Cloth warp beam split charging device
Through the fabric weaving shaft assembly device, the entire section of yarn is divided into multiple sections and woven by multiple looms, which solves the problem of low weaving efficiency in the prior art and achieves efficient weaving progress.
Patent Information
- Application Number
- CN202422188892.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-06
AI Technical Summary
In the prior art, the entire section of yarn is woven by only one loom, resulting in low weaving efficiency and difficult to meet the urgent order requirements of construction period.
A fabric weaving shaft assembly device is designed. Through the combination of the main frame, a fixed bridge frame and a mobile bridge frame, the support wheel mechanism and a clamping mechanism are arranged, the entire section of yarn is divided into multiple sections, and is woven separately by multiple looms. The support wheel mechanism is supported and rotated, and the clamping mechanism fixes the weaving shaft to avoid axial movement.
The weaving efficiency is improved, and the problem of low woven efficiency of a single loom is avoided, ensuring the stability and efficiency of the weaving process.
Smart Images

Figure CN223176328U_ABST
Abstract
Description
Technical Field
[0001] A fabric loom shaft sub-packaging device belongs to the field of textile equipment. Background Art
[0002] In the prior art, when weaving fabrics such as denim, first the sized yarn is wound around the loom shaft, and then the yarn on the loom shaft is sent into the loom for weaving work. However, in the traditional weaving method, after a whole section of yarn is wound around the loom shaft, it can only be woven by one loom, so the efficiency is low. For some orders with urgent construction periods, the traditional weaving method is difficult to meet the requirements of the order. Therefore, designing a technical solution that can improve the weaving efficiency to meet the construction period requirements has become an urgent problem to be solved in this field. Summary of the Utility Model
[0003] The technical problem to be solved by the present utility model is: to overcome the deficiencies of the prior art and provide a fabric loom shaft sub-packaging device that can divide a whole section of yarn into multiple sections and be woven by multiple looms respectively, avoiding the problem of low weaving efficiency in the prior art and improving the overall weaving progress.
[0004] The technical solution adopted by the present utility model to solve its technical problem is: the fabric loom shaft sub-packaging device is characterized in that: it includes a main frame, on the upper surface of the main frame, a fixed bridge and a movable bridge are erected. The fixed bridge is fixed at one end of the upper surface of the main frame, and the movable bridge is slidably arranged at the other end of the upper surface of the main frame; on the upper surfaces of the fixed bridge and the movable bridge, support wheel mechanisms are respectively arranged, and two support wheels are arranged at intervals inside each side support wheel mechanism, and the two ends of the loom shaft are respectively placed between the two support wheels in the corresponding side support wheel mechanism.
[0005] Preferably, a moving adjustment mechanism for driving the movement of the movable bridge is arranged on one side of the main frame close to the movable bridge.
[0006] Preferably, the moving adjustment mechanism includes a guide block fixed on the upper surface of the main frame, a threaded block opposite to the guide block is arranged at the bottom of the movable bridge, and an adjustment screw penetrates through the guide block and the threaded block at the same time, and the adjustment screw is threadedly connected to the threaded block.
[0007] Preferably, the support wheel mechanism includes a wheel frame fixed on the upper surface of the fixed bridge or the movable bridge, and the support wheel is clamped on the surface of the wheel frame.
[0008] Preferably, guide rails are respectively arranged on both sides of the upper surface of the main frame, and both ends of the movable bridge are slidably connected to the corresponding side guide rails.
[0009] Preferably, clamping mechanisms are respectively arranged on the outer sides of the fixed bridge and the movable bridge.
[0010] Preferably, the clamping mechanism includes a fixed arm, the fixed arm is fixed to the outside of the movable bridge or the fixed bridge, a fixed plate is provided on the side of the fixed arm, a lifting block is provided on the surface of the fixed plate so as to be liftable, a fixed plate is provided on the inner side of the lifting block, a guide shaft is provided on the back of the fixed plate, and the guide shaft passes through the lifting block;
[0011] A clamping adjustment screw is also provided on the side of the guide shaft, which passes through the lifting block and is threadedly connected to the lifting block. A clamping wheel is also rotatably installed on the inner surface of the fixed plate, and a group of push rods are axially fixed on the surface of the clamping wheel. The push rods are symmetrically arranged on the surface of the clamping wheel.
