Online trimming processor for glass fiber cloth

By combining post-processing and trimming processes with an online trimming machine, efficient and precise trimming and waste recycling of glass fiber cloth can be achieved, solving the problems of low production efficiency and high cost and improving product quality and safety.

CN223454520UActive Publication Date: 2025-10-21CHONGQING TENWAYS MATERIAL CORP
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Patent Information

Application Number
CN202422637054.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-10-21
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

The post-processing process in the existing glass fiber cloth production process is cumbersome, resulting in low production efficiency, high cost, and easy creases on the cloth surface, affecting the product appearance and performance stability.

Method used

A glass fiber cloth online trimming processing machine is designed, which combines the post-processing process and the trimming process, adopts an integrated processing method of coating, trimming and waste collection, including gluing, cutting and waste recovery systems, and uses bellows and cutters to achieve seamless trimming and instant waste recovery.

Benefits of technology

Significantly shorten the production cycle, improve production efficiency, ensure the stability of product appearance and performance, reduce labor costs, simplify the cleaning process, and improve waste collection efficiency and production safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223454520U_ABST
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Abstract

The utility model relates to a glass fiber cloth on-line trimming processor which comprises a sending part, a cloth storage frame I, a coating device, a trimming device and a coiling part, and the sending part can be driven by a driving wheel I to convey glass fiber cloth to the cloth storage frame I; the coating device is provided with a gluing piece, and the gluing piece is used for gluing the to-be-trimmed part of the glass fiber cloth; the edge cutting device is provided with a cutting part and is used for cutting off feather edges of the gluing part of the glass fiber cloth; and the coiling part is used for coiling the processed glass fiber cloth. By arranging the edge cutting device, the glass fiber cloth is directly subjected to edge cutting after post-treatment; and by arranging the air bellow, the cut waste edges are collected, and seamless edge cutting and instant waste edge recycling in the glass fiber cloth post-treatment process are achieved. Due to the design of the edge cutting device, it is guaranteed that accurate edge cutting can be conducted on the glass fiber cloth immediately after other necessary procedures are completed, the production period is greatly shortened, and the overall production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of glass fiber cloth post-processing procedure, especially to a kind of glass fiber cloth online edge cutting processing machine. BACKGROUND

[0002] With the wide application of glass fiber material in composite material, building, automobile, electronics and other fields, the production efficiency and quality control of glass fiber cloth become the focus of the industry.In the production process of glass fiber cloth, after the organic matter attached to the cloth surface is removed by heat treatment, the glass fiber cloth also needs to be treated by surface chemistry to improve the bonding interface of glass and resin, and improve the mechanical properties and electrical properties of composite board.Post-processing procedure is a crucial link, which is directly related to the final performance and appearance quality of product.Current post-processing includes post-processing procedure and edge cutting procedure.

[0003] (1) complicated procedure and repeated winding: current post-processing process includes once desizing BH, twice desizing KH, post-processing FN and edge cutting NC.These procedures ensure product quality, but the glass fiber cloth needs to be rewound after each procedure, which not only increases the operation complexity, but also significantly increases the risk of crease on cloth surface, thereby affecting the overall appearance and performance stability of product.

[0004] (2) production efficiency and cost problem: due to the large number of post-processing procedures and long time consumption, the production cycle of glass fiber cloth is prolonged, and the production efficiency is low.At the same time, the complex process flow also increases the production cost, including manpower, material resources and time input, which is not conducive to the enterprise to maintain low-cost and high-benefit production mode in the fierce market competition. INVENTION CONTENTS

[0005] Therefore, the utility model provides a kind of glass fiber cloth online edge cutting processing machine, and post-processing procedure and edge cutting procedure are combined.

[0006] The utility model provides a kind of glass fiber cloth online edge cutting processing machine adopts following technical scheme:

[0007] A kind of glass fiber cloth online edge cutting processing machine, comprising:

[0008] sending part and cloth accumulator one, the sending part can be driven wheel one drive and be sent to cloth accumulator one with glass fiber cloth;

[0009] coating device has rubberizing part, and the rubberizing part is used to glue the edge cutting part of glass fiber cloth;

[0010] edge cutting device has cutting part, and is used to remove the feather edge of the rubberized site of glass fiber cloth;

[0011] A winding unit is arranged to wind the glass fiber cloth after the treatment.

