Unmanned aerial vehicle two-in-one logistics box capable of carrying battery
By adding a battery pack to the drone logistics box, the problem of insufficient power is solved, and the delivery efficiency and utilization rate of the drone are improved.
Patent Information
- Application Number
- CN202520237004.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing drone logistics boxes cannot power the drones, resulting in frequent battery replacements when power is insufficient, which affects delivery efficiency.
Multiple battery packs are added to the drone logistics box to provide power and recharge the drone when it is not in use, supporting drone charging operations.
This reduces the frequency of staff replacing drone batteries, improving drone utilization and delivery efficiency.
Smart Images

Figure CN223865404U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of unmanned aerial vehicle logistics boxes, specifically to a kind of unmanned aerial vehicle two-in-one logistics box of portable battery. BACKGROUND
[0002] With the acceleration of pace of life, more and more people meet daily needs through online shopping, and with the rise of online shopping, the objects to be delivered also increase, and in some cases, there is a certain uncertainty in manual delivery, so the unmanned delivery of express delivery logistics transportation mode appears, which can not only be more rapid and accurate, but also greatly save the cost of manpower, and the logistics box is a kind of accessory commonly used in unmanned aerial vehicle delivery, which can help unmanned aerial vehicle to deliver objects.
[0003] The existing Chinese patent technology 201922074899.2 discloses an unmanned aerial vehicle intelligent logistics equipment based on standardized modules, which includes a logistics box, the logistics box includes a box body and a movable box door, the box body and the movable box door are connected by a sliding rail, the box body top is provided with a set of unmanned aerial vehicle suspension device, the box body bottom is provided with a base, the box body is embedded with a first NFC tag, and the movable box door is provided with a first electromagnetic lock. The box body is a rectangular inner column structure. The box body is pasted with a thin layer of foam. It also includes a standard box loaded in the logistics box for storing express delivery objects, the standard box includes a box body and a movable box door, the movable box door is connected with the box body by a shaft, the box body is embedded with a second NFC tag, and the movable box door bottom is provided with a second electromagnetic lock.
[0004] Although the existing technology can effectively improve the centralization degree and departure speed of trunk transportation, avoid the secondary packing of branch transportation goods, speed up the transfer speed, reduce the redundancy of end transportation space and the waste of transportation capacity, and provide the possibility of standardization, unmanned and effective control of the whole process of unmanned aerial vehicle logistics "trunk, branch and end", and improve the efficiency of unmanned aerial vehicle logistics delivery, the logistics box cannot supply power to the unmanned aerial vehicle, as the unmanned aerial vehicle is prone to power shortage during delivery, the staff needs to replace the battery of the unmanned aerial vehicle frequently, and the logistics box does not have charging function, so it cannot charge the unmanned aerial vehicle, which is inconvenient. UTILITY MODEL CONTENTS
[0005] The utility model aims at the deficiencies and defects in the prior art, and provides a kind of unmanned aerial vehicle two-in-one logistics box of portable battery, multiple battery groups are additionally arranged on the logistics box, which supply power to the unmanned aerial vehicle, so that the logistics box can carry objects and charge the unmanned aerial vehicle during transportation, thereby reducing the frequency of replacing power supply battery group for the unmanned aerial vehicle by staff, and the battery can be recharged when the logistics box is idle, further improving the utilization rate and delivery efficiency of the unmanned aerial vehicle.
[0006] To achieve the above object, the utility model discloses the following technical scheme is: a portable battery unmanned plane two in one logistics box, it includes top cover subassembly 3, object placing box 6 and side edge support plate 7, the side edge support plate 7 is equipped with two, and the top of two side edge support plates 7 is connected with the both sides of top cover subassembly 3, and the state display screen 4 is installed on the one end surface of top cover subassembly 3, and the inside of top cover subassembly 3 is installed with control mainboard, and unmanned plane charging end 12 is installed on control mainboard, two side edge support plates 7 are installed with two unmanned plane storage battery 9, and box body clamping mechanism 1 and positioning pipe body 11 are installed on the both sides of two side edge support plates 7, and positioning pipe body 11 is located the outside of box body clamping mechanism 1, the upper and lower two sides of side edge support plate 7 are all set up with grabbing recess, and the grabbing recess of upper side is installed with grabbing lock catch mechanism 2, and the bottom grabbing U-shaped frame 8 is installed at the grabbing recess of lower side, and the outside of two side edge support plates 7 is all installed with protective cover plate 13, and object placing box 6 is arranged between two side edge support plates 7 and the lower end of top cover subassembly 3.
[0007] Further, the both sides of the two side edge support plates 7 are installed with reinforcing cross plates 5.
