A safe for low-altitude economic flight data management

CN224648395UActive Publication Date: 2026-08-18CIVIL AVIATION UNIV OF CHINA
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Patent Information

Application Number
CN202521370358.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2026-08-18
Estimated Expiration
2035-07-01

AI Technical Summary

Technical Problem

[0003]低空经济飞行结束后的飞行数据管理存储方面,可输出纸质文件进行研究与存储,也可存入硬盘,统一处理,但是由于其重要性,导致存储不易,如今的保险柜存在明显的弊端,比如传统的存储保险柜内部空间固定,无法合理利用内部存储空间,导致纸质与硬盘放置混乱,寻找不易,为此我们提出了一种低空经济飞行数据管理用保险柜

Benefits of technology

1、该低空经济飞行数据管理用保险柜,空间调节灵活高效,解决传统保险柜内部空间固定问题,而此款保险柜通过柜体内的滑槽一和回形调节槽,配合伸缩可调式载物板侧块上的调节块,能自由调节载物板高度,无论是体积较大的硬盘盒,还是不同厚度的纸质文件,都能合理安排存储位置,避免了放置混乱,用户可根据实际存储需求,轻松调整各层载物板间距,大大提高了内部空间的利用率,方便了对飞行数据存储介质的分类管理与查找,显著提升了数据管理效率。

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Abstract

The utility model relates to low altitude economic flight data management storage technical field, and disclose a kind of safe for low altitude economic flight data management, including cabinet, password protection door and telescopic adjustable object plate, the sidewall of the cabinet is equipped with password protection door, the password protection door is rotatably connected with cabinet sidewall, and cabinet and password protection door inside are provided with multiple telescopic adjustable object plates of horizontal distribution, the utility model low altitude economic flight data management safe is cooperated by the internal structure of cabinet and multiple telescopic adjustable object plates, ensure that internal storage space can be freely adjusted, so that its space utilization rate is greatly improved, the telescopic structure of telescopic adjustable object plate simultaneously, the paper file on object plate is convenient to take and search, improve search rate.
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Description

Technical Field

[0001] This utility model relates to the field of low-altitude economic flight data management and storage technology, specifically a safe for low-altitude economic flight data management. Background Technology

[0002] With the booming development of the low-altitude economy, various low-altitude operations are becoming increasingly frequent, and the demand for monitoring the low-altitude environment is becoming more and more urgent. Unmanned monitoring devices play a key role in the low-altitude economy, and can collect atmospheric data, airspace conditions and other information in real time, providing strong support for low-altitude flight safety, environmental protection and industrial planning. The data after the flight covers key information such as aircraft performance parameters, flight trajectory and airspace usage, which is crucial for ensuring flight safety, optimizing airspace resource allocation and promoting the orderly development of the low-altitude industry.

[0003] Regarding the management and storage of flight data after low-altitude economic flights, paper documents can be output for research and storage, or the data can be stored on hard drives for unified processing. However, due to its importance, storage is not easy. Current safes have obvious drawbacks, such as the fixed internal space of traditional storage safes, which cannot make reasonable use of the internal storage space, resulting in the disorderly placement of paper documents and hard drives, making them difficult to find. Therefore, we propose a safe for low-altitude economic flight data management. Utility Model Content

[0004] (a) Technical problems to be solved To address the shortcomings of existing technologies, this utility model provides a safe for low-altitude economic flight data management, which solves the aforementioned problems.

[0005] (II) Technical Solution To achieve the above-mentioned objectives, this utility model provides the following technical solution: a safe for low-altitude economic flight data management, comprising a cabinet body, a password-protected door, and a telescopic adjustable cargo tray. The side wall of the cabinet body is provided with a password-protected door, which is rotatably connected to the side wall of the cabinet body. The cabinet body and the password-protected door are provided with multiple horizontally distributed telescopic adjustable cargo trays inside.

[0006] Preferably, the cabinet body is a hollow rectangular column, and the side wall of the cabinet body has a rectangular mounting opening, which is connected to the password protection door. The two opposite side walls inside the cabinet body that are perpendicular to the mounting opening have two vertically placed sliding grooves. One side wall of the sliding groove has a set of equally spaced U-shaped adjustment grooves. The sliding grooves are connected to the U-shaped adjustment grooves, and the sliding grooves and the U-shaped adjustment grooves are connected to the telescopic adjustable loading plate.