[0012] Optionally, the device further comprises a wind box, wherein the wind box is provided with a wind source for sucking the cut-off waste edge into the wind box.

[0013] Optionally, the device further comprises a drying device for drying the glass fiber cloth after the opening, impregnation and coating treatment.

[0014] Optionally, the device further comprises an opening device, wherein the opening device comprises an opening groove, a first squeezing wheel and a first cooling wheel, the first squeezing wheel is used for squeezing the water on the surface of the glass fiber cloth and conveying the glass fiber cloth to the drying device, and the first cooling wheel is used for rapidly cooling the glass fiber cloth to room temperature.

[0015] Optionally, the device further comprises an impregnation device, wherein the impregnation device comprises an impregnation groove, a second squeezing wheel and a second cooling wheel, the second squeezing wheel is used for squeezing the excess post-treatment agent on the surface of the glass fiber cloth and conveying the glass fiber cloth to the drying device, and the second cooling wheel is used for rapidly cooling the glass fiber cloth to room temperature.

[0016] Optionally, the coating device comprises a glue groove, a coating roller and a guide roller, the glue groove is used for storing the edge sealing glue, the coating roller is used for coating the edge sealing glue in the glue groove to the coating position of the glass fiber cloth, and the guide roller is used for pressing the glass fiber cloth to the coating roller and moving the coated glass fiber cloth to the drying device.

[0017] Optionally, the cutting device comprises a cutter and a motor, the motor is used for driving the cutter to rotate to form a cutting part, and the cutter is used for cutting off the edge of the coating position of the glass fiber cloth.

[0018] Optionally, the device further comprises a second driving wheel, wherein the second driving wheel is used for providing a constant traction to the glass fiber cloth, so that the glass fiber cloth runs along the treatment machine at a constant speed.

[0019] Optionally, the device further comprises a second cloth storage rack, wherein the second cloth storage rack is used for storing a certain amount of cloth, so that the machine runs at a normal speed when the cloth is connected.

[0020] Optionally, the drying device is an IR furnace.

[0021] In summary, the device has at least one of the following beneficial technical effects: the cutting device is arranged to cut the edge of the glass fiber cloth after the post-treatment; the wind box is arranged to collect the cut-off waste edge, so that seamless edge cutting and instant waste edge recycling are realized in the post-treatment process of the glass fiber cloth. The design of the cutting device ensures that the glass fiber cloth can be accurately cut immediately after completing other necessary processes, which greatly shortens the production cycle and improves the overall production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 is a whole structure schematic view of the embodiment of the utility model;

[0023] Figure 2 is a coating device structure schematic view of the embodiment of the utility model;

[0024] Figure 3 is a trimming device structure schematic view of the embodiment of the utility model.

[0025] Mark explanation: 1, sending part, 2, drive wheel one, 3, cloth accumulator one, 4, drive wheel two, 5, fiber opening slot, 6, extrusion wheel one, 7, IR furnace, 8, cooling wheel one, 9, immersion tank, 10, extrusion wheel two, 11, cooling wheel two, 12, coating device, 121, glue tank, 122, rubber roller, 123, guide roller, 13, trimming device, 131, motor, 132, cutter, 14, air bellow, 15, cloth accumulator two, 16, winding part. Specific implementation

[0026] The following will be combined with the attached Figures 1-3 The utility model is further explained in detail.

[0027] The embodiment of the utility model discloses a glass fiber cloth online trimming treatment machine.

[0028] Refer to Figure 1 , Figure 2 , Figure 3 A kind of glass fiber cloth online trimming treatment machine including sending part 1, cloth accumulator one 3, cloth accumulator two 15 and coating device 12, trimming device 13 and winding part 16, sending part 1 can be driven wheel one 2 drive and be sent to cloth accumulator one 3 with glass fiber cloth;Coating device 12 has rubberizing element, and rubberizing element is used to glue the trimming of glass fiber cloth and is carried out;Trimming device 13 has cutting part, for the trimming of glass fiber cloth rubberizing site's feather edge is carried out;The cloth end of trimming device 13 is provided with cloth accumulator two 15, for storing a certain amount of cloth, when cloth, maintain normal speed operation of machine table;Winding part 16 is used to wind after the glass fiber cloth of completion processing is handled.By setting trimming device 13, glass fiber cloth is directly trimmed after post-processing;By setting air bellow 14, the waste edge cut down is collected, seamless trimming in glass fiber cloth post-processing process and instant waste edge recovery are realized.The design of trimming device 13 ensures that glass fiber cloth can be immediately accurately trimmed after completing other necessary procedures, greatly shortens production cycle, and improves overall production efficiency.

