Unmanned aerial vehicle transfer bin and vehicle

By employing a guiding component design in the drone transfer bay, the bay door is made to stay close to the bay wall during rotation, thus solving the problem of large space occupation after the bay door is opened and improving the efficiency of use in space-constrained environments.

CN223467565UActive Publication Date: 2025-10-24HANGZHOU YIJIU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423107067.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-10-24
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing drone transfer warehouses occupy a large amount of space when the doors are open, which affects overall operational efficiency, especially in environments with limited space resources.

Method used

The design employs two doors and guiding components. The first guiding component limits the distance between the door and the compartment body, while the second guiding component determines the rotation center position of the door. Through the cooperation of the guiding components, the door is brought close to the compartment wall during rotation, reducing space occupation.

Benefits of technology

It effectively reduces the space occupied after the door is opened, making it easier to use in confined spaces and improving operational flexibility and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an unmanned aerial vehicle transfer bin and a vehicle, and relates to the technical field of unmanned aerial vehicle transportation, the unmanned aerial vehicle transfer bin comprises a bin body, the bin body comprises a bottom wall and a bin wall, and the bottom wall and the bin wall define a containing cavity; the two bin doors are used for covering the containing cavity, the multiple first guide assemblies and the multiple second guide assemblies; according to the technical scheme, the first guide assembly can limit the distance between the bin door and the bin body, the second guide assembly is rotationally connected to one side of the bin door, the position of the rotation center of the bin door can be determined by the position of the second guide assembly, and the inclination angle of the bin door can be guided by matching with the first guide assembly; the second guide assembly slides relative to the bin wall, the rotation center of the bin door can be driven to ascend and descend, the distance between the rotation center and the bin wall is limited, the first guide assembly and the second guide assembly are matched to enable the bin door to be close to the bin wall after being opened, the occupied space is reduced, and use in some special environments is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to unmanned plane transportation technical field, especially unmanned plane transfer storehouse and traffic means. BACKGROUND

[0002] In the current unmanned plane transfer storehouse design, the opening mode of the storehouse door mostly adopts the traditional rotating mechanism, that is, the storehouse door is usually rotated to the top of the transfer storehouse and laid flat after being opened. Although this design is simple and intuitive, it has a significant space occupation problem in actual application. Especially in the environment with limited space resources, such as emergency rescue site, narrow site operation or urban dense area, the storehouse door laid flat will greatly limit the utilization of the surrounding space of the unmanned plane transfer storehouse, may hinder the entry and operation of other equipment, and even affect the overall operation efficiency. SUMMARY

[0003] The main purpose of the utility model is to provide an unmanned plane transfer storehouse and traffic means, which aims to solve the problem of large space occupied by the storehouse door after being opened in the prior art.

[0004] To achieve the above-mentioned purpose, the unmanned plane transfer storehouse provided by the utility model comprises:

[0005] A storehouse body comprising a bottom wall and a storehouse wall connected to the bottom wall, and the bottom wall and the storehouse wall jointly form a containing cavity;

[0006] Two storehouse doors movably connected to the storehouse body to cover the containing cavity;

[0007] A plurality of first guide assemblies, one side of the first guide assembly being rotatably connected to the storehouse wall and the other side being slidably connected to the storehouse door to guide the rotation of the storehouse door;

[0008] A plurality of second guide assemblies, the two storehouse doors being rotatably connected to the second guide assemblies on the two sides away from each other, and the second guide assemblies being slidably connected to the storehouse wall to guide the lifting of the storehouse door and make the storehouse door close to the storehouse wall.

[0009] In an embodiment, the first guide assembly comprises a long guide rod and a short guide rod, one end of the long guide rod and one end of the short guide rod being rotatably connected to the storehouse wall;

[0010] The connection between the short guide rod and the storehouse wall is arranged at a side corner of the storehouse wall close to the connected storehouse door;

[0011] The connection between the long guide rod and the storehouse wall is arranged at a side of the storehouse wall close to the bottom wall;

[0012] The other end of the long guide rod and the other end of the short guide rod are slidably connected to the storehouse door.

[0013] In an embodiment, the long guide rod is provided with an avoiding opening corresponding to the short guide rod, so as to rotate to avoid the short guide rod.

[0014] In an embodiment, the bin wall is provided with a first driving assembly connected to the long guide rod, so as to drive the long guide rod to rotate.

