Novel unmanned aerial vehicle battery box
By setting adjustment rods and buffer mechanisms on both sides of the drone battery box, combined with shock-absorbing springs and rubber shock-absorbing balls, the problem of vibration damage to the drone battery during landing is solved, achieving support, fixation, and shock absorption protection for the battery.
Patent Information
- Application Number
- CN202423092903.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing drone battery boxes are easily damaged by vibrations when the drone lands, lacking effective shock absorption protection.
Adjustable rods and buffer mechanisms are installed on both sides of the drone battery box. Combined with shock-absorbing springs and rubber shock-absorbing balls, the extension and retraction of the adjustable rods and the buffering effect of the buffer mechanism provide support and shock absorption protection.
To effectively prevent damage to drone batteries during landing, the adjustment rod and buffer mechanism work together to secure and dampen the battery, thereby improving battery safety.
Smart Images

Figure CN223638518U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to unmanned aerial vehicle battery box technical field especially relates to a novel unmanned aerial vehicle battery box. BACKGROUND
[0002] The unmanned aerial vehicle is a kind of unmanned aerial vehicle, also called unmanned aerial vehicle or unmanned aerial vehicle.And unmanned aerial vehicle battery is one of the core components of unmanned aerial vehicle, can provide power for unmanned aerial vehicle when flying.And unmanned aerial vehicle battery box is the shell or container for loading unmanned aerial vehicle battery, can effectively protect unmanned aerial vehicle battery from external impact, pressure, water immersion etc.Damage, provide safe, stable environment for battery.
[0003] The inventor found that the prior art has the following problems in the process of realizing the present application:At present, most of the existing unmanned aerial vehicle battery box can embed the battery needed to be used into the battery box for installation and use after connecting with the unmanned aerial vehicle main body, since most of the existing battery boxes are directly embedded with the battery for installation and use, the position of the battery box will be set at the lower end of the unmanned aerial vehicle main body, vibration will be generated when the unmanned aerial vehicle lands, thereby causing vibration to the battery in the battery box, which can cause the battery to be damaged, therefore, the technical personnel in the art provides a novel unmanned aerial vehicle battery box to solve the problems in the above background art. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the shortcomings in the prior art, and provides a novel unmanned aerial vehicle battery box, which can support and fix the unmanned aerial vehicle after connecting with the unmanned aerial vehicle, and the buffer mechanism, shock-absorbing spring and rubber shock-absorbing ball arranged in the box body can effectively protect the unmanned aerial vehicle battery from shock.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A novel unmanned aerial vehicle battery box, including box body, the lower end of the front end and the rear end of the both sides of box body are fixedly provided with connecting plate, the front end and the rear end of one side of four connecting plates are rotatably provided with adjusting rod, two adjusting rods between the same connecting plate one side of multiple adjusting rods are provided with buffer mechanism between lower end, multiple buffer mechanisms all include buffer shell, the front end surface and the rear end surface of multiple buffer shells are movably embedded with connecting rod;
[0007] The lower end surface of the plurality of adjusting rods is provided with an adjusting groove, an extension rod is embedded in the plurality of adjusting grooves, the inner bottom surface and the inner top surface of the box body are provided with a movable groove, a buffer plate is movably arranged in the two movable grooves, a plurality of damping springs are fixedly arranged on the side of the two buffer plates away from each other, and a rotating plate is rotatably arranged on the lower end of the front end surface of the box body.
[0008] Further, the front end surface and the rear end surface of the plurality of buffer housings are internally provided with a sliding groove, the plurality of connecting rods are respectively slidably arranged in the plurality of sliding grooves, and the outer surface of the plurality of connecting rods in the buffer housings is fixedly provided with a buffer spring.
[0009] Further, the plurality of connecting rods are respectively rotatably arranged on the lower end of one side of the plurality of adjusting rods, the lower end surface of the plurality of extension rods is rotatably provided with a supporting block, the lower end surface of the plurality of adjusting rods is provided with an adjusting groove, and the plurality of extension rods are respectively embedded in the plurality of adjusting grooves.
[0010] Further, the front end surface of the plurality of adjusting rods is internally movably embedded with an embedded rod at the lower end midpoint, the outer surface of the plurality of embedded rods in the adjusting rods is fixedly provided with a second spring, the front end surface of the plurality of extension rods is provided with a plurality of embedded grooves, and the plurality of embedded rods are embedded in the plurality of embedded grooves.
[0011] Further, one end of the plurality of damping springs away from the buffer plate is respectively fixedly arranged on the inner top surface and the inner bottom surface of the box body, and the inner bottom surface and the inner top surface of the box body and the two buffer plates are provided with a plurality of rubber damping balls.
