A cushioned wrapping structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-18
- Publication Date
- 2026-08-14
AI Technical Summary
首先,多数包装为一次性使用,拆解后难以恢复原状,无法重复利用,不仅增加了用户的包装成本,也造成了资源浪费和环境污染
[0018]首先,通过磁吸连接方式实现包装的快速开合与牢固闭合,不仅操作简便,而且避免了传统粘接或捆扎方式对包装的结构破坏,显著提高了包装的重复使用率,降低了长期使用成本;其次,采用具有优良伸缩与缓冲特性的蜂窝体作为主体结构,能够在拉伸后形成与产品外形高度贴合的环形容纳腔,实现对产品的全方位、无死角缓冲保护;此外,包装结构在非使用状态下可压缩收纳,极大节省存储空间,提升实用性;整体结构设计科学、合理,兼具良好的防护性能、使用便捷性与环保性,具有较强的市场应用前景。
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Figure CN224632313U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of packaging technology, specifically relating to a cushioned surrounding packaging structure. Background Technology
[0002] Currently, common cushioning packaging structures on the market mostly use materials such as foam, bubble wrap, and paper-plastic composites to wrap and protect products. While these types of packaging can alleviate impacts and vibrations during transportation to some extent, they still have significant shortcomings. First, most packaging is for single use only, and it is difficult to restore it to its original state after disassembly, making it unusable. This not only increases packaging costs for users but also wastes resources and pollutes the environment. Second, traditional packaging structures often lack good adaptability to product shapes, especially for products with special shapes such as rings or cylinders. It is difficult to achieve a complete and close fit, and gaps are easily created between the product and the packaging, leading to a decrease in protective effectiveness. In addition, common packaging often relies on tape, hooks and loops for fixation, which is inconvenient to disassemble and is prone to damage during unpacking, affecting reusability. Therefore, there is an urgent need for a new type of cushioning packaging structure that is structurally sound, reusable, highly adaptable, and easy to assemble and disassemble. Utility Model Content
[0003] (1) Technical problems to be solved
[0004] This invention provides a cushioned, surrounding packaging structure designed to solve the problem of reusable packaging.
[0005] (2) Technical solution
[0006] This utility model provides a buffered surrounding packaging structure, including a first magnetic plate and a second magnetic plate. Multiple support plates are provided between the first magnetic plate and the second magnetic plate. The multiple support plates are arranged in sequence and connected to each other to form a honeycomb. One end of each support plate is provided with a through groove.
[0007] In use, the first magnetic plate and the second magnetic plate are magnetically connected to each other in the direction away from the honeycomb body, so that the honeycomb body is stretched and unfolded into a ring structure, and the multiple through slots surround and enclose to form a receiving cavity, and the product is placed in the receiving cavity.
[0008] Furthermore, the receiving cavity is matched and fitted to the product profile.
[0009] Furthermore, multiple spaced bonding points are provided between adjacent support plates, and honeycomb-shaped through holes are formed between adjacent bonding points.
[0010] Furthermore, in use, the receiving cavity is provided with an axis L, and the axial direction of the through hole is arranged radially along the axis L.
[0011] Furthermore, the contours of the first magnetic plate and the second magnetic plate are adapted to the support plate.
[0012] Furthermore, a handle groove is provided above the through groove, and the handle groove surrounds and encloses to form a handle cavity, and a handle component is provided inside the handle cavity.
[0013] Furthermore, the handle includes a bead and a rope connected to each other, the bead being fitted and snapped into the handle cavity, and the rope extending upward from the bead.
[0014] Furthermore, the bead is spherical, the handle cavity is a spherical cavity adapted to the bead, and the handle groove is a semi-circular groove.
[0015] Furthermore, the lifting bead is square-shaped, the handle cavity is a rectangular cavity adapted to the lifting bead, and the handle groove is a rectangular groove.
[0016] Furthermore, in use, the sidewall of the honeycomb body is provided with an annular protective groove, and an annular protective sleeve is fitted inside the protective groove.
[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0018] First, the magnetic connection method enables quick opening and secure closure of the packaging, which is not only easy to operate but also avoids the structural damage caused by traditional adhesive or strapping methods, significantly improving the reusability of the packaging and reducing long-term usage costs. Second, the use of a honeycomb structure with excellent elasticity and cushioning properties as the main structure allows it to form a ring-shaped cavity that closely fits the product's shape after stretching, providing all-around, comprehensive cushioning protection. In addition, the packaging structure can be compressed and stored when not in use, greatly saving storage space and improving practicality. The overall structural design is scientific and reasonable, combining good protective performance, ease of use, and environmental friendliness, and has strong market application prospects. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 .
