Sheet brushing treatment agent cutting machine

By designing a sheet surface treatment agent cutting machine that integrates multiple mechanisms to automate sheet processing, the problems of low efficiency and safety hazards in sheet surface treatment agent application are solved, thereby improving processing efficiency and yield.

CN224147364UActive Publication Date: 2026-04-21东莞市士锋自动化机械设备有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
东莞市士锋自动化机械设备有限公司
Filing Date
2025-06-04
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing sheet surface treatment agents have low coating efficiency, high defect rate, and pose safety hazards.

Method used

Design a sheet material brushing treatment agent cutting machine, which integrates sheet material feeding, treatment agent brushing, air drying, double-sided adhesive bonding and cutting mechanisms to achieve automated operation. It includes a sheet material feeding mechanism, a treatment agent brushing mechanism, a treatment agent air drying mechanism, a double-sided adhesive bonding mechanism and a sheet material cutting mechanism. It adopts a synchronous pulley driving a synchronous belt transmission method and uses a drive motor and infrared sensors to achieve precise control.

Benefits of technology

It improves processing efficiency, reduces defect rate, enhances automation, reduces operator safety hazards, and realizes automated sheet feeding, conveying, coating with treatment agent, tape bonding, and cutting functions.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a sheet brushing treating agent cutting machine which comprises a machine table, a sheet feeding mechanism, a treating agent brushing and covering mechanism, a treating agent air drying mechanism, a double-faced adhesive tape attaching mechanism and a sheet cutting mechanism, and the sheet feeding mechanism, the treating agent brushing and covering mechanism, the treating agent air drying mechanism, the double-faced adhesive tape attaching mechanism and the sheet cutting mechanism are all arranged on the machine table. The treating agent brushing and covering mechanism is located above the sheet feeding mechanism, the treating agent air drying mechanism is located between the treating agent brushing and covering mechanism and the double-faced adhesive tape attaching mechanism, and the double-faced adhesive tape attaching mechanism is located above the sheet cutting-off mechanism. The functions of feeding, conveying, treating agent brushing, adhesive tape attaching and adhesive tape cutting of the sheets can be automatically achieved without manual operation, the automation degree is high, operation is smooth, the machining efficiency is high, the yield is high, and practicability is high.
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Description

Technical Field

[0001] This utility model relates to the field of sheet processing technology, and in particular to a sheet brush treatment agent cutting machine. Background Technology

[0002] Currently, sheet materials have a wide range of applications, including packaging, construction, electronics, daily necessities, and automobiles. To improve the surface properties of sheet materials, such as enhancing adhesion, increasing wettability, improving corrosion resistance, improving printability, and adding functional properties, a treatment agent is often brushed onto the surface of the sheet material, and then the sheet is adhered with tape. However, existing sheet coating treatment agents are often applied manually by brushing the sheet with a brush or by manually applying tape to the sheet. This processing method is not only inefficient but also has a high defect rate. Operators are in long-term contact with the treatment agent, posing a hidden risk of inhaling harmful gases into their lungs or accidentally getting the treatment agent on their hands, resulting in high safety hazards.

[0003] Existing manual brushing treatment agents suffer from low brushing efficiency, high defect rate, and poor safety, and no effective solution has yet been proposed. Utility Model Content

[0004] In view of this, it is necessary to provide a sheet brushing agent cutting machine to at least solve the problems of low brushing efficiency, high defect rate and poor safety of existing manual brushing agents in related technologies.

[0005] The present invention adopts the following technical solution: a sheet material brushing treatment agent cutting machine, comprising a machine base, a sheet material feeding mechanism, a treatment agent brushing mechanism, a treatment agent drying mechanism, a double-sided adhesive bonding mechanism, and a sheet material cutting mechanism. The sheet material feeding mechanism, the treatment agent brushing mechanism, the treatment agent drying mechanism, the double-sided adhesive bonding mechanism, and the sheet material cutting mechanism are all disposed on the machine base. The treatment agent brushing mechanism is located above the sheet material feeding mechanism, and the treatment agent drying mechanism is located between the treatment agent brushing mechanism and the double-sided adhesive bonding mechanism. Between the two, the double-sided adhesive bonding mechanism is located above the sheet cutting mechanism; wherein, the sheet feeding mechanism is used to position and guide the sheet for feeding, and after flowing through the treatment agent brushing mechanism and the treatment agent drying mechanism, it is conveyed to the double-sided adhesive bonding mechanism; the treatment agent brushing mechanism is used to brush the treatment agent onto the surface of the sheet; the treatment agent drying mechanism is used to dry the treatment agent brushed onto the surface of the sheet; the double-sided adhesive bonding mechanism is used to bond the tape to the surface of the sheet; the sheet cutting mechanism is used to cut the sheets between each other.

