Glass fiber reinforced plastic continuous machine-made forming device

The uniform coating and flattening of the resin mixture are achieved through the transmission mechanism of the coating plate and the pressing plate. Combined with the heating and curing of the infrared electric heating box, the problems of uneven coating and difficult flattening of the resin mixture in the prior art are solved, realizing the efficient and automated production of fiberglass and environmental cleanliness.

CN223803131UActive Publication Date: 2026-01-16SHANXI HONGYI GLASSWARE CO LTD
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Patent Information

Application Number
CN202520441791.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-01-16
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

In existing fiberglass molding processes, it is difficult to evenly coat and flatten the resin mixture, resulting in low production efficiency.

Method used

The system employs a transmission mechanism consisting of a coating plate and a pressing plate. The reciprocating movement of the coating plate enables uniform application of the resin mixture, while the movement of the pressing plate flattens the mixture. Simultaneously, an infrared electric heating box is used to heat and cure the resin.

Benefits of technology

It has enabled the continuous and automated production of fiberglass, improving processing efficiency and product quality while ensuring a clean processing environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass fiber reinforced plastic continuous machine-made forming device, which relates to the technical field of glass fiber reinforced plastic production, and comprises a flat plate conveyor, a stirring device is fixedly arranged outside the flat plate conveyor, an infrared electric heating box is fixedly arranged above the flat plate conveyor, and the top surface of the flat plate conveyor is fixedly connected with a mounting frame. And two transmission mechanisms are arranged in the mounting frame, each transmission mechanism comprises a brushing plate and a pressing plate, and the outer surface of each brushing plate is fixedly connected with a set of transmission connecting rods. According to the device, through arrangement of a brushing plate, a pressing plate, a transmission connecting rod and a lifting convex block, a resin mixture can be uniformly brushed on glass cloth through reciprocating movement of the brushing plate, and the pressing plate is driven by movement of the brushing plate to flatten the mixture, so that continuous mechanism automatic processing operation of glass fiber reinforced plastics is realized; the machining efficiency of the device is improved, the working environment is improved, and the product quality is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass steel production technical field, specifically a glass steel continuous machine mechanism forming device. BACKGROUND

[0002] Glass steel is a kind of composite material by glass fiber and resin through special process composite, has corrosion resistance, high strength, small weight, ageing resistance and safety and so on Advantage, has extensive application in multiple fields. The forming process of glass steel in prior art is mostly hand lay-up forming, and the production efficiency is relatively low, and continuous machine mechanism is often used to improve the processing rate of glass steel.

[0003] According to the patent with patent publication number CN203864029U, a glass steel continuous machine mechanism forming device is disclosed, which comprises a glass fiber cutting device, a resin glue solution introduction device, a production platform, an oven, a forming mold group, a shaping traction device and a cutting device, and an oven is arranged in the middle of the production platform.

[0004] The above scheme can change the processing mode of glass steel production hand lay-up forming in the prior art and improve the production efficiency during implementation, but the above scheme is inconvenient to uniformly brush the resin mixture on the glass cloth during implementation, and it is difficult to flatten the mixture. Therefore, we provide a glass steel continuous machine mechanism forming device to solve the above problems. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a glass steel continuous machine mechanism forming device to solve the problems in the prior art.

[0006] To achieve the above object, the utility model provides the following technical scheme: a glass steel continuous machine mechanism forming device, including flat plate conveyor, the outside fixed mounting of flat plate conveyor has stirring device, the upper fixed mounting of flat plate conveyor has infrared electric heating box, the top surface fixed connection of flat plate conveyor has mounting bracket, the inside of mounting bracket is provided with two transmission mechanisms, the transmission mechanism includes brushing plate and tamping plate, the outer surface fixed connection of brushing plate has a group of transmission connecting rods, the inner wall fixed connection of mounting bracket has limit concave block, the end of tamping plate is connected with the lifting lug of fixed connection.

[0007] Preferably, the outer surface of the tamping plate is provided with a group of clamping grooves matched with the transmission connecting rods, and the end of each transmission connecting rod is slidably arranged in the clamping groove to provide space for the lifting of the tamping plate.

[0008] Preferably, the inside of the mounting bracket is fixedly installed with an electric push rod, and the end of the brushing plate is fixedly connected with a connecting plate, so that the electric push rod can drive the brushing plate to move back and forth.

