Fabric storage device
By horizontally layering the material rolls and utilizing a combination of rollers, support belts, and guides, the problem of compression during material roll stacking is solved, air circulation and convenient material loading are achieved, and the risk of fabric mold is reduced.
Patent Information
- Application Number
- CN202520126019.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-17
AI Technical Summary
After the fabric is produced, the rolls are stacked together and squeezed against each other, which prevents air circulation on the fabric surface and easily causes dampness and mold.
The material rolls are arranged in horizontal layers and supported by rollers and a bearing belt. The blocks and guides are used to stabilize and guide the material rolls, ensuring air circulation and preventing direct contact between the material rolls and the material rolls.
It enables air circulation between material rolls, reduces the risk of fabric mold, simplifies the material roll loading process, and improves storage efficiency.
Smart Images

Figure CN223658734U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of fabric production equipment, and in particular to a fabric storage device. Background Technology
[0002] After the fabric production is completed, the fabric rolls need to be stored. The current storage method is usually to first put a dust bag over the fabric roll, and then stack the fabric rolls one by one to achieve the purpose of storing the fabric rolls.
[0003] However, when the rolls are stacked, adjacent rolls will be squeezed together, which will cause the air on the surface of the fabric to not circulate, making the fabric prone to dampness and mold, thus affecting the use of the fabric.
[0004] Therefore, a new technical solution is needed to address the above problems. Utility Model Content
[0005] In order to prevent fabrics from being squeezed together during production and stacking, thereby allowing air to flow freely on the fabric surface and reducing the occurrence of mold, this application provides a fabric storage device.
[0006] This application provides a fabric storage device, which adopts the following technical solution:
[0007] A fabric storage device includes a frame and multiple sets of support components disposed on the frame for carrying fabric rolls. The multiple sets of support components are arranged vertically along the frame. Each support component includes a plurality of rollers respectively disposed on opposite side walls of the frame, a support belt sleeved on the rollers, and a plurality of blocking blocks disposed on the support belt. The support belt is disposed on two opposite side walls of the frame. The upper end of the support belt is used to place one end of the fabric roll. The blocking blocks are disposed on the outer wall of the support belt away from the rollers and are arranged along the rotation direction of the support belt. The same end of the support belt is inclined downward.
[0008] By adopting the above technical solution, the material rolls are placed horizontally and in layers, and adjacent material rolls will not come into direct contact. Air can circulate in the gaps between the material rolls, so that the fabric is not prone to mold due to excessive moisture. Furthermore, the material rolls can be loaded onto the carrier belt at the same location, making the loading process more convenient.
[0009] Optionally: A plurality of bearing strips are provided on the inner wall of the frame, the bearing strips being disposed in the inner cavity of the bearing strip and abutting against the upper end surface of the inner wall of the bearing strip.
[0010] By adopting the above technical solution, after the material roll is fed onto the carrier belt, the carrier belt is supported by the carrier strip, so that the carrier belt is not easily deformed when subjected to gravity, thereby enabling the carrier belt to stably support the material roll.
[0011] Optionally: A guide is provided on the end face of the outer wall of the frame for placing the material roll into the carrier belt. The end of the guide away from the frame is inclined upward, and the upper end face of the end of the guide near the carrier belt is higher than the upper end face of the carrier belt.
[0012] By adopting the above technical solution, when feeding the material roll toward the frame, both ends of the material roll can be placed directly on the guide. Then, the material roll moves toward the carrier belt under the action of gravity and rolls onto the carrier belt, thus eliminating the need to transport the material roll toward the frame, making the process of feeding the material roll into the frame more convenient.
[0013] Optionally: An extension is provided on the end face of the guide near the frame, the extension is disposed between the bearing strip and the frame, and the upper end face of the extension is flush with the upper end face of the bearing strip.
[0014] By adopting the above technical solution, when the material roll is fed into the frame, the material roll can pass along the extension from the position where the carrier belt is not rotated to the horizontal position and move to the position where the carrier belt is horizontal. Then, when the carrier belt moves, it can drive the material roll to move with the carrier belt, so that the material roll will not be stuck between the curved part of the carrier belt and the guide during the feeding process, thus making the feeding process of the material roll more convenient.
[0015] Optionally: The guide is further provided with a hook, and the frame is provided with a number of suspension points. The hook is hooked onto the suspension points, and the guide abuts against the outer wall of the frame.
[0016] By adopting the above technical solution, the guide can be moved to the position where the coil needs to be fed. After the hook is suspended on the suspension point, the lower end of the guide directly abuts against the outer wall of the frame, so that the guide can be connected to the frame. Furthermore, no additional limiting structure is needed when defining the position of the guide, making it more convenient to determine the position of the guide.
[0017] Optionally: Several positioning blocks are fixed on the outer wall of the frame where the suspension points are located. The positioning blocks are arranged vertically along the frame. The guide has a positioning hole on its end face near the frame, and the positioning block is embedded in the positioning hole.