[0020] Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 .
[0021] Figure 3 This is a folding and storage diagram of the present invention.
[0022] Figure 4 This is a schematic diagram of the structure of the present invention. Figure 3 .
[0023] Figure 5This is an enlarged view of the honeycomb structure of this utility model.
[0024] Figure 6 This is a top view of the present invention.
[0025] Figure 7 Top view of through holes of different diameters in this utility model Figure 1 .
[0026] Figure 8 Top view of through holes of different diameters in this utility model Figure 2 .
[0027] Figure 9 This is a schematic diagram of the handle component of this utility model.
[0028] Figure 10 This is a schematic diagram of the installation of the handle component of this utility model.
[0029] Figure 11 This is a schematic diagram of the structure of the present invention. Figure 3 .
[0030] Figure 12 This is a schematic diagram of another embodiment of the present invention. Figure 1 .
[0031] Figure 13 This is a schematic diagram of another embodiment of the present invention. Figure 2 .
[0032] Figure 14 This is a structural cross-sectional view of another embodiment of the present invention.
[0033] Reference numerals in the attached drawings: 1-Honeycomb structure, 11-Support plate, 12-Through groove, 13-Adhesive point, 14-Through hole, 15-Handle groove, 2-First magnetic suction plate, 3-Second magnetic suction plate, 4-Accommodation cavity, 5-Handle cavity, 6-Handle piece, 61-Lifting bead, 62-Lifting rope, 7-Protective sleeve, 71-Protective groove, 8-Magnet. Detailed Implementation
[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0035] like Figure 1-14As shown, this utility model provides a cushioning surround packaging structure, including a first magnetic suction plate 2 and a second magnetic suction plate 3, both of which are made of rigid cardboard. Magnets 8 are embedded in both the first magnetic suction plate 2 and the second magnetic suction plate 3, so that the first magnetic suction plate 2 and the second magnetic suction plate 3 can be magnetically connected. A plurality of support plates 11 are provided between the first magnetic suction plate 2 and the second magnetic suction plate 3. The plurality of support plates 11 are arranged in sequence and connected to each other to form a honeycomb body 1. The honeycomb body 1 has elasticity, cushioning and support. The first magnetic suction plate 2 and the second magnetic suction plate 3 are respectively fixedly connected to both ends of the honeycomb body 1. Each of the support plates 11 has a through groove 12 at one end.
[0036] In use, the first magnetic plate 2 and the second magnetic plate 3 are moved away from each other, moving away from the honeycomb body 1, and then rotated around to make the first magnetic plate 2 and the second magnetic plate 3 magnetically attract each other. At this time, the honeycomb body 1 is stretched and unfolded into a ring structure. At this time, the through grooves 12 on each of the support plates 11 surround and form a receiving cavity 4. The shape of the receiving cavity 4 depends on the product. The product to be packaged is placed in the receiving cavity 4. The receiving cavity 4 matches and fits the contour of the product to ensure that the product will not shake in the receiving cavity 4 and to ensure the stability of the packaging. It is worth noting that in the actual packaging process, the honeycomb body 1 is usually stretched to form half of the receiving cavity 4. The product is placed in advance, and then the first magnetic plate 2 and the second magnetic plate 3 are moved around the product until the first magnetic plate 2 and the second magnetic plate 3 are magnetically connected to each other. At this time, the product is completely wrapped in the receiving cavity 4 in the honeycomb body 1, completing the protective packaging of the product.
[0037] It should be noted that the shape of the receiving cavity 4 is determined by the product to be packaged. Depending on the product, it can be spherical, square, irregular, or other shapes, and is not limited to the shape of the receiving cavity 4 shown in the attached drawings.
[0038] When it is necessary to remove the product from the packaging structure, simply separate the first magnetic plate 2 and the second magnetic plate 3 from each other, and then remove the product from the receiving cavity 4. Since the first magnetic plate 2 and the second magnetic plate 3 are connected by magnetic attraction, neither packaging nor removing the product will damage the packaging structure. In other words, the packaging structure of this application can be reused. When not in use, the first magnetic plate 2 and the second magnetic plate 3 are moved toward each other towards the honeycomb body 1. At this time, multiple support plates 11 are tightly stacked in sequence, which significantly reduces the volume of the honeycomb body 1 and greatly saves storage space.
