Unmanned aerial vehicle packaging box

By designing a foldable drone packaging box, the problems of limited transport capacity and inconvenient assembly in existing technologies have been solved, realizing convenient drone packaging and transportation and meeting the needs of the public.

CN224159728UActive Publication Date: 2026-04-24WENZHOU HUAHUA PRINTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU HUAHUA PRINTING CO LTD
Filing Date
2025-06-10
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing drone packaging boxes have a "square" structure that affects the amount of cargo that can be transported, and the assembly process is cumbersome, making them inconvenient to use.

Method used

A drone packaging box was designed, including an outer box and an inner box. The outer box consists of a base plate, a cover plate, a vertical plate, and a fixing plate. The inner box consists of first and second inner box components. The drone is reliably packaged and conveniently transported by folding the connecting plate and flattening the inner box. The inner box and the outer box are connected by the connecting plate, and the arm cavity is in close contact with the drone arm for friction and limiting.

Benefits of technology

The design achieves the goal of ensuring that the drone packaging box does not affect the transport volume during transportation, while being convenient to use and store, simple in structure, low in cost, and meeting the needs of most people.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224159728U_ABST
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Abstract

The unmanned aerial vehicle packaging box comprises an outer box and an inner box, the outer box comprises a bottom plate, a cover plate, a left vertical plate, a right vertical plate, a rear vertical plate, a front vertical plate and a fixing plate, a first connecting plate and a second connecting plate are formed on the left vertical plate and the right vertical plate respectively, the inner box comprises a first inner box component and a second inner box component, and the first inner box component is connected to the left vertical plate and the bottom plate. The second inner box component is connected to the right vertical plate and the bottom plate, a main body cavity is formed between the first inner box component and the second inner box component, and the first inner box component and the second inner box component are each provided with an arm cavity, so that through the unmanned aerial vehicle packaging box, reliable packaging and limiting of an unmanned aerial vehicle can be achieved, and when transportation or storage is needed, the unmanned aerial vehicle can be transported or stored through the first connecting plate and the second connecting plate. The left vertical plate and the right vertical plate can be folded towards the direction of the bottom plate, transportation and storage are convenient and reliable, the transportation amount cannot be affected due to the storage problem, the structure is simple, the manufacturing cost is low, the price cannot be too high even if the goods shelf is pushed out of the market in the later period, and the use requirements of most people can be met.
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Description

Technical Field

[0001] This utility model relates to the field of packaging technology, and in particular to a drone packaging box. Background Technology

[0002] Currently, the boxes used for drone packaging on the market usually fall into two categories: more sophisticated packaging (i.e., packaging boxes are generally more expensive) and packaging suitable for most people (i.e., packaging boxes are generally affordable for the average person). Packaging boxes suitable for most people typically consist of an outer box and an inner liner. The outer box is usually made of corrugated cardboard, while the inner liner is usually made of biodegradable foam or pulp. Regardless of whether the inner liner is made of biodegradable foam or pulp, the formed inner liner usually involves a cavity that fits into the outer perimeter of the drone.

[0003] Existing packaging boxes suitable for most people typically consist of two separate parts: the outer box and the inner lining. After production, during transportation, they generally come in two forms: pre-assembled boxes (where the outer box and inner lining are combined to form a square box) or separate, unassembled outer boxes and inner linings. However, in practice, pre-assembled boxes, due to their square shape, significantly reduce transportable volume. Furthermore, the stacking of these square boxes can cause deformation of the lower boxes. Unassembled outer boxes and inner linings, on the other hand, require reassembly each time they are used after delivery. To prevent the inner lining from falling out, the assembly process is often cumbersome, leading to inconvenience. Summary of the Invention

[0004] In view of the above shortcomings, this utility model provides a drone packaging box that can meet the requirements of most people, without affecting the transportation volume due to unreliable structure.