[0006] In some embodiments, the sheet feeding mechanism includes a sheet feeding assembly and a positioning guide fixture. The sheet feeding assembly includes a feeding transmission module and a feeding drive device. The feeding transmission module is disposed on the machine base, and the feeding drive device is disposed on one side of the feeding transmission module and is connected to the feeding transmission module in a transmission manner. The positioning guide fixture is disposed above the feeding transmission module. The feeding drive device is used to drive the feeding transmission module to rotate. The feeding transmission module is implemented by a synchronous pulley driving a synchronous belt. The positioning guide fixture is used to guide and limit the sheet on the feeding transmission module to align the sheet with the center of the tape of the double-sided adhesive bonding mechanism.

[0007] In some embodiments, the feeding drive device is a drive motor, which is connected to the synchronous pulley of the feeding transmission module via a rotating shaft, thereby driving the synchronous belt of the feeding transmission module to rotate. The positioning guide fixture includes a sheet adjustment device, a guide plate, a frame, and a sheet detection device. The sheet adjustment device and the frame are located above the feeding transmission module, with the frame located at the rear end of the sheet adjustment device. The guide plate is mounted on the sheet adjustment device, forming a sheet inflow channel between the two guide plates. The sheet detection device is mounted on the frame. The sheet adjustment device is used to adjust the size of the sheet inflow channel, the guide plate is used to limit and guide the sheet, and the sheet detection device is used to detect whether the sheet is in place.

[0008] In some embodiments, the treatment agent coating mechanism includes a coating lifting assembly and a sheet coating assembly. The coating lifting assembly includes a lifting transmission module, a lifting drive device, and a lifting base. The lifting transmission module is mounted on the machine base, the lifting drive device is mounted on the lifting transmission module and is drively connected to the lifting transmission module, and the lifting base is drively connected to the lifting transmission module. The sheet coating assembly is fixed on the lifting base. The lifting drive device drives the lifting transmission module, which operates using a lead screw driving a lead screw nut. The sheet coating assembly is used to coat the sheet with the treatment agent.

[0009] In some embodiments, the lifting drive device is a drive motor, which is connected to the lead screw of the lifting transmission module via a rotating shaft, thereby driving the lead screw nut of the lifting transmission module and the lifting seat to move along the lead screw setting direction of the lifting transmission module; the sheet coating assembly includes a treatment agent funnel, a treatment agent receiving tank, a coating drive device, a coating drive roller, a first coating driven roller, a second coating driven roller, and a coating adjustment device. The treatment agent funnel is fixed on the lifting transmission module, and the treatment agent receiving tank, the coating drive device, the coating drive roller, the first coating driven roller, the second coating driven roller, and the coating adjustment device are all located on the lifting seat. The treatment agent receiving tank is located at the treatment agent funnel. Below, the brushing drive device is connected to the brushing active roller, the brushing active roller is located above the treatment agent receiving tank, the first brushing driven roller is located between the brushing active roller and the second brushing driven roller, and the brushing adjustment device is located above the first brushing driven roller; wherein, the treatment agent funnel is used to add the treatment agent into the treatment agent receiving tank, the treatment agent receiving tank is used to store the treatment agent, the brushing drive device rolls the treatment agent in the treatment agent receiving tank by the rolling of the brushing active roller and sequentially transmits it to the first brushing driven roller and the second brushing driven roller, the second brushing driven roller rolls the treatment agent on the sheet surface on the feeding transmission module, and the brushing adjustment device is used to adjust the thickness of the treatment agent.

[0010] In some embodiments, the treatment agent drying mechanism includes a first treatment agent drying module and a second treatment agent drying module, wherein the first treatment agent drying module is located above the feeding transmission module, and the second treatment agent drying module is located at the double-sided adhesive bonding mechanism.

[0011] In some embodiments, the double-sided adhesive bonding mechanism includes a bonding conveying assembly and a tape bonding assembly. The bonding conveying assembly includes a conveying drive device and a bonding transmission module. The bonding transmission module is mounted on the machine base and arranged side by side with the feeding transmission module. The second treatment agent drying module is located above the bonding transmission module. The conveying drive device is located on one side of the bonding transmission module and is connected to the bonding transmission module in a transmission manner. The tape bonding assembly is located above the bonding transmission module. The conveying drive device drives the bonding transmission module to rotate. The bonding transmission module receives the sheet coated with the treatment agent. The bonding transmission module is implemented by a synchronous pulley driving a synchronous belt. The tape bonding assembly applies the tape to the sheet coated with the treatment agent on the bonding transmission module.

[0012] In some embodiments, the conveying drive device is a drive motor, which is connected to the synchronous pulley of the bonding transmission module via a rotating shaft, thereby driving the synchronous belt of the bonding transmission module to rotate; the tape bonding assembly includes a tape unwinding device, a tape bonding device, and a release film winding device. The tape bonding device is disposed on the machine base and located above the bonding transmission module, the tape unwinding device is located above the tape bonding device, and the release film winding device is located on one side of the tape bonding device; wherein, the tape unwinding device is used for storing and unwinding the tape, the tape bonding device is used for bonding the tape to a sheet coated with a treatment agent, and the release film winding device is used for winding the release film on the tape.

