Clip-type flare bomb dispersing equipment, flare bomb dispersing assembly and drone

By designing the spreader base and the flame bomb device to be detachably connected, and combining the ignition and grounding electrodes of the electrode plate, the problem that traditional flame bomb spreaders can only be adapted to a single model is solved, and the rapid replacement and spreading of flame bombs are achieved, thereby improving operational efficiency and flexibility.

CN120171761BActive Publication Date: 2025-09-12AVIC (CHENGDU) UAS CO LTD
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Patent Information

Application Number
CN202510661408.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-09-12
Estimated Expiration
2045-05-22

AI Technical Summary

Technical Problem

Traditional flare bomb spreaders can only be adapted to a single type of flare bomb, which means that the entire spreader must be replaced when replacing it, increasing costs and reducing operational efficiency, and failing to meet the flexible operational needs under complex weather conditions.

Method used

The spreader base is designed to be detachably connected to the flame bomb device, and combined with the ignition and grounding electrodes of the spreader electrode plate, the flame bombs can be quickly replaced and spread. A modular structure is used to adapt to different types of flame bombs.

Benefits of technology

It realizes the rapid replacement and spreading of flares, improves operational efficiency and flexibility, meets diverse operational needs, and adapts to complex weather conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a clip-type flame bomb spreading device, a flame bomb spreading assembly, and a drone, which relate to the field of flame bomb spreading technology. The clip-type flame bomb spreading device includes a spreader base, a spreader electrode plate, and a flame bomb device. The spreader electrode plate is provided on the spreader base, and the spreader electrode plate is provided with an ignition electrode and a grounding electrode; the flame bomb device is provided on the spreader base, and the flame bomb device is detachably connected to the spreader base, and the flame bomb device is in contact with the ignition electrode and the grounding electrode. The above-mentioned clip-type flame bomb spreading device, by designing the flame bomb device to be detachably connected to the spreader base, combined with the ignition and grounding electrodes of the spreader electrode plate, realizes the rapid replacement and spreading function of the flame bomb, effectively solves the inefficiency problem of the traditional flame bomb spreader that the entire spreader must be replaced when the flame bomb model is changed, and significantly improves the working efficiency and flexibility.
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Description

Technical Field

[0001] The present application relates to the field of flare bomb dispersing technology, and in particular to a clip-type flare bomb dispersing device, a flare bomb dispersing assembly, and a drone. Background Art

[0002] In weather modification operations, flare seeders, as an important device, are widely used in drone systems to spread catalysts such as silver iodide to achieve artificial rain (snow) and other operations.

[0003] Traditional flare dispensers are typically limited to deploying a single type of flare, such as the YF-5 (21mm diameter) or YF-6 (38.5mm diameter) flare. This design limits customers' choice and use of a variety of flares in different operational scenarios, increasing operational costs and the complexity of equipment replacement. Existing technology requires replacing the entire flare dispenser when changing flare types. This design flaw leads to low operational efficiency, especially in field operations, where it is difficult to quickly adapt to changing operational requirements. Furthermore, a single flare dispenser model cannot meet diverse market demands, limiting the flexibility of drone operations in complex weather conditions. Summary of the Invention

[0004] The purpose of this application is to provide a clip-type flare bomb dispensing device. By designing the flare bomb device to be detachably connected to the spreader base and combining it with the ignition and grounding electrodes of the spreader electrode plate, the device enables rapid replacement and dispensing of flares. This effectively solves the inefficiency of traditional flare bomb dispensers, which require the entire spreader to be replaced when changing bomb models, significantly improving operational efficiency and flexibility. Another purpose of this application is to provide a flare bomb dispensing assembly and a drone.

[0005] To achieve the above objectives, the present application provides a clip-type flame bomb dispersing device, comprising:

[0006] spreader base;

[0007] A spreader electrode plate is provided on the spreader base, and the spreader electrode plate is provided with an ignition electrode and a grounding electrode;

[0008] A flame bomb device is provided on the spreader base, the flame bomb device is detachably connected to the spreader base, and the flame bomb device is in contact with the ignition electrode and the ground electrode.

[0009] In some embodiments, the spreader electrode plate is detachably connected to the spreader base;

[0010] The spreader electrode plate has a first surface and a second surface opposite to each other, the first surface is provided with a plug, the plug being used to be inserted into a socket of the spreader base, and the second surface is provided with the ignition electrode and the ground electrode.

[0011] In some embodiments, the first surface of the spreader electrode plate is further provided with a positioning shoulder, the plug is located on the central axis of the spreader electrode plate, a pair of the positioning shoulders are mirror-symmetrical with the central axis as the axis of symmetry, and the spreader base is provided with a positioning groove that is concave and convex to match the positioning shoulder.

