A mounting device for unmanned aerial vehicles

CN224703256UActive Publication Date: 2026-09-01华启天成(深圳)智能科技有限公司
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Patent Information

Application Number
CN202522151843.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2026-09-01
Estimated Expiration
2035-10-11

AI Technical Summary

Technical Problem

[0004]现有的无人机运载货物一般是在大型无人机上进行运用,中小型无人机没有设置货物挂载装置,或部分设置有挂载架,但其通常使用为单悬挂的方式进行运送物品,中小型无人机具有行动灵活、起降环境要求较低,并具有良好的操作性能等优点,采用单悬挂的挂载方式,会直接影响无人机的稳定性和安全性,导致无人机难以实现物品的短距离运送,且其挂载的物品种类也非常有限,为解决上述问题,现提出一种无人机用挂载装置来解决上述问题

Benefits of technology

1、通过吊索形成并联斜拉式结构,使其可将无人机载荷的重量、飞行振动及气流冲击力分散到多个连接节点,减少了单点受力集中的问题,可提升挂载结构的整体刚度与抗振性,可降低飞行中载荷的晃动、偏移风险,从而提高无人机的稳定性和安全性,方便物品的短距离运送,且可挂载多种不同的物品。

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Abstract

This utility model provides a mounting device for unmanned aerial vehicles (UAVs), belonging to the technical field of UAV mounting equipment. It includes a quick-release module mounted on the bottom of the UAV, with a mounting module detachably mounted on the bottom of the quick-release module. A connecting plate is detachably mounted on the bottom of the mounting module, and multiple slings are arranged around the perimeter of the connecting plate. A cross-shaped support is located at the bottom of the multiple slings, with a secondary mounting component at the bottom of each end of the cross-shaped support, and a primary mounting component at the bottom of the center of the cross-shaped support. This utility model forms a parallel, inclined structure through the slings, distributing the weight of the UAV payload, flight vibrations, and airflow impact forces to multiple connection nodes, reducing the problem of concentrated stress at a single point. This improves the overall rigidity and vibration resistance of the mounting structure, reduces the risk of payload swaying and shifting during flight, thereby improving the stability and safety of the UAV, facilitating short-distance transport of goods, and allowing the mounting of various items.
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Description

Technical Field

[0001] This utility model relates to the technical field of drone mounting equipment, specifically to a drone mounting device. Background Technology

[0002] With the advancement of technology and the improvement of people's living standards, drones are becoming increasingly widely used. People no longer just use drones for entertainment, but also for many operational tasks, such as aerial photography, aerial broadcasting, object transportation, terrain mapping, and emergency rescue.

[0003] In related technologies, when carrying out object transportation operations, it is necessary to attach relevant items to the drone, such as medicine barrels, first aid kits, food, etc., which means that drones need to carry a variety of items during emergency rescue.

[0004] Existing drone cargo transport is generally carried out on large drones. Small and medium-sized drones do not have cargo mounting devices, or some have mounting racks, but they usually use a single-suspension method to transport goods. Small and medium-sized drones have advantages such as flexible movement, low requirements for take-off and landing environment, and good operation performance. However, using a single-suspension mounting method will directly affect the stability and safety of the drone, making it difficult for the drone to transport goods over short distances, and the types of goods that can be carried are also very limited. In order to solve the above problems, a drone mounting device is proposed to solve the above problems. Utility Model Content

[0005] In view of this, the present invention provides a mounting device for unmanned aerial vehicles (UAVs). The present invention forms a parallel inclined structure through slings, which can distribute the weight of the UAV payload, flight vibration and airflow impact force to multiple connection nodes, reduce the problem of single-point force concentration, improve the overall rigidity and vibration resistance of the mounting structure, reduce the risk of load swaying and displacement during flight, thereby improving the stability and safety of the UAV, facilitating short-distance transportation of goods, and can carry a variety of different items.