[0039] For ring-shaped and columnar products, the market typically uses rotating and stretchable structures to protect and wrap them. However, traditional packaging structures often have some drawbacks. First, traditional packaging usually only wraps the product simply, making it susceptible to damage during transportation due to squeezing or puncture by sharp objects. Second, traditional packaging structures are usually closed with adhesive connections, which inevitably tear when the product needs to be removed, causing structural damage and making them unusable. As a result, they become disposable items, increasing usage costs.
[0040] To address these issues, this application employs the honeycomb structure 1, which provides cushioning and support, as the main structure of the packaging, significantly enhancing its overall compressive and impact resistance. Furthermore, the first magnetic plate 2 and the second magnetic plate 3 of this application are magnetically connected to achieve opening and closing operations, preventing damage to the packaging structure during product packaging and removal, thus supporting reuse and effectively reducing transportation and packaging costs. In addition, the structural strength of the honeycomb structure 1 further extends the service life of the packaging structure.
[0041] Specifically, in one embodiment of this utility model, the receiving cavity 4 is provided with a central axis L, and the plurality of support plates 11 are stretched and retracted around the axis L, such as... Figure 4 and 5 As shown, multiple spaced bonding points 13 are provided between adjacent support plates 11, and honeycomb-shaped through holes 14 are formed between adjacent bonding points 13. Specifically, a single support plate 11 extends along the axis L. During bonding, the first bonding point 13 is bonded to the support plate 11 on the left, while the bonding points 13 adjacent vertically along the axis are bonded to the support plate 11 on the right, and so on, thereby forming an array of staggered bonding points. These vertically (axially) adjacent bonding points 13 and horizontally (circumferentially) bonding points 13 together define and enclose the honeycomb-shaped through holes 14.
[0042] The characteristic of this structure is that it provides the best support along the axial direction of the through hole 14, such as... Figure 5 The honeycomb structure has excellent cushioning and elasticity in the lateral direction. This application utilizes the elasticity of the honeycomb structure to extend the honeycomb structure into a ring structure around the axis L, thereby giving the packaging structure the function of being foldable and stretchable. Secondly, the ring layout of the honeycomb structure makes the axial direction of the through hole 14 radially arranged along the axis L. This structure makes the packaging structure have the support of the honeycomb structure in all circumferential directions, realizing comprehensive product protection from multiple angles and without dead angles.
[0043] Furthermore, such as Figure 7 and Figure 8 As shown, it can be seen Figure 4 The diameter of the through hole 14 described herein is smaller than that of the hole in the middle. Figure 5 The diameter of the through hole 14 is not fixed. Different diameters of the through hole 14 result in different levels of support and manufacturing costs. The specific diameter can be adjusted according to the actual needs of the product.
[0044] Specifically, in one embodiment of this utility model, since the support plate 11 described in this application is made of paper material, the end face of the honeycomb body 1 connected to the first magnetic suction plate 2 and the second magnetic suction plate 3 along the circumferential direction of the axis L is relatively fragile and easily damaged by scratches, thereby destroying the overall structure. In order to solve this problem, the contours of the first magnetic suction plate 2 and the second magnetic suction plate 3 are adapted to the support plate 11, thereby completely covering the exposed end face of the honeycomb body 1. Furthermore, since the hardness of the first magnetic suction plate 2 and the second magnetic suction plate 3 is greater than that of the support plate 11, the combination of the two greatly improves the protection of the end face of the honeycomb body 1, thereby extending the service life of the packaging structure.
[0045] Furthermore, this arrangement, which maximizes the area of the first magnetic plate 2 and the second magnetic plate 3, also increases the number and arrangement area of the magnets 8, such as... Figure 2 As shown, the first magnetic plate 2 and the second magnetic plate 3 each have three magnets 8 embedded in the upper, middle and lower positions. The design of multiple magnets 8 effectively enhances the magnetic attraction between the first magnetic plate 2 and the second magnetic plate 3. The design of arranging the magnets 8 over a wide area enables the first magnetic plate 2 and the second magnetic plate 3 to be magnetically connected between multiple positions in the upper, middle and lower, thereby improving the closure stability and reliability of the entire packaging structure.
[0046] In other embodiments, the areas of the first magnetic plate 2 and the second magnetic plate 3 can be adjusted according to the actual situation. Correspondingly, the number and arrangement area of the magnets 8 can also be adjusted accordingly, such as reducing the area of the first magnetic plate 2 and the second magnetic plate 3, as well as the number and arrangement area of the magnets 8. This structural design effectively reduces the amount of magnetic material used and lowers the overall production cost while meeting the basic magnetic connection requirements. It is more suitable for applications that are cost-sensitive and have moderate protection strength requirements.
