Measuring tape printing film glazing oil pasting plate head production equipment

Through the integrated online integrated printing, varnishing, coating and patch head processes, combined with UV curing and high frequency heating technology, the problems of low efficiency, high energy consumption, large losses and high labor costs in the production of tape measure are solved, and efficient and environmentally friendly automated production is achieved.

CN120481468APending Publication Date: 2025-08-15ZHUHAI HUIHONG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202510932346.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

There are problems in the production process of existing tape measure, low production efficiency, high labor costs, insufficient quality stability, high energy consumption and environmental protection, especially serious losses and pollution caused by inter-process handling.

Method used

The integrated online printing, varnishing, coating, and patch head technology is adopted, combined with UV curing and high-frequency heating technology, and continuous production is achieved through the speed control mechanism and tension control, and manual handling is eliminated, and a modular design is adopted to simplify material flow.

Benefits of technology

It improves production efficiency, reduces energy consumption and volatile organic compounds emissions, reduces head and tail losses, realizes automated production, reduces labor costs and improves product qualification rates.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses tape printing, film coating, oil polishing and plate head pasting production equipment, and relates to the technical field of tape production. The tape printing, film coating, oil polishing and plate head pasting production equipment comprises a left feeding and discharging box, a left storage box, a printer box, a film coating and plate head pasting machine box, a right storage box and a right feeding and discharging box; the left feeding and discharging box, the left material storage box, the printer box, the film laminating plate pasting head machine box, the right material storage box and the right feeding and discharging box are sequentially arranged from left to right, and the left feeding and discharging box and the right feeding and discharging box are each internally provided with a material collecting and discharging mechanism. According to the invention, the processes of printing, gloss oil applying, film covering and plate head pasting are integrated on line, so that the carrying waiting among the working procedures is eliminated to improve the production efficiency, and the energy consumption and the emission of volatile organic compounds are reduced by adopting the UV curing and high-frequency heating technologies; an online continuous production mode is matched with a constant speed mechanism and tension control to reduce the head and tail loss of the gloss oil applying and film covering procedures so as to improve the percent of pass.
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Description

Technical Field

[0001] The invention relates to the technical field of tape measure production, in particular to a device for producing a tape measure printing, laminating, varnishing and plate-mounting head. Background Art

[0002] As a common measurement tool, the core performance of tape measures depends on their precision, wear resistance, and durability. Typically made of metal or polymer materials, tapes undergo surface processing such as printing, protective treatment, and end reinforcement to ensure clear scales, corrosion resistance, and stretch resistance. The clarity of the printed pattern, the uniformity of the varnish coating, the fit of the lamination, and the firmness of the plate attachment all directly impact the user experience and service life of the tape measure. Therefore, optimizing the tape production process has become a key area of technological advancement for the industry.

[0003] The most advanced tape printer in the industry is an inkjet printer with a speed of 50 meters per minute. Varnishing is applied using a traditional varnishing machine, which moves the printed tape trays to the varnishing machine for coating. The varnishing machine currently operates at a speed of 8 to 15 meters per minute. Lamination also involves moving the printed tape trays to the laminating machine for lamination. The plate-mounting process involves punching the varnished or laminated tape before moving it to the plate-mounting machine for mounting.

[0004] The current existing production methods have the following shortcomings: (1) low production efficiency. The time spent on transportation between processes does not match the speed of the equipment, which seriously drags down the overall production capacity, and the materials at the head and tail ends suffer a lot of loss due to frequent start and stop; (2) high labor costs. Each link requires a dedicated person to be responsible for transportation, loading and equipment operation. The plate head mounting process relies more on intensive manpower input; (3) insufficient quality stability. The tape is easily contaminated or pulled and deformed during transportation. The head and tail loss rate of varnish and lamination is extremely high, resulting in a lower pass rate; (4) energy consumption and environmental protection issues are prominent. The traditional heating and curing method consumes a lot of energy, and the emission of volatile organic compounds exceeds the standard. In addition, the multi-link transportation leads to a sharp increase in the complexity of material management, making it difficult to achieve automated quality traceability.

