Bidirectional double-speed yarn splicing textile machine
By connecting the yarn splicing device after the yarn splitting device and performing bidirectional fabric making, the problems of low efficiency and unstable quality in production and operation of the double warp loom are solved, efficient and direct yarn splicing processing are achieved, and production efficiency and finished product quality are improved.
Patent Information
- Application Number
- CN202422158838.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing dual warp looms have problems such as limited speed ratio, low production efficiency, large workload and inconsistent tension of the two-axis cotton yarn during weaving, which affects the quality of the finished cloth.
A two-way two-speed yarn yarn woven is designed. By connecting the yarn yarn yarn yarn yarn yarn after the yarn split, the two-way fabric is carried out to reduce the cumbersome process in the middle, and the yarn is directly spliced to achieve speed change and bidirectional processing.
The machine improves production efficiency, reduces costs and improves the quality of finished fabrics by reducing intermediate processes.
Smart Images

Figure CN223003086U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of textile, in particular to a two-way double-speed yarn splicing loom. Background Art
[0002] In the weaving and sizing industry, special fabric varieties need to be produced by a double warp beam loom. However, there are many problems in the production and operation of the double warp beam loom. For example, it can only perform the transmission speed ratio within a certain range. Beyond this ratio range, components need to be replaced manually, resulting in low production efficiency and heavy workload. During the weaving process, the yarn tensions of the two warp beams are often inconsistent, which affects the quality of the finished fabric.
[0003] For the patent number CN216338199U, a two-axis double-speed yarn splicing loom, which is introduced to solve this problem. After complete yarn splitting, yarn splicing is carried out again, and some processes are repeated, and the operation is troublesome.
[0004] Therefore, it is necessary to provide a new two-way double-speed yarn splicing loom to solve the above technical problems. Summary of the Utility Model
[0005] To solve the above technical problems, the utility model provides a two-way double-speed yarn splicing loom.
[0006] The two-way double-speed yarn splicing loom provided by the utility model includes a fixed frame. A first yarn bobbin is arranged on the fixed frame. The fixed frame is also provided with a first winding shaft, a second winding shaft, a first unwinding shaft and a second unwinding shaft. The fixed frame is sequentially provided with a first winding shaft, a first line roller group, a first reprocessing line roller group, a first rolling mill group, a first pretreatment line roller, a first unwinding shaft, a first yarn bobbin, a yarn splitting plate, a second unwinding shaft, a second pretreatment line roller, a second rolling mill group, a second reprocessing line roller group, a second line roller group and a second winding shaft from left to right. The fixed frame is provided with drive components corresponding to the first yarn bobbin, the first line roller group, the third line roller group, the first winding shaft, the second winding shaft, the first unwinding shaft and the second unwinding shaft. The fixed frame is provided with a first fixing seat for fixing the first yarn bobbin. The fixed frame is provided with a first mounting seat, a second mounting seat, a third mounting seat and a fourth mounting seat corresponding to the first winding shaft, the second winding shaft, the first unwinding shaft and the second unwinding shaft. The first unwinding shaft is located above the first yarn bobbin. The second unwinding shaft is located above the yarn splitting plate.
[0007] Preferably, an auxiliary wire guiding roller is arranged between the first pretreatment line roller and the yarn splitting plate on the fixed frame.
[0008] Preferably, a third line roller group is arranged above the first winding shaft on the first mounting seat.
[0009] Preferably, a fourth wire roller set located above the second winding spool is provided on the second mounting seat.
[0010] Preferably, the first calender group and the second calender group have the same calender group structure. The calender group structure sequentially includes a first calender and a second calender with the same structure from top to bottom. The driving assembly includes calender motors respectively driving the first calender and the second calender. The first calender includes an upper guide roller, a lower guide roller, and connecting seats provided at both ends of the upper guide roller and the lower guide roller. One end of the lower guide roller passes through the connecting seat and is connected to the calender motor. A first transmission gear is provided at the other end of the lower guide roller. A second transmission gear meshing with the first transmission gear is provided at one end of the upper guide roller.
