Supporting structure for silk packages
Patent Information
- Application Number
- CN202522062642.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-25
AI Technical Summary
在包装过程中,需要额外准备合适的卷筒或支撑物,这不仅增加了包装材料的种类和数量,还使得包装流程变得复杂
本实用新型中,将丝绸固定在第一连接板底部,第一连接板卷装时带动丝绸缠绕在第一连接板上,形成正六边形的筒状结构,内支撑块位于筒状结构内部,形成支撑,用于承担运输过程中的外力,避免丝绸直接承受压力,保证丝绸外管的平整度,单层卷装完成后,通过过渡块和第二连接板的连接作用下,再次卷装第三连接板,形成大直径的正六边形筒状结构,外支撑块位于筒状结构内部,形成二次支撑,最大程度避免丝绸承受外力,完成丝绸的二层卷装,最后形成两个内部中空的筒状结构,并且两个筒状结构内部均有稳定支撑,利于丝绸的运输,避免丝绸挤压形成折痕,保证丝绸的品质。
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Figure CN224768185U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of silk packaging technology, and in particular relates to a support-type silk roll structure. Background Technology
[0002] Silk, as a high-end fabric, holds an important place in fashion, home décor, and other fields due to its unique luster, soft texture, and elegant feel. However, silk fabrics are prone to wrinkling and damage, which necessitates special protective measures during storage and transportation to ensure their quality is not compromised.
[0003] Traditional silk packaging methods largely rely on external rolls or rigid supports. During the packaging process, additional suitable rolls or supports are required, increasing the variety and quantity of packaging materials and complicating the process. Furthermore, silk fabrics packaged using traditional methods are prone to serious problems due to compression during winding and transportation. Lacking an effective internal support structure, the silk fabric directly bears the pressure when subjected to external forces, leading to deformation. This affects the smoothness of the silk's appearance, and prolonged compression can cause permanent creases, reducing the silk's quality and value. Utility Model Content
[0004] The purpose of this invention is to provide a support-type silk roll structure, which has a simple structure, forming two hollow cylindrical structures with stable internal supports to prevent the silk from being squeezed by external forces during transportation.
[0005] The aforementioned support-type silk roll structure includes several first connecting plates. Inner support blocks are horizontally fixed at both the upper and lower ends of each first connecting plate. The inner support blocks, when rolled up, form a regular hexagonal structure. Several third connecting plates are arranged to the right of the rightmost first connecting plate. Outer support blocks are horizontally fixed at both the upper and lower ends of each third connecting plate. The outer support blocks, when rolled up, form a second regular hexagonal structure outside the first connecting plate. A second connecting plate connects the rightmost first connecting plate and the leftmost third connecting plate. Transition blocks connecting the two regular hexagonal structures are fixed at both the upper and lower ends of the second connecting plate. A fourth connecting plate is fixed to the right of the rightmost third connecting plate. Tail blocks are fixed at both the upper and lower ends of the fourth connecting plate.
[0006] Furthermore, the number of the first connecting plate and the inner support block is five, and the inner support block has an equilateral triangular structure.
[0007] Furthermore, the bottom of the first connecting plate, the second connecting plate, the third connecting plate, and the fourth connecting plate are all fixed with connectors.
[0008] Furthermore, a fixing plate is fixed to the right end of the tail block, and a protective film is connected to the fixing plate. The movable end of the protective film is detachably connected to the fixing plate.
[0009] Furthermore, the movable end of the protective film is fixed with Velcro, and the adhesive plate of the Velcro is fixed to the fixed plate.
[0010] Furthermore, the length of the first connecting plate is equal to the width of the silk.
