Glass fiber cloth splicing device

Through the design of the heat seal calibration adjustment mechanism and support platform, the electric push rod is used to drive the heat welding roller to slide, which solves the scald problem caused by manual alignment of joints during thermal welding of glass fiber cloth, and achieves accurate sewing effect.

CN223147806UActive Publication Date: 2025-07-25HU BEI SI CHUANG FU HE CAI LIAO YOU XIAN GONG SI
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Patent Information

Application Number
CN202422387750.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-25
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

During the hot welding process, existing fiberglass fabric splicing devices need to be manually aligned at the joints, which may cause burns on the hands.

Method used

The heat seal calibration adjustment mechanism and support platform are adopted to drive the heat welding roller to slide forward and backward through the electric push rod to achieve accurate thermal welding at the stitching of glass fiber cloth and avoid manual operation.

Benefits of technology

Accurate heat welding at the stitching of fiberglass cloth is achieved, avoiding scalding caused by direct contact with the heat welding roller of the hand.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223147806U_ABST
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Abstract

The utility model discloses a glass fiber cloth splicing device which comprises a heat-seal calibration adjusting mechanism and a supporting platform, the inner wall of the heat-seal calibration adjusting mechanism is fixedly connected with a first fixing rod, the heat-seal calibration adjusting mechanism comprises a telescopic supporting rod, the top of one side face of the telescopic supporting rod is fixedly connected with a first electric push rod, and the top of the other side face of the telescopic supporting rod is fixedly connected with a second electric push rod. One end of the first electric push rod is fixedly connected with an auxiliary supporting block, and the bottom of the side face of the auxiliary supporting block is fixedly connected with a first stepping motor. Through the arrangement of the heat sealing calibration adjusting mechanism and the supporting platform, after the glass fiber cloth is fixed, the first electric push rod is driven to drive the heat welding roller to slide back and forth, so that the glass fiber cloth is subjected to follow-up back-and-forth movement calibration of the heat welding roller, meanwhile, the sewing position of the glass fiber cloth can be subjected to accurate heat welding, and the production efficiency is improved. Therefore, the glass fiber cloth does not need to be moved at any time to switch positions, and hands can be prevented from being directly contacted with the hot welding rollers to be scalded.
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Description

Technical Field

[0001] The utility model relates to the technical field of fiberglass cloth, in particular to a splicing device for fiberglass cloth. Background Technique

[0002] Fiberglass cloth is a fabric made of fiberglass, which is widely used in multiple industries, especially in the fields of construction, aviation, automobiles, ships and sports equipment, and has excellent chemical resistance, high temperature resistance and mechanical strength. Fiberglass cloth can be spliced by using methods such as glue, stitching or thermal welding, and can be made into various products by means of thermoplastic forming.

[0003] In this regard, Chinese Patent Publication No. CN219883316U discloses a splicing device for fiberglass cloth, which can automatically adjust the annular electric heating plate according to the position of the joint of the fiber cloth, without manual movement by the staff, thus avoiding the situation of the staff being scalded during the processing.

[0004] However, when the existing fiberglass cloth splicing device is specifically used, as can be seen from the above solution, there are still some problems: Fiberglass cloth usually requires the use of special thermal welding equipment to heat the joint of two pieces of fiberglass cloth and melt its fibers to form a firm joint. Before starting thermal welding, it is necessary to ensure that the two pieces of fiberglass cloth to be welded are aligned to the correct position to form the required joint, and manually stitching the joint will inadvertently touch the rollers for thermal welding, which may cause hand burns. Content of the Utility Model

[0005] The utility model provides a splicing device for fiberglass cloth to solve the problems put forward in the above background technique.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0007] A splicing device for fiberglass cloth, including a heat-sealing calibration adjustment mechanism and a support platform, and a first fixed rod is fixedly connected to the inner wall of the heat-sealing calibration adjustment mechanism;

[0008] The heat-sealing calibration adjustment mechanism includes a telescopic support rod, an electric push rod one is fixedly connected to the top of one side of the telescopic support rod, one end of the electric push rod one is fixedly connected to an auxiliary support block, and a stepping motor one is fixedly connected to the bottom of the side of the auxiliary support block. The output end of the stepping motor one is rotationally connected to a thermal welding roller through a set rotating shaft.

[0009] As a further improvement of this technical solution: One end of the telescopic support rod is fixedly connected to the middle of the side of the auxiliary support block.

