Plastic hollow plate logistics turnover box
The logistics turnover box, made of plastic hollow board material and designed with slots, inserts, and ball bearings, solves the problems of traditional turnover boxes being prone to corrosion, heavy, and having low space utilization. It achieves convenient assembly, stable connection, and strong waterproofness, meeting the needs of the logistics industry for efficiency and convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN WEIHANG PLASTIC PROD CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-04-17
AI Technical Summary
Existing logistics turnover box materials suffer from problems such as easy corrosion, heavy weight, high cost, low space utilization, and poor waterproofing, making it difficult to meet the logistics industry's needs for efficiency, convenience, and environmental protection.
Made of hollow plastic board, it features a slot, insert, and ball bearing structure for easy assembly and secure connection, adjustable storage space, and enhanced waterproofing.
It achieves convenient assembly, stable structure, flexible space utilization and strong waterproof performance, extends service life, reduces operating costs and adapts to diverse logistics and storage needs.
Smart Images

Figure CN224131583U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of logistics turnover box technology, specifically a plastic hollow board logistics turnover box. Background Technology
[0002] In today's rapidly developing logistics industry, logistics turnover boxes serve as a crucial carrier in the storage, handling, and transportation of goods, and their performance directly impacts logistics efficiency and cost control. Traditional logistics turnover boxes have revealed numerous problems in practical applications, urgently requiring improvement. Early logistics turnover boxes were primarily made of wood. While wood possesses a certain strength and workability, it also has significant drawbacks. On one hand, wood is susceptible to humidity, easily molding and rotting in damp environments, shortening the lifespan of the turnover boxes; on the other hand, frequent use leads to wear and cracking, affecting the safe transportation of goods. Furthermore, the large-scale logging for turnover box production contradicts the concept of sustainable development and exacerbates the depletion of natural resources. With advancements in industrial technology, metal turnover boxes began to emerge. Metal turnover boxes offer significant improvements in strength and durability, capable of withstanding greater weight and harsher handling conditions. However, their excessive weight not only increases energy consumption during transportation but also places higher demands on the physical strength of handling personnel, increasing labor costs and intensity. Meanwhile, metal turnover boxes are expensive to manufacture and prone to rusting due to corrosion during long-term use, affecting their performance and appearance, and maintenance costs are also considerable. Ordinary plastic turnover boxes have also been widely used in the logistics field. While these boxes possess a certain degree of flexibility and water resistance, and are relatively inexpensive, they are lacking in strength and stability. They are easily deformed when handling and transporting heavy objects, failing to provide reliable protection for goods. Moreover, the spatial layout of ordinary plastic turnover boxes is often fixed, making it difficult to flexibly adjust to different sizes and shapes of goods, resulting in low space utilization and failing to meet diverse logistics storage needs.
[0003] Due to its unique performance advantages, hollow plastic sheeting has gradually become an ideal material for manufacturing logistics turnover boxes. However, current logistics turnover boxes based on hollow plastic sheeting still have shortcomings in terms of structural design, assembly methods, space utilization, and waterproofing, making it difficult to fully utilize the advantages of hollow plastic sheeting and failing to meet the development trends of efficiency, convenience, and environmental protection in the logistics industry. Therefore, those skilled in the art have provided a hollow plastic sheeting logistics turnover box to solve the problems mentioned in the background art. Utility Model Content
[0004] The purpose of this utility model is to provide a plastic hollow board logistics turnover box to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A plastic hollow board logistics turnover box includes a box bottom, left and right box walls, front and rear box walls, transverse partitions, longitudinal partitions, and insert bodies. Left and right box walls are provided above the left and right ends of the box bottom, and front and rear box walls are provided above the front and rear ends of the box bottom. Several transverse partitions are provided between the left and right box walls, and several longitudinal partitions are provided between the front and rear box walls. The transverse partitions and longitudinal partitions are slidably connected together. Insert bodies are provided at the four corners of the box bottom, and each insert body has an insertion groove. The corners of the box bottom and the junctions of the left and right box walls and the front and rear box walls are inserted into the insertion grooves. Two protruding blocks are fixedly connected to the insert body. A groove is provided around the four sides of the box bottom.
[0007] As a further embodiment of this utility model: two grooves, one in front and one in back, are provided on the side opposite to the left and right rolling grooves on the left and right box walls, and two grooves, one in front and one in back, are provided on the side opposite to the front and back rolling grooves on the front and back box walls, wherein a protruding block is inserted into groove one, groove two and groove three.
[0008] As a further embodiment of this utility model: the upper end of the bottom of the box is provided with two front and rear slots and two left and right slots. The lower ends of the left and right boxes are fixedly connected with left and right inserts, wherein the left and right inserts are inserted into the left and right slots. The lower ends of the front and rear boxes are fixedly connected with front and rear inserts, wherein the front and rear inserts are inserted into the front and rear slots.
