Fabric stacker
Patent Information
- Application Number
- CN202522310874.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-10-31
AI Technical Summary
若堆叠层数较多,下层布匹长时间承受较大压力,极易产生不可恢复的压痕,尤其是对于一些质地柔软、表面要求较高的面料,此类压痕会严重影响面料的外观质量和后续加工精度,增加面料损耗率,甚至可能导致部分布匹因压痕问题无法满足客户使用需求而报废,给企业造成经济损失
[0015]Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model uses multiple shelf frames spaced apart within a support frame to vertically place bundles of fabric in independent placement spaces formed by upper and lower opposite receiving slots. Adjacent fabrics are placed vertically in direct contact, and each fabric only bears its own weight, completely avoiding the problem of indentations caused by interlayer pressure. This effectively ensures the appearance quality of the fabric and the precision of subsequent processing, and reduces the scrapping of fabrics due to indentations.
Smart Images

Figure CN224727593U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of shelving equipment technology, and in particular to a fabric stacking shelving. Background Technology
[0002] In the fabric processing industry, finished fabrics, after being processed through cutting, dyeing, and other steps, are typically bundled for easy transportation and temporary storage, forming rolls of fabric with a certain weight and cylindrical structure. Currently, the industry commonly uses a traditional stacking method for storing these bundles of fabric, stacking them layer by layer from the ground up, using the ground or a simple support platform for storage. However, this traditional vertical stacking method has many unavoidable problems in practical application, causing significant challenges to the production management and subsequent processing stages of fabric processing enterprises.
[0003] Firstly, because the upper bundles of fabric have their own weight, when stacked vertically, this weight is entirely transferred to the lower layers. If there are many layers, the lower layers will bear significant pressure for extended periods, easily causing irreversible indentations. This is especially true for soft fabrics with high surface finish requirements. Such indentations can severely affect the fabric's appearance and subsequent processing precision, increasing fabric wastage and potentially leading to the scrapping of some fabrics due to indentation issues, resulting in economic losses for the company. Secondly, the cylindrical structure of bundled fabrics makes them unstable during stacking. If the stacked fabrics are accidentally touched during stacking or subsequent retrieval, or if affected by external factors such as equipment vibration within the workshop, the originally stacked fabrics are highly susceptible to tilting or slipping, potentially leading to a complete collapse and a safety hazard. This could not only damage the fabrics but also pose a serious threat to the personal safety of on-site personnel. Furthermore, traditional vertical stacking methods present inconvenience in retrieval. When it is necessary to retrieve fabric from the lower or middle layers, operators must first remove the upper layers one by one, retrieve the fabric, and then re-stack it. This entire process is time-consuming and labor-intensive, significantly reducing material turnover efficiency and failing to meet the needs of efficient production in industrial enterprises. Therefore, there is an urgent need for a fabric stacking rack that can protect fabric from indentation damage, ensure safe storage, and improve ease of retrieval. Utility Model Content
[0004] The purpose of this utility model is to provide a fabric stacking shelf that can protect fabrics from pressure marks and ensure safe storage, while also improving accessibility. It has a simple structure, is easy to operate and use, and is highly practical.
[0005] The present invention adopts the following technical solution: A fabric stacking rack includes a support frame, one end of which is open along its length, and multiple rack frames are spaced apart therein. Each rack frame can be slidably adjusted along the width of the support frame. One end of each rack frame is open and a limiting pin is inserted through the open end. Both the top and bottom ends of each rack frame are provided with receiving grooves, and a placement space is formed between two oppositely arranged receiving grooves.
[0006] Preferably, the support frame consists of a top rectangular frame and support rods located at the four corners of the rectangular frame; except for the two support rods at the open end of the support frame, support beams are provided between the remaining adjacent support rods.
[0007] Preferably, a guide beam is provided at the top of the rectangular frame along its width direction, and the shelf frame slides within the guide groove at the bottom end of the guide beam.
[0008] Preferably, the guide beam is provided with a limiting roller, the top of the shelf frame is provided with a limiting channel, and the limiting roller is located in the limiting channel.
[0009] Preferably, the bottom of the shelf frame is provided with casters.