[0008] Further, the side edge support plate 7 is installed with a battery support 10 for supporting and fixing the unmanned plane storage battery 9.
[0009] Further, the box body clamping mechanism 1 comprises an opening and closing motor 1-2, the opening and closing motor 1-2 is provided with a motor wire 1-1, and a mounting T-shaped bracket 1-3 is installed on one side of the opening and closing motor 1-2, and an opening and closing clamping block 1-4 is installed on the output end of the opening and closing motor 1-2.
[0010] Further, the grabbing lock catch mechanism 2 comprises a grabbing lock catch 2-1, one end of the grabbing lock catch 2-1 is provided with a lock catch mounting bracket 2-3, and a lock catch end 2-2 is installed on the upper side of the grabbing lock catch 2-1.
[0011] Further, the top cover subassembly 3 comprises a bottom connecting bracket 3-3, the top plate 3-1 is installed on the top of the bottom connecting bracket 3-3, and a charging opening 3-2 is formed in the middle of the top plate 3-1.
[0012] Further, the both sides of the object placing box 6 are both provided with box body recesses 601.
[0013] Further, the side edge support plate 7 comprises a side plate main body 7-3 and a side plate frame 7-4, the side plate frame 7-4 is fixedly connected to the side edge of the outer end of the side plate main body 7-3, a clamping through hole 7-2 is formed in the side plate main body 7-3, positioning holes 7-1 are formed in the side edges of the upper and lower ends of the side plate frame 7-4, and grabbing recesses are formed in the middle of the upper and lower ends of the side plate frame 7-4.
[0014] Further, the positioning tube body 11 is composed of lower positioning tubes 11-1 and upper positioning tubes 11-2, the lower positioning tubes 11-1 and the upper positioning tubes 11-2 are all provided with four, and two are a group and are arranged at the upper and lower ends of the side edges of the side edge support plates 7.
[0015] After the above technical scheme is adopted, the utility model has the beneficial effects that: a plurality of battery packs are additionally arranged on the logistics box, and the battery packs supply power for the unmanned aerial vehicle, so that the logistics box can carry objects and charge the unmanned aerial vehicle during transportation operation, thereby reducing the frequency of replacing the power supply battery pack of the unmanned aerial vehicle by the staff, and the battery can be recharged when the logistics box is idle, further improving the utilization rate and transportation efficiency of the unmanned aerial vehicle. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.
[0017] Figure 1 It is the structural schematic diagram of the utility model.
[0018] Figure 2 It is the second angle schematic diagram of the utility model.
[0019] Figure 3 It is based on Figure 1 The structural schematic diagram of the protective cover plate is removed.
[0020] Figure 4 It is the structural schematic diagram of the box body clamping mechanism in the utility model.
[0021] Figure 5 It is the structural schematic diagram of the grabbing lock catch mechanism in the utility model.
[0022] Figure 6 It is the structural schematic diagram of the top cover assembly in the utility model.
[0023] Figure 7 It is the structural schematic diagram of the object placing box in the utility model.
[0024] Figure 8 It is the structural schematic diagram of the side edge support plate in the utility model.
[0025] The reference signs are explained as follows: box body clamping mechanism 1, grabbing lock mechanism 2, top cover assembly 3, state display screen 4, reinforcing cross plate 5, object placing box 6, side support plate 7, bottom grabbing U-shaped frame 8, unmanned aerial vehicle storage battery 9, battery support 10, positioning pipe body 11, unmanned aerial vehicle charging end 12, protective cover plate 13, motor wire 1-1, opening and closing motor 1-2, mounting T-shaped frame 1-3, opening and closing clamping block 1-4, grabbing lock piece 2-1, lock end 2-2, lock mounting frame 2-3, top plate 3-1, charging opening 3-2, bottom connecting frame 3-3, box body groove 601, positioning hole 7-1, clamping through hole 7-2, side plate body 7-3, side plate frame 7-4, lower positioning pipe 11-1, upper positioning pipe 11-2. DETAILED DESCRIPTION
[0026] Referring to Figures 1-8 The technical scheme adopted in the specific embodiment is shown as follows: it comprises a top cover assembly 3, an object placing box 6 and two side support plates 7, the upper sides of the two side support plates 7 are connected to the two sides of the top cover assembly 3, a state display screen 4 is installed on one end surface of the top cover assembly 3, a control mainboard is installed in the top cover assembly 3, an unmanned aerial vehicle charging end 12 is installed on the control mainboard, two unmanned aerial vehicle storage batteries 9 are installed on each of the two side support plates 7, box body clamping mechanisms 1 and positioning pipe bodies 11 are installed on the two sides of each of the two side support plates 7, the positioning pipe bodies 11 are located outside the box body clamping mechanisms 1, grabbing recesses are formed on the upper and lower sides of each of the two side support plates 7, a grabbing lock mechanism 2 is installed in the upper grabbing recess, a bottom grabbing U-shaped frame 8 is installed in the lower grabbing recess, protective cover plates 13 are installed on the outer sides of the two side support plates 7, and the object placing box 6 is arranged between the two side support plates 7 and at the lower end of the top cover assembly 3.