[0009] Preferably, the lifting protrusion is in sliding connection with the limiting recess, and the connecting plate is fixedly connected with the telescopic end of the electric push rod.

[0010] Preferably, the inside of the flat plate conveyor is rotationally connected with a coating roller, and the top surface of the flat plate conveyor is provided with a fixing groove, and the coating roller is used for coating the resin mixture on the glass cloth.

[0011] Preferably, the outside of the infrared electric heating box is slidably provided with a cutter, and the outside of the infrared electric heating box is fixedly provided with a hydraulic driving assembly used for driving the cutter, and the cutter can cut the glass fiber.

[0012] Preferably, the outside of the infrared electric heating box is fixedly provided with a fan, and the end of the flat plate conveyor is fixedly provided with a traction assembly, and the fan is used for cleaning the glass fiber.

[0013] Compared with the prior art, the present application has the following beneficial effects:

[0014] 1. The present application is provided with a coating plate, a pressing plate, a transmission connecting rod and a lifting protrusion, so that the resin mixture can be uniformly coated on the glass cloth through the reciprocating movement of the coating plate, and the pressing plate is driven by the movement of the coating plate to flatten the mixture, realizing continuous mechanism automatic work of the glass steel, speeding up the processing efficiency of the device, improving the working environment and improving the product quality.

[0015] 2. The present application is provided with a cutter, a hydraulic driving assembly and a fan, so that the cutting work of the glass steel can be completed, the glass steel transported on the flat plate conveyor can be taken down and transported conveniently, and the glass fiber generated in the cutting process can be adsorbed, avoiding the influence of the fiber scattering on the environmental quality of the processing site.

[0016] 3. The present application is provided with a stirring device and an infrared electric heating box, the infrared electric heating box can heat the mixed resin through infrared irradiation, so that the mixed resin can be quickly cured to preliminarily shape the glass steel, greatly improving the forming speed of the glass steel, and the stirring device can stir the resin mixture of the curing agent and the accelerator, increasing the uniformity of the mixture and improving the forming quality of the glass steel. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a structural schematic view of the present application;

[0018] Figure 2 It is a structural schematic view of the stirring device of the present application;

[0019] Figure 3This is a schematic diagram of the structure of the infrared electric heating box of this utility model;

[0020] Figure 4 This is a schematic diagram of the mounting bracket of this utility model;

[0021] Figure 5 This is a schematic diagram of the transmission mechanism of this utility model.

[0022] Labels in the diagram: 1. Flatbed conveyor; 2. Mixing device; 3. Infrared electric heating box; 4. Mounting frame;

[0023] 5. Transmission mechanism; 501. Painting plate; 502. Pressing plate; 503. Transmission connecting rod; 504. Slot; 505. Limiting recess; 506. Lifting protrusion; 507. Electric push rod; 508. Connecting plate;

[0024] 6. Paint roller; 7. Fixing groove; 8. Cutter; 9. Hydraulic drive assembly; 10. Fan; 11. Traction assembly. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] This utility model provides a technical solution for a continuous fiberglass molding machine.

[0027] like Figure 1 - Figure 5 As shown, the device includes a flat conveyor 1, with a traction component 11 fixedly installed at the end of the flat conveyor 1. The conveying surface of the flat conveyor 1 is coated with a film to prevent the mixture from sticking together and to pull and convey the glass cloth. This allows the operator to fix the end of the glass cloth in the fixing groove 7, enabling the flat conveyor 1 to pull the glass cloth to move. This facilitates the automated continuous molding process of fiberglass. The flat conveyor 1 and the equipment involved in this device are all prior art, and will not be described in detail in this application.

[0028] A stirring device 2 is fixedly installed on the outside of the flat conveyor 1. The stirring device 2 can stir the resin mixture of curing agent, accelerator, etc., to increase the uniformity of the mixture and improve the quality of the fiberglass produced by the device. The stirring device 2 is connected to the coating roller 6 through a connecting pipe. The uniformly stirred mixture in the stirring device 2 can enter the coating roller 6 through the connecting pipe. A solenoid valve is installed on the connecting pipe to control the opening and closing of the pipe.