[0047] In other embodiments, the first magnetic plate 2 and the second magnetic plate 3 can also be connected by various methods such as adhesive bonding or snap-fit connection, all of which can achieve the above-mentioned effects.
[0048] Specifically, in one embodiment of this utility model, traditional packaging is usually only used for product protection during transportation. However, this application makes the packaging structure reusable by setting the first magnetic plate 2 and the second magnetic plate 3. This design expands the application scenarios. It is not only suitable for transport packaging, but can also be used as sales display packaging or gift box packaging. However, when traditional packaging is used as sales packaging or gift box packaging, practicality and aesthetics are often not fully considered.
[0049] To address this issue, a handle groove 15 is provided above the through groove 12. The handle groove 15 surrounds and forms a handle cavity 5, within which a handle component 6 is provided. The handle component 6 includes interconnected lifting beads 61 and lifting ropes 62. The lifting beads 61 are also formed by multiple arc-shaped support plates surrounding a spherical honeycomb structure. Adjacent arc-shaped support plates are also bonded together at intervals to form honeycomb through holes, ensuring that the spherical lifting beads 61 provide radial support. It is worth noting that the shapes of the handle groove 15 and the handle cavity 5 can be adjusted according to actual conditions, such as... Figure 1-3 As shown, the handle groove 15 is a quarter-circle groove, forming a hemispherical handle cavity 5. Therefore, a hemispherical handle bead 61 needs to be manufactured to fit the hemispherical handle cavity 5. Besides this design, such as... Figure 10 As shown, the handle groove 15 can also be set as a semi-circular groove, and the handle cavity 5 is a spherical cavity adapted to the handle bead 61;
[0050] The spherical bead 61 is fitted and snapped into the handle cavity 5, and the carrying rope 62 extends upward from the bead 61. This structural design adds a portable handle function to the packaging structure, making it easy to carry when used as a gift box, and significantly improving its practicality and appearance.
[0051] Meanwhile, the detachable design of the handle 6 within the handle cavity 5 allows the packaging structure to flexibly adapt to different usage scenarios: the handle 6 can be omitted when only transport packaging is needed, while it can be added when used as a gift box or display packaging, allowing for flexible switching; in addition, the snap-fit connection between the handle cavity 5 and the bead 61 makes the connection between the handle 6 and the packaging structure more stable, preventing the bead 61 from shaking and falling off within the handle cavity 5.
[0052] Furthermore, the lifting bead 61 is spherical, the handle cavity 5 is a spherical cavity adapted to the lifting bead 61, and the handle groove 15 is a semi-circular groove. This structural design makes the spherical cavity of the handle cavity 5 naturally form an upward snap-fit structure design, which not only ensures the reliable installation of the handle part 6, but also enhances the overall aesthetics and shape coordination.
[0053] In another embodiment, the bead 61 can also adopt a block-shaped structure, the handle cavity 5 is correspondingly set as a block cavity, and the handle groove 15 is a square groove. This structural design can also achieve the stable locking and handle function of the bead 61, achieving a technical effect similar to the spherical design, and has good performance in terms of stability and aesthetics.
[0054] Specifically, in one embodiment of this utility model, during use, the side 17 of the annularly unfolded honeycomb body 1 is provided with an annular protective groove 71, and an annular protective sleeve 7 is fitted in the protective groove 71. This structural design, on the one hand, further enhances the packaging stability of the packaging structure, and provides auxiliary fastening when the magnetic force of the first magnetic suction plate 2 and the second magnetic suction plate 3 weakens or fails, preventing the product from accidentally falling off. On the other hand, the protective sleeve 7 can form a handhold area, making it more convenient and comfortable for users to hold, and significantly improving the ease of operation.
[0055] It is worth noting that the shape of the support plate 11 and the honeycomb 1 formed by stretching and surrounding the support plate 11 is not limited. Correspondingly, the receiving cavity 4 formed by the through groove 12 on the support plate 11 is also not limited and can be flexibly designed and adjusted according to actual packaging needs.
[0056] In other embodiments, such as Figure 12-13 As shown, the support plate 11 has a C-shaped structure, and the honeycomb body 1 has a cylindrical shape with rounded corners. This structure can also achieve the above-mentioned effect.
[0057] In other embodiments, such as Figure 14 As shown, the support plate 11 is designed with a more rounded arc shape, so that the cross-section of the honeycomb 1 formed by the support plate 11 is similar to the shape of an apple. This structure can also achieve the above effect.