[0029] Still include air bellow 14, and air bellow 14 has air source, and air source is used to suck into the waste edge after cutting into air bellow 14.Air bellow 14 is a device designed for collecting and processing waste edge.

[0030] It has a wind source, which is the power source of the air flow. The main function of the wind source is to generate a strong air flow, which is used to suck the cut-off waste edge into the wind box 14.

[0031] The wind source uses a fan to effectively collect and transport the waste edge for subsequent processing or recycling through the action of air flow. During the cutting process, the waste edge is generated and released. The wind source is started to generate air flow to suck the waste edge into the wind box 14. The waste edge is collected in the wind box 14 and waits for further processing or recycling.

[0032] The matched wind box 14 collection system uses the principle of air flow to automatically suck and collect the waste edge generated during the cutting process, simplifying the cleaning process, effectively avoiding the problem of random stacking of waste edge, and reducing the difficulty of recycling. In addition, the system also significantly reduces the risk of accidental entrapment of waste edge in the machine, ensuring the continuous and stable operation of the production line, and further improving the production safety and efficiency.

[0033] Using the wind box 14 and the wind source can greatly improve the collection efficiency of the waste edge, reducing the time and labor cost of manual cleaning of the waste edge, and helping to maintain a clean and sanitary working environment.

[0034] It also includes an opening device, which includes an opening slot 5, a squeezing wheel 6 and a cooling wheel 8. The squeezing wheel 6 is used to squeeze the water on the surface of the glass fiber cloth and transport it to the drying device. The cooling wheel 8 is used to quickly cool the glass fiber cloth to room temperature. The cooling wheel is located after the drying device and before the impregnation tank 9. The glass fiber cloth treated by the opening device 5 is transported into the impregnation tank 9. In this process, the cooling wheel also plays a role in preliminary cooling or shaping of the glass fiber cloth to ensure its stable entry into the next processing stage.

[0035] It also includes an impregnation device, which includes an impregnation tank 9, a squeezing wheel 2 10 and a cooling wheel 2 11. The squeezing wheel 2 10 is used to squeeze the excess post-treatment agent on the surface of the glass fiber cloth and transport it to the drying device. The cooling wheel 2 11 is used to quickly cool the glass fiber cloth to room temperature. The squeezing wheel 2 10 is located after the impregnation tank 9 and before the coating device 12. The glass fiber cloth in the impregnation tank 9 is transported back to the coating device 12 for further coating or other processing. The squeezing wheel 2 10 also plays a role in squeezing the glass fiber cloth, removing excess liquid or making the coating more uniform during this process.

[0036] The coating device 12 comprises a glue tank 121, a glue roller 122 and a guide roller 123. The glue tank 121 stores glue therein. The glue roller 122 is used to coat the glue in the glue tank 121 to the glue coating part of the glass fiber cloth to form an edge sealing glue. The guide roller 123 is used to press the glass fiber cloth to the glue roller 122. The glass fiber cloth after being coated with glue is moved to the drying device to form an edge sealing glue, so as to ensure that the edge of the glass fiber cloth is well glued. The guide roller 123 is responsible for stably moving the glass fiber cloth after being coated with glue to the edge cutting device 13 for subsequent edge cutting treatment. The device realizes efficient and accurate glue coating and edge cutting operation by accurately controlling the coating amount and coating position of glue and the moving speed and path of the glass fiber cloth.

[0037] The edge cutting device 13 comprises a cutter 132 and a motor 131. The motor 131 is used to drive the cutter 132 to rotate to form a cutting part. The cutter 132 is used to cut off the edge of the glue coating part of the glass fiber cloth. The motor 131 provides power to drive the cutter 132 to rotate.

[0038] The cutter 132 rotates to form a cutting part to cut off the edge of the glue coating part of the glass fiber cloth. The edge is quickly cut off by the motor 131, and the edge cutting is efficient. The cutter 132 is accurately designed to ensure the cutting effect, solve the problem of the edge of the glue coating part of the glass fiber cloth, and improve the appearance quality of the product. The cutter 132 is driven by the motor 131 to rotate, accurately cuts off the edge of the glue coating part, and improves the appearance quality and yield of the product.