[0012] Further, the front end surface of the box body is fixedly provided with an embedded block at the upper end midpoint, the embedded block is embedded in the rear end surface of the rotating plate at the upper end midpoint, the upper end surface of the rotating plate is movably embedded with a movable rod at the midpoint, the outer surface of the movable rod in the rotating plate is fixedly provided with a first spring, and the lower end of the movable rod is embeddedly connected with the embedded block.
[0013] Further, the front end surface of the rotating plate is fixedly provided with a fixed plate at the midpoint, and the front end surface of the fixed plate is provided with a wire groove on both sides.
[0014] The utility model has the advantages of the following beneficial effects:
[0015] 1. This utility model proposes a novel drone battery box. After connecting plates are fixedly installed on both sides of the box body, adjustment rods can be rotatably installed on the front and rear sides of one side of the four connecting plates. At the same time, after adjustment grooves are opened under the multiple adjustment rods, extension rods can be slidably embedded in the multiple adjustment grooves. After the embedded extension rods are extended and retracted, they can be fitted with the embedded rods that are movably embedded in the adjustment rods to fix the position of the adjusted extension rods. Thus, the adjustment rods and extension rods can support and fix the box body. The extension plates that can be extended and retracted can better support the box body at different heights.
[0016] 2. This utility model proposes a novel drone battery box. By rotating a buffer mechanism between two rotating plates on the same side of the connecting plate, the connecting rod and buffer spring within the buffer mechanism provide cushioning for the box body, effectively preventing damage to the drone during landing. Furthermore, by installing two buffer plates inside the box body, shock-absorbing springs and rubber shock-absorbing balls are placed between the buffer plates and the box body. After the drone battery is embedded in the box body, the buffer plates clamp and fix the battery under the action of the buffer springs, while the rubber shock-absorbing balls also provide shock absorption and cushioning, thus better protecting the drone battery. Attached Figure Description
[0017] Figure 1 This is a first isometric schematic diagram of the present invention;
[0018] Figure 2 This is a second isometric schematic diagram of the present invention;
[0019] Figure 3 This is a cross-sectional view of the box body of this utility model;
[0020] Figure 4 This is an isometric schematic diagram of the shock-absorbing structure of this utility model;
[0021] Figure 5 This is a schematic cross-sectional view of the adjusting rod of this utility model;
[0022] Figure 6 This is a cross-sectional schematic diagram of the buffer mechanism of this utility model.
[0023] Legend:
[0024] 1, box body; 2, rotating plate; 3, fixed plate; 4, adjusting rod; 5, buffer mechanism; 6, support block; 7, connecting plate; 8, embedded block; 9, buffer plate; 10, movable slot; 11, first spring; 12, movable rod; 13, wire slot; 14, rubber shock absorbing ball; 15, shock absorbing spring; 16, extension rod; 17, embedded rod; 18, adjusting slot; 19, embedded slot; 20, second spring; 501, buffer shell; 502, buffer spring; 503, sliding groove; 504, connecting rod. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to 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 fall within the scope of protection of the utility model.
[0026] Referring to Figures 1 to 6 A novel unmanned aerial vehicle battery box, comprising a box body 1, the front end and the rear end of the lower end of the two sides of the box body 1 are fixedly provided with connecting plates 7, the front end and the rear end of one side of the four connecting plates 7 are rotatably provided with adjusting rods 4, the lower end between two adjusting rods 4 of the same connecting plate 7 among the plurality of adjusting rods 4 is provided with a buffer mechanism 5, and the plurality of buffer mechanisms 5 each comprise a buffer shell 501, and the front end face and the rear end face of the plurality of buffer shells 501 are movably embedded with connecting rods 504.
[0027] The lower end face of the plurality of adjusting rods 4 is provided with an adjusting slot 18, and the extension rod 16 is embedded in the plurality of adjusting slots 18, the inner bottom face and the inner top face of the box body 1 are provided with movable slots 10, the buffer plates 9 are movably arranged in the two movable slots 10, the plurality of shock absorbing springs 15 are fixedly arranged on the side of the two buffer plates 9 away from each other, and the front end face of the box body 1 is rotatably provided with a rotating plate 2.
