Unmanned aerial vehicle charging tail box suitable for battery car
By designing a drone charging tail box suitable for electric vehicles, the problems of inconvenient drone charging and carrying have been solved, enabling convenient charging and heat dissipation of drones, reducing the burden on power inspection personnel, improving inspection efficiency, and providing a light-shielding function, thus enhancing the practicality of operation.
Patent Information
- Application Number
- CN202423016968.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-06
AI Technical Summary
In traditional power line inspections, drones are inconvenient to charge and carry, which affects inspection efficiency.
Design a drone charging tail box suitable for electric vehicles, including a charging box and a backpack. The backpack can be firmly positioned on the charging box cover. The backpack has ventilation holes and a sunshade. The charging box can charge the drone and provide heat dissipation. The solar panel can charge the electric vehicle.
It solves the problems of inconvenient charging and carrying of drones, reduces the burden on power inspection personnel, improves inspection efficiency, and provides heat dissipation and shading functions, enhancing the practicality of operation.
Smart Images

Figure CN223467342U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of battery car tail box, especially to a unmanned aerial vehicle charging tail box suitable for battery car. BACKGROUND
[0002] Traditional electric power inspection adopts artificial inspection mode, in recent years, due to the rapid development of unmanned aerial vehicle technology, unmanned aerial vehicle inspection gradually replaces artificial inspection because of strong flexibility, low operation difficulty, higher inspection efficiency and other advantages, and plays an important role in electric power inspection task. When electric power maintenance personnel ride battery car to go to outdoor maintenance site and adopt unmanned aerial vehicle to carry out inspection, the electric power inspection personnel often need to carry unmanned aerial vehicle in a backpack, increase the burden of electric power inspection personnel, and are inconvenient to carry. The power consumption of unmanned aerial vehicle is huge when working, so it is necessary to frequently replace the battery and charge, which is time-consuming and laborious to go back and forth to the charging cabinet, thereby bringing inconvenience for continuous outdoor endurance use of the unmanned aerial vehicle and affecting the inspection efficiency. UTILITY MODEL CONTENTS
[0003] The utility model aims at overcoming the deficiencies in the prior art, and provides a unmanned aerial vehicle charging tail box suitable for battery car.
[0004] In order to realize the above purpose, the technical scheme of the utility model is as follows:
[0005] A unmanned aerial vehicle charging tail box suitable for battery car, comprising a charging box and a backpack, the charging box comprises a box body and a cover body, the box body is installed on the battery car, the cover body is installed on the box body through a hinge, a charging assembly is arranged on the box body, the charging assembly is connected with the battery of the battery car through an electric wire, and the charging assembly is used for charging the unmanned aerial vehicle; four accommodation notches are arranged on the cover body, the four accommodation notches are divided into two groups, the two accommodation notches in the same group are located on the two sides of the cover body, and the connecting line of the midpoints is parallel to the side edge of the cover body; two straps are arranged on the backpack, and each strap is sequentially arranged in the two accommodation notches in the same group, so that the backpack is positioned on the cover body.
[0006] As a preferred, an air outlet is arranged on the backpack, an air suction port is arranged on the cover body, the air outlet and the air suction port are communicated in the state that the backpack is positioned on the cover body, and the air suction port and the charging assembly are distributed in a staggered manner on a horizontal projection surface in the state that the cover body is covered on the box body.
[0007] As a preferred, a plurality of clamping pieces are arranged on the inner side of the cover body, the clamping pieces are installed on the inner side of the cover body, the clamping pieces comprise first clamping parts and second clamping parts, the first clamping parts and the second clamping parts are provided with clamping teeth, and the clamping teeth of the first clamping parts and the clamping teeth of the second clamping parts are oppositely arranged.
[0008] As a preferred, a sunshade is further arranged, a receiving groove is arranged on the backpack, the sunshade can be folded and received in the receiving groove, and a shadow space is formed between the sunshade and the backpack in the unfolded state of the sunshade.
[0009] As preferred, a solar panel is further included, which is installed outside the cover body and connected with the battery of the electric vehicle.
[0010] As preferred, an inclined surface is arranged on the top of the box body, which is inclined downward from the top of the box body towards the hinge.
[0011] As preferred, two recessed accommodation grooves are arranged on the box body, which are used for accommodating the shoulder straps when the backpack is positioned on the cover body and the cover body is closed with the box body.
[0012] As preferred, the box body comprises a ventilation air duct, the outlet of which is arranged on both sides of the box body, and the inlet of the ventilation air duct is arranged directly below the air suction port when the cover body is closed with the box body.
[0013] As preferred, a drawer is further included, which is connected with the box body in a drawer-pulling manner and arranged below the charging assembly and the ventilation air duct.