[0012] In some embodiments, a plurality of positioning grooves are provided on the spreader base, any one of the positioning grooves is extended in the width direction of the spreader base, and a plurality of the positioning grooves are spaced apart in the length direction of the spreader base.

[0013] In some embodiments, the flame bomb device includes:

[0014] A flame bomb clip is provided on the base of the spreader, and the flame bomb clip is detachably connected to the base of the spreader;

[0015] The flame bomb is arranged in the flame bomb clip, the flame bomb and the flame bomb clip are detachably connected, and the flame bomb is in contact with the ignition electrode.

[0016] In some embodiments, the flame bomb is provided with an ignition positive electrode and a grounding ring, the ignition positive electrode is located inside the grounding ring, the ignition positive electrode is in contact with the ignition electrode, and the grounding ring is in contact with the grounding electrode; or,

[0017] The flame bomb is provided with an ignition positive electrode and a negative electrode shell, the ignition positive electrode is in contact with the ignition electrode, the negative electrode shell is in contact with the flame bomb clip, and the flame bomb clip is in contact with the ground electrode.

[0018] In some embodiments, the flame bomb magazine includes:

[0019] A magazine body is provided on the spreader base, the magazine body is detachably connected to the spreader base, and the magazine body is provided with a space for loading the flame bomb;

[0020] A replacement accessory is provided on the magazine body, the replacement accessory is detachably connected to the magazine body, and the replacement accessory is provided with a mounting structure that cooperates with the flame bomb.

[0021] In some embodiments, further comprising:

[0022] A pin seat is provided on the base of the spreader, and the pin seat is used to cooperate with the positioning pin of the flame bomb device;

[0023] A locking ring is provided on the spreader base, and is used to lock the flame bomb device to the spreader base after the positioning pin is engaged with the pin seat;

[0024] The pin seats and the locking rings are spaced apart in the width direction of the spreader base, the pin seats are arranged in pairs and spaced apart in the length direction of the spreader base, and the locking rings are on the symmetry axis of the pin seats.

[0025] The present application also provides a flame bomb spreading assembly, including an assembly body and the above-mentioned clip-type flame bomb spreading device, the assembly body includes a fairing, a loading door and an installation guide frame, the installation guide frame is an inverted triangle, and the clip-type flame bomb spreading device is provided on both sides of the installation guide frame.

[0026] The present application also provides a drone comprising the above-mentioned flare bomb dispensing assembly.

[0027] Compared with the above-mentioned background technology, the clip-type flame bomb spreading equipment provided in this application mainly includes a spreader base, a spreader electrode plate and a flame bomb device. The spreader electrode plate is arranged on the spreader base, and the spreader electrode plate is provided with an ignition electrode and a grounding electrode; the flame bomb device is arranged on the spreader base, and the flame bomb device is detachably connected to the spreader base, and the flame bomb device is in contact with the ignition electrode and the grounding electrode.

[0028] Traditional flare dispensers have significant design limitations, being compatible with only a single type of flare, such as the YF-5 (21mm diameter) or YF-6 (38.5mm diameter). This single adaptability necessitates replacing the entire dispenser when changing flare types. This not only increases equipment cost but also significantly reduces operational efficiency, especially during field operations, making it difficult to quickly adapt to changing operational requirements. Furthermore, this design limits the UAV's operational flexibility in complex weather conditions, making it unable to meet the diverse needs of the market.

[0029] In response to this problem, the clip-type flare-spreading equipment provided in this application effectively solves the inefficiency problem of traditional equipment through innovative design ideas. The equipment mainly includes a spreader base, a spreader electrode plate and a flare device. Among them, the spreader electrode plate is installed on the spreader base and is provided with an ignition electrode and a grounding electrode for realizing the ignition function of the flare. The flare device is installed on the spreader base by a detachable connection and is in contact with the ignition electrode and the grounding electrode. This detachable connection design makes it unnecessary to replace the entire spreader when changing the type of flare, but only to disassemble and replace the flare device. For example, one flare device can be used to load YF-5 flares, and another flare device can be used to load YF-6 flares. Through this detachable relationship, users can quickly change the type of flares according to actual work needs, thereby significantly improving work efficiency and flexibility.

[0030] Combined with the above structure and process description, it can be seen that the clip-type flame bomb spreading equipment has at least the following beneficial effects: the clip-type flame bomb spreading equipment, by designing the flame bomb device to be detachably connected to the spreader base, combined with the ignition and grounding electrodes of the spreader electrode plate, realizes the rapid replacement and spreading function of the flame bomb, effectively solves the inefficiency problem of the traditional flame bomb spreader that the entire set of spreaders must be replaced when the flame bomb model is changed, and significantly improves the working efficiency and flexibility. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without any creative work.

