Fabric winding shaft processing device

By automating the design of the frame and assembly components, the problem of low rewind assembly efficiency was solved, achieving a highly efficient and stable rewind assembly process, thereby improving production efficiency and product quality.

CN223801913UActive Publication Date: 2026-01-16XIAMEN LI YING KNITTING CO LTD
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Patent Information

Application Number
CN202423047871.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2026-01-16
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

The existing winding shaft assembly is inefficient and may be damaged by manual knocking, affecting production efficiency and product quality.

Method used

It adopts frame components and assembly components, including support frame, lead screw, cylinder, positioning head, etc. The cylinder drives the pressing head and the servo motor works in conjunction with the belt to drive the screw to achieve automated positioning and assembly.

Benefits of technology

This improves the assembly efficiency of the rewinding shaft, ensures the stability of the assembly process and product quality, and avoids damage caused by manual knocking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fabric winding shaft processing device, and relates to the technical field of fabric production equipment.The fabric winding shaft processing device comprises a rack assembly and an assembling assembly installed on the rack assembly, the assembling assembly comprises a supporting frame, the outer wall of the bottom of the supporting frame is rotationally connected with a lead screw, and the outer wall of the lead screw is in threaded connection with a driving seat; an air cylinder is fixedly connected to the outer wall of the top of the driving base, and a lower pressing head is fixedly connected to a piston rod of the air cylinder. According to the winding shaft assembling device, the winding shaft can be conveniently positioned through the positioning head on the rack, the air cylinder is arranged on the rack to drive the positioning head to press downwards, the winding shaft can be conveniently and rapidly assembled when the positioning head presses downwards, and the problem that an existing winding shaft is low in assembling efficiency is solved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of fabric production equipment, in particular to a fabric winding shaft processing device. BACKGROUND

[0002] Fabric is generally knitted by using a warp knitting machine, and the width of the produced fabric can reach several meters. In order to facilitate use, the fabric needs to be cut into a smaller width after being shaped. In order to facilitate subsequent winding, transportation and use of the cut fabric, a winding shaft is needed. The winding shaft comprises a winding shaft, side baffles and connecting pieces. The side baffles and the connecting pieces are both provided with two pieces and are arranged at two ends of the winding shaft respectively. The connecting pieces are used for connecting the winding shaft and the side baffles.

[0003] The components of the existing winding shaft are assembled manually. In order to ensure the installation strength of the connecting pieces, the rubber hammer is used for knocking. The assembly efficiency is slow, and the winding shaft can be damaged. CONTENT OF THE UTILITY MODEL

[0004] In order to improve the low efficiency of the existing winding shaft assembly, the application provides a fabric winding shaft processing device.

[0005] The application provides a fabric winding shaft processing device, which comprises a rack assembly and an assembly assembly installed on the rack assembly. The assembly assembly comprises a support frame, and a lead screw is rotationally connected to the outer wall of the bottom of the support frame. The outer wall of the lead screw is screwed with a driving seat, and the top outer wall of the driving seat is fixedly connected with a gas cylinder. The piston rod of the gas cylinder is fixedly connected with a pressing head.

[0006] Through the above structure, the winding shaft is conveniently supported through the rack assembly, the assembly assembly is conveniently used for assisting the assembly of the winding shaft, and the assembly efficiency of the winding shaft is improved. The support frame is conveniently used for rotationally installing the lead screw. The lead screw directly drives the driving seat to ascend and descend when rotating, so that the height of the gas cylinder is conveniently adjusted. The gas cylinder directly drives the pressing head to move downward when starting, so that the assembly of the winding shaft is conveniently assisted.

[0007] The rack assembly comprises a rack, and the top outer wall of the rack is fixedly connected with a positioning head. The support frame is fixedly connected to the rack.

[0008] Through the above structure, the positioning head is conveniently installed through the rack, and the baffles of the winding shaft are conveniently positioned through the positioning head.

[0009] One end of the lead screw is rotationally connected to the rack. The same slide rod is fixedly connected between the rack and the support frame. The driving seat is slidably connected to the outer wall of the slide rod.

[0010] Through the cooperation between the rack and the support frame, the screw rod and the sliding rod are conveniently installed.

[0011] The outer wall of the top of the rack is provided with a sliding groove, and the inner wall of the sliding groove is slidably connected with a sliding seat.

[0012] Through the cooperation between the rack and the support frame, the screw rod and the sliding rod are conveniently installed.

[0013] One end of the sliding seat is fixedly connected with a positioning seat, and the outer wall of one side of the positioning seat is provided with an arc-shaped groove.

[0014] Through the cooperation between the rack and the support frame, the screw rod and the sliding rod are conveniently installed.

[0015] The outer wall of the top of the rack is provided with a rectangular opening, and the inner wall of the rectangular opening is slidably connected with an adjusting seat.

[0016] Through the cooperation between the rack and the support frame, the screw rod and the sliding rod are conveniently installed.

[0017] The outer wall of the bottom of the rack is rotatably connected with a screw rod, the adjusting seat is screwed on the outer wall of the screw rod, and the adjusting seat is fixedly connected with the sliding seat.

