A mass production type soft film manufacturing device

CN224789073UActive Publication Date: 2026-09-22ZHEJIANG ZHIGE TECH CO LTD
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Patent Information

Application Number
CN202522591201.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-05
Publication Date
2026-09-22
Estimated Expiration
2035-12-05

AI Technical Summary

Technical Problem

[0008]上述拼版软膜的制备方式生产效率低,无法实现拼版软膜的批量化制备

Benefits of technology

[0046]本实用新型提供一种量产型拼版软膜制造设备,包括支撑模块、主动输送模块、被动转动模块,主动输送模块、被动转动模块与支撑模块连接。主动输送模块包括依次间隔设置的软膜衬底上料单元、压印单元、脱模单元以及拼版软膜下料单元,软膜衬底上料单元和压印单元之间设置与支撑模块连接的胶水喷涂单元,压印单元和脱模单元之间设置与支撑模块连接的固化单元。被动转动模块设置压印母版,被动转动模块的底部区域设于压印单元和脱模单元之间,且被动转动模块的底端位于固化单元上方。主动输送模块通过上料的软膜衬底与被动转动模块的压印母版接触并带动被动转动模块转动。本实用新型提供的量产型拼版软膜制造设备可大大提高拼版软膜生产效率,实现拼版软膜的批量化制备。

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Abstract

The utility model provides a mass production type layout soft membrane manufacturing equipment, including support module, initiative conveying module, passive rotation module, initiative conveying module, passive rotation module are connected with support module. Initiative conveying module includes the soft membrane substrate feeding unit, the impression unit, the stripping unit and the layout soft membrane unloading unit that set up in turn interval, sets up the glue spraying unit between the soft membrane substrate feeding unit and the impression unit, sets up the solidification unit between the impression unit and the stripping unit. Passive rotation module sets up the impression master copy, and the bottom area of passive rotation module is located between the impression unit and the stripping unit, and the bottom end of passive rotation module is located above the solidification unit. Initiative conveying module is contacted with the impression master copy of passive rotation module through the soft membrane substrate of feeding and drives passive rotation module to rotate. The utility model provides mass production type layout soft membrane manufacturing equipment improves layout soft membrane production efficiency, realizes layout soft membrane batch preparation.
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Description

Technical Field

[0001] This invention belongs to the field of diffractive waveguide fabrication technology, specifically relating to a mass production type of panelized flexible film manufacturing equipment. Background Technology

[0002] With the development of information technology, AR technology is becoming increasingly mature and is being applied more and more widely in education, healthcare, entertainment, industry and other sectors.

[0003] Currently, the more mature AR glasses technology solutions mainly fall into four categories: prism solutions, birdbath solutions, freeform surface solutions, off-axis holographic lens solutions, and diffractive waveguide solutions. Based on the type of grating, diffractive waveguides can be further divided into two categories: surface relief grating waveguides and volume holographic grating waveguides.

[0004] The existing scheme for producing surface-embossed grating waveguides using panelized flexible films is as follows:

[0005] 1. The grating pattern of the imprint master is transferred to different areas of the same soft film substrate through multiple nanoimprinting processes using a soft film adhesive to obtain a panelized soft film. Different areas of the panelized soft film have the transferred pattern of the grating pattern (i.e., the reverse pattern of the grating pattern).

[0006] 2. Spin-coating an imprinting adhesive onto an optical wafer, transferring the grating patterns of the panelized flexible film in different areas onto the optical wafer through a single nanoimprinting process, resulting in an optical wafer with multiple sets of grating patterns.

[0007] 3. The optical wafer with multiple grating patterns is cut according to the finished waveguide shape to obtain multiple optical wafer units, each optical wafer unit having a set of grating structures; each optical wafer unit is stacked and edge-sealed to obtain a surface relief grating waveguide.

[0008] The above-mentioned method for preparing modular flexible film has low production efficiency and cannot achieve mass production of modular flexible film. Utility Model Content

[0009] In order to overcome the shortcomings of the existing technology, this utility model provides a mass production type of modular flexible film manufacturing equipment.

