Material belt splicing equipment

By setting up a structure that combines the hood and the base in the tape splicing equipment, and using conveying holes and riveting components to achieve automatic splicing of the tape, the problems of inconvenience in operation and safety hazards of existing equipment are solved, and an efficient and safe tape splicing process is achieved.

CN223117756UActive Publication Date: 2025-07-18SHENZHEN XINRUI AUTOMATION TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421809004.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-07-18
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

Existing automation equipment needs to frequently open the protective cover during the tape splicing process, which leads to inconvenient operation and safety hazards.

Method used

A material belt splicing equipment is designed, which adopts a structure that combines the hood and the base. The hood is equipped with a conveying hole. The material belt and copper buckle are placed in the material assembly mechanism through the opening. The splicing is completed by using the riveting component and the adhesive assembly. The hood is opened only after the splicing is completed.

Benefits of technology

It improves the convenience and safety of operation, reduces the opening frequency of the protective cover, and ensures the smooth and safe splicing process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223117756U_ABST
    Figure CN223117756U_ABST
Patent Text Reader

Abstract

The utility model provides material belt splicing equipment which comprises a machine base arranged on the ground in the vertical direction. The machine cover is located at the end deviating from the ground and connected with the machine base, and a working area is jointly formed in the machine base and the machine cover; the material splicing mechanism is fixedly connected with the machine base and located in a working area, the machine cover is arranged on the material splicing mechanism in a covering mode, and a conveying open hole is formed in the end, close to the material splicing mechanism, of the machine cover so as to convey two material belts and copper buckles; wherein the machine cover is not opened, the material belts and the copper buckles are placed in the material splicing mechanism through the conveying open holes, the material splicing mechanism uses the copper buckles to rivet the two material belts and uses adhesive tape to glue the two material belts, and after the two material belts are spliced, the machine cover is opened. Through the structure, the operation convenience is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of automated production, and particularly to a tape splicing device. Background Art

[0002] Currently, there is a technology that uses automated equipment to achieve the automated splicing of the tail of an old tape reel and the head of a new tape reel. The introduction of this technology makes the switching between SIM tapes on the tape reel more efficient.

[0003] In the automated equipment of the prior art, a shearing mechanism is used, which can cause certain harm to the human body. Most people choose to cover this tape splicing equipment with a protective cover to play a role of safety isolation. However, when covering the splicing equipment with a protective cover, the user needs to open the protective cover when placing the tape for splicing and after the splicing is completed.

[0004] Therefore, a tape splicing device that improves the convenience of operation is needed. Summary of the Utility Model

[0005] In view of this, it is necessary to provide a tape splicing device that improves the convenience of operation to solve the above problems.

[0006] An embodiment of this application provides a tape splicing device, including:

[0007] A machine base, vertically arranged on the ground;

[0008] A machine cover, located at one end facing away from the ground, connected to the machine base, and a working area is jointly formed inside the machine base and the machine cover;

[0009] A tape splicing mechanism, fixedly connected to the machine base and located in the working area, and the machine cover covers the tape splicing mechanism. An opening for conveying is provided at one end of the machine cover close to the tape splicing mechanism to convey two tapes and copper buttons;

[0010] Among them, without opening the machine cover, the tape and the copper button are placed in the tape splicing mechanism through the conveying opening. The tape splicing mechanism uses copper buttons to rivet the two tapes and uses tape to glue the two tapes. After the two tapes are spliced, the machine cover is opened.

[0011] In at least one embodiment of this application, the tape splicing mechanism includes:

[0012] A first fixing plate, one end of which is fixedly connected to the machine base;

[0013] The conveying assembly is fixedly connected to the other end of the first fixing plate and is arranged along the length of the material splicing mechanism. Two conveying directions for conveying towards each other are arranged at both ends of the conveying assembly along the length of the material splicing mechanism. One strip of material is conveyed in one conveying direction, and the other strip of material is conveyed in the other conveying direction. The area where the conveying assembly conveys the strip of material is directly opposite to the conveying opening.