[0032] Figure 1 A schematic diagram of a clip-type flame bomb dispersing device provided in an embodiment of the present application;

[0033] Figure 2 An electrode contact diagram of a clip-type flame bomb dispersing device provided in an embodiment of the present application;

[0034] Figure 3 An exploded view of a clip-type flame bomb dispersing device provided in an embodiment of the present application;

[0035] Figure 4 An electrode contact diagram of a clip-type flame bomb dispersing device provided in another embodiment of the present application;

[0036] Figure 5 A schematic diagram of a flame bomb device and a flame bomb provided in an embodiment of the present application;

[0037] Figure 6 A schematic diagram of a flame bomb device and a flame bomb provided in another embodiment of the present application;

[0038] Figure 7 A schematic diagram of a spreader electrode plate provided in an embodiment of the present application;

[0039] Figure 8 A schematic diagram of a spreader base provided in an embodiment of the present application;

[0040] Figure 9 A schematic diagram of a flame bomb dispensing assembly provided in an embodiment of the present application;

[0041] Figure 10 A schematic diagram of a flame bomb dispensing assembly provided in an embodiment of the present application without the flame bomb device;

[0042] Figure 11 A schematic diagram of the installation guide frame provided in an embodiment of the present application.

[0043] in:

[0044] Clip-type flame bomb dispersing equipment 100,

[0045] Spreader base 1, socket 11, positioning groove 12,

[0046] Spreader electrode plate 2, ignition electrode 21, grounding electrode 22, plug 23, positioning shoulder 24,

[0047] Flame bomb device 3, flame bomb clip 31, top plate 311, bottom plate 312, side plate 313, flame bomb 32, ignition positive electrode 321, grounding ring 322, negative electrode shell 323, positioning pin 33,

[0048] Pin seat 4,

[0049] Locking ring 5,

[0050] Assembly body 200,

[0051] Fairing 6,

[0052] Install the guide frame 7.

[0053] Flare bomb dispensing assembly 1000. DETAILED DESCRIPTION

[0054] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0055] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0056] Please refer to Figure 1 and Figure 2 , Figure 1 This is a schematic diagram of a clip-type flame bomb dispersing device provided in an embodiment of the present application. Figure 2 This is an electrode contact diagram of the clip-type flame bomb dispersing device provided in an embodiment of the present application.

[0057] In the first specific embodiment, the clip-type flame bomb spreading equipment 100 provided in the implementation scheme of the present application mainly includes a spreader base 1, a spreader electrode plate 2 and a flame bomb device 3. The spreader electrode plate 2 is arranged on the spreader base 1, and the spreader electrode plate 2 is provided with an ignition electrode 21 and a grounding electrode 22; the flame bomb device 3 is arranged on the spreader base 1, and the flame bomb device 3 is detachably connected to the spreader base 1, and the flame bomb device 3 is in contact with the ignition electrode 21 and the grounding electrode 22.

[0058] Traditional flare dispensers have significant design limitations, being compatible with only a single type of flare, such as the YF-5 (21mm diameter) or YF-6 (38.5mm diameter). This single adaptability necessitates replacing the entire dispenser when changing flare types. This not only increases equipment cost but also significantly reduces operational efficiency, especially during field operations, making it difficult to quickly adapt to changing operational requirements. Furthermore, this design limits the UAV's operational flexibility in complex weather conditions, making it unable to meet the diverse needs of the market.

[0059] To address this problem, the clip-type flare-spreading device 100 provided in this application effectively solves the inefficiency problem of traditional equipment through innovative design ideas. The device mainly includes a spreader base 1, a spreader electrode plate 2 and a flare device 3. Among them, the spreader electrode plate 2 is installed on the spreader base 1 and is provided with an ignition electrode 21 and a grounding electrode 22 for realizing the ignition function of the flare. The flare device 3 is installed on the spreader base 1 in a detachable connection manner and is in contact with the ignition electrode 21 and the grounding electrode 22. This detachable connection design makes it unnecessary to replace the entire spreader when changing the type of flare. It is only necessary to disassemble and replace the flare device 3. For example, one flare device 3 can be used to load YF-5 flares, and another flare device 3 can be used to load YF-6 flares. Through this detachable relationship, users can quickly change the type of flares according to actual work needs, thereby significantly improving work efficiency and flexibility.

[0060] Combined with the above structure and process description, it can be seen that the clip-type flame bomb spreading equipment 100 has at least the following beneficial effects: the clip-type flame bomb spreading equipment 100, by designing the flame bomb device 3 to be detachably connected to the spreader base 1, combined with the ignition electrode 21 and the grounding electrode 22 of the spreader electrode plate 2, realizes the rapid replacement and spreading function of the flame bomb, effectively solves the inefficiency problem of the traditional flame bomb spreader that the entire set of spreaders must be replaced when the flame bomb model is changed, and significantly improves the working efficiency and flexibility.