[0018] Through the cooperation between the rack and the support frame, the screw rod and the sliding rod are conveniently installed.

[0019] One end of the screw rod is fixedly connected with a belt pulley I, the bottom of the rack is fixedly connected with a servo motor, and the output shaft of the servo motor is fixedly connected with a belt pulley II, and the same belt is connected between the belt pulley II and the belt pulley I.

[0020] Through the cooperation between the rack and the support frame, the screw rod and the sliding rod are conveniently installed.

[0021] In summary, the application has the following advantages:

[0022] 1. The positioning head on the rack is convenient for positioning the winding shaft, and the cylinder is arranged on the rack to drive the positioning head to press down, so that the winding shaft can be quickly assembled when the positioning head is pressed down, solving the problem of low assembly efficiency of the existing winding shaft.

[0023] 2. The positioning seat is arranged on the rack, the arc-shaped groove on the positioning seat is convenient for assisting the positioning of the winding shaft, and the cooperation between the screw rod and the servo motor on the rack is convenient for directly driving the adjusting seat to drive the positioning seat to move on the rack, thereby facilitating the positioning of winding shafts with different diameters. Attached Figure Description

[0024] Figure 1 This is an overall schematic diagram of this application;

[0025] Figure 2 This is a schematic diagram of the assembled components of this application;

[0026] Figure 3 This is a schematic diagram of the rack assembly of this application;

[0027] Figure 4 This is a three-dimensional schematic diagram of the rack in this application.

[0028] Explanation of reference numerals in the attached drawings: 1. Frame assembly; 2. Assembly assembly; 3. Support frame; 4. Slide rod; 5. Servo motor; 6. Lead screw; 7. Drive seat; 8. Cylinder; 9. Press head; 10. Frame; 11. Positioning head; 12. Slide seat; 13. Positioning seat; 14. Arc groove; 15. Adjustment seat; 16. Screw; 17. Servo motor; 18. Belt. Detailed Implementation

[0029] The following is in conjunction with the appendix Figures 1-4 This application will be described in further detail.

[0030] Please see Figures 1-3 This is a fabric winding shaft processing device. Fabrics are generally first woven using a warp knitting machine, resulting in fabrics with very large widths, typically several meters. For ease of use, the fabric needs to be cut into smaller widths after setting, facilitating subsequent winding, transportation, and use. The winding shaft consists of two side baffles and a cylinder. During assembly, the two circular side baffles are fitted onto the two ends of the cylinder. The device includes a frame assembly 1 and an assembly assembly 2 mounted on the frame assembly 1. The assembly assembly 2 includes a support frame 3, with a lead screw 6 rotatably connected to the bottom outer wall of the support frame 3. A drive seat 7 is screwed to the outer wall of the lead screw 6, allowing the lead screw 6 to rotate and directly drive the drive seat 7 to rise and fall. A cylinder 8 is fixedly connected to the top outer wall of the drive seat 7, allowing the lead screw 6 to rotate and drive the drive seat 7 to rotate, which in turn allows the cylinder 8 to adjust its height. A lower pressure head 9 is fixedly connected to the piston rod of the cylinder 8, and the cylinder 8 directly drives the lower pressure head 9 to move downwards.

[0031] In use, the frame assembly 1 provides convenient support for the take-up shaft, and the assembly assembly 2 facilitates the assembly of the take-up shaft, thereby improving the assembly efficiency of the take-up shaft. The support frame 3 facilitates the rotation and installation of the lead screw 6. When the lead screw 6 rotates, it directly drives the drive seat 7 to rise and fall, thereby facilitating the adjustment of the height of the cylinder 8. When the cylinder 8 is activated, it directly drives the lower pressure head 9 to move down, thereby facilitating the assembly of the take-up shaft.

[0032] ReferenceFigure 3 The rack assembly 1 comprises a rack 10, and a positioning head 11 is fixedly connected to the outer wall of the top of the rack 10. The support frame 3 is fixedly connected to the rack 10. The positioning head 11 facilitates quick positioning of the side baffle and the cylinder. The rack 10 facilitates installation of the positioning head 11. The positioning head 11 facilitates positioning of the baffle of the winding shaft. The baffle has a circular structure.

[0033] With reference to Figure 2 and Figure 3 One end of the lead screw 6 is rotatably connected to the rack 10. The same slide rod 4 is fixedly connected between the rack 10 and the support frame 3. The slide rod 4 facilitates auxiliary support of the support frame 3. The drive seat 7 is slidably connected to the outer wall of the slide rod 4. The slide rod 4 prevents the drive seat 7 from rotating with the lead screw 6. The rack 10 and the support frame 3 facilitate installation of the lead screw 6 and the slide rod 4. The slide rod 4 prevents the drive seat 7 from rotating with the lead screw 6.

[0034] With reference to Figure 3 A sliding groove is formed in the outer wall of the top of the rack 10, and a sliding seat 12 is slidably connected to the inner wall of the sliding groove. The sliding groove in the rack 10 facilitates sliding installation of the sliding seat 12.