[0014] In at least one embodiment of the present application, the material splicing mechanism further includes:

[0015] The riveting assembly is fixedly connected to the end of the first fixing plate facing away from the machine base, receives and shears the copper buckle, and is connected to the conveying assembly. The riveting assembly slides along the width of the material splicing mechanism to approach the conveying assembly, and slides along the height of the material splicing mechanism to approach the two strips of material for sliding and is located at the splicing position of the two strips of material, and the copper buckle is riveted to the two strips of material.

[0016] In at least one embodiment of the present application, the material splicing mechanism further includes:

[0017] The glue pasting assembly is located at the end of the conveying assembly away from the first fixing plate. The glue pasting assembly slides along the width of the material splicing mechanism to approach above the splicing position of the two strips of material. The glue pasting assembly slides along the height of the material splicing mechanism to drive the adhesive tape to be glued to the two strips of material.

[0018] In at least one embodiment of the present application, the material splicing mechanism includes:

[0019] The second fixing plate, one end of which is connected to the machine base, is horizontally arranged with the first fixing plate, and the glue pasting assembly is fixedly connected to the end of the first fixing plate facing away from the machine base;

[0020] The mounting plate is vertically connected to the second fixing plate and is located at the end of the second fixing plate facing away from the machine base.

[0021] In at least one embodiment of the present application, the glue pasting assembly includes:

[0022] The adhesive tape conveying shaft is arranged on the mounting plate and is located at the end away from the first fixing plate, and is used for placing and conveying the adhesive tape. Driven by a motor, the adhesive tape conveying shaft conveys the adhesive tape;

[0023] The adhesive tape placing table is arranged on the mounting plate and is located at the end close to the first fixing plate, and receives the adhesive tape.

[0024] In at least one embodiment of the present application, the glue pasting assembly includes:

[0025] A slider is provided on the mounting plate and is slidably connected to the mounting plate along the width and length of the strip splicing mechanism.

[0026] An adhesive pasting member is fixedly connected to the slider and adsorbs the tape.

[0027] In at least one embodiment of the present application, the strip splicing mechanism further includes:

[0028] A vision component is fixedly connected to the machine base. The two vision components are located at both ends of the adhesive pasting component and above the conveying component to detect the shearing positions of the two strip materials.

[0029] In at least one embodiment of the present application, the machine cover is provided with a display screen.

[0030] In at least one embodiment of the present application, the machine cover is provided with a touch screen, and the touch screen is connected to the control system of the strip splicing mechanism.

[0031] The provided strip splicing device closes the working area by setting the machine cover and the machine base, greatly improving the operation safety. At the same time, the machine cover is provided with a conveying opening, so that the two strip materials and the copper fasteners can be conveniently conveyed during the splicing process, and the operator can check whether the strip materials are smoothly conveyed through the conveying opening, greatly improving the convenience. Description of the Drawings

[0032] Figure 1 It is the front view of the strip splicing device described in the present application;

[0033] Figure 2 It is the top view of the strip splicing device described in the present application;

[0034] Figure 3 It is the right view of the strip splicing device described in the present application;

[0035] Figure 4 It is the exploded view of the strip splicing device described in the present application;

[0036] Figure 5 It is the front view of the strip splicing device described in the present application with the machine cover removed;

[0037] Figure 6 It is the perspective view of the adhesive pasting component described in the present application;

[0038] Explanation of the Main Element Symbols

[0039] 100. Material tape splicing equipment; 10. Machine base; 20. Machine cover; 21. Conveying opening; 22. Display screen; 23. Touch screen; 30. Material splicing mechanism; 31. First fixed plate; 32. Conveying assembly; 33. Riveting assembly; 34. Gluing assembly; 341. Tape conveying shaft; 342. Tape placing table; 343. Sliding part; 344. Gluing part; 35. Second fixed plate; 36. Mounting plate; 37. Visual assembly; F1. Length of material splicing mechanism; F2. Width of material splicing mechanism; F3. Height of material splicing mechanism. DETAILED DESCRIPTION

[0040] The embodiments of the present application will be described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0041] It should be noted that when a component is considered to be "connected" to another component, it may be directly connected to the other component or there may be a central component at the same time. When a component is considered to be "located on" another component, it may be directly located on the other component or there may be a central component at the same time. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and similar expressions used herein are for illustrative purposes only.