[0061] Please refer to Figures 3 to 8 ,in, Figure 3 This is an exploded view of the clip-type flame bomb dispersing device provided in an embodiment of the present application. Figure 4This is an electrode contact diagram of a clip-type flame bomb dispersing device provided in another embodiment of the present application. Figure 5 This is a schematic diagram of the flame bomb device and flame bomb provided in the embodiment of the present application. Figure 6 This is a schematic diagram of a flame bomb device and a flame bomb provided in another embodiment of the present application. Figure 7 A schematic diagram of a spreader electrode plate provided in an embodiment of the present application, Figure 8 A schematic diagram of a spreader base provided in an embodiment of the present application.

[0062] In some embodiments, the spreader electrode plate 2 is detachably connected to the spreader base 1; the spreader electrode plate 2 has a first surface and a second surface that are opposite, the first surface is provided with a plug 23, the plug 23 is used to be inserted into the socket 11 of the spreader base 1, and the second surface is provided with an ignition electrode 21 and a grounding electrode 22.

[0063] In this embodiment, the spreader electrode plate 2 and the spreader base 1 are connected in a detachable manner. This design greatly facilitates maintenance and replacement of the device, as well as the adaptation of different electrode plate models. This detachable connection allows users to quickly replace the spreader electrode plate 2 as needed without the complex disassembly and assembly of the entire spreader, thereby improving the device's operational flexibility and maintenance efficiency.

[0064] The spreader electrode plate 2 has two opposing surfaces: a first surface and a second surface. The first surface is provided with a plug 23, which mates with the socket 11 on the spreader base 1. This plug-and-socket connection not only ensures a secure connection between the electrode plate and the base, but also ensures quick positioning and securing of the electrode plate during installation, further enhancing assembly convenience. This connection also facilitates a stable electrical connection, ensuring reliable ignition and grounding functions.

[0065] The second surface is equipped with an ignition electrode 21 and a grounding electrode 22, which are key components for igniting the flare. The ignition electrode 21 provides the electrical energy required for ignition, while the grounding electrode 22 ensures secure grounding of the electrical system, preventing electrical failures and accidents. By integrating the ignition and grounding electrodes on the same surface of the spreader electrode plate 2, the electrode plate's spatial layout is optimized, while also facilitating electrical connection with the flare device and ensuring reliable ignition of the flare during dispersal.

[0066] In some cases, for every ignition electrode 21 provided, two ground electrodes 22 are provided, and the ignition electrode 21 is located at the midpoint of the line connecting the two ground electrodes 22 .

[0067] In some embodiments, the first surface of the spreader electrode plate 2 is also provided with a positioning shoulder 24, the plug 23 is located on the central axis of the spreader electrode plate 2, a pair of positioning shoulders 24 are mirror-symmetrical with the central axis as the axis of symmetry, and the spreader base 1 is provided with a positioning groove 12 that is concave and convex to match the positioning shoulder 24.

[0068] In this embodiment, the design of the spreader electrode plate 2 is further optimized to improve the precision and stability of its connection to the spreader base 1. In addition to the plug 23, the first surface of the spreader electrode plate 2 also features a positioning shoulder 24. This design not only enhances the connection reliability between the electrode plate and the base but also improves positioning accuracy during assembly.

[0069] The plug 23 is located on the central axis of the spreader electrode plate 2. This layout allows the electrode plate to be quickly aligned with the socket 11 on the spreader base 1 during installation, achieving a precise electrical connection. Furthermore, a pair of locating shoulders 24 are arranged in mirror-symmetric fashion about the central axis. This symmetrical design further ensures uniform force distribution on the electrode plate during installation, preventing tilting or loosening of the electrode plate due to improper installation.

[0070] The spreader base 1 is provided with a positioning groove 12 that mates with the positioning shoulder 24 in a concave-convex manner. This concave-convex design enables the spreader electrode plate 2 to be quickly positioned and fixed during installation through the cooperation of the positioning shoulder 24 and the positioning groove 12. This mechanical positioning method not only improves assembly efficiency, but also ensures the stability of the electrode plate during use, preventing the electrode plate from shifting due to vibration or other external forces, thereby affecting the reliability of the electrical connection. Through the cooperation of the positioning shoulder 24 and the positioning groove 12, the spreader electrode plate 2 can be firmly installed on the spreader base 1, providing reliable mechanical and electrical protection for the ignition and grounding functions of the flame bomb.

[0071] In some cases, after the spreader electrode plate 2 and the spreader base 1 are positioned and installed, the spreader electrode plate 2 is fixed by screws.

[0072] In some embodiments, a plurality of positioning grooves 12 are provided on the spreader base 1 , and any positioning groove 12 extends in the width direction of the spreader base 1 , and the plurality of positioning grooves 12 are spaced apart in the length direction of the spreader base 1 .