[0015] In an embodiment, the bin body is provided with a first guide rod, and the extension direction of the first guide rod is the same as the opening direction of the accommodating cavity.

[0016] The second guide assembly comprises a guide portion, and the guide portion is in sliding connection with the first guide rod.

[0017] The second guide assembly further comprises a connecting portion, and the connecting portion is fixedly connected to the guide portion and rotationally connected to the bin door.

[0018] In an embodiment, the first guide rod comprises a screw rod, and the screw rod is rotationally connected to the bin body and threadedly connected to the guide portion.

[0019] One end of the screw rod is connected to a second driving assembly, and the second driving assembly is used to drive the screw rod to rotate.

[0020] In an embodiment, the second guide assembly further comprises a limiting portion, and the limiting portion is arranged on the side of the guide portion close to the bin door.

[0021] In an embodiment, the opposite sides of the two bin doors are respectively provided with a drainage portion and a sealing portion.

[0022] The drainage portion is bent to form a drainage groove, and the opening direction of the drainage groove is away from the bottom wall.

[0023] In an embodiment, the drainage groove is communicated with the outside near the two sides of the bin wall.

[0024] The utility model further provides a traffic tool, and the traffic tool comprises the unmanned plane transfer bin.

[0025] The technical scheme of the utility model discloses two warehouse doors and the first guide assembly and the second guide assembly cooperate to solve the problem that the space occupied by the warehouse door is too large after the warehouse door is opened, the first guide assembly can limit the distance between the warehouse door and the warehouse body, can play a guiding role in the process of the warehouse door rotating, one side of the warehouse door is rotationally connected with the second guide assembly, the position of the second guide assembly can determine the position of the rotation center of the warehouse door, the first guide assembly can guide the inclination angle of the warehouse door, and the second guide assembly slides relative to the warehouse wall, can drive the lifting of the rotation center of the warehouse door and limit the distance between the rotation center and the warehouse wall, the first guide assembly and the second guide assembly cooperate so that the warehouse door is close to the warehouse wall after being opened, the space occupied is reduced, and use in some special environments is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0026] 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 the structure shown in these drawings without creative labor.

[0027] Figure 1 The structure schematic view of one embodiment of the unmanned plane transfer warehouse provided by the utility model is shown in the figure.

[0028] Figure 2 The inside structure schematic view of the warehouse door of the unmanned plane transfer warehouse provided by the utility model is shown in the figure.

[0029] Figure 3 The side view of the warehouse door of the unmanned plane transfer warehouse provided by the utility model is shown in the figure.

[0030] Figure 4 The Figure 3 The local enlarged view of A in the figure.

[0031] Figure 5 The structure schematic view of one embodiment of the traffic tool provided by the utility model is shown in the figure.

[0032] EXPLANATION OF DRAWINGS:

[0033] 100, unmanned plane transfer warehouse; 11, warehouse body; 111, bottom wall; 112, warehouse wall; 12, warehouse door; 121, avoiding groove; 2, first guide assembly; 21, long guide rod; 211, avoiding port; 22, short guide rod; 3, second guide assembly; 31, guide part; 32, connecting part; 33, limiting part; 4, first drive assembly; 5, first guide rod; 51, screw rod; 6, second drive assembly; 7, drainage part; 71, drainage groove; 8, sealing part.

[0034] The realization, functional features and advantages of the utility model will be further described with reference to the drawings in combination with embodiments. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0036] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0037] In addition, if the embodiments of the utility model involve descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one feature. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, taking "A and / or B" as an example, including A scheme, or B scheme, or A and B simultaneously meet the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skill in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.

[0038] In the current unmanned aerial vehicle transfer warehouse design, the opening mode of the warehouse door mostly adopts the traditional rotating mechanism, that is, the warehouse door is usually rotated to the top of the transfer warehouse and laid flat after being opened. Although this design is simple and intuitive, it has a significant space occupation problem in actual application. Especially in the environment with limited space resources, such as emergency rescue site, narrow site operation or urban dense area, the warehouse door laid flat will greatly limit the space utilization around the unmanned aerial vehicle transfer warehouse, which may hinder the entry and operation of other equipment, and even affect the overall operation efficiency.

[0039] The utility model provides a kind of unmanned aerial vehicle transfer warehouse 100.