[0014] As preferred, a connecting plate, a locking screw and a locking nut are further included, the connecting plate is installed on the electric vehicle, the locking screw is fixedly arranged on the bottom of the box body, the locking screw is arranged through the connecting plate and locked with the locking nut, so that the box body is fixed on the electric vehicle.
[0015] Compared with the prior art, the utility model has the advantages that:
[0016] (1) The unmanned aerial vehicle charging trunk for electric vehicles provided by the utility model is designed by combining the charging box and the backpack, the backpack can be fixed on the cover body of the charging box, and the charging box can be used to charge the unmanned aerial vehicle, thereby solving the problems of inconvenient charging and carrying of the unmanned aerial vehicle during outdoor electric power inspection, reducing the burden of electric power inspection personnel and improving the inspection efficiency.
[0017] (2) The backpack of the unmanned aerial vehicle charging trunk for electric vehicles provided by the utility model is provided with a ventilation port, the charging box is provided with an air suction port and a ventilation air duct, so that the unmanned aerial vehicle can be cooled during charging by using the charging box.
[0018] (3) The backpack of the unmanned aerial vehicle charging trunk for electric vehicles provided by the utility model is further provided with a sunshade, and the electric power inspection personnel can operate in the shadow space under the sunshade after unfolding the sunshade during the inspection by using the unmanned aerial vehicle, thereby reducing the influence of outdoor strong light. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure schematic view of the utility model;
[0020] Figure 2 It is a structure schematic view of the cover body and the box body of the charging box in an open state;
[0021] Figure 3 The structure schematic diagram of the cover body and the box body of the charging box in the closed state is shown in the figure.
[0022] Figure 4 The exploded structure schematic diagram of the cover body and the box body of the charging box is shown in the figure.
[0023] Figure 5 The structure schematic diagram of the backpack is shown in the figure.
[0024] Figure 6 The structure schematic diagram of the light shield in the unfolded state is shown in the figure.
[0025] Figure 7 The principle block diagram of the utility model is shown in the figure.
[0026] The figure shows the following: 1, charging box; 11, box body; 111, charging assembly; 112, accommodation slot; 113, ventilation air duct; 1131, outlet of ventilation air duct; 1132, inlet of ventilation air duct; 114, inclined surface; 12, cover body; 121, accommodation gap; 122, air outlet; 123, clamping piece; 1231, first clamping part; 1232, second clamping part; 2, backpack; 21, shoulder strap; 22, air outlet; 23, storage groove; 3, light shield; 4, solar panel; 51, drawer; 52, buckle; 61, connecting plate; 62, locking screw; 63, locking nut. DETAILED DESCRIPTION
[0027] The utility model is further explained below in combination with the drawings and specific embodiments. The drawings of the utility model are only schematic to make it easier to understand the utility model, and the specific proportion can be adjusted according to design requirements. The relative element up-down relationship and the front / back definition of the figures described in the text should be understood by those skilled in the art as referring to the relative position of the components, so they can be reversed to show the same components, which should all belong to the range disclosed in the specification.
[0028] Reference Figures 1 to 7 The application proposes a kind of unmanned aerial vehicle charging tail box suitable for electric car, including charging box 1, backpack 2, light shield 3, solar panel 4 and drawer 51, charging box 1 includes box body 11 and cover body 12.
[0029] The box body 11 is installed on the electric vehicle through a fixing assembly. Specifically, the fixing assembly includes a connecting plate 61, a plurality of locking screws 62, and a plurality of locking nuts 63. The connecting plate 61 is installed on the electric vehicle. The locking screws 62 are fixedly arranged at the bottom of the box body 11. The locking screws 62 are arranged through the connecting plate 61 and locked with the locking nuts 63, so that the box body 11 is fixed on the electric vehicle and is firmly installed. The cover body 12 is installed on the box body 11 through a hinge. The box body 11 is provided with a lock. When the cover body 12 and the box body 11 are closed, the cover body 12 and the box body 11 are locked through the lock, so that the cover body 12 and the box body 11 remain in the closed state. The box body 11 is provided with a charging assembly 111. The charging assembly 111 is connected with the battery of the electric vehicle through an electric wire. The charging assembly 111 is used for charging the unmanned aerial vehicle. The charging assembly 111 is provided with a plurality of types of interfaces, including a USB interface and a socket. The range of the adaptive charging interfaces is wide. The cover body 12 is further provided with a solar panel 4. The solar panel 4 can be connected with the battery of the electric vehicle and can charge the battery of the electric vehicle.