[0035] With reference to Figure 2 and Figure 3 One end of the sliding seat 12 is fixedly connected to a positioning seat 13, and an arc-shaped groove 14 is formed in the outer wall of one side of the positioning seat 13. The sliding seat 12 facilitates installation of the positioning seat 13. The arc-shaped groove 14 on the positioning seat 13 facilitates auxiliary positioning of the winding shaft.

[0036] With reference to Figures 3-4 A rectangular opening is formed in the outer wall of the top of the rack 10, and an adjusting seat 15 is slidably connected to the inner wall of the rectangular opening. The rectangular opening facilitates sliding installation of the adjusting seat 15.

[0037] With reference to Figure 4 A screw rod 16 is rotatably connected to the outer wall of the bottom of the rack 10. The adjusting seat 15 is screwed onto the outer wall of the screw rod 16. The adjusting seat 15 is fixedly connected to the sliding seat 12. The screw rod 16 directly drives the adjusting seat 15 to move when the screw rod 16 rotates. The screw rod 16 directly drives the adjusting seat 15 to move when the screw rod 16 rotates. In turn, the adjusting seat 15 drives the sliding seat 12 to drive the positioning seat 13 to act.

[0038] With reference to Figure 4One end of the screw rod 16 is fixedly connected with a belt pulley one, the bottom outer wall of the rack 10 is fixedly connected with a servo motor 17, and the output shaft of the servo motor 17 is fixedly connected with a belt pulley two, the same belt 18 is connected between the belt pulley two and the belt pulley one, the servo motor 17 directly drives the belt 18 to drive the screw rod 16 to rotate, so that the position of the positioning seat 13 is conveniently adjusted, and the servo motor 17 is started to drive the belt 18 to directly drive the screw rod 16 to rotate, so that the position of the positioning seat 13 is conveniently adjusted.

[0039] The implementation principle of the application is that: in use, the baffle at one end of the winding shaft is sleeved on the positioning head 11, and the winding shaft is inserted on the side baffle, at this time, the cylinder 8 is started to drive the lower head 9 to press the winding shaft on the side baffle, then the other side baffle is sleeved on the other end of the winding shaft, the arc-shaped groove 14 on the positioning seat 13 conveniently assists the positioning of the winding shaft, the servo motor 5 is started to directly drive the screw rod 6 to rotate, the screw rod 6 directly drives the driving seat 7 to ascend and descend when rotating, the driving seat 7 directly adjusts the height of the cylinder 8 when ascending and descending, thereby facilitating the assembly of winding shafts with different lengths, at the same time, the servo motor 17 drives the belt 18 to drive the screw rod 16 to rotate, the screw rod 16 drives the adjusting seat 15 to adjust the position of the positioning seat 13 when rotating, thereby facilitating the assembly of winding shafts with different diameters.

[0040] The above are preferred embodiments of the application, and do not limit the protection scope of the application, so: any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. Fabric roll shaft processing device comprising a frame assembly (1) and an assembly assembly (2) mounted on the frame assembly (1), characterized in that: The assembly component (2) includes a support frame (3), and the bottom outer wall of the support frame (3) is rotationally connected with a lead screw (6), the outer wall of the lead screw (6) is screwed with a driving seat (7), and the top outer wall of the driving seat (7) is fixedly connected with a cylinder (8), and the piston rod of the cylinder (8) is fixedly connected with a pressing head (9).

2. The fabric roll shaft processing apparatus according to claim 1, wherein: The rack assembly (1) includes a rack (10), and the top outer wall of the rack (10) is fixedly connected with a positioning head (11), and the support frame (3) is fixedly connected on the rack (10).

3. The fabric roll shaft processing apparatus of claim 2, wherein: One end of the lead screw (6) is rotationally connected on the rack (10), and the rack (10) and the support frame (3) are fixedly connected with a same sliding rod (4), and the driving seat (7) is slidingly connected on the outer wall of the sliding rod (4).

4. The fabric roll shaft processing apparatus of claim 3, wherein: The top outer wall of the rack (10) is provided with a sliding groove, and the inner wall of the sliding groove is slidingly connected with a sliding seat (12).

5. The fabric roll shaft processing apparatus of claim 4, wherein: One end of the sliding seat (12) is fixedly connected with a positioning seat (13), and the outer wall of one side of the positioning seat (13) is provided with an arc-shaped groove (14).

6. The fabric roll shaft processing apparatus of claim 5, wherein: The top outer wall of the rack (10) is provided with a rectangular port, and the inner wall of the rectangular port is slidingly connected with an adjusting seat (15).

7. The fabric roll shaft processing apparatus of claim 6, wherein: The bottom outer wall of the rack (10) is rotationally connected with a screw rod (16), the adjusting seat (15) is screwed on the outer wall of the screw rod (16), and the adjusting seat (15) is fixedly connected on the sliding seat (12).

8. The fabric roll shaft processing apparatus of claim 7, wherein: One end of the screw rod (16) is fixedly connected with a belt pulley I, the bottom outer wall of the rack (10) is fixedly connected with a servo motor (17), and the output shaft of the servo motor (17) is fixedly connected with a belt pulley II, and the belt pulley II and the belt pulley I are connected with a same belt (18).