Adjustable support for unmanned aerial vehicle transportation

By designing an adjustable support frame for transporting drones, and utilizing lateral and telescopic adjustment mechanisms, the frame can be quickly installed and adjusted on the drone, solving the problem of fixed installation position of traditional supports and expanding its application range.

CN223721151UActive Publication Date: 2025-12-26BEIJING OVERLOOK DRONE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520357257.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-12-26
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Most existing drone transport brackets are fixed structures with fixed installation positions, which cannot be quickly adjusted to suit different installation needs, thus limiting their application range.

Method used

Design an adjustable support frame for transporting drones, comprising a bottom support plate, a fixed frame mechanism, a lateral adjustment mechanism, and a telescopic adjustment mechanism. Through the cooperation of the lateral and telescopic adjustment mechanisms, the support frame can be quickly installed and adjusted on the drone.

Benefits of technology

This enables the bracket to be quickly and stably installed on drones of different sizes, expanding the range of applications for the bracket and solving the problem of fixed installation positions in traditional brackets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of supports, in particular to an adjustable unmanned aerial vehicle transportation support which comprises a bottom supporting frame plate, a fixing frame mechanism, a first supporting transverse plate, a transverse adjusting mechanism, a second supporting transverse plate, a telescopic adjusting mechanism and a transportation hook. A fixing frame mechanism is installed at one end of the upper portion of the bottom supporting frame plate, a first supporting transverse plate is installed at the upper end of the fixing frame mechanism, and a transverse adjusting mechanism capable of transversely moving to adjust the fixing position is installed at the position, located at the side end of the fixing frame mechanism, of the upper portion of the bottom supporting frame plate. A telescopic adjusting mechanism adjustably mounted at the bottom of the unmanned aerial vehicle is mounted at the upper ends of the first supporting transverse plate and the second supporting transverse plate; the installation position of the support can be transversely adjusted through the transverse adjusting mechanism, the telescopic adjusting mechanism can assist the transverse adjusting mechanism in adjusting the installation position in a matched mode, and when unmanned aerial vehicles of different specifications need to be used, the support can be rapidly adjusted to be stably installed on the unmanned aerial vehicles.
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Description

TECHNICAL FIELD

[0001] The utility model relates to support technical field especially, relates to adjustable unmanned plane transportation support. BACKGROUND

[0002] The support for unmanned plane transportation is the support of loading, fixing and transporting goods, and the main functions of the support include protecting the safety of the unmanned plane in the transportation process and ensuring that the unmanned plane can stably and conveniently move the goods from one place to another.

[0003] The present unmanned plane transportation support is mostly fixed structure, and the installation position is fixed. When different specifications and sizes of unmanned planes are needed, the installation position of the support on the unmanned plane cannot be quickly adjusted according to the installation needs, which further reduces the use range of the support.

[0004] Therefore, in view of the problem that the above-mentioned support is mostly fixed structure, the installation position is fixed, and the installation position on the unmanned plane cannot be quickly adjusted according to the installation needs, an adjustable unmanned plane transportation support can be designed to achieve efficient adjustment and installation. UTILITY MODEL CONTENTS

[0005] In order to overcome the problem that the traditional support is mostly fixed structure, the installation position is fixed, and the installation position on the unmanned plane cannot be quickly adjusted according to the installation needs.

[0006] The technical scheme of the utility model is as follows: the adjustable unmanned plane transportation support comprises a bottom support frame plate, a fixing frame mechanism, a first support horizontal plate, a horizontal adjustment mechanism, a second support horizontal plate, an extension adjustment mechanism and a transportation hook.

[0007] Preferably, the horizontal adjustment mechanism can be used to horizontally adjust the installation position of the support, and the extension adjustment mechanism can be used to assist the horizontal adjustment mechanism to adjust the installation position. When different specifications and sizes of unmanned planes are needed, the support can be quickly adjusted and stably installed on the unmanned plane.

[0008] As a preferred, the fixing frame mechanism comprises two installation side plates installed on the upper end of the bottom support frame plate, two groups of installation side plates are installed on the inner side of the installation side plates, a guide horizontal rod is installed on the inner side of the installation side plates, a support inclined frame rod is fixedly connected to the upper end of the guide horizontal rod, and a first fixing block is fixedly connected to the side end of the support inclined frame rod.