[0007] Preferably, the telescopic adjustable platform consists of two parts: a mating frame and a sliding plate, with the sliding plate located inside the mating frame. The mating frame and the sliding plate are equipped with two elastic members that are symmetrically distributed along an axis, and the two ends of the elastic members are welded to the interior of the mating frame and the sliding plate.

[0008] Preferably, the mating frame has a U-shaped structure, and the two opposite sides of the mating frame are provided with side blocks that are symmetrically distributed. The two side blocks are provided with two adjusting blocks that are symmetrically distributed on opposite sides. The adjusting blocks slide with the sliding groove and engage with the U-shaped adjusting groove.

[0009] Preferably, the side block has a second sliding groove on the side away from the adjusting block, and the second sliding groove has an elastic element inside. The second sliding groove has a mating opening at the U-shaped opening end of the mating frame, and the elastic element is welded to the end of the second sliding groove that is away from the mating opening.

[0010] Preferably, the sliding plate body is a rectangular plate, and the two opposite sidewalls of the sliding plate are provided with slide bars distributed symmetrically on the axis. The slide bars are slidably connected to the mating opening, and the inner end of the slide bar corresponding to the mating frame is provided with a limiting block. The limiting block is slidably connected to the inside of the second slide groove. The axial end of the slide bar corresponding to the limiting block is provided with an inner cavity. An elastic element is placed in the inner cavity, and the elastic element is welded to the axial end inside the inner cavity. The top end of the sliding plate is provided with a U-shaped outer edge, and the U-shaped opening end of the sidewall of the sliding plate corresponding to the outer edge is provided with a handle.

[0011] (III) Beneficial Effects Compared with the prior art, this utility model provides a safe for low-altitude economic flight data management, which has the following beneficial effects: 1. This safe for low-altitude economic flight data management offers flexible and efficient space adjustment, solving the problem of fixed internal space in traditional safes. Through internal sliding grooves and U-shaped adjustment channels, along with adjustment blocks on the side panels of the telescopic adjustable storage trays, the height of the storage trays can be freely adjusted. Whether it's a large hard drive enclosure or paper documents of varying thicknesses, storage can be rationally arranged, avoiding clutter. Users can easily adjust the spacing between each storage tray according to actual storage needs, greatly improving the utilization of internal space, facilitating the classification, management, and retrieval of flight data storage media, and significantly enhancing data management efficiency.

[0012] 2. This safe for low-altitude economic flight data management is convenient and stable to operate. The safe features an ingeniously designed telescopic adjustable shelf. The sliding shelf and the mating frame are connected by elastic components. Pulling the handle allows the sliding shelf to be easily pulled out, facilitating the retrieval or storage of documents and hard drives. The sliding bar and limit block ensure the stability and safety of the sliding process, preventing the sliding shelf from detaching. After operation, the elastic component automatically springs back to reset the sliding shelf. At the same time, the outer edge of the sliding shelf effectively prevents items from slipping, ensuring the safety of data storage media during storage and retrieval. This design improves operational convenience and ensures the stability of stored items, providing reliable support for low-altitude economic flight data management. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the safe structure for low-altitude economic flight data management according to this utility model; Figure 2 This is a cross-sectional view of the cabinet body of this utility model; Figure 3 This is a schematic diagram of the telescopic adjustable loading platform of this utility model; Figure 4 This is a schematic diagram of the mating frame of this utility model; Figure 5 This is a schematic diagram of the sliding plate of this utility model; Figure 6 This is a schematic diagram of the back of the sliding plate of this utility model.

[0014] In the diagram: 1. Cabinet body; 2. Password-protected door; 3. Telescopic adjustable shelf; 4. Mounting port; 5. Slide rail one; 6. U-shaped adjustment groove; 7. Mating frame; 8. Sliding plate; 9. Side block; 10. Slide rail two; 11. Mating port; 12. Adjusting block; 13. Slide bar; 14. Limiting block; 15. Outer edge guard; 16. Handle; 17. Inner cavity; 18. Elastic element. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Please see Figure 1-6 A safe for low-altitude economic flight data management includes a cabinet body 1, a password protection door 2, and a telescopic adjustable cargo tray 3. The password protection door 2 is provided on the side wall of the cabinet body 1 and is rotatably connected to the side wall of the cabinet body 1. Multiple horizontally distributed telescopic adjustable cargo trays 3 are provided inside the cabinet body 1 and the password protection door 2.