[0028] Specifically, after the connecting plates 7 are fixedly arranged at the front end and the rear end of the two sides of the box body 1, a plurality of adjusting rods 4 can be rotatably arranged at the front end and the rear end of one side of the four connecting plates 7. Among the plurality of rotatably arranged adjusting rods 4, two adjusting rods 4 located at the same connecting plate 7 are rotatably arranged at the lower end. A plurality of buffer mechanisms 5 are arranged, which can buffer and dampen the unmanned aerial vehicle after the box body 1 is connected to the unmanned aerial vehicle, and can also support the unmanned aerial vehicle. After the adjusting groove 18 is opened at the lower end face of the adjusting rod 4, the extension rod can be embedded and arranged in the adjusting groove 18, so that the supporting height of the unmanned aerial vehicle can be better adjusted according to the use requirement. After the movable groove 10 is opened in the box body 1, the buffer plate 9 can be embedded and arranged in the movable groove 10. The buffer plate 9 arranged can buffer and clamp the unmanned aerial vehicle battery embedded in the box body 1 under the action of the fixedly arranged damping spring 15. The rotating plate 2 rotatably arranged at the front end face of the box body 1 can seal and fix different unmanned aerial vehicles.
[0029] Referring to Figure 6 , a plurality of buffer housings 501 are provided. The front end face and the rear end face of each buffer housing 501 are internally provided with a sliding groove 503. A plurality of connecting rods 504 are slidably arranged in the plurality of sliding grooves 503. The outer surface of each connecting rod 504 located in the buffer housing 501 is fixedly provided with a buffer spring 502.
[0030] Specifically, after the sliding groove 503 is opened in the buffer housing 501, the embedded connecting rod 504 can be better moved in the buffer housing 501. After the buffer spring 502 is fixedly sleeved on the outer surface of the connecting rod 504, the connecting rod 504 can be buffered and rebounded when being pulled.
[0031] Referring to Figure 4 and FIG. 16, the lower end face of each extension rod 16 is rotatably provided with a supporting block 6. The lower end face of each adjusting rod 4 is provided with an adjusting groove 18. The plurality of extension rods 16 are respectively embedded and arranged in the plurality of adjusting grooves 18.
[0032] Specifically, after the supporting block 6 is rotatably arranged at the lower end face of the extension rod 16, the adjusting rod 4 can better support and fix the box body 1 after being rotated. After the extension rod 16 is embedded and arranged in the adjusting groove 18, the supporting height can be better adjusted according to different requirements.
[0033] Referring to Figure 4 and Figure 5 , the front end face of each adjusting rod 4 is internally movably embedded with an embedded rod 17 at the lower end midpoint. The outer surface of each embedded rod 17 located in the adjusting rod 4 is fixedly sleeved with a second spring 20. The front end face of each extension rod 16 is provided with a plurality of embedded grooves 19. The plurality of embedded rods 17 are embedded and arranged in the plurality of embedded grooves 19.
[0034] Specifically, after the embedded rod 17 is embedded and arranged inside the front end face of the adjusting rod 4, the second spring 20 can be fixedly sleeved on the outer surface of the embedded rod 17, and the second spring 20 can drive the embedded rod 17 to be embedded into the plurality of embedded grooves 19 formed on the front end face of the extension rod 16, so that the position of the extension rod 16 after extension adjustment can be fixed.
[0035] Referring to Figure 3 , the plurality of damping springs 15 are fixedly arranged at the inner top face and the inner bottom face of the box body 1 away from the two buffer plates 9, and the inner bottom face and the inner top face of the box body 1 and the two buffer plates 9 are provided with the plurality of rubber damping balls 14.
[0036] Specifically, after the plurality of damping springs 15 are fixedly arranged at one end of the two buffer plates 9 and fixedly connected with the inner top face or the inner bottom face of the box body 1, the buffer plate 9 can be better arranged in the movable groove 10 formed in the box body 1, and the buffer plate 9 can also clamp and fix the unmanned aerial vehicle battery embedded in the box body 1 under the action of the damping spring 15, and the plurality of rubber damping balls 14 arranged between the two movable plates and the box body 1 can cooperate with the damping spring 15 to buffer and damp the unmanned aerial vehicle battery, so that the unmanned aerial vehicle battery can be better protected.
[0037] Referring to Figure 3 , the embedded block 8 is fixedly arranged at the midpoint of the upper end of the front end face of the box body 1, the embedded block 8 is embedded and arranged at the midpoint of the upper end of the rear end face of the rotating plate 2, the movable rod 12 is movably embedded and arranged at the midpoint of the upper end face of the rotating plate 2, the first spring 11 is fixedly sleeved on the outer surface of the movable rod 12 located inside the rotating plate 2, and the movable rod 12 is embeddedly connected with the embedded block 8.