[0027] More specifically, reinforcing cross plates 5 are installed between the two sides of each of the two side support plates 7. The reinforcing cross plates 5 are fixedly connected to the side support plates 7, which can increase the stability between the two side support plates 7.
[0028] More specifically, battery supports 10 for supporting and fixing the unmanned aerial vehicle storage batteries 9 are installed on the side support plates 7.
[0029] More specifically, the box body clamping mechanism 1 comprises an opening and closing motor 1-2, the opening and closing motor 1-2 is provided with a motor wire 1-1, and a T-shaped mounting bracket 1-3 is mounted on one side of the opening and closing motor 1-2. The output end of the opening and closing motor 1-2 is provided with an opening and closing clamping block 1-4. The box body clamping mechanism 1 is installed on the side support plate 7 through the T-shaped mounting bracket 1-3, and is electrically connected with the control mainboard in the top cover assembly 3 through the motor wire 1-1. When the opening and closing motor 1-2 receives a signal, the opening and closing clamping block 1-4 will be controlled to rotate, and the opening and closing clamping block 1-4 is used to control the fixing or loosening of the object placing box 6.
[0030] More specifically, the grabbing lock mechanism 2 comprises a grabbing lock 2-1, one end of the grabbing lock 2-1 is provided with a lock mounting bracket 2-3, and a lock end 2-2 is mounted above the grabbing lock 2-1. When the unmanned aerial vehicle needs to be connected, the grabbing lock of the unmanned aerial vehicle will be aligned with the grabbing lock mechanism 2, and the lock end 2-2 of the grabbing lock mechanism 2 is used to lock, so as to complete the combination and installation of the unmanned aerial vehicle and the logistics box. The grabbing lock mechanism 2 is installed on the side support plate 7 through the lock mounting bracket 2-3.
[0031] More specifically, the top cover assembly 3 comprises a bottom connecting bracket 3-3, and the top plate 3-1 is installed on the top of the bottom connecting bracket 3-3. The top plate 3-1 is provided with a charging opening 3-2 in the middle. The charging opening 3-2 is convenient for connecting the unmanned aerial vehicle with the unmanned aerial vehicle charging end 12, so that the logistics box can charge the unmanned aerial vehicle.
[0032] More specifically, the object placing box 6 is provided with a box body groove 601 on both sides. The box body groove 601 is used to cooperate with the opening and closing clamping block 1-4, so that the box body clamping mechanism 1 can fix the object placing box 6.
[0033] More specifically, the side support plate 7 comprises a side plate body 7-3 and a side plate frame 7-4, the side plate frame 7-4 is fixedly connected to the side edge of the outer end of the side plate body 7-3, the side plate body 7-3 is provided with a clamping hole 7-2, the side plate frame 7-4 is provided with a positioning hole 7-1 on the side edges of the upper and lower ends, and a grabbing groove is formed in the middle of the upper and lower ends of the side plate frame 7-4. The positioning hole 7-1 is used to cooperate with the positioning pipe body 11, and the clamping hole 7-2 is convenient for the opening and closing clamping block 1-4 to perform related operations.
[0034] More specifically, the positioning tube body 11 is composed of a lower positioning tube 11-1 and an upper positioning tube 11-2, and the lower positioning tube 11-1 and the upper positioning tube 11-2 are both provided with four, and two are a group respectively arranged at the upper and lower ends of the side of the two side support plates 7. The lower positioning tube 11-1 is convenient for fixing the position of the base, so that the base can be better grabbed to the bottom grabbing U-shaped frame 8, so as to separate the unmanned aerial vehicle from the logistics box, and the upper positioning tube 11-2 is convenient for positioning the unmanned aerial vehicle, so that the unmanned aerial vehicle can better align the logistics box and the grabbing lock mechanism 2, and then the unmanned aerial vehicle and the logistics box are convenient for installation and combination.