[0009] As a further improvement of this utility model: left and right rolling grooves are provided on one side of the left and right box walls, and transverse balls are rotatably connected to both ends of the transverse partition, wherein the transverse balls roll in the left and right rolling grooves.
[0010] As a further improvement of this utility model: front and rear rolling grooves are provided on one side of the front and rear boxes, and longitudinal balls are rotatably connected to both ends of the longitudinal partition, wherein the longitudinal balls roll in the front and rear rolling grooves, and handles are rotatably connected to one side of the left and right boxes where the second groove is provided.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] 1. Easy assembly: The various parts of the turnover box are connected by slots, blocks and inserts. No complicated tools are needed. Assembly can be completed by inserting them according to the corresponding structure, which reduces the difficulty of installation and saves manpower and time costs.
[0013] 2. Sturdy and durable structure: The box walls and bottom are initially fixed by the insert slots, and the insert body further strengthens the corner connection. The protruding blocks and multiple grooves fit tightly to form a stable structure that can withstand collisions and squeezing during logistics transportation. It is not easily damaged, which extends the service life of the turnover box and reduces the company's operating costs.
[0014] 3. Flexible space utilization: The horizontal and vertical partitions slide in the rolling groove with the help of ball bearings, and the spacing can be freely adjusted. The storage space layout can be flexibly changed according to the size and shape of different items. Whether it is small parts or large items, they can be stored reasonably, which greatly improves the space utilization rate and meets the diverse logistics storage needs.
[0015] 4. Waterproof properties: The insert body not only enhances the stability of the connection, but also improves the sealing of the connection between the bottom and the wall of the box, and has a certain waterproof capability. In the logistics environment where there is moisture or liquid splashing, it can effectively protect the items inside the box from water corrosion, thus expanding the applicable scenarios of the turnover box. Attached Figure Description
[0016] Figure 1 This is a structural diagram of a plastic hollow board logistics turnover box.
[0017] Figure 2 This is a schematic diagram of the bottom and left and right rolling grooves of a plastic hollow board logistics turnover box.
[0018] Figure 3 This is a schematic diagram of the left and right walls and handles of a plastic hollow board logistics turnover box.
[0019] Figure 4 This is a schematic diagram of the insert body and insert slot in a plastic hollow board logistics turnover box.
[0020] Figure 5 This is a schematic diagram of the transverse and longitudinal partitions in a plastic hollow board logistics turnover box.
[0021] In the diagram: 1. Box bottom; 101. Front and rear slots; 102. Left and right slots; 103. Groove one; 2. Left and right box walls; 201. Left and right insert blocks; 202. Left and right rolling grooves; 203. Handle; 204. Groove two; 3. Front and rear box walls; 301. Front and rear rolling grooves; 4. Insert body; 401. Protruding block; 402. Insert groove; 5. Horizontal partition; 501. Horizontal ball bearing; 6. Vertical partition; 601. Vertical ball bearing. Detailed Implementation
[0022] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0023] Please see Figures 1-5In this embodiment of the utility model, a plastic hollow board logistics turnover box includes a box bottom 1, left and right box walls 2, front and rear box walls 3, transverse partitions 5, longitudinal partitions 6, and an insert body 4. Left and right box walls 2 are provided above the left and right ends of the box bottom 1, and front and rear box walls 3 are provided above the front and rear ends of the box bottom. A plurality of transverse partitions 5 are provided between the left and right box walls 2, and a plurality of longitudinal partitions 6 are provided between the front and rear box walls 3. The transverse partitions 5 and the longitudinal partitions 6 are slidably connected together. At each of the four corners of the bottom 1, there is an insert body 4, and each insert body 4 has an insertion slot 402. The corners of the bottom 1 and the junctions of the left and right boxes 2 and the front and rear boxes 3 are all inserted into the insertion slots 402. Two protruding blocks 401 are fixedly connected to the insert body 4. The bottom 1 has a groove 103 around its perimeter. The left and right boxes 2 have two grooves 204 on the opposite side of the left and right rolling grooves 202. The front and rear boxes 3 have grooves 204 on the opposite side of the front and rear rolling grooves 301. The side has two grooves 103 on the left and right, with protruding blocks 401 inserted into groove 103, groove 204 and groove 3. The top of the bottom 1 has two front and rear slots 101 and two left and right slots 102. The lower ends of the left and right boxes 2 are fixedly connected with left and right inserts 201, which are inserted into the left and right slots 102. The lower ends of the front and rear boxes 3 are fixedly connected with front and rear inserts, which are inserted into the front and rear slots 101. The left and right boxes 2 have left and right rolling grooves 202 on one side. The left and right ends of the transverse partition 5 are rotatably connected with transverse balls 501, which roll in the left and right rolling grooves 202. The front and rear boxes 3 have front and rear rolling grooves 301 on one side. The front and rear ends of the longitudinal partition 6 are rotatably connected with longitudinal balls 601, which roll in the front and rear rolling grooves 301. The left and right boxes 2 have handles 203 rotatably connected to the side with groove 204.