[0039] The drying device is also included. The drying device is used to continue drying the glue coating part of the glass fiber cloth.

[0040] The drying device is an IR furnace 7. The IR furnace 7, i.e. an infrared tunnel furnace, can emit uniform infrared radiation to uniformly heat materials and is widely used in industrial production. For the glass fiber cloth, the IR furnace 7 can realize uniform heating of the surface of the glass fiber cloth through the infrared radiation generated by the heating element thereof, not only can dry the moisture on the surface of the glass fiber cloth to make the edge sealing glue dry into a film, but also can improve the physical and chemical properties thereof, such as improving the interlayer shear strength and tensile strength, and improving the medium resistance.

[0041] In the embodiment, a cloth storage rack two 15 is also included. The cloth storage rack two 15 is used to store a certain amount of cloth to maintain the normal speed operation of the machine when cloth is received.

[0042] A driving wheel two 6 is also included. The driving wheel two 6 is used to give a constant traction to the glass fiber cloth to make the glass fiber cloth run along the processing machine at a constant speed.

[0043] The utility model discloses a glass fiber cloth is sent out through sending part 1, after containing dipping, step such as opening fiber, by guide roller 123 is pressed to rubber coated roller 122, coats a layer of sealing edge glue in the position of cutting edge, enters IR furnace 7 drying in by cutting edge device 13 removes the feather edge, and the waste edge is collected by the bellows 14 and is centrally treated.

[0044] Finally, it is to be explained that the above examples are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the purpose and scope of the technical solutions of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. A glass fiber fabric on-line trimming processor characterized by: It comprises: a sending part and a storage rack one, the sending part can be driven by the drive wheel one to send the glass fiber cloth to the storage rack one; a coating device, which has a glue coating part for coating the edge part of the glass fiber cloth to be cut; an edge cutting device, which has a cutting part for cutting the edge of the glue coated part of the glass fiber cloth; a winding part for winding the processed glass fiber cloth.

2. The glass fiber fabric on-line slitting processor according to claim 1, characterized in that: It also comprises a wind box, which has a wind source for sucking the cut waste into the wind box.

3. The glass fiber fabric on-line slitting processor of claim 1, wherein: It also comprises a drying device for drying the glass fiber cloth after the opening, impregnation and coating treatment.

4. The glass fiber fabric on-line slitting processor according to claim 3, characterized in that: It also comprises an opening device, which comprises an opening slot, a pressing wheel one and a cooling wheel one, the pressing wheel one is used to squeeze the moisture on the surface of the glass fiber cloth and deliver it to the drying device, and the cooling wheel one is used to cool the glass fiber cloth to room temperature quickly.

5. The glass fiber fabric on-line slitting processor of claim 3, wherein: It also comprises an impregnation device, which comprises an impregnation slot, a pressing wheel two and a cooling wheel two, the pressing wheel two is used to squeeze off the excess post-treatment agent on the surface of the glass fiber cloth and deliver it to the drying device, and the cooling wheel two is used to cool the glass fiber cloth to room temperature quickly.

6. The glass fiber fabric on-line slitting processor of claim 3, wherein: The coating device comprises a glue tank, a glue coating roller and a guide roller, the glue tank stores the edge sealing glue, the glue coating roller is used to coat the edge sealing glue in the glue tank to the glue coated part of the glass fiber cloth, and the guide roller is used to press the glass fiber cloth to the glue coating roller and move the coated glass fiber cloth to the drying device.

7. The glass fiber fabric on-line slitting processor of claim 1, wherein: The edge cutting device comprises a cutter and a motor, the motor is used to drive the cutter to rotate to form a cutting part, and the cutter is used to cut the edge of the glue coated part of the glass fiber cloth.

8. The glass fiber fabric on-line slitting processor of claim 1, wherein: It also comprises a drive wheel two, which is used to give the glass fiber cloth a constant traction to make the glass fiber cloth run at a constant speed along the processing machine.

9. The glass fiber fabric on-line slitting processor of claim 1, wherein: It also comprises a storage rack two, which is used to store a certain amount of cloth to maintain the normal speed of the machine when receiving the cloth.

10. The glass fiber fabric on-line slitting processor of claim 3, wherein: The drying device is an IR furnace.