Linkage type folding and spacing integrated box
By designing a linkage folding space integrated box, the main folding part, the secondary folding part and the partition structure are used to form a honeycomb partition cavity, which solves the problems of product easily crashed and damaged and anti-collision materials occupying space in traditional packaging methods, and achieves space saving, safe transportation and environmental protection effects.
Patent Information
- Application Number
- CN202422231806.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-11
AI Technical Summary
Existing packaging and transportation methods are prone to damage caused by collision during product transportation, and traditional anti-collision materials occupy space and are not environmentally friendly, making it difficult to effectively prevent product collisions.
A linkage type folding spacer integrated box is designed, and an integrated foldable structure is formed through the main folding part, the secondary folding part, the connecting part and the fixed part, and a honeycomb-shaped partition cavity is formed in combination with the partition structure to effectively prevent product collision.
This design greatly saves space, facilitates transportation and storage, reduces transportation and warehousing costs, ensures the stability and safety of products during transportation, reduces the consumption and waste of disposable packaging materials, and has environmental advantages.
Smart Images

Figure CN223031788U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of turnover appliances in the production process, and particularly refers to a linkage folding partition integrated box with simple disassembly and convenient storage. Background Art
[0002] In the current context of environmental protection and plastic reduction, the requirements for the sustainability of product packaging and transportation are increasing day by day. In traditional packaging and transportation methods, if products are directly placed in a packaging box, although the storage quantity of products in the packaging box can be ensured to a large extent, during transportation, the products are prone to collide with each other, resulting in product damage. In order to avoid damage caused by mutual collision between products, it is often necessary to set up a protective structure outside the products to ensure that each product will not be damaged by external forces. Currently, the simplest method is to wrap a layer of anti-collision material, such as bubble film, bubble bag, pearl cotton, etc. on the surface of the product. However, for products wrapped with anti-collision materials, if they are placed in a packaging box, these anti-collision materials greatly occupy the space inside the box, restricting the storage quantity of products. Moreover, due to the small surface friction of these anti-collision materials, they are prone to scatter when stored in the packaging box, which is not conducive to the neat placement of products in the packaging box.
[0003] In order to neatly place products and prevent collisions, cavities are also processed on anti-collision materials such as foam or pearl cotton according to the shape of the products. These cavities are used to store products to achieve the effect of product anti-collision. However, in this way, the partition structure between the cavities needs to ensure a certain thickness. Otherwise, when the packaging is subjected to external forces, the partition structure between the cavities is easily damaged due to the external forces, thereby affecting the anti-collision effect between products.
[0004] In addition, no matter which of the above methods is adopted, the anti-collision materials used are mostly plastic products, which are difficult to degrade and are not conducive to environmental protection. Summary of the Invention
[0005] The purpose of the utility model is to overcome the deficiencies in the prior art and provide a linkage folding partition integrated box. This integrated box greatly saves space, facilitates the transportation and storage of the utility model, effectively reduces transportation and warehousing costs; can make full use of the space inside the box, make the products stored neatly and orderly, ensure the storage quantity of products to the greatest extent, and also ensure the stability and safety of products during transportation, effectively prevent mutual collision between products, and avoid product damage; moreover, it does not require cleaning and maintenance, can be recycled, greatly reduces the consumption and waste of disposable packaging materials, and is more conducive to environmental protection.
[0006] To achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A linkage folding partition integrated box, comprising a box body and a partition structure. The box body includes at least two interconnected main folding parts, secondary folding parts respectively arranged on both sides of each main folding part, connecting parts respectively arranged at one end of each outermost main folding part, and at least one fixing part respectively arranged at both ends of each connecting part. Each fixing part is used to buckle on the nearest main folding part. The partition structure includes at least two partition units. Each partition unit includes at least two unfolding parts, a connecting part connected between the two unfolding parts, and an adhesive part respectively arranged at at least one end of each unfolding part. The two partition units are respectively connected by the adhesive parts at the corresponding ends. The outermost partition units on both sides of the partition structure are respectively connected to the corresponding connecting parts on the respective sides through the connecting parts. Each of the main folding parts, secondary folding parts, connecting parts, and partition units forms a linkage structure.
