Transportation packaging structure capable of adapting to various assembly forms
By designing transport packaging structures that can adapt to various package configurations, and utilizing linings and limiting structures to protect products, the problems of insufficient protection and poor environmental performance in existing technologies have been solved, achieving an efficient and environmentally friendly packaging solution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI GUANGSHENG SYNTHETIC BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-04-21
AI Technical Summary
Existing transport packaging structures have limited protective functions when protecting high-value or large-capacity products, making them susceptible to damage or leakage due to impact or vibration. Furthermore, the use of large amounts of plastic cushioning materials is not environmentally friendly.
A transport packaging structure adaptable to various package configurations was designed. The outer box is divided into independent spaces by an inner lining structure, and protection is provided by a limiting structure and filler to reduce mutual compression deformation. Paper material is used instead of plastic cushioning material.
It improves transportation safety and packaging versatility, reduces supply chain costs, enhances environmental friendliness, extends the service life of the liner, and reduces the risk of product damage during transportation.
Smart Images

Figure CN224146695U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of packaging technology, specifically to a transport packaging structure that can adapt to various assembly forms. Background Technology
[0002] Transport packaging, also known as "outer packaging" or "bulk packaging," refers to the outer layer of packaging used to protect the quantity and quality of goods and facilitate transportation and storage. For daily necessities or cosmetics, existing packaging can be broadly categorized into two types. The first type involves wrapping cosmetics in flower boxes with bubble wrap or similar cushioning material and then placing them in a standard corrugated cardboard box. This method allows for flexible internal packaging and provides some protection, but the large volume of empty space in the cardboard box necessitates the use of numerous plastic gas-cushioned packing bags, which is environmentally unfriendly. The second type uses specialized courier boxes, typically tear-off boxes or corrugated cardboard boxes, for higher-value sets, with paper shreds used for decoration and cushioning. This type of packaging has limited protective capabilities and application scenarios. For larger products, it fails to provide adequate protection and, due to the larger remaining space, makes the product more susceptible to damage or leakage during transport from impacts or vibrations. Therefore, we propose a transport packaging structure that can adapt to various set configurations. Utility Model Content
[0003] To address the shortcomings of existing transport packaging structures that can adapt to various assembly forms, this utility model provides a transport packaging structure that can adapt to various assembly forms. It has the advantage of being able to divide the outer box into different spaces through its inner lining structure, with the movable range of each space limited to a certain range, making each space relatively independent, reducing the squeezing and deformation caused by drops and collisions, thereby achieving the purpose of transport protection for the products in each space, and solving the problems mentioned in the background art.
[0004] This utility model provides the following technical solution: a transport packaging structure that can adapt to various set forms, including an outer box and an inner liner. The inner liner is placed inside the outer box. A first filler is installed inside the outer box and on the side of the inner liner. A placement space is formed inside the inner liner. The product body is placed inside the placement space. A second filler is provided above the first filler to limit the top of the product body.
[0005] Preferably, the inner liner includes a base plate, a first limiting structure, a second limiting structure, a third limiting structure, and a fourth limiting structure. The first limiting structure is disposed on both sides of the base plate, the second limiting structure is fixedly connected to the top of the first limiting structure, the side of the second limiting structure is fitted to the inner wall of the outer box, and the base plate is fitted to the inside of the outer box.
[0006] Preferably, the number of optional ranges of the fourth limiting structure does not exceed four, the shape of the third limiting structure can be any shape such as square, circle, triangle, trapezoid, etc., the length of the second limiting structure and the third limiting structure is the same, and one side of the second limiting structure and the third limiting structure are both attached to the inner wall of the outer box.
[0007] Preferably, the first limiting structure has an easy-tear opening on its exterior, and a limiting sleeve is installed on the exterior of the first limiting structure at equal intervals between the two sets of easy-tear openings. A reinforcing plate is fixedly connected to one end of the limiting sleeve, and a reinforcing rib is movably sleeved inside the reinforcing plate. One end of the reinforcing rib is movably sleeved inside the limiting sleeve. Both the reinforcing plate and the reinforcing rib are installed on the exterior of the fourth limiting structure.
