Wire arranging and dipping device for glass fiber reinforced plastic production

By designing a wire-based impregnation device including sink, vertical rod, cross rod, connecting rod and press rod, the problem that glass fiber cannot be neat during the impregnation process is solved, the orderly impregnation and operation of glass fibers is achieved, and the production efficiency and quality are improved.

CN223186798UActive Publication Date: 2025-08-05姜晶晶
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Patent Information

Application Number
CN202422109435.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-08-05
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The lack of special equipment in the prior art to pull glass fibers, resulting in the inability to ensure neatness and order during the impregnation process, which is inconvenient to operate and time-consuming and labor-intensive.

Method used

A wire-controlled impregnation device including sink, vertical rod, cross rod, connecting rod and press rod is designed. The vertical rod and cross rod are moved through the connecting rod, and the nut and screw connection are used to achieve reliable fixation and neat impregnation of glass fibers to avoid manual contact with liquid.

Benefits of technology

It realizes neat and orderly impregnation of glass fiber, which is convenient to operate, saves time and effort, and improves the efficiency and quality of fiberglass production.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223186798U_ABST
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Abstract

The utility model discloses a wire arranging and dipping device for glass fiber reinforced plastic production, which comprises a water tank, vertical rods arranged on the inner wall of the water tank, a cross rod arranged between the lower ends of the vertical rods, a connecting rod arranged outside the water tank and simultaneously connected with the water tank and the vertical rods, a first groove formed in the cross rod, and a second groove formed in the lower end of a pressing rod above the cross rod. The pressing rod moves in the vertical direction. The glass fiber is plugged into the first groove in the transverse rod and the second groove in the pressing rod, then the first nut and the second nut are screwed, the pressing rod is pressed on the transverse rod, reliable connection of the transverse rod, the pressing rod and the glass fiber is guaranteed, the vertical rod and the transverse rod are driven by the connecting rod to move along the water tank, and liquid in the water tank does not need to be touched by hands. The vertical rod moves along the connecting rod in the vertical direction, glass fibers at the end of the water tank can be conveniently stuffed between the pressing rod and the transverse rod, it is guaranteed that the glass fibers are tidy and ordered, operation is convenient, and time and labor are saved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of glass fiber reinforced plastic production, in particular to a wire arranging and impregnation device for glass fiber reinforced plastic production. Background Art

[0002] FRP is a composite material made of glass fiber and a thermosetting or thermoplastic resin of one or more species. The glass fiber is impregnated with a liquid resin, preformed through a compression molding process, and then the resin is cured to create corrosion-resistant, long-lasting FRP. Because the glass fibers used in FRP production are relatively soft and linear, the impregnation process not only requires ensuring the glass fibers are neatly arranged and fully impregnated to ensure the quality of the resulting FRP. Currently, there is no specialized equipment for pulling the glass fibers. Typically, workers manually grasp the ends of the glass fibers, press them into a water tank for impregnation, and then continue to manually pull the glass fibers through the tank until they reach the other end. This lacks guaranteed neatness and order, making the process inconvenient, time-consuming, and labor-intensive. Utility Model Content

[0003] In order to solve the above problems, the utility model provides a wire-arranging and impregnation device for glass fiber reinforced plastic production.

[0004] The utility model is implemented as follows: a wire-stripping and impregnation device for glass fiber reinforced plastic production comprises a water trough, liquid raw materials of resin are poured into the water trough, a vertical rod is vertically arranged near the inner wall of the water trough, a horizontal rod is fixedly arranged between the lower ends of the vertical rods, the structure is reliable, an "L"-shaped connecting rod is arranged on the outside of the water trough, a slide groove is horizontally opened on the upper part of the outer wall of the water trough, a first clamping block is fixedly arranged on the connecting rod, the first clamping block corresponds to the position of the slide groove and has the same width as the slide groove, ensuring a reliable connection between the first clamping block and the water trough, the first clamping block is arranged in the slide groove, the connecting rod drives the vertical rod to move horizontally along the slide groove, and the vertical rod is close to the water trough. The first connecting groove and the second connecting groove are vertically opened in the middle position of one side of the groove wall, and one end of the connecting rod is fixedly provided with a second clamping block, and the connecting rod corresponds to the position of the first connecting groove and has the same width as the first connecting groove. The connecting rod passes through the first connecting groove, and the second clamping block corresponds to the position of the second connecting groove and has the same size as the second connecting groove, thereby ensuring a reliable connection between the second clamping block and the vertical rod. The second clamping block is arranged in the second connecting groove, which not only ensures a reliable connection between the connecting rod and the vertical rod, but also limits the position of the vertical rod, so that the vertical rod moves along the connecting rod in the vertical direction. A pull handle is horizontally fixed between the upper ends of the vertical rods to facilitate the application of force to lift the vertical rod and the cross rod together.

