Cluster take-off and landing aircraft transport case
By designing an inverted conical storage tank and an aircraft transport box with a deployment mechanism, the problem of rapid deployment of unmanned aircraft clusters is solved, and rapid and safe transportation and deployment efficiency is improved.
Patent Information
- Application Number
- CN202422345942.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The existing unmanned aerial vehicle clusters need to be manually removed and stored one by one after they arrive at the designated location, resulting in time-consuming and laborious deployment and cannot be deployed quickly.
A aircraft transport box with cluster take-off and landing is designed, including a layer support, a base and an upper cover. An inverted conical storage groove is provided in the layer support and the base. The layer support can be deployed relative to the base and remain horizontal. The deployment mechanism forms a parallelogram connection through the connecting rod and the hinge. A lock and pulley are arranged between the layer support and the base to provide stable support and protection.
It realizes rapid deployment of unmanned aircraft, improves deployment efficiency, prevents dust and moisture damage, and enhances safety and convenience during transportation.
Smart Images

Figure CN223132709U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aircraft, in particular to an aircraft transport box for cluster take-off and landing. Background Art
[0002] The technology of unmanned aircraft clusters has received attention due to its wide application in fields such as military reconnaissance, logistics distribution, and environmental monitoring. In these applications, unmanned aircraft need to be quickly deployed to perform tasks. In the prior art, unmanned aircraft are generally transported in the form of transport boxes, and the transport boxes have the function of vibration isolation and protection. Individual transport boxes also have the functions of dust prevention and waterproofing. However, unmanned aircraft clusters have the characteristics of multiple sorties and large scale. After the traditional transport boxes arrive at the designated location, the unmanned aircraft in the transport boxes need to be taken out one by one manually, which is time-consuming and laborious and cannot achieve quick deployment. After the task is completed, the unmanned aircraft also need to be manually stored in the transport boxes one by one, and the whole process consumes a lot of manpower and material resources. Summary of the Utility Model
[0003] The technical problem to be solved by the utility model is to provide an aircraft transport box for cluster take-off and landing that can quickly deploy unmanned aircraft.
[0004] To solve the above technical problem, the technical solution adopted by the utility model is: an aircraft transport box for cluster take-off and landing, including a layer support, a base, and an upper cover. A plurality of receiving grooves that are integrally inverted conical are provided in the layer support and the base for placing unmanned aircraft. An unfolding mechanism is provided between the layer support and the base. The layer support can be unfolded relative to the base and the two always remain horizontal. The upper cover is arranged above the layer support.
[0005] Further, the unfolding mechanism includes paired connecting rods and hinge parts. The connecting rods are connected to each end point of the hinge parts to form a movable parallelogram. The unfolding mechanism is respectively connected to the layer support and the base through the hinge parts.
[0006] Further, the number of the layer supports is one or more than one.
[0007] Further, the outer dimensions of the layer support and the base are the same.
[0008] Further, a lock is provided between the layer support and the base and the upper cover.
[0009] Further, the size of the layer support is half of that of the base, and two layer supports are arranged side by side above the base.
[0010] Further, the unfolding mechanism further includes a protective cover, and the protective cover is connected to the outside of the unfolding mechanism to shield the unfolding mechanism.
[0011] Further, it further includes pulleys, and the pulleys are connected to the edges of the upper cover, the layer tray or the base.
[0012] Further, it further includes a handle, and the handle is disposed opposite to the pulley.
[0013] Further, a support portion is provided on the inner side of the layer tray and / or the upper cover, and the support portion protrudes toward the storage groove to fix the unmanned aerial vehicle.
