Cloth cropping table for yardage roll packaging

By setting a rotating wheel assembly and a limiting assembly on the cloth roll packaging platform, automatic winding and binding of cloth rolls is achieved, solving the problem of inconvenient operation in the existing technology and improving the packaging efficiency of a single person.

CN223865167UActive Publication Date: 2026-02-03SICHUAN ZHICHENG CHANGYUAN COMPOSITE MATERIAL CO LTD
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Patent Information

Application Number
CN202520410062.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-02-03
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

The existing method of packing fabric rolls is inconvenient to operate, especially for large-diameter fabric rolls, which require multiple people to work together and are difficult for a single person to complete, resulting in low work efficiency.

Method used

Design a fabric drop table for packing fabric rolls. By setting a rotating wheel assembly and a slide bar on the table, the rotating wheel assembly drives the rope roller to move around the fabric roll. Combined with a limiting component, the number of turns of the rope roller is automatically controlled to achieve automatic winding and binding. A single person can complete the packing of large-diameter fabric rolls.

Benefits of technology

It enables a single person to efficiently complete the packaging of fabric rolls, especially for large-diameter fabric rolls, which improves packaging efficiency and simplifies manual operation procedures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cropping table for yardage roll packaging, belongs to the technical field of cloth production, and solves the problem that an existing yardage roll packaging mode is high in operation difficulty. The device specifically comprises a table body, two sets of supporting frames are arranged on the two sides of the table body respectively, fixing shafts are movably connected to the supporting frames, and a cloth roll is installed between the two fixing shafts; a rotating wheel assembly is arranged on the fixing shaft, and a rope roller is arranged on a sliding rod of the rotating wheel assembly. According to the cloth roll packing device, when a cloth roll is packed, the rope roller is driven by the rotating wheel assembly to move around the cloth roll by at least one circle, a rope body on the rope roller is wound around the cloth roll in the moving process, and after winding, a worker binds the two ends of the rope body together; according to the mode, when the yardage roll is packaged, a worker does not need to manually drive the rope body to bypass the yardage roll, the large-diameter yardage roll can be packaged by a single person, operation is convenient, and the packaging efficiency is high. When the other end of the cloth roll needs to be packed, the rope roller is moved along the sliding rod, and operation is repeated after movement.
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Description

Technical Field

[0001] This utility model relates to the field of fabric production technology, and in particular to a fabric drop table for packaging fabric rolls. Background Technology

[0002] Fabric is usually stored in rolls during transportation or storage. Rolling fabric into rolls saves a lot of storage space and makes it easier to stack and protect during transportation. Moreover, in subsequent processing, such as cutting and sewing, fabric usually needs to be cut to specific lengths and widths. Rolling the fabric into rolls makes it easier to pick up and cut the fabric in subsequent processing, improving work efficiency.

[0003] Because there is no fabric unloading platform in front of the fabric production machine, it is difficult to pack the produced fabric rolls. The existing method of packing fabric rolls involves workers lifting the rolls down and placing them on the ground for packing. During packing, the rope must be wrapped around the roll at least once before it is tied, which is very inconvenient in practice. Moreover, this method is only suitable for small-diameter fabric rolls. For large-diameter fabric rolls, multiple people are needed to work together to wrap the rope around the roll once, and a single person cannot complete the packing work.

[0004] Therefore, the existing method of packaging fabric rolls is inconvenient to operate and has low work efficiency. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a fabric drop table for packaging fabric rolls, which solves the problem of high operational difficulty in existing fabric roll packaging methods.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A fabric unloading table for packaging fabric rolls includes a table body, two sets of support frames are respectively provided on both sides of the table body, and fixed shafts are movably connected to the support frames. The fabric roll is installed between the two fixed shafts; a rotating wheel assembly is provided on the fixed shaft, and a rope roller is provided on the rotating wheel assembly.

[0008] In this solution, the fabric roll is set on a fixed shaft. When packing the fabric roll, the rotating wheel assembly drives the rope roller to move around the fabric roll at least once. During the movement, the rope on the rope roller is wrapped around the fabric roll. After wrapping, the staff can tie the two ends of the rope together. This method eliminates the need for staff to manually drive the rope around the fabric roll when packing the fabric roll. Even for large-diameter fabric rolls, a single person can complete the packing work. It is convenient to operate and has high packing efficiency.

[0009] Furthermore, the rotating wheel assembly includes two handwheels, the centers of which are rotatably connected to two fixed shafts; slide rods are connected to the edges of the two handwheels, and rope rollers are threaded through the slide rods.