[0013] In some embodiments, the sheet cutting mechanism includes a sheet feeding assembly and a tape cutting assembly. The sheet feeding assembly includes a feeding drive device and a feeding transmission module. The feeding transmission module is mounted on the machine base and arranged side by side with the bonding transmission module. The feeding drive device is located on one side of the feeding transmission module and is connected to the feeding transmission module in a transmission manner. The tape cutting assembly is located above the feeding transmission module. The feeding drive device is used to drive the feeding transmission module to rotate. The feeding transmission module is used to receive the sheet with tape already applied. The feeding transmission module is implemented by a synchronous pulley driving a synchronous belt. The tape cutting assembly is used to cut the tape on the sheet on the feeding transmission module.

[0014] In some embodiments, the feeding drive device is a drive motor, which is connected to the synchronous pulley of the feeding transmission module via a rotating shaft, thereby driving the synchronous belt of the feeding transmission module to rotate; the tape cutting assembly includes a linear transmission module and a cutter, the linear transmission module is disposed above the feeding transmission module, and the cutter is disposed on the linear transmission module; wherein, the linear transmission module drives the cutter to move horizontally via a slide block, thereby cutting the tape on the sheet on the feeding transmission module.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: The embodiments of this application provide a sheet material brushing treatment agent cutting machine with novel structure and reasonable design. It integrates a sheet material feeding mechanism, a treatment agent brushing mechanism, a treatment agent drying mechanism, a double-sided adhesive bonding mechanism and a sheet material cutting mechanism. It can automatically realize the functions of sheet material feeding, conveying, brushing treatment agent, bonding adhesive tape and cutting adhesive tape. It has a high degree of automation, smooth operation, high processing efficiency and high yield. The high degree of automation eliminates the need for manual operation, reduces the safety hazards for operators, and has strong practicality. Attached Figure Description

[0016] Figure 1This is a partial structural diagram of an embodiment of this application;

[0017] Figure 2 This is a schematic diagram of the sheet feeding mechanism, the treatment agent drying mechanism, and the treatment agent brushing mechanism according to an embodiment of this application;

[0018] Figure 3 This is a schematic diagram of the sheet feeding mechanism according to an embodiment of this application;

[0019] Figure 4 This is a schematic diagram of the treatment agent brushing mechanism according to an embodiment of this application;

[0020] Figure 5 This is a schematic diagram of the processing agent drying mechanism, double-sided adhesive bonding mechanism, and sheet cutting mechanism according to an embodiment of this application;

[0021] Figure 6 This is a schematic diagram of the double-sided adhesive bonding mechanism according to an embodiment of this application;

[0022] Figure 7 This is a schematic diagram of the sheet cutting mechanism according to an embodiment of this application;

[0023] Figure 8 This is a schematic diagram of the overall structure of an embodiment of this application.

[0024] Figure label:

[0025] 100. Machine tool;

[0026] 200. Sheet feeding mechanism; 21. Sheet feeding assembly; 211. Feeding transmission module; 212. Feeding drive device; 22. Positioning and guiding fixture; 221. Sheet adjusting device; 222. Guide plate; 223. Frame; 224. Sheet detection device;

[0027] 300. Treatment agent brushing mechanism; 31. Brushing lifting assembly; 311. Lifting transmission module; 312. Lifting drive device; 313. Lifting seat; 32. Sheet brushing assembly; 321. Treatment agent funnel; 322. Treatment agent receiving tank; 323. Brushing drive device; 324. Brushing drive roller; 325. First driven roller for brushing; 326. Second driven roller for brushing; 327. Brushing adjustment device;

[0028] 400. Processing agent drying mechanism; 41. First processing agent drying module; 42. Second processing agent drying module;

[0029] 500. Double-sided adhesive bonding mechanism; 51. Bonding conveyor assembly; 511. Conveyor drive device; 512. Bonding transmission module; 52. Adhesive tape bonding assembly; 521. Adhesive tape unwinding device; 522. Adhesive tape bonding device; 523. Release film winding device.

[0030] 600. Sheet cutting mechanism; 61. Sheet feeding assembly; 611. Feeding drive device; 612. Feeding transmission module; 62. Tape cutting assembly; 621. Linear transmission module; 622. Cutting knife. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0032] It should be noted that when a component is said to be "mounted on" another component, it can be directly mounted on the other component or may be interspersed with a component. When a component is said to be "set on" another component, it can be directly set on the other component or may be interspersed with a component. When a component is said to be "fixed to" another component, it can be directly fixed to the other component or may be interspersed with a component.

[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "or / and" as used herein includes any and all combinations of one or more of the associated listed items.