[0005] To achieve the above objectives, this utility model employs a drone packaging box, comprising an outer box and an inner box. The outer box includes a base plate, a cover plate, a left upright plate and a right upright plate connected to the base plate, a rear upright plate connected between the base plate and the cover plate, a front upright plate connected to the base plate and away from the rear upright plate, and a fixing plate distributed on the side of the cover plate relative to the side away from the rear upright plate. A first connecting plate is formed on the left upright plate and the right upright plate on the side facing the rear upright plate, and the first connecting plate is connected to the rear upright plate. A second connecting plate is formed on the left upright plate and the right upright plate on the side facing the front upright plate, and the second connecting plate is connected to the front upright plate.

[0006] The inner box includes a first inner box component and a second inner box component distributed on one side of the first inner box component. The bottom of the first inner box component is connected to the bottom plate, and the side of the first inner box component that is away from the second inner box component is connected to the left upright plate. The bottom of the second inner box component is connected to the bottom plate, and the side of the second inner box component that is away from the first inner box component is connected to the right upright plate. A main body cavity for inserting the drone body is formed between the first and second inner box components. Arm cavities for embedding the drone arm are respectively opened on the side of the first inner box component facing the second inner box component and on the side of the second inner box component facing the first inner box component.

[0007] The first and second connecting plates move away from or closer to the base plate, forming an open packaging box or folding the packaging box for storage. The inner box forms the machine arm cavity or flattens with the packaging box as the packaging box is formed or folded. The packaging box in the open state is closed by the cover plate and the contact between the fixing plate and the front upright plate.

[0008] The present invention is further configured such that the side wall of the arm cavity and the drone arm are tightly fitted together. The drone, which is placed in the packaging box, is positioned within the packaging box by the drone arm being embedded in the arm cavity and by the tight friction between the side wall of the arm cavity and the drone arm.

[0009] The present invention is further configured such that the first inner box component and the second inner box component each include a bottom plate, a top plate, an inner box upright plate and an inner adhesive plate, wherein the top plate is opposite to the bottom plate, the two sides of the inner box upright plate are respectively connected to the top plate and the bottom plate, the bottom plate is connected to the bottom plate, the inner adhesive plate of the first inner box component is connected to the left upright plate, the inner adhesive plate of the second inner box component is connected to the right upright plate, and the inner box upright plates of the first inner box component and the inner box upright plates of the second inner box component are arranged opposite to each other.

[0010] The arm cavities opened on the first and second inner box components are recessed cavities formed from the top plate towards the bottom plate. The inner box uprights on the first and second inner box components are recessed synchronously with the recessed cavities. When the packaging box is in the open state to the folding and storage stage, the angle between the inner box uprights and the top plate gradually decreases.

[0011] The present invention is further configured such that the first and second connecting plates each include an adhesive part for connection and a flipping part connected to the adhesive part, the flipping part on the left upright plate moves synchronously with the left upright plate, and the flipping part on the right upright plate moves synchronously with the right upright plate.

[0012] The present invention is further configured such that a lifting rope is provided at the upper limit of the front upright plate, and a through hole is provided on the fixed plate. Through the contact between the fixed plate and the front upright plate, and through the lifting rope passing through the through hole, the packaging box can be easily lifted and carried.