[0011] Compared with the prior art, the present invention has the following beneficial effects: In this invention, silk is fixed to the bottom of the first connecting plate. When the first connecting plate is rolled up, the silk is wound around it to form a regular hexagonal cylindrical structure. The inner support block is located inside the cylindrical structure to provide support and bear the external force during transportation, preventing the silk from directly bearing pressure and ensuring the flatness of the silk outer tube. After the single-layer roll is completed, the third connecting plate is rolled up again through the connection of the transition block and the second connecting plate to form a large-diameter regular hexagonal cylindrical structure. The outer support block is located inside the cylindrical structure to provide secondary support, minimizing the external force on the silk and completing the two-layer roll of the silk. Finally, two hollow cylindrical structures are formed, and both cylindrical structures have stable support inside, which is conducive to the transportation of the silk, prevents the silk from being squeezed and forming creases, and ensures the quality of the silk. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 for Figure 1 A bottom view; Figure 3 for Figure 2 A schematic diagram of the structure in roll form; Figure 4 This is a schematic diagram of the structure of an embodiment; Figure 5 for Figure 4 A bottom view; Figure 6 for Figure 4 A schematic diagram of the structure in roll form; The components in the diagram are named as follows: 1. First connecting plate; 2. Inner support block; 3. Transition block; 4. Second connecting plate; 5. Outer support block; 6. Third connecting plate; 7. Tail block; 8. Fourth connecting plate; 9. Connector; 10. Fixing plate; 11. Protective film; 12. Velcro. Detailed Implementation
[0013] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention. Example
[0014] The supported silk roll structure described in this embodiment, such as Figures 1 to 6 As shown, it includes several first connecting plates 1, each of which has the same length and width. The several first connecting plates 1 are connected to each other and laid flat to form a whole plate structure. The upper and lower ends of the first connecting plate 1 are both horizontally fixed with inner support blocks 2. Each first connecting plate 1 has inner support blocks 2 fixed at both ends, and the inner support blocks 2 move together with the first connecting plate 1. Several inner support blocks 2 are rolled up to form a regular hexagonal structure. After the first connecting plate 1 is rolled up, it forms a hollow regular hexagonal structure. The inner support blocks 2 are rolled up together with the first connecting plate 1. The inner support blocks 2 form a support structure in the middle of the first connecting plate 1, so that the first connecting plate 1 maintains a regular hexagonal structure and provides support for the rolling of silk. Several third connecting plates 6 are provided on the right side of the first connecting plate 1 on the far right. The third connecting plates 6 are located on the right side of the first connecting plate 1. Each third connecting plate 6 has the same width, and the width of the third connecting plate 6 is greater than that of the first connecting plate 1. The upper and lower ends of the third connecting plate 6 are both horizontally fixed with external support blocks 5. Each third connecting plate 6 has external support blocks 5 fixed at both ends, and the external support blocks 5 are rolled up together with the third connecting plate 6. After several outer support blocks 5 are rolled up, they form a second regular hexagonal structure on the outside of the first connecting plate 1. After several third connecting plates 6 are rolled up, they form a second regular hexagon. The regular hexagon formed by the third connecting plates 6 wraps around the regular hexagon formed by the first connecting plate 1. A second connecting plate 4 is connected between the rightmost first connecting plate 1 and the leftmost third connecting plate 6. The left side of the second connecting plate 4 is connected to the rightmost first connecting plate 1, and the right side is connected to the leftmost third connecting plate 6. The width of the second connecting plate 4 is different from the width of the first connecting plate 1 and the third connecting plate 6. The second connecting plate 4 is used to connect the small-diameter regular hexagon formed by the first connecting plate 1 and the large-diameter regular hexagon formed by the third connecting plate 6, so that it completes two-layer rolls and meets the requirements of silk rolls. The upper and lower ends of the second connecting plate 4 are both fixed with transition blocks 3 that connect the two regular hexagonal structures. There are two transition blocks 3, which are fixed to the upper and lower ends of the second connecting plate 4 respectively. The transition blocks 3 work together with the second connecting plate 4 to connect the two regular hexagons, so that they can complete the two-layer roll. A fourth connecting plate 8 is fixed to the right side of the third connecting plate 6 on the far right. Tail blocks 7 are fixed to both the upper and lower ends of the fourth connecting plate 8. The left end of the fourth connecting plate 8 is fixed to the right side wall of the third connecting plate 6 on the far right. There are two tail blocks 7, which are fixed to the upper and lower sides of the fourth connecting plate 8 respectively. After the third connecting plate 6 is rolled up, the fourth connecting plate 8 and the tail blocks 7 are attached to the transition block 3 and the second connecting plate 4 to form a cylindrical structure for rolling up and supporting the silk.
[0015] In this embodiment, the silk is folded and laid flat at the bottom of the first connecting plate 1, with the end of the silk attached to the left end of the first connecting plate 1. All the first connecting plates 1 are rolled up to form a hollow hexagonal cylindrical structure. The inner support blocks 2 at both ends of the first connecting plate 1 are rolled up together with the first connecting plate 1. The inner support blocks 2 form support inside the regular hexagon to prevent the silk from being crushed during transportation. After the first connecting plate 1 is rolled up, the third connecting plate 6 continues to be rolled up to form a second hollow hexagonal cylindrical structure. The regular hexagonal structure formed by the third connecting plate 6 wraps around the outside of the regular hexagonal structure formed by the first connecting plate 1. The outer support block 5 is rolled up together with the third connecting plate 6. The outer support block 5 forms support inside the second regular hexagon. During the rolling process of the first connecting plate 1 and the third connecting plate 6, the two regular hexagonal cylindrical structures are connected by the transition block 3 and the second connecting plate 4 to complete the two-layer rolling structure.
