Novel double-sided film-covering material cutting device

By designing a novel double-sided film-coated material cutting device, which employs a bracket, side plate, material roll assembly, and pressing and cutting mechanism, combined with an electrical control box and induction switch assembly, the device solves the problems of complex structure and low precision in the cutting process after film coating of existing equipment. It achieves stable pressing and precise cutting of materials, thereby improving production efficiency and product quality.

CN223820592UActive Publication Date: 2026-01-23JIANGSU YETANG INSULATION MATERIALS CO LTD
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Patent Information

Application Number
CN202520155214.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-23
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Existing material processing equipment suffers from complex structure, inconvenient operation, low precision, and poor versatility during the cutting process after film coating, making it difficult to achieve precise control and parameter adjustment, thus affecting production efficiency and product quality.

Method used

A novel double-sided film-coated material cutting device was designed, which adopts a bracket, side plate, material roll assembly, display screen control device and pressing and cutting mechanism. The device achieves stable pressing and precise cutting of materials through an electrical control box and drive motor. Combined with an inductive switch assembly to monitor the position of the cutter holder, the device ensures the accuracy and safety of cutting.

Benefits of technology

It achieves stable material compression and precise cutting, improves product processing quality and production efficiency, reduces scrap rate, enhances the automation level and ease of operation of the equipment, and adapts to the processing needs of material rolls of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of material processing equipment, in particular to a novel double-sided film-coated material cutting device which comprises a device body, the device body comprises a support, and the lower end of the support is provided with a plurality of column feet and is stably supported on the working ground through the column feet; side plates are mounted on the bracket and are symmetrically arranged; a material roll assembly and a table top are installed between the side plates, and display screen control devices are arranged on the side plates. The support is further provided with an electric control box and a pressing and cutting mechanism in a matched mode. According to the utility model, the structural design is optimized, so that materials are stably pressed and accurately cut off; the pressing and cutting mechanism is stable in connection and coordinated in movement, and operation stability is improved; the material roll assembly is matched with the pressing rolling block, so that materials are smooth and stable, and the machining quality is improved; the cut-off assembly accurately cuts off materials, and the inductive switch improves the control precision; and the electric control box is combined with the display screen control device, the automation degree is improved, and diversified machining requirements are met.
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Description

Technical Field

[0001] This utility model relates to the field of material processing equipment technology, and in particular to a novel double-sided coated material cutting device. Background Technology

[0002] In existing material processing, many products, such as paper and film, require lamination after processing to improve their surface quality, moisture resistance, and abrasion resistance. After lamination, the material is cut. Traditional cutting equipment often suffers from problems such as complex structure, inconvenient operation, low precision, and poor versatility. For example, some equipment is cumbersome in terms of installing and changing material rolls, requiring significant time and manpower, severely impacting production efficiency. Moreover, during the pressing and cutting process, unreasonable mechanical design can easily lead to uneven cut surfaces, reducing product quality. Furthermore, traditional equipment has a relatively simple control method, making it difficult to achieve precise control and parameter adjustment of the processing, and failing to meet the diverse processing requirements of different products. Therefore, there is an urgent need for a double-sided lamination and cutting device that is simple in structure, easy to operate, provides stable pressing, and offers high cutting precision to meet the needs of modern industrial production. Utility Model Content

[0003] To address some of the problems existing in the prior art, this utility model provides a novel double-sided coated material cutting device, which is mainly used for cutting double-sided coated materials.

[0004] To achieve the above objectives, this utility model provides a novel double-sided coated material cutting device, comprising a device body, the device body including a support, the lower end of which is equipped with multiple columns and stably supported on the working ground; side plates are mounted on the support, the side plates being symmetrically arranged; a material roll assembly and a table are installed between the side plates, and a display screen control device is provided on the side plates; an electrical control box and a pressing and cutting mechanism are also provided on the support.

