Positioning flower weaving shaft structure
Patent Information
- Application Number
- CN202522506510.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-25
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-25
AI Technical Summary
[0004]但是在绕卷纱线时,由于绕卷设备设计用于整体卷辊的全面绕卷,因此绕卷设备的出线处规律且固定,但花织轴上需要绕卷的位置并不固定,特别是绕卷设备通过对花织轴两端进行转动限位进行绕卷,使得套卷过程中花织轴整体难以移动,因此绕卷过程中容易出现纱线缠绕在花织轴不需要绕卷的位置,为了避免浪费需要切割整个花织轴并在绕卷过程中移动切割后的花织轴,并在绕卷后通过连接轴连接切割后的整个花织轴,导致花织轴上的绕卷十分不便,图案花织纱线绕卷的便利性有待提升
1.通过设置主轴、套辊、锁止抱箍和卡接组件,套辊在主轴上移动,并通过锁止抱箍将套辊锁止在主轴上,使得绕卷时移动套辊到绕卷设备出纱线处即可,并在绕卷完成后移动套辊到相应位置并锁止即可,同时通过卡接组件卡接连接套辊与主轴,使得主轴在绕卷设备上转动时,套辊随主轴同步转动从而方便进行纱线的绕卷,提升图案花织纱线绕卷的便利性;
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Figure CN224799072U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of textile equipment technology, and in particular to a positioning pattern weaving beam structure. Background Technology
[0002] Many common fabrics feature different patterns, which are often woven from yarns of different base fabrics. Since the size of the patterns is limited, the yarns used to weave the patterns need to be wound around the corresponding positions during fabric weaving.
[0003] In existing technologies, two sets of textile shafts are usually set up on the fabric textile equipment. One set is the fabric shaft to wind the fabric yarn, and the other set is the pattern shaft to wind the pattern yarn. The pattern shaft only needs to wind the yarn in a part of the shaft, because the patterns on the fabric are mostly repeated. Therefore, the yarn is wound in multiple positions on the pattern shaft, while other parts do not need to be wound to avoid wasting raw materials.
[0004] However, when winding yarn, the winding equipment is designed for full winding of the entire winding roller. Therefore, the yarn exit point of the winding equipment is regular and fixed, but the position on the patterned yarn shaft that needs to be wound is not fixed. In particular, the winding equipment winds by rotating and limiting both ends of the patterned yarn shaft, making it difficult for the patterned yarn shaft to move as a whole during the winding process. Therefore, during the winding process, the yarn is prone to getting tangled in the position on the patterned yarn shaft that does not need to be wound. In order to avoid waste, the entire patterned yarn shaft needs to be cut and the cut patterned yarn shaft needs to be moved during the winding process. After winding, the cut patterned yarn shaft needs to be connected by a connecting shaft. This makes the winding on the patterned yarn shaft very inconvenient, and the convenience of winding patterned yarn needs to be improved. Utility Model Content
[0005] To improve the ease of winding patterned yarn, this application provides a positioning patterned yarn beam structure.
[0006] The positioning pattern warp beam structure provided in this application adopts the following technical solution: A positioning pattern weaving beam structure includes a main shaft and a sleeve roller. The main shaft is rotatably mounted on a winding device. The sleeve roller is slidably sleeved on the main shaft and used for winding yarn. The main shaft is provided with a locking member for locking the sleeve roller on the main shaft. The sleeve roller is provided with a snap-fit assembly for snap-fitting the sleeve roller and the main shaft.
[0007] By adopting the above technical solution, after the main shaft is installed on the winding equipment, the locking assembly connects the sleeve roller to the main shaft. This allows the sleeve roller to rotate synchronously with the main shaft when the main shaft rotates on the winding equipment, thus facilitating the winding of the yarn. At the same time, during winding, the locking of the sleeve roller is released, thereby moving the sleeve roller to the yarn exit point of the winding equipment for winding. Through the movement of the sleeve roller, there is no need to cut and connect the main shaft. Moreover, moving the sleeve roller on the main shaft is more convenient than moving the cut patterned yarn shaft, thus improving the convenience of winding patterned yarn.
[0008] Preferably, the locking element consists of two sets of locking clamps, which are sleeved on the main shaft, and the sleeve roller is disposed between the two sets of locking clamps, with both ends of the sleeve roller abutting against the locking clamps.
[0009] By adopting the above technical solution, the locking clamp is fixed on the main shaft and abuts against the sleeve roller from both sides, thereby locking the sleeve roller on the main shaft and achieving locking. The operation is simple and convenient, and easy to use.
