Single-side beam type multifunctional operation storage and transportation frame for high-speed unmanned aerial vehicle

By designing a high-speed unmanned aerial vehicle (UAV) single-sided beam multi-functional operation storage and transportation rack, the needs of UAVs in storage, transportation, loading and weighing operations are solved, providing a convenient operation solution that is suitable for various UAV layouts, reducing manufacturing costs and improving operational efficiency.

CN223534019UActive Publication Date: 2025-11-11AEROSPACE SHENZHOU AIRCRAFT
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Patent Information

Application Number
CN202422673312.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-11-11
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

Existing technologies lack specialized storage and transportation racks that can meet the operational requirements of high-speed drones in storage, transportation, loading, operation, and weighing.

Method used

A high-speed UAV single-sided beam multi-functional operation and storage rack was designed, including an operation frame, a bracket assembly, a weighing assembly, and a height adjustment mechanism. It is equipped with wheels, a liftable bracket, a weighing support, and a data display screen, supporting the storage, loading, operation, and weighing of UAVs.

Benefits of technology

It enables convenient storage, transportation, loading, operation, and weighing of drones. It has a simple structure, is easy to operate, and is suitable for drones with different layouts, reducing manufacturing costs and improving human-machine efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a single-side beam type multifunctional operation storage and transportation frame for a high-speed unmanned aerial vehicle. The single-side beam type multifunctional operation storage and transportation frame comprises an operation frame, a height adjusting mechanism, a plurality of weighing assemblies and two bracket assemblies. A plurality of walking wheels are arranged at the bottom of the operation frame, the two bracket assemblies are arranged on the two sides of the operation frame correspondingly, the bracket assemblies are used for supporting a single-side beam of the high-speed unmanned aerial vehicle, the bracket assemblies are arranged on the operation frame in a liftable mode, and the height adjusting mechanism is in driving connection with the bracket assemblies. The weighing assembly is arranged on the operation frame. The single-side beam type multifunctional operation storage and transportation frame for the high-speed unmanned aerial vehicle can be convenient for workers to carry out operations such as storage, transportation, loading, operation and weighing of the single-side beam of the high-speed unmanned aerial vehicle, and is simple in overall structure, convenient to operate, low in manufacturing cost, high in man-machine efficiency and high in practicability. The unmanned aerial vehicle is suitable for storage, transportation and operation requirements of high-speed unmanned aerial vehicles below 600kg on conventional layout, rocket type layout, cruise missile type layout and the like of unmanned aerial vehicles.
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Description

Technical Field

[0001] This utility model relates to the field of storage and transportation technology, specifically to a high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation storage and transportation rack. Background Technology

[0002] Currently, high-speed unmanned aerial vehicles (UAVs) and fixed-wing UAVs and subsonic high-speed target drones are typically designed with conventional, rocket, and cruise missile layouts. When UAVs are used for storage, loading, operation, and weighing, they need suitable racks to meet operational requirements. However, there are currently no dedicated storage racks that can meet the needs of storage, loading, operation, and weighing. Utility Model Content

[0003] The purpose of this utility model is to overcome the shortcomings and deficiencies in the existing technology and provide a high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack.

[0004] One embodiment of this utility model provides a high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack, including: an operation frame, a height adjustment mechanism, several weighing components and two bracket components;

[0005] The bottom of the working frame is provided with several wheels, and two bracket assemblies are respectively arranged on both sides of the working frame. The bracket assemblies are used to support the single-sided beam of the high-speed UAV. The bracket assemblies are flexibly mounted on the working frame. The height adjustment mechanism is drivenly connected to the bracket assembly. The weighing component is arranged on the working frame and is used to measure the weight of the single-sided beam of the high-speed UAV.

[0006] In some alternative embodiments, the weighing assembly includes a weighing bracket, a lifting drive mechanism, a tension detector, and a lifting device. The weighing bracket is mounted on the working frame, the lifting drive mechanism is connected to the lifting device via the tension detector, and the lifting device is positioned above the bracket assembly.

[0007] In some alternative implementations, the weighing assembly further includes a data display screen disposed on the weighing bracket and signal-connected to the tension detector.

[0008] In some alternative implementations, the weighing support is detachably connected to the working frame.

[0009] In some alternative embodiments, the working frame is provided with a fixed base, the fixed base is provided with a fixed channel, and the bottom of the weighing bracket extends into the fixed channel.