[0034] See Figure 1-8This application provides a sheet cutting machine for applying a treatment agent, which includes a machine base 100, a sheet feeding mechanism 200, a treatment agent brushing mechanism 300, a treatment agent drying mechanism 400, a double-sided adhesive bonding mechanism 500, and a sheet cutting mechanism 600. The sheet feeding mechanism 200, the treatment agent brushing mechanism 300, the treatment agent drying mechanism 400, the double-sided adhesive bonding mechanism 500, and the sheet cutting mechanism 600 are all mounted on the machine base 100. The treatment agent brushing mechanism 300 is located above the sheet feeding mechanism 200, and the treatment agent drying mechanism 400 is located between the treatment agent brushing mechanism 300 and the double-sided adhesive bonding mechanism 500. Between the two bonding mechanisms 500, the double-sided adhesive bonding mechanism 500 is located above the sheet cutting mechanism 600; wherein, the sheet feeding mechanism 200 is used to position and guide the sheet feeding, and after flowing through the treatment agent brushing mechanism 300 and the treatment agent drying mechanism 400, it is conveyed to the double-sided adhesive bonding mechanism 500; the treatment agent brushing mechanism 300 is used to brush the treatment agent onto the surface of the sheet; the treatment agent drying mechanism 400 is used to dry the treatment agent brushed onto the surface of the sheet; the double-sided adhesive bonding mechanism 500 is used to attach the tape to the surface of the sheet; the sheet cutting mechanism 600 is used to cut the sheets between each other.

[0035] It should be noted that this configuration integrates the sheet feeding mechanism 200, the treatment agent coating mechanism 300, the treatment agent drying mechanism 400, the double-sided adhesive bonding mechanism 500, and the sheet cutting mechanism 600 into one unit. This allows for the automated feeding, conveying, application of treatment agent, bonding of adhesive tape, and cutting of the sheet. Specifically, the structural design of the sheet feeding mechanism 200 enables automatic guiding, limiting, and positioning of the sheet, resulting in precise feeding and improved yield. The structural design of the treatment agent coating mechanism 300 also enables the automatic feeding of the sheet... The automatic application of the treatment agent eliminates the need for manual operation, reducing operator safety risks. The treatment agent drying mechanism 400 enables rapid drying, improving processing efficiency. The double-sided adhesive bonding mechanism 500 ensures automatic tape adhesion to the sheet material with high precision and automatic positioning. The sheet cutting mechanism 600 eliminates the need for manual tape cutting, producing individual sheet products. Overall, the system operates smoothly and is highly automated.

[0036] To achieve the function of automatic sheet feeding, in some optional embodiments, the sheet feeding mechanism 200 includes a sheet feeding assembly 21 and a positioning guide fixture 22. The sheet feeding assembly 21 includes a feeding transmission module 211 and a feeding drive device 212. The feeding transmission module 211 is mounted on the machine base 100, and the feeding drive device 212 is located on one side of the feeding transmission module 211 and is connected to the feeding transmission module 211 in a transmission manner. The positioning guide fixture 22 is located above the feeding transmission module 211. The feeding drive device 212 is used to drive the feeding transmission module 211 to rotate. The feeding transmission module 211 is driven by a synchronous pulley driving a synchronous belt. The positioning guide fixture 22 is used to guide and limit the sheet on the feeding transmission module 211 so as to align the sheet with the center of the tape of the double-sided adhesive bonding mechanism 500.

[0037] It should be noted that with this setup, the sheet feeding assembly 21 is used to transport the sheet and the positioning guide fixture 22 is used for limiting and positioning, so that the sheet can be accurately fed, transported and positioned to align the center of the sheet with the tape of the double-sided adhesive bonding mechanism 500, which facilitates the subsequent bonding of the tape to the sheet. The feeding transmission module 211 uses a synchronous pulley to drive the synchronous belt for transmission, which has high accuracy.

[0038] To further achieve the function of automatic and precise sheet feeding, in some optional embodiments, the feeding drive device 212 is a drive motor, which is connected to the synchronous pulley of the feeding transmission module 211 through a rotating shaft, thereby driving the synchronous belt of the feeding transmission module 211 to rotate; the positioning guide fixture 22 includes a sheet adjustment device 221, a guide plate 222, a frame 223 and a sheet detection device 224. The sheet adjustment device 221 and the frame 223 are located above the feeding transmission module 211, the frame 223 is located at the rear end of the sheet adjustment device 221, the guide plate 222 is installed on the sheet adjustment device 221, and a sheet inflow channel is formed between the two guide plates 222. The sheet detection device 224 is installed on the frame 223; wherein, the sheet adjustment device 221 is used to adjust the size of the sheet inflow channel, the guide plate 222 is used to limit and guide the sheet, and the sheet detection device 224 is used to detect whether the sheet is in place.