[0010] As a further improvement of this technical solution: One end of the first fixed rod is fixedly connected with a slidable adjusting plate, and the bottom of the back surface of the slidable adjusting plate is fixedly connected with a second electric push rod.

[0011] As a further improvement of this technical solution: One end of the second electric push rod is fixedly connected with a first fixing plate, both ends of the first fixing plate are fixedly connected with chute support plates, and the inner wall of the chute support plate is slidably connected with one end of the slidable adjusting plate.

[0012] As a further improvement of this technical solution: The lower end of the chute support plate is fixedly connected with one side of the upper end of the support platform close to the middle.

[0013] As a further improvement of this technical solution: One side of the upper end of the support platform close to the front is fixedly connected with a second fixing plate, both ends of the second fixing plate are slidably connected with a pressing plate through chutes opened, and one side of the upper end of the pressing plate is slidably connected with a limiting bolt through a through hole opened.

[0014] As a further improvement of this technical solution: Support columns are fixedly connected to the four corners of the lower end of the support platform, a second fixed rod is fixedly connected to the surface of the support column, a cross steel plate is inserted into one end of the second fixed rod, and a bottom laying plate is fixedly connected to the lower end of the second fixed rod.

[0015] As a further improvement of this technical solution: A support frame is fixedly connected to one side edge of the upper end of the support platform, a third fixing plate is fixedly connected to the inner wall of the support frame, a second stepping motor is fixedly connected to one side surface of the support frame, and a pressing roller is fixedly connected to the output end of the second stepping motor.

[0016] Compared with the prior art, the beneficial effects of the present utility model are:

[0017] Through the setting of the heat-sealing calibration adjustment mechanism and the support platform, after the fiberglass cloth is fixed, the first electric push rod is driven to drive the heat welding roller to slide back and forth, so that while the fiberglass cloth is calibrated by the subsequent back-and-forth movement of the heat welding roller, the stitching of the fiberglass cloth can be accurately heat-welded, so that it is not necessary to move the fiberglass cloth to change the position at any time, and thus it is possible to avoid direct contact of the hand with the heat welding roller and cause burns.

[0018] The above description is only an overview of the technical solution of the present utility model. In order to be able to understand the technical means of the present utility model more clearly and implement it according to the content of the description, the following will be described in detail with reference to the preferred embodiments of the present utility model and the accompanying drawings. The specific implementation manners of the present utility model are given in detail by the following embodiments and their accompanying drawings. Brief Description of the Drawings

[0019] The accompanying drawings described herein are used to provide a further understanding of the present utility model and constitute a part of this application. The schematic embodiments of the present utility model and their descriptions are used to explain the present utility model and do not constitute an improper limitation to the present utility model. In the drawings:

[0020] Figure 1 is a schematic structural diagram of a glass fiber cloth splicing device proposed by the present utility model;

[0021] Figure 2 is a split structural diagram of a glass fiber cloth splicing device proposed by the present utility model;

[0022] Figure 3 is of the glass fiber cloth splicing device proposed by the present utility model Figure 1 and is an enlarged structural diagram of part A therein;

[0023] Figure 4 is a split structural diagram of a heat sealing calibration adjustment mechanism of a glass fiber cloth splicing device proposed by the present utility model.

[0024] In the drawings, the list of components represented by each reference numeral is as follows:

[0025] 1. Heat sealing calibration adjustment mechanism; 101. Telescopic support rod; 102. Electric push rod one; 103. Auxiliary support block; 104. Stepper motor one; 105. Heat welding roller; 2. Support platform; 3. Fixed rod one; 4. Slidable adjustment plate; 5. Electric push rod two; 6. Fixed plate one; 7. Chute support plate; 8. Fixed plate two; 9. Pressing plate; 10. Limit bolt; 11. Support column; 12. Fixed rod two; 13. Cross steel plate; 14. Bottom laying plate; 15. Support frame; 16. Fixed plate three; 17. Stepper motor two; 18. Pressing roller. Specific embodiments

[0026] The principles and features of the present utility model will be described below with reference to the accompanying drawings. The examples given are only used to explain the present utility model and are not used to limit the scope of the present utility model. In the following paragraphs, the present utility model will be described more specifically by way of example with reference to the drawings. The advantages and features of the present utility model will be clearer according to the following description and the claims. It should be noted that the drawings are all in a very simplified form and use non-precise scales, and are only used to facilitate and clearly assist in explaining the purpose of the embodiments of the present utility model.

