一种具有多片结构的经轴以及使用该经轴的分条整经机
By designing a multi-piece warp beam and separator on the slitting warping machine, the problem of wasted yarn bobbin resources in small-batch production is solved, achieving efficient yarn winding and operation, reducing costs and improving warping quality and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Filing Date
- 2025-04-25
- Publication Date
- 2026-07-17
AI Technical Summary
The large rollers on existing slitting warping machines are integral cylindrical structures, which requires a large number of yarn bobbins to be used for small-batch production, resulting in serious waste of resources, affecting production efficiency and increasing costs.
Design a warp beam with a multi-piece structure, which is divided into several winding areas by setting several dividing discs on the beam body, and can be quickly installed and disassembled by inserting rods and connecting discs. Combined with lifting devices and drive systems, it improves operating efficiency and safety.
It reduces the amount of yarn bobbins used, lowers production costs, and improves production efficiency. Furthermore, through flexible adjustment of the yarn bobbin position and convenient installation of the warp beam, it enhances warping quality and operational safety.
Smart Images

Figure CN224513723U_ABST
Abstract
Claims
1. A beam having a multi-piece construction, characterized by: It includes a shaft (71), with baffles (72) at both ends of the shaft (71), and several partition discs (73) arranged along the axis of the shaft (71). The two baffles (72) are provided with limiting bosses (74) on the outside. A plug rod (75) is also provided at the center of the side of the limiting boss (74) facing outward. Several docking holes (76) are also provided on the limiting boss (74) facing the drive box (4). A positioning mechanism (77) is provided at the center of the partition plate (73), and the positioning mechanism (77) is movably mounted on the shaft (71). The outer wall of the shaft (71) is provided with an external thread. The partition disk (73) includes a disk (738). The center positions of the left and right sides of the disk (738) are respectively provided with a first mounting groove (732) and a second mounting groove (733). The positioning mechanism (77) includes a first fastener (771) and a second fastener (772). The first fastener (771) is provided in the first mounting groove (732), and the second fastener (772) is provided in the second mounting groove (733). The center positions of the first fastener (771) and the second fastener (772) are both provided with threaded holes (773) that are adapted to the external thread of the outer wall of the shaft (71). A number of through holes are evenly distributed in a ring on the disk (738) outside the second mounting groove (733). Mounting hole 1 (734) is provided in the disk (738) and extends into mounting groove 1 (732). Mounting hole 2 (774) is provided on fastener 1 (771) corresponding to mounting hole 1 (734). Mounting hole 3 (775) is provided through fastener 2 (772). Mounting hole 4 (776) is provided on fastener 1 (771) corresponding to mounting hole 3 (775). Fastener 1 (771) is fixed on disk (738) by bolt passing through mounting hole 1 (734) and mounting hole 2 (774) and cooperating with nut. Fastener 2 (772) is fixed on fastener 1 (771) by bolt passing through mounting hole 3 (775) and mounting hole 4 (776) and cooperating with nut.
2. A sectional warper characterized by: The device includes a base (1), which is equipped with a winding drive device. The winding drive device includes a track (2), which is arranged horizontally. A drive box (3) and a drive box (4) are slidably arranged on the track (2). The drive box (3) and the drive box (4) are symmetrically arranged. A docking plate (5) and a docking plate (6) are respectively rotatably arranged on the inward side of the drive box (3) and the drive box (4). A warp beam as described in claim 1 is detachably arranged between the docking plate (5) and the docking plate (6). A warp straightening table is also provided on the front side of the base (1).
3. A sectional warper according to claim 2, characterized in that: The warping table includes a support (8), on which a yarn guide cylinder (9) is rotatably mounted.
4. A sectional warper as claimed in claim 2, characterized in that: The middle part of the docking plate (5) is provided with a first insertion hole (51) corresponding to the insertion rod (75) on the left side of the shaft (7). The second insertion hole (61) of the second docking plate (6) is provided in the middle of the second insertion hole (75) corresponding to the right side of the shaft (7), and the second insertion hole (62) corresponding to the docking hole (76).
5. A sectional warper as claimed in claim 2, characterized in that: The drive box 2 (4) is equipped with a drive motor 1, and the output end of the drive motor 1 is connected to the docking plate 2 (6).
6. A sectional warper as claimed in claim 3, characterized in that: The base (1) has a slide rail (11) on its front inner side. The bracket (8) has a slide groove (81) on the side facing the slide rail (11). The slide rail (11) passes through the slide groove (81). The base (1) also has a screw (12) horizontally arranged on its front inner wall. The screw (12) passes through the bracket (8) and is threadedly connected to the bracket (8). The two ends of the screw (12) are connected to the base (1) through the rotating shaft seat (13). One end of the screw (12) is connected to the output end of the second drive motor (14). The base (1) also has a second track (15) below it. The base (1) has a roller (16) at its bottom. The roller (16) rolls on the second track (15).
7. A sectional warper as claimed in claim 2, characterized in that: A lifting device (10) is symmetrically arranged on one side of the drive box 1 (3) and drive box 2 (4). The lifting device (10) includes a rotating shaft 1 (101) and a rotating shaft 2 (102). The rotating shaft 1 (101) is located above the rotating shaft 2 (102). The lifting device (10) also includes a hydraulic cylinder (103) and a support arm (104). The fixed end of the hydraulic cylinder (103) is rotatably connected to the rotating shaft 1 (101). One end of the support arm (104) is rotatably connected to the rotating shaft 2 (102). The extended end of the hydraulic cylinder (103) is rotatably connected to the middle part of the support arm (104). The other end of the support arm (104) has an arc-shaped structure.