[0010] In some alternative implementations, the lifting drive mechanism is a winch mechanism, which is connected to the tension detector via a hoisting rope.

[0011] In some alternative implementations, the high-speed UAV single-sided beam multi-functional operation and storage rack includes two of the aforementioned weighing components, which are respectively disposed on both sides of the operation frame.

[0012] In some alternative embodiments, the working frame is provided with multiple lifting guide rails, which are respectively located on both sides of the bracket assembly, and the two sides of the bracket assembly slide in cooperation with the lifting guide rails.

[0013] In some alternative embodiments, the bracket assembly includes a bracket and a plurality of directional pulley assemblies. The bracket is vertically and flexibly mounted on the working frame. The bracket is provided with a groove. The directional pulley assemblies are rotatably mounted in the groove. The plurality of directional pulley assemblies are arranged sequentially along one end of the groove to the other end. The height adjustment mechanism is drivenly connected to the bracket.

[0014] In some alternative embodiments, the height adjustment mechanism includes a lifting screw, a lifting plate, and a rotating handle. The lifting screw is vertically and vertically mounted on the working frame and is threadedly engaged with the working frame. The lifting plate is mounted at the top of the lifting screw and supported at the bottom of the bracket assembly. The rotating handle is rotatably mounted on the working frame and is drivenly connected to the lifting screw.

[0015] Compared with existing technologies, the high-speed UAV single-sided beam multi-functional operation and storage rack of this utility model can facilitate the storage, loading, operation, and weighing of high-speed UAVs with single-sided beams. The overall structure is simple, easy to operate, low in manufacturing cost, and highly efficient in human-machine interaction. It is suitable for the storage and operation needs of unmanned aerial vehicles with conventional, rocket, and cruise missile layouts of high-speed UAVs under 600kg.

[0016] To provide a clearer understanding of this invention, the specific embodiments of this invention will be described below in conjunction with the accompanying drawings. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of a high-speed unmanned aerial vehicle (UAV) single-sided beam multi-functional operation and storage rack according to an embodiment of the present invention;

[0018] Figure 2 This is a schematic diagram of the structure of a high-speed UAV single-sided beam multi-functional operation and storage rack and a high-speed UAV single-sided beam according to an embodiment of the present invention;

[0019] Figure 3 This is an exploded view of a high-speed unmanned aerial vehicle (UAV) single-sided beam multi-functional operation and storage rack according to an embodiment of the present invention.

[0020] Figure 4 This is a schematic diagram of the structure of a weighing component according to an embodiment of the present invention;

[0021] Figure 5 This is a schematic diagram of the structure of a high-speed UAV single-sided beam multi-functional operation and storage rack and one side of the high-speed UAV single-sided beam, according to an embodiment of the present invention.

[0022] Figure 6 This is a schematic diagram of the structure of a high-speed unmanned aerial vehicle (UAV) single-sided beam multi-functional operation and storage rack with the weighing component concealed, according to an embodiment of the present invention.

[0023] Explanation of reference numerals in the attached figures:

[0024] 10. Working frame; 11. Traveling wheels; 12. Fixed base; 121. Fixed channel; 13. Lifting guide rail; 14. Working platform; 20. Height adjustment mechanism; 21. Lifting screw; 22. Lifting tray; 23. Rotating handle; 30. Weighing assembly; 31. Weighing bracket; 32. Lifting drive mechanism; 33. Tension detector; 34. Lifting device; 35. Data display screen; 40. Bracket assembly; 41. Bracket; 42. Directional pulley assembly; 43. Tray. Detailed Implementation

[0025] The technical solutions of the present invention will now be clearly and completely described with reference to the accompanying drawings of the embodiments thereof. Please refer to... Figure 1 and Figure 2 One embodiment of this utility model provides a high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack, including: an operation frame 10, a height adjustment mechanism 20, several weighing components 30 and two bracket components 40.

[0026] The bottom of the working frame 10 is provided with several wheels 11 to facilitate the movement of the working frame 10. Two bracket assemblies 40 are respectively set on both sides of the working frame 10. The two bracket assemblies 40 are used to support the single-sided beam of the high-speed UAV, thereby realizing the storage of the single-sided beam of the high-speed UAV. The bracket assemblies 40 are flexibly set on the working frame 10, so as to facilitate the adjustment of the height of the bracket assemblies 40 according to the actual storage, transportation, maintenance and debugging needs. The height adjustment mechanism 20 is driven by the bracket assembly 40 and is used to drive the bracket assembly 40 to lift. The weighing component 30 is set on the working frame 10 and is used to measure the weight of the single-sided beam of the high-speed UAV.