[0039] It should be noted that with this configuration, the feeding drive device 212 uses a drive motor as its power source, which has high precision. This allows it to precisely drive the synchronous pulley and synchronous belt of the feeding transmission module 211 to rotate synchronously, thus achieving precise sheet material feeding. Furthermore, a positioning guide clamp 22 is provided at the sheet material inlet. The sheet material adjustment device 221 uses a handwheel and screw transmission method to adjust the position of the guide plate 222, thereby limiting the size of the sheet material inflow channel and improving the sheet material feeding accuracy. At the same time, the sheet material detection device 224 uses an infrared sensor to detect the position of the inflowing sheet material, further improving the sheet material feeding accuracy.

[0040] To achieve the coating function of the treatment agent, in some optional embodiments, the treatment agent coating mechanism 300 includes a coating lifting assembly 31 and a sheet coating assembly 32. The coating lifting assembly 31 includes a lifting transmission module 311, a lifting drive device 312, and a lifting seat 313. The lifting transmission module 311 is mounted on the machine base 100, the lifting drive device 312 is mounted on the lifting transmission module 311 and is connected to the lifting transmission module 311 in a transmission manner, and the lifting seat 313 is connected to the lifting transmission module 311 in a transmission manner. The sheet coating assembly 32 is fixed on the lifting seat 313. The lifting drive device 312 is used to drive the lifting transmission module 311 to work. The lifting transmission module 311 is implemented by a lead screw driving a lead screw nut. The sheet coating assembly 32 is used to coat the sheet with the treatment agent.

[0041] It should be noted that with this configuration, the lifting transmission module 311 uses a lead screw to drive the lead screw nut, which has high precision. This drives the lifting seat 313 and the sheet coating assembly 32 to perform precise lifting movements, allowing the sheet coating assembly 32 to better contact the sheet on the feeding transmission module 211 with the coating agent.

[0042] To further realize the brushing function of the treatment agent, in some optional embodiments, the lifting drive device 312 is a drive motor. The drive motor is connected to the lead screw of the lifting transmission module 311 through a rotating shaft, thereby driving the lead screw nut of the lifting transmission module 311 and the lifting seat 313 to move along the lead screw setting direction of the lifting transmission module 311. The sheet brushing assembly 32 includes a treatment agent funnel 321, a treatment agent receiving tank 322, a brushing drive device 323, a brushing active roller 324, a brushing first driven roller 325, a brushing second driven roller 326, and a brushing adjustment device 327. The treatment agent funnel 321 is fixed on the lifting transmission module 311. The treatment agent receiving tank 322, the brushing drive device 323, the brushing active roller 324, the brushing first driven roller 325, the brushing second driven roller 326, and the brushing adjustment device 327 are all located on the lifting seat 313. The agent receiving tank 322 is located below the agent funnel 321. The brushing drive device 323 is connected to the brushing drive roller 324. The brushing drive roller 324 is located above the agent receiving tank 322. The brushing first driven roller 325 is located between the brushing drive roller 324 and the brushing second driven roller 326. The brushing adjustment device 327 is located above the brushing first driven roller 325. The agent funnel 321 is used to add the agent to the agent receiving tank 322. The agent receiving tank 322 is used to store the agent. The brushing drive device 323 rolls the agent in the agent receiving tank 322 through the brushing drive roller 324 and transfers it to the brushing first driven roller 325 and the brushing second driven roller 326 in sequence. The brushing second driven roller 326 rolls the agent onto the sheet surface on the feeding transmission module 211. The brushing adjustment device 327 is used to adjust the thickness of the agent.

[0043] It should be noted that the lifting drive device 312 uses a drive motor as its power source, which has high precision. This allows the sheet coating assembly 32 to be adjusted to the specified position. The operator can add an appropriate amount of treatment agent to the treatment agent receiving tank 322 through the treatment agent funnel 321. The coating drive roller 324 rolls under the drive of the coating drive device 323, thereby rolling up the treatment agent in the treatment agent receiving tank 322 and transferring it to the first driven roller 325. The first driven roller 325 cooperates with the coating adjustment device 327 to control the thickness of the treatment agent before transferring the treatment agent to the second driven roller 326. Finally, the second driven roller 326 contacts the sheet on the feeding transmission module 211, coating the sheet with the treatment agent to form a sheet coated with the treatment agent.

[0044] To improve processing efficiency, in some alternative embodiments, the treatment agent drying mechanism 400 includes a first treatment agent drying module 41 and a second treatment agent drying module 42. The first treatment agent drying module 41 is located above the feeding transmission module 211, and the second treatment agent drying module 42 is located at the double-sided adhesive bonding mechanism 500.

[0045] It should be noted that by using the first treatment agent drying module 41 and the second treatment agent drying module 42, the drying speed of the treatment agent on the sheet can be accelerated, thereby improving processing efficiency.

