Optimal method for resisting bullet special for unmanned aerial vehicle laser guide gun in antiaircraft machine gun group array

CN121474946APending Publication Date: 2026-02-06陈明
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Patent Information

Application Number
CN202511247428.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2026-02-06

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Abstract

According to the optimal method for the bullet special for the antiaircraft machine gun group array anti-unmanned aerial vehicle laser guide gun, a primer is arranged in the middle of the lower portion of the special bullet, a bullet shell is arranged on the outer edge, propellant powder is arranged in the middle of the bullet, and a large bullet is arranged above the middle of the bullet; a plurality of small sub bullets with the number of about 3 to about 300 are arranged on the periphery of the large bullet; the weapons which work by themselves are arranged on the respective posts.
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Description

Technical Field

[0001] This invention relates to a machine gun bullet, and more particularly to a new type of bullet specifically designed to target small unmanned aerial vehicles (UAVs), which is a foolproof method of sieve-like strikes against targets specifically designed for UAVs (the nemesis of UAVs); and to the best method for using bullets specifically designed for anti-UAV laser-guided guns in anti-aircraft machine gun arrays. Background Technology

[0002] Currently, the threat posed by publicly disclosed offensive small drones to both military and civilians is increasing. The military is making every effort to resolve the technical problems and shortcomings of existing technologies to protect its troops from the ever-present threat of aerial death. At present, drones used for aerial weaponry are becoming increasingly common. The world is constantly seeking ways to make its small arms more effective in countering the serious threat posed by small drones. The current shortcomings of the latest technologies are: low payload and low bullet accuracy. Summary of the Invention

[0003] Bullets are weapons fired from firearms; in wartime, they are one of the simplest tools for killing enemies or destroying supplies.

[0004] Ammunition fired by firearms is typically cylindrical at the rear and conical at the front, and is generally made of lead, steel, or lead-core steel casing; it is a bullet. It consists of four parts: the cartridge case, primer, propellant, and projectile. During firing, a firing pin strikes the primer, causing the propellant to ignite and generate gases that propel the projectile. Electricity can be used to fire multiple bullets simultaneously and synchronously.

[0005] Regardless of its style or shape, a bullet consists of four parts: the projectile, the cartridge case, the propellant, and the primer. For bullets, regardless of their intended use, the internationally accepted propellant is mostly smokeless powder: smokeless powder can be divided into single-base, double-base, and triple-base (its main component is nitrocellulose), with firearms mostly using single-base powder. Different firearms have different requirements for their ammunition.

[0006] The primer consists of a ignition port, an anvil, and propellant. Its function is to generate a flame during firing, rapidly and reliably igniting the propellant. During firing, the propellant ignites upon impact with the firing pin and anvil, and the flame ignites the propellant through the ignition port.

[0007] When fired, the firing pin ignites the primer. The primer burns rapidly, igniting the propellant inside the cartridge case. The propellant undergoes a momentary combustion, generating high temperature and pressure, which forces the projectile (projectile) out of the cartridge case. Propelled by the high pressure generated by the propellant, the projectile moves forward, is squeezed by the rifling, and spins, eventually being ejected from the chamber.

[0008] A typical bullet consists of four parts: the projectile, the cartridge case, the propellant, and the percussion cap. The projectile penetrates the target by traveling at high speed; the cartridge case connects the projectile and protects the propellant and seals the propellant gases; the propellant imparts a high initial velocity to the projectile through combustion; and the percussion cap is used for ignition. However, this only refers to ordinary bullets. Other special bullets, testing bullets, and auxiliary bullets differ, and their component proportions also vary depending on the type of bullet.

[0009] This invention provides a low-cost offensive method to protect small drones from the ever-present threat of aerial death. Shooting down fast-moving small drones with conventional weapons is a significant challenge even for the most skilled sharpshooters.

[0010] Currently, manually aiming a small, fast-moving drone with a gun is an even greater challenge, even for sharpshooters and soldiers equipped with advanced weapon sights.