[0073] In this embodiment, the design of the spreader base 1 provides multiple optional positions for the installation of the flame bomb device 3 by providing multiple positioning slots 12. This design significantly enhances the flexibility and scalability of the device.

[0074] Each positioning slot 12 extends across the width of the spreader base 1. This arrangement allows the flame bomb device 3 to securely mount along the width of the spreader base 1 through its positioning structure and the positioning slots 12. Furthermore, multiple positioning slots 12 are spaced apart along the length of the spreader base 1, allowing users to select different positioning slots 12 to mount the flame bomb device 3 based on their needs.

[0075] This multi-positioning slot design has important practical significance. First, it allows multiple flame bomb devices 3 to be installed on the same spreader base 1, thereby improving the operating efficiency of the equipment. For example, in some complex operating scenarios, it may be necessary to use multiple flame bombs of different models or functions at the same time. Through multiple positioning slots 12, users can quickly install multiple flame bomb devices 3 to meet diverse operating needs. Secondly, this design facilitates the upgrade and expansion of the equipment. If more flame bomb devices 3 need to be added, users can directly use other unused positioning slots 12 for installation without the need for additional modification or replacement of the spreader base 1.

[0076] Furthermore, the design of multiple positioning slots 12 improves the device's fault tolerance and reliability. If a positioning slot 12 becomes inoperable due to long-term use or accidental damage, the user can select another positioning slot 12 to install, ensuring normal operation of the device. This design not only optimizes the device's space utilization efficiency but also provides users with greater operational flexibility, allowing the spreader base 1 to better adapt to different usage scenarios and needs.

[0077] In some embodiments, the flame bomb device 3 includes: a flame bomb clip 31, which is provided on the spreader base 1, and the flame bomb clip 31 is detachably connected to the spreader base 1; a flame bomb 32, which is provided on the flame bomb clip 31, and the flame bomb 32 is detachably connected to the flame bomb clip 31, and the flame bomb 32 is in contact with the ignition electrode 21.

[0078] In this embodiment, the flame bomb device 3 also adopts a modular design, primarily comprising a flame bomb clip 31 and flame bombs 32. The flame bomb clip 31 is mounted on the spreader base 1 and is detachably connected to the spreader base 1. This design allows the flame bomb clip 31 to be easily removed from the spreader base 1, facilitating maintenance, replacement, or reloading.

[0079] The flare 32 is installed in the flare clip 31 and is also detachably connected to the flare clip 31. This detachable design not only facilitates the replacement of the flare 32, but also allows the flare 32 to be loaded while the flare clip 31 is detached from the spreader base 1. This off-site loading method has significant advantages, especially in scenarios where rapid deployment is required.

[0080] Due to the detachable connection between the flare cartridge clip 31 and the spreader base 1, the loading operation of the flare cartridge 32 can be performed on the flare cartridge clip 31 alone without having to install it on the spreader base 1. This means that the loading operation can be performed on the ground or in other convenient operating environments, without being restricted by the spreader base 1. After loading is completed, the flare cartridge clip 31 can be quickly reinstalled on the spreader base 1 and contacted with the ignition electrode 21, thereby enabling the normal use of the flare cartridge 32. This off-site loading method greatly shortens the time to re-deployment, improves the operating efficiency and flexibility of the equipment, and is particularly suitable for time-sensitive scenarios such as field operations.

[0081] It should be noted that the flame bomb 32 in this embodiment can be a YF-5 flame bomb or a YF-6 flame bomb. In addition to the obvious difference in diameter, the two also differ in electrode contact.

[0082] In some embodiments, the flame bomb 32 is provided with an ignition positive electrode 321 and a grounding ring 322, the ignition positive electrode 321 is located inside the grounding ring 322, the ignition positive electrode 321 is in contact with the ignition electrode 21, and the grounding ring 322 is in contact with the grounding electrode 22; or, the flame bomb 32 is provided with an ignition positive electrode 321 and a negative electrode shell 323, the ignition positive electrode 321 is in contact with the ignition electrode 21, the negative electrode shell 323 is in contact with the flame bomb clip 31, and the flame bomb clip 31 is in contact with the grounding electrode 22.

[0083] In this embodiment, the design of the flame bomb 32 adopts different electrode contact methods according to different models (YF-5 and YF-6) to adapt to their different sizes and electrical connection requirements.

[0084] Due to its smaller diameter, the YF-5 flare uses an electrode contact method of an ignition positive electrode 321 and a negative electrode shell 323. In this design, the ignition positive electrode 321 directly contacts the ignition electrode 21 on the spreader electrode plate 2, thereby realizing the ignition function of the flare. The negative electrode shell 323 contacts the flare clip 31, and the flare clip 31 further contacts the grounding electrode 22, thereby realizing the grounding function. This design method fully utilizes the smaller size of the YF-5 flare. Through the contact between the negative electrode shell 323 and the flare clip 31, grounding is indirectly achieved, which not only ensures the reliability of the electrical connection, but also simplifies the structural design, allowing the YF-5 flare to be better adapted to this clip-type flare broadcasting equipment.