[0046] To achieve the tape bonding function, in some optional embodiments, the double-sided adhesive bonding mechanism 500 includes a bonding conveying assembly 51 and a tape bonding assembly 52. ​​The bonding conveying assembly 51 includes a conveying drive device 511 and a bonding transmission module 512. The bonding transmission module 512 is mounted on the machine base 100 and arranged side by side with the feeding transmission module 211. The second treatment agent drying module 42 is located above the bonding transmission module 512. The conveying drive device 511 is located on one side of the bonding transmission module 512 and is adjacent to the bonding transmission module. 512 is a transmission connection, and the tape bonding assembly 52 is located above the bonding transmission module 512; wherein, the transmission drive device 511 is used to drive the bonding transmission module 512 to rotate, the bonding transmission module 512 is used to receive the sheet that has been coated with the treatment agent, the bonding transmission module 512 is realized by the transmission method of the synchronous pulley driving the synchronous belt, the bonding transmission module 512 is used to receive the sheet that has been coated with the treatment agent, and the tape bonding assembly 52 is used to bond the tape to the sheet that has been coated with the treatment agent on the bonding transmission module 512.

[0047] It should be noted that with this configuration, the bonding transmission module 512 and the feeding transmission module 211 are arranged side by side, thereby receiving the sheet material that has been coated with the treatment agent on the feeding transmission module 211. Furthermore, the bonding transmission module 512 and the feeding transmission module 211 have different rotational speeds, with the bonding transmission module 512 rotating faster than the feeding transmission module 211. This creates a certain gap between the sheets, which are then fed to the underside of the tape bonding assembly 52 to await tape bonding.

[0048] To further enhance the tape bonding function, in some optional embodiments, the conveying drive device 511 is a drive motor, which is connected to the synchronous pulley of the bonding transmission module 512 via a rotating shaft, thereby driving the synchronous belt of the bonding transmission module 512 to rotate. The tape bonding assembly 52 includes a tape unwinding device 521, a tape bonding device 522, and a release film winding device 523. The tape bonding device 522 is mounted on the machine base 100 and located above the bonding transmission module 512. The tape unwinding device 521 is located above the tape bonding device 522, and the release film winding device 523 is located on one side of the tape bonding device 522. The tape unwinding device 521 is used for storing and unwinding the tape, the tape bonding device 522 is used for bonding the tape to the sheet coated with the treatment agent, and the release film winding device 523 is used for winding the release film on the tape.

[0049] It should be noted that with this setup, the double-sided adhesive tape of the tape unwinding device 521 is first separated from the release film. The tape is then bonded to the sheet that has been coated with the treatment agent by the tape bonding device 522 and the bonding transmission module 512, forming a sheet with the tape bonded. The release film is then wound around the release film winding device 523 for recycling.

[0050] To achieve the tape cutting function, in some optional embodiments, the sheet cutting mechanism 600 includes a sheet feeding assembly 61 and a tape cutting assembly 62. The sheet feeding assembly 61 includes a feeding drive device 611 and a feeding transmission module 612. The feeding transmission module 612 is mounted on the machine base 100 and arranged side by side with the bonding transmission module 512. The feeding drive device 611 is located on one side of the feeding transmission module 612 and is connected to the feeding transmission module 612 in a transmission manner. The tape cutting assembly 62 is located above the feeding transmission module 612. The feeding drive device 611 is used to drive the feeding transmission module 612 to rotate. The feeding transmission module 612 is used to receive the sheet with tape already applied. The feeding transmission module 612 is implemented by a synchronous pulley driving a synchronous belt. The tape cutting assembly 62 is used to cut the tape on the sheet on the feeding transmission module 612.

[0051] It should be noted that with this configuration, the material feeding transmission module 612 uses a synchronous pulley to drive the synchronous belt, which has high precision. It can accurately receive the sheet material with the tape already attached on the bonding transmission module 512 and send it below the tape cutting component 62, waiting for the tape cutting component 62 to cut it.

[0052] To further realize the tape cutting function, in some optional embodiments, the feeding drive device 611 is a drive motor, which is connected to the synchronous pulley of the feeding transmission module 612 through a rotating shaft, thereby driving the synchronous belt of the feeding transmission module 612 to rotate; the tape cutting assembly 62 includes a linear transmission module 621 and a cutter 622, the linear transmission module 621 is located above the feeding transmission module 612, and the cutter 622 is located on the linear transmission module 621; wherein, the linear transmission module 621 drives the cutter 622 to move horizontally through a slide, thereby cutting the tape on the sheet on the feeding transmission module 612.

[0053] It should be noted that with this configuration, the feeding drive device 611 uses a drive motor as the power source, which has high precision. At the same time, the tape cutting assembly 62 is also equipped with a detection device, which is an infrared sensor. When the infrared sensor detects the sheet, it drives the cutter 622 to move horizontally through the linear transmission module 621, thereby cutting the tape on the sheet.

[0054] Those skilled in the art should recognize that the above embodiments are only used to illustrate the present utility model and are not intended to limit the present utility model. Any appropriate changes and variations made to the above embodiments within the scope of the essential spirit of the present utility model shall fall within the scope of protection claimed by the present utility model.