[0005] To this end, we provide a tape printing, laminating, varnishing and plate mounting head production equipment to solve the above-mentioned problems. Summary of the Invention

[0006] The object of the present invention is to provide a tape printing, laminating, varnishing and plate-mounting head production device to solve the problems raised in the above background technology.

[0007] To achieve the above object, the present invention provides the following technical solutions:

[0008] A tape measure printing, laminating, varnishing and plate-mounting head production equipment, comprising a left feed box, a left material storage box, a printing case, a laminating and plate-mounting head case, a right material storage box and a right feed box, wherein the left feed box, the left material storage box, the printing case, the laminating and plate-mounting head case, the right material storage box and the right feed box are arranged in sequence from left to right, the left feed box and the right feed box are both provided with a material retracting and releasing mechanism, the left material storage box and the right material storage box are both provided with a material storage mechanism, the printing case is provided with a conveying assembly for conveying the tape measure, the printing case is also provided with an inkjet assembly that cooperates with the conveying assembly to print on the tape measure, and the lower end of the printing case is provided with a curing assembly for curing ink;

[0009] The laminating and pasting head chassis is provided with several first guide wheels for guiding the ruler tape, the laminating and pasting head chassis is provided with a laminating assembly on the side close to the printing chassis, the laminating and pasting head chassis is provided with a glue coating assembly at a position below the laminating assembly, the laminating and pasting head chassis is provided with a fifth fixed-speed wheel at the upper end close to the right storage box, the laminating and pasting head chassis is provided with a sixth fixed-speed wheel at the lower end, the laminating and pasting head chassis is provided with a heating assembly at the upper end close to the fifth fixed-speed wheel, the laminating and pasting head chassis is provided with several brushes at a position between the heating assembly and the laminating assembly, and matching rollers are provided under the brushes, and the laminating and pasting head chassis is provided with a pasting head mechanism at a position between the heating assembly and the fifth fixed-speed wheel.

[0010] As a further solution of the present invention: the material receiving and unloading mechanism includes an inner-box mounting plate, which is fixedly connected to the inside of the left input and output box and the right input and output box respectively, and a material discharge tray is provided at the upper end of the inner-box mounting plate, and a material receiving tray is provided at the lower end of the inner-box mounting plate, and a third guide wheel for guiding the tape is provided at the corners of the inner-box mounting plate, and a tension sensor is provided on one side of the inner-box mounting plate near the third guide wheel.

[0011] As a further solution of the present invention: the storage mechanism includes a fixed plate, which is fixedly connected to the inside of the left storage box and the right storage box respectively; a first constant-speed wheel is provided on one side of the fixed plate; a pressure wheel cylinder is fixedly connected to the position of the fixed plate near the first constant-speed wheel; a matching pressure wheel is installed at the output end of the pressure wheel cylinder; a wheel frame is provided at the upper and lower ends of the fixed plate, and a number of storage wheels are rotatably connected to the wheel frame; a clamping cylinder is fixedly connected to the position of the fixed plate near the vertically running tape; a splint is fixedly connected to the position of the fixed plate near the entrainment cylinder; the splint and the entrainment cylinder are distributed on both sides of the tape.

[0012] As a further solution of the present invention: the conveying assembly includes a fourth constant-speed wheel, the fourth constant-speed wheel is arranged at the upper end of the printing chassis close to the laminating and mounting head chassis, a second constant-speed wheel is provided at the middle upper end of the printing chassis, a third constant-speed wheel is provided in the middle of the side of the printing chassis close to the laminating and mounting head chassis, an encoding wheel is provided at the position of the printing chassis close to the second constant-speed wheel, and a first heavy hammer is also provided at the lower end of the printing chassis close to the laminating and mounting head chassis.