[0014] The beneficial effects of the present utility model are as follows: The transport box for cluster take-off and landing aircraft provided by the present utility model can quickly deploy unmanned aerial vehicles. By providing inverted conical storage grooves in the layer tray and the base, the unmanned aerial vehicles can be stably placed, providing good support and protection; the design of the unfolding mechanism enables the layer tray to unfold relative to the base while remaining horizontal, which helps to quickly deploy unmanned aerial vehicles and improves the deployment efficiency; the upper cover protects the unmanned aerial vehicle during transportation, preventing damage to the aircraft caused by external factors such as dust and moisture. Description of the Drawings
[0015] Figure 1 It is a schematic structural view of a transport box for cluster take-off and landing aircraft according to an embodiment of the present utility model;
[0016] Figure 2 It is a schematic structural view of another perspective of a transport box for cluster take-off and landing aircraft according to an embodiment of the present utility model.
[0017] Reference Numeral Description:
[0018] 1. Base; 2. Layer tray; 3. Upper cover; 4. Link; 5. Storage groove; 6. Lock; 7. Pulley; 8. Handle; 9. Support portion. Detailed Embodiments
[0019] To describe in detail the technical content, the achieved objectives and the effects of the present utility model, the following is described in conjunction with the embodiments and with reference to the drawings.
[0020] Please refer to Figure 1 and Figure 2 , a transport box for cluster take-off and landing aircraft, including a layer tray 2, a base 1, and an upper cover 3. A plurality of inverted conical storage grooves 5 are provided in the layer tray 2 and the base 1 for placing unmanned aerial vehicles. An unfolding mechanism is provided between the layer tray 2 and the base 1, and the layer tray 2 can unfold relative to the base 1 and the two always remain horizontal. The upper cover 3 is disposed above the layer tray 2.
[0021] As can be seen from the above description, the beneficial effects of the present utility model are as follows: By providing the inverted conical storage grooves 5 in the layer support 2 and the base 1, the unmanned aerial vehicle can be stably placed, providing good support and protection; the design of the unfolding mechanism enables the layer support 2 to unfold relative to the base 1 while maintaining a horizontal position, which helps to quickly deploy the unmanned aerial vehicle and improves the deployment efficiency; the provision of the upper cover 3 protects the unmanned aerial vehicle during transportation and prevents damage to the vehicle caused by external factors such as dust and moisture.
[0022] Further, the unfolding mechanism includes a pair of connecting rods 4 and hinge parts. The connecting rods 4 are connected to the respective end points of the hinge parts to form a movable parallelogram. The unfolding mechanism is connected to the layer support 2 and the base 1 through the hinge parts respectively.
[0023] As can be seen from the above description, the pair of connecting rods 4 and the hinge parts form a movable parallelogram structure, providing a stable mechanical connection method to ensure the reliability and stability of the unfolding mechanism during operation; the connection of the unfolding mechanism to the layer support 2 and the base 1 makes the unfolding action smoother and helps to achieve fast and precise deployment.
[0024] Further, the number of the layer supports 2 is one or more than one.
[0025] As can be seen from the above description, the number of the layer supports 2 being one or more than one provides flexibility, allowing different numbers of unmanned aerial vehicles to be placed according to needs to adapt to different transportation requirements.
[0026] Further, the outer dimensions of the layer support 2 are the same as those of the base 1.
[0027] As can be seen from the above description, the same outer dimensions of the layer support 2 and the base 1 help to maintain the overall aesthetics of the transport box and the consistency of the structure, and also facilitate stacking and storage.
[0028] Further, a locking buckle 6 is provided between the layer support 2, the base 1 and the upper cover 3.
[0029] As can be seen from the above description, the provision of the locking buckle 6 enhances the security of the transport box, ensuring that the layer support 2, the base 1 and the upper cover 3 will not accidentally open during transportation and protecting the unmanned aerial vehicle from damage.
[0030] Further, the size of the layer support 2 is half of that of the base 1, and two layer supports 2 are arranged side by side above the base 1.
[0031] As can be seen from the above description, the size of the layer support 2 being half of that of the base 1 and two layer supports 2 being arranged side by side can increase the storage capacity of the transport box while maintaining the compactness and portability of the transport box.
[0032] Further, the unfolding mechanism further includes a protective cover, which is connected to the outside of the unfolding mechanism and serves to shield the unfolding mechanism.