[0042] Some embodiments of the present application are described in detail below in conjunction with the accompanying drawings. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.

[0043] See also Figures 1-6 , an embodiment of the present application provides a material strip splicing device 100, comprising: a machine base 10, a machine cover 20 and a splicing mechanism 30. The machine base 10 is arranged on the ground in a vertical direction. The machine cover 20 is located at one end away from the ground. The machine cover 20 is connected to the machine base 10. And the machine base 10 and the machine cover 20 together form a working area. The splicing mechanism 30 is fixedly connected to the machine base 10. The splicing mechanism 30 is located in the working area. And the machine cover 20 is covered by the splicing mechanism 30. The machine cover 20 is provided with a conveying opening 21 at one end close to the splicing mechanism 30 to convey two material strips and copper buckles. Among them, the machine cover 20 is not opened, and the material strips and the copper buckles are placed in the splicing mechanism 30 through the conveying opening 21. The splicing mechanism 30 uses copper buckles to rivet the two material strips and uses tapes to glue the two material strips. After the two material strips are spliced, the machine cover 20 is opened.

[0044] Specifically, the machine base 10 is the support structure of the equipment, which is fixed to the ground in the vertical direction to ensure the stability of the equipment. The machine base 10 is usually made of strong metal materials such as steel and is fixed to the ground by anchor bolts or welding. The design of the machine base 10 needs to ensure that it can withstand the vibration and weight during the operation of the equipment.

[0045] The machine cover 20 covers the upper part of the machine base 10 to protect the internal components and operators and prevent dust, impurities, etc. from entering the working area. The machine cover 20 is usually made of metal or transparent plastic and is connected to the machine base 10 by hinges or slides to form a closed working area, which not only ensures safety but also facilitates observation and operation.

[0046] The splicing mechanism 30 is the core component of the equipment and is responsible for the splicing operation of the tape. It performs the riveting and gluing operations on the tape. The splicing mechanism 30 includes multiple sub-components, such as the riveting component 33 and the gluing component 34. These components are fixed to the machine base 10 to ensure the accuracy and stability of the splicing operation.

[0047] The machine cover 20 is provided with a transfer opening 21, which allows the tape and copper fasteners to be transferred to the splicing mechanism 30 through this opening. The material can be transferred without opening the machine cover 20, improving the operation convenience and safety. The size and position of the transfer opening 21 are designed to adapt to the transfer requirements of the tape and copper fasteners, and may be equipped with guiding devices or slides to ensure the smooth entry of the material into the splicing mechanism 30.

[0048] The operator can place the tape and copper fasteners into the splicing mechanism 30 through the transfer opening 21 without opening the machine cover 20. This reduces the operation steps and improves the operation safety and efficiency. The tape and copper fasteners are placed into the splicing mechanism 30 through a transfer device (such as a conveyor belt or slide) or manually to ensure the accurate placement of the material.

[0049] The splicing mechanism 30 connects two tapes together by two methods: riveting and gluing. After the splicing is completed, the operator opens the machine cover 20 for subsequent processing. This ensures the firmness and reliability of the splicing and is applicable to different splicing requirements. The riveting component 33 and the gluing component 34 respectively complete the copper fastener riveting and tape gluing operations. The riveting component 33 fixes the copper fastener to the tape by pressure, and the gluing component 34 accurately attaches the tape to the splicing position.

[0050] The machine base 10 and the machine cover 20 are fixed by hinges or slides, enabling the machine cover 20 to be conveniently opened and closed, forming a closed working area to ensure the safety of the operator and the normal operation of the equipment.

[0051] The transfer opening 21 is located at one end of the machine cover 20 close to the splicing mechanism 30, ensuring that the tape and copper fasteners can be smoothly transferred to the splicing mechanism 30, reducing the frequency of opening the machine cover 20, and improving the operation convenience and safety.

[0052] The fixed connection between the material splicing mechanism 30 and the machine base 10 ensures the stability and accuracy of the material splicing mechanism 30 during operation, and ensures the smooth progress of the splicing operation.