[0018] By adopting the above technical solution, after the position of the guide is limited by the hook, the lower position of the guide is further limited by the cooperation of the positioning block and the positioning hole, so that the lower end of the guide will not swing horizontally along the outer wall of the frame under the force, thereby enabling the guide to stably guide the movement of the material roll.
[0019] Optional: The lower ends of the two guides are jointly fixed with a connector.
[0020] By adopting the above technical solution, the positions of the two guides are limited by the connector, so that the positions between the two guides will not change. This allows the guides to remain stable when connected to the frame. When it is necessary to move the position of the guides, the two guides can be moved synchronously through the connector, making it more convenient to adjust the position of the guides.
[0021] Optionally: Several motors are provided on the outer wall of the frame, one of the rollers connected to the same bearing belt is fixed to the motor, and the motors connected to the same group of bearing components are connected to a controller.
[0022] By adopting the above technical solution, the same group of carrier belts are moved synchronously by motors connected to the same controller, so that when the material roll is placed on the carrier belt, the material roll will not fall off the carrier belt due to different moving speeds at both ends, and the material roll can be stably placed in the frame.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. By placing the rolls horizontally and in layers, adjacent rolls will not come into direct contact, and air can circulate in the gaps between the rolls, making the fabric less prone to mold due to excessive moisture. Furthermore, the rolls can be loaded onto the carrier belt at the same location, making the loading process more convenient.
[0025] 2. When feeding the material roll toward the frame, both ends of the material roll can be placed directly on the guide. Then, the material roll moves toward the carrier belt under the action of gravity and rolls onto the carrier belt, thus eliminating the need to move the material roll toward the frame, making the process of feeding the material roll into the frame more convenient. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of an embodiment of this application;
[0027] Figure 2 This is a schematic diagram illustrating the structure of the guide component in an embodiment of this application.
[0028] In the diagram, 1 is the frame; 11 is the suspension point; 12 is the positioning block; 2 is the load-bearing component; 21 is the roller; 22 is the load-bearing belt; 23 is the blocking block; 24 is the motor; 25 is the load-bearing strip; 3 is the guide; 31 is the extension; 32 is the hook; 33 is the positioning hole; and 34 is the connector. Detailed Implementation
[0029] The present application will be further described in detail below with reference to the accompanying drawings.
[0030] This application discloses a fabric storage device, such as... Figure 1 As shown, the system includes a rectangular frame 1 with two opposing vertical sidewalls that are open. Multiple sets of support components 2 for carrying material rolls are installed within the frame 1. These support components 2 are arranged vertically, and each set supports both ends of the material roll. Each support component 2 includes several rollers 21 mounted on the two opposing vertical sidewalls of the frame 1, two support belts 22 fitted onto the rollers 21, and several blocking blocks 23 mounted on the support belts 22. The rollers 21 on the same sidewall are arranged horizontally, and the support belts 22 are fitted onto the horizontally arranged rollers 21 on the inner wall of the same frame 1, allowing the support belts 22 to move when the rollers 21 rotate. The blocking blocks 23 are located on the outer wall of the support belts 22 away from the rollers 21, arranged along the rotation direction of the support belts 22, with the spacing between the blocking blocks greater than the diameter of the material roll. The ends of the carrier belts 22 that are close to the same direction are all inclined downwards, so that when the material roll is placed on the carrier belt 22, the material roll can abut against the side wall of the blocking block 23 facing the same direction, making it difficult for material rolls on the same carrier belt 22 to abut against each other, and making it less likely for the air circulation on the surface of the material roll to be affected.
[0031] Several motors 24 are installed on the outer wall of the frame 1, with the number of motors 24 being twice the number of the support components 2. One of the rollers 21 connected to the same support belt 22 is connected to the output shaft of the motor 24 and can rotate under the drive of the motor 24. The motors 24 connected to the same support component 2 are all connected to a controller, so that the movement of the support belt 22 of the same support component 2 can be controlled simultaneously by a single controller, thereby driving the material roll on the support belt 22 to move.
[0032] Because the support belt 22 is made of flexible material, it deforms downwards when the material roll is placed on it, making it difficult to provide stable support. Therefore, a support strip 25 is also provided on the inner wall of the frame 1 to support the material roll. The support strip 25 is located within the cavity of the support belt 22 and abuts against the top surface of the cavity, with both ends of the support strip 25 inclined downwards. By using the support strip 25 to support the upper part of the support belt 22, the position of the support belt 22 remains fixed after the material roll is placed on it, allowing the support assembly 2 to stably support the material roll.
[0033] like Figure 1 and Figure 2 As shown, to facilitate the placement of the material roll onto the carrier belt 22, a guide 3 is provided on the end face of the frame 1 used for placing the material roll. The guide 3 is located at the higher end of the carrier belt 22. There are two guides 3, one on each side of the carrier assembly 2. One end of the guide 3 is detachably connected to the frame 1, and the other end of the guide 3 is inclined upward. The upper surface of the guide 3 near the carrier belt 22 is higher than the upper surface of the carrier belt 22. An extension 31 is provided at the end of the guide 3 near the carrier belt 22. The width of the extension 31 is smaller than the width of the guide 3. The extension 31 is located between the carrier belt 22 and the inner wall of the frame 1, and the upper surface of the extension 31 is flush with the upper surface of the carrier belt 22. After the material roll is placed on the guide 3, it moves along the guide 3 under the action of gravity and thus moves to the carrier belt 22. When feeding, the material roll can be automatically moved to the carrier belt 22 simply by placing the material belt on the guide 3, which makes feeding the material roll more convenient.