[0011] To overcome the shortcomings of existing anti-aircraft machine guns in targeting small drones, such as low ammunition output and low hit rate, the technical solution adopted by this invention is as follows: After a "bullet rain" of bullets fired from a Phalanx CIWS (Close-In Weapon System) long-range and short-range defensive weapon system, a single large bullet will disintegrate into approximately 3 to approximately 300 high-speed projectiles. The continuous, rapid firing of numerous bullets creates an impenetrable barrier, resembling a bullet wall, which is guaranteed to effectively strike drones.

[0012] This invention is a brand-new nemesis of small drones. Under the control of a sharpshooter, a group of machine guns fires in a sieve-like pattern at the target, creating a "bullet rain" that is a powerful weapon specifically designed to destroy drones.

[0013] This is a clever and simple solution that expands the range of the target's central red dot while firing simultaneously from multiple anti-aircraft machine guns. It utilizes the principle of expanding the range of the target's central red dot by shining a flashlight into the sky at night. It's also an optimal method for using laser-guided bullets specifically designed for anti-drone drones, employing electrically fired multiple sensitive, easily explosive bullets.

[0014] By continuously firing at large targets within a range that expands the effectiveness of one against a hundred, it is extremely easy to hit the targets, making it a foolproof weapon specifically designed to strike drones; it is a powerful tool for combating drones in future wars.

[0015] With a barrage of bullets fired at small aerial drones, not only is it sufficient to shoot them down in a minimal amount of time, but it also allows for lateral fire, enabling accurate targeting of targets other than the drone itself. This expands the range of aerial targets. With a sharpshooter controlling approximately several to hundreds of anti-aircraft machine guns, and the machine gun corps simultaneously firing at large targets, this weapon will undoubtedly prioritize protecting itself against small drones. It will likely hit the drone within minutes; continuous fire makes it easy and foolproof, a true nemesis of drones.

[0016] Laser guidance is a technology that utilizes the characteristics of laser beams (such as high monochromaticity, strong directionality, and high brightness) to locate, track, indicate, or measure targets, thereby guiding a vehicle to or to the target. Its core idea is to establish a "channel" using laser light as the information carrier, allowing the guided object to perceive its relative position to this channel and continuously adjust its attitude through a control system, ultimately reaching the target accurately along the channel.

[0017] The technology involves firing bullets in a sieve-like pattern, striking the target from within a dense, mesh-like encirclement of approximately several to hundreds of machine guns, ensuring the target's safety within the blockade. This technology, employing a multi-gun swarm to simultaneously fire upon the target from a distance, is a highly effective weapon against drones in future warfare. It is the best method for using laser-guided anti-drone ammunition. However, this technology is poorly documented in literature, and to date, no literature or products demonstrating this technology have been discovered.

[0018] The purpose of this invention is to provide an optimal method for producing special bullets for anti-drone laser-guided guns used in anti-aircraft machine gun swarms.

[0019] The solution adopted by the present invention to solve its technical problem is as follows: the technical solution of the present invention includes a [feature / equipment] provided in [the specific location / area]. Figure 1In this design, a specially designed large projectile is positioned at the top center, with propellant placed in the middle. Below the propellant is a primer. Around the large projectile, approximately 3 to 300 smaller sub-projectiles are arranged around its perimeter. Below these smaller sub-projectiles, the propellant is placed in the middle. Finally, a cartridge case is positioned on the outer edge of the large projectile.

[0020] exist Figure 2 In the middle, a specially designed large projectile is positioned above the bullet, a specially designed propellant is positioned in the middle of the bullet, and a specially designed primer is positioned in the middle of the bottom. A specially designed cartridge case is positioned on the outer edge of the large projectile above the middle. Around the large projectile, there are approximately 3 to 300 smaller, specially designed sub-projectiles. The special type has a large projectile in the upper middle, a special type of cartridge case on the outer edge, and many special type small bullets (about 3 to 300) around the outer edge of the large projectile. The special type of propellant is placed in the middle of the bullet.

