Storage bin assembly of unmanned aerial vehicle
By designing the drone storage compartment assembly, the problem of random storage of equipment in drone mobile operating vehicles is solved, the standardized storage and protection of drones and power supplies is achieved, and the service life of the equipment is improved.
Patent Information
- Application Number
- CN202422543865.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-10-17
AI Technical Summary
The drone energy in existing drone mobile operation vehicles provides equipment and other equipment to store at will, occupying space and being easily damaged.
A drone storage compartment assembly is designed, including a storage box, bottom connector, top connector and partition. The storage box is equipped with a storage compartment and installation compartment. The storage compartment is used to store the drone. The installation compartment is equipped with a power supply and is fixed to the vehicle body through the connector to provide standardized storage and protection.
It realizes standardized storage of drones and power supplies, reduces equipment damage, and improves the convenience of storage and access.
Smart Images

Figure CN223162013U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of unmanned aerial vehicles, and particularly relates to an unmanned aerial vehicle storage bin assembly. Background Art
[0002] Unmanned aerial vehicles are widely used in industrial fields. With the continuous development and progress of their technology and the intelligent upgrading of applications in various industrial fields, the practical application value of unmanned aerial vehicles has been continuously improved. Existing unmanned aerial vehicle mobile operation vehicles mainly include unmanned aerial vehicle inspection operation vehicles, unmanned aerial vehicle intelligent command operation vehicles, unmanned aerial vehicle fire trucks, etc.
[0003] During the process of an unmanned aerial vehicle mobile operation vehicle performing a task, the mobile operation vehicle can transport the unmanned aerial vehicle to the destination according to the actual flight mission of the unmanned aerial vehicle, arrive in advance to provide a lifting platform for the unmanned aerial vehicle to land in a different place, and supply energy to the unmanned aerial vehicle.
[0004] However, for most existing unmanned aerial vehicles, the energy supply devices or other devices are mostly stored randomly in the mobile operation vehicle. This method not only occupies the space inside the vehicle, but also easily causes the components to be in a mess, making it inconvenient to store and retrieve, and also easily causing damage to the relevant components. Summary of the Utility Model
[0005] Aiming at the deficiencies existing in the prior art, the technical problem to be solved by the utility model is to provide an unmanned aerial vehicle storage bin assembly, which can standardize the installation of the power supply or other devices of the unmanned aerial vehicle, facilitate the storage and retrieval of the power supply, and reduce the probability of damage to the power supply or other related devices.
[0006] To achieve the above object, the utility model is realized by the following technical solutions: An unmanned aerial vehicle storage bin assembly, comprising:
[0007] A storage box, which is arranged at the tail of the vehicle body and can support the cabin of the nest cabin;
[0008] A bottom connecting piece, which is arranged at the bottom of the storage box and can be connected to the fixed skeleton of the vehicle cargo box;
[0009] A top connecting piece, which is arranged at the top of the storage box and can be connected to the nest cabin; and
[0010] A partition board, which is arranged inside the storage box and divides the inner cavity of the storage box into a storage bin and an installation bin; the storage bin is used for storing the unmanned aerial vehicle, a bin opening communicating the storage bin with the outside is arranged on the side wall of the storage box, and a first power supply and a second power supply are arranged in the installation bin.
[0011] Further, the top connecting member includes two connecting plates and two hooks. The two connecting plates are located at both ends of the same side plate of the storage box. Connecting holes are formed in the connecting plates. The two hooks are arranged at intervals on the side wall of the storage box opposite to the connecting plates, and the two hooks can be hooked on the nacelle cabin.
[0012] Further, the bottom connecting member includes a support frame and four L-shaped connecting plates. The support frame is arranged on the bottom plate of the storage box. The four support frames are cross-connected to form a frame shape. The four L-shaped connecting plates are arranged in pairs on the support frame. Mounting holes are formed in the L-shaped connecting plates, and the L-shaped connecting plates are bolted to the fixed skeleton of the vehicle cargo box through the mounting holes.
[0013] Further, it further includes a battery drawer. The battery drawer is slidably arranged in the storage box and can slide out from the side wall of the storage box. The first power supply is arranged in the battery drawer.
[0014] Further, an exhaust fan is further arranged on the battery drawer. The exhaust fan is used to exhaust the air in the battery drawer.
[0015] Further, it further includes a tool storage drawer. The tool storage drawer is slidably arranged in the storage box and can slide out from the side wall of the storage box, and is located below the battery drawer.
[0016] Further, the storage box is provided with a cover plate that can cover the hatch.
