Production device of glass fiber reinforced nylon material

By introducing alkali-free fibers and silicone interface reinforcing agents into glass fiber reinforced nylon materials, and utilizing a heating device driven by an electric guide rail and a servo motor, the problem of uneven drying of nylon glass fibers was solved, achieving automated production and improved material performance.

CN224065832UActive Publication Date: 2026-03-31YUEQING BAOYUAN ENG PLASTICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing glass fiber reinforced nylon material production equipment cannot fully dry nylon glass fibers, affecting the drying effect.

Method used

A glass fiber reinforced nylon material comprising alkali-free fiber, silicone interface reinforcing agent, plasticizer and antioxidant was designed. Combined with a production device consisting of electric guide rail, slider, slider, top plate, limiting ring, double-ended lead screw, U-shaped lifting plate and servo motor, the heating rod position can be flexibly adjusted and automatically wound.

Benefits of technology

This method achieves uniform and comprehensive drying of nylon fibers, improving drying efficiency and production effectiveness, while also enhancing the chemical stability and mechanical strength of the material.

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Abstract

The utility model relates to the technical field of glass fiber reinforced nylon processing, in particular to a production device of a glass fiber reinforced nylon material, which comprises nylon fibers, alkali-free fibers fixedly arranged on the upper sides of the nylon fibers, organic silicon interface reinforcing agents fixedly arranged on the upper sides of the alkali-free fibers, and organic silicon interface reinforcing agents fixedly arranged on the upper sides of the organic silicon interface reinforcing agents. The whole nylon fiber is uniformly and comprehensively dried by flexibly adjusting the position of the heating rod, so that the drying effect of the production device is improved, the dried nylon fiber can be continuously wound along with the rotation of the first winding drum, meanwhile, the first winding drum can uniformly and reliably wind the nylon fiber through the back-and-forth movement of the limiting circular ring, and the production efficiency is improved. According to the glass fiber reinforced nylon material, the situation that the nylon fibers are not orderly enough in winding is avoided, the alkali-free fibers enable the nylon fibers to be good in electrical insulating property, high in mechanical strength and good in water resistance and weak alkali resistance, the adhesion between the glass fibers and the nylon can be enhanced through the organic silicon interface reinforcing agent, and the chemical stability of the glass fiber reinforced nylon material is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass fiber reinforced nylon processing technical field, concretely is a kind of glass fiber reinforced nylon material's production device. BACKGROUND

[0002] ‌The main role of glass fiber reinforced nylon material is to significantly improve the strength, rigidity and heat resistance of the material, and the performance of the final product far exceeds that of unenhanced nylon material by adding glass fiber and other reinforcing materials in nylon, and in order to remove the moisture in the nylon glass fiber, production device is needed to dry treatment‌.

[0003] The prior art discloses patent application number "CN202323586570.7", a heat-insulating glass fiber production device, which comprises a heating roller, the heating roller comprises a rotating shaft pipe, a cylinder, a connecting plate and a heating coil, the glass fiber is dried by using the heating roller, the fan and the heating rod, so that the drying efficiency of the glass fiber is effectively improved, and the glass fiber is uniformly distributed by using the material uniformizing roller, so that the drying efficiency of the glass fiber is further improved.

[0004] The production device can only improve the drying efficiency of the glass fiber, but in actual use, the production device as described above usually uses a fixed-position heating rod to dry the nylon glass fiber, so that the nylon glass fiber cannot be comprehensively dried, thereby affecting the drying effect of the production device and being inconvenient to use. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a glass fiber reinforced nylon material production device to solve the problems in the above background technology.

[0006] The purpose of the utility model can be realized by the following technical solutions:

[0007] A glass fiber reinforced nylon material comprises nylon fiber, an alkali-free fiber is fixedly arranged on the upper side of the nylon fiber, an organic silicon interface reinforcing agent is fixedly arranged on the upper side of the alkali-free fiber, a plasticizer is fixedly arranged on the upper side of the organic silicon interface reinforcing agent, and an antioxidant is fixedly arranged on the side of the plasticizer away from the organic silicon interface reinforcing agent.