[0027] Please refer to Figures 1 to 4 , in the embodiment of the present utility model, a glass fiber cloth splicing device includes a heat sealing calibration adjustment mechanism 1 and a support platform 2. A fixed rod one 3 is fixedly connected to the inner wall of the heat sealing calibration adjustment mechanism 1;

[0028] The heat-sealing calibration adjustment mechanism 1 includes a telescopic support rod 101. At the top of one side of the telescopic support rod 101, an electric push rod 102 is fixedly connected. One end of the electric push rod 102 is fixedly connected with an auxiliary support block 103. At the bottom of one side of the auxiliary support block 103, a stepping motor 104 is fixedly connected. The output end of the stepping motor 104 is rotationally connected with a heat-sealing roller 105 through a set rotating shaft.

[0029] Through the setting of the heat-sealing calibration adjustment mechanism 1 and the support platform 2, after the fiberglass cloth is fixed, the electric push rod 102 is driven to drive the heat-sealing roller 105 to slide back and forth, so that while the fiberglass cloth is calibrated by the subsequent back-and-forth movement of the heat-sealing roller 105, the sewing part of the fiberglass cloth can be accurately heat-sealed, thus eliminating the need to move the fiberglass cloth to change positions at any time, and further avoiding scalding caused by direct contact between the hand and the heat-sealing roller 105.

[0030] The heat-sealing roller 105 adjusts the temperature according to the characteristics of the fiberglass cloth, usually between 200 °C and 350 °C.

[0031] Please refer to Figure 4 , one end of the telescopic support rod 101 is fixedly connected to the middle part of one side of the auxiliary support block 103.

[0032] The telescopic support rod 101 can be telescopically adjusted adaptively to cooperate with the telescopic adjustment of the electric push rod 102, so that the auxiliary support block 103 can slide horizontally.

[0033] Please refer to Figures 1 to 2 , one end of the fixed rod 3 is fixedly connected with a slidable adjustment plate 4, and an electric push rod 5 is fixedly connected to the bottom of the back of the slidable adjustment plate 4.

[0034] The electric push rod 5 can be used as a driving source to drive the slidable adjustment plate 4 to move horizontally back and forth, driving the heat-sealing calibration adjustment mechanism 1 to sew the fiberglass cloth.

[0035] Please refer to Figures 1 to 2 , one end of the electric push rod 5 is fixedly connected with a fixing plate 6, and chute support plates 7 are fixedly connected to both ends of the fixing plate 6. The inner wall of the chute support plate 7 is slidably connected to one end of the slidable adjustment plate 4.

[0036] The chute support plate 7 limits the back-and-forth sliding of the slidable adjustment plate 4, preventing the heat-sealing roller 105 from being skewed and making it difficult to fit the fiberglass cloth for sewing.

[0037] Please refer to Figures 1 to 2 , the lower end of the chute support plate 7 is fixedly connected to one side of the upper end of the support platform 2 near the middle.

[0038] The support platform 2 fixedly supports the lower end of the chute support plate 7, so that the chute support plate 7 is always in a horizontal state.

[0039] Please refer to Figures 2 to 3 , on one side of the upper end of the support platform 2 close to the front, a second fixed plate 8 is fixedly connected. Both ends of the second fixed plate 8 are slidably connected with a pressing plate 9 through the opened chutes. One side of the upper end of the pressing plate 9 is slidably connected with a limit bolt 10 through the opened through hole.

[0040] The pressing plate 9 is limited to slide down in the chutes opened at both ends of the support platform 2. The pressing plate 9 presses on both sides of the fiberglass cloth, and the limit bolt 10 is tightened to fix the fiberglass cloth, which is convenient for stitching and splicing the fiberglass cloth.

[0041] Please refer to Figures 1 to 2 , at the four corners of the lower end of the support platform 2, support columns 11 are fixedly connected. A second fixed rod 12 is fixedly connected to the surface of the support column 11. One end of the second fixed rod 12 is inserted with a cross steel plate 13, and a bottom laying plate 14 is fixedly connected to the lower end of the second fixed rod 12.

[0042] When the cross steel plate 13 is installed at the second fixed rod 12, it cross-supports and strengthens the bottom of the splicing device, so that the bottom stability of the splicing device is enhanced.

[0043] Please refer to Figures 1 to 2 , on one side edge of the upper end of the support platform 2, a support frame 15 is fixedly connected. A third fixed plate 16 is fixedly connected to the inner wall of the support frame 15. A second stepping motor 17 is fixedly connected to one side surface of the support frame 15. The output end of the second stepping motor 17 is fixedly connected with a pressing roller 18.