[0006] To solve the above-mentioned technical problems, this utility model provides a mounting device for unmanned aerial vehicles (UAVs), including a quick-release module mounted on the bottom of the UAV. The mounting module is detachably mounted on the bottom of the quick-release module, and a connecting plate is detachably mounted on the bottom of the mounting module. A wind guide chain is vertically mounted in the center of the bottom of the connecting plate. Multiple slings are arranged around the periphery of the connecting plate, and each sling is designed to be inclined downwards. A cross bracket is provided at the bottom of the multiple slings. The bottom of the wind guide chain is fixed to the middle of the cross bracket. A secondary mounting component is provided at the bottom of each end of the cross bracket, and a primary mounting component is provided at the bottom center of the cross bracket.

[0007] Each of the four corners of the mounting module has a threaded hole for installing a first bolt, thereby connecting the mounting module to the quick-release module. Each threaded hole passes through the mounting module and is embedded in the bottom of the quick-release module. Each threaded hole contains a first bolt for fixing the mounting module to the quick-release module.

[0008] One of the threaded holes is adjacent to an index finger hole, which allows personnel to manually rotate the mounting module, thus facilitating the connection or disconnection of the external stud and the internal screw. A plug is provided at the position corresponding to the index finger hole on the quick-release module. The plug is used to seal the index finger hole, thereby preventing gaps in the index finger hole from affecting structural stability. The plug fits tightly with the index finger hole.

[0009] An external stud is fixedly installed in the center of the lower surface of the quick-release module, and an internal screw cylinder is installed in the center of the upper surface of the mounting module. The internal screw cylinder and the external stud are threadedly matched. The external stud is used to be installed into the internal screw cylinder, thereby enabling the mounting module and the connecting plate to be detachably connected.

[0010] The sling includes a sling connected to the connecting plate. The sling is used to connect the sling ring to the connecting plate and also to form a parallel inclined structure. It can distribute the weight of the load, flight vibration and airflow impact force to multiple connection nodes, reduce the problem of single-point force concentration, improve the overall rigidity and vibration resistance of the mounted structure, and reduce the risk of load swaying and displacement during flight. The sling ring is set at the end of the sling away from the connecting plate. The sling ring is used to connect the sling to the lug. Each sling ring has a lug on its inner ring. The lug is used to connect the sling to the cross bracket, and then to the connecting plate and the cross bracket. The lugs are fixed to the four ends of the cross bracket.

[0011] The air guide chain consists of multiple guide chains, which are used to disperse the airflow during the flight of the drone, so that the impact force of the airflow is distributed to multiple connection points, reducing the force on individual parts. The upper part of the multiple guide chains is provided with an upper fixing plate, which facilitates the connection of multiple guide chains to the connecting plate. The upper fixing plate is connected to the bottom of the connecting plate. The lower part of the multiple guide chains is provided with a lower fixing plate, which facilitates the connection of multiple guide chains to the cross bracket. The lower fixing plate is connected to the upper part of the cross bracket.

[0012] Each auxiliary mounting component includes a base connected to one end of a cross bracket. The base is used to connect the cable to the cross bracket. Each base has a cable at its bottom for connecting the cross bracket to a G-shaped sleeve. Each cable has a G-shaped sleeve fixedly attached to its bottom. The G-shaped sleeve is used to hang items or install components such as cameras. Each G-shaped sleeve has a threaded locking rod at its opening to block the opening and prevent items hanging inside from falling out. Each G-shaped sleeve also has a symmetrical rounded corner inside for further protection against items falling out.

[0013] The main mounting component includes a pad that connects to the cross bracket. The pad is used to connect the support rod to the cross bracket. A support rod is provided at the bottom of the pad. The support rod is used to connect the pad to the U-shaped hook, thereby connecting the U-shaped hook to the cross bracket. The support rod is also used to support and fix the U-shaped hook. A U-shaped hook is provided at each end of the bottom of the support rod. The U-shaped groove of the U-shaped hook is used to hang items. An extension plate is fixedly provided at the end of each U-shaped hook near the center of the support rod. The extension plate is used to open screw holes and also to fit the limiting plate.