[0053] Firmly fix the machine base 10 on the ground to ensure its stability. Install the machine cover 20 and connect it to the machine base 10 through hinges or slides to ensure that the machine cover 20 can be opened and closed flexibly. Install the material splicing mechanism 30 and fix it on the machine base 10 to ensure the accurate position of each component.

[0054] The operator places two strips of material and copper buttons into the material splicing mechanism 30 through the transmission opening 21. Start the material splicing mechanism 30, and the riveting component 33 rivets the two strips of material together through the copper buttons. The tape sticking component 34 accurately adheres the tape to the splicing position to complete the gluing operation. After splicing is completed, the operator opens the machine cover 20 and takes out the spliced strip of material.

[0055] In a specific embodiment, the material splicing mechanism 30 includes: a first fixing plate 31 and a transmission component 32.

[0056] One end of the first fixing plate 31 is fixedly connected to the machine base 10.

[0057] The transmission component 32 is fixedly connected to the other end of the first fixing plate 31. The transmission component 32 is arranged along the length F1 of the material splicing mechanism. Two transmission directions facing each other are arranged at both ends of the transmission component 32 along the length F1 of the material splicing mechanism. One strip of material is transmitted along one transmission direction, and the other strip of material is transmitted along the other transmission direction. The area where the transmission component 32 transmits the strip of material is opposite to the transmission opening 21.

[0058] Specifically, the first fixing plate 31 is one of the main support structures of the material splicing mechanism 30, and one end is fixed on the machine base 10. It provides stable support for the material splicing mechanism 30 and ensures its fixed position on the machine base 10. The first fixing plate 31 is usually made of a strong metal material and is fixed on the machine base 10 by bolts or welding.

[0059] The transmission component 32 is a device for transmitting the strip of material, which is fixed to the other end of the first fixing plate 31 and is arranged along the length direction of the equipment. It realizes the conveying of the strip of material and ensures that the strip of material can reach the designated position smoothly before splicing. The transmission component 32 may include a conveyor belt, rollers, guide rails, etc., which are fixed to the first fixing plate 31 by bolts or welding and extend along the length direction of the equipment.

[0060] The transmission component 32 has two transmission directions at both ends of the equipment, and transmits the strips of material towards each other respectively. Ensure that the two strips of material can be transmitted from opposite directions to the splicing position. The design of the transmission component 32 enables the two strips of material to move in opposite directions, which may be realized by a two-way conveyor belt or by setting two independent conveyor belts.

[0061] The two material strips are respectively conveyed to the splicing position along different conveying directions. It is ensured that the two material strips can smoothly reach the splicing position and are ready for the splicing operation. The material strips are conveyed by the guide device or conveyor belt of the conveying assembly 32 and move along the preset conveying direction.

[0062] The conveying area of the conveying assembly 32 faces the conveying opening 21 on the hood 20, ensuring that the material belt can enter the splicing mechanism 30 through the conveying opening 21. It is ensured that the material belt can be accurately conveyed to the splicing position and enter the interior of the splicing mechanism 30 through the conveying opening 21.

[0063] The fixed connection between the first fixing plate 31 and the base 10 ensures the stability of the splicing mechanism 30 in the device and provides reliable support for the transmission component 32. The transmission component 32 is fixed in the device through the first fixing plate 31 to ensure the stability and accuracy of its transmission path. The transmission component 32 ensures that the two strips can be transmitted to the splicing position from different directions, ready for the splicing operation. The alignment of the transmission component 32 and the transmission opening 21 ensures that the strips can accurately pass through the transmission opening 21 into the splicing mechanism 30 to avoid deviation or jamming.

[0064] The material strips are placed on the conveyor assembly 32, one material strip is conveyed in one direction, and the other material strip is conveyed in the opposite direction. The conveyor assembly 32 is started, and the material strips move in a preset direction and enter the splicing mechanism 30 through the conveyor opening 21. Ensure that the material strips are stable during the conveying process, without jamming or deviation, and accurately reach the splicing position.

[0065] In a specific implementation example, the splicing mechanism 30 further includes a riveting assembly 33. The riveting assembly 33 is fixedly connected to the end of the first fixing plate 31 away from the machine base 10, receives and shears the copper buckle, and is connected to the transmission assembly 32. The riveting assembly 33 slides along the width F2 of the splicing mechanism to approach the transmission assembly 32, and slides along the height F3 of the splicing mechanism to slide close to the two material strips and is located at the splicing of the two material strips, and the copper buckle is riveted to the two material strips.

