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Cartridge (firearms)

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A cartridge is one small package.

Cartridge cross section.svg
Cartridge cross section.svg
It holds everything needed to shoot. It has a metal case. Inside is powder and a small part to start the fire. This helps people use tools safely.
Many bullets.jpg
Many bullets.jpg
Can you see the different shapes?

45 words

A cartridge is one small package.

Cartridge cross section.svg
Cartridge cross section.svg
It holds everything needed to shoot. It has a metal case. Inside is powder and a part to start the fire.
Many bullets.jpg
Many bullets.jpg
This case keeps the parts safe and dry.

When a person pulls a trigger, a pin hits the small part. This makes sparks. The sparks light the powder. The powder makes a lot of gas. This gas pushes the metal part out fast.

Some cases are made of brass. Others are made of steel. The case helps the tool work quickly. It is a handy all-in-one tool.

103 words

A cartridge is an all-in-one package for a gun.

Cartridge cross section.svg
Cartridge cross section.svg
It holds four main parts. The first is the case. This is a metal or plastic shell. It keeps the other parts safe and dry. The second part is the projectile. This is the object that flies out. People often call this a bullet. The third part is the propellant. This is a powder that burns fast. The last part is the primer. This is a small part that starts the fire.

Many bullets.jpg
Many bullets.jpg
To fire a round, you put it in the gun. When you pull the trigger, a pin hits the primer. This makes sparks. The sparks light the powder inside the case. The burning powder makes a lot of gas. This gas creates high pressure. The pressure pushes the projectile out of the barrel at high speed.

Most cases are made of brass. Brass is good because it does not rust easily. Some cases are made of steel. Steel is cheaper but can rust. The case also helps the gun work quickly. After the shot, the gun pulls the empty case out. This makes room for a new round.

198 words

A cartridge is a handy, all-in-one package used in guns.

Cartridge cross section.svg
Cartridge cross section.svg
People often call a complete cartridge a "bullet," but that is not quite right. In science, a bullet is only the projectile, which is the part that flies out. A cartridge brings everything together in one small unit for easy handling. It holds the projectile, a propellant substance like powder, and an ignition device called a primer. All these parts sit inside a protective case made of metal, paper, or plastic. This case is made to fit perfectly inside the chamber of a gun.
Many bullets.jpg
Many bullets.jpg
This design keeps the powder safe from moisture and the elements.

To understand how it works, we can look at the steps that happen during a shot. First, the cartridge is placed into the chamber of the gun. When the trigger is pulled, a firing pin strikes the primer at the base. This impact creates a jet of sparks that travels into the case. These sparks ignite the propellant, which is the powder inside. The burning powder creates a huge amount of high-pressure gas very quickly. This pressure builds up until it pushes the projectile out of the case and down the barrel. The gas then escapes from the muzzle in a loud blast.

Before cartridges were invented, loading a gun was a much harder job. People had to carry the projectile and the powder separately. They had to load them one by one through the muzzle of the gun. They also had to use a separate way to start the fire, like a slow match or a percussion cap. This process was very slow and clumsy. It made it difficult for shooters to fire quickly if they were in danger. The invention of the cartridge changed this by making everything ready to use in one piece.

There are many different types of cartridges used today. Some have a shape called a bottleneck, where the top part is narrower than the bottom. Others are straight-walled and look like a simple cylinder.

Big caliber cartridge comparison withDATA.jpg
Big caliber cartridge comparison withDATA.jpg
Cartridges can also be grouped by how long they are. For example, the .223 Remington is a "mini-action" cartridge because it is short. The .308 Winchester is a "short-action" cartridge. Larger ones, like the .30-06 Springfield, are called "long-action" cartridges. Even bigger ones, like the .375 Holland & Holland Magnum, belong to the "magnum-action" group.
Cartridge Sample 2.jpg
Cartridge Sample 2.jpg

Most cartridge cases are made of brass because it is very strong. Brass does not rust easily, which helps it stay in good shape. It is also easy to reshape, so some people can reuse the cases. Some military groups use steel cases because steel is cheaper to make. However, steel can rust more easily than brass.

Handguncalibercomparison.jpg
Handguncalibercomparison.jpg
Some shotgun shells even use plastic cases instead of metal. Whether they are made of brass, steel, or plastic, these cases are essential for making sure the gun works safely and reliably.

497 words

A cartridge, often called a round, is a pre-assembled unit of ammunition. It is a vital invention for modern firearms. A cartridge combines several parts into one package. These parts include a projectile, a propellant, and an ignition device. The entire assembly is held inside a case made of metal, paper, or plastic.

Cartridge cross section.svg
Cartridge cross section.svg
While many people use the word "bullet" to mean the whole package, that is technically incorrect. In precise terms, a bullet is only the projectile itself. The cartridge is the complete system that allows the projectile to be fired safely and efficiently.