[0010] Preferably, auxiliary rings are provided at both ends of the roller to limit the winding of the yarn.
[0011] By adopting the above technical solution, auxiliary rings are set on both sides to limit the winding of the yarn, improve the stability of the yarn winding, reduce the probability of yarn deviation, and at the same time provide a certain degree of protection for the yarn.
[0012] Preferably, the snap-fit assembly includes a snap-fit insert rod and a snap-fit auxiliary rod, the snap-fit insert rod is connected to the snap-fit auxiliary rod, the sleeve roller is provided with a first snap-fit hole, the main shaft is provided with a second snap-fit hole, and the snap-fit insert rod is slidably disposed in the first snap-fit hole and can be inserted into the second snap-fit hole.
[0013] By adopting the above technical solution, the operating clamping auxiliary rod drives the clamping insert rod through the first clamping hole and into the second clamping hole, thereby clamping and connecting the sleeve roller and the main shaft. The operation is simple and convenient, and easy to use. At the same time, the insertion of the clamping insert rod into the second clamping hole can improve the stability of the sliding lock between the sleeve roller and the main shaft and reduce the probability of the sleeve roller moving unexpectedly during the winding process.
[0014] Preferably, the snap-fit assembly further includes a snap-fit spring, the auxiliary ring is provided with a snap-fit groove, the snap-fit auxiliary rod is slidably disposed in the snap-fit groove, the snap-fit spring is disposed in the snap-fit groove, one end of the snap-fit spring abuts against the inner wall of the snap-fit groove, and the other end of the snap-fit spring abuts against the snap-fit auxiliary rod.
[0015] By adopting the above technical solution, the snap-fit spring pushes the snap-fit auxiliary rod to move in the snap-fit groove, thereby pushing the snap-fit insert rod to insert into the second snap-fit hole. This reduces the probability that the snap-fit insert rod will disengage from the second snap-fit hole during the rotation of the main shaft, thus releasing the snap-fit connection between the sleeve roller and the main shaft, thereby improving the convenience and stability of winding.
[0016] Preferably, the locking auxiliary rod is provided with an auxiliary rod, which is used to facilitate the movement of the locking auxiliary rod.
[0017] By adopting the above technical solution, the auxiliary rod makes it easier for staff to operate and move the locking auxiliary rod, thus improving the ease of use.
[0018] Preferably, the inner wall of the snap-fit groove is provided with a limiting groove, and the snap-fit auxiliary rod is provided with a limiting block, the limiting block being slidably inserted into the limiting groove.
[0019] By adopting the above technical solution, the limiting block is slidably inserted into the limiting groove, which improves the stability of the snap-fit auxiliary rod moving in the snap-fit groove, thereby improving the stability of the snap-fit rod inserting into the second snap-fit hole to snap-fit the connecting sleeve roller and the main shaft.
[0020] Preferably, the auxiliary ring is provided with a replacement slot for a connecting slot and a limiting slot, and the limiting block can slide through the replacement slot.
[0021] By adopting the above technical solution, when the snap-fit auxiliary rod or snap-fit insert rod is worn and needs to be replaced, push the snap-fit auxiliary rod to move and compress the snap-fit spring until the limit block is aligned with the replacement groove. At this time, the snap-fit insert rod disengages from the second snap-fit hole and the first snap-fit hole in sequence. Then, pull the snap-fit auxiliary rod to drive the limit block through the replacement groove, disassemble the snap-fit auxiliary rod and the snap-fit insert rod, and thus facilitate replacement.
[0022] In summary, this application includes at least one of the following beneficial technical effects: 1. By setting up a main shaft, sleeve roller, locking clamp, and snap-fit assembly, the sleeve roller moves on the main shaft and is locked on the main shaft by the locking clamp. This allows the sleeve roller to be moved to the yarn exit point of the winding equipment during winding, and to be moved to the corresponding position and locked after winding is completed. At the same time, the snap-fit assembly connects the sleeve roller to the main shaft, so that when the main shaft rotates on the winding equipment, the sleeve roller rotates synchronously with the main shaft, which facilitates the winding of yarn and improves the convenience of winding patterned yarn. 2. By setting an auxiliary ring, a snap-fit groove, a snap-fit spring, a snap-fit insert rod, a snap-fit auxiliary rod, a first snap-fit hole, and a second snap-fit hole, the snap-fit spring on the auxiliary ring pushes the snap-fit auxiliary rod in the snap-fit groove, thereby pushing the snap-fit insert rod to maintain the state of passing through the first snap-fit hole and inserting into the second snap-fit hole, thereby snapping the connecting sleeve roller and the main shaft, and further demonstrating the stability of the sleeve roller in the upper limit lock of the main shaft; 3. By setting a limiting block, a limiting groove, and a replacement groove, the limiting block slides in the limiting groove, thereby limiting the sliding of the snap-fit auxiliary rod in the snap-fit groove. At the same time, it limits the tilting and offset of the snap-fit auxiliary rod, so as to improve the stability of the snap-fit rod inserting into the second snap-fit hole, thereby improving the stability of the snap-fit between the sleeve roller and the main shaft, reducing the probability of the snap-fit contact between the sleeve roller and the main shaft affecting the winding process, and improving the convenience of winding patterned yarn. Attached Figure Description
[0023] Figure 1 This is an overall schematic diagram of a positioning pattern weaving beam structure provided in an embodiment of this application.