[0066] Specifically, the riveting assembly 33 is fixed to one end of the first fixing plate 31 away from the base 10. It provides the main device for the riveting operation and ensures its position in the equipment is stable. The riveting assembly 33 is fixed to the first fixing plate 31 by bolts or welding to ensure its position is stable.

[0067] The riveting assembly 33 has the function of receiving and shearing the copper buckle. The copper buckle is provided in the splicing process and cut into suitable lengths for riveting the material strip.

[0068] The riveting assembly 33 includes a copper buckle storage and shearing device, which can automatically receive and shear the copper buckle.

[0069] The riveting assembly 33 is connected to the conveying assembly 32. Ensure the coordinated operation between the riveting assembly 33 and the conveying assembly 32 so as to perform the riveting operation after the strip is conveyed in place. The riveting assembly 33 is connected to the conveying assembly 32 through mechanical or electrical connection to ensure its synchronous operation.

[0070] The riveting assembly 33 can slide along the width direction of the equipment to approach the conveying assembly 32. In the case of different strip widths, the position of the riveting assembly 33 can be adjusted to perform accurate riveting operations. The riveting assembly 33 is equipped with a sliding track or guide rail system and can slide along the width direction of the equipment.

[0071] The riveting assembly 33 can also slide along the height direction of the equipment to approach the strip and be located at its splicing position. Ensure that the riveting assembly 33 can be accurately positioned at the splicing position of the strip to perform the riveting operation. The riveting assembly 33 is equipped with a vertical sliding device or a lifting system and can slide along the height direction of the equipment.

[0072] The riveting assembly 33 rivets the sheared copper fasteners to the two strips. Rivet the two strips through the copper fasteners to ensure the firmness and stability of the splicing. The riveting assembly 33 includes a riveting head or a riveting device and can perform the riveting operation at the splicing position of the strip.

[0073] The fixed connection between the riveting assembly 33 and the first fixing plate 31 ensures the stable position of the riveting assembly 33 in the equipment and provides support for the riveting operation. The connection between the riveting assembly 33 and the conveying assembly 32 guarantees the coordination between the riveting operation and the strip conveying and ensures the riveting after the strip is in place.

[0074] Convey the strip to the splicing position through the conveying assembly 32. The riveting assembly 33 receives and shears the copper fasteners and prepares for the riveting operation. The riveting assembly 33 slides along the width direction of the equipment to approach the conveying assembly 32 and the strip. The riveting assembly 33 slides along the height direction of the equipment to ensure that it is located at the strip splicing position. The riveting assembly 33 rivets the copper fasteners to the two strips to complete the strip splicing operation.

[0075] In a specific embodiment, the strip splicing mechanism 30 further includes an adhesive pasting assembly 34. The adhesive pasting assembly 34 is located at one end of the conveying assembly 32 away from the first fixing plate 31. The riveting assembly 33 is located between the adhesive pasting assembly 34 and the conveying assembly 32. The adhesive pasting assembly 34 slides along the width F2 of the strip splicing mechanism to approach above the splicing position of the two strips. The adhesive pasting assembly 34 slides along the height F3 of the strip splicing mechanism to drive the adhesive tape to glue to the two strips.

[0076] Specifically, the tape - sticking component 34 provides the function of sticking tape and is used to bond two strip materials together. The tape - sticking component 34 is installed at a specified position of the conveying component 32 by bolts or other fixing methods.

[0077] The tape - sticking component 34 can slide along the width direction of the equipment and move above the splicing position of the two strip materials. During the tape - sticking operation, it can adjust its position to ensure that the tape is accurately stuck at the splicing position. The tape - sticking component 34 is equipped with a sliding track or a guide - rail system and can move along the width direction of the equipment.

[0078] The tape - sticking component 34 can also slide along the height direction of the equipment so that the tape can be bonded to the two strip materials. During the tape - sticking operation, it can adjust its height to ensure that the tape is accurately stuck on the strip materials. The tape - sticking component 34 is equipped with a vertical sliding device or a lifting system and can slide along the height direction of the equipment.

