Gantry swing rod type tow shifting assembly

By designing a gantry-type filament towing assembly, and utilizing linear modules and drive motors to achieve automated filament laying, the problem of difficulty in controlling moisture content in traditional manual filament winding is solved, thus improving the stability and efficiency of the equipment.

CN224227437UActive Publication Date: 2026-05-12ZHEJIANG JINGGONG SCI & TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG JINGGONG SCI & TECH
Filing Date
2025-03-25
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Traditional manual yarn winding methods have difficulty in accurately controlling the moisture content after the yarn bundle is soaked, resulting in increased humidity, low efficiency, and adhesion problems.

Method used

Design a gantry-type filament actuation assembly, including a swing power part, a filament pulling part, and a swinging part. The filament is driven to perform a single pendulum motion through a linear module and a drive motor, thereby achieving automated control of filament flattening and moisture evaporation.

Benefits of technology

It enables precise control of the moisture content of the filament bundle, avoids adhesion problems, and improves the stability and efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a gantry swing rod type tow stirring assembly, and belongs to the field of fiber processing. A swing power part, a tow drawing part and a swing part are arranged, a tow is wound downwards clockwise through a U-shaped disc roller, the tow is located in the middle of the swing part, the swing power part operates to drive the swing part to operate, a tow swing rod presents a simple-pendulum motion trail under the action of the swing part, and the tow is flatly laid and swung back and forth; and evaporation of internal moisture is facilitated, the moisture content of the tows is controlled within a qualified range, the problem that the supersaturated tows adhere in the swing process of equipment is solved, and the stability of the equipment is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of fiber processing, specifically relating to a gantry swing arm type fiber bundle actuation component. Background Technology

[0002] Traditional methods of winding yarn involve soaking the yarn before winding, followed by untwisting and arranging multiple strands after soaking. This process results in a rapid increase in moisture content, making it difficult for the internal moisture to evaporate, leading to a highly hydrated multi-strand yarn bundle. While manual winding can remove some moisture and neatly arrange the yarn bundles, it suffers from uncertainty in controlling moisture content, and is repetitive and inefficient. Therefore, a device capable of precisely controlling yarn moisture content and automatically winding and arranging yarn is urgently needed to address the current winding and arranging process after soaking and untwisting multiple strands. Summary of the Invention

[0003] The present invention mainly addresses the technical problems existing in the prior art by providing a gantry swing arm type wire bundle actuation component.

[0004] The above-mentioned technical problems of this utility model are mainly solved by the following technical solution: a gantry swing arm type wire bundle actuation assembly, including a swing power part, a wire bundle pulling part, a swing part and a first crossbeam, wherein the swing power part includes a linear module, one end of the linear module is equipped with a drive motor, and a sliding plate is mounted on the linear module, wherein the sliding plate is the main connecting component for the transmission between the swing power part and the swing part.

[0005] Preferably, the swinging part includes a central swing rod with rotating side rods at both ends, forming a fishbone shape in its overall structure. A wire bundle swing rod is provided on the rotating side rod, with a swing rod pressure plate and a swing rod nut at the end of each wire bundle swing rod. A U-shaped swing rod is installed on the rear side of the central swing rod, containing a roller. An extension rod is provided on the roller and mounted on the slide plate. A rotating fixing component is provided at the top of the central swing rod, with a rotating shaft screw between them. The rotating fixing component is installed below the first crossbeam.

[0006] Preferably, the first crossbeam is provided with a take-up motor support seat, the filament pulling part includes a take-up motor, the take-up motor has a U-shaped disc roller mounted on the end output reducer, and the take-up motor is mounted on the take-up motor support seat.

[0007] The beneficial effects of this utility model are as follows: By setting up a swing power part, a filament pulling part, and a swing part, the filament is wound clockwise by a U-shaped roller and falls down. The filament is located in the middle of the swing part. The swing power part runs, driving the swing part to run. The filament swing rod presents a pendulum motion trajectory under the action of the swing part, so that the filament is laid out back and forth. This facilitates the evaporation of internal moisture, controls the moisture content of the filament within the qualified range, solves the problem of supersaturated filament sticking together during the filament swinging process, and improves the stability of the equipment. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of the structure of this utility model;

[0009] Figure 2 This is a schematic diagram of a structure of the central swing arm of this utility model;

[0010] Figure 3 This is a schematic diagram of the wire feeding direction of this utility model.

