Cloth splicing device
By designing the cloth splicing device, the automatic splicing of the cloth is achieved by using the driver and the adhesive tape group, which solves the problem of time-consuming and labor-intensive manual operation, and improves the production efficiency and the efficiency of automated processing.
Patent Information
- Application Number
- CN202421394861.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-06-18
AI Technical Summary
In the fabric processing process, the prior art mainly relies on manual fabric alignment, bonding, cutting, assembly and other operations, which makes it time-consuming and labor-intensive and difficult to meet the needs of automated processes and special processing processes, affecting production efficiency and output.
A cloth material splicing device is designed, including a cloth coupling unit, a splicing mechanism, a cutting device and a driving machine. The bonding part is driven to slide and displace on the sliding track through the drive machine, and the adhesive tape group and the hot welding zone are used to realize the automatic splicing and connection of the cloth material.
It realizes continuous application of cloth materials without interruption, improves the efficiency of automated processing, has time-saving and labor-saving efficiency, and solves the time-consuming and labor-intensive problems caused by manual operations.
Smart Images

Figure CN222961793U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a cloth splicing device, in particular to a splicing device that can quickly connect preset cloth materials for continuous application. The splicing mechanism of the cloth receiving unit applies glue to the fitting part and connects new preset cloth materials to achieve the purpose of continuous application of the preset cloth materials without interruption. Background Art
[0002] Due to the increasing shortage of labor in various industries, labor and operating costs have also increased relatively. As a result, the automation industry has emerged. Through unmanned automatic processing units, rapid production and processing operations can be carried out. In addition to solving the problem of labor shortage, it also has the advantages of reducing manufacturing costs and improving manufacturing quality. Especially in the processing operations of the manufacturing industry, the application of unmanned automatic processing units is more needed. They can continuously carry out processing operations for a long time without interruption, and will not be affected by the shortage of labor and high costs. It has become a processing mode widely used in modern manufacturing industries.
[0003] In the automated operation of the production line in the manufacturing industry, different manufacturing and processing stations inside the factory are also used for various production operation processes such as processing, cutting, joining, and assembling. It is particularly important to perform pre-processing on the workpiece to be processed for the stable and smooth connection of subsequent production operations. However, this kind of production operation using manual pre-processing is quite time-consuming and labor-intensive, and cannot achieve the effect of rapid manufacturing and production. It is even more difficult to meet the requirements of automated processes and special processing processes. Currently, it is commonly used in the processing operation of the fabric application process. When the fabric on the fabric roll is about to be used up, it is necessary to connect the fabric on the new fabric roll for continuous related processing operations. However, for the current fabric processing operation, most of them still use manual operation to perform related fabric alignment, fitting, cutting, assembling and other processes. This is not only quite time-consuming and labor-intensive, but also slows down the processing speed, and further affects the subsequent processing process and output, etc., making it impossible to meet the requirements of the processing process for mass manufacturing production, and there are still many deficiencies to be improved.
[0004] Therefore, how to solve the problems and troubles in the current fabric-related processing process, such as pre-processing of fabrics and connecting subsequent production operations, and the troubles and deficiencies of performing operations such as alignment, cutting, and joining through manual methods, is the direction that relevant manufacturers in this industry are eager to research and improve. Summary of the Utility Model
[0005] Therefore, in view of the above problems and deficiencies, the main purpose of the utility model is to provide a cloth splicing device.
[0006] The utility model provides a cloth splicing device, including a cloth receiving unit, and is characterized in that:
[0007] The cloth connecting unit includes a splicing mechanism and a cutter disposed on the side of the splicing mechanism. The splicing mechanism includes a sliding track, a fitting portion, and a driving machine for driving the fitting portion to slide and displace on the sliding track. The fitting portion is provided with an adhesive tape group for adhering a preset cloth material, and a heat welding area is provided on one side of the adhesive tape group.
[0008] The cloth material splicing device, wherein: the cloth connecting unit is assembled in the internally hollow working space of the machine body, and the machine body includes a conveying unit and a conveying module located on one side of the conveying unit. The conveying unit includes a conveying mechanism, a gripper assembled on the conveying mechanism for gripping a preset cloth material, and a driving portion for driving the gripper to reciprocate and displace on the conveying mechanism. Transfer guide rails of the conveying mechanism are respectively provided on two opposite sides of the working space. The conveying module is provided above the transfer guide rail on one side of the working space, and the conveying mechanism is provided inside each of the two transfer guide rails on both sides.