[0010] This utility model is achieved through the following technical solution:

[0011] This utility model provides a mass production type of modular flexible film manufacturing equipment, including a support module, an active conveying module, and a passive rotation module;

[0012] The active conveying module, the passive rotation module, and the support module are connected;

[0013] The active conveying module includes a soft film substrate feeding unit, an imprinting unit, a demolding unit, and a panelized soft film unloading unit arranged sequentially at intervals; an adhesive spraying unit connected to the support module is provided between the soft film substrate feeding unit and the imprinting unit, and a curing unit connected to the support module is provided between the imprinting unit and the demolding unit.

[0014] The passive rotation module is equipped with an imprinting master plate. The bottom area of ​​the passive rotation module is located between the imprinting unit and the demolding unit, and the bottom end of the passive rotation module is located above the curing unit.

[0015] The active conveying module contacts the printing master of the passive rotation module through the feeding soft film substrate and drives the passive rotation module to rotate.

[0016] Furthermore, the soft film substrate feeding unit includes a first roller and a first drive motor;

[0017] The first drive motor is fixedly connected to the support module, and the rotating shaft of the first drive motor is connected to the first roller;

[0018] The surface of the first roller can be fitted with a soft film substrate roll for feeding.

[0019] Furthermore, the imprinting unit includes a second roller, a second drive motor, and a first lifting component;

[0020] The first lifting component is connected to the second drive motor, the second drive motor is fixedly connected to the support module, and the rotating shaft of the second drive motor is connected to the second roller.

[0021] Furthermore, the demolding unit includes a third roller, a third drive motor, and a second lifting component;

[0022] The second lifting component is connected to the third drive motor, the third drive motor is connected to the support module, and the shaft of the third drive motor is connected to the third roller.

[0023] Furthermore, the assembly soft film feeding unit includes a fourth roller and a fourth drive motor;

[0024] The fourth drive motor is fixedly connected to the support module, and the rotating shaft of the fourth drive motor is connected to the fourth roller.

[0025] The surface of the fourth roller can be fitted with a flexible film for feeding.

[0026] Furthermore, the passive rotation module includes a fifth roller and a connecting rod;

[0027] The fifth roller is placed horizontally and is connected to the support module via a connecting rod.

[0028] An impression master is set on the outer wall of the fifth roller.

[0029] Furthermore, it also includes a film removal unit, which is connected to the support module;

[0030] The film removal unit includes a first film removal unit and a second film removal unit;

[0031] The first film removal unit is connected to the end of the first protective film on the upper layer of the soft film substrate, and is used to apply the first protective film peeled off from the upper layer of the soft film substrate;

[0032] The second film removal unit is connected to the end of the second protective film on the lower layer of the soft film substrate, and is used to apply the first protective film peeled off from the lower layer of the soft film substrate.

[0033] Furthermore, it also includes a coating unit, which includes a clamping unit, a first coating unit, and a second coating unit; the first coating unit and the second coating unit are connected to the support module;

[0034] The first lamination unit is fitted with a second protective film for protecting the upper layer of the splicing soft film;

[0035] The second lamination unit is fitted with a second protective film for protecting the lower layer of the splicing soft film;

[0036] The clamping unit clamps and fixes the second protective film feeding end of the first laminating unit, the end of the panelized soft film near the panelized soft film unloading unit, and the second protective film feeding end of the second laminating unit.

[0037] Furthermore, it also includes moving components, positioning sensors, and controllers;

[0038] The moving component is connected to the support module, and a position positioning sensor is provided on the moving component;

[0039] The position sensor is connected to the controller and is in contact with the edge of the loading end of the soft film substrate. The position sensor sends the real-time edge position information of the soft film substrate to the controller.

[0040] During the transport of the currently loaded soft film substrate by the active conveying module, the position positioning sensor monitors the edge position of the current soft film substrate in real time. If the edge position of the current soft film substrate exceeds the first position information set in the position positioning sensor, the position positioning sensor triggers an alarm operation.

