An unmanned aerial vehicle intelligent hangar
By employing a top double-door design, multiple waterproof structures, and a screw-nut driven centering mechanism, the issues of sealing, floor space, and positioning accuracy in the drone intelligent hangar have been resolved, enabling rapid and accurate charging and improved stability for drones.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU HENGTONG INTELLIGENT EQUIP CO LTD
- Filing Date
- 2025-08-12
- Publication Date
- 2026-07-17
AI Technical Summary
Existing drone smart storage systems suffer from problems such as poor sealing, large footprint, complex structure, inaccurate positioning, and high maintenance costs.
It features a top double-door design, multiple waterproof structures, a ball screw and nut driven centering mechanism, and a simplified lifting mechanism. It combines a servo motor and a dual-axis reducer for drone positioning, adds weather monitoring and camera surveillance, and uses a sheet metal welded box structure.
It improves the waterproof performance and stability of the equipment, reduces the footprint and maintenance costs, ensures the drone can be quickly and accurately positioned and charged, and enhances its field work capabilities.
Smart Images

Figure CN224511511U_ABST
Abstract
Claims
1. An unmanned aerial vehicle (UAV) smart hangar, comprising: include: hangar enclosure; Lifting mechanism; A hangar door is located at the top of the hangar enclosure; the hangar door includes two opposing door panels, two opening and closing power units, and a waterproof component; the opening and closing power units are connected to the door panels to drive the door panels to move; the waterproof component includes a sealing strip and a waterproof part; the sealing strip is located on the side of the two door panels that are close to each other to seal the two door panels; the waterproof part is located on the side of the door panels to achieve waterproofing between the hangar door and the hangar enclosure. The parking platform is connected to the hangar housing by moving up and down via the lifting mechanism. A centering mechanism is mounted on the stopping platform. The centering mechanism includes two moving parts. The two moving parts are slidably connected to the stopping platform along the X and Y directions, respectively, with the Y direction intersecting the X direction. Each moving part includes a centering power unit, two lead screws, two lead screw nuts, and two push rods. The two lead screws are symmetrically connected to the output end of the centering power unit. The lead screw nuts are connected to the lead screws, and the push rods are respectively connected to the lead screw nuts. The centering power unit drives the two push rods to move in opposite directions. The controller is connected to the centering mechanism, the lifting mechanism, and the switching power unit.
2. The drone smart hangar of claim 1, wherein: The waterproof part includes a water-blocking strip, which is disposed above and on both sides of the sealing strip.
3. The drone smart hangar of claim 1, wherein: The waterproof part also includes a brim, which is located on the side of the door; when both doors are closed, the brim extends outside the hangar enclosure.
4. The drone smart hangar of claim 3, wherein: Along the opening direction of the two doors, the doors are inclined upwards from the outside in.
5. The drone smart hangar of claim 1, wherein: The centralizing power unit includes a servo motor and a dual-axis reducer. The dual-axis reducer is connected to the output end of the servo motor, and the output end of the dual-axis reducer is connected to the two lead screws.
6. The drone smart hangar of claim 1, wherein: The switching power unit includes a motor, a gear, and a rack; the motor is connected to the hangar housing, the output end of the motor is connected to the gear, the rack meshes with the gear, and the rack is connected to the door.
7. The intelligent hangar for unmanned aerial vehicles (UAVs) according to claim 1, characterized in that: The warehouse door also includes a sensor for monitoring the opening and closing status of the door, and the sensor is connected to the controller.
8. The drone smart hangar of claim 1, wherein: It also includes a meteorological monitoring device located above the warehouse door, which is connected to the controller.
9. The drone smart hangar of claim 1, wherein: The hangar enclosure is also equipped with air conditioning.
10. The drone smart hangar of claim 1, wherein: The hangar enclosure is also equipped with a first camera; And / or, a second camera is provided on the door.