[0013] As a further solution of the present invention: the inkjet assembly includes a first conveying wheel, which is arranged on a side of the printing case close to the left material storage box, and the printing case is provided with a second conveying wheel at a position between the second constant-speed wheel and the third constant-speed wheel. A connecting shaft is rotatably connected between the first conveying wheel and the second conveying wheel, and the connecting shaft is fixedly connected to the printing case. The end of the connecting shaft is fixedly connected to a support rod, and an ink cartridge is provided on the top of the support rod. The printing case is provided with an inkjet head at a position above the first conveying wheel and the second conveying wheel.

[0014] As a further solution of the present invention: the curing assembly includes a second UVD lamp, which is arranged on one side of the lower end of the printing box, and a first UVD lamp is also provided on the other side of the lower end of the printing box. A plurality of second guide wheels are provided at the lower end of the printing box near the second UVD lamp and the first UVD lamp.

[0015] As a further solution of the present invention: the laminating assembly includes a high-frequency heater, which is installed on the side of the left inlet and outlet box close to the left storage box, and the laminating head chassis is respectively provided with an upper film unwinding wheel and a lower film unwinding wheel at positions above and below the high-frequency heater, and the laminating head chassis is provided with two pressing wheels for pressing the lamination near the outlet of the high-frequency heater.

[0016] As a further solution of the present invention: the gluing assembly includes a second coating mechanism and a first coating mechanism, the second coating mechanism and the first coating mechanism are arranged on the side of the laminating and plate-mounting head chassis close to the printing chassis, the second coating mechanism and the first coating mechanism respectively coat the two surfaces of the tape, and the laminating and plate-mounting head chassis is also provided with a head jumping mechanism near the sixth fixed speed wheel.

[0017] As a further solution of the present invention: the heating component heating wheel, the heating wheel is arranged at the upper end of the laminating and pasting head chassis, a pushing cylinder is installed above the heating wheel, an upper pressing wheel is installed at the output end of the pushing cylinder, the upper pressing wheel is adapted to the heating wheel, and a flanging mechanism is provided at a position of the laminating and pasting head chassis near the heating wheel.

[0018] As a further solution of the present invention: a material storage guide wheel is provided at the lower end of the laminating and mounting head chassis, a second heavy hammer is provided on one side of the material storage guide wheel, and a controller is also provided on the laminating and mounting head chassis.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] The present invention integrates printing, varnishing, laminating and plate-mounting processes online, eliminates waiting time for transportation between processes to improve production efficiency, adopts UV curing and high-frequency heating technology to reduce energy consumption and volatile organic compound emissions, and reduces the head and tail losses of varnishing and laminating processes through online continuous production mode in conjunction with a constant speed mechanism and tension control to improve the qualified rate, eliminates manual transportation and realizes automation of the plate-mounting process to reduce labor costs. At the same time, modular design is used to save factory area and simplify the material flow path, systematically solving the problems of low efficiency, high energy consumption, large losses, high cost and complex management in traditional production. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a structural schematic diagram of the present invention.

[0022] Figure 2 It is a structural schematic diagram of the inlet and outlet boxes in the present invention.

[0023] Figure 3 It is a structural schematic diagram of the storage box in the present invention.

[0024] Figure 4 It is a structural schematic diagram of the printing box in the present invention.

[0025] Figure 5 It is a structural diagram of the laminating and mounting head chassis in the present invention.

[0026] Among them: 1. Left material inlet and outlet box; 2. Left material storage box; 3. Printer box; 4. Laminating and mounting head box; 5. Right material storage box; 6. Right material inlet and outlet box; 7. Controller;

[0027] 101. Unloading tray; 102. Tension sensor; 103. Third guide wheel; 104. Receiving tray; 105. Mounting plate inside the box;

[0028] 201, entrainment cylinder; 202, cooperating pressure wheel; 203, first constant speed wheel; 204, wheel frame; 205, storage wheel; 206, fixed plate;