[0013] The present invention is further configured such that the contact between the fixed plate and the front upright plate is a magnetic contact.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: By including a bottom plate, a cover plate, a left upright plate, a right upright plate, a rear upright plate, a front upright plate, and a fixing plate in the outer box part of the drone packaging box, and forming a first connecting plate on the left and right upright plates on the side facing the rear upright plate, and connecting the first connecting plate to the rear upright plate, and forming a second connecting plate on the left and right upright plates on the side facing the front upright plate, and connecting the second connecting plate to the front upright plate, the inner box part of the drone packaging box simultaneously includes a first and a second inner box component. The first inner box component is connected to the left upright plate, and its bottom is connected to the bottom plate, while the second inner box component is connected to the right upright plate, and its bottom is connected to the bottom plate. In addition, a main body cavity for inserting the drone body is formed between the first and second inner box components, and arm cavities for embedding the drone arm are respectively opened on the first and second inner box components. Thus, when the drone packaging box is used, the drone body can be inserted through the position of the main body cavity. The drone's arm is reliably positioned within the arm cavity, and then the cover is closed, with the contact between the fixing plate and the front upright plate achieving the final closure. This allows the drone to be reliably packaged using the packaging box described in this invention. Since the inner and outer boxes are connected by first and second connecting plates, when the packaging box needs to be transported or stored, the left and right upright plates can be folded towards the base plate via the first and second connecting plates. Correspondingly, the inner box can be folded flat along with the outer box, ensuring reliable use, transport, and storage of the packaging box. Compared to existing packaging boxes, the packaging box described in this invention is convenient and reliable to use and store, and storage issues will not affect the transport volume. Furthermore, the packaging box described in this invention has a simple structure and low manufacturing cost, meaning that its price will not be too high after it is launched on the market, thus meeting the needs of most people. Attached Figure Description

[0015] Figure 1 This is a three-dimensional schematic diagram of the drone packaging box in the open state according to an embodiment of this utility model;

[0016] Figure 2 yes Figure 1 Enlarged schematic diagram;

[0017] Figure 3 This is a three-dimensional schematic diagram of the drone packaging box in its stored state according to an embodiment of this utility model;

[0018] Figure 4 yes Figure 3 Enlarged schematic diagram;

[0019] Figure 5 This is a three-dimensional schematic diagram of the drone packaging box in the closed state according to an embodiment of this utility model. Detailed Implementation

[0020] like Figure 1-5 As shown, a specific embodiment of this utility model is a drone packaging box, including an outer box 2 and an inner box 3. The outer box 2 includes a bottom plate 26, a cover plate 22, a left upright plate 24 and a right upright plate 27 connected to the bottom plate 26, a rear upright plate 23 connected between the bottom plate 26 and the cover plate 22, a front upright plate 25 connected to the bottom plate 26 and away from the rear upright plate 23, and a fixing plate 21 distributed on the cover plate 22 on the side away from the rear upright plate 23. A first connecting plate 4 is formed on the left upright plate 24 and the right upright plate 27 on the side facing the rear upright plate 23, and the first connecting plate 4 is connected to the rear upright plate 23. A second connecting plate 5 is formed on the left upright plate 24 and the right upright plate 27 on the side facing the front upright plate 25, and the second connecting plate 5 is connected to the front upright plate 25.

[0021] The inner box 3 includes a first inner box component 31 and a second inner box component 32 distributed on one side of the first inner box component 31. The bottom of the first inner box component 31 is connected to the bottom plate 26, and the side of the first inner box component 31 that is away from the second inner box component 32 is connected to the left upright plate 24. The bottom of the second inner box component 32 is connected to the bottom plate 26, and the side of the second inner box component 32 that is away from the first inner box component 31 is connected to the right upright plate 27. A main body cavity 30 for inserting the drone body is formed between the first and second inner box components. An arm cavity 20 for embedding the drone arm is opened on the side of the first inner box component 31 facing the second inner box component 32 and on the side of the second inner box component 32 facing the first inner box component 31, respectively.

[0022] The packaging box is formed in an open state or folded and stored by the first and second connecting plates moving away from or near the base plate 26. The inner box 3 forms the arm cavity 20 as the packaging box is formed or folded flat. The packaging box in the open state is closed by the cover plate 22 and by the contact between the fixing plate 21 and the front upright plate 25.