[0030] Reference Figure 1 and Figure 2 The cover body 12 is provided with four accommodation notches 121. The four accommodation notches 121 are divided into two groups. The two accommodation notches 121 in the same group are located at the two sides of the cover body 12, and the connecting line of the midpoints is parallel to the side edge of the cover body 12. The backpack 2 is provided with two straps 21. Each strap 21 is sequentially arranged through the two accommodation notches 121 in the same group, so that the backpack 2 is positioned on the cover body 12, and the positioning is convenient. The inner side of the cover body 12 is further provided with a plurality of clamping pieces 123. The clamping pieces 123 are installed on the inner side of the cover body 12. The clamping pieces 123 include first clamping portions 1231 and second clamping portions 1232. The first clamping portions 1231 and the second clamping portions 1232 are provided with clamping teeth. The clamping teeth of the first clamping portions 1231 and the second clamping portions 1232 are oppositely arranged. Further, the first clamping portions 1231 and the second clamping portions 1232 are integrally formed. The first clamping portions 1231 are installed on the inner side of the cover body 12. The length of the second clamping portions 1232 is greater than that of the first clamping portions 1231, so that the second clamping portions 1232 can be held when the straps 21 are fixed, so that the first clamping portions 1231 and the second clamping portions 1232 are separated, and the fixing of the straps 21 is convenient.
[0031] In specific embodiments, reference is made to Figure 1 and Figure 2The top of the box 11 is provided with an inclined surface 114, which is inclined downward from the top of the box 11 towards the hinge, so as to form a larger space for avoiding the influence of the shoulder straps 21 on the cover 12 and the box 11 when the backpack 2 is positioned on the cover 12. The box 11 is further provided with two recessed accommodation grooves 112, which can accommodate the shoulder straps 21 when the backpack 2 is positioned on the cover 12 and the cover 12 is closed with the box 11.
[0032] In a specific embodiment, the backpack 2 is provided with an air outlet 22, and the cover 12 is provided with an air suction port 122, and a fan is arranged on the air suction port 122. When the backpack 2 is positioned on the cover 12, the air outlet 22 and the air suction port 122 are communicated. When the cover 12 is closed with the box 11, the air suction port 122 and the charging assembly 111 are distributed in a staggered manner in the horizontal projection plane. The box 11 comprises a ventilation duct 113, and the outlet 1131 of the ventilation duct is located on both sides of the box 11. When the cover 12 is closed with the box 11, the inlet 1132 of the ventilation duct is located directly below the air suction port 122. Specifically, when the fan is working, the unmanned aerial vehicle in the backpack 2 is cooled through the air outlet 22 of the backpack 2, the air suction port 122 and the ventilation duct 113, so as to avoid the influence of the heating of the charging on the performance of the unmanned aerial vehicle. The drawer 51 is connected with the box 11 in a pullable manner and is located below the charging assembly 111 and the ventilation duct 113. The drawer 51 can store articles, and the outer side of the drawer 51 is provided with a plurality of buckles 52. The fixed end of the buckle 52 is fixed to the box 11 and located below the drawer 51, and the movable end is detachably mounted on the box 11 and located above the drawer 51. When the drawer 51 is not used, the movable end of the buckle 52 is mounted on the box 11 to fix the drawer 51 in the box 11, so as to avoid the drawer 51 from sliding out of the box 11 when moving. When it is needed to store articles in the drawer 51 or take out the articles in the drawer 51, the fixed end of the buckle 52 is removed from the box 11, and the drawer 51 can be pulled out.
[0033] In a specific embodiment, referring to Figure 6 The backpack 2 is further provided with a storage groove 23, and the sunshade 3 can be folded and stored in the storage groove 23. When the sunshade 3 is unfolded, a shadow space is formed between the sunshade 3 and the backpack 2. The sunshade 3 is used for reducing the influence of strong outdoor light on the operation of the unmanned aerial vehicle.