[0041] When the current soft film substrate needs to be moved laterally, the controller controls the moving component to move the position sensor to the required moving position of the current soft film substrate based on the edge position information of the soft film substrate sent by the position positioning sensor and the second position information in the controller.

[0042] Furthermore, it also includes a camera unit;

[0043] The longitudinal distance D between the shooting unit and the fifth roller is set to nd, where d represents the cross-sectional perimeter of the fifth roller and n is an integer greater than or equal to 1;

[0044] The imaging unit is used to image and position the positioning marks on the laterally moved soft film substrate that already have an imprinted structure.

[0045] Compared with the prior art, the technical solution of this utility model has the following beneficial effects:

[0046] This invention provides a mass production type of modular flexible film manufacturing equipment, including a support module, an active conveying module, and a passive rotation module, which are connected to the support module. The active conveying module includes a flexible film substrate feeding unit, an imprinting unit, a demolding unit, and a modular flexible film unloading unit arranged sequentially at intervals. An adhesive spraying unit connected to the support module is located between the flexible film substrate feeding unit and the imprinting unit, and a curing unit connected to the support module is located between the imprinting unit and the demolding unit. The passive rotation module has an imprinting master plate, and its bottom area is located between the imprinting unit and the demolding unit, with its bottom end above the curing unit. The active conveying module drives the passive rotation module to rotate by contacting the imprinting master plate of the loaded flexible film substrate. This mass production type of modular flexible film manufacturing equipment can greatly improve the production efficiency of modular flexible films and realize the batch production of modular flexible films. Attached Figure Description

[0047] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0048] Figure 1 A schematic diagram of the overall structure for preparing modular flexible film using the mass production modular flexible film manufacturing equipment provided by this utility model;

[0049] Figure 2 A schematic diagram of the passive rotation module for setting up the printing master plate;

[0050] Figure 3 A schematic diagram of a first example of a modular flexible film prepared using the mass production modular flexible film manufacturing equipment provided by this utility model;

[0051] Figure 4 This is a second example schematic diagram of a panelized flexible film prepared using the mass production panelized flexible film manufacturing equipment provided by this utility model.

[0052] Among them, 1-soft film substrate feeding unit, 2-imprinting unit, 3-demolding unit, 4-flotation soft film unloading unit, 5-adhesive spraying unit, 6-curing unit, 7-passive rotation module, 8-imprinting master plate, 9-soft film substrate, 10-flotation soft film, 11-first film removal unit, 12-second film removal unit, 13-first coating unit, 14-second coating unit. Detailed Implementation

[0053] The technical solution of this utility model will be clearly and completely described below with reference to its embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0054] In this document, the terms "first," "second," and other similar words are not intended to imply any order, quantity, or importance, but are merely used to distinguish different elements. The terms "one," "a," and other similar words are not intended to indicate the existence of only one of the stated things, but rather that the description refers only to one of the stated things, which may have one or more. The terms "comprising," "including," and other similar words are intended to indicate a logical relationship, not a spatial relationship. For example, "A includes B" means that logically B belongs to A, not that spatially B is located inside A. Furthermore, the meanings of the terms "comprising," "including," and other similar words should be considered open-ended, not closed. For example, "A includes B" means that B belongs to A, but B does not necessarily constitute all of A; A may also include other elements such as C, D, and E.

[0055] In this document, the terms "embodiment," "this embodiment," "preferred embodiment," and "one embodiment" do not imply that the description applies only to one specific embodiment, but rather that such description may also be applicable to one or more other embodiments. Those skilled in the art will understand that any description made herein relating to one embodiment can be substituted, combined, or otherwise incorporated with the descriptions in one or more other embodiments. Such substitutions, combinations, or other incorporations resulting in new embodiments are readily conceived by those skilled in the art and fall within the protection scope of this utility model.

[0056] In this description, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0057] This utility model provides a mass production type of modular flexible film manufacturing equipment, including a support module, an active conveying module, and a passive rotation module, wherein the active conveying module, the passive rotation module and the support module are connected.