[0005] In operation, the device is first placed stably on the work surface using supports and column feet. The material roll assembly is installed between the side plates, and the material enters the pressing and cutting mechanism from the material roll assembly via the table. Next, the material roll is installed on the material roll connecting rod, which is fixed to the vertical mounting plate by a fixing block. Then, the first drive motor is started by operating the control box through the display screen control device. The first drive motor drives the drive wheel to rotate, which in turn drives the driven wheel, the third connecting rod, and the fourth connecting rod to rotate synchronously via the first belt. This causes the second pressing roller to cooperate with the first pressing roller to press the material. Then, when it is necessary to cut the material, the control box controls the second drive motor to start. The second drive motor drives the roller assembly via the second belt to move the blade holder and straight blade horizontally back and forth on the guide shaft assembly to achieve cutting. During this process, the induction switch group cooperates with the induction strip on the blade holder to monitor the position and movement status of the blade holder and straight blade in real time, ensuring the accuracy and safety of cutting.

[0006] The beneficial effects of this utility model are as follows: Through optimized structural design, this utility model achieves stable compression and precise cutting of materials. In terms of structural design, its compression and cutting mechanism, through unique connecting components and transmission methods, ensures the stability and coordination of connections between components, effectively improving the operational stability and reliability of the device. Regarding material handling, the material roll assembly, adaptable to different sizes of material rolls, and the cooperation of the compression rollers ensure the flatness and stability of the material during the cutting process, significantly improving product processing quality and reducing scrap rates. Simultaneously, the cutting assembly, driven by a second drive motor, propels the blade holder and straight blade to move horizontally reciprocating on the guide shaft assembly, achieving precise material cutting. The inductive switch assembly and inductive strip further enhance control accuracy and safety. Furthermore, the combination of the electrical control box and the display screen control device allows operators to intuitively control the motor's start / stop and speed, improving the automation level and operational convenience of the device. This meets the diverse processing needs of different industries and products, bringing significant economic benefits and competitive advantages to enterprise production, and possesses important innovative significance and application value.

[0007] As a further improvement of this utility model, in order to realize the up-and-down adjustment and flexible movement of the connecting rod and the pressing roller, and enhance the adaptability and pressing and cutting effect of the device, the pressing and cutting mechanism includes a mounting plate, under which a horizontal connecting plate and a vertical connecting plate are provided; fastening nut connecting assemblies are provided on the mounting plate and the horizontal connecting plate, and several fastening nut connecting assemblies are provided; the mounting plate is also symmetrically provided with a vertical mounting plate, and the vertical mounting plate is provided with a plurality of first strip-shaped slots; a first connecting rod and a second connecting rod are provided in the first strip-shaped slots, and a connecting block is movably provided at the end of the first connecting rod and the second connecting rod; the first connecting rod and the second connecting rod can rotate; the vertical mounting plate is also provided with a slide rail, and a slider is provided between the slide rail and the connecting block; a limit block is installed at the top of the slide rail, and a nut adjusting assembly is provided on the limit block and connected to the connecting block through the nut adjusting assembly; the connecting block can move up and down on the slide rail through the nut adjusting assembly, driving the first connecting rod and the second connecting rod to move synchronously; a first pressing roller is also installed on the second connecting rod.

[0008] As a further improvement of this utility model, in order to ensure the consistency of the movement of the two clamping rollers and improve the efficiency and stability of the clamping operation, a third connecting rod and a fourth connecting rod are also provided on the vertical mounting plate, and a driven wheel is installed on the end of each of the third and fourth connecting rods; a first drive motor is provided on the vertical connecting plate, and a drive wheel is installed on the output end of the first drive motor; a first belt is fitted on the driven wheel and the drive wheel, and the first drive motor drives the drive wheel to rotate and drives the driven wheel, the third connecting rod and the fourth connecting rod to rotate synchronously through the first belt; a second clamping roller is installed on the fourth connecting rod.

[0009] As a further improvement of this utility model, in order to achieve efficient and high-precision cutting of materials, improve the cutting quality of materials, and enhance the processing capacity of the device, the pressing and cutting mechanism further includes a cutting assembly, which is disposed at the lower end of the mounting plate. The cutting assembly includes a second drive motor, a fixed connecting plate, and a guide shaft assembly. A roller assembly is disposed on the fixed connecting plate. A second belt is provided between the roller assembly and the output end of the second drive motor, and a tool holder is also disposed on the second belt. A second slot is provided on the mounting plate, and a straight blade is also disposed on the tool holder. The guide shaft assembly passes through the tool holder, and the second drive motor drives the tool holder and the straight blade to move horizontally back and forth on the guide shaft assembly via the second belt.