[0058] The working principle of this utility model is explained in detail below:
[0059] In the initial state, the first magnetic suction plate 2 and the second magnetic suction plate 3 are close to the honeycomb structure 1, and the multiple support plates 11 are stacked and compressed, with the overall structure in a compressed state. In use, the user pulls the first magnetic suction plate 2 and the second magnetic suction plate 3 outwards, moving them away from the honeycomb structure 1, and they magnetically attract each other. At this time, the honeycomb structure 1 is expanded in a ring shape, and the through slots 12 on each support plate 11 together form a receiving cavity 4 that conforms to the shape of the product. The product is placed in the receiving cavity 4 and is fully wrapped and cushioned by the surrounding honeycomb structure. When the product needs to be removed, simply separate the first magnetic suction plate 2 and the second magnetic suction plate 3; the honeycomb structure 1 then contracts, and the product can be easily removed, restoring the packaging to a compressed state for easy storage. Throughout the process, the honeycomb structure 1 provides multi-directional cushioning and support through its unique honeycomb hole structure, while the magnetic suction plates ensure the stability and reusability of the structure, achieving efficient, environmentally friendly, and multifunctional packaging applications.
[0060] The innovation of this utility model lies in:
[0061] First, the magnetic connection method enables quick opening and secure closure of the packaging, which is not only easy to operate but also avoids the structural damage caused by traditional adhesive or strapping methods, significantly improving the reusability of the packaging and reducing long-term usage costs. Second, the use of a honeycomb structure with excellent elasticity and cushioning properties as the main structure allows it to form a ring-shaped cavity that closely fits the product's shape after stretching, providing all-around, comprehensive cushioning protection. In addition, the packaging structure can be compressed and stored when not in use, greatly saving storage space and improving practicality. The overall structural design is scientific and reasonable, combining good protective performance, ease of use, and environmental friendliness, and has strong market application prospects.
[0062] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementations that can be understood by those skilled in the art.
[0063] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A cushioned, surrounding packaging structure, characterized in that, It includes a first magnetic suction plate (2) and a second magnetic suction plate (3). Multiple support plates (11) are provided between the first magnetic suction plate (2) and the second magnetic suction plate (3). The multiple support plates (11) are arranged in sequence and connected to each other to form a honeycomb (1). One end of the support plate (11) is provided with a through groove (12). In use, the first magnetic plate (2) and the second magnetic plate (3) are magnetically connected to each other in the direction away from the honeycomb body (1), so that the honeycomb body (1) is stretched and unfolded into a ring structure, and the multiple through slots (12) surround and enclose to form a receiving cavity (4), and the product is placed in the receiving cavity (4).
2. The cushioning surrounding packaging structure according to claim 1, characterized in that, The receiving cavity (4) is matched and fitted to the product outline.
3. The cushioning surrounding packaging structure according to claim 1, characterized in that, Multiple spaced bonding points (13) are provided between adjacent support plates (11), and honeycomb-shaped through holes (14) are formed between adjacent bonding points (13).
4. The cushioning surrounding packaging structure according to claim 3, characterized in that, In use, the receiving cavity (4) is provided with an axis L, and the axial direction of the through hole (14) is arranged radially along the axis L.
5. The cushioning surrounding packaging structure according to claim 1, characterized in that, The outlines of the first magnetic plate (2) and the second magnetic plate (3) are adapted to the support plate (11).
6. The cushioning surrounding packaging structure according to claim 1, characterized in that, Above the through groove (12) is a handle groove (15), which surrounds and encloses to form a handle cavity (5), and a handle piece (6) is provided inside the handle cavity (5).
7. The cushioning surrounding packaging structure according to claim 6, characterized in that, The handle (6) includes a bead (61) and a rope (62) connected to each other. The bead (61) is fitted and snapped into the handle cavity (5), and the rope (62) extends upward from the bead (61).
8. The cushioning surrounding packaging structure according to claim 7, characterized in that, The bead (61) is spherical, the handle cavity (5) is a spherical cavity adapted to the bead (61), and the handle groove (15) is a semi-circular groove.
9. The cushioning surrounding packaging structure according to claim 7, characterized in that, The lifting bead (61) is square, the handle cavity (5) is a rectangular cavity adapted to the lifting bead (61), and the handle groove (15) is a rectangular groove.
10. The cushioning surrounding packaging structure according to claim 1, characterized in that, In use, the side wall of the honeycomb body (1) is provided with an annular protective groove (71), and an annular protective sleeve (7) is fitted inside the protective groove (71).