[0027] Please see Figure 3 and Figure 4The structure of the weighing component 30 can be designed appropriately according to actual needs. For example, in some optional embodiments, the weighing component 30 includes a weighing bracket 31, a lifting drive mechanism 32, a tension detector 33, and a lifting device 34. The weighing bracket 31 is mounted on the working frame 10. The lifting drive mechanism 32 is connected to the lifting device 34 through the tension detector 33. The lifting device 34 is arranged above the bracket assembly 40 and is used to connect to the high-speed UAV single-sided beam. The lifting drive mechanism 32 can lift the tension detector 33, the lifting device 34, and the high-speed UAV single-sided beam together, which facilitates weighing and also facilitates the removal or storage of the high-speed UAV single-sided beam from the bracket assembly 40. The gravity of the high-speed UAV single-sided beam acts on the tension detector 33 through the lifting device 34, enabling the tension detector 33 to detect the weight of the high-speed UAV single-sided beam.

[0028] In some optional embodiments, the weighing assembly 30 also includes a data display screen 35, which is mounted on the weighing bracket 31 and is signal-connected to the tension detector 33. The data display screen 35 is used to display the magnitude of the tension detected by the tension detector 33, thereby determining the weight of the single-sided beam of the high-speed UAV. The data display screen 35 and the tension detector 33 can be connected wirelessly (via Wi-Fi, Bluetooth, etc.) or via a wired connection.

[0029] In some alternative implementations, the weighing bracket 31 is detachably connected to the working frame 10, thereby facilitating the installation and removal of the weighing component 30. When the weighing component 30 is not needed, it can be removed to avoid obstructing other operations.

[0030] In some alternative embodiments, a fixed base 12 is provided on the working frame 10, and a fixed channel 121 is provided on the fixed base 12. The bottom of the weighing bracket 31 extends into the fixed channel 121, thereby supporting the weighing bracket 31 through the fixed channel 121, so that the weighing bracket 31 is stably fixed on the fixed base 12. When the weighing bracket 31 needs to be removed, it is only necessary to pull the weighing bracket 31 out from the fixed channel 121.

[0031] In some alternative implementations, the high-speed UAV single-sided beam multi-functional operation and storage rack includes two weighing components 30, which are respectively arranged on both sides of the operation frame 10, thereby improving the stability of the high-speed UAV single-sided beam during weighing by simultaneously supporting both ends of the high-speed UAV single-sided beam.

[0032] In this embodiment, the weighing support 31 includes a vertical column and a crossbeam connected to each other. The vertical column is detachably inserted into the fixed channel 121, the crossbeam extends above the bracket assembly 40, the lifting device 34 is arranged below the crossbeam, and the lifting drive mechanism 32 and the data display screen 35 are arranged on the side of the vertical column.

[0033] The structure of the lifting drive mechanism 32 can be designed according to actual needs. For example, the lifting drive mechanism 32 can adopt a winch mechanism, which is connected to the tension detector 33 via a hoisting rope. In this embodiment, the winch mechanism adopts a hand-cranked bidirectional self-locking winch assembly. Of course, the winch mechanism can also be an electric winch mechanism.

[0034] In some optional embodiments, the working frame 10 is provided with a plurality of lifting guide rails 13, which are respectively located on both sides of the bracket assembly 40. The two sides of the bracket assembly 40 slide in cooperation with the lifting guide rails 13, thereby improving the lifting stability of the bracket assembly 40.

[0035] Please see Figure 5 In some optional embodiments, the bracket assembly 40 includes a bracket 41 and multiple directional pulley assemblies 42. The bracket 41 is vertically mounted on the working frame 10 and has a groove 43. The directional pulley assemblies 42 are rotatably mounted in the groove 43. The multiple directional pulley assemblies 42 are arranged sequentially from one end to the other of the groove 43. The two ends of the high-speed UAV single-sided beam are correspondingly placed into two grooves 43, and the bottom of the high-speed UAV single-sided beam is supported by the directional pulley assemblies 42. The directional pulley assemblies 42 are arranged approximately around the axis of the high-speed UAV single-sided beam. When the high-speed UAV single-sided beam needs to be circumferentially rolled to adjust its angle, there is rolling friction between the directional pulley assemblies 42 and the high-speed UAV single-sided beam. Therefore, the force required for the operator to rotate the high-speed UAV single-sided beam is small, which facilitates the operator's operation of the high-speed UAV single-sided beam and also reduces the friction on the high-speed UAV single-sided beam, preventing scratches. The height adjustment mechanism 20 is driven to connect with the bracket 41. In this embodiment, the two sides of the bracket 41 are slidably engaged with the lifting guide rail 13.