[0085] Due to its larger diameter, the YF-6 flare adopts an electrode contact method of an ignition positive electrode 321 and a grounding ring 322. In this design, the ignition positive electrode 321 is also in contact with the ignition electrode 21 to achieve the ignition function. The grounding ring 322 is directly in contact with the grounding electrode 22 to achieve the grounding function. This design method makes full use of the larger diameter of the YF-6 flare, and directly contacts the grounding electrode 22 through the grounding ring 322, ensuring the stability and reliability of the grounding. This direct grounding method can better adapt to the size and electrical connection requirements of the YF-6 flare, ensuring its safety and reliability during the sowing process.

[0086] Through the above two different electrode contact methods, this clip-type flare bomb dispersing equipment can flexibly adapt to flares of two different diameters, YF-5 and YF-6, to meet the diverse needs in different operating scenarios, further improving the versatility and flexibility of the equipment.

[0087] In some embodiments, the flame bomb clip 31 includes: a clip body, which is provided on the spreader base 1, the clip body is detachably connected to the spreader base 1, and the clip body is provided with a space for loading the flame bomb 32; a replacement accessory, which is provided on the clip body, the replacement accessory is detachably connected to the clip body, and the replacement accessory is provided with an installation structure that cooperates with the flame bomb 32.

[0088] In this embodiment, the flare magazine 31 is designed in a modular structure to meet the loading requirements of different types of flare rounds (such as YF-5 and YF-6). The core of this modular design lies in the combination of the magazine body and replacement accessories, which allows the flare magazine 31 to be flexibly adjusted according to actual needs.

[0089] The clip body is the foundation of the flare clip 31. It is mounted on the spreader base 1 and maintains a removable connection to it. This connection not only facilitates installation and removal of the clip body, but also allows for quick replacement of the entire clip body when needed. The clip body also contains a space for the flare 32, providing the necessary support and positioning for the flare. This portion is designed to remain relatively fixed to ensure the clip body's stability and reliability.

[0090] The replacement accessory is a key component of the modular design. It is detachably connected to the main magazine body and features a mounting structure for the flare projectile 32. This design allows the user to select the appropriate replacement accessory based on the type of flare projectile, thereby changing the form of the flare magazine 31. For example, when loading the YF-5 flare projectile, a matching replacement accessory can be selected; when loading the YF-6 flare projectile, another type of accessory can be replaced. This flexibility allows the flare magazine 31 to adapt to a variety of different operational needs, improving the versatility and applicability of the equipment.

[0091] In this embodiment, the flame bomb magazine 31 may include a top plate 311, a bottom plate 312 and a side plate 313, any one or more of which may serve as replacement parts. For example, the top plate 311 may serve as a replacement part, on which a through hole is provided, the diameter of which matches the first end of the flame bomb 32, for the first end of the flame bomb 32 to pass through. By replacing the top plate 311 with through holes of different diameters, the form of the flame bomb magazine 31 can be changed to accommodate flame bombs of different diameters. Similarly, the bottom plate 312 may also serve as a replacement part, on which a countersunk hole is provided, which is positioned and matched with the second end of the flame bomb 32. By replacing the bottom plate 312 with different countersunk hole sizes, the form of the flame bomb magazine 31 can also be changed.

[0092] It should be noted that this embodiment does not limit the specific structure of the replacement accessories. Replacement accessories are parts that need to change with the structure of the flare 32, while the main body of the magazine remains unchanged, providing a stable loading base for the flare. This modular design not only improves the flexibility and adaptability of the flare magazine 31, but also reduces maintenance costs and replacement difficulty, allowing the flare magazine 31 to better meet diverse operational needs.

[0093] In some embodiments, it also includes: a pin seat 4, which is provided on the spreader base 1, and the pin seat 4 is used to cooperate with the positioning pin 33 of the flame bomb device 3; a locking ring 5, which is provided on the spreader base 1, and the locking ring 5 is used to lock the flame bomb device 3 to the spreader base 1 after the positioning pin 33 cooperates with the pin seat 4; wherein, the pin seat 4 and the locking ring 5 are spaced apart in the width direction of the spreader base 1, the pin seats 4 are arranged in pairs and spaced apart in the length direction of the spreader base 1, and the locking ring 5 is on the symmetry axis of the pin seat 4.

[0094] In this embodiment, a pin holder 4 and a locking ring 5 are further provided on the spreader base 1 to ensure the stable installation and precise positioning of the flame bomb device 3. This design improves the connection reliability between the flame bomb device 3 and the spreader base 1 by mechanical positioning and locking.