[0029] 301, first conveyor wheel; 302, inkjet head; 303, encoder wheel; 304, second constant-speed wheel; 305, second conveyor wheel; 306, first guide wheel; 307, fourth constant-speed wheel; 308, third constant-speed wheel; 309, first weight; 310, second guide wheel; 311, first UVD lamp; 312, second UVD lamp; 313, ink cartridge connection;

[0030] 401. Upper film unwinding wheel; 402. Brush; 403. Flanging mechanism; 404. Heating wheel; 405. Pushing cylinder; 406. Upper pressing wheel; 407. Fifth constant-speed wheel; 408. Plate-mounting head mechanism; 409. Second heavy hammer; 410. Material storage guide wheel; 411. Sixth constant-speed wheel; 412. Film pressing wheel; 413. Jumping head mechanism; 414. Lower film unwinding wheel; 415. First coating mechanism; 416. Second coating mechanism; 417. High-frequency heater. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] See also Figure 1-Figure 5In the embodiment of the present invention, a tape measure printing, laminating, varnishing and plate-mounting head production equipment comprises a left feed box 1, a left material storage box 2, a printing box 3, a laminating and plate-mounting head chassis 4, a right material storage box 5 and a right feed box 6, characterized in that the left feed box 1, the left material storage box 2, the printing box 3, the laminating and plate-mounting head chassis 4, the right material storage box 5 and the right feed box 6 are arranged in sequence from left to right, and the left feed box 1 and the right feed box 6 are both provided with a material receiving and unloading mechanism, and the material receiving and unloading mechanism comprises an inner mounting plate 105, the inner mounting plate 105 is respectively fixedly connected to the inside of the left feed box 1 and the right feed box 6, the upper end of the inner mounting plate 105 is provided with a discharge tray 101, and the lower end of the inner mounting plate 105 is provided with a discharge tray A material receiving tray 104 is provided, and third guide wheels 103 for guiding the tape are provided at the corners of the mounting plate 105 in the box. A tension sensor 102 is provided on one side of the mounting plate 105 in the box near the third guide wheel 103; the material discharging tray 101 is used to place the raw material roll, and the unwinding speed is adjusted by the magnetic powder brake tension control system to prevent the material from loosening or breaking. The material receiving tray 104 is used to roll the tape that has completed all processes into a disc, which is driven by a servo motor and synchronized with the production line speed. The tension sensor 102 is used to detect the position and tension of the tape in real time, adjust the discharging or receiving speed, and prevent the material from deviating. Multiple third guide wheels 103 constitute a wheel group, which is used to guide the material to be transmitted along the specified path to ensure accurate positioning.

[0033] The left storage box 2 and the right storage box 5 are both provided with a storage mechanism, and the storage mechanism includes a fixed plate 206, and the fixed plate 206 is fixedly connected to the left storage box 2 and the right storage box 5 respectively. A first constant-speed wheel 203 is provided on one side of the fixed plate 206, and a pressure wheel cylinder is fixedly connected to the position of the fixed plate 206 near the first constant-speed wheel 203, and a matching pressure wheel 202 is installed at the output end of the pressure wheel cylinder. The upper and lower ends of the fixed plate 206 are both provided with a wheel frame 204, and a number of storage wheels 205 are rotatably connected to the wheel frame 204. The fixed plate 206 is close to the vertical running ruler tape. The position is fixedly connected to the entrainment cylinder 201, and the fixed plate 206 is fixedly connected to the position of the entrainment cylinder 201, and the plywood and the entrainment cylinder 201 are distributed on both sides of the tape; a storage channel can be formed by setting the second fixed-speed wheel 304 and the storage wheel 205, and the material is stacked and stored through the multi-layer storage wheels 205, and the wheel frame 204 is slidably connected to the slide rod on the fixed plate 206. The wheel frame 204 can be driven by the cylinder to adjust the height, and then the storage amount can be adjusted. The first fixed-speed wheel 203 is driven by a servo motor, and is used to synchronize the tape with the main line speed to ensure that the material enters and exits at a uniform speed.