[0008] Each of the main folding parts, secondary folding parts, connecting parts, and fixing parts is an integrally foldable structure, and the main folding parts, secondary folding parts, connecting parts, and fixing parts are respectively arranged symmetrically in equal numbers.
[0009] When the box body is unfolded, each of the main folding parts forms the bottom plate of the box body. When the box body is unfolded, the secondary folding parts arranged on the same side form the front end plate or the rear end plate of the box body. When the box body is unfolded, each of the connecting parts serves as the left side plate or the right side plate of the box body. When the box body is unfolded, the partition structure unfolds together with the connected connecting parts to form at least one partition cavity.
[0010] One end of each fixing part is respectively provided with a buckle part, and at least one buckle hole is respectively provided on each main folding part close to the corresponding fixing part. Each buckle part is respectively buckled in the corresponding buckle hole; the number of buckle holes of each main folding part is respectively consistent with the number of the corresponding connected buckle parts.
[0011] Each of the unfolding parts, connecting parts, and adhesive parts of the partition unit is an integral structure, and the two partition units are arranged symmetrically in groups. When each group of two partition units is unfolded, the symmetrically arranged unfolding parts and connecting parts form a partition cavity; among them, the partition units respectively closest to each connecting part are respectively fixedly connected to the corresponding connecting parts on the respective sides through the connecting parts.
[0012] When each group of two partition units forms more than two partition cavities, a group of adhesive parts is shared between each adjacent partition cavity.
[0013] When the groups of two partition units are connected, the unfolding parts sharing a group of adhesive parts form a partition cavity.
[0014] The groups of two partition units are connected by the adjacent adhesive parts, so that the groups of two partition units form a linkage structure. When the partition structure is unfolded, more than two partition cavities are formed.
[0015] The beneficial effects of the present utility model are as follows: The box body forms an integral folding structure through the main folding part, the secondary folding part, the connecting part and the fixing part. Then, in cooperation with the respective connecting parts being connected to the partition units on both sides of the partition structure, the box body and the partition part form a linkage folding structure. The partition units of each monomer are connected through the respective bonding parts to form a folding and unfolding structure in groups. Then, in cooperation with the connecting parts between the respective partition units of each group being connected, a partition structure that can be unfolded in linkage is formed. When the partition structure is unfolded, two unfolding parts symmetrically arranged between the partition units of each monomer and the connecting parts or bonding parts between them respectively form partition cavities, and each partition cavity forms a honeycomb structure. Each partition cavity can effectively space and protect each product.
[0016] In the unused state, the box body and the partition structure are in a folded state, greatly saving space, facilitating the transportation and storage of the present utility model, and effectively reducing transportation and warehousing costs. When in use, only need to pull the connecting parts on both sides outwards to unfold, driving the unfolding parts and the connecting parts of each partition unit of the partition structure to unfold in opposite directions respectively, then partition cavities can be easily formed in the box body. Then, buckle the buckles of each fixing part into the corresponding buckle holes, and the present utility model can be easily unfolded and fixed. Subsequently, place each product into each partition cavity, and it is easy and convenient to use. Moreover, these partition cavities provide storage space for small products (such as small parts), which can not only make full use of the space inside the box body, make the products stored neatly and orderly, ensure the storage quantity of products to the greatest extent, but also ensure the stability and safety of the products during transportation, effectively prevent the products from colliding with each other, and avoid product damage.
[0017] In addition, after the present utility model completes one transportation task, it can be recycled without cleaning and maintenance, greatly reducing the consumption and waste of disposable packaging materials, and being more conducive to environmental protection. Description of the Drawings
[0018] Figure 1 is the three-dimensional structure schematic diagram of the present utility model.