Claims

1. A sheeting brush treatment agent severing machine characterized by, It includes a machine base (100), a sheet feeding mechanism (200), a treatment agent coating mechanism (300), a treatment agent drying mechanism (400), a double-sided adhesive bonding mechanism (500), and a sheet cutting mechanism (600). The sheet feeding mechanism (200), the treatment agent coating mechanism (300), the treatment agent drying mechanism (400), the double-sided adhesive bonding mechanism (500), and the sheet cutting mechanism (600) are all located on the machine base (100). The treatment agent coating mechanism (300) is located above the sheet feeding mechanism (200). The treatment agent drying mechanism (400) is located between the treatment agent coating mechanism (300) and the double-sided adhesive bonding mechanism (500). The double-sided adhesive bonding mechanism (500) is located above the sheet cutting mechanism (600). The sheet feeding mechanism (200) is used to position and guide the sheet for feeding. After passing through the treatment agent brushing mechanism (300) and the treatment agent drying mechanism (400), the sheet is conveyed to the double-sided adhesive bonding mechanism (500). The treatment agent brushing mechanism (300) is used to brush the treatment agent onto the surface of the sheet; The treatment agent drying mechanism (400) is used to dry the treatment agent brushed onto the surface of the sheet. The double-sided adhesive bonding mechanism (500) is used to bond the tape to the surface of the sheet. The sheet cutting mechanism (600) is used to cut sheets together.

2. The sheeting brush treatment break machine of claim 1, wherein, The sheet feeding mechanism (200) includes a sheet feeding assembly (21) and a positioning guide clamp (22). The sheet feeding assembly (21) includes a feeding transmission module (211) and a feeding drive device (212). The feeding transmission module (211) is mounted on the machine base (100). The feeding drive device (212) is located on one side of the feeding transmission module (211) and is connected to the feeding transmission module (211) in a transmission manner. The positioning guide clamp... The tool (22) is located above the feeding transmission module (211); wherein the feeding drive device (212) is used to drive the feeding transmission module (211) to rotate, the feeding transmission module (211) is implemented by a synchronous pulley driving a synchronous belt, and the positioning guide clamp (22) is used to guide and limit the sheet on the feeding transmission module (211) so as to align the sheet with the center of the tape of the double-sided adhesive bonding mechanism (500).

3. The sheeting brush treatment break machine of claim 2, wherein, The feeding drive device (212) is a drive motor, which is connected to the synchronous pulley of the feeding transmission module (211) via a rotating shaft, thereby driving the synchronous belt of the feeding transmission module (211) to rotate; the positioning guide fixture (22) includes a sheet adjustment device (221), a guide plate (222), a frame (223), and a sheet detection device (224). The sheet adjustment device (221) and the frame (223) are located above the feeding transmission module (211), and the frame (224) 223) Located at the rear end of the sheet adjustment device (221), the guide plate (222) is installed on the sheet adjustment device (221), and a sheet inflow channel is formed between the two guide plates (222). The sheet detection device (224) is installed on the frame (223). The sheet adjustment device (221) is used to adjust the size of the sheet inflow channel, the guide plate (222) is used to limit and guide the sheet, and the sheet detection device (224) is used to detect whether the sheet is in place.

4. The sheeting brush treatment break machine of claim 3, wherein, The treatment agent brushing mechanism (300) includes a brushing lifting assembly (31) and a sheet brushing assembly (32). The brushing lifting assembly (31) includes a lifting transmission module (311), a lifting drive device (312), and a lifting seat (313). The lifting transmission module (311) is mounted on the machine base (100). The lifting drive device (312) is mounted on the lifting transmission module (311) and is connected to the lifting transmission module (311) in a transmission manner. The lifting seat (313) is connected to the lifting transmission module (311) in a transmission manner. The sheet brushing assembly (32) is fixed on the lifting seat (313). The lifting drive device (312) is used to drive the lifting transmission module (311) to work. The lifting transmission module (311) is implemented by a screw driving a screw nut. The sheet brushing assembly (32) is used to brush the treatment agent onto the sheet.