[0010] Preferably, the shelf frame is a three-dimensional frame structure with a rectangular cross-section, one side of which is sealed along its length, and the other side is open between the two receiving slots.
[0011] Preferably, the side wall panels of the receiving slot on the open side of the shelf frame are all hinged, the end of the receiving slot side wall panel is provided with a positioning hole, and a positioning pin is movably inserted through the shelf frame.
[0012] Preferably, a limiting rope is provided on the open side of the shelf frame, one end of the limiting rope is fixedly connected to the shelf frame, and the other end is provided with a pin. The shelf frame is provided with a through hole for the pin to pass through.
[0013] Preferably, a reinforcing beam is provided at one end of the sealed shelf frame, and the reinforcing beam has a U-shaped structure.
[0014] Preferably, the top of the support frame is provided with a support rail via a connecting rod. The support rail is arranged along the width direction of the support frame. Support rollers are symmetrically arranged in the support rail. The upper and lower ends of the reinforcing beam are provided with grooves, and the support rollers are movably located in the grooves.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model uses multiple shelf frames spaced apart within a support frame to vertically place bundles of fabric in independent placement spaces formed by upper and lower opposite receiving slots. Adjacent fabrics are placed vertically in direct contact, and each fabric only bears its own weight, completely avoiding the problem of indentations caused by interlayer pressure. This effectively ensures the appearance quality of the fabric and the precision of subsequent processing, and reduces the scrapping of fabrics due to indentations.
[0016] Furthermore, in this invention, the fabric in each shelf frame is placed vertically side-by-side in two opposing receiving slots, preventing collapse due to external forces. This ensures safe and stable handling of fabrics, improving operational safety. Simultaneously, multiple shelf frames are placed parallel to each other, and each frame can slide and adjust along the width of the supporting frame. Therefore, the required shelf frame can be removed individually for specific fabrics without moving other layers of fabric, significantly shortening material handling time and reducing the workload of operators. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of an embodiment of this application; Figure 2 for Figure 1 Enlarged view of A in the middle; Figure 3 for Figure 1 A magnified view of B in the middle. Detailed Implementation
[0018] The present invention will now be described clearly and completely with reference to the accompanying drawings and embodiments: like Figures 1 to 3 As shown, the fabric stacking rack of this utility model includes a support frame 1, one end of which is open along its length. The support frame 1 includes a rectangular frame 1-1 at the top, and support rods 1-2 are welded or bolted to the four corners of the rectangular frame 1-1. Except for the two support rods 1-2 at the open end of the support frame 1, all other adjacent support rods 1-2 are connected to support beams 1-3 by welding or bolting. Multiple rack frames 2 are spaced apart inside the support frame 1. Each rack frame 2 can slide and adjust along the width of the support frame 1. Each rack frame 2 is provided with a moving roller 3 at the bottom to provide support for the rack frame 2 and to assist the rack frame 2 in moving in and out of the support frame 1.
[0019] In this embodiment, one end of the shelf frame 2 is open, and a limiting pin 4 is inserted through the open end along its width. The number of limiting pins 4 is matched to the height of the shelf frame 2, and they are preferably arranged in the middle area to intercept bundles of fabric and prevent them from being moved out of the shelf frame 2 by external force. The top and bottom ends of the shelf frame 2 are provided with receiving grooves 5, forming a placement space between the two oppositely arranged receiving grooves 5. When placing or removing fabric, the limiting pins 4 can be removed, and the fabric can be placed or removed one by one from the open end of the shelf frame 2. The upper and lower ends of the fabric are located within the two receiving grooves 5. Due to the limiting effect of the side walls of the receiving grooves 5, the fabric will not fall out from one side of the shelf frame 2. Since the fabric is placed vertically and parallel to each other within the shelf frame 2, it is only subject to its own weight. Compared with the stacking technology of the prior art, there is no phenomenon of pressure marks on the lower layer of fabric due to force, effectively ensuring the appearance quality of the fabric and the accuracy of subsequent processing, and also preventing collapse and ensuring safety. Meanwhile, during the retrieval and placement process, since multiple shelf frames 2 are placed side by side in parallel, and each shelf frame 2 can slide and adjust along the width direction of the support frame 1, the required shelf frame 2 can be taken out individually as needed to retrieve the specified fabric without moving other layers of fabric, which significantly shortens the material retrieval time and reduces the labor intensity of operators.