[0017] Advantages of the utility model:
[0018] When the above-mentioned UAV storage bin assembly is used, first, the storage box is fixed to the tail of the vehicle body through the bottom connecting member. Subsequently, other related devices such as the first power supply and the second power supply are arranged in the installation bin, and small and medium-sized UAVs are stored in the storage bin. Then, the cabin body is arranged on the top of the storage box and fixedly connected through the top connecting member.
[0019] By adopting the above-mentioned UAV storage bin assembly, relevant power supplies or other devices and UAVs can be stored in a standardized manner, which is not only convenient for installation, but also can provide a certain degree of protection for the power supply, UAV and other devices, preventing damage to the first power supply, the second power supply and the UAV during use. Description of the drawings
[0020] In order to more clearly illustrate the specific embodiments of the present utility model, the drawings required for use in the specific embodiments will be briefly introduced below. In all the drawings, the components or parts do not necessarily draw according to the actual proportion.
[0021] Figure 1Schematic diagram of a drone storage bin assembly provided by an embodiment of the present utility model;
[0022] Figure 2 For Figure 1 The bottom view of a drone storage bin assembly as shown;
[0023] Figure 3 For Figure 1 Schematic diagram of a drone storage bin assembly installed between a vehicle body and a nacelle compartment as shown;
[0024] Reference numerals:
[0025] 100, vehicle body;
[0026] 200, storage bin assembly; 210, storage box; 220, partition; 230, battery drawer; 240, storage drawer; 250, first power source; 260, second power source; 270, top connector; 271, connecting straight plate; 272, hook; 280, bottom connector; 281, support frame; 282, L-shaped connecting plate;
[0027] 300, cabin; 310, cabin door;
[0028] 400, cabin door opening structure; 410, bottom plate; 420, rotary drive member; 421, rotary motor; 422, connecting rod assembly; 423, intermediate auxiliary support member; 430, elastic auxiliary pulling member;
[0029] 500, drone takeoff and landing platform; 510, installation platform; 520, centering platform; 530, drive mechanism; 531, first rotary power source; 532, first lead screw; 533, guiding structure; 540, centering drive member; 541, second rotary power source; 542, third rotary power source; 543, bidirectional lead screw; 544, centering rod. Detailed implementation manners
[0030] Hereinafter, embodiments of the technical solutions of the present utility model will be described in detail with reference to the accompanying drawings. The following embodiments are only used to illustrate the technical solutions of the present utility model more clearly, and thus are only examples and cannot be used to limit the protection scope of the present utility model.
[0031] Please refer to Figures 1 to 3 , the present utility model provides a drone storage bin assembly, including a storage box 210, a bottom connector 280, a top connector 270, and a partition 220.
[0032] Specifically, the storage box 210 is arranged at the tail of the vehicle body and can support the cabin body 300 of the nacelle. The bottom connecting piece 280 is arranged at the bottom of the storage box 210 and can be fixedly connected to the fixed framework of the cargo box of the vehicle body 100. The top connecting piece 270 is arranged at the top of the storage box 210 and can be connected to the cabin body 300. The partition 220 is arranged inside the storage box 210 to divide the inner cavity of the storage box 210 into a storage bin and an installation bin; the storage bin is used for storing the unmanned aerial vehicle 1, and a bin opening communicating the storage bin with the outside is provided on the side wall of the storage box 210. The first power supply 250 and the second power supply 260 are arranged in the installation bin. The first power supply 250 is used to supply power to the unmanned aerial vehicle. The first power supply 250 can be multiple unmanned aerial vehicle batteries. The second power supply 260 is used to supply power to other devices of the unmanned aerial vehicle mobile work vehicle of the whole device, and the second power supply 260 can be a 6° battery pack commonly used in the prior art.
[0033] During use, first fix the storage box 210 at the tail of the vehicle body through the bottom connecting piece 280, then arrange the first power supply 250 and the second power supply 260 in the installation bin. Then, the medium and small unmanned aerial vehicle 1 can be stored in the storage bin. Then, arrange the cabin body 300 on the top of the storage box 210 and fixedly connect it through the top connecting piece 270.
[0034] By adopting the above-mentioned unmanned aerial vehicle storage bin assembly, the relevant power supplies or other devices and the unmanned aerial vehicle can be stored in a standardized manner, which is not only convenient for installation, but also can provide a certain protection for the first power supply 250 and the second power supply 260, preventing the first power supply 250, the second power supply 260 and the unmanned aerial vehicle from being damaged during use.
[0035] It should be noted that during specific implementation, a power supply controller can also be arranged in the installation bin to control the discharge condition of the second power supply 260. In addition, a battery pack charger and the like can also be arranged.
[0036] During specific implementation, a cover plate capable of covering the bin opening can be arranged on the storage box 210 to further improve safety.
