Unmanned aerial vehicle push-out mechanism of rescue vehicle

By designing a drone launch mechanism for a rescue vehicle, and utilizing the vehicle compartment, compartment door, guide rails, and mobile devices, multiple drones can be launched and released efficiently, solving the problem of track limitations in existing technologies and improving drone launch efficiency.

CN223521095UActive Publication Date: 2025-11-07XINHANGDA(CHONGQING)INTELLIGENT VEHICLE CO LTD
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Patent Information

Application Number
CN202423191844.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-07
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In existing drone launch mechanisms, the number of tracks inside the tail box is limited, which affects the number of drones that can be placed, and the overall output efficiency is low.

Method used

A drone launch mechanism for a rescue vehicle was designed, including a vehicle compartment, a vehicle compartment door, a guide rail, a drone launcher, and a mobile device. By combining the drone launcher with the guide rail, the mobile device enables the simultaneous launch of multiple drones, thereby improving launch efficiency.

Benefits of technology

This technology enables the simultaneous launch and flight of multiple drones, improving drone launch efficiency and solving the problem of orbital limitations in existing technologies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of unmanned aerial vehicles, in particular to a rescue vehicle unmanned aerial vehicle push-out mechanism which comprises a carriage, a carriage door, a guide sliding rail, an unmanned aerial vehicle table and a moving device, the carriage door is fixedly arranged at the open end of the carriage and rotationally connected with the carriage through hinges, and the guide sliding rail is fixedly connected with the carriage and located at the bottom of an inner cavity of the carriage. And the unmanned aerial vehicle platform is slidably connected with the guide sliding rail through a moving device, the moving device is installed on the unmanned aerial vehicle platform and drives the unmanned aerial vehicle platform to move, and the effects that the multiple unmanned aerial vehicles are placed through the unmanned aerial vehicle platform, the multiple unmanned aerial vehicles are simultaneously pushed out of the compartment through the moving device to be released, and the push-out efficiency is improved are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to unmanned plane technical field especially relates to a rescue car unmanned plane pushes out mechanism. BACKGROUND

[0002] The rescue car unmanned plane plays a vital role in emergency rescue. The rescue car unmanned plane can quickly reach the disaster site, especially in complex or difficult-to-enter areas such as forest fires, earthquake disaster areas or flood disaster areas, to provide timely on-site information for rescue personnel.

[0003] The existing unmanned plane pushing-out mechanism includes a placing tail box and a track, one or more tracks are installed in the placing tail box, and when the unmanned plane is pushed out, the unmanned plane is pushed out along the slide rail. Simple structure, easy to maintain, and can deploy the unmanned plane to the designated position in a short time.

[0004] But in the above-mentioned technology, the unmanned plane is placed along the track and output along the track, but the track provided in the placing tail box is limited, which affects the number of placed unmanned planes, and the overall output is slow. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a rescue car unmanned plane pushing-out mechanism, which solves the problem of limited track provided in the existing placing tail box, which affects the number of placed unmanned planes, and the overall output is slow.

[0006] To achieve the above-mentioned purpose, the utility model provides a rescue car unmanned plane pushing-out mechanism, which comprises a car body, a car body door, a guide slide rail, an unmanned plane platform and a moving device, the opening end of the car body is fixedly provided with the car body door, the car body door is rotatably connected with the car body through a hinge, the guide slide rail is fixedly connected with the car body and located at the bottom of the inner cavity of the car body, the unmanned plane platform is slidably connected with the guide slide rail through the moving device, the moving device is installed on the unmanned plane platform and drives the movement of the unmanned plane platform.

[0007] Among them, the unmanned plane platform comprises a frame and a partition plate, the frame is slidably connected with the guide slide rail through the moving device and located at the upper end of the guide slide rail, and the partition plate is fixedly connected with the frame and located in the frame.

[0008] Among them, the moving device comprises a mounting bracket and a roller, the mounting bracket is fixedly connected with the frame and located at the bottom of the frame, and the roller is rotatably connected with the mounting bracket through a rotating shaft and located in the mounting bracket.

[0009] Among them, the moving device further comprises a handle, the handle is fixedly connected with the frame and located at both ends of the frame.

[0010] The buffer pad is fixedly connected with the compartment and located on the side of the inner side wall of the compartment away from the compartment door.

[0011] The rescue vehicle unmanned aerial vehicle pushing-out mechanism of the utility model, multiple unmanned aerial vehicles are placed on the unmanned aerial vehicle platform, when the unmanned aerial vehicles need to work, the compartment door is opened, the unmanned aerial vehicle platform loaded with the unmanned aerial vehicles is slid on the guide slide rail through the moving device, the guide slide rail guides and outputs the unmanned aerial vehicle platform, the unmanned aerial vehicle platform loaded with the unmanned aerial vehicles is pushed out of the compartment, and then the unmanned aerial vehicles are released, the rescue vehicle unmanned aerial vehicle pushing-out mechanism realizes that multiple unmanned aerial vehicles are placed on the unmanned aerial vehicle platform, and the multiple unmanned aerial vehicles are simultaneously pushed out of the compartment for release through the moving device, and the pushing-out efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced.