[0095] Pin holders 4 are mounted on the spreader base 1. Their primary function is to cooperate with the locating pins 33 on the flame bomb device 3 to achieve initial positioning of the flame bomb device 3. During installation, the locating pins 33 are first inserted into the pin holders 4. This mating relationship allows the flame bomb device 3 to quickly find its correct position on the spreader base 1. Pin holders 4 are arranged in pairs and spaced apart along the length of the spreader base 1. This layout not only provides multiple positioning points, ensuring the flame bomb device 3 can be installed in different locations, but also enhances positioning stability.

[0096] The locking ring 5 is also mounted on the spreader base 1, located on the axis of symmetry of the pin holder 4 and spaced apart from the pin holder 4 across the width of the spreader base 1. The locking ring 5's primary function is to further secure the flare device 3 to the spreader base 1 after the locating pin 33 engages the pin holder 4. During installation, once the flare device 3 is initially positioned using the locating pin 33 and the pin holder 4, adjusting the locking ring 5 secures the flare device 3 to the spreader base 1, preventing it from loosening or shifting due to vibration or other external forces during operation.

[0097] The advantage of this design is that, through the cooperation of the positioning pin 33 and the pin seat 4, and the locking action of the locking ring 5, the flame bomb device 3 can be quickly, accurately, and securely installed on the spreader base 1. This mechanical positioning and locking method not only improves installation efficiency, but also ensures the reliability of the flame bomb device 3 during use, thereby improving the performance and safety of the entire clip-type flame bomb spreading equipment.

[0098] In some cases, the locking ring 5 includes a fixed seat, a rotating shaft and a locking nut. The fixed seat is fixedly mounted on the spreader base 1, the rotating shaft is rotatably connected to the fixed seat, and the locking nut is installed on the rotating shaft through a thread. When in use, the rotating shaft is twisted to make the rotating shaft fit into the hole groove on the flame bomb clip 31 of the flame bomb device 3, and then the locking nut is rotated to press the flame bomb clip 31 onto the spreader base 1.

[0099] In one specific embodiment, the clip-type flare dispensing device 100 further integrates a flare execution controller as a scheduling unit, significantly enhancing the system's intelligence and automation. The core function of the flare execution controller is to receive and decode instructions from the control software, thereby achieving precise control of the flare dispensing process.

[0100] When the aircraft leaves the ground and enters operational mode, the flare execution controller calculates the specific execution units that need power based on the user's pre-set parameters and the selected flare type. This process requires precise identification and management of flares, ensuring that the correct flare is activated at the correct time. By establishing a communication link with the control unit, the flare execution controller receives instructions and executes corresponding operations, such as performing ignition head resistance testing or directly controlling flare ignition.

[0101] Please refer to Figures 9 to 11 ,in, Figure 9 This is a schematic diagram of the flame bomb dispersing assembly provided in an embodiment of the present application. Figure 10 This is a schematic diagram of the flame bomb dispersing assembly provided in an embodiment of the present application without the flame bomb device. Figure 11 A schematic diagram of the installation guide frame provided in an embodiment of the present application.

[0102] The present application also provides a flame bomb spreading assembly 1000, including an assembly body 200 and the above-mentioned clip-type flame bomb spreading device 100. The assembly body 200 includes a fairing 6, a loading door and an installation guide frame 7. The installation guide frame 7 is an inverted triangle, and the clip-type flame bomb spreading device 100 is provided on both sides of the installation guide frame 7.

[0103] In this embodiment, the present application provides a flare bomb dispensing assembly 1000, designed to efficiently integrate a clip-type flare bomb dispensing device 100 into a complete system to meet the needs of use in complex operating environments. The flare bomb dispensing assembly 1000 comprises an assembly body 200 and the clip-type flare bomb dispensing device 100. The assembly body 200 includes a fairing 6, a loading door, and a mounting guide frame 7. The mounting guide frame 7 is in the shape of an inverted triangle, with the clip-type flare bomb dispensing device 100 mounted on either side. The mounting guide frame 7 is secured to the base 1 of the dispenser by connecting to the dispenser.

[0104] The design of the mounting guide frame 7 is one of the key innovations of this embodiment. Its inverted triangular structure not only provides stable support for the clip-type flare dispensing device 100, but also, through its mounting points on both sides, allows for the simultaneous installation of two dispensing devices while maintaining a consistent dispensing angle. This design significantly improves the stability of the device, ensuring that the flare dispensing device 100 maintains a stable operating state during flight, thereby enhancing the accuracy and reliability of flare dispensing.

[0105] Furthermore, the design of the mounting guide frame 7 emphasizes lightweight design. By optimizing material selection and structural design, the assembly's weight is minimized while ensuring sufficient strength. This lightweight design not only increases the drone's payload capacity but also reduces energy consumption, extending its flight time, making the pyrotechnic bomb dispensing assembly 1000 more adaptable to operations in long periods of time and complex environments.