[0009] As preferred, the lateral adjusting mechanism comprises a protective cover plate mounted on one side of the upper end of the bottom support frame plate, a telescopic cylinder is mounted inside the protective cover plate, a linkage plate is mounted on the piston end of the telescopic cylinder, an adjusting inclined bracket rod sliding on a guide horizontal rod is mounted on the side end of the linkage plate, a second fixing block is mounted on the side end of the adjusting inclined bracket rod, an outer sleeve plate is fixedly connected outside the first fixing block, and a guide inner plate penetrating to the outside of the outer sleeve plate is slidingly connected inside the outer sleeve plate.

[0010] As preferred, a limiting sliding groove is formed on the upper surface of the bottom support frame plate, and a guide sliding block sliding inside the limiting sliding groove is fixedly connected to the lower end of the linkage plate.

[0011] As preferred, the telescopic adjusting mechanism comprises a first reinforcing block mounted on one side of the upper end of the first support horizontal plate, a second reinforcing block is mounted on one side of the upper end of the second support horizontal plate, a connecting sliding rod is fixedly connected to the side end of the second reinforcing block, and the connecting sliding rod penetrates the first reinforcing block, a sliding rail is mounted on the upper end of the first support horizontal plate and the second support horizontal plate, an adjusting sliding block is slidingly connected to the upper end of the sliding rail, a moving plate is fixedly connected to the side end of the adjusting sliding block, and adjusting plates are mounted on both sides of the moving plate.

[0012] As preferred, a positioning horizontal plate is fixedly connected to the upper end of the outer sleeve plate, and a plurality of adjusting holes with the same spacing are formed in the positioning horizontal plate.

[0013] As preferred, an outer fixed recess plate is mounted on the upper end of the first reinforcing block, an inner recess plate is slidingly connected inside the outer fixed recess plate, and the inner recess plate extends to the outside of the outer fixed recess plate, an assembly side plate is mounted on the upper end of the outer fixed recess plate and the inner recess plate, and a mounting hole is formed in the assembly side plate.

[0014] The utility model discloses a beneficial effect: utilize lateral adjusting mechanism can lateral adjusting support installation position, and utilize telescopic adjusting mechanism can assist lateral adjusting mechanism cooperation and adjust installation position, when needing to use the unmanned plane of different size, can quickly adjust and make support stable installation on unmanned plane, compared with the fixed structure of traditional support, installation position is fixed, and the installation position of unmanned plane can not be quickly adjusted according to the installation needs, and the support for unmanned plane transportation can be quickly adjusted and used. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The first three-dimensional structure schematic diagram of the adjustable unmanned plane transportation support of the utility model is shown.

[0016] Figure 2 The three-dimensional structure schematic diagram of the lateral adjusting mechanism of the adjustable unmanned plane transportation support of the utility model is shown.

[0017] Figure 3The detachable three-dimensional structure schematic view of the adjusting sliding block in the adjustable unmanned aerial vehicle transportation support is shown.

[0018] Figure 4 The three-dimensional structure schematic view of the inner recessed plate in the adjustable unmanned aerial vehicle transportation support is shown.

[0019] The figure mark explanation: 1, bottom support frame plate; 3, first support horizontal plate; 5, second support horizontal plate; 7, transportation hook; 201, installation side plate; 202, guide horizontal rod; 203, support inclined frame rod; 204, first fixed block; 401, protective cover plate; 402, telescopic cylinder; 403, linkage plate; 404, limiting sliding groove; 405, guide sliding block; 406, adjusting inclined frame rod; 407, second fixed block; 408, outer sleeve plate; 409, guide inner plate; 601, first reinforcing block; 602, second reinforcing block; 603, connecting sliding rod; 604, sliding rail; 605, adjusting sliding block; 606, positioning horizontal plate; 607, adjusting hole; 608, moving plate; 609, adjusting plate; 610, outer fixed recessed plate; 611, inner recessed plate; 612, assembly side plate; 613, mounting hole. DETAILED DESCRIPTION

[0020] The utility model is further explained below in combination with the drawings and examples.

