chain.

11. A layered film material, characterized by, The forming system according to any one of claims 1-10 is used for forming.