[0058] For example, the support module can be an existing support frame, support base, etc.

[0059] For example, such as Figure 1 As shown, the active conveying module may include a soft film substrate feeding unit 1, an imprinting unit 2, a demolding unit 3, and a panelized soft film unloading unit 4 arranged sequentially at intervals.

[0060] An adhesive spraying unit 5 is installed between the flexible film substrate feeding unit 1 and the imprinting unit 2, and a curing unit 6 is installed between the imprinting unit 2 and the demolding unit 3. The adhesive spraying unit is connected to the support module, and the curing unit is also connected to the support module. The adhesive spraying unit can use existing adhesive spraying equipment, and the curing unit can use existing UV curing lamps.

[0061] Passive rotation module 7 sets the printing master 8 (e.g.) Figure 1 as well as Figure 2 As shown, the bottom area of ​​the passive rotation module 7 is located between the imprinting unit 2 and the demolding unit 3, and the bottom end of the passive rotation module 7 is located above the curing unit 6.

[0062] The active conveying module contacts the imprinting master plate of the passive rotating module through the feeding soft film substrate and drives the passive rotating module to rotate. During this process, the soft film substrate 9 fed by the soft film substrate feeding unit 1 is sprayed with soft film adhesive by the adhesive spraying unit 5 and then reaches the imprinting unit 2. The imprinting unit 2 uses the soft film adhesive to fill the structural pattern of the imprinting master plate 8 of the passive rotating module 7 to achieve pattern transfer. Then, the pattern is cured by the curing unit 6 to bond the soft film adhesive with the soft film substrate. Then, the demolding unit 3 uses the soft film substrate and the soft film adhesive bond to separate the soft film substrate and the imprinting master plate of the passive rotating module without damage. When the current soft film substrate is continuously fed, the current soft film substrate repeats the above process in different areas along the length direction to obtain the required panelized soft film 10 and performs the unloading operation through the panelized soft film unloading unit 4. Figure 3 This is a schematic diagram of a first example of a modular flexible film prepared using the mass production modular flexible film manufacturing equipment provided by this utility model. As can be seen from the figure, a row of transfer patterns is set on the modular flexible film. Figure 4 This is a second example schematic diagram of a modular flexible film prepared using the mass production modular flexible film manufacturing equipment provided by this utility model. As can be seen from the figure, two rows of transfer patterns are set on the modular flexible film.

[0063] Therefore, the mass production type of modular flexible film manufacturing equipment provided by this utility model can greatly improve the production efficiency of modular flexible film and realize the mass production of modular flexible film.

[0064] For example, the above-mentioned flexible film substrate feeding unit may include a first roller and a first drive motor. The first roller and the first drive motor can be existing equipment.

[0065] The first drive motor is fixedly connected to the support module, and the shaft of the first drive motor is connected to the first roller. The surface of the first roller can be fitted with a soft film substrate roll for feeding. The soft film substrate roll can be, for example, an existing PET film roll.

[0066] For example, the above-mentioned imprinting unit may include a second roller, a second drive motor, and a first lifting component. The second roller, the second drive motor, and the first lifting component can be existing equipment.

[0067] The first lifting component is connected to the second drive motor, which is fixedly connected to the support module. The shaft of the second drive motor is connected to the second roller. The first lifting component can adjust the vertical position of the second roller via the second drive motor, thereby adjusting the transfer pressure of the soft film adhesive on the imprinting master of the passively rotating module.

[0068] For example, the demolding unit described above may include a third roller, a third drive motor, and a second lifting component. The third roller, the third drive motor, and the second lifting component can be existing equipment.