[0019] Figure 2 is the three-dimensional structure schematic diagram of the box body of the present utility model.
[0020] Figure 3 is the exploded structure schematic diagram of the partition structure of the present utility model.
[0021] Figure 4 is the top view structure schematic diagram of the partition structure of the present utility model.
[0022] Figure 5 is the three-dimensional structure schematic diagram of the semi-folded state of the present utility model.
[0023] Explanation of the Reference Numerals in the Drawings:
[0024] 1-box body; 11-main folding part; 111-button hole; 12-secondary folding part; 13-connecting part; 14-fixing part; 141-buckle part; 1a-folding line; 1b-incision; 2-partition structure; 21-partition unit; 211-unfolding part; 212-connecting part; 213-adhesive part; 2a-partition cavity. DETAILED DESCRIPTION
[0025] The utility model is further described below in conjunction with the accompanying drawings:
[0026] like Figures 1-5 As shown, the utility model relates to a linkage folding partition integrated box, comprising a box body 1 and a partition structure 2, the box body 1 comprises at least two mutually connected main folding parts 11, secondary folding parts 12 respectively arranged on both sides of each main folding part 11, connecting parts 13 respectively arranged at one end of each outermost main folding part 11 and at least one fixing part 14 respectively arranged at both ends of each connecting part 13, each fixing part 14 is used to buckle on the closest main folding part 11, the partition structure 2 comprises at least two partition units 21, each partition The unit 21 includes at least two unfolding parts 211, a connecting part 212 connected between the two unfolding parts 211, and an adhesive part 213 respectively provided at at least one end of each unfolding part 211. The two separation units 21 are connected to each other through the adhesive parts 213 at the corresponding ends. The outermost separation units 21 on both sides of the separation structure 2 are connected to the connecting part 13 on the corresponding side through the connecting part 212. The main folding part 11, the secondary folding part 12, the connecting part 13, and the separation unit 21 constitute a linkage structure.
[0027] like Figure 1 , 2 As shown in Figures 5 and 6, each main folding part 11, secondary folding part 12, connecting part 13 and fixing part 14 is an integrated foldable structure, and each of the main folding parts 11, secondary folding parts 12, connecting part 13 and fixing part 14 is symmetrically arranged in equal numbers, wherein fold lines 1a are respectively arranged between each of the main folding parts 11, between each of the secondary folding parts 12, between each of the main folding parts 11 and the corresponding secondary folding part 12, between each of the main folding parts 11 and the corresponding connecting part 13, and between each of the connecting parts 13 and the corresponding fixing part 14, and the arrangement of each of the fold lines 1a facilitates the folding and unfolding of each of the main folding parts 11, the secondary folding parts 12, the connecting part 13 and the fixing part 14.
[0028] like Figures 1-5As shown, when the main folding parts 11 are unfolded, they form the bottom plate of the box body 1. When the box body 1 is unfolded, the secondary folding parts 12 on the same side form the front end plate or the rear end plate of the box body 1. When the box body 1 is unfolded, the connecting parts 13 serve as the left side plate or the right side plate of the box body 1. When the box body 1 is unfolded, the partition structure 2 is unfolded together with the connected connecting parts 13 to form at least one partition cavity 2a; when there are exactly two main folding parts 11, when the present utility model is folded, the box body 1 is in a V-shaped state; when the main folding parts 11 include four pieces, when the present utility model is folded, the box body 1 is in a V-shaped or W-shaped state; the number of the main folding parts 11 can be configured according to the actual structural design requirements of the product and is not limited herein.