[0013] Figure 1 is a structural schematic view of the rescue vehicle unmanned aerial vehicle pushing-out mechanism of the utility model.

[0014] Figure 2 is an internal connection schematic view of the rescue vehicle unmanned aerial vehicle pushing-out mechanism of the utility model.

[0015] Figure 3 is a structural schematic view of the guide slide rail, the unmanned aerial vehicle platform and the moving device of the utility model.

[0016] Figure 4 is a connection schematic view of the guide slide rail and the moving device of the utility model.

[0017] In the figure: 1-compartment, 2-compartment door, 3-guide slide rail, 4-unmanned aerial vehicle platform, 5-moving device, 41-frame, 42-separation plate, 51-mounting frame, 52-roller, 53-handle, 6-buffer pad. DETAILED DESCRIPTION

[0018] The embodiments of the utility model will be described in detail below, examples of the embodiments are shown in the drawings, the embodiments described below by referring to the drawings are exemplary and are intended to explain the utility model, and cannot be understood as the limitation of the utility model.

[0019] First embodiment:

[0020] Please refer to Figures 1 to 3 , wherein Figure 1 is a structural schematic view of the rescue vehicle unmanned aerial vehicle pushing-out mechanism of the utility model, Figure 2is the inside connection schematic view of the unmanned aerial vehicle pushing-out mechanism of the rescue vehicle, Figure 3 is the structure schematic view of the guide slide rail, the unmanned aerial vehicle platform and the moving device, Figure 4 is the connection schematic view of the guide slide rail and the moving device.

[0021] The utility model relates to a rescue vehicle unmanned aerial vehicle pushing-out mechanism: including compartment 1, compartment door 2, guide slide rail 3, unmanned aerial vehicle platform 4 and moving device 5, unmanned aerial vehicle platform 4 includes frame 41 and partition 42, moving device 5 includes mounting bracket 51, gyro wheel 52 and handle 53, the rescue vehicle unmanned aerial vehicle pushing-out mechanism still includes buffer pad 6. Through foregoing scheme, the problem that the track that the existing placement tail box has is limited, affects the unmanned aerial vehicle number of placement, and the whole output is slow is solved, it can be understood that foregoing scheme can place multiple unmanned aerial vehicles through unmanned aerial vehicle platform 4, and multiple unmanned aerial vehicles are pushed out compartment 1 simultaneously through moving device 5 and are released, improve the pushing-out efficiency.

[0022] In the embodiment, the opening end of the compartment 1 is fixedly provided with the compartment door 2, the compartment door 2 is connected with the compartment 1 through a hinge, the guide slide rail 3 is fixedly connected with the compartment 1 and located at the bottom of the inner cavity of the compartment 1, the unmanned aerial vehicle platform 4 is slidingly connected with the guide slide rail 3 through the moving device 5, the moving device 5 is installed on the unmanned aerial vehicle platform 4 and drives the unmanned aerial vehicle platform 4 to move. The compartment 1 is a cuboid structure, the cuboid inner cavity provides a placing condition for the unmanned aerial vehicle platform 4, the tail end of the compartment 1 is provided with an opening, and two compartment doors 2 are oppositely arranged at the opening end, the two compartment doors 2 are connected with the left and right ends of the compartment 1 through a hinge, and the compartment door 2 has a hidden door design, the bottom of the inner side wall of the compartment 1 is symmetrically provided with two guide slide rails 3, the guide slide rail 3 is provided with a groove with an opening at the top to provide a sliding installation condition for the moving device 5, one end of the two guide slide rails 3 close to the compartment door 2 is provided with an opening, and the opening end is an inclined surface, so that when the moving device 5 drives the unmanned aerial vehicle platform 4 to move out of the compartment 1, the difference is reduced, the unmanned aerial vehicle is stably pushed out, and the moving device 5 is fixedly installed on the bottom of the two sides of the unmanned aerial vehicle platform 4 and is limitingly connected with the two guide slide rails 3 to provide a limit placing and guiding moving-out condition for the unmanned aerial vehicle platform 4, and the unmanned aerial vehicle platform 4 is used for placing unmanned aerial vehicles. Therefore, multiple unmanned aerial vehicles are loaded and placed on the unmanned aerial vehicle platform 4, when the unmanned aerial vehicle needs to work, the opening compartment door 2 is opened, the unmanned aerial vehicle platform 4 loaded with the unmanned aerial vehicle is slid on the guide slide rail 3 through the moving device 5, the guide slide rail 3 guides and outputs the unmanned aerial vehicle platform 4, the unmanned aerial vehicle platform 4 loaded with the unmanned aerial vehicle is pushed out of the compartment 1, and then the unmanned aerial vehicle is released. The unmanned aerial vehicle pushing-out mechanism realizes that multiple unmanned aerial vehicles are placed on the unmanned aerial vehicle platform 4, and multiple unmanned aerial vehicles are simultaneously pushed out of the compartment 1 by the moving device 5 to be released, thereby improving the pushing-out efficiency.