[0029] The inside of the flat conveyor 1 is rotatably connected with a coating roller 6, and the top surface of the flat conveyor 1 is provided with a fixing groove 7, and the surface of the coating roller 6 is uniformly distributed with a certain size of leakage hole. When the flat conveyor 1 conveys the glass cloth, the glass cloth will rub with the coating roller 6 and drive the coating roller 6 to rotate. At this time, the resin mixed liquid in the coating roller 6 will drip onto the glass cloth through the leakage hole, thereby completing the coating work. The inside of the fixing groove 7 is connected with a bolt, and the staff can put one end of the glass cloth into the fixing groove 7 and fix the glass cloth through the bolt, so as to avoid the movement of the glass cloth during processing and affect the final forming quality.

[0030] An infrared electric heating box 3 is fixedly installed above the flat conveyor 1, a cutter 8 is slidably installed outside the infrared electric heating box 3, the infrared electric heating box 3 can heat the mixed resin by infrared radiation, so that the mixed resin can be quickly cured, and the glass steel is preliminarily shaped, which greatly improves the forming speed of the glass steel. The cutter 8 can cut the preliminarily shaped glass steel under the control of the hydraulic driving assembly 9, which facilitates subsequent transportation of the glass steel.

[0031] A hydraulic driving assembly 9 for driving the cutter 8 is fixedly installed outside the infrared electric heating box 3, and a fan 10 is fixedly installed on the outer surface of the infrared electric heating box 3. The hydraulic driving assembly 9 can apply power to the cutter 8 through the existing technology such as hydraulic rod, so that the cutter 8 completes the cutting work of the glass steel, and the glass steel transported on the flat conveyor 1 is conveniently taken down and transported to the curing chamber through the existing conveying device. The fan 10 can adsorb the glass fiber generated during cutting. The staff can install a collection bag outside the fan 10 to collect the glass fiber, so as to avoid the influence of fiber scattering on the environmental quality of the processing site.

[0032] The top surface of the flat conveyor 1 is fixedly connected with a mounting bracket 4, and the inside of the mounting bracket 4 is provided with two transmission mechanisms 5. The transmission mechanism 5 includes a brushing plate 501 and a pressing plate 502. The mounting bracket 4 can provide installation support for the operation of the transmission mechanism 5. The transmission mechanism 5 can press the glass cloth with added resin mixture, so that the mixed resin can fully immerse into the glass cloth, improving the quality of the device producing glass steel. The setting of the two transmission mechanisms 5 can effectively improve the flattening effect of the device.

[0033] The outer surface of the brushing plate 501 is fixedly connected with a set of transmission connecting rods 503, the outer surface of the pressing plate 502 is provided with a set of clamping grooves 504 matched with the transmission connecting rods 503, the end of each transmission connecting rod 503 is slidably arranged in the clamping groove 504, and the end of the transmission connecting rod 503 and the clamping groove 504 are designed in a cross shape, so that the connection stability between the transmission connecting rod 503 and the clamping groove 504 is effectively improved, and space is provided for the lifting and pressing of the pressing plate 502, and the bottom surface of the brushing plate 501 is provided with bristles for brushing the resin mixture, so that the glass cloth on the flat plate conveyor 1 can be reciprocally brushed when the brushing plate 501 reciprocally moves in the installation frame 4, so that the mixture can be uniformly brushed on the glass cloth.

[0034] The inner wall of the installation frame 4 is fixedly connected with a limiting recessed block 505, the end of the pressing plate 502 is fixedly connected with a lifting protrusion 506, the lifting protrusion 506 is slidably connected with the limiting recessed block 505, the brushing plate 501 moves to drive the pressing plate 502 to reciprocally move through the transmission connecting rod 503 and the clamping groove 504, the pressing plate 502 reciprocally moves to drive the lifting protrusion 506 to slide back and forth in the limiting recessed block 505, and since the limiting recessed block 505 and the lifting protrusion 506 are provided with certain inclined surfaces, the pressing plate 502 is driven to reciprocally lift under the limiting action of the limiting recessed block 505 when the lifting protrusion 506 slides back and forth, so that the pressing plate 502 presses the glass cloth transported on the flat plate conveyor 1, and the resin mixture brushed uniformly by the brushing plate 501 can be fully pressed into the glass cloth, thereby effectively improving the production quality of the glass steel.

[0035] The inside of the installation frame 4 is fixedly provided with an electric push rod 507, the end of the brushing plate 501 is fixedly connected with a connecting plate 508, the connecting plate 508 is fixedly connected with the telescopic end of the electric push rod 507, the two ends of the brushing plate 501 and the pressing plate 502 are provided with the electric push rod 507, the connecting plate 508 and the limiting recessed block 505, and the lifting protrusion 506, so that the two ends of the brushing plate 501 and the pressing plate 502 can keep synchronous movement, the stability of the brushing plate 501 and the pressing plate 502 is effectively improved, the electric push rod 507 is started to drive the connecting plate 508 to reciprocally slide in the installation frame 4, thereby driving the brushing plate 501 to perform brushing work, and the installation frame 4 can provide support effect for the sliding of the connecting plate 508.