[0005] The first and second grooves are evenly provided on the cross bar, and a pressure rod is horizontally provided above the cross bar, and a plurality of second grooves are evenly provided at the lower end of the pressure rod, and the positions of the first groove and the second groove correspond to each other and are the same in size. The glass fiber is inserted into the first groove and the second groove and then pressed tightly to ensure a reliable connection between the cross bar, the pressure rod and the glass fiber. A limiting groove is vertically provided at the middle position of the lower inner wall of the vertical rod, and the two ends of the pressure rod are arranged in the limiting groove, and the pressure rod moves along the limiting groove in the vertical direction. The width of the pressure rod is the same as the width of the limiting groove to ensure that the pressure rod does not shift in the position during the lifting and lowering process. A screw is vertically fixed at the middle position of the upper end of the pressure rod, and a through hole is provided at the middle position of the pull handle, and the screw passes through the through hole. A first nut and a second nut are tightly fitted on the screws on both sides of the through hole. By loosening or tightening the first nut and the second nut, the pressure rod is lifted and pressed down, thereby facilitating the operation of the glass fiber in the first groove and the second groove.

[0006] Preferably, rollers are symmetrically fixed on the upper parts of both ends of the water tank to support the glass fiber. A plurality of grooves are evenly opened on the rollers, and the glass fiber is placed in the grooves. The grooves correspond to the positions of the first grooves, so that the glass fiber can be impregnated neatly and orderly.

[0007] Preferably, a push rod is fixedly provided at one end of the connecting rod away from the vertical rod, so as to facilitate application of force, thereby pushing the vertical rod and the horizontal rod to move through the connecting rod without contacting the liquid.

[0008] Preferably, the width of the second clamping block is greater than the width of the first connecting groove, thereby ensuring a reliable connection between the second clamping block and the vertical rod and preventing the second clamping block from detaching from the first connecting groove.

[0009] The beneficial effects of the present invention are as follows: the present invention has a novel structural design, in which the glass fiber is stuffed into the first groove on the cross bar and the second groove on the pressure rod, and then the first nut and the second nut are tightened to press the pressure rod onto the cross bar, thereby ensuring a reliable connection between the cross bar, the pressure rod and the glass fiber, and the vertical rod and the cross bar are driven by the connecting rod to move along the water tank without touching the liquid in the water tank with hands. The connecting rod is both reliably connected to the vertical rod and can limit the position of the vertical rod, so that the vertical rod moves along the connecting rod in the vertical direction, making it easy to stuff the glass fiber at the end of the water tank between the pressure rod and the cross bar, thereby ensuring that the glass fiber is neat and orderly, easy to operate, and time-saving and labor-saving. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 It is a schematic diagram of the structure when the compression rod and the support rod are opened;

[0011] Figure 2 It is a structural diagram when the compression rod and the support rod are closed;

[0012] Figure 3 This is a schematic diagram of the top structure of the utility model;

[0013] Figure 4 Schematic diagram of the connection structure between the connecting rod and the vertical rod;

[0014] Figure 5 It is a structural diagram of the roller;

[0015] In the figure: 1. Water tank; 2. Vertical rod; 3. Horizontal rod; 4. Connecting rod; 5. Slide; 6. First clamping block; 7. First connecting groove; 8. Second connecting groove; 9. Second clamping block; 10. Pull handle; 11. First groove; 12. Press rod; 13. Second groove; 14. Limiting groove; 15. Screw; 16. Through hole; 17. First nut; 18. Second nut; 19. Roller; 20. Wire trough; 21. Push rod. DETAILED DESCRIPTION

[0016] In order to more clearly understand the technical solution of the present invention, the present invention is further described below with reference to the accompanying drawings.