[0008] A glass fiber reinforced nylon material production device comprises a production device main body, a horizontal plate is fixedly connected to the upper middle part of the production device main body, an electric guide rail is fixedly arranged on the upper side of the horizontal plate, a sliding block is installed on one side of the electric guide rail, a top plate is connected to the upper side of the sliding block, and a limiting circular ring is installed on the upper side of the top plate.

[0009] The upper side of the production device body is fixedly provided with a connecting plate, the front side of the connecting plate is connected with a U-shaped seat, the inner side of the U-shaped seat is rotatably connected with a double-head screw rod, the outer thread of the double-head screw rod is connected with two symmetrically arranged U-shaped lifting plates, and the inner side of the two U-shaped lifting plates is respectively provided with a heating rod for drying the nylon fiber.

[0010] Preferably, the upper side of the production device body is respectively fixedly provided with two first fixed vertical plates and two second fixed vertical plates, the inner side of the two first fixed vertical plates is rotatably connected with a first rotating block, the inner side of the two second fixed vertical plates is rotatably connected with a second rotating block, the inner side of the two first rotating blocks and the second rotating blocks is slidably connected with a movable clamping column, the first spring is connected between the movable clamping column and the first rotating block, the first spring is connected between the movable clamping column and the second rotating block, and the inner side of the movable clamping column is respectively clamped with a first winding drum and a second winding drum.

[0011] Preferably, the side of the second fixed vertical plate is rotatably connected with a driving gear rotating rod, one side of the driving gear rotating rod penetrates through the second fixed vertical plate and extends to the other side of the second fixed vertical plate, the second servo motor is fixedly installed on the driving gear rotating rod through the motor mounting plate, the rear side of the second rotating block penetrates through the second fixed vertical plate and extends to the rear side of the second fixed vertical plate, the rear side of the second rotating block is connected with a driven gear, the driven gear and the driving gear rotating rod are meshed with each other, and the rear side of the second fixed vertical plate is provided with a protection frame through screws.

[0012] Preferably, the upper side of the two first fixed vertical plates is fixedly connected with a top frame, the lower side of the top frame is slidably connected with two symmetrically arranged telescopic bases, the inside of the two telescopic bases is rotatably connected with an auxiliary roller for limiting the second winding drum, the upper side of the telescopic base penetrates through the top frame and extends to the upper side of the top frame, and the second spring is connected between the telescopic base and the top frame.

[0013] Preferably, the inner side of the U-shaped seat is connected with two smooth rods arranged in parallel, the outer surfaces of the two smooth rods are slidably connected with the inside of the U-shaped lifting plate, the lower side of the double-head screw rod penetrates through the U-shaped seat and extends to the lower side of the U-shaped seat, and the first servo motor is fixedly connected to the lower side of the double-head screw rod through the motor mounting plate.

[0014] The production device has the advantages that:

[0015] 1、The position of the heating rod can be flexibly adjusted to uniformly and comprehensively dry the entire nylon fiber, thereby improving the drying effect of the production device, and the nylon fiber after drying can be continuously wound by the rotation of the first winding drum, automatic production of the glass fiber reinforced nylon material is realized, and the back-and-forth movement of the limiting circular ring can make the first winding drum uniformly and reliably wind the nylon fiber, so that the nylon fiber winding is more uniform.

[0016] 2. The utility model discloses a no -alkali fiber makes that nylon fiber has electric insulation good, mechanical strength is high, water -resistant resistance weak alkali is good, utilizes organic silicon interface reinforcing agent can enhance the adhesion between glass fiber and nylon, improve the chemical stability of glass fiber reinforced nylon material, and the nylon fiber can be dried production of conveying and go up, improve the work efficiency of production device. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, below will to the drawing needed to use in the embodiment or prior art description simple introduction, obviously, for the ordinary skilled person in the art comes, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings;

[0018] Figure 1 It is the structure schematic drawing of nylon fiber of the utility model;

[0019] Figure 2 It is the structure schematic drawing of production device main part of the utility model;

[0020] Figure 3 It is the installation schematic drawing of U type lifting plate and heating rod in the utility model Figure 2 ;

[0021] Figure 4 It is the structure schematic drawing of driving gear rotating rod and driven gear in the utility model Figure 2 ;

[0022] Figure 5 It is the installation schematic drawing of second winding drum and movable clamping column in the utility model Figure 4 ;