[0010] In this solution, when packing one end of the fabric roll, slide the rope roller along the slide bar to that end, rotate the handwheel, and the handwheel will drive the slide bar to move around the fabric roll. The rope roller will follow the slide bar and move around the fabric roll synchronously, and the rope on the rope roller will wrap around the fabric roll. When packing the other end of the fabric roll, simply slide the rope roller along the slide bar to the other end.

[0011] Furthermore, a cavity is provided inside the platform, and a limit component is installed inside the cavity;

[0012] The limiting assembly includes a limiting member, the top of which is positioned at the passage of the slide bar, the middle of which is movably connected to the cavity via a pivot, and the bottom of which is movably connected to a transmission rod. The other end of the transmission rod is movably connected to a foot pedal. The foot pedal is rotatably connected to the cavity via a support shaft, and the end of the foot pedal away from the transmission rod extends out of the cavity and connects to the foot pedal.

[0013] In this design, when the slide bar and rope roller rotate around the fabric roll, the power transmission rod moves upward by stepping on the foot pedal. The transmission rod drives the limiting component to flip, and after flipping, the limiting effect on the slide bar is removed, allowing the slide bar to rotate normally around the fabric roll. After the slide bar and rope roller have rotated around the fabric roll to a suitable number of times, the foot pedal is released, and the end of the foot pedal near the transmission rod and the transmission rod fall freely under gravity. The limiting component blocks both of them, preventing the slide bar and rope roller from swinging back and forth due to inertia.

[0014] Furthermore, the limiting component includes a straight plate and a bent shaft. The straight plate is set at the top of the platform to limit the slide rod, and the bent shaft is integrally connected to the bottom of the straight plate. The rotating shaft is movably connected to the bent shaft, and the transmission rod is movably connected to the bottom of the bent shaft.

[0015] The bottom of the axle bends in the opposite direction to the flipping direction of the straight plate.

[0016] In this design, the bent shaft ensures that when the transmission rod moves upward, it pushes the bent shaft to flip to the left, thereby causing the straight plate to flip to the right.

[0017] Furthermore, the fixed shaft includes a shaft body, one end of which is mounted on a support frame, and the other end of which has a circular groove along the axial direction. A T-shaped shaft is movably disposed in the circular groove. A telescopic spring is provided between the end of the T-shaped shaft with a T-shaped head and the bottom of the circular groove. The other end of the T-shaped shaft extends out of the circular groove, and a limiting ring is provided on the edge of the circular groove to restrict the T-shaped head.

[0018] One end of the T-shaped shaft that passes through the circular groove is inserted into the core of the fabric roll.

[0019] In this solution, when installing the fabric roll, the T-shaped shaft is pressed into the circular groove of the shaft body. After installation, the T-shaped shaft is embedded into the core of the fabric roll under the elastic force of the telescopic spring.

[0020] Furthermore, the edges of the handwheel are knurled.

[0021] Furthermore, the front of the platform is provided with a storage slot for storing tools.

[0022] The beneficial effects of this utility model are:

[0023] This utility model provides a fabric roll packing platform with a sliding rod between two handwheels. A rope roller slides on the sliding rod, facilitating the binding of both ends of the fabric roll. During binding, rotating the handwheels causes the sliding rod to move around the fabric roll, and the rope roller follows the sliding rod synchronously around the fabric roll, winding the rope around it. This eliminates the need for manual operation, allowing even large-diameter fabric rolls to be packed by a single person. The operation is convenient and efficient. A limiting device is installed on the platform. After the sliding rod and rope roller have rotated a suitable number of times around the fabric roll, the limiting device stops them, preventing them from swinging back and forth due to inertia. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of a fabric drop platform for packaging fabric rolls according to the present invention.

[0025] Figure 2 for Figure 1 Schematic diagram of the structure at section BB;

[0026] Figure 3 for Figure 1 Schematic diagram of section AA;

[0027] Figure 4 This is a schematic diagram of the limiting component in this utility model;

[0028] Figure 5 This is a schematic diagram of the internal cross-sectional structure of the fixed shaft in this utility model.

[0029] Figure label:

[0030] 1. Platform; 11. Receiving slot; 2. Support frame; 3. Fixed shaft; 31. Shaft body; 32. T-shaped shaft; 33. Telescopic spring; 4. Fabric roll; 6. Rotating wheel assembly; 61. Handwheel; 62. Slide rod; 7. Rope roller; 8. Limiting assembly; 81. Limiting component; 811. Straight plate; 812. Bent shaft; 82. Rotating shaft; 83. Foot pedal; 84. Transmission rod; 85. Foot pedal; 86. Support shaft; Detailed Implementation

[0031] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. The specific embodiments of the present invention are described below to facilitate understanding by those skilled in the art. However, it should be understood that the present invention is not limited to the scope of the specific embodiments. For those skilled in the art, various changes are obvious as long as they fall within the spirit and scope of the present invention as defined and determined by the appended claims. All inventions utilizing the concept of the present invention are protected.

