An unmanned aerial vehicle mounting device

By combining the frame and plate of the drone mounting device and using bolt connections to achieve adjustable clamping of cargo, the problem of displacement of mounting equipment in existing technologies is solved, thereby improving the flight stability and safety of drones.

CN224361382UActive Publication Date: 2026-06-16HEBEI JICHI ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI JICHI ENVIRONMENTAL PROTECTION TECH CO LTD
Filing Date
2025-07-30
Publication Date
2026-06-16

AI Technical Summary

Technical Problem

Existing drone mounting devices lack a reliable locking structure, which may cause the mounting equipment to shift during flight, affecting the flight stability of the drone.

Method used

The design employs a combination of frame, plate, and bolts. The bolted connection enables adjustable clamping of the plate, ensuring that the cargo does not shift during transportation and improving flight stability.

Benefits of technology

By adjusting the spacing and length of the panels, the drone can accommodate cargo of different sizes, ensuring a reasonable distribution of the center of gravity and improving its stability and safety during flight.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an unmanned plane mounting device, including the frame body, the frame body one end is equipped with the groove no.
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Description

Technical Field

[0001] This utility model relates to the field of unmanned aerial vehicle (UAV) technology, and in particular to a UAV mounting device. Background Technology

[0002] Drone mounting refers to installing or carrying specific equipment, tools, or payloads on a drone platform to expand the drone's functionality and enable it to perform diverse tasks, such as transporting goods (e.g., medical supplies, express parcels).

[0003] The existing announcement number is CN222347331U, which discloses a drone mounting device, including a first fixed plate, a second fixed plate, and a plurality of sliding reinforcing plates. A plurality of first support crossbars are mounted on the first fixed plate, and a plurality of second support crossbars are mounted on the second fixed plate. The sliding reinforcing plates are slidably fitted with the first and second support crossbars respectively. This utility model has a simple structure and can be flexibly adjusted according to the mounting equipment. By setting the first fixed plate, first support crossbars, second fixed plate, second support crossbars, and sliding reinforcing plates, the length of the mounting device can be adjusted within a horizontal range, enabling the mounting of different equipment. By setting lifting rings and lifting ropes, the height between the mounting equipment and the drone can be adjusted, adapting to mounting equipment of different heights and improving the flexibility of the mounting device.

[0004] While the aforementioned components—the first fixed plate, the first support crossbar, the second fixed plate, the second support crossbar, and the sliding reinforcement plate—allow for horizontal length adjustment of the mounting device and the mounting of different equipment, the sliding reinforcement plate relies solely on friction with the support crossbar to maintain its position when securing items with its high-elastic straps. This lack of a reliable locking mechanism means that during drone flight, turbulence, acceleration, and deceleration can cause displacement along the first and second support crossbars. This displacement may shift the center of gravity of the mounted equipment, affecting the drone's flight stability. Utility Model Content

[0005] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a drone mounting device.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A drone mounting device includes a frame. One end of the frame has a groove (Type 1). Two sets of plates (Type 1) are slidably connected to the groove (Type 1). The groove (Type 1) is a T-shaped groove that fits into the plates (Type 1). One end of each set of plates (Type 1) has a groove (Type 2). Each set of grooves (Type 2) has a plate (Type 2) that movably passes through it. Each set of plates (Type 2) is connected to a plate (Type 3). One end or the other end of each set of plates (Type 3) has a groove (Type 3). The same set of plates (Type 4) is placed in close contact within each set of grooves (Type 3). Multiple sets of holes (Type 2) are formed at one end of each plate (Type 4) and at the other end of each plate (Type 3). Two sets of bolts (Type 2) are threadedly connected to the two sets of holes (Type 2) on each plate (Type 4). The two sets of bolts (Type 2) are threadedly connected to the corresponding holes (Type 2) on the plate (Type 3). Multiple sets of holes (Type 3) are formed at one end of the frame and at the other end of each plate (Type 1). Two sets of bolts (Type 3) are threadedly connected to the holes (Type 3) on each set of plates (Type 1). The multiple sets of bolts (Type 3) are threadedly connected to the corresponding holes (Type 3) on the frame.

[0008] Preferably, the two sets of plate body one and plate body two have multiple sets of holes one, and each of the holes one of the two sets of plate body one is threadedly connected to a bolt one. The two sets of bolt one are respectively threadedly connected to the corresponding holes one of the plate body two. A knob is connected to one end of each of the two sets of bolt one and the multiple sets of bolt three.

[0009] Preferably, a rubber pad is adhered to one end of the plate.

[0010] Preferably, one end of each of the plates is threadedly connected to a stud.