[0011] The first wire roller set and the second wire roller set have the same wire roller set structure. An adjusting wire roller is provided at the bottom of the wire roller set structure. Connecting rods are provided at both ends of the adjusting wire roller. One end of each connecting rod is fixed on the fixed frame. A telescopic rod is provided in the middle of each connecting rod. The connecting rods connect the wire roller sets.
[0012] Compared with the related art, the two-way double-speed yarn splicing textile machine provided by the present invention has the following beneficial effects:
[0013] The two-way double-speed yarn splicing textile machine provided by the present invention is designed with two groups of yarn splicing structures. After yarn splitting, the two-way yarn splicing device is used to splice the yarns in two directions after yarn splitting, perform two-way cloth making, reduce the cumbersome intermediate processes, directly splice the yarns, reduce the intermediate processes, double the processing of the cloth, thereby improving the production efficiency and saving costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a top view structural schematic diagram of the two-way double-speed yarn splicing textile machine provided by the present invention;
[0015] Figure 2 is an overall front view structural schematic diagram of the two-way double-speed yarn splicing textile machine provided by the present invention.
[0016] Reference numerals in the drawings: 1, fixed frame; 11, first mounting seat; 12, second mounting seat; 13, third mounting seat; 14, fourth mounting seat; 15, first fixing seat; 16, auxiliary wire guide roller; 21, first winding spool; 211, third wire roller set; 22, second winding spool; 221, fourth wire roller set; 31, first wire roller set; 32, second wire roller set; 41, first reprocessing wire roller set; 42, second reprocessing wire roller set; 51, first calender group; 52, second calender group; 61, first pretreatment wire roller; 62, second pretreatment wire roller; 71, first unwinding spool; 72, second unwinding spool; 8, first wire shaft; 9, yarn splitting plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0018] Please refer to Figures 1 to 2 , wherein Figure 1 is a schematic diagram of the overall structure of a two-way double-speed yarn-piecing textile machine provided by the present utility model; Figure 2 is a schematic right view of the overall structure of a two-way double-speed yarn-piecing textile machine provided by the present utility model.
[0019] In the specific implementation process, as Figures 1 to 2 shown, a two-way double-speed yarn-piecing textile machine includes a fixed frame 1, a first yarn bobbin 8 is arranged on the fixed frame 1, and a first winding yarn bobbin 21, a second winding yarn bobbin 22, a first unwinding yarn bobbin 71, and a second unwinding yarn bobbin 72 are also arranged on the fixed frame 1. The fixed frame 1 is sequentially provided with a first winding yarn bobbin 21, a first line roller group 31, a first reprocessing line roller group 41, a first rolling mill group 51, a first pretreatment line roller 61, a first unwinding yarn bobbin 71, a first yarn bobbin 8, a yarn splitting plate 9, a second unwinding yarn bobbin 72, a second pretreatment line roller 62, a second rolling mill group 52, a second reprocessing line roller group 42, a second line roller group 32, and a second winding yarn bobbin 22 from left to right. Driving components corresponding to the first yarn bobbin 8, the first line roller group, the third line roller group 211, the first winding yarn bobbin 21, the second winding yarn bobbin 22, the first unwinding yarn bobbin 71, and the second unwinding yarn bobbin 72 are arranged on the fixed frame 1. A first fixing seat 15 for fixing the first yarn bobbin 8 is arranged on the fixed frame 1. First mounting seats 11, 12, 13, and 14 corresponding to the first winding yarn bobbin 21, the second winding yarn bobbin 22, the first unwinding yarn bobbin 71, and the second unwinding yarn bobbin 72 are arranged on the fixed frame 1. The first unwinding yarn bobbin 71 is located above the first yarn bobbin 8, and the second unwinding yarn bobbin 72 is located above the yarn splitting plate 9. The two-way double-speed yarn-piecing textile machine arranges a yarn-piecing device in two directions after yarn splitting, connects the yarn-piecing after yarn splitting, conducts cloth making in two directions, reduces the cumbersome intermediate processes, and directly pieces the yarn. The speed can be adjusted by interspersing different line rollers according to the speed requirements to achieve speed change, and two different reverse directions can achieve different speeds for processing
[0020] The first reprocessing line roller group 41 includes a first reprocessing line roller and a second reprocessing line roller with the same structure. The first reprocessing line roller and the second reprocessing line roller are sequentially arranged on the left side of the first rolling mill group 51 from top to bottom. The second reprocessing line roller group includes a third reprocessing line roller and a fourth reprocessing line roller with the same structure. The third reprocessing line roller and the fourth reprocessing line roller are sequentially arranged on the right side of the second rolling mill group 52 from top to bottom.