[0014] The main mounting component also includes two extension plates with a limiting plate at the bottom. The limiting plate is used to seal the opening formed between the two U-shaped hooks to prevent the items mounted on the main mounting component from falling off. Each extension plate has a screw hole that passes through the limiting plate. The screw hole is used to install a second bolt. Each screw hole passes through the extension plate and is embedded in the support rod. Each screw hole has a second bolt. The second bolt is used to install the limiting plate onto the extension plate to seal the opening formed between the U-shaped hooks.

[0015] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects: 1. By forming a parallel inclined structure through slings, the weight of the drone payload, flight vibration, and airflow impact force can be distributed to multiple connection nodes, reducing the problem of concentrated force at a single point. This can improve the overall rigidity and vibration resistance of the mounting structure, reduce the risk of load swaying and displacement during flight, thereby improving the stability and safety of the drone, facilitating short-distance transportation of goods, and allowing for the mounting of various different items.

[0016] 2. The rope is used to connect the cross bracket and the G-shaped hanging sleeve. The G-shaped hanging sleeve is used to hang items or install components such as cameras. The threaded locking rod is used to block the opening of the G-shaped hanging sleeve, thereby preventing the items hanging inside the G-shaped hanging sleeve from falling off. The rounded corners are heat-fused to the inner wall of the G-shaped hanging sleeve, and the rounded corners are used to further prevent items from falling off.

[0017] 3. The index finger hole allows personnel to manually rotate the mounting module, facilitating the connection or disconnection of the external stud and the internal screw. The plug is used to seal the index finger hole, thereby preventing gaps in the index finger hole from affecting structural stability. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the main structure of this utility model; Figure 2 This is a lower view of the structure of this utility model; Figure 3 This is a side sectional view of the present invention; Figure 4 This utility model Figure 3 A magnified view of part A; Figure 5 This utility model Figure 3 A magnified view of part B.

[0019] Explanation of reference numerals in the attached diagram: 100, Quick-release module; 101, Mounting module; 102, Connecting plate; 103, Threaded hole; 104, First bolt; 105, Index finger hole; 106, Insert bolt; 200, Air guide chain; 201, Sling; 202, External stud; 203, Internal screw; 204, Lifting rope; 205, Lifting ring; 206, Hanging lug; 207, Guide chain; 208, Upper fixing plate ; 209. Lower fixing plate; 300. Cross bracket; 400. Secondary mounting component; 401. Base; 402. Rope; 403. G-shaped hanging sleeve; 404. Threaded locking rod; 405. Rounded corner; 500. Main mounting component; 501. Pad; 502. Support rod; 503. U-shaped hook; 504. Extension plate; 505. Limiting plate; 506. Screw hole; 507. Second bolt. Detailed Implementation

[0020] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-5 The technical solutions of the embodiments of this utility model are clearly and completely described below. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.

[0021] like Figure 1-5As shown: This embodiment provides a mounting device for a drone, including a quick-release module 100 mounted on the bottom of the drone. The quick-release module 100 is provided with a slot and a fixing structure for quick connection with the drone. A mounting module 101 is detachably mounted on the bottom of the quick-release module 100. A connecting plate 102 is detachably mounted on the bottom of the mounting module 101. A wind guide chain 200 is vertically mounted in the center of the bottom of the connecting plate 102. Multiple slings 201 are provided around the periphery of the connecting plate 102. Each sling 201 is designed to be inclined downwards. A cross bracket 300 is provided at the bottom of the multiple slings 201. The bottom of the wind guide chain 200 is fixed to the middle of the cross bracket 300. A secondary mounting component 400 is provided at the bottom of each end of the cross bracket 300. A main mounting component 500 is provided at the bottom of the center of the cross bracket 300.