[0037] In this embodiment, the top connecting piece 270 includes two connecting straight plates 271 and two hooks 272. The two connecting straight plates 271 are located at both ends of the same side plate of the storage box 210. Connecting holes are provided on the connecting straight plates 271. The two hooks 272 are arranged at intervals on the side wall of the storage box 210 opposite to the connecting plate 271, and the two hooks 272 can be hooked on the cabin body 300.
[0038] During installation, first hook the two hooks 272 to the corresponding positions of the cabin body 300, and then connect the connecting plate 271 to the threaded holes at the bottom of the cabin body 300 through connecting bolts. By adopting this structure, the connection time can be reduced and the work efficiency can be improved.
[0039] The bottom connecting member 280 includes a support frame 281 and four L-shaped connecting plates 282. The support frame 281 is disposed on the bottom of the storage box 210, and the four support frames 281 are cross-connected to form a frame shape. The support clip can play a supporting role. The four L-shaped connecting plates 282 are arranged in pairs on the support frame 281. Mounting holes are formed in the L-shaped connecting plates 282, and the L-shaped connecting plates 271 are bolted to the fixed skeleton of the cargo box of the vehicle body 100 through the mounting holes. During assembly, only the four L-shaped connecting plates 271 need to be bolted to the fixed skeleton of the cargo box of the vehicle body 100.
[0040] As a preferred embodiment, a battery drawer 230 can also be provided in the storage box 210. The battery drawer 230 is slidably disposed in the storage box 210 and can slide out from the side wall of the storage box 210. A plurality of first power sources 250 are disposed in the battery drawer 230. During use, the battery drawer 230 can be pulled out to replace the battery of the new first power source 250. Specifically, an exhaust fan can be further provided on the battery drawer 230, and the exhaust fan is used to discharge the air in the battery drawer 230 to dissipate heat for the first power source 250.
[0041] As a more preferred embodiment, a storage drawer 240 can also be provided in the storage box 210. The storage drawer 240 is slidably disposed in the storage box 210 and can slide out from the side wall of the storage box 210 and is located below the battery drawer 230. During use, tools and other items can be placed in the tool storage drawer 240 for convenient use.
[0042] By adopting the above-mentioned drone storage bin assembly, relevant power sources or other devices and drones can be stored in a standardized manner, which is not only convenient for installation, but also can provide a certain protection for the power source or device and the drone, preventing damage to the energy supply device and the drone during use.
[0043] Meanwhile, corresponding use tools can also be placed in the tool storage drawer for further convenient use.
[0044] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the various embodiments of the present invention, and they should all be covered by the scope of the claims and the description of the present invention.
Claims
1. An unmanned aerial vehicle storage bin assembly, characterized in that, Comprising: A storage box, which is arranged at the rear of the vehicle body and can support the cabin of the drone nest; A bottom connecting piece, which is arranged at the bottom of the storage box and can be connected to the fixed skeleton of the vehicle cargo box; A top connecting piece, which is arranged at the top of the storage box and can be connected to the drone nest; and A partition board, which is arranged in the storage box and divides the inner cavity of the storage box into a storage bin and an installation bin; the storage bin is used for storing drones, and a bin opening communicating the storage bin with the outside is formed in the side wall of the storage box, and a first power source and a second power source are arranged in the installation bin.
2. The drone storage bin assembly according to claim 1, wherein, The top connecting piece includes two connecting plates and two hooks. The two connecting plates are located at both ends of the same side plate of the storage box. Connecting holes are formed in the connecting plates. The two hooks are arranged at intervals on the side wall of the storage box opposite to the connecting plates, and the two hooks can be hooked on the drone nest.
3. The drone storage bin assembly according to claim 1, wherein, The bottom connecting piece includes a support frame and four L-shaped connecting plates. The support frame is arranged on the bottom plate of the storage box. The four support frames are cross-connected to form a frame shape. The four L-shaped connecting plates are arranged in pairs on the support frame. Installation holes are formed in the L-shaped connecting plates, and the L-shaped connecting plates are bolted to the fixed skeleton of the vehicle cargo box through the installation holes.
4. The drone storage bin assembly according to claim 2, wherein It further includes a battery drawer, which can be slidably arranged in the storage box and can slide out from the side wall of the storage box, and the first power source is arranged in the battery drawer.
5. The drone storage bin assembly according to claim 4, characterized in that, An exhaust fan is further arranged on the battery drawer, and the exhaust fan is used for exhausting the air in the battery drawer.
6. The drone storage bin assembly according to claim 4, wherein, It further includes a tool storage drawer, which can be slidably arranged in the storage box and can slide out from the side wall of the storage box and is located below the battery drawer.
7. The drone storage bin assembly according to claim 1, wherein The storage box is provided with a cover plate capable of covering the bin opening.