[0021] Please refer to Figures 1-4 The utility model provides a kind of embodiment: adjustable unmanned aerial vehicle transportation support, including bottom support frame plate 1, fixed frame mechanism, first support horizontal plate 3, transverse adjusting mechanism, second support horizontal plate 5, telescopic adjusting mechanism and transportation hook 7;Bottom support frame plate 1 upper end is equipped with fixed frame mechanism, and the upper end of fixed frame mechanism is equipped with first support horizontal plate 3, and the upper portion of bottom support frame plate 1 is equipped with transverse adjusting mechanism of adjustable fixed position that can be moved transversely in fixed frame mechanism side end, and the upper end of transverse adjusting mechanism is equipped with second support horizontal plate 5, and the upper end of first support horizontal plate 3 and second support horizontal plate 5 is equipped with telescopic adjusting mechanism that can be adjusted and installed in unmanned aerial vehicle bottom, and the lower end of bottom support frame plate 1 is equipped with the transportation hook 7 that can be stably hung the goods needing transportation, using transverse adjusting mechanism can be transversely adjusted support installation position, and using telescopic adjusting mechanism can assist transverse adjusting mechanism to cooperate with adjusting installation position, when needing to use unmanned aerial vehicle of different specifications, it can be quickly adjusted to make support stable installation on unmanned aerial vehicle.

[0022] Please refer to Figure 2In the embodiment, the fixing frame mechanism comprises two mounting side plates 201 mounted on the upper end of the bottom support frame plate 1, two groups of guide cross bars 202 mounted on the inner sides of the two mounting side plates 201, support inclined frame rods 203 fixedly connected to the upper ends of the guide cross bars 202, first fixing blocks 204 fixedly connected to the side ends of the support inclined frame rods 203, a protection cover plate 401 mounted on one side of the upper end of the bottom support frame plate 1, a telescopic cylinder 402 mounted in the protection cover plate 401, a linkage plate 403 mounted on the piston end of the telescopic cylinder 402, an adjusting inclined frame rod 406 slidably mounted on the guide cross bar 202, a second fixing block 407 mounted on the side end of the adjusting inclined frame rod 406, an outer sleeve plate 408 fixedly connected to the outer side of the first fixing block 204, a guide inner plate 409 slidably connected in the outer sleeve plate 408 and extending to the outer side of the outer sleeve plate 408, a limiting sliding groove 404 formed in the upper surface of the bottom support frame plate 1, and a guide sliding block 405 fixedly connected to the lower end of the linkage plate 403 and slidably arranged in the limiting sliding groove 404.

[0023] Please refer to Figures 3-4 In the embodiment, the telescopic adjusting mechanism comprises a first reinforcing block 601 mounted on one side of the upper end of the first support horizontal plate 3, a second reinforcing block 602 mounted on one side of the upper end of the second support horizontal plate 5, a connecting sliding rod 603 fixedly connected to the side end of the second reinforcing block 602 and extending through the first reinforcing block 601, a sliding rail 604 mounted on the upper ends of the first support horizontal plate 3 and the second support horizontal plate 5, an adjusting sliding block 605 slidably connected to the upper end of the sliding rail 604, a moving plate 608 fixedly connected to the side end of the adjusting sliding block 605, adjusting plates 609 mounted on both sides of the moving plate 608, a positioning horizontal plate 606 fixedly connected to the upper end of the outer sleeve plate 408, a plurality of adjusting holes 607 of the same spacing formed in the positioning horizontal plate 606, an outer fixed recess plate 610 mounted on the upper end of the first reinforcing block 601, an inner recess plate 611 slidably connected in the outer fixed recess plate 610 and extending to the outer side of the outer fixed recess plate 610, and assembly side plates 612 mounted on the upper ends of the outer fixed recess plate 610 and the inner recess plate 611 and having mounting holes 613 formed therein.

[0024] When working, the transportation hook 7 can be used to hang and transport goods to be transported by the unmanned aerial vehicle. When the bracket is installed on the unmanned aerial vehicle, the telescopic cylinder 402 can be started to drive the linkage plate 403 to move and open the adjusting inclined frame rod 406, and the guide sliding block 405 can slide in the limiting sliding groove 404 to stabilize the movement.

[0025] And the adjusting slider 605 can slide on the slide rail 604, the bolt on the adjusting plate 609 can be inserted into the adjusting hole 607, the moving plate 608 can be stably adjusted and fixed on the positioning horizontal plate 606, and then the assembled side plate 612 on the outer fixed groove plate 610 and the upper end of the inner groove plate 611 can be matched with the unmanned aerial vehicle for use, and the fastener can be matched with the mounting hole 613 for stable assembly, further improving the use range of the support.