[0021] The first pre-treatment line roller 61 includes the first pre-treatment line roller 61 and the second pre-treatment line roller 62 with the same structure. The first pre-treatment line roller 61 and the second pre-treatment line roller 62 are arranged in sequence from top to bottom on the left side below the first winding shaft. The second pre-treatment line roller includes the third pre-treatment line roller, the fourth pre-treatment line roller, and the fifth pre-treatment line roller with the same structure. The third pre-treatment line roller, the fourth pre-treatment line roller, and the fifth pre-treatment line roller are arranged in sequence from top to bottom on the left side of the second rolling mill group 52.
[0022] The first rolling mill group 51 and the second rolling mill group 52 have the same rolling mill group structure. The rolling mill group structure includes the first rolling mill and the second rolling mill with the same structure in sequence from top to bottom. The driving assembly includes rolling mill motors that drive the first rolling mill and the second rolling mill respectively. The first rolling mill includes an upper guide roller, a lower guide roller, and connecting seats arranged at both ends of the upper guide roller and the lower guide roller. One end of the lower guide roller passes through the connecting seat and is connected to the rolling mill motor. A first transmission gear is provided at the other end of the lower guide roller. A second transmission gear meshing with the first transmission gear is provided at one end of the upper guide roller.
[0023] An auxiliary wire guiding roller 16 is arranged between the first pre-treatment line roller 61 and the yarn splitting plate 9 on the fixed frame 1. The auxiliary wire guiding roller guides a part of the yarn split by the yarn splitting plate 9 to the first rolling mill group 51 after being processed by the second pre-treatment line roller 62.
[0024] A third wire roller group 211 is arranged on the first mounting seat 11 above the first winding shaft 21.
[0025] A fourth wire roller group 221 is arranged on the second mounting seat 12 above the second winding shaft 22.
[0026] The first wire roller group 31 and the second wire roller group 32 have the same wire roller group structure. An adjusting wire roller is arranged at the bottom of the wire roller group structure. Connecting rods are arranged at both ends of the adjusting wire roller. One end of the connecting rod is fixed on the fixed frame 1. A telescopic rod is arranged in the middle of the connecting rod. The connecting rod connects the wire roller group.
[0027] The working process provided by the present utility model is as follows: For the first yarn spool 8 of the coil to be split, the yarn is evenly divided into two parts through the yarn splitting plate 9. One part sequentially passes through the fifth pre-treatment yarn roller, the second rolling mill of the second rolling mill group 52, the second post-treatment yarn roller group 42, the second yarn roller group 32, the fourth yarn roller group 221 and then is connected to the second winding yarn spool 22; the other part sequentially passes through the fourth pre-treatment yarn roller, the second rolling mill of the second rolling mill group 52, the second post-treatment yarn roller, the second yarn roller group 32, the third yarn roller group 211 and then is connected to the first winding yarn spool 21; Another coil made of different material is placed in the first unwinding yarn spool 71. The yarn of the coil sequentially passes through the first pre-treatment yarn roller 61, the first rolling mill of the first rolling mill group, the first post-treatment yarn roller, the second yarn roller group 32, the third yarn roller group 211 and then is connected to the first winding yarn spool 21; Another coil made of different material is placed in the second unwinding yarn spool 72. The yarn of the coil sequentially passes through the third pre-treatment yarn roller, the first rolling mill of the second rolling mill group 52, the third post-treatment yarn roller, the second yarn roller group 32, the fourth yarn roller group 221 and then is connected to the second winding yarn spool 22. The speed can be adjusted by inserting different yarn rollers according to the speed requirements to achieve variable speed, and two different reverse directions can achieve different speeds for processing.