[0022] In use, multiple different types of items are mounted on the auxiliary mounting component 400 and the main mounting component 500. The cross bracket 300 is then connected to the connecting plate 102 via the sling 201, and the connecting plate 102 is then connected to the mounting module 101. Finally, the mounting module 101 is installed on the quick-release module 100, forming a parallel inclined structure through the sling 201. This allows the weight of the drone's payload, flight vibration, and airflow impact force to be distributed to multiple connection nodes, reducing the problem of concentrated force at a single point. This improves the overall rigidity and vibration resistance of the mounting structure, reduces the risk of payload swaying and shifting during flight, thereby improving the stability and safety of the drone, facilitating short-distance transport of items, and enabling the mounting of a variety of different items.

[0023] This embodiment provides a mounting device for unmanned aerial vehicles (UAVs). like Figure 1 , 2 As shown in Figure 3: The mounting module 101 has a threaded hole 103 at each of its four corners. The threaded hole 103 is used to install the first bolt 104, thereby connecting the mounting module 101 with the quick-release module 100. Each threaded hole 103 passes through the mounting module 101 and is embedded in the bottom of the quick-release module 100. Each threaded hole 103 is provided with a first bolt 104. The first bolt 104 is a hand-tightening bolt. The nut of the hand-tightening bolt is provided with stripes to improve the friction of hand grip. The first bolt 104 is used to fix the mounting module 101 on the quick-release module 100.

[0024] Its effect is as follows: the threaded hole 103 is used to install the first bolt 104, thereby connecting the mounting module 101 with the quick-release module 100, and the first bolt 104 is used to fix the mounting module 101 on the quick-release module 100.

[0025] like Figure 1 , 2As shown in Figure 3: An index finger hole 105 is provided on the side adjacent to one of the threaded holes 103. The index finger hole 105 penetrates the upper and lower surfaces of the mounting module 101. The index finger hole 105 allows personnel to manually rotate the mounting module 101, thereby facilitating the connection or disassembly of the external stud 202 and the internal screw 203. A plug 106 is provided at the position corresponding to the index finger hole 105 on the quick-release module 100. The plug 106 is used to seal the index finger hole 105, thereby preventing the gap of the index finger hole 105 from affecting the structural stability. The plug 106 fits tightly with the index finger hole 105, and the plug 106 and the quick-release module 100 can be heat-fused together.

[0026] Its effects are as follows: the index finger hole 105 allows personnel to manually rotate the mounting module 101, thereby facilitating the connection or disassembly of the external stud 202 and the internal screw 203; the plug 106 is used to seal the index finger hole 105, thereby preventing the gap in the index finger hole 105 from affecting the structural stability.

[0027] like Figure 1 , 2 As shown in Figure 3: An external stud 202 is fixedly installed in the center of the lower surface of the quick-release module 100. The external stud 202 can be heat-fused to the quick-release module 100. An internal screw cylinder 203 is installed in the center of the upper surface of the mounting module 101. The internal screw cylinder 203 can be heat-fused to the connecting plate 102. The internal screw cylinder 203 and the external stud 202 are threadedly matched. The external stud 202 is used to be installed into the internal screw cylinder 203, thereby enabling the mounting module 101 and the connecting plate 102 to be detachably connected.

[0028] Its effect is that the external stud 202 is used to install into the internal screw cylinder 203, thereby enabling the mounting module 101 to be detachably connected to the connecting plate 102.

[0029] like Figure 1 , 2As shown in Figures 3 and 4: The sling 201 includes a sling 204 connected to the connecting plate 102. The sling 204 and the connecting plate 102 can be embedded and heat-fused together or fixed by a knot. The sling 204 is used to connect the lifting ring 205 to the connecting plate 102. The sling 204 is also used to form a parallel inclined structure, which can distribute the weight of the load, flight vibration, and airflow impact force to multiple connection nodes, reducing the problem of single-point force concentration, improving the overall stiffness and vibration resistance of the mounted structure, and reducing the risk of load swaying and displacement during flight. The sling 204 is located away from the connecting plate 102. One end of the ring 205 is provided with a lifting ring 205, which is heat-fused to the other end of the lifting rope 204. The lifting ring 205 is used to connect the lifting rope 204 to the hanging ear 206. Each ring 205 has a hanging ear 206 on its inner ring. The ear 4 groove on the hanging ear 206 is adapted to the hanging ring 205. The bottom of the hanging ear can be fixed to the upper surface of the cross bracket 300 by bolts. The hanging ear 206 is used to connect the lifting ring 205 to the cross bracket 300, thereby connecting the connecting plate 102 to the cross bracket 300. The hanging ear 206 is fixed on the four ends of the cross bracket 300 respectively.