[0024] Figure 2 It is a cross-sectional view used to illustrate the structure of the snap-fit assembly.
[0025] Explanation of reference numerals in the attached drawings: 1. Main shaft; 11. Second snap-fit hole; 2. Roller sleeve; 21. Auxiliary ring; 211. Snap-fit groove; 212. Limiting groove; 213. Replacement groove; 22. First snap-fit hole; 3. Locking clamp; 4. Snap-fit assembly; 41. Snap-fit insertion rod; 42. Snap-fit auxiliary rod; 421. Limiting block; 422. Auxiliary rod; 43. Snap-fit spring. Detailed Implementation
[0026] The following is in conjunction with the appendix Figure 1-2 This application will be described in further detail.
[0027] This application discloses a positioning pattern weaving beam structure. (Refer to...) Figure 1 and Figure 2 The device includes a main shaft 1 and several sleeve rollers 2. The main shaft 1 is a long cylindrical support for rotational mounting on a winding device. The sleeve rollers 2 are hollow and adaptably slide onto the main shaft 1. Several locking clamps 3 are fitted onto the main shaft 1 as locking components. The locking clamps 3 are fastened by bolts and are positioned on both sides of the sleeve rollers 2, pressing against both ends of the sleeve rollers 2. Two auxiliary rings 21 are fixedly fitted onto the sleeve rollers 2 to limit the yarn wound within the auxiliary rings 21. The sleeve rollers 2 are equipped with a snap-fit assembly 4, which is used to snap-fit the sleeve rollers 2 and the main shaft 1. The snap-fit assembly 4 snaps the sleeve rollers 2 and the main shaft 1 together, so that when the main shaft 1 rotates on the winding device, the sleeve rollers 2 rotate synchronously with the main shaft 1 to wind the yarn. At the same time, loosening the bolts of the locking clamps 3 can push the sleeve rollers 2 on the main shaft 1 to move to the yarn exit point of the winding device for winding, which facilitates movement and improves the convenience of winding patterned yarns.
[0028] For ease of use, please refer to Figure 1 and Figure 2The snap-fit assembly 4 includes a snap-fit spring 43, a snap-fit insert rod 41, and a snap-fit auxiliary rod 42. The sleeve roller 2 has a first snap-fit hole 22 communicating with its interior for the snap-fit insert rod 41 to pass through. The end of the snap-fit insert rod 41 away from the sleeve roller 2 is fixedly connected to the snap-fit auxiliary rod 42. The outer wall of the auxiliary ring 21 has a snap-fit groove 211, into which the snap-fit auxiliary rod 42 slides. The surface of the main shaft 1 has multiple second snap-fit holes 11 for the snap-fit insert rod 41 to be inserted. The snap-fit spring 43 is disposed within the snap-fit groove 211, with one end fixedly connected to the top wall of the snap-fit groove 211, and the other end abutting against the top wall of the snap-fit auxiliary rod 42 away from the snap-fit insert rod 41. Circular auxiliary rods 422 are fixedly provided on both sides of the snap-fit auxiliary rod 42 to facilitate its movement. The snap-fit spring 43 pushes the snap-fit auxiliary rod 42 in the snap-fit groove 211, thereby pushing the snap-fit insertion rod 41 to keep it passing through the first snap-fit hole 22 and inserted into the second snap-fit hole 11, thus snapping the connecting sleeve roller 2 and the main shaft 1. When movement is required, push the snap-fit auxiliary rod 42 to compress the snap-fit spring 43 so that the snap-fit insertion rod 41 can disengage from the second snap-fit hole 11 and the first snap-fit hole 22, which is convenient to use.