[0010] As a further improvement of this utility model, in order to improve the degree of automation control and operational safety of the device, effectively prevent abnormal situations such as overtravel during operation of the tool holder, and ensure the stable operation of the equipment and the safety of the operators; the mounting plate is provided with an induction switch assembly, and multiple induction switch assemblies are provided corresponding to the edge of the second strip-shaped slot; the tool holder is also provided with an induction strip.

[0011] As a further improvement of this utility model, in order to facilitate the installation, replacement and maintenance of material rolls, improve the ease of operation of the device, reduce downtime when replacing material rolls, improve production efficiency, and make the device more flexible to adapt to the processing needs of different materials, a fixing block is installed on the vertical mounting plate, and a material roll connecting rod is provided on the fixing block; a material roll is fitted on the material roll connecting rod, and the material roll is used to carry materials and can be disassembled and replaced individually.

[0012] As a further improvement of this utility model, in order to optimize the processing, improve the intelligence and versatility of the device, and realize convenient and precise control of the device, the electrical control box is electrically connected to the display screen control device, which can be used to control the start, stop and speed of the first drive motor and the second drive motor. Attached Figure Description

[0013] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings:

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0015] Figure 2 This is a schematic diagram of the pressing and cutting mechanism in this utility model.

[0016] Figure 3 This is a schematic diagram of the cutting component in this utility model. Figure 1 .

[0017] Figure 4 This is a schematic diagram of the cutting component in this utility model. Figure 2 .

[0018] The components include: 1. Bracket; 2. Column base; 3. Electrical control box; 4. Display screen control device; 5. Side plate; 6. Material roll assembly; 7. Tabletop; 8. Pressing and cutting mechanism; 801. Mounting plate; 802. First drive motor; 803. Vertical connecting plate; 804. Drive wheel; 805. First belt; 806. Horizontal connecting plate; 807. Fastening nut connecting assembly; 808. Driven wheel; 809. Vertical mounting plate; 810. Connecting block; 811. Slider; 812. Slide rail; 813. Limiting block; 814. Fixing block; 815. Material roll connecting rod; 816. Material roll. 817 First clamping roller, 818 First connecting rod, 819 First slotted hole, 820 Second connecting rod, 821 Third connecting rod, 822 Second clamping roller, 823 Cutting assembly, 8231 Second drive motor, 8232 Fixed connecting plate, 8233 Roller assembly, 8234 Tool holder, 8235 Second belt, 8236 Straight blade, 8237 Guide shaft assembly, 8238 Sensing strip, 8239 Sensing switch assembly, 824 Second slotted hole, 825 Nut adjusting assembly, 826 Fourth connecting rod. Detailed Implementation