[0035] The working principle of the utility model: when the unmanned aerial vehicle needs to transport the object, the staff can place the object in the object placing box 6, then place the object placing box 6 containing the object between the two side support plates 7, after placing the object placing box 6, the box body clamping mechanism 1 will drive the opening and closing clamping block 1-4 to rotate, the opening and closing clamping block 1-4 is clamped in the box body groove 601, and then the object placing box 6 is fixed, then the staff can run the unmanned aerial vehicle above the top cover assembly 3, and position the unmanned aerial vehicle and the logistics box through the four upper positioning tubes 11-2, then lock the unmanned aerial vehicle through the grabbing lock mechanism 2, complete the installation of the unmanned aerial vehicle and the logistics box, when the unmanned aerial vehicle transports the object to the designated place, the opening and closing motor 1-2 will reverse rotate the opening and closing clamping block 1-4, so that the opening and closing clamping block 1-4 is separated from the box body groove 601, at this time, the user can take down the object placing box 6 and take the object, wherein, when the unmanned aerial vehicle is idle and waits or the logistics box needs to be charged, the lower positioning tube 11-1 is convenient for positioning the logistics box and the charging base, and the bottom grabbing U-shaped frame 8 is used to grab and fix the logistics box, and the state display screen 4 can be used to display various states of the logistics box, which is convenient for the staff to check.
[0036] The above is only used to illustrate the technical scheme of the utility model, not limit, other modifications or equivalent replacements of the technical scheme of the utility model made by the ordinary skilled in the art should be covered in the scope of the claims of the utility model.
Claims
1. A dual-purpose (drone and drone) logistics box with a portable battery, characterized in that: It includes a top cover assembly (3), an object placement box (6), and side support plates (7). Two side support plates (7) are provided, and their upper surfaces are connected to both sides of the top cover assembly (3). A status display screen (4) is installed on one end face of the top cover assembly (3), and a control motherboard is installed inside the top cover assembly (3). A drone charging port (12) is installed on the control motherboard. Two drone batteries (9) are installed on each of the two side support plates (7), and the two side support plates (7)... Box engagement mechanism (1) and positioning tube (11) are installed on both sides. The positioning tube (11) is located on the outside of the box engagement mechanism (1). The side support plate (7) has gripping grooves on both the upper and lower sides. The upper gripping groove is equipped with a gripping lock mechanism (2), and the lower gripping groove is equipped with a bottom gripping U-shaped frame (8). The outer sides of both side support plates (7) are equipped with protective covers (13). The object placement box (6) is located between the two side support plates (7) and the lower end of the top cover assembly (3).
2. The dual-purpose (drone and drone) logistics box with a portable battery according to claim 1, characterized in that: A reinforcing cross plate (5) is installed between the two sides of the two side support plates (7).
3. The dual-purpose (drone and drone) logistics box with a portable battery according to claim 1, characterized in that: A battery bracket (10) for supporting and fixing the UAV battery (9) is installed on the side support plate (7).
4. The dual-purpose (drone and drone) logistics box with a portable battery according to claim 1, characterized in that: The box locking mechanism (1) includes an opening and closing motor (1-2), the opening and closing motor (1-2) is provided with motor wires (1-1), and a mounting T-shaped bracket (1-3) is installed on one side of the opening and closing motor (1-2). An opening and closing block (1-4) is installed on the output end of the opening and closing motor (1-2).
5. A dual-purpose (drone and drone) logistics box with a portable battery as described in claim 1, characterized in that: The gripping and locking mechanism (2) includes a gripping and locking component (2-1), one end of which is provided with a locking mounting bracket (2-3), and a locking end (2-2) is installed above the gripping and locking component (2-1).
6. The dual-purpose (drone and drone) logistics box with a portable battery according to claim 1, characterized in that: The top cover assembly (3) includes a bottom connecting frame (3-3), and a top plate (3-1) is installed on the top of the bottom connecting frame (3-3). A charging opening (3-2) is provided in the middle of the top plate (3-1).
7. A dual-purpose (drone and drone) logistics box with a portable battery as described in claim 1, characterized in that: The object placement box (6) has a box body groove (601) on both sides.
8. A dual-purpose (drone and drone) logistics box with a portable battery according to claim 1, characterized in that: The side support plate (7) includes a side plate body (7-3) and a side plate frame (7-4). The side plate frame (7-4) is fixedly connected to the side of the outer end of the side plate body (7-3). The side plate body (7-3) has a snap-fit through hole (7-2). The side plate frame (7-4) has a positioning hole (7-1) on the upper and lower sides. The side plate frame (7-4) has a gripping groove in the middle of the upper and lower sides.
9. A dual-purpose (drone and drone) logistics box with a portable battery according to claim 1, characterized in that: The positioning tube body (11) is composed of a lower positioning tube (11-1) and an upper positioning tube (11-2). There are four lower positioning tubes (11-1) and four upper positioning tubes (11-2), which are arranged in pairs at the upper and lower ends of the two side support plates (7).
Citation Information
Patent Citations
Unmanned aerial vehicle intelligent logistics equipment based on standardization module
CN211686308U