[0017] Furthermore, the cabinet 1 is a hollow rectangular column, and a rectangular mounting opening 4 is provided on the side wall of the cabinet 1. The mounting opening 4 is connected to the password protection door 2. The two opposite side walls of the cabinet 1, which are perpendicular to the mounting opening 4, are provided with two vertical sliding grooves 5. The side wall of the sliding groove 5 is provided with a set of equally spaced U-shaped adjustment grooves 6. The sliding groove 5 and the U-shaped adjustment grooves 6 are connected. The sliding groove 5 and the U-shaped adjustment grooves 6 are connected to the telescopic adjustable storage plate 3. When the telescopic adjustable storage plate 3 is adjusted, the adjustment block 12 on the side wall of the telescopic adjustable storage plate 3 is slid into the sliding groove 5. When the distance between two adjacent telescopic adjustable storage plates 3 is appropriate, the adjustment block 12 is slid horizontally into the U-shaped adjustment groove 6 to lock in place, thus completing the free adjustment of the internal space and realizing the rationalization of the internal storage space.

[0018] Furthermore, the telescopic adjustable storage plate 3 consists of two parts: a mating frame 7 and a sliding plate 8. The sliding plate 8 is located inside the mating frame 7. The mating frame 7 and the sliding plate 8 are equipped with two axially symmetrical elastic members 18. The two ends of the elastic members 18 are welded to the inside of the mating frame 7 and the sliding plate 8. The mating frame 7 of the telescopic adjustable storage plate 3 is snapped into the cabinet 1, while the sliding plate 8 is pulled out from inside the mating frame 7, making it easy to retrieve and find the documents and hard drives placed on the sliding plate 8. Under the rebound action of the elastic members 18, the sliding plate 8 will return to the inside of the mating frame 7, improving the structural rationality and ease of operation.

[0019] Furthermore, the mating frame 7 has a U-shaped structure, and the mating frame 7 has two opposite sides with side blocks 9 distributed symmetrically. The two side blocks 9 have two adjusting blocks 12 distributed symmetrically on opposite sides. The adjusting blocks 12 slide with the slide groove 5 and engage with the U-shaped adjusting groove 6. The adjusting blocks 12 play the role of connection and adjustment.

[0020] Furthermore, a second sliding groove 10 is provided on the side of the side block 9 away from the adjusting block 12, and an elastic element 18 is provided inside the second sliding groove 10. The second sliding groove 10 is provided with a mating port 11 at the U-shaped opening end of the mating frame 7, and the elastic element 18 is welded to the end of the second sliding groove 10 away from the mating port 11. The elastic element 18 is always in a compressed state to ensure the stability of the structural connection between the mating frame 7 and the sliding plate 8.

[0021] Furthermore, the main body of the sliding plate 8 is a rectangular plate, and the two opposite side walls of the sliding plate 8 are provided with slide bars 13 distributed symmetrically. The slide bars 13 are slidably connected to the mating port 11, and the inner end of the slide bar 13 corresponding to the mating frame 7 is provided with a limiting block 14. The limiting block 14 is slidably connected to the inside of the slide groove 10, and the shaft end of the slide bar 13 corresponding to the limiting block 14 is provided with an inner cavity 17. The inner cavity 17 is provided with an elastic element 18, and the elastic element 18 is welded to the shaft end inside the inner cavity 17. The top end of the sliding plate 8 is provided with a U-shaped outer edge 15, and the side wall of the sliding plate 8 is provided with a handle 16 at the U-shaped opening end of the outer edge 15. The slide bars 13 of the sliding plate 8 play a guiding role to ensure the sliding stability of the sliding plate 8, while the limiting block 1 effectively prevents the sliding plate 8 from separating from the mating frame 7. The outer edge 15 facilitates the placement of documents and hard drives and plays a protective role.