[0019] like Figure 1-4A novel double-sided coated material cutting device is shown, comprising a device body, characterized in that the device body includes a support 1, the lower end of which is equipped with multiple column feet 2 and stably supported on the working ground; side plates 5 are mounted on the support 1, the side plates 5 being symmetrically arranged; a material roll assembly 6 and a table surface 7 are installed between the side plates 5, and a display screen control device 4 is provided on the side plates 5; an electrical control box 3 and a pressing and cutting mechanism 8 are also provided on the support 1; the pressing and cutting mechanism 8 includes a mounting plate 801, below which a horizontal connecting plate 806 and a vertical connecting plate 803 are provided; fastening screws are passed through the mounting plate 801 and the horizontal connecting plate 806. The system includes a female connecting assembly 807, which has several fastening nut connecting assemblies. A vertical mounting plate 809 is symmetrically arranged on the mounting plate 801, and this vertical mounting plate 809 has multiple first strip-shaped slots 819. A first connecting rod 818 and a second connecting rod 820 pass through the first strip-shaped slots 819, and a connecting block 810 is movably mounted on the ends of the first connecting rod 818 and the second connecting rod 820. The first connecting rod 818 and the second connecting rod 820 are rotatable. A slide rail 812 is also provided on the vertical mounting plate 809, and a slider 811 is provided between the slide rail 812 and the connecting block 810. A limit block 813 is installed at the top of the slide rail 812. The limiting block 813 is equipped with a nut adjusting assembly 825, which is connected to the connecting block 810. The connecting block 810 can move up and down on the slide rail 812 via the nut adjusting assembly 825, driving the first connecting rod 818 and the second connecting rod 820 to move synchronously. A first pressing roller 817 is also installed on the second connecting rod 820. A third connecting rod 821 and a fourth connecting rod 826 are also passed through the vertical mounting plate 809, and driven wheels 808 are installed on the ends of the third connecting rod 821 and the fourth connecting rod 826. A first drive motor 802 is provided on the vertical connecting plate 803, and the output end of the first drive motor 802 is equipped with a... The driving wheel 804; the driven wheel 808 is fitted with a first belt 805, which drives the driving wheel 804 to rotate and drives the driven wheel 808, the third connecting rod 821, and the fourth connecting rod 826 to rotate synchronously through the first belt 805; a second pressing roller 822 is installed on the fourth connecting rod 826; the pressing and cutting mechanism 8 also includes a cutting assembly 823, which is located at the lower end of the mounting plate 801; the cutting assembly 823 includes a second driving motor 8231, a fixed connecting plate 8232, and a guide shaft assembly 8237, and a roller assembly 8233 is provided on the fixed connecting plate 8232;A second belt 8235 is provided between the roller assembly 8233 and the output end of the second drive motor 8231, and a tool holder 8234 is also provided on the second belt 8235; a second strip-shaped slot 824 is provided on the mounting plate 801, and a straight blade 8236 is also installed on the tool holder 8234; a guide shaft assembly 8237 is provided through the tool holder 8234, and the second drive motor 8231 drives the tool holder 8234 and the straight blade 8236 to move horizontally reciprocally on the guide shaft assembly 8237 via the second belt 8235; a sensor opening is provided on the mounting plate 801. The inductive switch assembly 8239 has multiple components corresponding to the edge of the second strip-shaped slot 824; the knife holder 8234 is also equipped with an inductive strip 8238; a fixing block 814 is mounted on the vertical mounting plate 809, and a material roll connecting rod 815 is provided on the fixing block 814; a material roll 816 is provided on the material roll connecting rod 815, which is used to carry materials and can be individually disassembled and replaced; the electrical control box 3 is electrically connected to the display screen control device 4 and can be used to control the start, stop and speed of the first drive motor 802 and the second drive motor 8231.

[0020] In operation, the device is first placed stably on the working ground using the bracket 1 and column feet 2. The material roll assembly 6 is installed between the side plates 5, and the material enters the pressing and cutting mechanism 8 from the material roll assembly 6 via the table 7. Next, the material roll 816 is installed on the material roll connecting rod 815, which is fixed to the vertical mounting plate 809 by the fixing block 814. Then, the first drive motor 802 is started by operating the control box 3 through the display screen control device 4. The first drive motor 802 drives the drive wheel 804 to rotate, which in turn drives the driven wheel 808, the third connecting rod 821, and the fourth connecting rod 802 via the first belt 805. 26 rotate synchronously, causing the second pressing roller 822 to cooperate with the first pressing roller 817 to press the material. Then, when it is necessary to cut the material, the electrical control box 3 controls the second drive motor 8231 to start. The second drive motor 8231 drives the roller assembly 8233 through the second belt 8235 to drive the knife holder 8234 and the straight blade 8236 to move horizontally and reciprocally on the guide shaft assembly 8237 to achieve cutting. During this process, the inductive switch assembly 8239 cooperates with the inductive strip 8238 on the knife holder 8234 to monitor the position and movement status of the knife holder 8234 and the straight blade 8236 in real time to ensure the accuracy and safety of cutting.

[0021] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are within its protection scope. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within its protection scope.