[0028] The two-way and two-speed yarn splicing textile machine provided by the present utility model designs two groups of yarn splicing structures. Through the two-way yarn splicing device after yarn splitting, the yarn splicing is connected after yarn splitting to perform two-way cloth making, reducing the cumbersome intermediate processes, directly splicing the yarn, reducing the intermediate processes, and doubling the processing of the cloth, thereby improving the production efficiency and saving costs.
[0029] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. All equivalent structural or equivalent process transformations made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, are similarly included in the patent protection scope of the present utility model.
Claims
1. A bidirectional and double-speed yarn-spinning textile machine, comprising a fixed frame (1), on which a first bobbin (8) is arranged, characterized in that: The fixed frame (1) is also provided with a first winding spool (21), a second winding spool (22), a first unwinding spool (71) and a second unwinding spool (72); the fixed frame (1) is provided with the first winding spool (21), a first wire roller group (31), a first reprocessing wire roller group (41), a first rolling car group (51), a first preprocessing wire roller (61), a first unwinding spool (71), a first spool (8), a yarn dividing plate (9), a second unwinding spool (72), a second preprocessing wire roller (62), a second rolling car group (52), a second reprocessing wire roller group (42), a second wire roller group (32) and a second winding spool (22); the fixed frame (1) is provided with the first wire roller group (31), a first wire roller group (31), a first reprocessing wire roller group (41), a first rolling car group (51), a first preprocessing wire roller (61), a first unwinding spool (71), a first spool (8), a yarn dividing plate (9), a second unwinding spool (72), a second preprocessing wire roller (62), a second rolling car group (52), a second reprocessing wire roller group (42), a second wire roller group (32) and a second winding spool (22); 8), a first wire group roller, a third wire roller group (211), a first winding spool (21), a second winding spool (22), a first unwinding spool (71) and a second unwinding spool (72); the fixed frame (1) is provided with a first fixed seat (15) for fixing the first spool (8); the fixed frame (1) is provided with a first mounting seat (11), a second mounting seat (12), a third mounting seat (13) and a fourth mounting seat (14) corresponding to the first winding spool (21), the second winding spool (22), the first unwinding spool (71) and the second unwinding spool (72); the first unwinding spool (71) is located above the first spool (8), and the second unwinding spool (72) is located above the yarn dividing plate (9).
2. The bidirectional double-speed yarn-splicing textile machine according to claim 1, characterized in that: The fixed frame (1) is provided with an auxiliary wire roller (16) between the first pretreatment wire roller (61) and the yarn separation plate (9).
3. The bidirectional double-speed yarn-splicing textile machine according to claim 1, characterized in that: The first mounting seat (11) is provided with a third wire roller group (211) located above the first winding reel (21).
4. The bidirectional double-speed yarn-splicing textile machine according to claim 1, characterized in that: The second mounting seat (12) is provided with a fourth wire roller group (221) located above the second winding reel (22).
5. The bidirectional double-speed yarn splicing textile machine according to claim 1, characterized in that: The first rolling car group (51) and the second rolling car group (52) are of the same rolling car group structure, and the rolling car group structure includes a first rolling car and a second rolling car with the same structure from top to bottom, and the driving assembly includes a rolling car motor for driving the first rolling car and the second rolling car respectively, and the first rolling car includes an upper guide roller, a lower guide roller, and a connecting seat arranged at both ends of the upper guide roller and the lower guide roller, one end of the lower guide roller passes through the connecting seat and is connected to the rolling car motor, and the other end of the lower guide roller is provided with a first transmission gear, and one end of the upper guide roller is provided with a second transmission gear meshing with the first transmission gear.
6. The bidirectional double-speed yarn-splicing textile machine according to claim 1, characterized in that: The first wire roller group (31) and the second wire roller group (32) are A wire roller group structure, wherein an adjustable wire roller is arranged at the bottom of the wire roller group structure, connecting rods are arranged at both ends of the adjustable wire roller, one end of the connecting rod is fixed to the fixed frame (1), a telescopic rod is arranged in the middle of the connecting rod, and the connecting rod connects the wire roller group.