[0022] Structural Description: Cabinet 1: Cabinet 1 is a hollow rectangular column and is the main structure of the safe. The side wall has an installation port 4 that connects to the password protection door 2. The two opposite side walls inside have a sliding groove 5 for installing a telescopic adjustable storage plate 3. Password protection door 2: Password protection door 2 is rotatably connected to the side wall of cabinet 1 and is opened by password. It is a key component to ensure the security of data inside the safe and prevent unauthorized access from the outside. Telescopic adjustable cargo tray 3: Composed of a mating frame 7 and a sliding plate 8, it can be adjusted in height and telescopically extended, and is used to store flight data files and hard drives, improving space utilization and ease of access; Installation port 4: Installation port 4 is located on the side wall of cabinet 1, is rectangular, and is compatible with password protection door 2 to connect the protection door and the cabinet, ensuring the sealing and security of the safe; Slide 15: There are two vertical slides 15 on each of the two opposite side walls of the cabinet 1 that are perpendicular to the mounting opening 4. They are connected to the U-shaped adjustment groove 6 and allow the adjustment block 12 to slide to adjust the height of the carrying plate. The U-shaped adjustment groove 6 is distributed on the side wall of the slide 5, arranged at equal intervals, and connected to the slide 5. The adjustment block 12 slides into it to fix the height position of the telescopic adjustable carrier plate 3. Matching frame 7: U-shaped, is part of telescopic adjustable storage board 3, internally accommodates sliding board 8, has side blocks 9 on both sides, is connected to cabinet 1 through adjusting block 12 and can be height adjusted; Sliding plate 8: Inside the mating frame 7, it can be pulled out and retracted for placing files and hard drives. Its side wall slide bar 13 is slidably connected to the mating port 11 of the mating frame 7. Side block 9: Located on two opposite sides of the mating frame 7, it is symmetrically distributed. One side is equipped with an adjustment block 12 for adjusting the height of the loading plate, and the other side is associated with the slide groove 10. Slide 2 10: It is opened on the side of the side block 9 away from the adjusting block 12, and has an elastic element 18 inside. It communicates with the mating port 11 of the U-shaped opening end of the mating frame 7 to ensure the stability of the structural connection. Mating port 11: Located at the U-shaped opening end of the mating frame 7, it is connected to the slide groove 10. The slide bar 13 slides and engages with the mating frame 7 through this port to realize the extension and retraction of the slide plate 8. Adjustment block 12: Installed on side block 9, it can slide up and down in slide groove 5, and slide laterally into the U-shaped adjustment groove 6 to engage, thus completing the height adjustment and fixation of the loading plate; Slide bar 13: There is one on each of the two opposite side walls of the sliding plate 8, which slides with the mating opening 11 to play a guiding role and ensure that the sliding plate 8 slides smoothly within the mating frame 7; Limiting block 14: It is set inside the corresponding mating frame 7 of the slide bar 13 and slides in the second slide groove 10 to prevent the slide plate 8 from accidentally disengaging from the mating frame 7; Outer edge 15: The top of the sliding plate 8 has a U-shaped edge to prevent files and hard drives placed on the sliding plate 8 from slipping off and to protect the stored data media; Handle 16: Located at the U-shaped opening end of the outer edge 15 on the side wall of the sliding plate 8, making it convenient for users to pull the sliding plate 8 to pick up and put away files and hard drives; Inner cavity 17: The space opened on one side of the shaft end of the slide bar 13 corresponding to the limiting block 14 is used to place the elastic element 18. One end of the elastic element 18 is welded to the shaft end inside the inner cavity 17. Elastic element 18: Distributed between the mating frame 7 and the sliding plate 8, it is always in a compressed state, realizing the automatic reset of the sliding plate 8 and the stable connection of the structure.