5. The sheeting brush treatment break machine of claim 4, wherein, The lifting drive device (312) is a drive motor, which is connected to the lead screw of the lifting transmission module (311) via a rotating shaft, thereby driving the lead screw nut of the lifting transmission module (311) and the lifting seat (313) to move along the lead screw setting direction of the lifting transmission module (311); the sheet coating assembly (32) includes a treatment agent funnel (321), a treatment agent receiving tank (322), a coating drive device (323), a coating active roller (324), and a coating first driven roller (325). The brushing process includes a second driven roller (326) and a brushing adjustment device (327). The treatment agent funnel (321) is fixed on the lifting transmission module (311). The treatment agent receiving tank (322), the brushing drive device (323), the brushing drive roller (324), the brushing first driven roller (325), the brushing second driven roller (326), and the brushing adjustment device (327) are all located on the lifting base (313). The treatment agent receiving tank (322) is located at the treatment agent funnel. Below 321), the brushing drive device (323) is connected to the brushing drive roller (324) in a transmission connection. The brushing drive roller (324) is located above the treatment agent receiving tank (322). The first brushing driven roller (325) is located between the brushing drive roller (324) and the second brushing driven roller (326). The brushing adjustment device (327) is located above the first brushing driven roller (325). The treatment agent funnel (321) is used to add the treatment agent to the treatment agent receiving tank. Inside the trough (322), the treatment agent receiving trough (322) is used to store the treatment agent. The brushing drive device (323) rolls the treatment agent in the treatment agent receiving trough (322) by the brushing drive roller (324) and sequentially transfers it to the brushing first driven roller (325) and the brushing second driven roller (326). The brushing second driven roller (326) rolls the treatment agent onto the sheet surface on the feeding transmission module (211). The brushing adjustment device (327) is used to adjust the thickness of the treatment agent.

6. The sheeting brush treatment break machine of claim 5, wherein, The treatment agent drying mechanism (400) includes a first treatment agent drying module (41) and a second treatment agent drying module (42). The first treatment agent drying module (41) is located above the feeding transmission module (211), and the second treatment agent drying module (42) is located at the double-sided adhesive bonding mechanism (500).

7. The sheeting brush treatment break machine of claim 6, wherein, The double-sided adhesive bonding mechanism (500) includes a bonding conveying assembly (51) and an adhesive tape bonding assembly (52). The bonding conveying assembly (51) includes a conveying drive device (511) and a bonding transmission module (512). The bonding transmission module (512) is mounted on the machine base (100) and arranged side by side with the feeding transmission module (211). The second treatment agent drying module (42) is located above the bonding transmission module (512). The conveying drive device (511) is located on one side of the bonding transmission module (512) and is connected to the bonding transmission module (512) for transmission. Next, the tape bonding assembly (52) is disposed above the bonding transmission module (512); wherein, the transmission drive device (511) is used to drive the bonding transmission module (512) to rotate, the bonding transmission module (512) is used to receive the sheet coated with the treatment agent, the bonding transmission module (512) is implemented by a synchronous pulley driving a synchronous belt, the bonding transmission module (512) is used to receive the sheet coated with the treatment agent, and the tape bonding assembly (52) is used to bond the tape to the sheet coated with the treatment agent on the bonding transmission module (512).

8. The sheeting brush treatment break machine of claim 7, wherein, The conveying drive device (511) is a drive motor, which is connected to the synchronous pulley of the bonding transmission module (512) via a rotating shaft, thereby driving the synchronous belt of the bonding transmission module (512) to rotate; the tape bonding assembly (52) includes a tape unwinding device (521), a tape bonding device (522), and a release film winding device (523). The tape bonding device (522) is mounted on the machine base (100) and located on the bonding transmission module. Above the assembly (512), the tape unwinding device (521) is located above the tape bonding device (522), and the release film winding device (523) is located on one side of the tape bonding device (522); wherein, the tape unwinding device (521) is used for storing and unwinding the tape, the tape bonding device (522) is used for bonding the tape to the sheet coated with the treatment agent, and the release film winding device (523) is used for winding the release film on the tape.

9. The sheeting brush treatment break machine of claim 8, wherein, The sheet cutting mechanism (600) includes a sheet feeding assembly (61) and a tape cutting assembly (62). The sheet feeding assembly (61) includes a feeding drive device (611) and a feeding transmission module (612). The feeding transmission module (612) is mounted on the machine base (100) and arranged side by side with the bonding transmission module (512). The feeding drive device (611) is located on one side of the feeding transmission module (612) and is connected to the feeding transmission module (612) for transmission. Next, the tape cutting component (62) is located above the unloading transmission module (612); wherein, the unloading drive device (611) is used to drive the unloading transmission module (612) to rotate, the unloading transmission module (612) is used to receive the sheet material with tape already applied, the unloading transmission module (612) is implemented by a synchronous pulley driving a synchronous belt, and the tape cutting component (62) is used to cut the tape on the sheet material on the unloading transmission module (612).

10. The sheeting brush treatment break machine of claim 9, wherein, The feeding drive device (611) is a drive motor, which is connected to the synchronous pulley of the feeding transmission module (612) via a rotating shaft, thereby driving the synchronous belt of the feeding transmission module (612) to rotate; the tape cutting assembly (62) includes a linear transmission module (621) and a cutter (622), the linear transmission module (621) is located above the feeding transmission module (612), and the cutter (622) is located on the linear transmission module (621); wherein, the linear transmission module (621) drives the cutter (622) to move horizontally via a slide, thereby cutting the tape on the sheet on the feeding transmission module (612).