[0033] As can be seen from the above description, the provision of the protective cover can prevent the unfolding mechanism from being damaged by the external environment, such as rainwater, dust, etc., and extend the service life of the transport box.
[0034] Further, it further includes a pulley 7, and the pulley 7 is connected to the edge of the upper cover 3 or the layer support 2 or the base 1.
[0035] As can be seen from the above description, the provision of the pulley 7 enables the transport box to be easily moved, especially on uneven ground, improving the convenience of transportation.
[0036] Further, it further includes a handle 8, and the handle 8 is disposed opposite to the pulley 7.
[0037] As can be seen from the above description, the provision of the handle 8 provides a convenient gripping point for the user, making it more labor-saving and convenient to move the transport box.
[0038] Further, a support portion 9 is provided on the inner side of the layer support 2 and / or the upper cover 3, and the support portion 9 protrudes toward the storage groove 5 to function as fixing the unmanned aerial vehicle.
[0039] As can be seen from the above description, the support portion 9 is provided on the inner side of the layer support 2 and / or the upper cover 3 and protrudes toward the storage groove 5, which can effectively fix the unmanned aerial vehicle and prevent it from moving or being damaged due to vibration or impact during transportation.
[0040] Please refer to Figure 1 and Figure 2 , Embodiment 1 of the present utility model is: A transport box for a cluster take-off and landing aircraft, including a layer support 2, a base 1 and an upper cover 3. A plurality of storage grooves 5 which are integrally inverted conical are provided in the layer support 2 and the base 1 for placing unmanned aerial vehicles. An unfolding mechanism is provided between the layer support 2 and the base 1. The layer support 2 can be unfolded relative to the base 1 and the two always remain horizontal. The upper cover 3 is disposed above the layer support 2; by providing the inverted conical storage grooves 5 in the layer support 2 and the base 1, the unmanned aerial vehicle can be stably placed, providing good support and protection; the design of the unfolding mechanism enables the layer support 2 to be unfolded relative to the base 1 while remaining horizontal, which helps to quickly deploy the unmanned aerial vehicle and improves the deployment efficiency; the provision of the upper cover 3 protects the unmanned aerial vehicle during transportation and prevents external factors such as dust and moisture from damaging the aircraft.
[0041] Preferably, the unfolding mechanism includes a pair of connecting rods 4 and hinge parts. The connecting rods 4 are connected to each end point of the hinge parts to form a movable parallelogram. The unfolding mechanism is respectively connected to the layer support 2 and the base 1 through the hinge parts. It is easy to understand that the pair of connecting rods 4 and the hinge parts form a movable parallelogram structure, providing a stable mechanical connection method to ensure the reliability and stability of the unfolding mechanism during operation. The connection of the unfolding mechanism to the layer support 2 and the base 1 makes the unfolding action smoother, which helps to achieve fast and precise deployment.
[0042] Optionally, the number of the layer supports 2 is one or more. The number of the layer supports 2 being one or more provides flexibility, allowing different numbers of unmanned aerial vehicles to be placed according to needs to adapt to different transportation requirements. Further, a locking buckle 6 is provided between the layer support 2, the base 1 and the upper cover 3. The setting of the locking buckle 6 enhances the security of the transport box, ensuring that the layer support 2, the base 1 and the upper cover 3 will not be accidentally opened during transportation and protecting the unmanned aerial vehicle from damage.
[0043] Preferably, the unfolding mechanism further includes a protective cover. The protective cover is connected to the outside of the unfolding mechanism and plays a role in shielding the unfolding mechanism. The setting of the protective cover can prevent the unfolding mechanism from being damaged by the external environment, such as rain, dust, etc., and extend the service life of the transport box.