[0032] like Figure 1 As shown, this embodiment provides a fabric drop table for packing fabric roll 4. When using this drop table to pack fabric roll 4, there is no need for manual operation to wind the rope around the fabric roll 4, making operation convenient and improving the packing speed of fabric roll 4; specifically, it includes:

[0033] 1. Platform body; 2. Two sets of support frames; 3. Two fixed shafts; 6. Rotating wheel assembly; and 7. Rope roller;

[0034] The platform 1 has two sets of support frames 2 on each side, with fixed shafts 3 movably connected to the support frames 2. The fabric roll 4 is installed between the two fixed shafts 3. A rotating wheel assembly 6 is installed on the fixed shaft 3, and a rope roller 7 is installed on the rotating wheel assembly 6. When packing the fabric roll 4, the rotating wheel assembly 6 drives the rope roller 7 to move around the fabric roll 4 at least once. During the movement, the rope on the rope roller 7 wraps around the fabric roll 4. After wrapping, the staff can tie the two ends of the rope together. This method eliminates the need for staff to manually move the rope around the fabric roll 4. Even for large-diameter fabric rolls 4, a single person can complete the packing work. It is convenient to operate and has high packing efficiency.

[0035] like Figure 2 As shown, the rotating wheel assembly 6 includes two handwheels 61, the centers of which are rotatably connected to two fixed shafts 3 respectively; slide rods 62 are connected to the edges of the two handwheels 61, and rope rollers 7 are threaded through the slide rods 62.

[0036] When packing one end of the fabric roll 4, slide the rope roller 7 along the slide bar 62 to that end, rotate the handwheel 61, and the handwheel 61 will drive the slide bar 62 to move around the fabric roll 4. The rope roller 7 will follow the slide bar 62 and move around the fabric roll 4 synchronously. The rope on the rope roller 7 will wrap around the fabric roll 4. When packing the other end of the fabric roll 4, simply slide the rope roller 7 along the slide bar 62 to the other end.

[0037] like Figure 3As shown, the platform 1 has a cavity inside, and a limiting component 8 is installed inside the cavity. The limiting component 8 includes a limiting member 81. The top of the limiting member 81 is located at the position through which the slide rod 62 passes. The middle part of the limiting member 81 is movably connected to the cavity through a rotating shaft 82. The bottom of the limiting member 81 is movably connected to a transmission rod 84. The other end of the transmission rod 84 is movably connected to a foot pedal 85. The foot pedal 85 is rotatably connected to the cavity through a support shaft 86. The end of the foot pedal 85 away from the transmission rod 84 extends out of the cavity and is connected to the foot pedal 83. When the slide bar 62 and the rope roller 7 rotate around the fabric roll 4, the power transmission rod moves upward by stepping on the foot pedal 85. The transmission rod 84 drives the limiting member 81 to flip. After flipping, the limiting effect on the slide bar 62 is canceled, and the slide bar 62 can rotate normally around the fabric roll 4. When the slide bar 62 and the rope roller 7 rotate around the fabric roll 4 to a suitable number of turns, the foot pedal 85 is released. The end of the foot pedal 85 near the transmission rod 84 and the transmission rod 84 fall freely under gravity. The limiting member 81 blocks them to prevent the slide bar 62 and the rope roller 7 from swinging back and forth due to inertia.

[0038] like Figure 4 As shown, the limiting component 81 includes a straight plate 811 and a bent shaft 812. The straight plate 811 is located at the top of the platform 1 to limit the slide rod 62. The bent shaft 812 is integrally connected to the bottom of the straight plate 811, and the rotating shaft 82 is movably connected to the bent shaft 812. The transmission rod 84 is movably connected to the bottom of the bent shaft 812. The bottom of the bent shaft 812 bends to the side opposite to the flipping direction of the straight plate 811. This design of the bent shaft 812 ensures that when the transmission rod 84 moves upward, it pushes the bent shaft 812 to flip to the left, thereby causing the straight plate 811 to flip to the right.