[0008] Preferably, the first filler is disposed on the side of the first limiting structure, and the first filler is clamped and installed between the second limiting structure and the third limiting structure.
[0009] Preferably, the first limiting structure, the second limiting structure, the third limiting structure and the fourth limiting structure are optional to be limited, the recess / protrusion height is selectable to be within the range of 0-100mm, the folding angle of the limiting structure is 0-180°, and the material of the outer box and the inner lining can be any paper material such as cardboard, grey board paper, kraft paper, corrugated paper, micro-corrugated paper, etc.
[0010] Compared with existing transport packaging structures that can adapt to various assembly forms, this utility model has the following advantages:
[0011] Beneficial effects:
[0012] 1. This transport packaging structure, which can adapt to various assembly forms, has an inner lining structure that can divide the outer box into different spaces. The movable range of each space is limited to a certain range, making each space relatively independent and reducing the squeezing and deformation caused by drops and collisions. This provides protection for the products in each space during transport. The inner lining paper has a high utilization rate and, while improving transport safety, also increases the versatility of the transport packaging, reduces the overall supply chain cost, and uses paper as the material, eliminating traditional plastic cushioning materials, making it more environmentally friendly.
[0013] 2. This transport packaging structure is adaptable to various assembly forms. After the inner lining is folded into a limiting device, the size of the fourth limiting structure can be adjusted according to the different structures of the product body. At the same time, after the fourth limiting structure is flipped, the reinforcing ribs extend and the ends of the reinforcing ribs are engaged inside the limiting sleeve. That is, the reinforcing ribs and the reinforcing plate reinforce the fourth limiting structure, preventing fatigue damage to the fourth limiting structure after repeated folding, thereby improving the service life of the inner lining. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the main structure of the present utility model;
[0015] Figure 2 This is an enlarged structural diagram of the inner lining of this utility model;
[0016] Figure 3 This is a top view of the inner lining structure of this utility model;
[0017] Figure 4 This is a front view structural diagram of the inner lining of this utility model;
[0018] Figure 5 This is a schematic diagram of the auxiliary reinforcement structure for the installation of the inner lining of this utility model;
[0019] Figure 6 This is an enlarged structural diagram of point A in this utility model.
[0020] In the diagram: 1. Outer box; 2. Inner lining; 21. Base plate; 22. First limiting structure; 23. Second limiting structure; 24. Third limiting structure; 25. Fourth limiting structure; 26. Easy-tear opening; 27. Reinforcing plate; 28. Reinforcing rib; 29. Limiting sleeve; 3. First filler; 4. Product body; 5. Second filler. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5This transport packaging structure is adaptable to various package configurations, including an outer box 1 and an inner liner 2. The inner liner 2 is placed inside the outer box 1. After placement, the inner liner 2 forms different structures depending on the shape of the first filler 3. Simultaneously, the inner liner 2 divides the interior of the outer box 1 into different spaces, each with a limited range of movement, making each space relatively independent and reducing deformation caused by drops or collisions. This provides protection for the products within each space during transport. The first filler 3 is installed inside the outer box 1 and on the side of the inner liner 2, positioned between the outer box 1 and the inner liner 2. The first filler 3 can reinforce the exterior of the inner liner 2. The inner liner 2 can be a whole, and the interior of the inner liner 2 forms a placement space. The product body 4 is placed inside the placement space. The space is formed on the inside of the inner liner 2. The state of the inner liner 2 can be adjusted according to the different shapes of the product body 4. At the same time, the product body 4 can be confined inside the space formed inside the inner liner 2 to ensure that product bodies 4 of different shapes can be placed inside the outer box 1. The upper part of the first filler 3 is provided with a second filler 5 to limit the top of the product body 4. The second filler 5 is set on the upper part of the inner liner 2 and controls the second filler 5 to reinforce the top of the product body 4, thereby providing cushioning and protection for the upper part of the product body 4.