[0044] In this embodiment, the transport box for cluster take-off and landing aircraft further includes a pulley 7. The pulley 7 is connected to the edge of the upper cover 3 or the layer support 2 or the base 1. The setting of the pulley 7 enables the transport box to be easily moved, especially on uneven ground, improving the convenience of transportation. Specifically, a handle 8 is further included. The handle 8 is arranged opposite to the pulley 7. The setting of the handle 8 provides a convenient holding point for the user, making it more labor-saving and convenient to move the transport box. More specifically, a support portion 9 is arranged on the inner side of the layer support 2 and / or the upper cover 3. The support portion 9 protrudes towards the storage groove 5 and functions to fix the unmanned aerial vehicle. The support portion 9 is arranged on the inner side of the layer support 2 and / or the upper cover 3 and protrudes towards the storage groove 5, which can effectively fix the unmanned aerial vehicle and prevent it from moving or being damaged due to vibration or impact during transportation.
[0045] Embodiment 2 of the present utility model is a further improvement to the layer support 2 on the basis of Embodiment 1. Specifically, the outer dimensions of the layer support 2 are the same as those of the base 1. The same outer dimensions of the layer support 2 and the base 1 contribute to maintaining the overall aesthetics of the transport box and the consistency of the structure, and also facilitate stacking and storage.
[0046] Embodiment 2 of the present utility model is a further improvement on the layer tray 2 based on Embodiment 1. Specifically, the size of the layer tray 2 is half of that of the base 1, and two layer trays 2 are arranged side by side above the base 1. In this way, the storage capacity of the transport box can be increased while maintaining the compactness and portability of the transport box.
[0047] In summary, the aircraft transport box for cluster take-off and landing provided by the present utility model realizes the efficient transportation and rapid deployment of unmanned aerial vehicles through the design of the unfolding mechanism and the stackable trays. The always parallel arrangement of the connecting rod 4 ensures the stability during the unfolding of the trays, reducing the risk of the unmanned aerial vehicle falling during transportation due to the inclination of the trays.
[0048] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in the relevant technical fields, shall be equally included in the patent protection scope of the present utility model.
Claims
1. An aircraft transport box for cluster takeoff and landing, comprising a layer support, a base and an upper cover. A plurality of receiving grooves which are integrally inverted conical are arranged in the layer support and the base for placing unmanned aircraft, and it is characterized in that An unfolding mechanism is provided between the layer support and the base. The layer support can be unfolded relative to the base and the two always remain horizontal. The upper cover is arranged above the layer support.
2. The transport box for a cluster take-off and landing aircraft according to claim 1, wherein The unfolding mechanism includes paired connecting rods and hinge parts. The connecting rods are connected to each end point of the hinge parts to form a movable parallelogram. The unfolding mechanism is respectively connected to the layer support and the base through the hinge parts.
3. The aircraft transport box for cluster takeoff and landing according to claim 2, characterized in that, The number of the layer supports is one or more than one.
4. The aircraft transport box for cluster takeoff and landing according to claim 3, characterized in that, The outer dimensions of the layer support and the base are the same.
5. The aircraft transport box for cluster take-off and landing according to claim 4, characterized in that, A buckle is provided between the layer support, the base and the upper cover.
6. The aircraft transportation box for cluster takeoff and landing according to claim 3, characterized in that The size of the layer support is half of that of the base, and two layer supports are arranged side by side above the base.
7. The aircraft transport box for cluster take-off and landing according to claim 2, characterized in that, The unfolding mechanism further includes a protective cover. The protective cover is connected to the outside of the unfolding mechanism and plays a role in shielding the unfolding mechanism.
8. The transport box for cluster takeoff and landing aircraft according to claim 1, characterized in that, It further includes pulleys, and the pulleys are connected to the edges of the upper cover, the layer support or the base.
9. The aircraft transport box for cluster takeoff and landing according to claim 8, wherein, It further includes a handle, and the handle is arranged opposite to the pulley.
10. The aircraft transport box for cluster takeoff and landing according to any one of claims 1-9, characterized in that A support part is arranged on the inner side of the layer support and / or the upper cover. The support part protrudes towards the storage groove and plays a role in fixing the unmanned aerial vehicle.