[0017] like Figure 1-5The wire-straightening and impregnation device for glass fiber reinforced plastic production shown in the figure includes a water tank 1, in which liquid raw materials of resin are poured into the water tank 1, and vertical rods 2 are vertically arranged near the inner wall of the water tank 1, and horizontal rods 3 are fixedly arranged horizontally between the lower ends of the vertical rods 2. The structure is reliable, and an "L"-shaped connecting rod 4 is arranged on the outside of the water tank 1. A push rod 21 is fixedly arranged at one end of the connecting rod 4 away from the vertical rod 2 to facilitate the application of force, and then the vertical rod 2 and the horizontal rod 3 are pushed to move through the connecting rod 4 without contacting the liquid. A slide groove 5 is horizontally opened on the upper part of the outer wall of the water trough 1, and a first clamping block 6 is fixedly set on the connecting rod 4. The position of the first clamping block 6 corresponds to the position of the slide groove 5 and the width is the same as that of the connecting rod 4, ensuring a reliable connection between the first clamping block 6 and the water trough 5. The first clamping block 6 is set in the slide groove 5, and the connecting rod 4 drives the vertical rod 2 to move horizontally along the slide groove 5. The vertical rod 2 is vertically opened with a first connecting groove 7 and a second connecting groove 8 that are connected to each other in the middle position near the side of the water trough 1 wall. A second clamping block 9 is fixedly set at one end of the connecting rod 4. The position of the connecting rod 4 and the first connecting groove 7 are corresponding. Corresponding and with the same width, the connecting rod 4 passes through the first connecting groove 7, and the second clamping block 9 corresponds to the position of the second connecting groove 8 and is the same size, ensuring a reliable connection between the second clamping block 9 and the vertical rod 2. The second clamping block 9 is arranged in the second connecting groove 8, which not only ensures a reliable connection between the connecting rod 4 and the vertical rod 2, but also limits the position of the vertical rod 2 so that the vertical rod 2 moves along the connecting rod 4 in the vertical direction. The width of the second clamping block 9 is greater than the width of the first connecting groove 7, ensuring a reliable connection between the second clamping block 9 and the vertical rod 2, and preventing the second clamping block 9 from detaching from the first connecting groove 7. A pull handle 10 is fixedly provided horizontally between the upper ends of the vertical rods 2 to facilitate the application of force to lift the vertical rod 2 and the cross rod 3 together. A plurality of first grooves 11 are evenly provided on the cross rod 3, and a pressure rod 12 is horizontally provided above the cross rod 3. A plurality of second grooves 13 are evenly provided at the lower end of the pressure rod 12. The positions of the first grooves 11 and the second grooves 13 correspond to each other and are the same in size. The glass fiber is stuffed into the first grooves 11 and the second grooves 13 and then pressed tightly to ensure a reliable connection between the cross rod 3, the pressure rod 12 and the glass fiber. A limiting groove 14 is vertically provided in the middle position of the lower inner wall of the vertical rod 2, and the two ends of the pressure rod 12 are set in the limiting grooves 14. The rod 12 moves in the vertical direction along the limiting groove 14. The width of the pressure rod 12 is the same as the width of the limiting groove 14, ensuring that the pressure rod 12 will not shift in position during the lifting process. A screw 15 is vertically fixed in the middle position of the upper end of the pressure rod 12. A through hole 16 is opened in the middle position of the pull handle 10. The screw 15 passes through the through hole 16. A first nut 17 and a second nut 18 are tightly fitted on the screw 15 on both sides of the through hole 16. By loosening or tightening the first nut 17 and the second nut 18, the pressure rod 12 is lifted and pressed down, thereby facilitating the operation of the glass fiber in the first groove 11 and the second groove 13.

[0018] Rollers 19 are symmetrically fixed on the upper parts of both ends of the water tank 1 to support the glass fiber. A plurality of grooves 20 are evenly opened on the rollers 19. The glass fiber is placed in the grooves 20. The grooves 20 correspond to the positions of the first grooves 11, so that the glass fiber can be impregnated neatly and orderly.

[0019] The above description is only a preferred embodiment of the present invention. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the present invention patent application are included in the scope of the present invention patent application.

Claims

1. A wire immersion device for glass fiber reinforced plastic production, comprising a water tank, characterized in that: The trough is provided with an L-shaped connecting rod, and the upper portion of the outer wall of the trough is provided with a slide groove, and the first clamping block is fixed on the connecting rod. The first clamping block corresponds to the position of the slide groove and has the same width as the first clamping block. The first clamping block is arranged in the slide groove. The vertical rod is provided with a first connecting groove and a second connecting groove that are connected vertically at the middle position of one side of the trough wall. The second clamping block is fixed on one end of the connecting rod. The connecting rod corresponds to the position of the first connecting groove and has the same width as the first connecting groove. The connecting rod passes through the first connecting groove. The second clamping block corresponds to the position of the second connecting groove and has the same size. The second clamping block is arranged in the second connecting groove. A pull handle is fixed horizontally between the upper ends of the vertical rods. A plurality of first grooves are evenly provided on the cross bar, a pressure rod is horizontally arranged above the cross bar, and a plurality of second grooves are evenly provided at the lower end of the pressure rod, the positions of the first grooves and the second grooves correspond to each other and are the same in size, a limiting groove is vertically provided at the middle position of the lower part of the inner wall of the vertical rod, and the two ends of the pressure rod are arranged in the limiting groove, the width of the pressure rod is the same as the width of the limiting groove, a screw rod is vertically fixed at the middle position of the upper end of the pressure rod, a through hole is provided at the middle position of the pull handle, the screw rod passes through the through hole, and a first nut and a second nut are tightly fitted on the screw rods on both sides of the through hole.

2. A wire-arranging and impregnation device for glass fiber reinforced plastic production according to claim 1, characterized in that: Support rollers are symmetrically fixedly provided on the upper parts of both ends of the water trough, and a plurality of wire grooves are evenly opened on the support rollers, and the positions of the wire grooves correspond to those of the first grooves.

3. A wire-arranging and impregnation device for glass fiber reinforced plastic production according to claim 1, characterized in that: A push rod is fixedly provided on one end of the connecting rod away from the vertical rod.

4. A wire-straightening and impregnation device for glass fiber reinforced plastic production according to claim 1, characterized in that: The width of the second clamping block is greater than the width of the first connecting groove.