[0069] The second lifting component is connected to the third drive motor, the third drive motor is connected to the support module, and the shaft of the third drive motor is connected to the third roller. After the currently fed soft film substrate is coated with soft film adhesive, the structural pattern of the imprinting master of the passive rotating module is transferred through the imprinting unit. After the soft film adhesive of the transferred pattern is cured by the curing unit and bonded to the soft film substrate, if the driving force of the plate-mounting soft film unloading unit is used to directly separate the soft film substrate and the soft film adhesive bond from the imprinting master of the passive rotating module, it is easy to damage the transferred pattern of the soft film adhesive. This problem can be solved by the demolding unit. That is, after the currently fed soft film substrate is coated with soft film adhesive, the structural pattern of the imprinting master of the passive rotating module is transferred through the imprinting unit and the soft film adhesive of the transferred pattern is cured by the curing unit and bonded to the soft film substrate, the second lifting component in the demolding unit can float and adjust the vertical position of the third roller through the third drive motor, thereby adjusting the separation force between the soft film substrate and the soft film adhesive bond and the imprinting master of the passive rotating module, avoiding damage to the transferred pattern of the soft film adhesive.

[0070] For example, the above-mentioned flexible film feeding unit includes a fourth roller and a fourth drive motor. The fourth roller and the fourth drive motor can be existing equipment.

[0071] The fourth drive motor is fixedly connected to the support module, and the shaft of the fourth drive motor is connected to the fourth roller. The surface of the fourth roller can be fitted with a flexible film for feeding.

[0072] For example, the passive rotation module described above includes a fifth roller and a connecting rod. The fifth roller is horizontally positioned and connected to the support module via the connecting rod.

[0073] An impression master is provided on the outer wall of the fifth roller. For example, the desired transfer pattern can be generated on a flexible nickel plate using an electroforming process as the impression master. An example of the pattern is a grating structure, such as including an input grating and an output grating. The impression master is then glued to the outer wall of the fifth roller.

[0074] Unused flexible film substrate rolls typically have protective films applied to both the top and bottom layers of the flexible film substrate. Therefore, to facilitate the removal of the protective film from the currently loaded flexible film substrate before applying adhesive, the mass production type of panelized flexible film manufacturing equipment of this utility model also includes a film removal unit, which is connected to the support module.

[0075] like Figure 1As shown, the film removal unit includes a first film removal unit 11 and a second film removal unit 12. The first film removal unit 11 is disposed above the flexible film substrate feeding unit 1. The first film removal unit is connected to the end of the first protective film on the upper layer of the currently fed flexible film substrate and is used to apply the first protective film peeled off from the upper layer of the flexible film substrate.

[0076] The second film removal unit 12 is disposed near the lower part of the soft film substrate feeding unit 1. The second film removal unit is connected to the end of the second protective film of the lower layer of the currently fed soft film substrate and is used to apply the first protective film peeled off from the lower layer of the soft film substrate.

[0077] For example, the first protective film removal unit includes a sixth roller and a fifth drive motor. The fifth drive motor is connected to the support module, and the shaft of the fifth drive motor is connected to the sixth roller. The sixth roller is used to apply the first protective film peeled off from the upper layer of the soft film substrate.

[0078] For example, the second film removal unit includes a seventh roller and a sixth drive motor. The sixth drive motor is connected to the support module, and the shaft of the sixth drive motor is connected to the seventh roller. The seventh roller is used to apply the first protective film peeled off from the lower layer of the soft film substrate.

[0079] In order to protect the upper and lower film layers of the modular flexible film fed by the modular flexible film feeding unit, the mass production modular flexible film manufacturing equipment of this utility model also includes a laminating unit.

[0080] like Figure 1 As shown, the coating unit includes a clamping unit (not shown in the figure), a first coating unit 13, and a second coating unit 14. The first coating unit and the second coating unit are connected to the support module.

[0081] The first laminating unit 13 is positioned above the panel printing flexible film feeding unit 4, and the first laminating unit is fitted with a second protective film for protecting the upper layer of the panel printing flexible film.

[0082] The second laminating unit 14 is located below the panel printing flexible film cutting unit 4, and the second laminating unit is fitted with a second protective film for protecting the lower layer of the panel printing flexible film.

[0083] The clamping unit clamps and fixes the second protective film feeding end of the first laminating unit, the end of the flexible film near the flexible film unloading unit, and the second protective film feeding end of the second laminating unit. The clamping unit can use existing clamps or other clamping equipment.