[0023] The frame 41 is slidingly connected with the guide slide rail 3 through the moving device 5 and located at the upper end of the guide slide rail 3, and the partition plate 42 is fixedly connected with the frame 41 and located in the frame 41. The frame 41 is a rectangular frame structure, multiple partition plates 42 are uniformly arranged in the frame 41, the frame 41 is divided into multiple spaces for placing unmanned aerial vehicles through the multiple partition plates 42, and the upper end of each partition plate 42 is used for placing an unmanned aerial vehicle, so that the frame 41 and the multiple partition plates 42 form the unmanned aerial vehicle platform 4 to provide a placing condition for multiple unmanned aerial vehicles.

[0024] Secondly, the mounting frame 51 is fixedly connected with the frame 41 and located at the bottom of the frame 41; the roller 52 is rotatably connected with the mounting frame 51 through a rotating shaft and located in the mounting frame 51. The cross section of the mounting frame 51 is U-shaped, the width of the mounting frame 51 matches the width of the guide slide rail 3, the U-shaped groove width of the mounting frame 51 matches the roller 52, the roller 52 is located in the U-shaped groove of the mounting frame 51 and rotatably connected through a rotating shaft, the roller 52 and the mounting frame 51 form the moving device 5, the rotation of the roller 52 provides conditions for the movement of the unmanned aerial vehicle platform 4, and the mounting frame 51 matches the sliding groove of the guide slide rail 3 to limit the placement and movement of the unmanned aerial vehicle platform 4 in the compartment 1.

[0025] Meanwhile, the handle 53 is fixedly connected with the frame 41 and located at both ends of the frame 41. The number of the handle 53 is four, which are fixedly installed at the front and rear ends of the frame 41, and symmetrically arranged at both ends. The handle 53 provides conditions for manual pushing and pulling, facilitating the force to push the unmanned aerial vehicle platform 4 to move.

[0026] Then, the buffer pad 6 is fixedly connected with the compartment 1 and located on the side of the inner side wall of the compartment 1 away from the compartment door 2. The buffer pad 6 is made of rubber material and has a buffering function. The buffer pad 6 has a rectangular structure and is fixedly installed at the end of the inner side wall of the compartment 1 and corresponds to the position of the unmanned aerial vehicle platform 4, buffers the retraction and placement of the unmanned aerial vehicle platform 4, and avoids the collision between the unmanned aerial vehicle platform 4 and the inner wall of the compartment 1.

[0027] When the unmanned aerial vehicle pushing-out mechanism of the rescue vehicle is used, multiple unmanned aerial vehicles are loaded and placed on the unmanned aerial vehicle platform 4. When the unmanned aerial vehicle needs to work, the compartment door 2 is opened, the unmanned aerial vehicle platform 4 loaded with the unmanned aerial vehicle is slid on the guide slide rail 3 through the moving device 5, the guide slide rail 3 guides and outputs the unmanned aerial vehicle platform 4, the unmanned aerial vehicle platform 4 loaded with the unmanned aerial vehicle is pushed out of the compartment 1, and then the unmanned aerial vehicle is released. The unmanned aerial vehicle pushing-out mechanism of the rescue vehicle realizes that multiple unmanned aerial vehicles are placed on the unmanned aerial vehicle platform 4, and multiple unmanned aerial vehicles are simultaneously pushed out of the compartment 1 for release through the moving device 5, thereby improving the pushing-out efficiency.

[0028] The above only discloses one or more preferred embodiments of the present application, which cannot be used to limit the scope of the rights of the present application. Those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the present application still belong to the scope covered by the present application.

Claims

1. A rescue vehicle drone push-out mechanism, characterized by, Including car, car door, guide slide rail, unmanned aerial vehicle platform and moving device, the open end of the car is fixedly provided with the car door, the car door is rotatably connected with the car through a hinge, the guide slide rail is fixedly connected with the car and located at the bottom of the inner cavity of the car, the unmanned aerial vehicle platform is slidably connected with the guide slide rail through the moving device, the moving device is installed on the unmanned aerial vehicle platform and drives the unmanned aerial vehicle platform to move.

2. The unmanned aerial vehicle pushing-out mechanism of the rescue vehicle according to claim 1, wherein, The unmanned aerial vehicle platform comprises a frame and a partition plate, the frame is slidably connected with the guide slide rail through the moving device and located at the upper end of the guide slide rail, and the partition plate is fixedly connected with the frame and located in the frame.

3. The unmanned aerial vehicle pushing-out mechanism of the rescue vehicle according to claim 2, wherein, The moving device comprises a mounting bracket and a roller, the mounting bracket is fixedly connected with the frame and located at the bottom of the frame, and the roller is rotatably connected with the mounting bracket through a rotating shaft and located in the mounting bracket.

4. The unmanned aerial vehicle pushing-out mechanism of the rescue vehicle according to claim 3, wherein, The moving device further comprises a handle, the handle is fixedly connected with the frame and located at both ends of the frame.

5. The unmanned aerial vehicle pushing-out mechanism of the rescue vehicle according to claim 1, wherein, The unmanned aerial vehicle pushing-out mechanism of the rescue vehicle further comprises a buffer pad, the buffer pad is fixedly connected with the car and located on the side of the inner side wall of the car away from the car door.