[0021] The beneficial effects of this invention are: 1. Low cost; 2. Simple structure; 3. Stable performance; 4. Lock-on, aiming, and firing; 5. The bullets fired in a sieve-like attack on targets are specifically designed to kill drones, creating a foolproof "bullet rain" anti-drone bullet; 6. This new type of special bullet is a powerful weapon for killing drones in future wars. Attached Figure Description

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] Laser guidance is a technology that utilizes the characteristics of laser beams (such as high monochromaticity, strong directionality, and high brightness) to locate, track, indicate, or measure targets, thereby guiding a vehicle to or to the target. Its core idea is to establish a "channel" using laser light as the information carrier, allowing the guided object to perceive its relative position to this channel and continuously adjust its attitude through a control system, ultimately accurately reaching the target along the channel.

[0024] Figure 1 This is a simplified schematic diagram illustrating the working principle of the optimal method for using laser-guided bullets in anti-drone laser-guided guns with a high-explosive anti-drone machine gun array (the bullets fired in a sieve-like pattern are specifically designed to kill drones without fail).

[0025] Figure 2 This is a simplified schematic diagram illustrating the working principle of the optimal method for using laser-guided bullets in anti-drone laser-guided guns with a sieve-like pattern to strike targets (a method that is foolproof for targeting drones). Cross-sectional diagram of a standard bullet with a copper-plated steel casing: 1-bullet; 2-propellant; 3-casing; 4-primer; 5-new type of bullet for anti-drone use.

[0026] The image shows: 1. A primer is placed in the center at the bottom of the special type; 2. A cartridge case is placed on the outer edge of the special type; 3. Propellant is placed in the center of the special type; 4. A large projectile is placed above the center of the special type; 5. Approximately 3 to 300 smaller sub-projectiles are placed around the large projectile. Detailed Implementation

[0027] exist Figure 1 In the middle, a special type of large projectile (4) is set above the middle of the projectile, and a special type of propellant (3) is set in the middle of the projectile. Below the propellant (3) in the middle of the projectile, a special type of primer (1) is set in the middle of the lower part. Outside the large projectile (4) in the middle, a special type of small sub-projectile (5) of about 3 to about 300 is set around the large projectile. Below the large projectile (5), a special type of propellant (3) is set in the middle of the projectile. Outside the large projectile (4) in the middle, a special type of cartridge case (2) is set on the outer edge.

[0028] exist Figure 2In the middle, a special type of large projectile (4) is set above the middle of the bullet, a special type of propellant (3) is set in the middle of the bullet, and a special type of primer (1) is set in the middle of the bottom. A special type of cartridge case (2) is set on the outer edge of the large projectile (4) set above the middle of the bullet. Around the large projectile, there are many special type small bullet sub-projectiles (5), about 3 to about 300. A special type of bullet is set on the upper middle part of a large bullet (4). A special type of cartridge case (2) is set on the outer edge of the bullet. A large number of small bullets (about 3 to about 300) are set on the outer edge of the large bullet. A special type of propellant (3) is set in the middle of the bullet.

Claims

1. An optimal method for producing special ammunition for laser-guided anti-drone laser-guided guns in anti-aircraft machine gun arrays, characterized in that: This includes the configuration shown in Figure 1, where a specially designed large projectile is positioned in the center, with propellant placed in the center of the projectile and a primer placed below the propellant. Around the large projectile, approximately 3 to 300 smaller sub-projectiles are arranged around it. Below these smaller sub-projectiles, the propellant is placed in the center of the projectile. A cartridge case is also located on the outer edge of the large projectile. In Figure 2, a specially designed large projectile is positioned in the center, with propellant placed in the center and a primer placed below it. Fire; A specially designed large projectile is positioned above the center, with a specially designed cartridge case on its outer edge; around the large projectile, there are approximately 3 to 300 smaller, specially designed sub-projectiles arranged around it; a specially designed large projectile is positioned above the center, with propellant in the center; a specially designed primer is positioned in the center below the projectile; a specially designed large projectile is positioned above the center, with approximately 3 to 300 smaller, specially designed sub-projectiles arranged around it; a specially designed large projectile is positioned above the center, with a specially designed cartridge case on its outer edge; a specially designed large projectile is positioned above the center, with approximately 3 to 300 smaller, specially designed sub-projectiles arranged around it; and propellant is positioned in the center below the projectile.