[0084] For example, the first coating unit includes an eighth roller and a seventh drive motor. The seventh drive motor is connected to the support module, and the shaft of the seventh drive motor is connected to the eighth roller. The eighth roller is used to apply a second protective film covering the lower layer of the soft film substrate.

[0085] For example, the second coating unit includes a ninth roller and an eighth drive motor. The eighth drive motor is connected to the support module, and the shaft of the eighth drive motor is connected to the ninth roller. The ninth roller is used to apply the second protective film covering the lower layer of the soft film substrate.

[0086] The mass production type of modular flexible film manufacturing equipment of this utility model also includes a moving component, a position positioning sensor, and a controller.

[0087] The moving component is connected to the support module, and a position sensor is installed on the moving component.

[0088] The position sensor is connected to the controller and contacts the edge of the soft film substrate loading end. The position sensor sends the real-time edge position information of the soft film substrate to the controller.

[0089] The aforementioned moving component, controller, and position sensor can use existing components. For example, the moving component can be composed of components such as a motor, ball screw, and slider; the controller can be an existing processor; and the position sensor can be an existing edge-finding sensor.

[0090] During the transport of the currently loaded flexible film substrate by the active conveyor module, the position positioning sensor monitors the edge position of the substrate in real time. If the edge position of the substrate exceeds the first position information set in the position positioning sensor, the sensor triggers an alarm, thus ensuring that the substrate follows the active conveyor module within the set trajectory range. This first position information corresponds to the movable position range of the substrate.

[0091] When the current flexible film substrate needs to be moved laterally, for example, when the width of the current flexible film substrate can be obtained by multi-row imprinting operations using the mass production type panelized flexible film manufacturing equipment of this utility model (e.g.) Figure 4 As shown in the diagram (a panelized flexible film), during the interleaved imprinting operation on the current flexible film substrate, a lateral displacement operation is required. At this time, the controller, based on the edge position information of the flexible film substrate sent by the position positioning sensor and the second position information within the controller, controls the moving component to move the position positioning sensor to the required position of the current flexible film substrate. Then, the flexible film substrate is moved to the position of the position positioning sensor. Using the position positioning sensor to pre-determine the moving position of the flexible film substrate can greatly improve the accuracy of the substrate's movement. Here, the second position information corresponds to the current moving position information of the flexible film substrate.

[0092] The mass production-type flexible film manufacturing equipment of this invention also includes a camera unit. An example of the camera unit is an existing CCD camera.

[0093] The longitudinal distance D between the shooting unit and the fifth roller is set to nd, where d represents the cross-sectional circumference of the fifth roller, and n is an integer greater than or equal to 1. For example, when n = 1, the longitudinal distance between the shooting unit and the fifth roller is the cross-sectional circumference of one fifth roller.

[0094] The imaging unit is used to capture and position the positioning marks within the existing imprinted structure on the laterally moved flexible film substrate. For example, if the positioning mark within the existing imprinted structure on the flexible film substrate is a cross pattern, the cross pattern captured by the imaging unit coincides with the internally stored cross pattern, indicating that the positioning operation has been completed.

[0095] In view of the current situation where the width of the soft film substrate can be multi-row imprinted by the mass production type plated soft film manufacturing equipment of this utility model, the soft film substrate is laterally displaced to achieve the current soft film substrate inter-row imprinting process. By using the above-mentioned setting operation of the imaging unit, it is ensured that the imprinted patterns of different arrangements on the soft film substrate are on the same horizontal line.

[0096] The above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail with reference to the above embodiments, those skilled in the art can still make modifications or equivalent substitutions to the specific implementation of this utility model. Any modifications or equivalent substitutions that do not depart from the spirit and scope of this utility model are within the protection scope of the claims of this utility model pending approval.