[0040] Please refer to Figures 1 to 5 In an embodiment of the utility model, the unmanned aerial vehicle transfer warehouse 100 includes:

[0041] The warehouse body 11 includes bottom wall 111 and warehouse wall 112 connected to the bottom wall 111, and the bottom wall 111 and the warehouse wall 112 form a containing cavity.

[0042] Two warehouse doors 12, the warehouse door 12 is movably connected to the warehouse body 11, to cover the containing cavity.

[0043] A plurality of first guide assemblies 2, one side of the first guide assembly 2 is rotatably connected to the warehouse wall 112, and the other side is slidably connected to the warehouse door 12, to guide the rotation of the warehouse door 12.

[0044] A plurality of second guide assemblies 3, two warehouse doors 12 are rotatably connected to the second guide assembly 3 on both sides away from each other, and the second guide assembly 3 is slidably connected to the warehouse wall 112, to guide the lifting of the warehouse door 12 and make the warehouse door 12 close to the warehouse wall 112.

[0045] First, define the sliding connection between the first guide assembly 2 and the warehouse door 12 as the first sliding connection, and the rotating connection between the first guide assembly 2 and the warehouse wall 112 as the first rotating connection.

[0046] It should be noted that the first guide assembly 2 can limit the distance between the warehouse door 12 and the warehouse body 11. Although the first guide assembly 2 is slidably connected to the warehouse door 12, the warehouse door 12 can move relative to the first guide assembly 2 and cannot be fixed, but it can ensure that there is a fixed distance between a point on the warehouse door 12 and the warehouse body 11.

[0047] It can be understood that the distance depends on the length of the first guide assembly 2, that is, the distance between the first sliding connection and the first rotating connection.

[0048] Secondly, the rotating connection between the second guide assembly 3 and the bin door 12 is defined as a second rotating connection, and the sliding connection between the second guide assembly 3 and the bin wall 112 is defined as a second sliding connection;

[0049] As Figure 1 shown, it can be understood that the second guide assembly 3 can determine that the distance between the second rotating connection and the second sliding connection is fixed;

[0050] It can be understood that two points can determine a straight line, and by limiting the positions of the two points, the inclination angle and position of the bin door 12 can be limited.

[0051] The technical scheme of the utility model solves the problem that the bin door 12 occupies too much space after being opened by adopting two bin doors 12 and the cooperation of the first guide assembly 2 and the second guide assembly 3, the first guide assembly 2 can limit the distance between the bin door 12 and the bin body 11, and can play a guiding role in the process of rotation of the bin door 12, one side of the bin door 12 is rotationally connected with the second guide assembly 3, the position of the second guide assembly 3 can determine the position of the rotation center of the bin door 12, the first guide assembly 2 can guide the inclination angle of the bin door 12, the second guide assembly 3 slides relative to the bin wall 112, can drive the lifting of the rotation center of the bin door 12 and limit the distance between the rotation center and the bin wall 112, and the cooperation of the first guide assembly 2 and the second guide assembly 3 makes the bin door 12 close to the bin wall 112 after being opened, reduces the occupied space and is convenient for use in some special environments.

[0052] Optionally, the first guide assembly 2 comprises a long guide rod 21 and a short guide rod 22, one end of the long guide rod 21 and one end of the short guide rod 22 are rotationally connected with the bin wall 112;

[0053] As Figure 3 shown, the connection between the short guide rod 22 and the bin wall 112 is arranged on the side corner of the bin wall 112 close to the connected bin door 12;

[0054] The connection between the long guide rod 21 and the bin wall 112 is arranged on the side of the bin wall 112 close to the bottom wall 111;

[0055] The other end of the long guide rod 21 and the other end of the short guide rod 22 are slidingly connected with the bin door 12.

[0056] It should be noted that the connection between the short guide rod 22 and the bin wall 112 is located at a side corner of the bin wall 112 close to the connected bin door 12. When the bin door 12 is closed or opened, the distance from the connection to the bin door 12 is relatively short. The length of the short guide rod 22 can ensure that there is a point on the bin door 12, and the distance between the point and the bin wall 112 is relatively small. When the bin door 12 is opened, the inclination angle of the bin door 12 can be limited, so that the bin door 12 is close to the bin wall 112.