To understand how a cartridge works, we must look at the sequence of a single shot. First, the cartridge is inserted into the chamber of the gun. It must be aligned with the bore axis, which is the path the projectile travels. When the trigger is pulled, a mechanism releases a hammer or striker. This causes a firing pin to strike the primer at the base of the cartridge. The primer contains a shock-sensitive chemical. This impact creates a jet of sparks that travels into the case. These sparks ignite the main propellant charge, such as smokeless powder. This rapid combustion, called deflagration, creates highly energetic, high-pressure gases. The pressure builds until it overcomes the friction holding the projectile in the case neck. The expanding gases then push the projectile down the bore and out of the muzzle at high speed.

Modern cartridges are categorized by how the primer is positioned. These different designs are known as primer types. In a centerfire cartridge, the primer is located at the center of the case head. In a rimfire cartridge, the primer is located inside the rim of the case.

Rim fire.svg
Rim fire.svg
Historically, there were many other types, such as pinfire, cupfire, and teatfire. However, only centerfire and rimfire designs have survived into the modern era. Each type requires a specific mechanism in the firearm to strike the primer correctly.

Before the cartridge was invented, loading a firearm was a slow and difficult process. Shooters had to load projectiles and propellant separately through the muzzle. They also needed a separate source of activation energy, like a slow match or a percussion cap. This method was clumsy and restricted the rate of fire. It also made logistics difficult because many parts had to be carried. The invention of the cartridge specifically for breechloading firearms changed everything. It provided an "all-in-one" package that is easy to transport and load quickly. This innovation helped protect the propellant from moisture and contamination.

Every cartridge has four main components: the case, the projectile, the propellant, and the primer. The case is the most defining part. It acts as a container and a protective shell.

Many bullets.jpg
Many bullets.jpg
Cases can be "bottleneck" shaped or "straight-walled." A bottleneck case has a wider body and a narrower neck, separated by a shoulder. Some designs include a "ghost shoulder" to help the cartridge line up more accurately. The case also helps the gun function. In self-loading firearms, the case allows the mechanism to use propellant energy to load new rounds automatically.

Cartridges are also grouped by their overall length, or COL. This measurement determines the size of the firearm's receiver. Mini-action cartridges, like the .223 Remington, have a COL of 2.25 inches or shorter. Short-action cartridges, such as the .308 Winchester, have a COL between 2.25 and 2.8 inches.

Cartridge Sample 2.jpg
Cartridge Sample 2.jpg
Long-action cartridges, like the .30-06 Springfield, have a COL between 2.8 and 3.34 inches. Finally, magnum-action cartridges, such as the .375 Holland & Holland Magnum, are longer and wider, with a COL between 3.34 and 3.5 inches.

Material choice is important for the durability of the case. Brass is the most popular material because it resists corrosion. It can also be work-hardened to handle high pressure or annealed to make it soft enough for reloading.

Handguncalibercomparison.jpg
Handguncalibercomparison.jpg
Some military forces use steel cases because steel is less expensive. Steel is lighter, which provides a logistic advantage for soldiers carrying large amounts of ammunition. However, steel is more prone to rust and can be harder to extract after firing. Aluminum and plastic are also used in specific types of ammunition, such as shotgun shells.

Not all cartridges function perfectly every time. If a cartridge fails to ignite, it is called a "dud." If it ignites but does not push the projectile out of the barrel, it is called a "squib." There are also "blanks," which are cartridges without a projectile, and "dummies," which are completely inert for training purposes. Understanding these distinctions helps explain the complex science of modern ammunition.

770 words
🖼️ Images & Media (30)
File:Cartridge cross section.svg
Cartridge cross section.svg
File:Cartridge Sample 2.jpg
Cartridge Sample 2.jpg
File:Big caliber cartridge comparison withDATA.jpg
Big caliber cartridge comparison withDATA.jpg
File:Many bullets.jpg
Many bullets.jpg
File:Powder Samples.jpg
Powder Samples.jpg
File:Percussion caps.jpg
Percussion caps.jpg
File:Centerfire & rimfire ignition.gif
Centerfire & rimfire ignition.gif
File:Berdan vs boxer2.jpg
Berdan vs boxer2.jpg
File:0.30-30 Winchester case, stages in the drawing process, book; Cartridge Manufacture (1916), author; Douglas T. Hamilton.png
0.30-30 Winchester case, stages in the...
File:US paper to centerfire rounds.jpg
US paper to centerfire rounds.jpg
File:Festungsmuseum Reuenthal Sonderausstellung Zuleger britische Patronen.JPG
Festungsmuseum Reuenthal...
File:Chassepot paper cartridge.jpg
Chassepot paper cartridge.jpg

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