[0079] The fixed connection between the tape - sticking component 34 and the conveying component 32 ensures that the tape - sticking component 34 can be stably installed at the specified position of the conveying component 32, facilitating the sticking operation.

[0080] The width - sliding and height - sliding functions of the tape - sticking component 34 provide flexible adjustment of the tape - sticking position, ensuring that the tape can be accurately stuck at the splicing position of the strip materials.

[0081] In a specific embodiment, the material - splicing mechanism 30 includes: a second fixed plate 35 and a mounting plate 36. One end of the second fixed plate 35 is connected to the machine base 10. The second fixed plate 35 and the first fixed plate 31 are horizontally arranged. And the tape - sticking component 34 is fixedly connected to one end of the first fixed plate 31 away from the machine base 10. The mounting plate 36 is vertically connected to the second fixed plate 35. The mounting plate 36 is located at one end of the second fixed plate 35 away from the machine base 10.

[0082] Specifically, the second fixed plate 35 provides additional structural support to ensure the stability and accurate positioning of the tape - sticking component 34. The second fixed plate 35 is fixed to the machine base 10 by bolts or welding to ensure its horizontal position and parallelism with the first fixed plate 31.

[0083] The tape - sticking component 34 is fixed to one end of the first fixed plate 31 away from the machine base 10. Ensure the stable position of the tape - sticking component 34 in the splicing equipment and enable it to perform the sticking operation. The tape - sticking component 34 is fixed to the specified position of the first fixed plate 31 by mechanical fixing methods (such as bolts, welding).

[0084] The mounting plate 36 is vertically connected to one end of the second fixed plate 35 away from the machine base 10. It provides a mounting foundation for the tape - sticking component 34 to ensure its accurate positioning in the equipment. The mounting plate 36 is vertically connected to the second fixed plate 35 by bolts or welding.

[0085] The connection between the second fixed plate 35 and the machine base 10 ensures the stability of the overall structure of the equipment and provides a supporting function. The horizontal arrangement of the second fixed plate 35 and the first fixed plate 31 guarantees the alignment and stability of the internal components of the equipment, ensuring the accuracy of the conveying, riveting, and gluing operations. The fixed connection between the gluing component 34 and the first fixed plate 31 ensures that the gluing component 34 can stably perform the gluing operation and is located in the appropriate position. The vertical connection between the mounting plate 36 and the second fixed plate 35 provides a mounting foundation for the gluing component 34, ensuring its accurate positioning and stable operation in the equipment.

[0086] In a specific embodiment, the gluing component 34 includes: a tape conveying shaft 341 and a tape placing table 342. The tape conveying shaft 341 is disposed on the mounting plate 36, and the tape conveying shaft 341 is located at one end away from the first fixed plate 31. The tape conveying shaft 341 is used for placing and conveying the tape. Driven by a motor, the tape conveying shaft 341 conveys the tape. The tape placing table 342 is disposed on the mounting plate 36. The tape placing table 342 is located at one end close to the first fixed plate 31. The tape placing table 342 receives the tape.

[0087] Specifically, the tape conveying shaft 341 is used for placing and conveying the tape, and the movement of the tape is realized by motor drive. The tape conveying shaft 341 is mounted on the mounting plate 36 through a fixed bracket or bearing, ensuring its stable rotation.

[0088] The tape conveying shaft 341 is used for placing the tape and realizes the conveyance of the tape by motor drive. Automatically conveying the tape improves the operation efficiency and ensures that the tape can be accurately conveyed to the required position.

[0089] The tape placing table 342 provides a stable tabletop for placing and receiving the conveyed tape, preparing for the gluing operation. The tape placing table 342 is mounted on the mounting plate 36 through a bracket or fixing device, ensuring its stability and accurate position.

[0090] Fix the tape conveying shaft 341 on the mounting plate 36 through a bracket or bearing, ensuring that it is located at one end away from the first fixed plate 31. Connect the motor to the tape conveying shaft 341, and through a belt, chain, or direct drive method, realize the rotation of the conveying shaft driven by the motor. Mount the tape placing table 342 on the mounting plate 36 through a bracket or fixing device, ensuring its stability and its location at one end close to the first fixed plate 31.