[0044] Put one end of the fiberglass cloth on the upper surface of the third fixed plate 16, and drive the second stepping motor 17 to drive the pressing roller 18 to flatten the fiberglass cloth for subsequent processing.

[0045] The working principle of the present utility model is:

[0046] After one side of the fiberglass cloth is fixedly pressed, drive the second electric push rod 5 to drive the slidable adjustment plate 4 to slide back and forth on the inner wall of the chute of the chute support plate 7, and drive the first electric push rod 102 to expand and contract according to the stitching position of the fiberglass cloth. The telescopic support rod 101 simultaneously makes corresponding telescopic operations, and the position of the hot welding roller 105 is horizontally moved. After determining the stitching position, the slidable adjustment plate 4 drives the front and back movement, and the second stepping motor 17 drives the hot welding roller 105 to roll and press the stitching position of the fiberglass cloth, gradually welding the stitching position of the fiberglass cloth together to complete the stitching.

[0047] The above are only the preferred embodiments of the present utility model, and do not impose any form of limitation on the present utility model; any ordinary technician in the industry can smoothly implement the present utility model according to what is shown in the accompanying drawings of the specification and what is described above; however, any minor changes, modifications, and equivalent variations made by those skilled in the art within the scope of the technical solution of the present utility model by using the technical content disclosed above are equivalent embodiments of the present utility model; at the same time, any changes, modifications, and equivalent variations made to the above embodiments based on the essential technology of the present utility model still fall within the protection scope of the technical solution of the present utility model.

Claims

1. Fiberglass cloth splicing device, comprising a heat-sealing calibration adjustment mechanism (1) and a support platform (2), characterized in that, One end of the fixed rod 1 is fixedly connected to the inner wall of the heat sealing calibration and adjustment mechanism (1). The heat sealing calibration and adjustment mechanism (1) includes a telescopic support rod (101). At the top of one side of the telescopic support rod (101), an electric push rod 1 (102) is fixedly connected. One end of the electric push rod 1 (102) is fixedly connected to an auxiliary support block (103). At the bottom of one side of the auxiliary support block (103), a stepping motor 1 (104) is fixedly connected. The output end of the stepping motor 1 (104) is rotationally connected to a heat welding roller (105) through a set rotating shaft.

2. The glass fiber cloth splicing device according to claim 1, characterized in that One end of the telescopic support rod (101) is fixedly connected to the middle of one side of the auxiliary support block (103).

3. The glass fiber cloth splicing device according to claim 2, wherein, One end of the fixed rod 1 (3) is fixedly connected to a slidable adjustment plate (4). At the bottom of the back surface of the slidable adjustment plate (4), an electric push rod 2 (5) is fixedly connected.

4. The glass fiber cloth splicing device according to claim 3, characterized in that, One end of the electric push rod 2 (5) is fixedly connected to a fixing plate 1 (6). Both ends of the fixing plate 1 (6) are fixedly connected to chute support plates (7). The inner wall of the chute support plates (7) is slidably connected to one end of the slidable adjustment plate (4).

5. The glass fiber cloth splicing device according to claim 4, characterized in that The lower end of the chute support plate (7) is fixedly connected to one side near the middle of the upper end of the support platform (2).

6. The glass fiber cloth splicing device according to claim 5, characterized in that, On one side near the front of the upper end of the support platform (2), a fixing plate 2 (8) is fixedly connected. Both ends of the fixing plate 2 (8) are slidably connected to a pressing plate (9) through chutes opened. One side of the upper end of the pressing plate (9) is slidably connected to a limit bolt (10) through a through hole opened.

7. The glass fiber cloth splicing device according to claim 6, wherein, At the four corners of the lower end of the support platform (2), support columns (11) are fixedly connected. On the surface of the support columns (11), fixed rods 2 (12) are fixedly connected. One end of the fixed rod 2 (12) is inserted with a cross steel plate (13). The lower end of the fixed rod 2 (12) is fixedly connected to a bottom connecting plate (14).

8. The glass fiber cloth splicing device according to claim 1, characterized in that, On one side edge of the upper end of the support platform (2), a support frame (15) is fixedly connected. Inside the inner wall of the support frame (15), a fixing plate 3 (16) is fixedly connected. On one side surface of the support frame (15), a stepping motor 2 (17) is fixedly connected. The output end of the stepping motor 2 (17) is fixedly connected to a pressing roller (18).

Citation Information

Patent Citations

  • Glass fiber cloth splicing device

    CN219883316U