[0023] Working Principle: Install the low-altitude economic flight data management safe correctly according to the diagram. The safe mainly consists of a cabinet body 1, a combination lock door 2, and a telescopic adjustable storage plate 3. The cabinet body 1 is a hollow rectangular column with an installation opening 4 on the side wall, which mates with the combination lock door 2 to form a secure storage space. Inside the cabinet body 1, on two opposite side walls perpendicular to the installation opening 4, there are slide grooves 5, and the side walls of slide grooves 5 have equidistantly distributed U-shaped adjustment grooves 6, which are interconnected. The telescopic adjustable storage plate 3 consists of a mating frame 7 and a sliding plate 8. The mating frame 7 is U-shaped, with side blocks 9 on both sides. The adjustment blocks 12 on the side blocks 9 can slide within the slide grooves 5. When adjusted to the appropriate position, the adjustment blocks 12 are slid laterally into the U-shaped adjustment grooves 6, thus fixing the height of the telescopic adjustable storage plate 3. This allows for free adjustment of the internal space of the cabinet body 1, accommodating documents and hardware of different sizes. To meet the storage needs of the disk and achieve rational utilization of storage space, the mating frame 7 and the sliding plate 8 are connected by an elastic element 18. The side block 9 has an elastic element 18 in a compressed state in the second slide groove 10 on the side opposite to the adjusting block 12. The slide bar 13 on the side wall of the sliding plate 8 slides in the second slide groove 10 through the mating port 11. The end of the slide bar 13 has a limiting block 14 that slides in the second slide groove 10. The inner cavity 17 of the slide bar 13 places the elastic element 18. When it is necessary to take out or put in files or hard drives, pull the handle 16 on the sliding plate 8 to overcome the resistance of the elastic element 18 and pull the sliding plate 8 out of the mating frame 7. The slide bar 13 plays a guiding role, and the limiting block 14 prevents the two from separating. After taking out, the sliding plate 8 returns to the inside of the mating frame 7 under the rebound action of the elastic element 18. The outer edge 15 can prevent files and hard drives from falling, ensuring the safety and stability of stored items.

[0024] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A safe for low-altitude economic flight data management, comprising a cabinet body (1), a password-protected door (2), and a telescopic adjustable cargo tray (3), characterized in that: The cabinet (1) has a password protection door (2) on its side wall. The password protection door (2) is rotatably connected to the side wall of the cabinet (1). The cabinet (1) and the password protection door (2) are equipped with multiple horizontally distributed telescopic adjustable loading plates (3). The cabinet (1) is a hollow rectangular column, and the side wall of the cabinet (1) is provided with a rectangular installation opening (4). The installation opening (4) is connected to the password protection door (2). The two opposite side walls of the cabinet (1) that are perpendicular to the installation opening (4) are provided with two vertical sliding grooves (5). The side wall of the sliding groove (5) is provided with a set of equally spaced spiral adjustment grooves (6). The sliding groove (5) is connected to the spiral adjustment groove (6). The sliding groove (5) and the spiral adjustment groove (6) are connected to the telescopic adjustable loading plate (3). The telescopic adjustable loading plate (3) consists of two parts, namely a mating frame (7) and a sliding plate (8), and the sliding plate (8) is located inside the mating frame (7). The mating frame (7) and the sliding plate (8) are provided with two elastic members (18) that are symmetrically distributed on the axis. The two ends of the elastic members (18) are welded to the interior of the mating frame (7) and the sliding plate (8). The mating frame (7) has a U-shaped structure, and the mating frame (7) has two opposite sides with side blocks (9) distributed in an axisymmetric manner. The two side blocks (9) have two adjustment blocks (12) distributed in an axisymmetric manner on opposite sides. The adjustment blocks (12) slide with the sliding groove (5) and are engaged with the U-shaped adjustment groove (6).

2. The safe for low-altitude economic flight data management according to claim 1, characterized in that: The side block (9) is provided with a sliding groove (10) on the side away from the adjustment block (12), and an elastic element (18) is provided inside the sliding groove (10). The sliding groove (10) is provided with a mating port (11) at the U-shaped opening end of the mating frame (7), and the elastic element (18) is welded to the end of the sliding groove (10) away from the mating port (11).

3. The safe for low-altitude economic flight data management according to claim 1, characterized in that: The main body of the sliding plate (8) is a rectangular plate, and the two opposite side walls of the sliding plate (8) are provided with slide bars (13) distributed in an axisymmetric manner. The slide bars (13) are slidably connected to the mating port (11), and the slide bars (13) are provided with a limiting block (14) at the inner end of the mating frame (7). The limiting block (14) is slidably connected to the inner side of the second slide groove (10). The slide bars (13) are provided with an inner cavity (17) at the shaft end of the limiting block (14) on one side. The inner cavity (17) is provided with an elastic element (18), and the elastic element (18) is welded to the shaft end inside the inner cavity (17). The top end of the sliding plate (8) is provided with a U-shaped outer edge (15), and the side wall of the sliding plate (8) is provided with a handle (16) at the U-shaped opening end of the outer edge (15).