[0012] Preferably, bottom wheels are respectively provided at the four corners of the bottom of the main frame, and supporting feet are respectively provided on the outer side of each bottom wheel.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] 1. Through the fabric weaving beam packaging device, the whole section of yarn can be divided into multiple sections and woven separately by multiple looms, thus avoiding the problem of low weaving efficiency when each section of yarn is woven by only one loom in the existing technology, thereby improving the overall weaving progress.
[0015] 2. By setting up a clamping mechanism, during the weaving process, the clamping wheel in the clamping mechanism can rotate with the weaving shaft while clamping the weaving shaft. At the same time, the clamping mechanism prevents the weaving shaft from axial movement during the weaving process.
[0016] 3. By setting support feet, the bottom wheels are off the ground to prevent the sub-packaging device from moving during operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is an axonometric view of Example 1 of the cloth weaving shaft packaging device.
[0018] Figure 2 It is a top view of embodiment 1 of the cloth weaving shaft packaging device.
[0019] Figure 3 It is a front view of embodiment 1 of the cloth weaving shaft packaging device.
[0020] Figure 4 for Figure 3 Enlarged view of the AA section.
[0021] Figure 5 This is an axonometric view of Example 2 of the cloth weaving shaft packaging device.
[0022] Figure 6 Schematic diagram of the clamping mechanism of embodiment 2 of the cloth weaving shaft packaging device.
[0023] Figure 7 For Embodiment 3 of the fabric weft beam sub-packaging device corresponding to Figure 4 the view.
[0024] Wherein: 1. Guide block; 2. Adjusting screw; 3. Moving bridge; 4. Main frame; 5. Fixed bridge; 6. Support wheel; 7. Wheel frame; 8. Guide rail; 9. Threaded block; 10. Adjusting handwheel; 11. Bottom wheel; 12. Clamping mechanism; 13. Fixed arm; 14. Guide rail plate; 15. Lifting block; 16. Guide shaft; 17. Clamping handwheel; 18. Clamping adjusting screw; 19. Fixed plate; 20. Clamping wheel; 21. Thrust rod; 22. Fixed block; 23. Support foot. Detailed implementation mode
[0025] Figures 1 to 4 is the best embodiment of the present utility model. The following further describes the present utility model in conjunction with the attached Figures 1 to 7 drawings.
[0026] Embodiment 1:
[0027] As Figures 1 to 3 shown, a fabric weft beam sub-packaging device (hereinafter referred to as the sub-packaging device) includes a main frame 4, and the main frame 4 is a rectangular frame horizontally arranged on the ground. Bottom wheels 11 are provided at the four corners of the bottom of the main frame 4 to facilitate the movement of the sub-packaging device.
[0028] A fixed bridge 5 is erected at one end of the upper surface of the main frame 4, and a moving bridge 3 is erected at the other end of the upper surface of the main frame 4. Both the fixed bridge 5 and the moving bridge 3 are arranged along the direction parallel to the width of the main frame 4. Two guide rails 8 are respectively arranged on both sides of the upper surface of the main frame 4 where it moves. Both of the two guide rails 8 are arranged along the length direction of the main frame 4. The bottoms of both ends of the moving bridge 3 are respectively slidably connected to the two guide rails 8, thereby realizing the reciprocating movement of the moving bridge 3 in the length direction of the main frame 4, and further realizing the indirect adjustment between the fixed bridge 5 and the moving bridge 3.
[0029] Combined with Figure 4 , a guide block 1 is provided at the end of the upper surface of the main frame 4, and the guide block 1 is located on one side of the moving bridge 3. A threaded block 9 opposite to the guide block 1 is provided at the bottom of the moving bridge 3. The adjusting screw 2 passes through the guide block 1 and then enters the threaded block 9 and is threadedly connected to the threaded block 9. An adjusting handwheel 10 is provided at the outer end of the adjusting screw 2. By rotating the adjusting handwheel 10, through the threaded connection relationship between the adjusting screw 2 and the threaded block 9, the movement of the moving bridge 3 on the surface of the main frame 4 is realized.
[0030] Support wheel mechanisms are respectively arranged on the tops of the fixed bridge 5 and the movable bridge 3. The two groups of support wheel mechanisms are arranged opposite to each other. After the distance between the fixed bridge 5 and the movable bridge 3 is adjusted, the two ends of the warp beam are respectively placed on the surfaces of the support wheel mechanisms on both sides. Then, after connecting the yarn on the warp beam to the loom, the fabric is woven.