[0023] By including a base plate 26, a cover plate 22, a left upright plate 24, a right upright plate 27, a rear upright plate 23, a front upright plate 25, and a fixing plate 21 in the outer box 2 of the drone packaging box, and simultaneously forming a first connecting plate 4 on the left and right upright plates relative to the side facing the rear upright plate 23, with the first connecting plate 4 connected to the rear upright plate 23, and forming a second connecting plate 5 on the left and right upright plates relative to the side facing the front upright plate 25, with the second connecting plate 5 connected to the front upright plate 25, the inner box 3 of the drone packaging box simultaneously includes first and second inner box components, wherein the first inner box component 31 is connected to... On the left upright plate 24, the bottom of the first inner box component 31 is connected to the bottom plate 26, while the bottom of the second inner box component 32 is connected to the right upright plate 27. Furthermore, a main body cavity 30 for inserting the drone body is formed between the first and second inner box components. Simultaneously, arm cavities 20 for embedding the drone arms are respectively formed on the first inner box component 31 and the second inner box component 32. This allows the drone body to be inserted through the main body cavity 30 when the drone packaging box is in use, while the drone arms can be inserted through the arm cavities. The position of 20 is reliably limited, and then the cover plate 22 closes, and the contact between the fixing plate 21 and the front upright plate 25 is achieved to close the packaging box. This allows the drone to be reliably packaged using the packaging box involved in this utility model. Since the inner box 3 and the outer box 2 are connected by the first and second connecting plates 5, when the packaging box needs to be transported or stored, the left and right upright plates can be folded towards the bottom plate 26 through the action of the first and second connecting plates. Correspondingly, the position of the inner box 3 of the packaging box can be flattened with the movement of the outer box 2. The packaging box achieves reliable use, transportation, and storage. Compared with existing packaging boxes, the packaging box involved in this utility model is more convenient and reliable to use and store, and will not affect the transportation volume due to storage issues. Moreover, the packaging box involved in this utility model has a simple structure and low manufacturing cost, which means that the price will not be too high after it is launched on the market, thus meeting the usage requirements of most people. In addition, the preferred solution for the contact between the fixing plate 21 and the front upright plate 25 on the packaging box is magnetic contact, which allows for convenient operation during the closing or opening of the packaging box.

[0024] like Figure 1-4 As shown, the side wall of the arm cavity 20 and the drone arm are tightly fitted together. The drone, which is placed in the packaging box, is positioned within the packaging box by the drone arm being embedded in the arm cavity 20 and by the tight friction between the side wall of the arm cavity 20 and the drone arm. This further ensures the reliability of the drone's placement and positioning within the packaging box.

[0025] like Figure 1-4As shown, both the first inner box component 31 and the second inner box component 32 include a bottom plate, a top plate 31, an inner box upright plate 32, and an inner adhesive plate. The top plate 31 is opposite to the bottom plate. The two sides of the inner box upright plate 32 are respectively connected to the top plate 31 and the bottom plate. The bottom plate is connected to the bottom plate 26. The inner adhesive plate of the first inner box component 31 is connected to the left upright plate 24. The inner adhesive plate of the second inner box component 32 is connected to the right upright plate 27. The inner box upright plates 32 of the first inner box component 31 and the inner box upright plates 32 of the second inner box component 32 are arranged opposite to each other.

[0026] The arm cavity 20 opened on the first and second inner box components is a recessed cavity formed from the top plate 31 toward the bottom plate. The inner box upright plate 32 on the first and second inner box components is recessed synchronously with the recessed cavity. The design of the angle between the inner box upright plate 32 and the top plate 31 gradually decreasing from the open state to the folded storage state can realize the reliable setting of the arm cavity 20 for drone arm embedding in the packaging box, as well as the reliable and convenient switching of the packaging box from the open state to the storage state.

[0027] like Figure 1-4 As shown, both the first and second connecting plates include an adhesive part 50 for connection and a flipping part 40 connected to the adhesive part 50. The flipping part 40 on the left upright plate 24 moves synchronously with the left upright plate 24, and the flipping part 40 on the right upright plate 27 moves synchronously with the right upright plate 27. This can further ensure the reliable switching of the packaging box from the open state to the stored state, or from the stored state to the open state.