[0023] The reference signs in the drawing are as follows:

[0024] 1, production device main part, 2, first fixed vertical plate, 3, no. 1 rotating block, 4, second fixed vertical plate, 5, no. 2 rotating block, 6, movable clamping column, 7, first spring, 8, first winding drum, 9, second winding drum, 10, horizontal plate, 11, connecting branch plate, 12, U-shaped seat, 13, electric guide rail, 14, sliding block, 15, top plate, 16, limit ring, 17, smooth rod, 18, U type lifting plate, 19, heating rod, 20, first servo motor, 21, driving gear rotating rod, 22, second servo motor, 23, driven gear, 24, protection frame, 25, top frame, 26, telescopic seat, 27, second spring, 28, auxiliary roller, 29, double -end screw, 100, nylon fiber, 101, no -alkali fiber, 102, organic silicon interface reinforcing agent, 103, plasticizer, 104, antioxidant. DETAILED DESCRIPTION

[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 skilled in the art without creative effort are within the protection scope of the present utility model.

[0026] like Figures 1 to 5 As shown, a glass fiber reinforced nylon material includes nylon fibers 100, with alkali-free fibers 101 fixedly disposed on the upper side of the nylon fibers 100. The alkali-free fibers 101 have excellent electrical insulation, high mechanical strength, and low hydrolysis degree, which can significantly improve the tensile strength and flexural strength of the glass fiber reinforced nylon material. An organosilicon interface reinforcing agent 102 is fixedly disposed on the upper side of the alkali-free fibers 101. The organosilicon interface reinforcing agent 102 can form a thin film on the glass fiber reinforced nylon material to enhance the interfacial adhesion of the material. A plasticizer 103 is fixedly disposed on the upper side of the organosilicon interface reinforcing agent 102, and an antioxidant 104 is fixedly disposed on the side of the plasticizer 103 away from the organosilicon interface reinforcing agent 102.

[0027] A production apparatus for glass fiber reinforced nylon material includes a main body 1 of the production apparatus. A horizontal plate 10 is fixedly connected to the upper middle part of the main body 1 of the production apparatus. An electric guide rail 13 is fixedly provided on the upper side of the horizontal plate 10. A slider 14 is installed on one side of the electric guide rail 13. A top plate 15 is connected to the upper side of the slider 14. A limiting ring 16 is installed on the upper side of the top plate 15.

[0028] A connecting support plate 11 is fixedly installed on the upper side of the main body 1 of the production device. A U-shaped seat 12 is connected to the front side of the connecting support plate 11. A double-ended lead screw 29 is rotatably connected to the inner side of the U-shaped seat 12. Two symmetrically arranged U-shaped lifting plates 18 are connected to the external thread of the double-ended lead screw 29. Heating rods 19 for drying nylon fibers 100 are arrayed on the inner side of the two U-shaped lifting plates 18.

[0029] Two first fixed vertical plates 2 and two second fixed vertical plates 4 are fixedly installed on the upper side of the main body 1 of the production device. The inner side of each of the two first fixed vertical plates 2 is rotatably connected to a first rotating block 3, and the inner side of each of the two second fixed vertical plates 4 is rotatably connected to a second rotating block 5. The inner sides of the first rotating block 3 and the second rotating block 5 are slidably connected to movable locking pins 6. A first spring 7 is connected between the movable locking pin 6 and the first rotating block 3, and between the movable locking pin 6 and the second rotating block 5. The inner side of the movable locking pin 6 is respectively engaged with a first take-up drum 8 and a second take-up drum 9. By setting the movable locking pin 6, pressing the two elastic movable locking pins 6 will retract the movable locking pin 6, so as to remove the first take-up drum 8 and the second take-up drum 9. The operation is simple and convenient, saving time and effort. At the same time, the two first rotating blocks 3 can drive the second take-up drum 9 to rotate to achieve unwinding, which is used to continuously dry nylon fiber 100. The second take-up drum 9 is located to the left of the first take-up drum 8.