[0034] The interior of the printing case 3 is provided with a conveying assembly for conveying the tape, and the conveying assembly includes a fourth fixed-speed wheel 307, which is provided at the upper end of the printing case 3 close to the laminating and pasting head case 4, a second fixed-speed wheel 304 is provided at the middle upper end of the printing case 3, a third fixed-speed wheel 308 is provided in the middle of the side of the printing case 3 close to the laminating and pasting head case 4, an encoding wheel 303 is provided at the position of the printing case 3 close to the second fixed-speed wheel 304, and a first weight 309 is provided at the lower end of the printing case 3 close to the laminating and pasting head case 4; the second fixed-speed wheel 304, the fourth fixed-speed wheel 307 and the third fixed-speed wheel 308 are all driven by a servo motor, and uniform traction is applied at different stages of the tape, and the tape is synchronized with the main line speed to ensure the accuracy of transportation, and the first weight 309 and the first guide wheel 306 are used to maintain stable material tension and ensure a smooth printing process.

[0035] An inkjet assembly that cooperates with the conveying assembly to print on the tape is also provided inside the printing case 3. The inkjet assembly includes a first conveying wheel 301, which is provided on the side of the printing case 3 close to the left material storage box 2. The printing case 3 is provided with a second conveying wheel 305 between the second constant-speed wheel 304 and the third constant-speed wheel 308. A connecting shaft is rotatably connected between the first conveying wheel 301 and the second conveying wheel 305, and the connecting shaft is fixedly connected to the printing case 3. A support rod is fixedly connected to the end of the connecting shaft, and an ink cartridge 313 is provided on the top of the support rod. An inkjet head 302 is provided above the first conveying wheel 301 and the second conveying wheel 305 in the printing case 3. The two groups of inkjet heads work simultaneously to achieve high-speed printing. The encoding wheel 303 is used to detect the material travel distance in real time, accurately control the printing position, and avoid deviation. The ink cartridge 313 is provided to receive excess ink.

[0036] The lower end of the printing case 3 is provided with a curing component for curing the ink; the curing component includes a second UVD lamp 312, which is provided on one side of the lower end of the printing case 3, and a first UVD lamp 311 is provided on the other side of the lower end of the printing case 3. A plurality of second guide wheels 310 are provided at the lower end of the printing case 3 near the second UVD lamp 312 and the first UVD lamp 311; the second UVD lamp 312 is used to perform ultraviolet curing on the printed ink, drying it instantly, and improving the wear resistance and adhesion of the ink.

[0037] The laminating head chassis 4 is provided with several first guide wheels 306 for guiding the tape, and the laminating head chassis 4 is provided with a laminating assembly on the side close to the printing chassis 3, and the laminating assembly includes a high-frequency heater 417, and the high-frequency heater 417 is installed on the side of the left inlet and outlet box 1 close to the left storage box 2. The laminating head chassis 4 is provided with an upper film unwinding wheel 401 and a lower film unwinding wheel 414 respectively above and below the high-frequency heater 417, and the laminating head chassis 4 is provided with two pressing wheels 412 for pressing the laminating film near the outlet of the high-frequency heater 417; the upper film unwinding wheel 401 is equipped with a magnetic powder brake and cooperates with the tension system to adjust the tension according to the film width so that the film fits the tape smoothly, and the pressing wheel 412 is provided for pressing the film on the tape, and the high-frequency heater 417 is provided. At the same time, the high-frequency heater 417 is provided for drying and preheating the varnish to ensure that the film and the tape are in close contact during the laminating process.