[0016] like Figures 1 to 3 As shown, there are five first connecting plates 1 and five inner support blocks 2. The inner support blocks 2 are in the shape of an equilateral triangle. After the five first connecting plates 1 are rolled up, they form a regular hexagonal structure. The five inner support blocks 2 are rolled up together with the first connecting plates 1 to form a support in the middle of the first connecting plates 1.
[0017] In this embodiment, there are also five outer support blocks 5 and five third connecting plates 6. After the five third connecting plates 6 are rolled up, they form a large-diameter regular hexagonal cylindrical structure, which wraps around the outer wall of the regular hexagonal structure formed by the first connecting plate 1. The five outer support blocks 5 are rolled up together with the third connecting plates 6 to form a support inside the third connecting plate 6.
[0018] like Figure 1 As shown, the length of the first connecting plate 1 is equal to the width of the silk. The silk is laid flat at the bottom of the first connecting plate 1, between the inner support blocks 2. After the first connecting plate 1 is rolled up, the outer support block 5 presses against the side wall of the first connecting plate 1, and the silk is located between the support blocks to avoid the support blocks pressing on the silk, thus avoiding indentations on the silk and affecting its quality. Example
[0019] This embodiment further illustrates the technology, such as Figure 4 and Figure 5As shown, the bottom of the first connecting plate 1, the second connecting plate 4, the third connecting plate 6, and the fourth connecting plate 8 are all fixed with connectors 9. All the first connecting plates 1, the second connecting plate 4, the third connecting plate 6, and the fourth connecting plate 8 are fixed to the top of connectors 9. All connecting plates are connected by connectors 9 to prevent the connecting plates from breaking after repeated use. Connectors 9 are made of non-woven fabric or soft plastic material, such as polyethylene and polypropylene, which are high molecular polymer materials with good flexibility, bendability, and even stretchability. Example
[0020] This embodiment further illustrates the technology, such as Figures 4 to 6 As shown, a fixing plate 10 is fixed to the right end of the tail block 7. A protective film 11 is connected to the fixing plate 10. The movable end of the protective film 11 is detachably connected to the fixing plate 10. After the silk roll is completed, the protective film 11 surrounds the outside of all the third connecting plates 6 and the fourth connecting plates 8. The protective film 11 wraps the silk to prevent foreign objects from contacting the silk during transportation and to prevent the silk from being damaged during transportation.
[0021] like Figure 5 and Figure 6 As shown, the movable end of the protective film 11 is fixed with Velcro 12. The adhesive plate of Velcro 12 is fixed on the fixing plate 10, and the hook of Velcro 12 is fixed on the movable end of the protective film 11. The movable end of the protective film 11 is wrapped around the fixing plate 10 and then attached to the fixing plate 10, thus ensuring the protection of the silk. While protecting the silk from damage, it also tightens the silk and prevents the hexagonal cylindrical structure from unraveling during transportation.
Claims
1. A support-type silk roll structure, comprising a plurality of first connecting plates (1), characterized in that: The first connecting plate (1) has an inner support block (2) fixed horizontally at both ends. After the inner support blocks (2) are rolled up, they form a regular hexagonal structure. The right side of the first connecting plate (1) has several third connecting plates (6). The upper and lower ends of the third connecting plate (6) have an outer support block (5) fixed horizontally. After the outer support blocks (5) are rolled up, they form a second regular hexagonal structure outside the first connecting plate (1). The right side of the first connecting plate (1) and the left side of the third connecting plate (6) are connected by a second connecting plate (4). The upper and lower ends of the second connecting plate (4) have a transition block (3) that connects the two regular hexagonal structures. The right side of the right side of the third connecting plate (6) has a fourth connecting plate (8). The upper and lower ends of the fourth connecting plate (8) have a tail block (7).
2. The supported silk roll structure according to claim 1, characterized in that: The number of the first connecting plate (1) and the inner support block (2) is five, and the inner support block (2) has an equilateral triangle structure.
3. The supported silk roll structure according to claim 1, characterized in that: The bottom of the first connecting plate (1), the second connecting plate (4), the third connecting plate (6) and the fourth connecting plate (8) are all fixed with connectors (9).
4. The supported silk roll structure according to claim 1, characterized in that: The right end of the tail block (7) is fixed with a fixing plate (10), and a protective film (11) is connected to the fixing plate (10). The movable end of the protective film (11) is detachably connected to the fixing plate (10).
5. The supported silk roll structure according to claim 4, characterized in that: The movable end of the protective film (11) is fixed with a Velcro (12), and the adhesive plate of the Velcro (12) is fixed on the fixing plate (10).
6. The supported silk roll structure according to claim 1, characterized in that: The length of the first connecting plate (1) is equal to the width of the silk.