[0038] Specifically, after the embedded block 8 is fixedly arranged at the upper end of the front end face of the box body 1, the embedded block 8 can be embeddedly connected with the movable rod 12 embedded and arranged inside the rotating plate 2, so that the rotating plate 2 can be clamped and fixed to the front end face of the box body 1, and after the first spring 11 is sleeved on the outer surface of the movable rod 12, the movable rod 12 and the embedded block 8 can be better embeddedly connected.
[0039] Referring to Figure 1 , the fixed plate 3 is fixedly arranged at the midpoint of the front end face of the rotating plate 2, and the wire grooves 13 are formed on the front end face of the fixed plate 3.
[0040] Specifically, after the fixed plate 3 is fixedly arranged at the front end face of the rotating plate 2, the wire grooves 13 can be formed on the front end face of the fixed plate 3, so that the cable in the unmanned aerial vehicle battery can be better taken out from the wire grooves 13 for installation and connection.
[0041] Working principle: in use, the user can pull the rotating upper end face midpoint embedded setting movable rod 12 and embedded block 8 separation, while pulling the rotating plate 2 can expose the opening of the box body 1, so that the user can insert the drone battery into the box body 1 inside, make the two buffer plate 9 set in the box body 1 to the upper end face and the lower end face of the drone battery fit, while the shock absorbing spring 15 fixed at one end of the buffer plate 9 can push the buffer plate 9 to clamp and fix the drone battery, while setting rubber shock absorbing ball 14 between the clamping plate and the box body 1, can effectively buffer and shock absorbing effect on the drone battery, after fixing the drone battery, rotating the rotating plate 2 set again can seal the box body 1, while setting multiple adjusting rods 4 and multiple buffer mechanisms 5 on both sides of the box body 1, can effectively play the role of shock absorption and buffering for the drone.
[0042] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing detailed description of the present application is made with reference to the foregoing embodiments, for the person skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included in the scope of protection of the present application.
Claims
1. A new type of unmanned aerial vehicle battery box, comprising a box body (1), characterized in that: The front end and the rear end of the lower end of the box body (1) are fixedly provided with connecting plates (7), the front end and the rear end of one side of the four connecting plates (7) are rotatably provided with adjusting rods (4), the lower end between two adjusting rods (4) located on one side of the same connecting plate (7) is provided with a buffer mechanism (5), the buffer mechanism (5) comprises a buffer shell (501), the front end face and the rear end face of the buffer shell (501) are movably embedded with connecting rods (504). The lower end face of the adjusting rod (4) is provided with an adjusting groove (18), the adjusting groove (18) is embedded with an extension rod (16), the inner bottom and the inner top of the box body (1) are provided with a movable groove (10), the movable groove (10) is movably provided with a buffer plate (9), the side away from each other of the buffer plate (9) is fixedly provided with a plurality of shock absorbing springs (15), the lower end of the front end face of the box body (1) is rotatably provided with a rotating plate (2).
2. The novel battery box for drones according to claim 1, wherein: The front end face and the rear end face of the buffer shell (501) are rotatably provided with a plurality of connecting rods (504), the outer surface of the connecting rod (504) located in the buffer shell (501) is fixedly provided with a buffer spring (502).
3. The novel battery box for drones according to claim 1, wherein: The lower end of the connecting rod (504) is rotatably provided with a plurality of adjusting rods (4), the lower end face of the extension rod (16) is rotatably provided with a supporting block (6), the lower end face of the adjusting rod (4) is provided with an adjusting groove (18), the extension rod (16) is embedded in the adjusting groove (18).
4. The novel battery box for drones according to claim 1, wherein: The lower end of the adjusting rod (4) is rotatably provided with a plurality of adjusting grooves (18), the extension rod (16) is embedded in the adjusting groove (18).
5. The novel battery box for drones according to claim 1, wherein: The lower end of the buffer plate (9) is rotatably provided with a plurality of shock absorbing springs (15), the inner top and the inner bottom of the box body (1) are rotatably provided with a plurality of rubber shock absorbing balls (14).
6. The novel battery box for drones according to claim 1, wherein: The front end face of the box body (1) is rotatably provided with a rotating plate (2), the lower end of the front end face of the box body (1) is rotatably provided with a rotating plate (2), the upper end of the rotating plate (2) is movably embedded with a movable rod (12), the outer surface of the movable rod (12) located in the rotating plate (2) is fixedly provided with a first spring (11), the lower end of the movable rod (12) and the embedded block (8) are embeddedly connected.
7. The novel battery box for drones according to claim 1, wherein: The front end face of the rotating plate (2) is fixedly provided with a fixed plate (3), the front end face of the fixed plate (3) is provided with a wire groove (13).