[0011] In the diagram: 3. First crossbeam; 4. Take-up motor; 5. U-shaped disc roller; 19. Rotating fixing part; 20. Rotary shaft screw; 21. Rotary drum side rod; 22. Wire bundle swing rod; 23. Drive motor; 24. Linear module; 26. Slide plate; 27. U-shaped swing rod; 28. Central swing rod; 36. Roller; 37. Extension rod; 38. Swing rod pressure plate; 39. Swing rod nut; 41. Take-up motor support seat. Detailed Implementation

[0012] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0013] Example: A gantry-type wire bundle actuation assembly, such as Figures 1-3 As shown, it includes a swing power section, a filament pulling section, and a swing section; the swing power section includes a linear module 24; the linear module 24 is mounted on a mounting plate and installed on the device support frame 1 through a connecting plate 29; one end of the linear module 24 is equipped with a drive motor 23; a sliding plate 26 is mounted on the linear module 24; the sliding plate 26 is the main connecting component for the transmission between the swing power section and the swing section.

[0014] Furthermore, the swinging part includes a central swing rod 28; the central swing rod 28 is equipped with rotating cylinder side rods 21 at both ends, and has a fishbone-like overall structure; the rotating cylinder side rods 21 are equipped with wire bundle swing rods 22 through swing rod pressure plates 38 and swing rod nuts 39; a U-shaped swing rod 27 is installed on the rear side of the central swing rod 28; a roller 36 is installed inside the U-shaped swing rod 27; the roller 36 is installed on the slide plate 26 through an extension rod 37; one end of the central swing rod 28 is installed on the rotating fixing member 19 through a rotating shaft screw 20; the rotating fixing member 19 is installed below the first crossbeam 3; one side of the first crossbeam 3 is installed on the column 2 and supported by diagonal braces 6, and the other side is installed on the first gantry column 17 and supported by diagonal braces.

[0015] Furthermore, the filament pulling part includes a take-up motor 4; the take-up motor 4 has a U-shaped disc roller 5 mounted on its end output reducer; the take-up motor 4 is mounted on a take-up motor support 41; and the take-up motor support 41 is mounted on the first crossbeam 3.

[0016] In one embodiment, such as Figure 3 As shown, the wire feeding direction of the device is from above the metal roller 32 of the wire bundle tensioning part of the wire output device, and then clockwise through the U-shaped disc roller 5 of the wire bundle pulling part, and then the wire is oscillated by the swinging part.

[0017] Work style:

[0018] The following will explain the winding principle of this embodiment from the perspective of actual operation:

[0019] Specifically, the filament bundle passes through the U-shaped roller 5 and rotates clockwise downwards, with the filament bundle located in the exact center of the swing section.

[0020] The oscillating power unit operates, driving the oscillating part to operate. Under the action of the oscillating part, the silk bundle pendulum 22 presents a simple pendulum motion trajectory, causing the silk bundle to spread out back and forth.

[0021] Finally, it should be noted that the above embodiments are merely representative examples of this utility model. Obviously, this utility model is not limited to the above embodiments and can have many variations. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of this utility model should be considered to fall within the protection scope of this utility model.

Claims

1. A gantry swing arm type wire bundle actuation assembly, comprising a swing power part, a wire bundle pulling part, a swing part and a first crossbeam (3), wherein the swing power part comprises a linear module (24), one end of the linear module (24) is equipped with a drive motor (23), and a sliding plate (26) is mounted on the linear module (24), wherein the sliding plate (26) is the main connecting component for the transmission between the swing power part and the swing part.

2. The gantry swing arm type wire bundle actuation assembly according to claim 1, characterized in that: The swinging part includes a central swing rod (28), with rotating cylinder side rods (21) at both ends of the central swing rod (28), and the overall structure is fishbone shaped. A wire bundle swing rod (22) is provided on the rotating cylinder side rod (21). A swing rod pressure plate (38) and a swing rod nut (39) are provided at the end of the wire bundle swing rod (22). A U-shaped swing rod (27) is provided on the rear side of the central swing rod (28). A roller (36) is installed inside the U-shaped swing rod (27). An extension rod (37) is provided on the roller (36). The extension rod (37) is installed on the slide plate (26). A rotating fixing part (19) is provided at the top of the central swing rod (28). A rotating shaft screw (20) is provided between the two. The rotating fixing part (19) is installed below the first crossbeam (3).

3. The gantry swing arm type wire bundle actuation assembly according to claim 1, characterized in that: The first crossbeam (3) is provided with a take-up motor support seat (41), the filament pulling part includes a take-up motor (4), the take-up motor (4) has a U-shaped disc roller (5) mounted on the end output reducer, and the take-up motor (4) is mounted on the take-up motor support seat (41).