[0009] The cloth material splicing device, wherein: a gripper is assembled on the conveying unit of the machine body. The gripper includes brackets assembled on the conveying mechanism on two sides, and two relatively movable gripping rods for gripping a preset cloth material are connected between the two brackets. The conveying mechanism is driven by a chain, a belt or a rack driven by the driving portion to drive the gripper to displace.
[0010] The cloth material splicing device, wherein: the splicing mechanism of the cloth connecting unit includes the sliding track disposed outside the conveying module of the machine body.
[0011] The cloth material splicing device, wherein: the fitting portion of the splicing mechanism of the cloth connecting unit includes a base reciprocating and displacing on the sliding track driven by the driving machine, and a pressing wheel for abutting against the adhesive tape group above the conveying mechanism is provided below the base. A tape feeding wheel and a tape winding wheel for conveying and winding the adhesive tape around the pressing wheel are provided on one side of the pressing wheel. A cutter is further provided on the outer side of the pressing wheel. The cutter includes a tool rest combined with one side of the base and a cutting knife movably assembled on the tool rest. The heat welding area is provided between one side of the adhesive tape group and the cutter.
[0012] The cloth material splicing device, wherein: the heat welding area includes a pressing member on one side of the pressing wheel of the adhesive tape group, a spot welding head on one side of the pressing member, and a rubber cutting knife on one side of the spot welding head.
[0013] The utility model uses a driving machine to drive the fitting portion to slide and displace on the sliding track. The fitting portion is provided with an adhesive tape group for adhering a preset cloth material driven by the gripper, achieving the purpose of continuously splicing and applying the cloth material without interruption, and can improve the efficiency of automated processing to have the effects of saving time and labor. Description of the Drawings
[0014] Figure 1 This is the three-dimensional external view of the present utility model.
[0015] Figure 2 This is the three-dimensional external view of another perspective of the present utility model.
[0016] Figure 3 This is the three-dimensional external view of the present utility model when viewed from below.
[0017] Figure 4 This is the side sectional view of the present utility model.
[0018] Figure 5 This is the three-dimensional external view of the gripper of the present utility model.
[0019] Figure 6 This is the front view of the splicing mechanism of the present utility model.
[0020] Figure 7 This is the front view of the present utility model before the cloth receiving unit operates.
[0021] Figure 8 This is the front view of the present utility model after the cloth receiving unit operates.
[0022] Explanation of reference numerals: 1 - machine body; 10 - working space; 11 - conveying unit; 111 - conveying mechanism; 112 - transfer guide rail; 12 - transfer module; 13 - gripper; 131 - bracket; 132 - first clamping rod; 133 - second clamping rod; 14 - driving part; 2 - cloth receiving unit; 21 - splicing mechanism; 211 - sliding track; 22 - cutting device; 221 - tool rest; 222 - cutting knife; 23 - fitting part; 231 - adhesive tape group; 232 - base; 233 - pressing wheel; 234 - tape feeding wheel; 235 - tape winding wheel; 236 - adhesive tape; 24 - driving machine; 25 - heat welding area; 251 - pressing member; 252 - spot welding head; 253 - rubber cutting knife; 3 - preset cloth material. Detailed implementation manners
[0023] To achieve the above-mentioned purposes and effects, the technical means, its structure, implementation methods, etc. adopted by the present utility model are now described in detail in combination with the accompanying drawings for the preferred embodiments of the present utility model, and its features and functions are as follows, so as to facilitate a complete understanding.
[0024] Please refer to Figures 1 to 8 As shown, the present utility model provides a cloth splicing device, which includes a machine body 1 and a cloth receiving unit 2, wherein:
[0025] The body 1 includes a conveying unit 11 and a transfer module 12. The transfer module 12 is located on one side of the conveying unit 11. The conveying unit 11 includes a conveying mechanism 111, and a gripper 13 is provided on the conveying mechanism 111, and the gripper 13 can be reciprocally displaced on the conveying mechanism 111 by a driving unit 14.