[0030] Its effects are as follows: the suspension rope 204 is used to connect the lifting ring 205 to the connecting plate 102. The suspension rope 204 is also used to form a parallel inclined structure, which can distribute the weight of the load, flight vibration and airflow impact force to multiple connection nodes, reduce the problem of single-point force concentration, improve the overall rigidity and vibration resistance of the mounted structure, and reduce the risk of load swaying and displacement during flight. The lug 206 is used to connect the lifting ring 205 to the cross bracket 300, and then connect the connecting plate 102 to the cross bracket 300.

[0031] like Figure 1 , 2 As shown in Figures 3, 4, and 5: The air guide chain 200 includes multiple guide chains 207. The guide chains 207 are designed to guide airflow and disperse the airflow during UAV flight, distributing the impact force of the airflow to multiple connection points and reducing the stress on individual parts. The upper part of the multiple guide chains 207 is provided with an upper fixing plate 208. The upper end of the guide chains 207 can be embedded in the upper fixing plate 208, or the guide chains 207 can be fixed to the upper fixing plate 208 by bolts. To facilitate the connection of multiple guide chains 207 to the connecting plate 102, the upper fixing plate 208 is connected to the bottom of the connecting plate 102, and a lower fixing plate 209 is provided at the lower part of the multiple guide chains 207. The lower end of the guide chain 207 can be embedded in the lower fixing plate 209, or the guide chain 207 can be fixed to the lower fixing plate 209 by bolts. The lower fixing plate 209 facilitates the connection of multiple guide chains 207 to the cross bracket 300, and the lower fixing plate 209 is connected to the upper part of the cross bracket 300.

[0032] Its effects are as follows: the guide chain 207 is used to disperse the airflow during the flight of the drone, so that the impact force of the airflow is distributed to multiple connection points, reducing the force on individual parts; the upper fixing plate 208 facilitates the connection of multiple guide chains 207 to the connecting plate 102; the upper fixing plate 208 is connected to the bottom of the connecting plate 102; and the lower fixing plate 209 facilitates the connection of multiple guide chains 207 to the cross bracket 300.

[0033] like Figure 2 , 3 As shown in Figures 4 and 5: Each auxiliary mounting component 400 includes a base 401 connected to one end of the cross bracket 300. The base 401 is connected to the cross bracket 300 by bolts. The base 401 is used to connect the rope 402 to the cross bracket 300. Each base 401 has a rope 402 at its bottom, and the upper end of the rope 402 is connected to the base 401 by a knot. The rope 402 is used to connect the cross bracket 300 to the G-shaped hanging sleeve 403. Each rope 402 has a G-shaped hanging sleeve 403 fixedly installed at its bottom. The bottom of the G-shaped hanging sleeve 403 has a groove for supporting the hanging part of the item. This groove is arc-shaped. The G-shaped hanging sleeve 403 and the rope 402 are connected to the cross bracket 300. 02 The other end is heat-fused. The G-shaped hanging sleeve 403 is used to hang items or install components such as cameras. Each G-shaped hanging sleeve 403 has a threaded locking rod 404 at its opening. The threaded locking rod 404 includes two positioning blocks with screw holes 506 fixed to the outside of the opening of the G-shaped hanging sleeve 403. The threaded rod is movably arranged between the positioning blocks. The threaded locking rod 404 is used to block the opening of the G-shaped hanging sleeve 403, thereby preventing the items hanging in the G-shaped hanging sleeve 403 from falling off. Each G-shaped hanging sleeve 403 has a rounded corner 405 symmetrically arranged inside. The rounded corner 405 is heat-fused and fixed to the inner wall of the G-shaped hanging sleeve 403. The rounded corner 405 is used to further prevent items from falling off.