[0057] It should be noted that compared with the short guide rod 22, the distance that the long guide rod 21 away from the rotation center passes through is larger when rotating the same angle. Therefore, the bin door 12 can be better rotated by rotating the long guide rod 21, which is convenient for controlling the bin door 12.

[0058] As shown in the Figure 3 In some embodiments, the bin door 12 is close to the bin wall 112 and the opposite two side surfaces are each provided with a sliding groove. The sliding groove is arranged along the length direction of the side surface. The first guide assembly 2 is provided with a rotor. The outer side surface of the rotor is slidingly connected to the inner side surface of the sliding groove. The rotor can rotate relative to the sliding groove. The first guide assembly 2 is slidingly connected to the bin door 12 through the rotor, and guides the bin door 12.

[0059] In some embodiments, the bin door 12 is close to the bin wall 112 and the opposite two side surfaces are each provided with a second guide rod. The extension direction of the second guide rod is consistent with the length direction of the side surface.

[0060] The first guide assembly 2 includes a guide sleeve, the long guide rod 21 and the short guide rod 22. The guide sleeve is sleeved with the second guide rod and can slide relative to the second guide rod. The guide sleeve is rotationally connected to the guide rod, and the guide rod can rotate relative to the second guide rod. The first guide assembly 2 is slidingly connected to the bin door 12 through the guide sleeve, so as to determine the position of one or more points of the bin door 12 relative to the bin body 11, and guide the bin door 12 in cooperation with the first guide assembly 2.

[0061] Optionally, the long guide rod 21 is provided with an avoiding opening 211 corresponding to the short guide rod 22, so as to avoid the short guide rod 22.

[0062] It should be noted that when the short guide rod 22 and the long guide rod 21 are located in the same plane, the connection between the short guide rod 22 and the bin wall 112 is located in the rotation range of the long guide rod 21, and interference will occur.

[0063] To this end, in some embodiments, the plane in which the long guide rod 21 rotates is not coplanar with the plane in which the short guide rod 22 rotates, so as to avoid interference between the long and short guide rods, but the plane in which the guide rod rotates is away from the plane in which the short guide rod 22 rotates relative to the bin wall 112, actually increasing the occupied space.

[0064] It should be noted that the long guide rod 21 is provided with the avoiding opening 211 corresponding to the short guide rod 22, so that the short guide rod 22 can pass through the avoiding opening 211, so that the long guide rod 21 is not easy to interfere with the short guide rod 22 during rotation, and the long guide rod 21 can be closer to the bin wall 112 than when the avoiding opening 211 is not provided, thereby reducing the occupied space and avoiding the interference phenomenon of guide rod bending, and improving the operation stability.

[0065] In some embodiments, the bin wall 112 is provided with a first driving assembly 4 connected to the long guide rod 21 for driving the long guide rod 21 to rotate.

[0066] It can be understood that when the long guide rod 21 rotates, the bin door 12 also rotates, so that the rotation angle of the long guide rod 21 can be controlled to control the position of the bin door 12 and the opening and closing of the bin door 12. The first driving assembly 4 controls the rotation of the long guide rod 21, so that the bin door 12 can be indirectly controlled, which is convenient to operate.

[0067] In some embodiments, the first driving assembly 4 includes a hydraulic driving member, and a driving rod of the hydraulic driving member is connected to the long guide rod 21.

[0068] Optionally, in an embodiment, one end of the driving rod is provided with a back-shaped frame, and the inside of the back-shaped frame is in sliding fit with the outside of a circular protrusion provided on the long guide rod 21. The first driving assembly 4 is connected to the long guide rod 21 through the back-shaped frame.

[0069] Optionally, in another embodiment, one end of the driving rod is provided with a circular protrusion, and the long guide rod 21 is provided with a sliding groove, and the inside of the sliding groove is in sliding fit with the outside of the circular protrusion. The first driving assembly 4 is connected to the long guide rod 21 through the circular protrusion.

[0070] It should be noted that when the first driving assembly 4 linearly drives the long guide rod 21 to rotate, the driving power source can be a hydraulic component, a pneumatic component, and a motor, etc. When the power source is a motor, the rotation output of the motor is converted into linear driving through, for example, gear and rack cooperation, and the present embodiment does not make specific limitation thereto.