Claims

1. A mass production type of modular flexible film manufacturing equipment, characterized in that, Includes a support module, an active conveying module, and a passive rotation module; The active conveying module, the passive rotation module, and the support module are connected; The active conveying module includes a soft film substrate feeding unit, an imprinting unit, a demolding unit, and a panelized soft film unloading unit arranged sequentially at intervals; an adhesive spraying unit connected to the support module is provided between the soft film substrate feeding unit and the imprinting unit, and a curing unit connected to the support module is provided between the imprinting unit and the demolding unit. The passive rotation module is equipped with an imprinting master plate. The bottom area of ​​the passive rotation module is located between the imprinting unit and the demolding unit, and the bottom end of the passive rotation module is located above the curing unit. The active conveying module contacts the printing master of the passive rotation module through the feeding soft film substrate and drives the passive rotation module to rotate.

2. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, The soft film substrate feeding unit includes a first roller and a first drive motor; The first drive motor is fixedly connected to the support module, and the rotating shaft of the first drive motor is connected to the first roller; The surface of the first roller can be fitted with a soft film substrate roll for feeding.

3. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, The imprinting unit includes a second roller, a second drive motor, and a first lifting component; The first lifting component is connected to the second drive motor, the second drive motor is fixedly connected to the support module, and the rotating shaft of the second drive motor is connected to the second roller.

4. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, The demolding unit includes a third roller, a third drive motor, and a second lifting component; The second lifting component is connected to the third drive motor, the third drive motor is connected to the support module, and the shaft of the third drive motor is connected to the third roller.

5. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, The assembly soft film feeding unit includes a fourth roller and a fourth drive motor; The fourth drive motor is fixedly connected to the support module, and the rotating shaft of the fourth drive motor is connected to the fourth roller. The surface of the fourth roller can be fitted with a flexible film for feeding.

6. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, The passive rotation module includes a fifth roller and a connecting rod; The fifth roller is placed horizontally and is connected to the support module via a connecting rod. An impression master is set on the outer wall of the fifth roller.

7. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, It also includes a film removal unit, which is connected to the support module; The film removal unit includes a first film removal unit and a second film removal unit; The first film removal unit is connected to the end of the first protective film on the upper layer of the soft film substrate, and is used to apply the first protective film peeled off from the upper layer of the soft film substrate; The second film removal unit is connected to the end of the second protective film on the lower layer of the soft film substrate, and is used to apply the first protective film peeled off from the lower layer of the soft film substrate.

8. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, It also includes a coating unit, which comprises a clamping unit, a first coating unit, and a second coating unit; the first coating unit and the second coating unit are connected to the support module; The first lamination unit is fitted with a second protective film for protecting the upper layer of the splicing soft film; The second lamination unit is fitted with a second protective film for protecting the lower layer of the splicing soft film; The clamping unit clamps and fixes the second protective film feeding end of the first laminating unit, the end of the panelized soft film near the panelized soft film unloading unit, and the second protective film feeding end of the second laminating unit.

9. The mass production type modular flexible film manufacturing equipment according to claim 1, characterized in that, It also includes moving components, positioning sensors, and controllers; The moving component is connected to the support module, and a position positioning sensor is provided on the moving component; The position sensor is connected to the controller and is in contact with the edge of the loading end of the soft film substrate. The position sensor sends the real-time edge position information of the soft film substrate to the controller. During the transport of the currently loaded soft film substrate by the active conveying module, the position positioning sensor monitors the edge position of the current soft film substrate in real time. If the edge position of the current soft film substrate exceeds the first position information set in the position positioning sensor, the position positioning sensor triggers an alarm operation. When the current soft film substrate needs to be moved laterally, the controller controls the moving component to move the position sensor to the required moving position of the current soft film substrate based on the edge position information of the soft film substrate sent by the position positioning sensor and the second position information in the controller.

10. The mass production type modular flexible film manufacturing equipment according to claim 6, characterized in that, It also includes a camera unit; The longitudinal distance D between the shooting unit and the fifth roller is set to nd, where d represents the cross-sectional perimeter of the fifth roller and n is an integer greater than or equal to 1; The imaging unit is used to image and position the positioning marks on the laterally moved soft film substrate that already have an imprinted structure.