[0023] Please see Figure 2 The inner liner 2 includes a base plate 21, a first limiting structure 22, a second limiting structure 23, a third limiting structure 24, and a fourth limiting structure 25. The first limiting structure 22 is located on both sides of the base plate 21. The second limiting structure 23 is fixedly connected to the top of the first limiting structure 22. The side of the second limiting structure 23 is fitted to the inner wall of the outer box 1. The base plate 21 is fitted to the inside of the outer box 1. The base plate 21 supports the bottom of the product body 4 inside the outer box 1. At the same time, according to the needs, the first limiting structure 22 can be flipped and the fourth limiting structure 25 can be adjusted inward. That is, the fourth limiting structure 25 divides the interior of the outer box 1 into different spaces, and the space can drive the position of the product body 4.
[0024] Please see Figure 2The number of optional ranges for the fourth limiting structure 25 is no more than four. The shape of the third limiting structure 24 can be any shape such as square, circle, triangle, trapezoid, etc. The lengths of the second limiting structure 23 and the third limiting structure 24 are the same. One side of the second limiting structure 23 and the third limiting structure 24 are attached to the inner wall of the outer box 1. The number of fourth limiting structures 25 is no more than four. That is, the position of the product body 4 can be limited according to the different shapes of the product body 4. The third limiting structure 24 and the second limiting structure 23 are attached to the inner side of the outer box 1, which can drive the product body 4 to move to the center position inside the outer box 1, reduce the squeezing deformation caused by falling and collision, and thus play the purpose of transportation protection for the products in each space.
[0025] Please see Figure 6 The first limiting structure 22 has an easy-tear opening 26 on its exterior. Limiting sleeves 29 are installed on the exterior of the first limiting structure 22 at equal intervals between the two sets of easy-tear openings 26. A reinforcing plate 27 is fixedly connected to one end of the limiting sleeve 29. A reinforcing rib 28 is movably sleeved inside the reinforcing plate 27, with one end of the reinforcing rib 28 movably sleeved inside the limiting sleeve 29. Both the reinforcing plate 27 and the reinforcing rib 28 are installed on the exterior of the fourth limiting structure 25. Depending on the shape of the product body 4, after adjusting the shape of the fourth limiting structure 25, the fourth limiting structure 25 flips inward and extends outward. The reinforcing rib 28 passes through the limiting sleeve 29. After the fourth limiting structure 25 is flipped, it can be reinforced to prevent fatigue damage to the fourth limiting structure 25 caused by multiple folds of the inner liner 2. This would prevent the inner liner 2 from being deformed and damaged under pressure when the product body 4 is subsequently limited. As a result, the inner liner 2 can be used multiple times, reducing its service life due to repeated folds and thus increasing its service life. At the same time, the reinforcing plate 27, the reinforcing rib 28 and the limiting sleeve 29 are attached to the outside of the first limiting structure 22 with glue, and can be freely installed or removed as needed.
[0026] Please see Figure 2 The first filler 3 is disposed on the side of the first limiting structure 22, and the first filler 3 is clamped and installed between the second limiting structure 23 and the third limiting structure 24. By installing the first filler 3 between the outer box 1 and the inner liner 2, the first filler 3 limits the position of the first limiting structure 22, ensuring that after the product body 4 is installed inside the first limiting structure 22, the first limiting structure 22 is prevented from moving outward, which would cause the position of the product body 4 to move, thereby improving its stability during use.
[0027] Please see Figure 2The first limiting structure 22, the second limiting structure 23, the third limiting structure 24 and the fourth limiting structure 25 can be selected as whether to limit, the recess / protrusion height can be selected within the range of 0-100mm, and the folding angle of the limiting structure is 0-180°. By adjusting the size and orientation of the limiting structure, the comprehensiveness and flexibility of use can be improved.