[0028] like Figure 1 , 5 As shown, a lifting rope 1 is provided at the upper limit of the front upright plate 25, and a through hole 10 is provided on the fixed plate 21. Through the contact between the fixed plate 21 and the front upright plate 25, and through the lifting rope 1 passing through the through hole 10, the packaging box can be easily lifted and taken out. As described above, the packaging box can be easily taken out by lifting rope 1 after it is closed.

Claims

1. A drone packaging box, comprising an outer box and an inner box, characterized in that: The outer box includes a bottom plate, a cover plate, a left upright plate and a right upright plate connected to the bottom plate, a rear upright plate connected between the bottom plate and the cover plate, a front upright plate connected to the bottom plate and away from the rear upright plate, and a fixing plate distributed on the side of the cover plate away from the rear upright plate. A first connecting plate is formed on the left upright plate and the right upright plate on the side facing the rear upright plate, and the first connecting plate is connected to the rear upright plate. A second connecting plate is formed on the left upright plate and the right upright plate on the side facing the front upright plate, and the second connecting plate is connected to the front upright plate. The inner box includes a first inner box component and a second inner box component distributed on one side of the first inner box component. The bottom of the first inner box component is connected to the bottom plate, and the side of the first inner box component that is away from the second inner box component is connected to the left upright plate. The bottom of the second inner box component is connected to the bottom plate, and the side of the second inner box component that is away from the first inner box component is connected to the right upright plate. A main body cavity for inserting the drone body is formed between the first and second inner box components. Arm cavities for embedding the drone arm are respectively opened on the side of the first inner box component facing the second inner box component and on the side of the second inner box component facing the first inner box component. The first and second connecting plates move away from or closer to the base plate, forming an open packaging box or folding the packaging box for storage. The inner box forms the machine arm cavity or flattens with the packaging box as the packaging box is formed or folded. The packaging box in the open state is closed by the cover plate and the contact between the fixing plate and the front upright plate.

2. The drone packaging case of claim 1, wherein: The sidewall of the arm cavity is fitted to the drone arm in a close fit. The drone, which is placed in the packaging box, is positioned within the packaging box by the drone arm being embedded in the arm cavity and by the close friction between the sidewall of the arm cavity and the drone arm.

3. The drone packaging case of claim 1 or 2, wherein: The first inner box component and the second inner box component both include a bottom plate, a top plate, an inner box upright plate, and an inner adhesive plate. The top plate is opposite to the bottom plate. The two sides of the inner box upright plate are respectively connected to the top plate and the bottom plate. The bottom plate is connected to the bottom plate. The inner adhesive plate of the first inner box component is connected to the left upright plate. The inner adhesive plate of the second inner box component is connected to the right upright plate. The inner box upright plates of the first inner box component and the inner box upright plates of the second inner box component are arranged opposite to each other. The arm cavities opened on the first and second inner box components are recessed cavities formed from the top plate towards the bottom plate. The inner box uprights on the first and second inner box components are recessed synchronously with the recessed cavities. When the packaging box is in the open state to the folding and storage stage, the angle between the inner box uprights and the top plate gradually decreases.

4. The drone packaging case of claim 1 or 2, wherein: Both the first and second connecting plates include an adhesive part for connection and a flipping part connected to the adhesive part. The flipping part on the left upright plate moves synchronously with the left upright plate, and the flipping part on the right upright plate moves synchronously with the right upright plate.

5. The drone packaging case of claim 1, wherein: The front upright plate has a lifting rope at its upper limit, and the fixed plate has a through hole. Through the contact between the fixed plate and the front upright plate, and by passing the lifting rope through the through hole, the packaging box can be easily lifted and carried.

6. The drone packaging case of claim 1 or 5, wherein: The contact between the fixed plate and the front upright plate is a magnetic contact.