[0026] Through the above steps, the horizontal adjusting mechanism is arranged to horizontally adjust the mounting position of the support, and the telescopic adjusting mechanism is used to assist the horizontal adjusting mechanism to adjust the mounting position, when different specifications of unmanned aerial vehicles are needed, the support can be quickly adjusted and stably mounted on the unmanned aerial vehicle, so as to solve the problem that the conventional support is mostly fixed structure, the mounting position is fixed, and the mounting position on the unmanned aerial vehicle cannot be quickly adjusted according to the installation needs.

[0027] The embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.

Claims

1. An adjustable unmanned aerial vehicle transport support comprising a base support frame plate (1); characterized in that: It also includes fixed frame mechanism, first support horizontal plate (3), transverse adjustment mechanism, second support horizontal plate (5), telescopic adjustment mechanism and transport hook (7); the upper end of the bottom support frame plate (1) is provided with a fixed frame mechanism, the upper end of the fixed frame mechanism is provided with a first support horizontal plate (3), the lateral end of the upper end of the bottom support frame plate (1) is provided with a transverse adjustment mechanism which can move transversely to adjust the fixed position, the upper end of the transverse adjustment mechanism is provided with a second support horizontal plate (5), the upper end of the first support horizontal plate (3) and the second support horizontal plate (5) is provided with a telescopic adjustment mechanism which can be adjusted and installed at the bottom of the unmanned aerial vehicle, the lower end of the bottom support frame plate (1) is provided with a transport hook (7) which can stably hang the goods to be transported.

2. The adjustable drone transport cradle of claim 1, wherein: The fixed frame mechanism comprises two installation side plates (201) installed on the upper end of the bottom support frame plate (1), two groups of installation side plates (201) are installed on the inner side of the guide cross bar (202), the upper end of the guide cross bar (202) is fixedly connected with the support inclined frame rod (203), and the side end of the support inclined frame rod (203) is fixedly connected with the first fixed block (204).

3. The adjustable drone transport cradle of claim 2, wherein: The transverse adjustment mechanism comprises a protective cover plate (401) installed on one side of the upper end of the bottom support frame plate (1), the protective cover plate (401) is internally provided with a telescopic cylinder (402), the piston end of the telescopic cylinder (402) is provided with a linkage plate (403), the side end of the linkage plate (403) is provided with an adjustment inclined frame rod (406) which slides on the guide cross bar (202), the side end of the adjustment inclined frame rod (406) is provided with a second fixed block (407), the outer side of the first fixed block (204) is fixedly connected with an outer sleeve plate (408), and the inner side of the outer sleeve plate (408) is slidably connected with a guide inner plate (409) which penetrates to the outer side of the outer sleeve plate (408).

4. The adjustable drone transport cradle of claim 2, wherein: The upper surface of the bottom support frame plate (1) is provided with a limiting sliding groove (404), and the lower end of the linkage plate (403) is fixedly connected with a guide sliding block (405) which slides in the limiting sliding groove (404).

5. The adjustable drone transport cradle of claim 1, wherein: The telescopic adjustment mechanism comprises a first reinforcing block (601) installed on one side of the upper end of the first support horizontal plate (3), a second reinforcing block (602) installed on one side of the upper end of the second support horizontal plate (5), a connecting sliding rod (603) fixedly connected with the side end of the second reinforcing block (602) and penetrating through the first reinforcing block (601), a sliding rail (604) installed on the upper end of the first support horizontal plate (3) and the second support horizontal plate (5), a sliding block (605) slidably connected with the upper end of the sliding rail (604), a moving plate (608) fixedly connected with the side end of the sliding block (605), and adjusting plates (609) installed on both sides of the moving plate (608).

6. The adjustable drone transport cradle of claim 3, wherein: The upper end of the outer sleeve plate (408) is fixedly connected with a positioning horizontal plate (606), and the inner side of the positioning horizontal plate (606) is provided with a plurality of adjusting holes (607) with the same spacing.

7. The adjustable drone transport cradle of claim 5, wherein: The first reinforcing block (601) is provided with an outer fixed recessed plate (610) at the upper end, the inner fixed recessed plate (610) is slidably connected with an inner recessed plate (611), the inner recessed plate (611) extends to the outer side of the outer fixed recessed plate (610), and the upper end of the outer fixed recessed plate (610) and the inner recessed plate (611) is provided with an assembled side plate (612), and the inner fixed recessed plate (610) is provided with a mounting hole (613).