[0011] Preferably, a handwheel is connected to one end of each set of studs.

[0012] Preferably, a rubber ring is connected to one end of each set of studs.

[0013] Preferably, some of the holes are evenly distributed on the corresponding plates.

[0014] The beneficial effects of this utility model are as follows:

[0015] 1. By setting up bolt three, plate four, and the cooperation between plate three, unscrew bolt two to remove the fixation of plate four, unscrew bolt three to remove the movement restriction of plate one, move the two sets of plate one, adjust the distance between the two sets of plate one, and after plate one moves, screw bolt two into the corresponding hole two on plate three to connect plate four and plate three together. Different sized goods can be placed on plate three and plate four, and the goods are clamped by plate one and plate two. This can avoid the problem of the goods shifting during transportation, which may cause the drone's center of gravity to shift, and improve the flight stability of the drone to a certain extent.

[0016] 2. By coordinating the two plates (plate 2 and bolt 1), bolt 1 is unscrewed from plate 2, removing the restriction on plate 2. Moving plate 2 adjusts the overall length of plate 1 and plate 2, thereby changing the cargo's suspension position relative to the drone. This design not only allows for the mounting of cargo of different sizes but also adjusts the center of gravity distribution between the cargo and the drone according to actual flight mission requirements, ensuring the drone maintains good balance during flight and improving flight stability to a certain extent. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of a drone mounting device proposed in this utility model;

[0018] Figure 2 for Figure 1 Structural diagram of Hole 1, Bolt 1, and Plate 1;

[0019] Figure 3 for Figure 1 A schematic diagram of the structure of the stud, rubber ring, and handwheel;

[0020] Figure 4 for Figure 1 Structural diagrams of the middle plate body four and the groove body three;

[0021] Figure 5 for Figure 1 A schematic diagram of the structure of the rubber pad, bolt two, and groove three.

[0022] In the diagram: 1. Frame; 2. Channel 1; 3. Plate 1; 4. Channel 2; 5. Plate 2; 6. Hole 1; 7. Bolt 1; 8. Plate 3; 9. Channel 3; 10. Plate 4; 11. Hole 2; 12. Bolt 2; 13. Hole 3; 14. Bolt 3; 15. Rubber pad; 16. Stud; 17. Handwheel; 18. Rubber ring; 19. Knob. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0024] Example 1, referring to Figures 1 to 5A drone mounting device includes a frame 1, with a groove 2 at one end of the frame 1. Two sets of plates 3 are slidably connected to the groove 2. The groove 2 is a T-shaped groove that fits into the plates 3. The T-shaped groove provides horizontal sliding guidance and vertical limiting constraint for the plates 3. Even if the drone is subjected to vibration or airflow impact during flight, the plates 3 will not detach upwards or downwards, improving the safety and reliability of the structure. Both sets of plates 3 have a mounting plate at one end. Two sets of grooves 4 are connected by plates 5, and both sets of plates 5 are connected to plates 8. Each set of plates 8 has a groove 9 at one or the other end. A set of plates 4 10 is placed inside each set of grooves 3 9. Multiple sets of holes 2 11 are formed at one end of each plate 4 10 and each set of plates 3 8. Two sets of holes 2 11 on each plate 4 10 are threaded with bolts 2 12. The two sets of bolts 2 12 are threaded into the corresponding holes 2 11 on the plates 3 8. Bolt 2 12 is screwed into plate 3 8, and plate 4 10 connects plate 3 8 together, improving structural strength and providing stable support for the cargo. One end of frame 1 and the other end are connected to two sets of plates 1 3 with multiple sets of holes 3 13. Two sets of bolts 3 14 are threaded to the holes 3 13 on both sets of plates 1 3. The multiple sets of bolts 3 14 are threaded to the corresponding holes 3 13 on frame 1. Unscrewing the bolts 3 14 removes the restriction on plate 1 3. Moving plate 1 3 adjusts the distance between the two sets of plates 1 3, thereby clamping cargo of different sizes. At the same time, plate 1 3 will also move plate 3 8 through plate 2 5, adjusting the total area of ​​plate 3 8 and plate 4 10 to accommodate cargo of different sizes. By clamping the cargo, the displacement of the cargo due to airflow and other factors during transportation is avoided to a certain extent, which may cause the cargo center to shift and affect the center of the drone, thus improving the flight stability of the drone to a certain extent.