[0029] As Figure 1 , 2 , as shown in FIGS. 5, one end of each fixing part 14 is respectively provided with a buckle part 141, and at least one buckle hole 111 is respectively provided on each main folding part 11 close to the corresponding fixing part 14. Each buckle part 141 is respectively buckled in the corresponding buckle hole 111; the number of the buckle holes 111 of each main folding part 11 is respectively consistent with the number of the corresponding buckle parts 141 connected thereto; wherein, both sides of the connection part of each buckle part 141 and the corresponding fixing part 14 are respectively provided with incisions 1b, and the distance between the two incisions 1b on the same fixing part 14 matches the height of the corresponding buckle hole 111, so that when each buckle part 141 is buckled in the corresponding buckle hole 111, the connection part of each fixing part 14 and the buckle part 141 can better adhere to the corresponding buckle hole 111, making the structure of the assembled box body 1 more stable.
[0030] As Figure 1 , 3 , as shown in FIGS. 4, 5, the unfolding parts 211, the connecting parts 212 and the bonding parts 213 of each partition unit 21 are of an integral structure. Each two partition units 21 are symmetrically arranged in groups. When each group of two partition units 21 is unfolded, the symmetrically arranged unfolding parts 211 and the connecting parts 212 form a partition cavity 2a; wherein, the partition units 21 closest to each connecting part 13 are respectively fixedly connected to the corresponding connecting part 13 on the corresponding side through the connecting parts 212, so that each connecting part 13 and the partition structure 2 form a linkage structure.
[0031] As Figure 1 , 3 , as shown in FIGS. 4, 5, when each group of two partition units 21 forms two or more partition cavities 2a, a group of bonding parts 213 is shared between adjacent partition cavities 2a.
[0032] As Figure 1 , 3 , as shown in FIGS. 4, 5, when each group of two partition units 21 is connected, the unfolding parts 211 sharing a group of bonding parts 213 form a partition cavity 2a.
[0033] As shown Figure 1 , 3 , as shown in Figures 4 and 5, between the second separation units 21 of each group are connected through the adjacent bonding parts 213, so that the second separation units 21 of each group form a linkage structure. When the separation structure 2 is unfolded, more than two separation cavities 2a are formed.
[0034] The utility model discloses a linkage folding and separating integrated box. Between the separation units 21 and between the separation unit 21 and the corresponding connecting part 13, preferably, an adhesive bonding method is adopted for connection, and methods such as sealing nails and rivets can also be adopted for connection. The connection method between each of the separation units 21 or between the separation unit 21 and the connecting part 13 can be selected according to the assembly requirements of the product structure and the cost control of product production, and is not limited herein; the setting of the separation cavities 2a in the separation structure 2 provides independent storage spaces for each single part, and can effectively prevent the single parts from colliding with each other during transportation, distribution, storage, circulation processing and other links, ensuring the integrity of each single part.
[0035] Before the first use at least, the utility model is in a folded state; when in use, only the connecting parts 13 on both sides need to be unfolded outwards respectively, so that each main folding part 11 is gradually unfolded into a plane, and the connecting parts 13 and the corresponding main folding parts 11 connected thereto are arranged perpendicular to each other; at this time, since the separation structure 2 and the connecting parts 13 are in a linkage structure, the unfolding parts 211 and the connecting parts 212 in each separation unit 21 of the separation structure 2 are unfolded towards each other respectively, and at least one separation cavity 2a is respectively formed between the two separation units 21 in the same group and between the adjacent two separation units 21 of each group; then, the auxiliary folding parts 12 on both sides of each main folding part 11 are folded towards the middle respectively, so that each auxiliary folding part 12 and the corresponding main folding part 11 are perpendicular to each other. Subsequently, the fixing parts 14 on both sides of each connecting part 13 are folded towards the buckle holes 111 on the same side respectively, and each buckle is buckled into the corresponding buckle hole 111, and the assembly of the utility model is completed for storing parts.