[0026] The cloth receiving unit 2 is assembled on the side of the transfer module 12 on one side of the conveying unit 11 of the body 1, and includes a splicing mechanism 21 and a cutter 22 located on the side of the splicing mechanism 21. The splicing mechanism 21 includes a sliding track 211, a fitting part 23, and a driving machine 24 for driving the fitting part 23 to slide and displace on the sliding track 211. A sticker tape group 231 for sticking a preset cloth material 3 is provided on the fitting part 23.
[0027] For the above-mentioned body 1 of the present utility model, its interior has a hollow working space 10, and transfer guide rails 112 of the conveying mechanism 111 are respectively provided on two opposite sides of the working space 10. Above the transfer guide rail 112 on one side of the working space 10, a transfer module 12 is provided, and the conveying mechanism 111 is provided inside each of the two transfer guide rails 112 on both sides. The conveying mechanism 111 can be a chain, a belt, a rack, etc. driven by a driving unit 14 to interlock the gripper 13 to reciprocally displace at the conveying mechanism 111. The driving unit 14 can be a stepping motor, a servo motor, etc. for driving the conveying mechanism 111 to reciprocally move back and forth. The gripper 13 assembled on the conveying unit 11 of the body 1 can be assembled on the conveying mechanism 111 by two side brackets 131, and two relatively movable first clamping rods 132 and second clamping rods 133 are connected between the two brackets 131. The preset cloth material 3 can be clamped by the first clamping rod 132 and the second clamping rod 133 to perform splicing operations and related subsequent operations, etc.
[0028] And for the cloth connecting unit 2 of the present utility model described above, its splicing mechanism 21 is arranged on the outer side of the conveying module 12 of the machine body 1 through a sliding track 211, and the driving machine 24 arranged on the sliding track 211 can be a stepping motor, a servo motor or the like, so as to drive the fitting part 23 to reciprocate and slide on the sliding track 211 by means of the driving machine 24. The base 232 of the fitting part 23 can be driven by the driving machine 24 to reciprocate on the sliding track 211, and a pressing wheel 233 of an adhesive tape group 231 is arranged below the base 232, so that the pressing wheel 233 is located above the conveying mechanism 111. A tape feeding wheel 234 and a tape winding wheel 235 are arranged on one side of the pressing wheel 233, and an adhesive tape 236 can be conveyed and wound around the pressing wheel 233. A cutting device 22 is arranged on the outer side of the pressing wheel 233. The tool rest 221 of the cutting device 22 is combined with one side of the base 232, and a cutting tool 222 is movably assembled on the tool rest 221. A heat welding area 25 is arranged on one side of the adhesive tape group 231 of the fitting part 23, and the heat welding area 25 includes a pressing member 251, a spot welding head 252 and a rubber cutting knife 253. The pressing member 251 is located on one side of the pressing wheel 233, and the spot welding head 252 and the rubber cutting knife 253 are arranged adjacent to the side of the pressing member 251, so that the heat welding area 25 is located between the adjacent inner sides of the adhesive tape group 231 and the cutting device 22.