[0025] In this embodiment, multiple sets of holes 6 are provided on the two sets of plates 3 and 5. Bolts 7 are threadedly connected to the holes 6 on both sets of plates 3. The two sets of bolts 7 are respectively threaded to the corresponding holes 6 on the plates 2. A knob 19 is connected to one end of each set of bolts 7 and multiple sets of bolts 14. The knob 19 facilitates the rotation of bolts 7 and 14, allowing bolts 7 to be unscrewed and removing the restriction on plate 2. This allows adjustment of the distance between the cargo and the bottom of the drone according to actual needs, thereby adjusting the center distribution between the cargo and the drone and improving the drone's flight stability to a certain extent. A rubber pad 15 is adhered to one end of plate 4 10 to increase friction with the cargo and improve the cargo's placement stability to a certain extent. Studs 16 are threaded to one and the other ends of one set of plates 3, and studs 16 are threaded to the left and right sides of plate 3. Rotating the studs 16 can push the cargo, making it fit against plates 3 and 5. Both sets of studs 16 are connected to a handwheel 17 at one end, making it easier to rotate the studs 16. Both sets of studs 16 are also connected to a rubber ring 18 at one end to prevent friction between the studs 16 and the goods during rotation, thus minimizing damage. Holes 6 are evenly distributed on the corresponding plates 5, allowing plates 5 to be positioned in multiple positions within the grooves 4 of plates 3. For example, when fine-tuning the total length of plates 3 and 5 is required, precise adjustment can be achieved by selecting different positions of holes 6 to engage with bolts 7, avoiding adjustment errors caused by excessive hole spacing, and thus more flexibly adapting to different sizes of goods or center-of-gravity distribution requirements.

[0026] The working principle of this embodiment is as follows: In use, unscrew bolt 314 to remove the restriction on plate 13. Adjust the distance between the two sets of plates 13 according to the size of the transported goods. Unscrew bolt 17 to adjust the total length of plate 13 and plate 25 according to the size of the transported goods. By adjusting the total length of plate 13 and plate 25, the center of gravity distribution between the goods and the drone can also be adjusted, thereby improving the flight stability of the drone to a certain extent. Place plate 410 in the slot 39 of plate 38. Screw bolt 212 into hole 211. The two sets of plates 38 are connected into a whole by plate 410. Through the cooperation of hole 313 and bolt, the frame 1 can be fixed on the fixed interface at the bottom of the drone. Place the goods on plate 38 and plate 410. Rotate stud 16 to push the goods to fit against plate 13 and plate 25, thereby fixing the goods and preventing the goods from moving during transportation to a certain extent, thus improving the flight stability of the drone to a certain extent.

[0027] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A drone mounting device, comprising a frame (1), characterized in that, The frame (1) has a groove (2) at one end, and two sets of plates (3) are slidably connected to the groove (2). The groove (2) is a T-shaped groove that fits into the plate (3). A groove (4) is opened at one end of each set of plates (3). A plate (5) is movably passed through each set of grooves (4). A plate (8) is connected to each set of plates (5). A groove (9) is opened at one or the other end of each set of plates (8). The same set of plates (10) is placed in close contact within each set of grooves (9). Multiple sets of holes (11) are opened at one end of the two sets of plate three (8). Two sets of holes (11) on the plate four (10) are threadedly connected to bolts (12). The two sets of bolts (12) are threadedly connected to the corresponding holes (11) on the plate three (8). One end and the other end of the frame (1) are opened with multiple sets of holes (13) on the two sets of plate one (3). Two sets of bolts (14) are threadedly connected to the holes (13) on the two sets of plate one (3). The multiple sets of bolts (14) are threadedly connected to the corresponding holes (13) on the frame (1).

2. The UAV mounting device according to claim 1, characterized in that, The two sets of plate body one (3) and plate body two (5) have multiple sets of holes one (6). The holes one (6) on the two sets of plate body one (3) are threadedly connected to bolts one (7). The two sets of bolts one (7) are threadedly connected to the corresponding holes one (6) on the plate body two (5). The two sets of bolts one (7) and the multiple sets of bolts three (14) are all connected to a knob (19) at one end.

3. The UAV mounting device according to claim 1, characterized in that, A rubber pad (15) is attached to one end of the four (10) plates.

4. The UAV mounting device according to claim 1, characterized in that, One of the plates (3) has a stud (16) threadedly connected to one end and the other end.

5. The UAV mounting device according to claim 4, characterized in that, Both sets of studs (16) are connected to a handwheel (17) at one end.

6. The UAV mounting device according to claim 4, characterized in that, Both sets of studs (16) have a rubber ring (18) connected to one end.

7. The UAV mounting device according to claim 2, characterized in that, The holes (6) are evenly distributed on the corresponding plates (5).

Citation Information

Patent Citations

  • Unmanned aerial vehicle mounting device

    CN222347331U