[0034] The guide 3 is also provided with a hook 32 at one end near the frame 1. Several suspension points 11 are provided on the outer wall of the frame 1 near the guide 3. Each suspension point 11 is a rectangular ring with openings at the top and bottom. The suspension points 11 are arranged vertically. The hook 32 can be suspended in the hook ring. The end of the guide 3 near the frame 1 abuts against the outer wall of the frame 1, thereby restricting the position of the guide 3.
[0035] To further enhance the connection strength between the guide 3 and the frame 1, several positioning blocks 12 are fixed on the outer wall of the frame 1 where the suspension point 11 is provided. The positioning blocks 12 are arranged vertically. The end face of the guide 3 near the frame 1 is provided with a positioning hole 33. The positioning block 12 is embedded in the positioning hole 33, so that the positioning block 12 can stably limit the position of the guide 3.
[0036] To facilitate the repositioning of the guide 3, a connector 34 is fixed to the lower end of both guides 3. The connector 34 is U-shaped, with both ends fixed to the lower end of the guide 3. The distance between the upper surface of the connector 34 and the upper surface of the carrying belt 22 is greater than the radius of the material roll. This prevents the material roll from deforming after being placed on the guide belt, and allows the carrying belt to stably support the material roll as it passes over its surface. When the position of the guide 3 needs to be changed, the guide 3 can be directly installed in the corresponding position.
[0037] The implementation principle of this embodiment is as follows: the guide 3 is aligned with the carrier belt 22 where the material roll needs to be placed, the hook 32 is suspended on the suspension point 11, and then the guide 3 is moved toward the frame 1 so that the positioning block 12 is inserted into the positioning hole 33. Then, the two ends of the material roll are placed on the guide 3 respectively. The material roll moves toward the frame 1 under the action of gravity and moves to the carrier belt 22 through the guidance of the extension 31. Then, the controller is used to move the carrier belt 22 a certain distance so that another blocking block 23 moves close to the extension 31 and another material roll is loaded onto the carrier belt 22.
[0038] The embodiments described in this specific implementation are 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 fabric storage device, characterized in that: The system includes a frame (1) and multiple sets of support components (2) arranged on the frame (1) for carrying material rolls. The multiple sets of support components (2) are arranged vertically along the frame (1). Each support component (2) includes several rollers (21) respectively arranged on opposite side walls of the frame (1), a support belt (22) sleeved on the rollers (21), and several blocking blocks (23) arranged on the support belt (22). The support belt (22) is respectively arranged on two opposite side walls of the frame (1). The upper end of the support belt (22) is used to place one end of the material roll. The blocking blocks (23) are arranged on the outer wall of the support belt (22) away from the rollers (21) and arranged along the rotation direction of the support belt (22). The same end of the support belt (22) is inclined downward.
2. The fabric storage device according to claim 1, characterized in that: The inner wall of the frame (1) is provided with a plurality of bearing strips (25), which are disposed in the inner cavity of the bearing strip (22) and abut against the upper end surface of the inner wall of the bearing strip (22).
3. The fabric storage device according to claim 1, characterized in that: The outer wall of the frame (1) is provided with a guide (3) on the end face for placing the material roll into the carrier belt (22). The end of the guide (3) away from the frame (1) is inclined upward, and the upper end face of the end of the guide (3) close to the carrier belt (22) is higher than the upper end face of the carrier belt (22).
4. A fabric storage device according to claim 3, characterized in that: An extension (31) is provided on the end face of the guide (3) near the frame (1). The extension (31) is located between the support belt (22) and the frame (1). The upper end face of the extension (31) is flush with the upper end face of the support belt (22).
5. A fabric storage device according to claim 4, characterized in that: The guide (3) is also provided with a hook (32), and the frame (1) is provided with a number of hanging points (11). The hook (32) is hooked on the hanging point (11), and the guide (3) abuts against the outer wall of the frame (1).
6. A fabric storage device according to claim 5, characterized in that: The frame (1) has a number of positioning blocks (12) fixed on its outer wall with suspension points (11). The positioning blocks (12) are arranged vertically along the frame (1). The guide (3) has a positioning hole (33) on its end face near the frame (1). The positioning block (12) is embedded in the positioning hole (33).
7. A fabric storage device according to claim 3, characterized in that: The lower ends of the two guides (3) are jointly fixed with a connector (34).
8. A fabric storage device according to claim 1, characterized in that: Several motors (24) are provided on the outer wall of the frame (1). One of the rollers (21) connected to the same bearing belt (22) is fixed to the motor (24). The motors (24) connected to the same set of bearing components (2) are all connected to a controller.