一种高速经编机用六梳电子横移装置

By using the layered cross arrangement of the six-comb electronic transverse movement device and the servo motor drive, the problem of complex pattern weaving on high-speed warp knitting machines has been solved, realizing efficient loop weaving of multiple combs, improving equipment stability and pattern richness, and adapting to high-density weaving of complex pile fabrics.

CN224513768UActive Publication Date: 2026-07-17CHANGZHOU SAIJIA MACHINERY

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU SAIJIA MACHINERY
Filing Date
2025-05-31
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The number of comb bars on existing high-speed warp knitting machines limits the knitting capacity for complex patterns, especially the difficulty in threading yarn through the GB5 and GB6 comb bars, which affects equipment speed, output, and operational difficulty. Furthermore, there is a lack of implementation for six-comb pattern processes.

Method used

It adopts a six-comb electronic transverse movement device, which is divided into three groups on the top and three on the bottom. It uses a four-in-the-front and two-in-the-back loop-forming comb arrangement, combined with servo motor drive and split top head design, to achieve independent disassembly and high-precision movement of the combs. The cross-arranged combs avoid mechanical interference and improve the efficiency and stability of loop weaving.

Benefits of technology

It enriches the pattern technology, increases the added value of fabrics, enhances machine stability and the accuracy of loop weaving, reduces maintenance costs, and adapts to the high-density weaving needs of complex pile fabrics.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及经编机的技术领域,尤其涉及一种高速经编机用六梳电子横移装置;包括横移底座、前支撑座和后支撑座,所述前支撑座的后端面设置固定有六组电子横移组件,每组所述电子横移组件的后端通过连接固定角铁与所述后支撑座的前端面连接固定;六组所述电子横移组件以上、下各三组的形式分布排列的结构,达到满足了高速经编机多梳栉的成圈编织,丰富了坯布的花型工艺,解决了目前市场上复杂工艺花型无法编织的技术难题,有效的提高了织物的附加值,填补了高速经编机六梳花型工艺的空白,并且维护方便,成本低,而且提高了机器的运转稳定性和成圈编织移针的准确性的效果。
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Claims

1. A six-comb electronic transverse transfer device for a high-speed warp knitting machine, characterized in that: It includes a transverse base (1), a front support (2) and a rear support (3), wherein the front support (2) is disposed on the transverse base (1); A connecting and fixing square tube (4) is set on the right side of the front support (2) and the rear support (3) and connects and fixes the front support (2) and the rear support (3); The rear end face of the front support (2) is provided with six sets of electronic transverse components. The front end of each set of electronic transverse components is provided with a first top seat (5), a second top seat (6), a third top seat (7), a fourth top seat (8), a fifth top seat (9) and a sixth top seat (10) from left to right. The first top head seat (5), the second top head seat (6), the third top head seat (7), the fourth top head seat (8), the fifth top head seat (9), and the sixth top head seat (10) correspond one-to-one with the first comb (21), the second comb (22), the third comb (23), the fourth comb (24), the fifth comb (25), and the sixth comb (26), respectively. The rear end of each set of electronic transverse components is connected and fixed to the front end of the rear support (3) via a connecting and fixing angle iron (12); The six sets of electronic transverse components are arranged in a top and bottom three-group configuration.

2. The six-needle electronic transposition device for a high-speed warp knitting machine according to claim 1, wherein in, The rear end of each group of electronic traverse components consists of a traverse shaft (14), an electric cylinder (15), a motor base (16), and a servo motor (11). The front end of each group of electronic traverse components is arranged from left to right as follows: the first top seat (5), the second top seat (6), the third top seat (7), the fourth top seat (8), the fifth top seat (9), and the sixth top seat (10), all of which are fixed to the head end of the traverse shaft (14). The front end of each group of top seats is provided with a set of spring tubes (18) and a set of top balls (19). The rear end of each group of top seats is provided with a guide shaft (17), which is movably sleeved in the linear bearing hole provided at the front end of the front support seat (2).

3. The six-comb electronic transverse transfer device for a high-speed warp knitting machine according to claim 1, characterized in that, The first comb (21), the third comb (23), and the fifth comb (25) are located in the upper row, while the second comb (22), the fourth comb (24), and the sixth comb (26) are located in the lower row, with the odd and even numbers of each comb arranged alternately.

4. The six-needle electronic transverse motion device for a high-speed warp knitting machine according to claim 1, wherein It also includes a comb sway frame (20), on which a comb swing shaft hole (20-1) is provided. The first comb (21), the second comb (22), the third comb (23), the fourth comb (24), the fifth comb (25), and the sixth comb (26) are installed on the comb sway frame (20), and the six combs are arranged in a front four and back two arrangement along the line connecting the center of the comb swing shaft hole (20-1) to the groove needle (27).

5. The six-needle electronic shogging device for a high-speed warp knitting machine according to claim 4, wherein The first comb (21), the second comb (22), the third comb (23), and the fourth comb (24) are in front, and the fifth comb (25) and the sixth comb (26) are behind.

6. The six-needle electronic shogging device for a high-speed warp knitting machine according to claim 1, wherein The center line connecting the first hole (5-1) and the first auxiliary hole (5-2) on the first top seat (5) coincides with the center line connecting the first hole (5-1) and the first auxiliary hole (5-2) distributed on the first comb (21); The center line connecting the second hole (6-1) and the second auxiliary hole (6-2) on the second top seat (6) coincides with the center line connecting the second hole (6-1) and the second auxiliary hole (6-2) distributed on the second comb (22); The center line connecting the third hole (7-1) and the third auxiliary hole (7-2) on the third top seat (7) coincides with the center line connecting the third hole (7-1) and the third auxiliary hole (7-2) distributed on the third comb (23); The center line connecting the fourth hole (8-1) and the fourth auxiliary hole (8-2) on the fourth top seat (8) coincides with the center line connecting the fourth hole (8-1) and the fourth auxiliary hole (8-2) distributed on the fourth comb (24); The center line connecting the fifth hole (9-1) and the fifth auxiliary hole (9-2) on the fifth top seat (9) coincides with the center line connecting the fifth hole (9-1) and the fifth auxiliary hole (9-2) distributed on the fifth comb (25); The center line connecting the sixth hole (10-1) and the sixth auxiliary hole (10-2) on the sixth top seat (10) coincides with the center line connecting the sixth hole (10-1) and the sixth auxiliary hole (10-2) distributed on the sixth comb (26).

7. The six-needle electronic shogging device for a high-speed warp knitting machine according to claim 1, wherein The upper surfaces of the front support (2) and the rear support (3) are each provided with lifting bolts (13) and are diagonally distributed.