[0106] The design of the fairing 6 and loading door further enhances the functionality of the flare dispensing assembly 1000. The fairing 6 effectively protects internal components, such as the flare actuation controller, from the harsh external environment while optimizing aerodynamic performance and reducing flight drag. The loading door facilitates the loading and replacement of flares, improving operational efficiency. These design details collectively enhance the overall performance of the flare dispensing assembly 1000, making it more efficient and reliable in practical applications.

[0107] The present application also provides a drone, comprising the above-mentioned flare bomb dispensing assembly 1000.

[0108] The UAV should have all the beneficial technical effects of the above-mentioned flare bomb spreading assembly 1000 and the clip-type flare bomb spreading device 100, which will not be described in detail here.

[0109] It should be noted that many of the components mentioned in this application are universal standard parts or components known to those skilled in the art, and their structures and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods.

[0110] It should be noted that, in this specification, relational terms such as first and second are merely used to distinguish one entity from other entities, but do not necessarily require or imply any actual relationship or order between these entities.

[0111] The above is a detailed introduction to the clip-type pyrotechnic bomb dispensing device, pyrotechnic bomb dispensing assembly, and drone provided by this application. This article uses specific examples to illustrate the principles and implementation methods of this application. The description of the above examples is only intended to help understand the method and core concept of this application. It should be noted that for ordinary technicians in this technical field, without departing from the principles of this application, several improvements and modifications can be made to this application, and these improvements and modifications also fall within the scope of protection of this application.

Claims

1. A clip-type flame bomb dispersing device, characterized in that: include: spreader base; A spreader electrode plate is provided on the spreader base, and the spreader electrode plate is provided with an ignition electrode and a grounding electrode; a flame bomb device, provided on the spreader base, the flame bomb device being detachably connected to the spreader base, and the flame bomb device being in contact with the ignition electrode and the ground electrode; The electrode plate of the spreader is detachably connected to the base of the spreader; The spreader electrode plate has a first surface and a second surface opposite to each other, the first surface is provided with a plug, the plug is used to be inserted into the socket of the spreader base, and the second surface is provided with the ignition electrode and the ground electrode; The flame bomb device comprises: A flame bomb clip is provided on the base of the spreader, and the flame bomb clip is detachably connected to the base of the spreader; A flame bomb is provided in the flame bomb clip, the flame bomb is detachably connected to the flame bomb clip, and the flame bomb is in contact with the ignition electrode; The flame bomb is provided with an ignition positive electrode and a grounding ring, the ignition positive electrode is located inside the grounding ring, the ignition positive electrode is in contact with the ignition electrode, and the grounding ring is in contact with the grounding electrode; or, The flame bomb is provided with an ignition positive electrode and a negative electrode shell, the ignition positive electrode contacts the ignition electrode, the negative electrode shell contacts the flame bomb clip, and the flame bomb clip contacts the ground electrode; The flame bomb clip includes: A magazine body is provided on the spreader base, the magazine body is detachably connected to the spreader base, and the magazine body is provided with a space for loading the flame bomb; A replacement accessory is provided on the magazine body, the replacement accessory is detachably connected to the magazine body, and the replacement accessory is provided with a mounting structure that cooperates with the flame bomb; A pin seat is provided on the base of the spreader, and the pin seat is used to cooperate with the positioning pin of the flame bomb device; A locking ring is provided on the spreader base, and is used to lock the flame bomb device to the spreader base after the positioning pin is engaged with the pin seat; The pin seats and the locking rings are spaced apart in the width direction of the spreader base, the pin seats are arranged in pairs and spaced apart in the length direction of the spreader base, and the locking rings are on the symmetry axis of the pin seats.

2. The clip-type flame bomb dispersing device according to claim 1, characterized in that: The first surface of the spreader electrode plate is also provided with a positioning shoulder, the plug is located on the central axis of the spreader electrode plate, a pair of the positioning shoulders are mirror-symmetrical with the central axis as the axis of symmetry, and the spreader base is provided with a positioning groove that matches the positioning shoulder.

3. The clip-type flame bomb dispersing device according to claim 2, characterized in that: The spreader base is provided with a plurality of positioning grooves, any one of the positioning grooves is extended in the width direction of the spreader base, and the plurality of positioning grooves are distributed at intervals in the length direction of the spreader base.

4. A flame bomb dispersing assembly, characterized in that: It comprises an assembly body and a clip-type flame bomb scattering device as described in any one of claims 1 to 3, wherein the assembly body comprises a fairing, a loading door and a mounting guide frame, the mounting guide frame is an inverted triangle, and the clip-type flame bomb scattering device is provided on both sides of the mounting guide frame.

5. A drone, characterized in that: It includes the flame bomb dispersing assembly as described in claim 4.

Citation Information

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