[0071] In yet another embodiment, the first driving assembly 4 comprises a motor, which is arranged at the connection between the long guide rod 21 and the bin wall 112, and the rotating shaft of the motor is directly connected to the long guide rod 21. By driving the motor to rotate, the rotating angle of the long guide rod 21 can be directly controlled, thereby realizing the control of the bin door 12.

[0072] Optionally, the bin body 11 is provided with a first guide rod 5, which extends in the same direction as the opening direction of the accommodating cavity.

[0073] The second guide assembly 3 comprises a guide part 31, which is in sliding connection with the first guide rod 5.

[0074] The second guide assembly 3 further comprises a connecting part 32, which is fixedly connected to the guide part 31 and rotationally connected to the bin door 12. The bin door 12 rotates around the connecting part 32 as the rotation center.

[0075] It should be noted that when the second guide assembly 3 is lifted relative to the bin wall 112, the bin door 12 will also rotate due to the restriction of the first guide assembly 2 and the connecting part 32. Therefore, by controlling the distance between the guide part 31 and the bottom wall 111, the position of the bin door 12 and the opening and closing of the bin door 12 can be controlled.

[0076] By the first guide rod 5 and the guide part 31 in sliding connection therewith, in combination with the fixed and rotational support of the connecting part 32 to the bin door 12, the fine control of the position and opening and closing state of the bin door 12 is realized. The operator only needs to adjust the sliding position of the guide part 31 along the first guide rod 5, so as to easily realize the opening and closing of the bin door 12 and the accurate adjustment of the opening angle, thereby greatly improving the flexibility and accuracy of the operation.

[0077] In an embodiment, both ends of the first guide rod 5 are connected to the bin wall 112, so that the first guide rod 5 is not prone to deformation, thereby improving the structural strength.

[0078] As shown in the drawings, Figure 2 In some embodiments, the inside of the bin door 12 is provided with a avoiding groove 121. When the length of the first guide rod 5 is too long, for example, when one end of the first guide rod 5 is flush with the upper end surface of the bin wall 112, the inside surface of the bin door 12 will interfere with the first guide rod 5 during the rotation opening process. Therefore, by designing the avoiding groove 121, the interference between the bin door 12 and the first guide rod 5 during the rotation process can be avoided, thereby ensuring the safety of the equipment operation.

[0079] It should be noted that the bin door 12 is rotationally connected to the connecting portion 32, the guide portion 31 is slidingly connected to the bin wall 112, and the connecting portion 32 is fixedly connected to the guide portion 31, so the distance from the connecting portion 32 to the bin wall 112 is fixed, and thus the distance from the end of the bin door 12 connected to the connecting portion 32 to the bin wall 112 can be determined by the second guide assembly 3, and the distance between the connecting portion 32 and the bin wall 112 can be reduced to make the end of the bin door 12 close to the bin wall 112, so the bin door 12 can be close to the bin wall 112 after being opened by the first guide assembly 2.

[0080] As shown in Figure 2 Optionally, the first guide rod 5 includes a lead screw 51, the lead screw 51 is rotationally connected to the bin body 11, and the lead screw 51 is threadedly connected to the guide portion 31.

[0081] The lead screw 51 has the second drive assembly 6 connected to one end thereof, and the second drive assembly 6 is used to drive the lead screw 51 to rotate.

[0082] It can be understood that, by the lead screw 51 and the guide portion 31 threadedly connected thereto, in combination with the driving action of the second drive assembly 6, the design realizes the automatic control of the opening and closing process of the bin door 12, and the operator only needs to drive the lead screw 51 to rotate by controlling the second drive assembly 6, thereby driving the second guide assembly 3 to move along the length direction of the lead screw 51, to realize the automatic opening and closing of the bin door 12.

[0083] Moreover, the threaded connection between the lead screw 51 and the second guide assembly 3 ensures a stable transmission relationship therebetween, so that the bin door 12 can be accurately positioned during the opening and closing process. This design improves the operation efficiency and provides a basis for realizing the accurate positioning and automatic adjustment of the position of the bin door 12.

[0084] As shown in Figure 2 In some embodiments, the guide portion 31 corresponds to two lead screws 51, which reduces the load of a single second drive assembly 6, ensures the stable operation of the equipment, and also makes it possible to realize the lifting without additional restrictions on the guide portion 31.

[0085] In some embodiments, the bin wall 112 is provided with a slide corresponding to the guide portion 31, to limit the rotation of the guide portion 31, thereby realizing the lifting of the guide portion 31.