[0036] When it is necessary to store the utility model, only the buckles need to be taken out from the corresponding buckle holes 111, then the auxiliary folding parts 12 are respectively unfolded on the corresponding main folding parts 11, and at least the two main folding parts 11 are folded in half, so that the connecting parts 13 can approach each other oppositely, and the separation units 21 of the separation structure 2 are pressed, so that the unfolding parts 211 and the connecting parts 212 facing each other between the separation units 21 gradually approach each other, and then the utility model is folded, so that the utility model is changed from an unfolded three-dimensional structure to a relatively flat three-dimensional structure for easy daily storage.
[0037] It should be noted that in the description of the present utility model, the orientation or positional relationship indicated by terms such as "one end", "one of the ends", "outermost", "both ends", "both sides" or "corresponding side" is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "main" and "sub" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. Unless otherwise clearly specified and defined, terms such as "installed", "provided with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0038] The above description is only a preferred embodiment of the present utility model, and does not limit the scope of the present utility model. Therefore, without departing from the design spirit of the present utility model, any equivalent changes or decorations made by those of ordinary engineering and technical personnel in the art to the structure, features and principles described in the present utility model shall fall within the protection scope of the patent application of the present utility model.
Claims
1. A linkage folding partition integrated box, comprising a box body and a partition structure, characterized in that: The box body includes at least two main folding parts connected to each other, auxiliary folding parts respectively arranged on both sides of each main folding part, connecting parts respectively arranged at one end of each outermost main folding part and at least one fixing part respectively arranged at both ends of each connecting part, each fixing part is used to buckle on the closest main folding part, and the partition structure includes at least two partition units, each partition unit includes at least two unfolding parts, a connecting part connected between the two unfolding parts and an adhesive part respectively arranged at at least one end of each unfolding part, each of the two partition units is connected by the adhesive part at the corresponding end, and the outermost partition units on both sides of the partition structure are connected to the connecting part of the corresponding side by the connecting part, and each of the main folding part, the auxiliary folding part, the connecting part and the partition unit constitute a linkage structure.
2. The linkage folding spacer integrated box according to claim 1, characterized in that: The main folding parts, the auxiliary folding parts, the connecting parts and the fixing parts are an integrated foldable structure, and the main folding parts, the auxiliary folding parts, the connecting parts and the fixing parts are respectively and symmetrically arranged in equal numbers.
3. The linkage folding spacer integrated box according to claim 1, characterized in that: When the box body is unfolded, each main folding part constitutes the bottom plate of the box body. When the box body is unfolded, each secondary folding part arranged on the same side constitutes the front end plate or the rear end plate of the box body. When the box body is unfolded, each connecting part serves as the left side plate or the right side plate of the box body. When the box body is unfolded, the partition structure unfolds together with the connected connecting parts to form at least one partition cavity.
4. The linkage folding spacer integrated box according to claim 1, characterized in that: A buckle portion is provided at one end of each fixing portion, and at least one buckle hole is provided on each main folding portion close to the corresponding fixing portion, and each buckle portion is buckled into the corresponding buckle hole; the number of buckle holes on each main folding portion is consistent with the number of correspondingly connected buckle portions.
5. The linkage folding spacer integrated box according to claim 3, characterized in that: The unfolding parts, connecting parts and bonding parts of the separation units are an integrated structure, and each two separation units are symmetrically arranged in groups. When each group of two separation units is unfolded, the symmetrically arranged unfolding parts and connecting parts constitute a separation cavity; wherein the separation units closest to each connecting part are fixedly connected to the connecting part on the corresponding side through the connecting parts.
6. The linkage folding spacer integrated box according to claim 5, characterized in that: When each group of two partition units constitutes more than two partition chambers, adjacent partition chambers share a group of bonding parts.
7. The linkage folding spacer integrated box according to claim 6, characterized in that: When the two separation units in each group are connected, the expansion parts that share a group of adhesive parts form a separation cavity.
8. The linked folding spacer integrated box according to claim 5, characterized in that: The two separation units in each group are connected via adjacent bonding portions, so that the two separation units in each group form a linkage structure. When the separation structure is unfolded, more than two separation chambers are formed.