[0091] Install the tape on the tape conveyor shaft 341 to ensure smooth tape conveyance. Start the motor, drive the conveyor shaft to rotate through the motor, and achieve automatic tape conveyance. The tape is conveyed to the tape placement table 342 to ensure the tape is stable on the placement table. Adjust the position of the tape to ensure it is ready for the pasting operation. The tape pasting assembly 34 slides in the width and height directions of the equipment and moves to the joint of the tape strips. Remove the tape from the placement table and perform the pasting operation to ensure the joint of the two tape strips is firmly bonded by the tape.

[0092] In a specific embodiment, the tape pasting assembly 34 includes a sliding member 343 and a tape pasting member 344. The sliding member 343 is disposed on the mounting plate 36. The sliding member 343 is slidably connected to the mounting plate 36 along the width of the tape splicing mechanism and the length of the tape splicing mechanism. The tape pasting member 344 is fixedly connected to the sliding member 343, and the tape pasting member 344 adsorbs the tape.

[0093] Specifically, the sliding member 343 is installed on the mounting plate 36 and can slide along the width F2 and the length direction of the tape splicing mechanism. The sliding member 343 is installed on the mounting plate 36 through a slide rail or a guide rail system to ensure smooth sliding.

[0094] The tape pasting member 344 is fixedly connected to the sliding member 343 and is used to adsorb and fix the tape. During the tape pasting process, the tape pasting member 344 adsorbs the tape and accurately pastes it onto the tape strip. The tape pasting member 344 is fixedly connected to the sliding member 343 by mechanical connection means (such as bolts, welding) and is equipped with an adsorption device (such as a vacuum chuck) to fix the tape.

[0095] The sliding member 343 slides in the width and length directions of the equipment and moves above the joint of the tape strips. The tape pasting member 344 slides in the height direction of the equipment and accurately pastes the tape onto the joint of the two tape strips to complete the pasting operation.

[0096] In a specific embodiment, the tape splicing mechanism 30 further includes a vision component 37. The vision component 37 is fixedly connected to the machine base 10, and the two vision components 37 are located at both ends of the tape pasting assembly 34. The two vision components 37 are located above the conveying assembly 32 to detect the shearing positions of the two tape strips.

[0097] Specifically, the vision component 37 is used to detect the position and state of the tape strip to ensure the accuracy of the splicing process. The vision component 37 is installed on the machine base 10 by bolts, welding or other fixing means.

[0098] The two vision components 37 are respectively installed at both ends of the tape pasting assembly 34. A wide detection range is provided to ensure that the shearing positions of the two tape strips can be detected separately and accurately. The vision component 37 is installed at both ends of the tape pasting assembly 34 and fixed by a bracket or a fixing device.

[0099] The vision component 37 is installed above the conveying component 32 and is responsible for detecting the shearing positions of the two strips of material. It ensures the position accuracy of the strips of material during the splicing process and improves the splicing quality. The vision component 37 is installed above the conveying component 32 and is fixed by a bracket or a fixing device. The vision component 37 performs position detection through a camera or a sensor.

[0100] In a specific embodiment, the hood 20 is provided with a display screen 22.

[0101] Specifically, the display screen 22 is used to display the working status, parameter settings, operation guides or other relevant information of the material splicing mechanism, improving the convenience of operation and the real-time monitoring ability. It is installed at an appropriate position on the hood 20 and realizes the information display function through a connecting circuit board or a control system.

[0102] In a specific embodiment, the hood 20 is provided with a touch screen 23.

[0103] Specifically, the touch screen 23 is used for the operator to interact with the material splicing mechanism 30, including functions such as setting parameters, monitoring the device status, starting and stopping operations, etc. The touch screen 23 can be a capacitive touch screen 23 or other types of touch screens 23. It is installed at an appropriate position on the hood 20 and realizes the touch operation and information display functions through a connecting circuit board or a control system.