[0086] Optionally, the second guide assembly 3 further comprises a limiting portion 33, which is arranged on the side of the guide portion 31 close to the door 12 and abuts against the door 12 to limit the inclination angle of the door 12.

[0087] It should be noted that the limiting portion 33 abuts against the door 12, which can effectively prevent the door 12 from being accidentally inclined or shaken due to uneven force or improper operation when the door 12 is opened, thereby increasing the stability of the door 12.

[0088] Secondly, the inclination angle of the door 12 relative to the bottom wall 111 can be further accurately controlled through the arrangement of the limiting portion 33, so that the door 12 can be accurately stopped at the required position when it is opened, and the door 12 is limited to be inclined away from the wall 112, thereby reducing the occupied space.

[0089] It should be noted that the limiting portion 33 is provided with an abutting surface, which abuts against the door 12. It can be understood that the inclination angle of the abutting surface relative to the bottom wall 111 can determine the inclination angle of the door 12 relative to the bottom plate when the door 12 is opened and abuts against the limiting portion 33.

[0090] In an embodiment, the abutting surface is parallel to the bottom wall 111, and when the door 12 is opened and abuts against the limiting portion 33, the door 12 is parallel to the adjacent wall 112, thereby further reducing the space occupied by the door 12.

[0091] Optionally, the opposite sides of the two doors 12 are respectively provided with a drainage portion 7 and a sealing portion 8.

[0092] The drainage portion 7 is bent to form a drainage groove 71, and the opening direction of the drainage groove 71 is away from the bottom wall 111. The sealing portion 8 corresponds to the drainage portion 7 and abuts against the side of the drainage portion 7 away from the bottom wall 111 and partially located at the opening of the drainage groove 71.

[0093] It should be noted that in some embodiments, the doors 12 are often designed to be attached after being closed, and the attachment surface is perpendicular to the bottom wall 111. This requires high assembly precision to ensure the sealing between the doors 12, so as to avoid water entering the accommodation cavity in a humid environment. The processing precision requirement is high, and as the use time increases, errors may occur to cause the doors 12 to be unable to closely attach, thereby affecting the waterproof effect.

[0094] As Figure 4As shown, it can be understood that the sealing portion 8 abuts against the drainage portion 7 away from the bottom wall 111, and thus the abutting surface between the doors 12 is parallel to the bottom wall 111. In a humid environment, water is less likely to flow into the accommodating cavity from the abutting surface due to gravity, and the drainage groove 71 formed by the concave drainage portion 7 can collect and guide the water or liquid that may accumulate between the doors 12.

[0095] The sealing portion 8 is designed in correspondence with the drainage portion 7, so that when the door 12 is closed, the sealing portion 8 can tightly abut on the drainage portion 7 to form an effective sealing structure. This sealing structure not only effectively prevents external moisture, dust and other impurities from entering the inside of the cabinet 11, but also maintains the temperature and humidity inside the cabinet 11 stable, providing a good protection environment for the stored items.

[0096] As shown, Figure 4 In an embodiment, the sealing portion 8 abuts against the drainage portion 7 away from the bottom wall 111, and part of the sealing portion 8 extends into the drainage groove 71 and abuts against the bottom of the drainage groove 71 to provide better waterproof effect.

[0097] As shown, Figure 1 It should be noted that the door 12 provided with the sealing portion 8 abuts against another door 12, and thus during the opening of the door 12, the door 12 provided with the sealing portion 8 needs to be rotated open first, and then the other door 12 is controlled to open.

[0098] It can be understood that during the closing of the door 12, the door 12 provided with the drainage portion 7 needs to be rotated closed first, and then the other door 12 is rotated closed to abut against the door 12 provided with the drainage portion 7 to complete the closing, so as to ensure the normal opening and closing of the door 12.

[0099] Optionally, the drainage groove 71 is connected to the outside near both sides of the cabinet wall 112.

[0100] It can be understood that when in a very humid environment, such as outdoors on a rainy day, the water collected in the drainage portion 7 flows very quickly, and the water collected in the drainage portion 7 may seep into the accommodating cavity through the gap between the doors 12.