[0038] The laminating head chassis 4 is provided with a gluing assembly at a position below the laminating assembly, and the gluing assembly includes a second coating mechanism 416 and a first coating mechanism 415. The second coating mechanism 416 and the first coating mechanism 415 are arranged on the side of the laminating head chassis 4 close to the printing chassis 3. The second coating mechanism 416 and the first coating mechanism 415 coat the two sides of the tape respectively. The laminating head chassis 4 is also provided with a jumping head mechanism 413 near the sixth constant speed wheel 411; after the tape enters the laminating head chassis 4 of the laminating head machine, it is first coated with varnish on both sides by the second coating mechanism 416 and the first coating mechanism 415 of the gluing assembly. The first coating mechanism 415 and the second coating mechanism 416 correspond to the two sides of the tape respectively, and the pressure of the gluing wheel is controlled by the cylinder to ensure uniform coating.

[0039] The upper end of the laminating and pasting head chassis 4 near the right storage box 5 is provided with a fifth fixed speed wheel 407, the lower end of the laminating and pasting head chassis 4 is provided with a sixth fixed speed wheel 411, the upper end of the laminating and pasting head chassis 4 near the fifth fixed speed wheel 407 is provided with a heating component, the heating component heating wheel 404, the heating wheel 404 is located at the upper end of the laminating and pasting head chassis 4, and a pushing cylinder 405 is installed above the heating wheel 404, and the output end of the pushing cylinder 405 is installed. An upper pressing wheel 406 is provided, which is matched with the heating wheel 404. A flanging mechanism 403 is provided near the heating wheel 404 in the laminating and mounting head chassis 4. After gluing, the upper film and the lower film are guided by guide rollers, and are fitted with the tape by high-frequency heating by the upper pressing wheel 406 and the heating wheel 404. The heating wheel melts the glue layer through high-frequency technology to ensure that the film and the tape are tightly combined. The brush 402 and the flanging mechanism 403 are used to fold and compact the edge of the film to avoid warping.

[0040] The laminating and pasting head chassis 4 is provided with several brushes 402 at a position between the heating component and the laminating component, and matching rollers are provided under the brushes 402. The upper end of the laminating and pasting head chassis 4 is provided with a pasting head mechanism 408 at a position between the heating component and the fifth constant-speed wheel 407; the lower end of the laminating and pasting head chassis 4 is provided with a material storage guide wheel 410, and the laminating and pasting head chassis 4 is provided with a second heavy hammer 409 on one side of the material storage guide wheel 410. The laminating and pasting head chassis 4 is also provided with a controller 7; the controller 7 uses a programmable controller as a central control unit to coordinate the actions of various devices, monitor the speed, tension, temperature and other parameters of each link in real time, and automatically adjust abnormalities.

[0041] The working principle of the present invention is as follows: during operation, the discharge tray 101 in the left feed and discharge box 1 releases the tape raw material under the action of the magnetic powder brake tension control system, and enters the left storage box 2 after being guided by the third guide wheel 103. The left storage box 2 stacks and stores the tape through the storage wheel 205. The storage amount is adjusted by the pressure wheel cylinder and the first fixed speed wheel 203 and the main line speed is synchronized. The tape enters the printing box 3, and the second fixed speed wheel 304, the third fixed speed wheel 308, and the fourth fixed speed wheel 307 in the conveying assembly pull the tape. The encoder wheel 303 detects the travel distance, and the inkjet head 302 prints the pattern accordingly. After printing, the ink is cured by ultraviolet rays of the first UVD lamp 311 and the second UVD lamp 312, and the tape enters the laminating and mounting head chassis 4. The first coating mechanism 415, The second coating mechanism 416 applies varnish on both sides, the upper film unwinding wheel 401 and the lower film unwinding wheel 414 release the film, and the film is laminated by the pressing wheel 412 after being preheated by the high-frequency heater 417. The heating wheel 404 and the upper pressing wheel 406 melt the glue layer through high-frequency heating, the flanging mechanism 403 folds the edge of the film, and the plate head mechanism 408 sticks the plate head on the end of the tape. The fifth fixed-speed wheel 407 and the sixth fixed-speed wheel 411 are positioned, and the second heavy hammer 409 and the storage guide wheel 410 transport it stably. The processed tape enters the right storage box 5 for buffering, and is then reeled by the receiving tray 104 of the right inlet and outlet box 6 driven by the servo motor. The controller 7 coordinates the actions of various components throughout the process, and monitors parameters such as speed, tension, and temperature in real time to ensure continuous and accurate production.