[0036] Working principle: when the staff uses the device for glass steel continuous machine forming processing, first one end of the glass cloth is put into the fixed groove 7 through the traction assembly 11, and then the cloth is fixed through the bolt, then the resin mixture of curing agent, accelerator and the like is poured into the stirring device 2 and the stirring device 2 is started, after the stirring device 2 is stirred, the electromagnetic valve control connecting pipe is opened, the mixture will enter the coating roller 6 through the connecting pipe, at this time, the flat plate conveyor 1 is started, the flat plate conveyor 1 can transport the glass cloth, the coating roller 6 can rotate through the friction with the glass cloth and coat the resin mixture in the inside on the surface of the glass cloth, when the glass cloth passes through the mounting frame 4, the electric push rod 507 can drive the coating plate 501 to reciprocate through the connecting plate 508, so as to uniformly brush the resin mixture on the cloth, and the movement of the coating plate 501 can drive the pressing plate 502 to move through the transmission connecting rod 503, the movement of the pressing plate 502 will be limited under the limiting action of the limiting recess 505 and the lifting lug 506, so as to press the resin mixture into the glass cloth, then the infrared electric heating box 3 can preliminarily heat and shape the glass cloth, the hydraulic drive assembly 9 controls the cutter 8 to cut the glass steel, and finally the staff transfers the glass steel to the curing chamber and stands still.

[0037] It is obvious for those skilled in the art that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, no matter from which point, the embodiments should be regarded as exemplary and non-restrictive, the scope of the utility model is defined by the appended claims instead of the above description, therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any figure mark in the claims should not be regarded as limiting the involved claims.

Claims

1. A continuous glass fiber reinforced plastic molding apparatus, characterized by: Including flat conveyer (1), it is characterized by that: the outside of flat conveyer (1) is fixedly installed with stirring device (2), the top of flat conveyer (1) is fixedly installed with infrared electric heating box (3), the top surface of flat conveyer (1) is fixedly connected with mounting bracket (4), the inside of mounting bracket (4) is provided with two transmission mechanisms (5); The transmission mechanism (5) includes a coating plate (501) and a pressing plate (502), the outer surface of the coating plate (501) is fixedly connected with a set of transmission connecting rods (503), the inner wall of the mounting bracket (4) is fixedly connected with a limiting recess block (505), the end of the pressing plate (502) is fixedly connected with a lifting lug (506).

2. A glass fiber reinforced plastic continuous machine forming device according to claim 1, characterized in that: The outer surface of the pressing plate (502) is provided with a set of clamping grooves (504) matched with the transmission connecting rods (503), and the end of each transmission connecting rod (503) is slidably arranged in the clamping groove (504).

3. A glass fiber reinforced plastic continuous machine forming device according to claim 1, characterized in that: The inside of the mounting bracket (4) is fixedly installed with an electric push rod (507), and the end of the coating plate (501) is fixedly connected with a connecting plate (508).

4. A glass fiber reinforced plastic continuous machine forming device according to claim 3, characterized in that: The lifting lug (506) is slidably connected with the limiting recess block (505), and the connecting plate (508) is fixedly connected with the telescopic end of the electric push rod (507).

5. A glass fiber reinforced plastic continuous machine forming device according to claim 1, characterized in that: The inside of the flat conveyer (1) is rotatably connected with a coating roller (6), and the top surface of the flat conveyer (1) is provided with a fixed groove (7).

6. A glass fiber reinforced plastic continuous machine forming device according to claim 1, characterized in that: The outside of the infrared electric heating box (3) is slidably installed with a cutter (8), and the outside of the infrared electric heating box (3) is fixedly installed with a hydraulic drive assembly (9) for driving the cutter (8).

7. A glass fiber reinforced plastic continuous machine forming device according to claim 1, characterized in that: The outer surface of the infrared electric heating box (3) is fixedly installed with a fan (10), and the end of the flat conveyer (1) is fixedly installed with a traction assembly (11).

Citation Information

Patent Citations

  • Glass fiber reinforced plastic continuous mechanism forming device

    CN203864029U