[0024] The working principle of this utility model is as follows: During installation, the transverse partition 5 is first placed between the left and right box walls 2, ensuring that the transverse balls 501 at both ends of the transverse partition 5 fall into the left and right rolling grooves 202 on one side of the left and right box walls 2. At this time, the transverse balls 501 can roll in the rolling grooves, completing the installation and positioning of the transverse partition 5. Similarly, the longitudinal partition 6 is placed between the front and rear box walls 3, so that the longitudinal balls 601 at both ends of the longitudinal partition 6 fall into the front and rear rolling grooves 301 on one side of the front and rear box walls 3, realizing the installation and positioning of the longitudinal partition 6. Then, the left and right box walls 2 and the front and rear box walls 3 are placed on the box bottom 1 at the same time. The left and right inserts 201 at the lower end of the left and right box walls 2 are inserted into the left and right slots 102 at the upper end of the box bottom 1, and the front and rear inserts at the lower end of the front and rear box walls 3 are inserted into the box bottom 1. The left and right box walls 2 and the front and rear box walls 3 are initially fixed to the box bottom 1 in the slots 101 at the end. Then, the insert body 4 is installed from the four corners below the box bottom 1, so that the corners of the box bottom 1 and the junctions of the left and right box walls 2 and the front and rear box walls 3 are inserted into the insertion slots 402 of the insert body 4. At the same time, the protrusions 401 on the insert body 4 are inserted into the grooves 103 of the box bottom 1, the grooves 204 of the left and right box walls 2 and the grooves 3 of the front and rear box walls 3, further enhancing the connection stability between the components. The insert body can also improve the sealing of the connection between the box bottom 1, the left and right box walls 2 and the front and rear box walls 3, and enhance its waterproof ability. In addition, by moving the horizontal partition 5 and the vertical partition 6, the distance between the partitions can be adjusted, thereby adjusting the size of the compartments to suit items of different sizes.
[0025] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style 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 embodiments that can be understood by those skilled in the art.
Claims
1. A plastic hollow plate logistics turnover box comprising a box bottom (1), left and right box walls (2), front and rear box walls (3), a transverse partition (5), a longitudinal partition (6) and a plug-in body (4), characterized in that, The bottom of the box (1) is provided with left and right box walls (2) on the upper left and right sides, and front and rear box walls (3) on the upper front and rear sides. Several horizontal partitions (5) are provided between the left and right box walls (2), and several vertical partitions (6) are provided between the front and rear box walls (3). The horizontal partitions (5) and the vertical partitions (6) are slidably connected together. Inserts (4) are provided at the four corners of the bottom of the box (1).
2. A plastic hollow board shipping pallet according to claim 1 wherein, Each insert body (4) is provided with an insert groove (402), and the corners of the bottom (1) and the junctions of the left and right boxes (2) and the front and rear boxes (3) are all inserted into the insert groove (402).
3. A plastic hollow board shipping pallet according to claim 1 wherein, The insert (4) is fixedly connected with two protruding blocks (401) on the left and right sides, and the bottom (1) of the box is provided with a groove (103) around its perimeter.
4. A plastic hollow board shipping pallet according to claim 1 wherein, The left and right box walls (2) are provided with two grooves (204) on the opposite side of the left and right rolling grooves (202), and the front and rear box walls (3) are provided with two grooves (3) on the opposite side of the front and rear rolling grooves (301). The protruding block (401) is inserted into the grooves (103), (204) and (3).
5. A plastic hollow board shipping pallet according to claim 1 wherein, The bottom of the box (1) is provided with two front and rear slots (101) and two left and right slots (102) at the top. The bottom of the left and right boxes (2) is fixedly connected with left and right inserts (201), which are inserted into the left and right slots (102).
6. A plastic hollow board shipping pallet according to claim 1 wherein, The lower ends of the front and rear box walls (3) are fixedly connected with front and rear insert blocks, which are inserted into the front and rear slots (101).
7. A plastic hollow board shipping pallet according to claim 1 wherein, The left and right box walls (2) are provided with left and right rolling grooves (202) on one side, and the left and right ends of the transverse partition (5) are rotatably connected with transverse balls (501).
8. A plastic hollow board shipping pallet according to claim 1 wherein, The front and rear box walls (3) are provided with front and rear rolling grooves (301) on one side, and the longitudinal partition (6) is rotatably connected to longitudinal balls (601) at both ends.
9. A plastic hollow board shipping pallet according to claim 1 wherein, A handle (203) is rotatably connected to one side of the groove two (204) on the left and right box walls (2).