[0030] A drive gear rod 21 is rotatably connected to one side of the second fixed vertical plate 4. One side of the drive gear rod 21 passes through the second fixed vertical plate 4 and extends to the other side of the second fixed vertical plate 4. A second servo motor 22 is fixedly installed on one side of the drive gear rod 21 via a motor mounting plate. The rear side of the second rotating block 5 passes through the second fixed vertical plate 4 and extends to the rear side of the second fixed vertical plate 4. A driven gear 23 is connected to the rear side of the second rotating block 5. Through the installation of the drive gear rod 21 and the driven gear 23, the number of teeth of the driven gear 23 is more than the number of teeth of the drive gear rod 21. In this way, the drive gear rod 21 can drive the first winding drum 8 at the driven gear 23 to decelerate and rotate for winding, so as to increase the drying time and improve the drying effect. The driven gear 23 and the drive gear rod 21 mesh with each other. A protective frame 24 is installed on the rear side of the second fixed vertical plate 4 by screws. The protective frame 24 can protect the driven gear 23 and the drive gear rod 21, increase the safety of the production device, and avoid accidental injury.

[0031] A top frame 25 is fixedly connected to the upper side of the two first fixed vertical plates 2. Two telescopic seats 26 are symmetrically arranged and slidably connected to the lower side of the top frame 25. The interior of each telescopic seat 26 is rotatably connected to an auxiliary roller 28 that limits the second take-up drum 9. By setting the auxiliary roller 28, the elastic auxiliary roller 28 applies pressure to the second take-up drum 9 to position the second take-up drum 9 and prevent the second take-up drum 9 from being unwound randomly. The upper side of the telescopic seat 26 passes through the top frame 25 and extends to the upper side of the top frame 25. A second spring 27 is connected between each of the two telescopic seats 26 and the top frame 25.

[0032] Two parallel smooth rods 17 are connected to the inner side of the U-shaped base 12. The outer surfaces of the two smooth rods 17 are slidably connected to the inside of the U-shaped lifting plate 18. By setting the smooth rods 17, the movement trajectory of the two U-shaped lifting plates 18 can be restricted, allowing the two U-shaped lifting plates 18 to move stably up and down, so as to drive the heating rod 19 to adjust its position for uniform drying.

[0033] The lower side of the nylon fiber 100 and the double-ended lead screw 29 passes through the U-shaped seat 12 and extends to the lower side of the U-shaped seat 12. The lower side of the double-ended lead screw 29 is fixedly connected to the first servo motor 20 through the motor mounting plate.

[0034] The working principle of the glass fiber reinforced nylon material production device provided by this utility model is as follows:

[0035] By rotating the double-ended lead screw 29 via the output shaft of the first servo motor 20, the two U-shaped lifting plates 18 on the double-ended lead screw 29 can move towards each other. This allows the heating rods 19 at the two U-shaped lifting plates 18 to gradually approach the upper and lower sides of the nylon fiber 100, enabling flexible adjustment of the position of the heating rods 19 to evenly and comprehensively dry the entire nylon fiber 100, thereby improving the drying effect of the production device. Then, the nylon fiber 100 on the second take-up drum 9 is threaded into the inside of the limiting ring 16 and fixed on the first take-up drum 8. Then, the output shaft of the second servo motor 22 drives the drive gear rod 21 to rotate. At this time, the drive gear rod 21 can drive the meshing driven gear 23 to rotate. In this way, the first winding drum 8 at the two second rotating blocks 5 can continuously wind up the dried nylon fiber 100, realizing the automated production of glass fiber reinforced nylon material. At the same time, the motor of the electric guide rail 13 can make the slider 14 drive the limiting ring 16 to move back and forth, which is conducive to the first winding drum 8 to wind up the nylon fiber 100 evenly and reliably, and avoid the nylon fiber 100 being wound up unevenly.

[0036] By utilizing alkali-free fiber 101, nylon fiber 100 possesses good electrical insulation, high mechanical strength, and good water and weak alkali resistance. Furthermore, the use of organosilicon interface reinforcing agent 102 enhances the adhesion between glass fiber and nylon, improving the chemical stability of the glass fiber reinforced nylon material. Subsequently, plasticizer 103 and antioxidant 104 work together to improve the mechanical properties of the material, enhancing the quality and lifespan of the glass fiber reinforced nylon material. Next, pressing the movable locking pins 6, each equipped with a first spring 7 at rotating block 3 and rotating block 5, allows the elastic movable locking pins 6 to elastically clamp the first take-up drum 8 and the second take-up drum 9, facilitating convenient loading and unloading of the take-up drums, saving time and effort. Simultaneously, two telescopic seats 26 equipped with a second spring 27 can fit above the second take-up drum 9, allowing the auxiliary roller 28 to elastically position the second take-up drum 9 using the elastic force of the second spring 27, ensuring stable and reliable unwinding of the second take-up drum 9. This continuous feeding of nylon fiber 100 for drying production improves the working efficiency of the production equipment.