[0036] Please see Figure 6The structure of the height adjustment mechanism 20 can be designed appropriately according to actual needs. For example, the height adjustment mechanism 20 can be an electric cylinder, a hydraulic cylinder, or a pneumatic cylinder, and its output end is connected to the bracket assembly 40. In this embodiment, the height adjustment mechanism 20 includes a lifting screw 21, a lifting plate 22, and a rotating handle 23. The lifting screw 21 is movably mounted on the working frame 10 and is threadedly engaged with the working frame 10. The lifting plate 22 is mounted on the top of the lifting screw 21 and is supported on the bottom of the bracket assembly 40. The rotating handle 23 is rotatably mounted on the working frame 10 and is drivenly connected to the lifting screw 21. When the operator operates the rotating handle 23, it drives the lifting screw 21 to rise or fall relative to the working frame 10, thereby enabling the bracket assembly 40 to achieve height adjustment.

[0037] In some alternative embodiments, the working frame 10 is provided with a working platform 14 located on one side of the bracket assembly 40. The working platform 14 provides a place for workers to stand, making it convenient for workers to perform maintenance, debugging, weighing and other operations on the high-speed UAV single-sided beam placed on the bracket assembly 40.

[0038] 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. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack, characterized in that, include: The working frame, height adjustment mechanism, several weighing components, and two bracket assemblies; The bottom of the working frame is provided with several wheels, and two bracket assemblies are respectively arranged on both sides of the working frame. The bracket assemblies are used to support the single-sided beam of the high-speed UAV. The bracket assemblies are flexibly mounted on the working frame. The height adjustment mechanism is drivenly connected to the bracket assembly. The weighing component is arranged on the working frame and is used to measure the weight of the single-sided beam of the high-speed UAV.

2. The high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to claim 1, characterized in that: The weighing assembly includes a weighing bracket, a lifting drive mechanism, a tension detector, and a lifting device. The weighing bracket is mounted on the working frame, the lifting drive mechanism is connected to the lifting device through the tension detector, and the lifting device is arranged above the bracket assembly.

3. The high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to claim 2, characterized in that: The weighing component also includes a data display screen, which is mounted on the weighing bracket and is signal-connected to the tensile detector.

4. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to claim 2, characterized in that: The weighing support is detachably connected to the working frame.

5. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to claim 4, characterized in that: The working frame is provided with a fixed base, and the fixed base is provided with a fixed channel, the bottom of the weighing bracket extending into the fixed channel.

6. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to claim 2, characterized in that: The lifting drive mechanism is a winch mechanism, which is connected to the tension detector via a hoisting rope.

7. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to any one of claims 1 to 6, characterized in that, It includes two weighing components, which are respectively disposed on both sides of the working frame.

8. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to any one of claims 1 to 6, characterized in that: The working frame is provided with multiple lifting guide rails, which are located on both sides of the bracket assembly, and the two sides of the bracket assembly slide in cooperation with the lifting guide rails.

9. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to any one of claims 1 to 6, characterized in that: The bracket assembly includes a bracket and multiple directional pulley assemblies. The bracket is vertically and flexibly mounted on the working frame. The bracket is provided with a groove. The directional pulley assemblies are rotatably mounted in the groove. The multiple directional pulley assemblies are arranged sequentially along the direction from one end of the groove to the other end. The height adjustment mechanism is drivenly connected to the bracket.

10. A high-speed unmanned aerial vehicle (UAV) single-sided beam type multi-functional operation and storage rack according to any one of claims 1 to 6, characterized in that: The height adjustment mechanism includes a lifting screw, a lifting plate, and a rotating handle. The lifting screw is vertically and vertically mounted on the working frame and is threadedly engaged with the working frame. The lifting plate is mounted at the top of the lifting screw and supported at the bottom of the bracket assembly. The rotating handle is rotatably mounted on the working frame and is drivenly connected to the lifting screw.