[0042] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Although this specification describes the embodiments, not every embodiment contains only one technical solution. This description is for clarity only. Those skilled in the art should read the specification as a whole. The technical solutions in the various embodiments can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A tape printing, laminating, varnishing and plate-mounting head production equipment, comprising a left feed and discharge box (1), a left material storage box (2), a printing box (3), a laminating and plate-mounting head machine box (4), a right material storage box (5) and a right feed and discharge box (6), characterized in that: The left material inlet and outlet box (1), the left material storage box (2), the printing case (3), the laminating and plate-mounting head case (4), the right material storage box (5) and the right material inlet and outlet box (6) are arranged in sequence from left to right. The left material inlet and outlet box (1) and the right material inlet and outlet box (6) are both provided with a material retracting and releasing mechanism. The left material storage box (2) and the right material storage box (5) are both provided with a material storage mechanism. The printing case (3) is provided with a conveying assembly for conveying the tape. The printing case (3) is also provided with an inkjet assembly for cooperating with the conveying assembly to print the tape. The lower end of the printing case (3) is provided with a curing assembly for curing the ink. The laminating and pasting head chassis (4) is provided with a plurality of first guide wheels (306) for guiding the tape, the laminating and pasting head chassis (4) is provided with a laminating assembly on the side close to the printing chassis (3), the laminating and pasting head chassis (4) is provided with a glue coating assembly at a position below the laminating assembly, the laminating and pasting head chassis (4) is provided with a fifth speed-fixing wheel (407) on the upper end close to the right material storage box (5), and the laminating and pasting head chassis (4) is provided with a lower end side. There is a sixth constant speed wheel (411), a heating component is provided at the upper end of the laminating and pasting head chassis (4) near the fifth constant speed wheel (407), a plurality of brushes (402) are provided at the position between the heating component and the laminating component of the laminating and pasting head chassis (4), and matching rollers are provided below the brushes (402), and a pasting head mechanism (408) is provided at the upper end of the laminating and pasting head chassis (4) between the heating component and the fifth constant speed wheel (407).

2. The tape printing laminating varnishing and plate-mounting head production equipment according to claim 1 is characterized in that: The material receiving and unloading mechanism comprises an inner-box mounting plate (105), the inner-box mounting plate (105) being fixedly connected to the inside of the left inlet and outlet box (1) and the right inlet and outlet box (6), respectively; a material unloading tray (101) is provided at the upper end of the inner-box mounting plate (105), a material receiving tray (104) is provided at the lower end of the inner-box mounting plate (105), a third guide wheel (103) for guiding the tape is provided at the corner of the inner-box mounting plate (105), and a tension sensor (102) is provided on one side of the inner-box mounting plate (105) near the third guide wheel (103).

3. The tape printing laminating varnishing and plate-mounting head production equipment according to claim 1 is characterized in that: The material storage mechanism comprises a fixed plate (206), wherein the fixed plate (206) is fixedly connected to the inside of the left material storage box (2) and the right material storage box (5), respectively; a first constant speed wheel (203) is provided on one side of the fixed plate (206); a pressure wheel cylinder is fixedly connected to the fixed plate (206) at a position close to the first constant speed wheel (203); a matching pressure wheel (202) is installed at the output end of the pressure wheel cylinder; a wheel frame (204) is provided at the upper and lower ends of the fixed plate (206); a plurality of material storage wheels (205) are rotatably connected to the wheel frame (204); a clamping cylinder (201) is fixedly connected to the fixed plate (206) at a position close to the vertical running tape; a clamping plate is fixedly connected to the fixed plate (206) at a position close to the clamping cylinder (201); the clamping plate and the clamping cylinder (201) are distributed at positions on both sides of the tape.