[0034] Its effects are as follows: the rope 402 is used to connect the cross bracket 300 and the G-shaped hanging sleeve 403. The G-shaped hanging sleeve 403 is used to hang items or install components such as cameras. The threaded locking rod 404 is used to block the opening of the G-shaped hanging sleeve 403, thereby preventing the items hanging inside the G-shaped hanging sleeve 403 from falling off. The rounded corner 405 is heat-fused and fixed to the inner wall of the G-shaped hanging sleeve 403. The rounded corner 405 is used to further prevent items from falling off.

[0035] like Figure 2 , 3As shown in Figures 4 and 5: The main mounting component 500 includes a pad 501 connected to the cross bracket 300. The pad 501 and the cross bracket 300 are fixed together by bolts. The pad 501 is used to connect the support rod 502 to the cross bracket 300. The support rod 502 is provided at the bottom of the pad 501. The support rod 502 and the pad 501 can be fixed together by bolts. The support rod 502 is used to connect the pad 501 to the U-shaped hook 503, thereby connecting the U-shaped hook 503 to the cross bracket 300. The support rod 502 is also used for... A U-shaped hook 503 is fixed to the support rod 502. A U-shaped hook 503 is provided at each end of the bottom of the support rod 502. The inner wall of the U-shaped hook 503 is also provided with a rounded corner 405. The U-shaped hook 503 is heat-fused to the support rod 502. The U-shaped groove of the U-shaped hook 503 is used to hang items. An extension plate 504 is fixedly provided at one end of each U-shaped hook 503 near the center of the support rod 502. The extension plate 504 is heat-fused to the U-shaped hook 503. The extension plate 504 is used to open the screw hole 506 and also to fit the limiting plate 505.

[0036] Its effects are as follows: the pad 501 is used to connect the support rod 502 to the cross bracket 300, the support rod 502 is used to connect the pad 501 to the U-shaped hook 503, thereby connecting the U-shaped hook 503 to the cross bracket 300, the support rod 502 is also used to support and fix the U-shaped hook 503, the extension plate 504 is used to open the screw hole 506 and is also used to fit the limiting plate 505.

[0037] like Figure 2 , 3 As shown in Figures 4 and 5: The main mounting component 500 also includes two extension plates 504 with a limiting plate 505 at the bottom. The limiting plate 505 is used to seal the opening formed between the two U-shaped hooks 503 to prevent the items mounted on the main mounting component 500 from falling off. Each extension plate 504 has a screw hole 506 passing through the limiting plate 505. The screw hole 506 is used to install a second bolt 507. Each screw hole 506 passes through the extension plate 504 and is embedded in the support rod 502. Each screw hole 506 has a second bolt 507. The second bolt 507 is a hand-tightening bolt. The second bolt 507 is used to install the limiting plate 505 onto the extension plate 504 to seal the opening formed between the U-shaped hooks 503.

[0038] Its effect is as follows: after the U-shaped hook 503 holds the item, the limiting plate 505 and the extension plate 504 are attached to each other, and then the second bolt 507 passes through the threaded hole 103 to connect the limiting plate 505 and the support rod 502, thereby preventing the item hung on the U-shaped hook 503 from falling off.

[0039] Working principle: When in use, first open the opening of the G-shaped hanging sleeve 403 using the threaded locking rod 404, allowing the item to be hung on the hanging groove inside the G-shaped hanging sleeve 403. Then, tighten the threaded rod inside the bolt locking rod to close the opening, allowing the secondary hanging component to hang various different items. Next, remove the limiting plate 505 and the second bolt 507 to hang other items on the U-shaped hook 503. Then, fix the second bolt 507 and the limiting plate 505 to the support rod 502, allowing the main hanging component to hang items. Finally, use the external stud 202 and the internal... The screw cylinder 203 is connected to the cross bracket 300 and the mounting module 101. The mounting module 101 is then fixed to the quick-release module 100 using the first bolt 104. The quick-release module 100 is then installed on the bottom of the drone. A parallel inclined structure is formed by the sling 201, which can distribute the weight of the drone's payload, flight vibration, and airflow impact force to multiple connection nodes, reducing the problem of concentrated force at a single point. This can improve the overall rigidity and vibration resistance of the mounting structure and reduce the risk of load swaying and displacement during flight.