Claims

1. A novel double-sided coated material cutting device, comprising a device body, characterized in that, The device body includes a support (1), the lower end of which is equipped with multiple columns (2) and is stably supported on the working ground by the columns (2); side plates (5) are installed on the support (1), and the side plates (5) are symmetrically arranged; a material roll assembly (6) and a table (7) are installed between the side plates (5), and a display screen control device (4) is provided on the side plates (5); an electrical control box (3) and a pressing and cutting mechanism (8) are also provided on the support (1); the pressing and cutting mechanism (8) 8) Includes a mounting plate (801), below which are arranged a horizontal connecting plate (806) and a vertical connecting plate (803); fastening nut connecting assemblies (807) are provided on the mounting plate (801) and the horizontal connecting plate (806), and several fastening nut connecting assemblies (807) are provided; vertical mounting plates (809) are also symmetrically arranged on the mounting plate (801), and multiple first strip-shaped slots (819) are provided on the vertical mounting plates (809); A first connecting rod (818) and a second connecting rod (820) are inserted into the first strip-shaped slot (819). A connecting block (810) is movably disposed at the end of each of the first connecting rod (818) and the second connecting rod (820). The first connecting rod (818) and the second connecting rod (820) are rotatable. A slide rail (812) is also provided on the vertical mounting plate (809), and a slider (811) is disposed between the slide rail (812) and the connecting block (810). A limiting block (813) is installed at the top of the slide rail (812). The limiting block (813) is provided with a nut adjusting assembly (825) and is connected to the connecting block (810) through the nut adjusting assembly (825). The connecting block (810) can move up and down on the slide rail (812) through the nut adjusting assembly (825), driving the first connecting rod (818) and the second connecting rod (820) to move synchronously. The second connecting rod (820) is also provided with a first pressing roller (817).

2. The novel double-sided coated material cutting device according to claim 1, characterized in that: The vertical mounting plate (809) is also provided with a third connecting rod (821) and a fourth connecting rod (826), and a driven wheel (808) is installed at the end of each of the third connecting rod (821) and the fourth connecting rod (826); a first drive motor (802) is provided on the vertical connecting plate (803), and a drive wheel (804) is installed at the output end of the first drive motor (802); a first belt (805) is fitted on the driven wheel (808) and the drive wheel (804), and the first drive motor (802) drives the drive wheel (804) to rotate and drives the driven wheel (808), the third connecting rod (821) and the fourth connecting rod (826) to rotate synchronously through the first belt (805); a second pressing roller (822) is installed on the fourth connecting rod (826).

3. A novel double-sided coated material cutting device according to claim 1, characterized in that: The clamping and cutting mechanism (8) further includes a cutting assembly (823), which is disposed at the lower end of the mounting plate (801). The cutting assembly (823) includes a second drive motor (8231), a fixed connecting plate (8232), and a guide shaft assembly (8237). A roller assembly (8233) is disposed on the fixed connecting plate (8232). A second belt (8235) is provided between the roller assembly (8233) and the output end of the second drive motor (8231). The second belt (8235) is also provided with a tool holder (8234); the mounting plate (801) is provided with a second strip-shaped slot (824), and the tool holder (8234) is also provided with a straight blade (8236); the guide shaft assembly (8237) is provided through the tool holder (8234), and the second drive motor (8231) drives the tool holder (8234) and the straight blade (8236) to move horizontally back and forth on the guide shaft assembly (8237) through the second belt (8235).

4. A novel double-sided coated material cutting device according to claim 3, characterized in that: The mounting plate (801) is provided with a sensor switch assembly (8239), and the sensor switch assembly (8239) is provided with multiple corresponding to the edge of the second strip-shaped slot (824); the tool holder (8234) is also provided with a sensor strip (8238).

5. A novel double-sided coated material cutting device according to claim 1, characterized in that: A fixing block (814) is installed on the vertical mounting plate (809), and a material roll connecting rod (815) is provided on the fixing block (814); a material roll (816) is provided on the material roll connecting rod (815), and the material roll (816) is used to carry materials and can be disassembled and replaced individually.

6. A novel double-sided coated material cutting device according to claim 1, characterized in that: The electrical control box (3) is electrically connected to the display screen control device (4) and can be used to control the start, stop and speed of the first drive motor (802) and the second drive motor (8231).