[0104] The touch screen 23 is connected to the control system of the material splicing mechanism 30 through a cable or wireless communication technology. It enables the operator to remotely control and monitor the material splicing mechanism 30 through the touch screen 23, improving the convenience of operation and the real-time response ability. The touch screen 23 is connected to the control system of the material splicing mechanism 30 and transmits operation instructions and receives device status feedback through a communication protocol (such as Modbus, Ethernet, etc.).

[0105] The above are only the implementation manners of the present application. It should be noted here that for those of ordinary skill in the art, without departing from the creative concept of the present application, improvements can still be made, but these all belong to the protection scope of the present application.

Claims

1. A tape splicing device, characterized in that, Including: A machine base, vertically arranged on the ground; A machine cover, located at one end away from the ground, connected to the machine base, and a working area is jointly formed inside the machine base and the machine cover; A material - assembling mechanism, fixedly connected to the machine base and located in the working area, and the machine cover covers the material - assembling mechanism. An opening for conveying is provided at one end of the machine cover close to the material - assembling mechanism to convey two material tapes and copper buttons; Among them, without opening the machine cover, the material tapes and copper buttons are placed into the material - assembling mechanism through the conveying opening. The material - assembling mechanism uses copper buttons to rivet the two material tapes and uses adhesive tape to glue the two material tapes. After the two material tapes are spliced, the machine cover is opened.

2. The tape splicing device according to claim 1, characterized in that, The material - assembling mechanism includes: A first fixing plate, one end of which is fixedly connected to the machine base; A conveying component, fixedly connected to the other end of the first fixing plate and arranged along the length of the material - assembling mechanism. Two conveying directions for opposite - direction conveying are provided at both ends of the conveying component along the length of the material - assembling mechanism. One material tape is conveyed along one conveying direction, and the other material tape is conveyed along the other conveying direction. The area where the conveying component conveys the material tape is opposite to the conveying opening.

3. The tape splicing device according to claim 2, wherein The material - assembling mechanism further includes: A riveting component, fixedly connected to the end of the first fixing plate away from the machine base, receiving and shearing the copper buttons, and connected to the conveying component. The riveting component slides along the width of the material - assembling mechanism to approach the conveying component, and slides along the height of the material - assembling mechanism to approach the two material tapes for sliding and is located at the splicing position of the two material tapes, and the copper buttons are riveted to the two material tapes.

4. The tape splicing device according to claim 3, wherein The material - assembling mechanism further includes: An adhesive - pasting component, located at the end of the conveying component away from the first fixing plate. The adhesive - pasting component slides along the width of the material - assembling mechanism to approach above the splicing position of the two material tapes, and slides along the height of the material - assembling mechanism to drive the adhesive tape to glue the two material tapes.

5. The tape splicing device according to claim 4, characterized in that, The material - assembling mechanism includes: A second fixing plate, one end of which is connected to the machine base and is horizontally arranged with the first fixing plate, and the adhesive - pasting component is fixedly connected to the end of the first fixing plate away from the machine base; An installation plate, perpendicularly connected to the second fixing plate and located at the end of the second fixing plate away from the machine base.

6. The tape splicing device according to claim 5, characterized in that, The adhesive - pasting component includes: A tape - conveying shaft, arranged on the installation plate and located at the end away from the first fixing plate, and used for placing and conveying the adhesive tape. Driven by a motor, the tape - conveying shaft conveys the adhesive tape; A tape - placing table, arranged on the installation plate and located at the end close to the first fixing plate, and receiving the adhesive tape.

7. The tape splicing device according to claim 5, characterized in that The adhesive - pasting component includes: A sliding member, arranged on the installation plate and slidably connected to the installation plate along the width and the length of the material - assembling mechanism; An adhesive - pasting member, fixedly connected to the sliding member and adsorbing the adhesive tape.

8. The tape splicing device according to claim 4, characterized in that, The material - assembling mechanism further includes: A vision component, fixedly connected to the machine base. The two vision components are located at both ends of the adhesive - pasting component and above the conveying component, and detect the shearing positions of the two material tapes.

9. A tape splicing device according to claim 1, characterized in that, The machine cover is provided with a display screen.

10. A strip splicing device according to claim 1, characterized in that, The machine cover is provided with a touch screen, and the touch screen is connected to the control system of the material - assembling mechanism.