4. The tape printing laminating varnishing and plate attaching head production equipment according to claim 1, characterized in that: The conveying assembly comprises a fourth constant-speed wheel (307), the fourth constant-speed wheel (307) being arranged at an upper end of a side of the printing case (3) close to the laminating and pasting head case (4), a second constant-speed wheel (304) being arranged at an upper middle end of the printing case (3), a third constant-speed wheel (308) being arranged at a middle portion of a side of the printing case (3) close to the laminating and pasting head case (4), an encoding wheel (303) being arranged at a position of the printing case (3) close to the second constant-speed wheel (304), and a first heavy hammer (309) being arranged at a lower end of a side of the printing case (3) close to the laminating and pasting head case (4).

5. The tape printing laminating varnishing and plate attaching head production equipment according to claim 4, characterized in that: The inkjet assembly comprises a first conveying wheel (301), the first conveying wheel (301) being arranged on a side of a printing case (3) close to a left material storage box (2), the printing case (3) being provided with a second conveying wheel (305) at a position between a second constant-speed wheel (304) and a third constant-speed wheel (308), a connecting shaft being rotatably connected between the first conveying wheel (301) and the second conveying wheel (305), the connecting shaft being fixedly connected to the printing case (3), the end of the connecting shaft being fixedly connected to a support rod, the top of each support rod being provided with an ink cartridge (313), and the printing case (3) being provided with an inkjet head (302) at a position above the first conveying wheel (301) and the second conveying wheel (305).

6. The tape printing laminating varnishing and plate attaching head production equipment according to claim 5, characterized in that: The curing assembly comprises a second UVD lamp (312), the second UVD lamp (312) being arranged on one side of the lower end of the printing case (3), a first UVD lamp (311) being further arranged on the other side of the lower end of the printing case (3), and a plurality of second guide wheels (310) being arranged at positions near the second UVD lamp (312) and the first UVD lamp (311) at the lower end of the printing case (3).

7. The tape printing, laminating, varnishing and plate-mounting head production equipment according to claim 6, characterized in that: The laminating assembly includes a high-frequency heater (417), which is installed on the side of the left inlet and outlet box (1) close to the left storage box (2), and the laminating head chassis (4) is provided with an upper film unwinding wheel (401) and a lower film unwinding wheel (414) at positions above and below the high-frequency heater (417), respectively. The laminating head chassis (4) is provided with two pressing wheels (412) for pressing the laminating film at a position close to the outlet of the high-frequency heater (417).

8. The tape printing, laminating, varnishing and plate-mounting head production equipment according to claim 7, characterized in that: The glue coating assembly comprises a second coating mechanism (416) and a first coating mechanism (415). The second coating mechanism (416) and the first coating mechanism (415) are arranged on a side of the laminating and plate-mounting head chassis (4) close to the printing chassis (3). The second coating mechanism (416) and the first coating mechanism (415) coat the two surfaces of the tape respectively. A jump head mechanism (413) is also provided on the laminating and plate-mounting head chassis (4) close to the sixth fixed speed wheel (411).

9. The tape printing, laminating, varnishing and plate-mounting head production equipment according to claim 8, characterized in that: The heating assembly heating wheel (404) is arranged at the upper end of the laminating and pasting head chassis (4); a pushing cylinder (405) is installed above the heating wheel (404); an upper pressing wheel (406) is installed at the output end of the pushing cylinder (405); the upper pressing wheel (406) is adapted to the heating wheel (404); and a flanging mechanism (403) is provided at a position of the laminating and pasting head chassis (4) near the heating wheel (404).

10. The tape printing laminating varnishing and plate attaching head production equipment according to claim 1, characterized in that: A material storage guide wheel (410) is provided at the lower end of the laminating and pasting head chassis (4), a second heavy hammer (409) is provided on one side of the material storage guide wheel (410) of the laminating and pasting head chassis (4), and a controller (7) is also provided on the laminating and pasting head chassis (4).