[0040] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0041] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A mounting device for a drone, comprising a quick-release module (100) mounted on the bottom of the drone, characterized in that: The quick-release module (100) is detachably equipped with a mounting module (101) at the bottom. The mounting module (101) is detachably equipped with a connecting plate (102) at the bottom. A guide chain (200) is vertically mounted at the center of the bottom of the connecting plate (102). Multiple slings (201) are mounted on the periphery of the connecting plate (102). Each sling (201) is designed to be inclined downward. A cross bracket (300) is provided at the bottom of the multiple slings (201). The bottom of the guide chain (200) is fixed in the middle of the cross bracket (300). A secondary mounting component (400) is provided at the bottom of each end of the cross bracket (300). A main mounting component (500) is provided at the bottom center of the cross bracket (300).

2. The mounting device for a drone as described in claim 1, characterized in that: The mounting module (101) has a threaded hole (103) at each of its four corners. Each threaded hole (103) passes through the mounting module (101) and is embedded in the bottom of the quick-release module (100). Each threaded hole (103) is provided with a first bolt (104).

3. The mounting device for a drone as described in claim 2, characterized in that: One of the threaded holes (103) is provided with an index finger hole (105) on the side adjacent to it. The quick-release module (100) is provided with a plug (106) at the position corresponding to the index finger hole (105). The plug (106) is tightly fitted to the index finger hole (105).

4. The mounting device for a drone as described in claim 3, characterized in that: The quick-release module (100) has an external stud (202) fixedly installed in the center of its lower surface, and the mounting module (101) has an internal screw (203) fixedly installed in the center of its upper surface. The internal screw (203) is threadedly matched with the external stud (202).

5. The mounting device for a drone as described in claim 4, characterized in that: The sling (201) includes a sling (204) connected to the connecting plate (102), and a sling (205) is provided at one end of the sling (204) away from the connecting plate (102). Each sling (205) has an inner ring with a lug (206) and the lugs (206) are fixed to the four ends of the cross bracket (300).

6. The mounting device for a drone as described in claim 5, characterized in that: The air guide chain (200) includes multiple guide chains (207), and the upper part of the multiple guide chains (207) is provided with an upper fixing plate (208), which is connected to the bottom of the connecting plate (102). The lower part of the multiple guide chains (207) is provided with a lower fixing plate (209), which is connected to the upper part of the cross bracket (300).

7. A mounting device for a drone as described in claim 6, characterized in that: Each of the sub-mounted components (400) includes a base (401) connected to one end of the cross bracket (300). Each base (401) has a cable (402) at its bottom. Each cable (402) has a G-shaped sleeve (403) fixedly installed at its bottom. Each G-shaped sleeve (403) has a threaded locking rod (404) at its opening. Each G-shaped sleeve (403) has a rounded corner (405) symmetrically arranged inside.

8. The mounting device for a drone as described in claim 7, characterized in that: The main mounting component (500) includes a pad (501) connected to the cross bracket (300). A support rod (502) is provided at the bottom of the pad (501). A U-shaped hook (503) is provided at each end of the bottom of the support rod (502). An extension plate (504) is fixedly provided at one end of each U-shaped hook (503) near the center of the support rod (502).

9. A mounting device for a drone as described in claim 8, characterized in that: The main mounting component (500) also includes two extension plates (504) with a limiting plate (505) at their lower parts. Each extension plate (504) has a screw hole (506) passing through the limiting plate (505). Each screw hole (506) passes through the extension plate (504) and is embedded in the support rod (502). Each screw hole (506) has a second bolt (507).