[0029] When the fabric splicing device of the present utility model is actually implemented, the conveying module 12 inside the working space 10 of the machine body 1 conveys the preset fabric 3 outwards for subsequent processing. When the preset fabric 3 conveyed on the conveying module 12 is about to be exhausted, the gripper 13 assembled on the conveying mechanism 111 by the conveying unit 11 of the machine body 1 can be used. The first clamping rod 132 and the second clamping rod 133 of the gripper 13 clamp the new preset fabric 3 (which can be fabric film, plastic film, etc.). Then, the driving part 14 is used to drive the conveying mechanism 111 to displace along the transfer guide rail 112, so as to transfer the new preset fabric 3 to the splicing mechanism 21 of the fabric receiving unit 2 on one side of the transfer guide rail 112, and align the head of the new preset fabric 3 with the original preset fabric 3, and at the same time align it at the splicing mechanism 21 of the fabric receiving unit 2. Then, the pressing wheel 233 of the fitting part 23 can be used to align the head of the new preset fabric 3 and the fabric surface of the original preset fabric 3, so that the adhesive tape 236 wound on the pressing wheel 233 can be attached to the head and the fabric surface. Then, the driving machine 24 can be used to drive the base 232 of the fitting part 23 to slide and displace along the sliding track 211, and the adhesive tape 236 on the pressing wheel 233 can be transversely adhered and joined along the joint of the head of the new preset fabric 3 and the fabric surface of the original preset fabric 3, so as to splice and combine the new preset fabric 3 and the original preset fabric 3. After that, the heat welding area 25 on one side of the adhesive tape group 231 can be used to press the pressing member 251 against the two preset fabrics 3 after splicing, so as to perform spot welding and fusion by transversely heating the joint surface of the fabric surfaces of the two preset fabrics 3 and the adhesive tape 236 after splicing. After the two preset fabrics 3 and the adhesive tape 236 are stably heat-melted and joined, the excess adhesive tape 236 can be cut and disconnected by the cutting knife 253 on one side of the spot welding head 252. Then, the driving machine 24 is used to drive the fitting part 23, the heat welding area 25 and the cutting device 22 on the side to slide along the transfer track 211, so that the cutting knife 222 on the tool holder 221 of the cutting device 22 can cut along the fabric surface of the original preset fabric 3 that is about to be exhausted, and heat and cut the adhesive tape 231 at the joint of the fabric surfaces of the original preset fabric 3 and the new preset fabric 3. Then, the new preset fabric 3 spliced and combined with the original preset fabric 3 is conveyed and output outwards by the conveying module 12 of the machine body 1, so as to achieve the purpose of automatic splicing of the preset fabric 3 for continuous application without interruption, and can also improve the efficiency of automatic processing of the preset fabric 3, with the effects of saving time and labor.
[0030] The above are only the preferred embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Therefore, for example, all simple modifications and equivalent structural changes made by using the content of the specification and drawings of the present utility model should be included in the patent scope of the present utility model by the same token, and are hereby stated.
Claims
1. A cloth splicing device, comprising a cloth splicing unit, characterized in that: The cloth joining unit includes a splicing mechanism and a cutter arranged on the side of the splicing mechanism. The splicing mechanism includes a sliding track, a bonding part and a driving machine that drives the bonding part to slide and move on the sliding track. The bonding part is provided with an adhesive tape group for bonding a preset cloth material, and a hot welding area is provided on one side of the adhesive tape group.
2. The cloth splicing device according to claim 1, characterized in that: It also includes a machine body, the cloth receiving unit is assembled in the hollow working space inside the machine body, and the machine body includes a conveying unit and a conveying module located on one side of the conveying unit, the conveying unit includes a conveying mechanism, a clamp assembled on the conveying mechanism for clamping a preset cloth material, and a driving part for driving the clamp to move back and forth on the conveying mechanism, and transfer guide rails of the conveying mechanism are respectively provided on two opposite sides of the working space, the conveying module is provided above the transfer guide rail on one side of the working space, and the conveying mechanism is provided inside each of the transfer guide rails on the two sides.
3. The cloth splicing device according to claim 2, characterized in that: A clamp is assembled on the conveying unit of the machine body, and the clamp includes two brackets assembled on the conveying mechanism at two sides, and two relatively movable clamping rods are connected between the two brackets. The two clamping rods can be used to clamp the preset cloth material, and the conveying mechanism is driven by the chain, belt or rack driven by the driving part to link the clamp to move.
4. The cloth splicing device according to claim 2, characterized in that: The splicing mechanism of the cloth receiving unit comprises the sliding track arranged on the outer side of the conveying module of the machine body.
5. The cloth splicing device according to claim 2, characterized in that: The bonding part of the splicing mechanism of the cloth joining unit includes a base driven by the driving machine to move back and forth on the sliding track, and a contact wheel corresponding to the adhesive tape group located above the conveying mechanism is provided below the base, a tape feed wheel and a tape winding wheel for conveying the adhesive tape wound around the contact wheel are provided on one side of the contact wheel, and the cutter is provided on the outer side of the contact wheel, the cutter includes a knife holder combined with one side of the base and a cutting knife movably assembled on the knife holder, and the hot welding area is provided between one side of the adhesive tape group and the cutter.
6. The cloth splicing device according to claim 5, characterized in that: The hot welding area includes a pressing piece located at one side of the pressing wheel of the adhesive tape assembly, a spot welding head located at one side of the pressing piece, and a glue cutting knife located at one side of the spot welding head.