[0101] Therefore, by connecting the drainage groove 71 to the outside near both sides of the cabinet wall 112, the water collected in the drainage groove 71 can be discharged, avoiding the seepage from the gap between the doors 12 due to the rise of the liquid level in the drainage groove 71, maintaining the dryness and cleanliness inside the cabinet 11, and helping to reduce the problems of corrosion and mildew caused by water accumulation.

[0102] In an embodiment, the drain groove 71 is connected to the outside through a drain hole arranged on the side of the drain groove 71 close to the wall 112 of the warehouse;

[0103] Optionally, the drain hole corresponds to the bottom of the drain groove 71, so that liquid is drained from the drain hole only when a large amount of liquid is collected.

[0104] In another embodiment, the drain groove 71 is completely connected to the outside on the side close to the wall 112 of the warehouse, so as to provide better drainage efficiency.

[0105] As shown in Figure 5 The utility model also provides a traffic tool, the traffic tool includes unmanned plane transfer storehouse 100, the specific structure of unmanned plane transfer storehouse 100 refers to the above embodiment, because the traffic tool adopts all the technical schemes of the above all embodiments, thus at least has all the beneficial effects brought by the technical scheme of the above embodiment, here will not repeat.

[0106] The above is only the exemplary embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure transformation made by the utility model specification and the attached drawings or direct / indirect application in other related technical fields under the technical concept of the utility model is included in the patent protection range of the utility model.

Claims

1. An unmanned aerial vehicle transfer station, comprising: The utility model provides a kind of unmanned aerial vehicle transfer storehouse, including: Storehouse, the storehouse includes bottom wall and the storehouse wall connected with the bottom wall, and the bottom wall and the storehouse wall are enclosed to form containing cavity; Two storehouse doors, the storehouse door is movably connected with the storehouse, to cover the containing cavity; Multiple first guide components, one side of the first guide component is rotatably connected with the storehouse wall, and one side is slidably connected with the storehouse door, to guide the rotation of the storehouse door; Multiple second guide components, the second guide component is rotatably connected with the two opposite sides of the two storehouse doors, and the second guide component is slidably connected with the storehouse wall, to guide the lifting of the storehouse door and make the storehouse door close to the storehouse wall.

2. The drone transfer pod of claim 1, wherein, The first guide component includes long guide rod and short guide rod, one end of the long guide rod and one end of the short guide rod are rotatably connected with the storehouse wall; The connection of the short guide rod and the storehouse wall is arranged on the side corner of the storehouse wall close to the connected storehouse door; The connection of the long guide rod and the storehouse wall is arranged on the side of the storehouse wall close to the bottom wall; The other end of the long guide rod and the other end of the short guide rod are slidably connected with the storehouse door.

3. The drone transfer pod of claim 2, wherein, The long guide rod is provided with an avoiding opening corresponding to the short guide rod, to avoid the rotation of the short guide rod.

4. The drone transfer pod of claim 3, wherein, The storehouse wall is provided with a first driving component connected with the long guide rod, to drive the rotation of the long guide rod.

5. The drone transfer pod of any one of claims 1 to 4, wherein, The storehouse is provided with a first guide rod, and the extension direction of the first guide rod is the same as the opening direction of the containing cavity. The second guide component includes a guide portion, and the guide portion is slidably connected with the first guide rod. The second guide component further includes a connecting portion fixedly connected with the guide portion, and the connecting portion is rotatably connected with the storehouse door.

6. The drone transfer station of claim 5, wherein, The first guide rod includes a screw rod rotatably connected with the storehouse, and the screw rod is threadedly connected with the guide portion. One end of the screw rod is connected with a second driving component, and the second driving component is used to drive the rotation of the screw rod.

7. The drone transfer station of claim 6, wherein, The second guide component further includes a limiting portion arranged on the side of the guide portion close to the storehouse door, and the limiting portion is abutted with the storehouse door to limit the inclination angle of the storehouse door.

8. The unmanned aerial vehicle transfer storehouse of claim 1, wherein: The opposite sides of the two storehouse doors are respectively provided with a drainage portion and a sealing portion. The drainage portion is bent to form a drainage groove, and the opening direction of the drainage groove is away from the bottom wall.

9. The drone transfer station of claim 8, wherein, The two sides of the drainage groove close to the storehouse wall are both communicated with the outside.

10. A vehicle, characterized by The vehicle includes the unmanned aerial vehicle transfer storehouse of any one of claims 1 to 9.