[0031] The support wheel mechanism includes a wheel frame 7. The wheel frame 7 is a frame body with an open upper end. Two support wheels 6 are clamped on the upper surface of the wheel frame 7. The wheel bodies of the two support wheels 6 are located inside the wheel frame 7. The wheel shafts at both ends of the support wheel 6 are rotatably installed in the front and rear end faces of the wheel frame 7.
[0032] The specific working process and working principle are as follows:
[0033] The yarn to be woven is divided into several sections (preferably 2 - 3 sections), and they are respectively wound on different warp beams. Then, the warp beams are placed on the surface of each sub - packaging device. Before the warp beam is woven onto the surface of each sub - packaging device, first rotate the adjusting handwheel 10 according to the length of the warp beam to adjust the distance between the movable bridge 3 and the fixed bridge 5. Then, the two ends of the warp beam are respectively placed on the support wheel mechanisms on the surfaces of the movable bridge 3 and the fixed bridge 5. At this time, the end of the warp beam is located between the two support wheels 6 on the surface of the corresponding support wheel mechanism. During weaving, since the yarn is continuously fed into the loom, the support wheel 6 simultaneously plays the role of supporting the wheel shaft and facilitating the rotation of the wheel shaft.
[0034] Finally, the yarn on the warp beam is connected to the loom, and the fabric is woven through the loom. Since the whole section of yarn is divided into multiple sections and woven by multiple looms respectively, the problem of low weaving efficiency in the prior art when each section of yarn is woven by only one loom is avoided, thus improving the overall weaving progress.
[0035] Embodiment 2:
[0036] As Figure 5 shown, on the basis of Embodiment 1, in order to prevent the warp beam from axially moving during weaving, clamping mechanisms 12 are respectively fixed on the sides of the movable bridge 3 and the fixed bridge 5.
[0037] Combined with Figure 6 , the clamping mechanism 12 includes a vertically arranged fixed arm 13. The bottom of the fixed arm 13 is fixed on the outside of the movable bridge 3 or the fixed bridge 5. A guide rail plate 14 is arranged on the side of the fixed arm 13, and a vertical guide groove is opened in the middle of the surface of the guide rail plate 14.
[0038] A lifting block 15 is arranged on the surface of the guide rail plate 14. The lifting block 15 is slidably connected to the guide groove on the surface of the guide rail plate 14 so as to realize the adjustment of the lifting block 15 in the vertical direction. A fixed plate 19 is arranged on the inner side surface of the lifting block 15, and a guide shaft 16 is arranged on the back of the fixed plate 19. The guide shaft 16 passes through the lifting block 15.
[0039] A clamping adjustment screw 18 is further arranged on the side of the guide shaft 16. A clamping handwheel 17 is arranged at the outer end of the clamping adjustment screw 18. The clamping adjustment screw 18 penetrates through the lifting block 15 and is threadedly connected to the lifting block 15. After the clamping adjustment screw 18 penetrates through the lifting block 15, its inner end is rotatably connected to the back of the fixed plate 19.
[0040] Therefore, by the clamping handwheel 17, the relative position between the clamping adjustment screw 18 and the lifting block 15 can be adjusted, thereby realizing the movement of the fixed plate 19 in the horizontal direction. When the fixed plate 19 moves, the guide shaft 16 plays a guiding role. At the same time, the clamping adjustment screw 18 is also rotatably connected to the fixed plate 19, preventing the fixed plate 19 from rotating on its own.
[0041] A clamping wheel 20 is also rotatably installed on the inner surface of the fixed plate 19. A set of ejector rods 21 are axially fixed on the surface of the clamping wheel 20. The ejector rods 21 are symmetrically arranged on the surface of the clamping wheel 20.
[0042] After the weaving shaft is fixedly placed on the surface of the support wheel mechanism, the height of the lifting block 15 is adjusted according to the position of the axis of the weaving shaft, so that the axis of the clamping wheel 20 is collinear with the axis of the weaving shaft. Then rotate the clamping handwheel 17 to make the fixed plate 19 move towards one end of the weaving shaft and make the ejector rod 21 fixed at the end face of the weaving shaft.
[0043] Therefore, during the weaving process, the clamping wheel 20 can rotate with the rotation of the weaving shaft, and at the same time, through the clamping mechanism 12, the weaving shaft is prevented from axially moving during the weaving process.