[0020] Furthermore, in the support frame 1, a guide beam 6 is provided at the top of the rectangular frame 1-1 along its width direction. The guide beam 6 has a U-shaped structure with an opening facing downwards, and the shelf frame 2 slides within the guide groove at the bottom end of the guide beam 6. Preferably, a limiting roller 7 is movably installed inside the guide beam 6, and a limiting channel 8 is provided at the top of the shelf frame 2. The limiting roller 7 is located within the limiting channel 8, providing limiting guidance for the shelf frame 2 while reducing friction between the guide beam 6 and the shelf frame 2, thus improving the ease of movement of the shelf frame 2. In addition, in this embodiment, to ensure the stability of the shelf frame 2 during operation, a positioning through hole is provided at the opposite position of the shelf frame 2 and the guide beam 6, and a positioning rod 9 passes through the positioning through hole. When it is necessary to move the shelf frame 2, the positioning rod 9 can be pulled out.
[0021] Furthermore, in this embodiment, the shelf frame 2 is a three-dimensional frame structure with a rectangular cross-section. One side along its length is sealed, while the other side, between the two receiving slots 5, is open, facilitating the observation and selection of fabrics. The sealed side of the shelf frame 2 ensures its structural strength while providing lateral support for the fabrics. Additionally, the side wall panels 10 of the receiving slots 5 on the open side of the shelf frame 2 are hinged to the shelf frame 2; that is, the side wall panels 10 of the receiving slots 5 on this side are hinged to the shelf frame 2. This arrangement allows for easy placement of fabrics by simply pulling the shelf frame 2 out of the support frame 1 and opening the side wall panels 10 of the upper and lower receiving slots 5, thus improving the convenience of fabric retrieval. Because the distance between the upper and lower receiving slots 5 is less than the height of the fabric under normal conditions, opening the side wall panels 10 of the receiving slots 5 allows for easy placement of the fabrics. The side panel 10 can be opened to create a space greater than the height of the fabric, eliminating the need to take the fabric from the open end of the shelf frame 2, thus improving the convenience of operation and providing flexibility in fabric selection; the end of the side panel 10 of the receiving slot 5 is provided with a positioning hole, and a positioning pin 11 is movably inserted through the shelf frame 2. By inserting the positioning pin 11 into the positioning hole, the side panel 10 of the receiving slot 5 in use can be positioned to prevent the fabric from falling out; there are two positioning pins 11 and positioning holes, located at both ends of the side panel 10 and both ends of the shelf frame 2 respectively.
[0022] Furthermore, a limiting rope 12 is provided on the open side of the shelf frame 2. One end of the limiting rope 12 is fixedly connected to the shelf frame 2, and the other end is provided with a pin 13. The shelf frame 2 is provided with a through hole for the pin 13 to pass through. The limiting rope 12 can protect the open end of the shelf frame 2, ensuring the stability of the fabric without affecting the observation and selection. When it is necessary to take or put away the fabric, simply pull out the pin 13.
[0023] Furthermore, a reinforcing beam 14 is provided at one sealed end of the shelf frame 2. There are two reinforcing beams 14, which are U-shaped. Preferably, the open end of the reinforcing beam 14 faces the shelf frame 2. The reinforcing beam 14 is set along the length of the shelf frame 2, that is, along the width of the support frame 1. The reinforcing beam 14 can reinforce the shelf frame 2 on the one hand, and on the other hand, a hole can be formed between the reinforcing beam 14 and the shelf frame 2 for forklift plate insertion. This facilitates the transfer of the shelf frame 2 and the fabric on it by laying the shelf frame 2 horizontally and then using a forklift to insert it for transfer. This meets the needs of batch use of fabric. After the shelf frame 2 is transferred to the use process, the fabric can be taken out one by one, saving the cumbersome operation of taking out the fabric and placing it on another transfer device in the middle.