[0034] In use, the charging assembly 111 is connected to the battery of the electric vehicle through an electric wire, the backpack 2 is placed in the back bag 2, the shoulder strap 21 of the backpack 2 is arranged in the accommodation gap 121, and the shoulder strap 21 is fixed by the clamping piece 123, so that the backpack 2 is positioned on the cover 12. The charging interface of the unmanned aerial vehicle charger is inserted on the charging assembly 111, and the unmanned aerial vehicle is charged. Then, the cover 12 is closed, and the part of the shoulder strap 21 that is longer than the charging box 1 is uniformly arranged in the accommodation slot 112 of the box body 11, so that the cover 12 and the box body 11 are closed. The fan on the cover 12 can also be connected to the charging assembly 111 to realize long-time endurance and heat dissipation for the unmanned aerial vehicle. The heat of the unmanned aerial vehicle enters the ventilation air duct 113 of the box body 11 through the air outlet 22 of the backpack 2 and the air outlet 122 of the cover 12, and is discharged from the outlet 1131 of the ventilation air duct on both sides of the box body 11. Through the combined design of the charging box 1 and the backpack 2, the backpack 2 can be fixed on the cover 12 of the charging box 1, and the charging box 1 can be used to charge the unmanned aerial vehicle in time when going to the inspection site and during the inspection process, which solves the problems of inconvenient charging and carrying of the unmanned aerial vehicle during outdoor power inspection, reduces the burden of the power inspection personnel, and improves the inspection efficiency. In the inspection site where the vehicle is not convenient to pass through, the power inspection personnel can take off the backpack 2 from the charging box 1, and go to the specific inspection site with the backpack 2 and the unmanned aerial vehicle, which is convenient to carry. Further, the solar panel 4 can be placed on the cover 12, and the solar panel 4 is connected to the battery of the electric vehicle to charge the battery of the electric vehicle. When the power inspection personnel controls the unmanned aerial vehicle by using the controller, the strong outdoor light affects the power inspection personnel to view the image and parameters on the controller, and affects the operation. At this time, the sunshade 3 can be unfolded, and the controller can be placed in the shadow space under the sunshade 3 to operate, which has strong practicability.
[0035] The above embodiments are only used to further illustrate the technical solutions of the present application, but the present application is not limited to the embodiments, and any simple modification, equivalent change and modification made according to the technical essence of the present application to the above embodiments all fall within the protection scope of the technical solutions of the present application.
Claims
1. A UAV charging tail box suitable for battery vehicles, characterized by: The utility model provides a charging box and a backpack, the charging box includes a box body and a cover, the box body is installed on the electric vehicle, the cover is installed on the box body through a hinge, the box body is provided with a charging assembly, the charging assembly is connected with the battery of the electric vehicle through an electric wire, and the charging assembly is used for charging the unmanned aerial vehicle, four accommodation notches are arranged on the cover, the four accommodation notches are divided into two groups, the two accommodation notches of the same group are located on the two sides of the cover respectively, and the connecting line of the middle point is parallel to the side of the cover, two straps are arranged on the backpack, and each strap is sequentially arranged in the two accommodation notches of the same group, so that the backpack is positioned on the cover.
2. A drone charging trunk for electric vehicles as claimed in claim 1, wherein: The backpack is provided with an air outlet, the cover is provided with an air suction port, the air outlet and the air suction port are communicated in the state that the backpack is positioned on the cover, and the air suction port and the charging assembly are distributed in a staggered manner in the horizontal projection plane in the state that the cover is combined with the box body.
3. The drone charging trunk for electric vehicles of claim 1, wherein: The inner side of the cover is provided with a plurality of clamping pieces, the clamping pieces are installed on the inner side of the cover, the clamping pieces include first clamping parts and second clamping parts, the first clamping parts and the second clamping parts are provided with clamping teeth, and the clamping teeth of the first clamping parts and the clamping teeth of the second clamping parts are oppositely arranged.
4. The drone charging trunk for electric vehicles of claim 1, wherein: The utility model also includes a sunshade, the backpack is provided with a storage groove, the sunshade can be folded and stored in the storage groove, and a shadow space is formed between the sunshade and the backpack in the unfolded state of the sunshade.
5. The drone charging trunk for electric vehicles of claim 1, wherein: The utility model also includes a solar panel, the solar panel is installed on the outer side of the cover and connected with the battery of the electric vehicle.
6. The drone charging trunk for electric vehicles of claim 1, wherein: The top of the box body is provided with an inclined surface, and the inclined surface is inclined downward from the top of the box body towards the hinge.
7. The drone charging trunk for electric vehicles of claim 1, wherein: The box body is provided with two recessed accommodation grooves, the backpack is positioned on the cover, and the accommodation grooves are used for accommodating the straps in the state that the cover is combined with the box body.
8. The drone charging trunk for electric vehicles of claim 1, wherein: The box body includes a ventilation duct, the outlet of the ventilation duct is located on the two sides of the box body, and the inlet of the ventilation duct is located directly below the air suction port in the state that the cover is combined with the box body.
9. The drone charging trunk for electric vehicles of claim 1, wherein: The utility model also includes a drawer, the drawer is connected with the box body in a drawer-pulling manner and located below the charging assembly and the ventilation duct.
10. The drone charging trunk for electric vehicles of claim 1, wherein: The utility model also includes a connecting plate, a locking screw and a locking nut, the connecting plate is installed on the electric vehicle, the locking screw is fixedly arranged on the bottom of the box body, the locking screw is arranged in the connecting plate and locked with the locking nut, so that the box body is fixed on the electric vehicle.