[0044] Embodiment 3:
[0045] As Figure 7 shown, in this embodiment, support feet 23 are respectively arranged on the outer sides of each bottom wheel 11. The support feet 23 are respectively fixed to the outside of the main frame 4 through fixing blocks 22, and the support feet 23 are arranged vertically. The support feet 23 are designed as telescopic rods, and a support plate is horizontally fixed at the bottom of the inner tube of the telescopic rod. The support feet 23 can be realized by oil cylinders. To improve the convenience of moving this sub-packaging device, a manual telescopic rod device is effectively adopted. The manual telescopic rod device can be realized by the well-known structure in the art and will not be elaborated here. By arranging the support feet 23, during weaving, the sub-packaging device is lifted by controlling the support feet 23 to make the bottom wheels 11 leave the ground, preventing the sub-packaging device from moving during the working process.
[0046] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model in other forms. Any person skilled in the relevant art may use the technical content disclosed above to make changes or modifications into equivalent embodiments with equivalent changes. However, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present utility model without departing from the content of the technical solution of the present utility model still fall within the protection scope of the technical solution of the present utility model.
Claims
1. A fabric winding shaft sub-packaging device, characterized in that: It includes a main frame (4). A fixed bridge (5) and a movable bridge (3) are installed on the upper surface of the main frame (4). The fixed bridge (5) is fixed at one end of the upper surface of the main frame (4), and the movable bridge (3) is slidably arranged at the other end of the upper surface of the main frame (4); Support wheel mechanisms are respectively arranged on the upper surfaces of the fixed bridge (5) and the movable bridge (3). Two support wheels (6) are arranged at intervals inside each side support wheel mechanism. The two ends of the fabric roll are respectively placed between the two support wheels (6) in the corresponding side support wheel mechanism.
2. The fabric winding shaft sub-packaging device according to claim 1, characterized in that: A moving adjustment mechanism for driving the movement of the movable bridge (3) is arranged on one side of the main frame (4) close to the movable bridge (3).
3. The fabric weft beam sub-packaging device according to claim 2, wherein: The moving adjustment mechanism includes a guide block (1) fixed on the upper surface of the main frame (4). A threaded block (9) opposite to the guide block (1) is arranged at the bottom of the movable bridge (3). An adjustment screw rod (2) penetrates through the guide block (1) and the threaded block (9) at the same time, and the adjustment screw rod (2) is threadedly connected with the threaded block (9).
4. The fabric winding shaft sub-packaging device according to claim 1, wherein: The support wheel mechanism includes a wheel frame (7) fixed on the upper surface of the fixed bridge (5) or the movable bridge (3). The support wheel (6) is clamped on the surface of the wheel frame (7).
5. The cloth winding shaft sub-packaging device according to claim 1, characterized in that: Guide rails (8) are respectively arranged on both sides of the upper surface of the main frame (4). The two ends of the movable bridge (3) are respectively slidably connected with the guide rails (8) on the corresponding sides.
6. The fabric winding shaft sub-packaging device according to claim 1, wherein: Clamping mechanisms (12) are respectively arranged on the outer sides of the fixed bridge (5) and the movable bridge (3).
7. The fabric winding shaft sub-packaging device according to claim 6, characterized in that: The clamping mechanism (12) includes a fixed arm (13). The fixed arm (13) is fixed on the outer side of the movable bridge (3) or the fixed bridge (5). A guide rail plate (14) is arranged on the side of the fixed arm (13). A lifting block (15) is arranged on the surface of the guide rail plate (14) in a liftable manner. A fixed plate (19) is arranged on the inner side surface of the lifting block (15). A guide shaft (16) is arranged on the back of the fixed plate (19). The guide shaft (16) penetrates through the lifting block (15); A clamping adjustment screw rod (18) is further arranged on the side of the guide shaft (16). The clamping adjustment screw rod (18) penetrates through the lifting block (15) and is threadedly connected with the lifting block (15). A clamping wheel (20) is rotatably installed on the inner surface of the fixed plate (19). A group of ejector rods (21) are axially fixed on the surface of the clamping wheel (20). The ejector rods (21) are symmetrically arranged on the surface of the clamping wheel (20).
8. The fabric winding shaft sub-packaging device according to claim 1, characterized in that: Bottom wheels (11) are respectively arranged at the four corners of the bottom of the main frame (4). Support feet (23) are respectively arranged on the outer sides of each bottom wheel (11).