[0024] Furthermore, a support rail 15 is provided on the top of the support frame 1 via a connecting rod 16. The support rail 15 is arranged along the width direction of the support frame 1. The connecting rod 16 is fixed to the top of both ends of the support frame 1 along the width direction by welding or bolting. Support rollers 17 are symmetrically arranged inside the support rail 15. Grooves 18 are provided at both the upper and lower ends of the reinforcing beam 14. The support rollers 17 are movably located within the grooves 18, and the sidewalls of the grooves 18 can limit the movement of the support rollers 17. This arrangement provides lateral support and guidance for the shelf frame 2, distributing the force acting on the guide beam 6 and ensuring the stability of the shelf frame 2 when fully loaded. Only one support rail 15 can be provided, which is connected to the upper reinforcing beam 14. Preferably, in this embodiment, a U-shaped limiting plate 19 is provided on the side of the shelf frame 2 opposite to the reinforcing beam 14. The reinforcing beam 14 can be placed inside the limiting plate 19, which can not only achieve the stability of stacking multiple shelf frames 2 during transportation, but also use the thickness of the limiting plate 19 to raise the height of the reinforcing beam 14, avoiding the reinforcing beam 14 from contacting the fabric and causing compression of the fabric.
[0025] In use, when placing fabric, pull the shelf frame 2 out of the support frame 1, then remove the positioning pin 11 on the side wall panel 10 of the receiving slot 5, fold up the side wall panel 10, and place the fabric one by one. After placement, reset the side wall panel 10, reinsert the positioning pin 11, and push the shelf frame 2 back to its original position. When retrieving fabric, pull out the shelf frame 2, remove the pin 13 to release the limiting rope 12, remove the positioning pin 11, fold up the side wall panel 10, and retrieve the corresponding fabric. The entire retrieval and placement can also be done from the open end of the shelf frame 2; simply remove the limiting pin 4. The operation is flexible, versatile, and highly practical. When the entire shelf frame 2 needs to be moved, simply pull the shelf frame 2 completely out of the support frame 1, lay it down, and use a forklift for transport.
Claims
1. A fabric stacking rack, characterized in that: The support frame includes an open end along its length, with multiple shelf frames spaced apart inside. Each shelf frame can slide and adjust along the width of the support frame. Each shelf frame has an open end with a limiting pin. Both the top and bottom of each shelf frame have receiving slots, and a placement space is formed between two oppositely arranged receiving slots.
2. The fabric stacking rack according to claim 1, characterized in that: The support frame consists of a rectangular frame at the top and support rods at the four corners of the rectangular frame; except for the two support rods at the open end of the support frame, support beams are provided between the other adjacent support rods.
3. The fabric stacking rack according to claim 2, characterized in that: The top of the rectangular frame is provided with a guide beam along its width direction, and the shelf frame slides within the guide groove at the bottom end of the guide beam.
4. The fabric stacking rack according to claim 3, characterized in that: The guide beam is equipped with a limiting roller, and the top of the shelf frame is equipped with a limiting channel, with the limiting roller located within the limiting channel.
5. The fabric stacking rack according to any one of claims 1-4, characterized in that: The bottom of the shelf frame is equipped with casters.
6. The fabric stacking rack according to claim 5, characterized in that: The shelf frame is a three-dimensional frame structure with a rectangular cross-section. One side of it is sealed along its length, while the other side is open between the two receiving slots.
7. The fabric stacking rack according to claim 6, characterized in that: The side panels of the receiving slots on the open side of the shelf frame are all hinged, and the end of the receiving slot side panel is provided with a positioning hole. A positioning pin is movably inserted through the shelf frame.
8. The fabric stacking rack according to claim 6, characterized in that: The shelf frame is provided with a limiting rope on the open side. One end of the limiting rope is fixedly connected to the shelf frame, and the other end is provided with a pin. The shelf frame is provided with a through hole for the pin to pass through.
9. The fabric stacking rack according to claim 6, characterized in that: The shelf frame is sealed at one end and a reinforcing beam is provided. The reinforcing beam has a U-shaped structure.
10. The fabric stacking rack according to claim 9, characterized in that: The top of the support frame is provided with a support rail via a connecting rod. The support rail is arranged along the width direction of the support frame. Support rollers are symmetrically arranged in the support rail. The upper and lower ends of the reinforcing beam are provided with grooves, and the support rollers are movably located in the grooves.