[0039] like Figure 5 As shown, the fixed shaft 3 includes a shaft body 31. One end of the shaft body 31 is mounted on the support frame 2, and the other end of the shaft body 31 has a circular groove along the axial direction. A T-shaped shaft 32 is movably disposed in the circular groove. A telescopic spring 33 is provided between the end of the T-shaped shaft 32 with the T-shaped head and the bottom of the circular groove. The other end of the T-shaped shaft 32 extends out of the circular groove, and a limiting ring is provided on the edge of the circular groove to restrict the T-shaped head. The end of the T-shaped shaft 32 extending out of the circular groove is inserted into the core of the fabric roll 4. When installing the fabric roll 4, the T-shaped shaft 32 is pressed into the circular groove of the shaft body 31. After installation, the T-shaped shaft 32 is embedded into the core of the fabric roll 4 under the elastic force of the telescopic spring 33.

[0040] The edges of handwheel 61 are knurled.

[0041] The front side of the platform 1 is provided with a storage slot 11 for storing tools.

[0042] As a preferred embodiment, the platform is also provided with a clamp for holding the end of the rope.

[0043] During the packing process, first clamp one end of the rope to the clamp, then rotate the handwheel 61. The handwheel 61 drives the rope roller 7 to move around the fabric roll 4, causing the rope on the roller to wrap around the fabric roll. The clamp prevents the end of the rope from moving when the rope roller moves, thus preventing the rope from failing to wrap around the fabric roll. After the rope roller has rotated several times, cut the rope with scissors, and then tie the two ends of the rope wrapped around the fabric roll together to complete the packing of the fabric roll.

[0044] Those skilled in the art will recognize that the embodiments described herein are intended to help the reader understand the principles of this invention, and should be understood that the scope of protection of this invention is not limited to such specific statements and embodiments. Those skilled in the art can make various other specific modifications and combinations based on these technical teachings disclosed in this invention without departing from the essence of this invention, and these modifications and combinations are still within the scope of protection of this invention.

Claims

1. A fabric unloading table for packaging fabric rolls, characterized in that: The device includes a platform (1), on which two sets of support frames (2) are respectively provided on both sides. A fixed shaft (3) is movably connected to the support frame (2), and the cloth roll (4) is installed between the two fixed shafts (3). A rotating wheel assembly (6) is provided on the fixed shaft (3), and a rope roller (7) is provided on the rotating wheel assembly (6).

2. The fabric unloading table for packaging fabric rolls according to claim 1, characterized in that: The rotating wheel assembly (6) includes two handwheels (61), the centers of which are rotatably connected to the two fixed shafts (3); a slide bar (62) is connected to the edge of the two handwheels (61), and the rope roller (7) passes through the slide bar (62).

3. The fabric drop table for packing fabric rolls according to claim 2, characterized in that: The platform body has a cavity inside, and a limit component (8) is installed inside the cavity; The limiting component (8) includes a limiting member (81), the top of which is located at the position through which the slide rod (62) passes, the middle part of which is movably connected to the cavity via a rotating shaft (82), and the bottom of which is movably connected to a transmission rod (84); the other end of which is movably connected to a foot pedal (85); the foot pedal (85) is rotatably connected to the cavity via a support shaft (86), and the end of which is away from the transmission rod (84) extends out of the cavity and is connected to the foot pedal (83).

4. The fabric unloading table for packaging fabric rolls according to claim 3, characterized in that: The limiting component (81) includes a straight plate (811) and a bent shaft (812). The straight plate (811) is disposed on the top of the platform (1) to limit the slide rod (62). The bent shaft (812) is integrally connected to the bottom of the straight plate (811). The rotating shaft (82) is movably connected to the bent shaft (812). The transmission rod (84) is movably connected to the bottom of the bent shaft (812). The bottom of the bent shaft (812) bends toward the side opposite to the flipping direction of the straight plate (811).

5. The fabric unloading table for packaging fabric rolls according to claim 1, characterized in that: The fixed shaft (3) includes a shaft body (31), one end of which is mounted on the support frame (2), and the other end of which has a circular groove along the axial direction. A T-shaped shaft (32) is movably disposed in the circular groove. A telescopic spring (33) is provided between the end of the T-shaped shaft (32) with the T-shaped head and the bottom of the circular groove. The other end of the T-shaped shaft (32) extends out of the circular groove, and a limiting ring is provided on the edge of the circular groove to limit the T-shaped head. One end of the T-shaped shaft (32) that passes through the circular groove is inserted into the core of the cloth roll (4).

6. The fabric unloading table for packing fabric rolls according to any one of claims 2 to 4, characterized in that: The edge of the handwheel (61) is knurled.

7. The fabric unloading table for packing fabric rolls according to any one of claims 1 to 5, characterized in that: The front side of the platform (1) is provided with a receiving slot (11) for storing tools.