[0028] Please see Figure 1 The outer box 1 and inner lining 2 can be made of any paper material such as cardboard, grey board, kraft paper, corrugated paper, or micro-corrugated paper.
[0029] Working principle: During use, depending on the shape of the product body 4, the first limiting structure 22 is folded over. At the same time, depending on the width and height of the fourth limiting structure 25, the easy-tear opening 26 is removed, and the fourth limiting structure 25 is bent and folded inward. That is, the height and size of the limiting device formed by the fourth limiting structure 25 inside the first limiting structure 22 are adjusted. At the same time, the reinforcing rib 28 extends outward and passes through the inside of the limiting sleeve 29 to ensure the stability of the fourth limiting structure 25 after folding. Meanwhile, the inner liner 2 is placed inside the outer box 1. The inner liner 2 divides the interior of the outer box 1 into different spaces. The movable range of each space is limited to a certain range, making each space relatively independent and reducing the squeezing deformation caused by falling and collision. This provides transportation protection for the product in each space. The product body 4 is placed inside the inner liner 2, and the second filler 5 is placed on the top of the inner liner 2. The outer box 1 is sealed, and the product is then packaged.
[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. Transport packaging structure adaptable to a plurality of set forms, comprising an outer box (1) and an inner liner (2), characterized in that: The inner liner (2) is placed inside the outer box (1). A first filler (3) is installed inside the outer box (1) and on the side of the inner liner (2). A placement space is formed inside the inner liner (2). The product body (4) is placed inside the placement space. A second filler (5) is provided on the upper part of the first filler (3) to limit the top of the product body (4).
2. The transport packaging structure adaptable to multiple set formats according to claim 1, characterized in that: The inner lining (2) includes a base plate (21), a first limiting structure (22), a second limiting structure (23), a third limiting structure (24), and a fourth limiting structure (25). The first limiting structure (22) is disposed on both sides of the base plate (21). The second limiting structure (23) is fixedly connected to the top of the first limiting structure (22). The side of the second limiting structure (23) is fitted to the inner wall of the outer box (1). The base plate (21) is fitted to the inside of the outer box (1).
3. The transport packaging structure adaptable to multiple set formats according to claim 2, wherein: The number of optional ranges of the fourth limiting structure (25) is no more than four. The shape of the third limiting structure (24) can be any shape such as square, circle, triangle, trapezoid, etc. The lengths of the second limiting structure (23) and the third limiting structure (24) are the same. One side of the second limiting structure (23) and the third limiting structure (24) are attached to the inner wall of the outer box (1).
4. The transport packaging structure adaptable to multiple nest configurations of claim 2, wherein: The first limiting structure (22) has an easy-tear opening (26) on its outside. A limiting sleeve (29) is installed on the outside of the first limiting structure (22) and at equal intervals between the two sets of easy-tear openings (26). A reinforcing plate (27) is fixedly connected to one end of the limiting sleeve (29). A reinforcing rib (28) is movably sleeved inside the reinforcing plate (27). One end of the reinforcing rib (28) is movably sleeved inside the limiting sleeve (29). The reinforcing plate (27) and the reinforcing rib (28) are both installed on the outside of the fourth limiting structure (25).
5. The transport packaging structure adaptable to multiple nest configurations of claim 2, wherein: The first filler (3) is disposed on the side of the first limiting structure (22), and the first filler (3) is clamped and installed between the second limiting structure (23) and the third limiting structure (24).
6. The transport packaging structure adaptable to multiple nest configurations of claim 2, wherein: The first limiting structure (22), the second limiting structure (23), the third limiting structure (24) and the fourth limiting structure (25) can be selected to be limited or not. The height of the recess / protrusion can be selected in the range of 0-100mm, and the folding angle of the limiting structure is 0-180°.