[0029] For easy replacement of the snap-fit connector 41, refer to... Figure 2 The inner walls of both sides of the snap-fit groove 211 are provided with limiting grooves 212, and the side wall of the snap-fit auxiliary rod 42 is fixedly provided with a limiting block 421. The limiting block 421 is adapted to slide into the limiting groove 212. The outer wall of the auxiliary ring 21 is provided with a replacement groove 213. The inner wall of the replacement groove 213 is connected to the snap-fit groove 211, and the bottom wall of the replacement groove 213 is connected to the limiting groove 212. The limiting block 421 can fit through the replacement groove 213. When the snap-fit rod 41 needs to be replaced, push the snap-fit auxiliary rod 42 to compress the snap-fit spring 43 until the limiting block 421 is aligned with the replacement groove 213. At this time, the snap-fit rod 41 disengages from the second snap-fit hole 11 and the first snap-fit hole 22 in sequence. Then, pull the snap-fit auxiliary rod 42 to drive the limiting block 421 through the replacement groove 213, and disassemble the snap-fit auxiliary rod 42 and the snap-fit rod 41 to facilitate timely replacement when the snap-fit rod 41 is worn.
[0030] The implementation principle of the positioning patterned yarn shaft structure in this application embodiment is as follows: the sleeve roller 2, which is movably set on the main shaft 1, is locked by the locking clamp 3 and snapped by the snap-fit component 4, so that the sleeve roller 2 can move on the main shaft 1. After moving to the set position, it is locked and snapped to the main shaft 1. This makes it convenient to move the sleeve roller 2 to the yarn exit point for winding when winding in the winding equipment. Compared with the prior art, it is not necessary to disassemble the main shaft 1 and assemble the main shaft 1 after winding. Moreover, the movement of the sleeve roller 2 on the main shaft 1 is more convenient than the movement of the main shaft 1 after cutting in the winding equipment, thereby improving the convenience of winding the patterned yarn.
[0031] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A positioning pattern warp beam structure, characterized in that: Includes a main shaft (1) and a sleeve roller (2). The main shaft (1) is rotatably mounted on a winding device. The sleeve roller (2) is slidably sleeved on the main shaft (1) and used for winding yarn. The main shaft (1) is provided with a locking member for locking the sleeve roller (2) on the main shaft (1). The sleeve roller (2) is provided with a snap-fit assembly (4) for snap-fitting the sleeve roller (2) and the main shaft (1).
2. The positioning pattern warp beam structure according to claim 1, characterized in that: The locking component consists of two sets of locking clamps (3), which are sleeved on the main shaft (1). The roller (2) is positioned between the two sets of locking clamps (3), and the two ends of the roller (2) abut against the locking clamps (3).
3. The positioning pattern warp beam structure according to claim 1, characterized in that: Both ends of the roller (2) are provided with auxiliary rings (21) to limit the winding of the yarn.
4. The positioning pattern warp beam structure according to claim 3, characterized in that: The snap-fit assembly (4) includes a snap-fit insert (41) and a snap-fit auxiliary rod (42). The snap-fit insert (41) is connected to the snap-fit auxiliary rod (42). The sleeve roller (2) is provided with a first snap-fit hole (22). The main shaft (1) is provided with a second snap-fit hole (11). The snap-fit insert (41) is slidably disposed in the first snap-fit hole (22) and can be inserted into the second snap-fit hole (11).
5. The positioning pattern warp beam structure according to claim 4, characterized in that: The snap-fit assembly (4) further includes a snap-fit spring (43). The auxiliary ring (21) is provided with a snap-fit groove (211). The snap-fit auxiliary rod (42) is slidably disposed in the snap-fit groove (211). The snap-fit spring (43) is disposed in the snap-fit groove (211). One end of the snap-fit spring (43) abuts against the inner wall of the snap-fit groove (211), and the other end of the snap-fit spring (43) abuts against the snap-fit auxiliary rod (42).
6. The positioning pattern warp beam structure according to claim 5, characterized in that: The snap-fit auxiliary rod (42) is provided with an auxiliary rod (422), which is used to facilitate pushing the snap-fit auxiliary rod (42) to move.
7. The positioning pattern warp beam structure according to claim 5, characterized in that: The inner wall of the snap-fit groove (211) is provided with a limiting groove (212), and the snap-fit auxiliary rod (42) is provided with a limiting block (421). The limiting block (421) is slidably inserted into the limiting groove (212).
8. The positioning pattern warp beam structure according to claim 7, characterized in that: The auxiliary ring (21) is provided with a replacement groove (213) for a connecting slot (211) and a limiting slot (212), and the limiting block (421) can slide through the replacement groove (213).