[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.

Claims

1. An apparatus for producing a glass fiber-reinforced nylon material, comprising an apparatus main body (1), characterized by, The upper side of the production device body (1) is fixedly connected with a horizontal plate (10), the upper side of the horizontal plate (10) is fixedly provided with an electric guide rail (13), one side of the electric guide rail (13) is provided with a sliding block (14), the upper side of the sliding block (14) is connected with a top plate (15), and the upper side of the top plate (15) is provided with a limiting circular ring (16). The upper side of the production device body (1) is fixedly provided with a connecting branch plate (11), the front side of the connecting branch plate (11) is connected with a U-shaped seat (12), the inner side of the U-shaped seat (12) is rotatably connected with a double-head screw rod (29), the outer thread of the double-head screw rod (29) is connected with two symmetrically arranged U-shaped lifting plates (18), and the inner sides of the two U-shaped lifting plates (18) are both arrayed with heating rods (19) for drying nylon fibers (100).

2. The apparatus for producing a glass fiber reinforced nylon material according to claim 1, wherein The upper side of the production device body (1) is fixedly provided with two first fixed vertical plates (2) and two second fixed vertical plates (4), respectively, the inner sides of the two first fixed vertical plates (2) are both rotatably connected with a first rotating block (3), the inner sides of the two second fixed vertical plates (4) are both rotatably connected with a second rotating block (5), the inner sides of the two first rotating blocks (3) and the second rotating blocks (5) are both slidably connected with movable clamping columns (6), the movable clamping columns (6) and the first rotating blocks (3) are connected with first springs (7), the movable clamping columns (6) and the second rotating blocks (5) are connected with first springs (7), and the inner sides of the movable clamping columns (6) are respectively clamped with first winding drums (8) and second winding drums (9).

3. The production apparatus for glass fiber reinforced nylon material according to claim 2, characterized in that, One side of the second fixed vertical plate (4) is rotatably connected with a driving gear rotating rod (21), one side of the driving gear rotating rod (21) penetrates through the second fixed vertical plate (4) and extends to the other side of the second fixed vertical plate (4), one side of the driving gear rotating rod (21) is fixedly provided with a second servo motor (22) through a motor mounting plate, the rear side of the second rotating block (5) penetrates through the second fixed vertical plate (4) and extends to the rear side of the second fixed vertical plate (4), the rear side of the second rotating block (5) is connected with a driven gear (23), the driven gear (23) and the driving gear rotating rod (21) are in mesh with each other, and the rear side of the second fixed vertical plate (4) is provided with a protection frame (24) through screws.

4. The production apparatus for glass fiber reinforced nylon material according to claim 2, characterized in that, The upper sides of the two first fixed vertical plates (2) are fixedly connected with a top frame (25), the lower sides of the top frame (25) are slidably connected with two symmetrically arranged telescopic seats (26), the interiors of the two telescopic seats (26) are both rotatably connected with auxiliary rollers (28) limiting the second winding drums (9), the upper sides of the telescopic seats (26) penetrate through the top frame (25) and extend to the upper sides of the top frame (25), and the second springs (27) are connected between the telescopic seats (26) and the top frame (25).

5. The production apparatus for glass fiber reinforced nylon material according to claim 1, characterized in that, The inner side of the U-shaped seat (12) is connected with two smooth rods (17) arranged in parallel, the outer surfaces of the two smooth rods (17) are in sliding connection with the inside of the U-shaped lifting plate (18), the lower side of the double-head screw rod (29) penetrates through the U-shaped seat (12) and extends to the lower side of the U-shaped seat (12), and the lower side of the double-head screw rod (29) is fixedly connected with the first servo motor (20) through the motor mounting plate.

Citation Information

Patent Citations

  • Heat insulation glass fiber production device

    CN221527234U