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Alloy

physical science Maturity 9-11 Vital Level 3

We can mix metals together.

Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
This makes a new metal. It can be much stronger. It helps us build big things. It is very useful. Do you see metal tools?

41 words

We can mix metals to make something new.

Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
This new mix is called an alloy. We mix a main metal with other things.
Born bronze - Bronze casts.jpg
Born bronze - Bronze casts.jpg
This can make the metal much stronger. It can also stop it from rusting.
A brass light.JPG
A brass light.JPG
Some alloys like bronze were made long ago. We use them for tools and buildings today. It is a very smart way to use metal.

81 words

An alloy is a mixture of different elements. At least one of these elements must be a metal. We call the main metal the base metal.

Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg

Why do we make alloys? Pure metals are often too soft. By mixing them, we can change how they act. We can make them stronger or harder. Some alloys resist corrosion, which is when metal breaks down from rust.

A brass light.JPG
A brass light.JPG

One way to make an alloy is to melt the base metal. Then, we add other elements into the hot liquid. The other parts dissolve into the mix. When the liquid cools, it becomes a solid.

Born bronze - Bronze casts.jpg
Born bronze - Bronze casts.jpg

Sometimes, the atoms in an alloy stay in a single, even layer. This is called a homogeneous structure. Other times, the atoms separate into different parts. This creates a heterogeneous structure.

People have used alloys for a very long time. Bronze is a famous old alloy made of tin and copper. It is much harder than either metal alone.

Bronzebeile.JPG
Bronzebeile.JPG

Today, we use many alloys. Steel is a common one made by adding carbon to iron. We also use special alloys in planes and tools. They help us build a very strong world.

213 words

An alloy is a mixture of different chemical elements. In most cases, at least one of these elements is a metal. We call the main metal the base metal.

Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Most metals used for business are alloyed to improve how they behave. This can make them stronger or harder. It can also help them resist corrosion, which is when metal breaks down. Some alloys are made to reduce the overall cost of a metal.
A brass light.JPG
A brass light.JPG

Making an alloy involves mixing two or more elements together. One common way is to heat the base metal until it melts. Then, other elements are dissolved into the hot liquid. These elements might be metals or non-metals.

Born bronze - Bronze casts.jpg
Born bronze - Bronze casts.jpg
Even if an element has a much higher melting point, it can sometimes dissolve into the liquid base metal. For example, liquid titanium is a very strong solvent. It can dissolve many different metals and elements.
Chemical surface diffusion slow.gif
Chemical surface diffusion slow.gif

Alloys can be classified by how their atoms are arranged. Some are called substitutional alloys. Others are called interstitial alloys.

Alloy atomic arrangements showing the different types.svg
Alloy atomic arrangements showing the different types.svg
An alloy can also be homogeneous. This means it has a single phase where all crystals are the same. Other alloys are heterogeneous. These have two or more different types of crystals. Sometimes, atoms separate as the metal cools. This can create a second phase that helps reinforce the crystals.

Humans have used alloys for a very long time. One of the first was bronze, a mixture of tin and copper. Bronze was very useful because it is harder than its parts.

Bronzebeile.JPG
Bronzebeile.JPG
Some alloys, like electrum, can even occur naturally. Meteorites sometimes contain natural alloys of iron and nickel.
Meteorite and a meteoritic iron hatchet.JPG
Meteorite and a meteoritic iron hatchet.JPG
In modern times, we create many more types. We use steel for buildings and cars. We use titanium alloys for the aerospace industry.
Inconel gate valve--The-Alloy-Valve-Stockist.JPG
Inconel gate valve--The-Alloy-Valve-Stockist.JPG

Alloys are all around us in daily life. You might see brass in a lamp or pewter in a dish.

Tray Stand MET sf91-1-528b.jpg
Tray Stand MET sf91-1-528b.jpg
Steel is used for everything from surgical tools to automobiles. Adding chromium to steel makes it stainless steel. Adding silicon can change how it carries electricity. By mixing different elements, we can create the exact tools and materials we need.
Photomicrograph of annealed and quenched steel, from 1911 Britannica plates 11 and 14.jpg
Photomicrograph of annealed and quenched steel, from 1911 Britannica plates 11 and 14.jpg

406 words

An alloy is a mixture of two or more chemical elements. In most cases, at least one of these elements is a metal. This main metal is often called the base metal or primary metal.

Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
While a pure metal consists of only one type of atom, an alloy is an impure substance. However, in science, "impurity" usually refers to unwanted elements like sulfur or oxygen. In an alloy, the atoms are held together by metallic bonding. This is different from the covalent bonds found in chemical compounds.
Alloy atomic arrangements showing the different types.svg
Alloy atomic arrangements showing the different types.svg
Alloys are vital because they allow us to change how a metal behaves. We can make a metal stronger, harder, or more resistant to corrosion.

Creating an alloy often begins by heating the base metal until it melts. Once it is a liquid, other elements are added to it. These other elements are called solutes. Even if a solute has a much higher melting point, it can still dissolve into the molten base metal. For example, liquid titanium is a very strong solvent. It can dissolve many different elements, but it also absorbs gases like oxygen and nitrogen very easily.

Chemical surface diffusion slow.gif
Chemical surface diffusion slow.gif
Because of this, titanium must be melted in special vacuum induction-heating equipment. Alloying can also happen without melting everything into a liquid. It can occur through solid-state diffusion, where atoms move between solid metals. It can even happen through a gas, such as adding carbon to iron in a blast furnace to make pig iron.

Scientists classify alloys based on how their atoms are arranged. In a substitutional alloy, the atoms of the different elements replace each other in the crystal structure. In an interstitial alloy, smaller atoms fit into the spaces between the larger atoms.

Alloy atomic arrangements showing the different types.svg
Alloy atomic arrangements showing the different types.svg
Alloys are also categorized by their phases. A homogeneous alloy consists of a single phase. This means all the metallic crystals have the same composition. A heterogeneous alloy has two or more different phases. This creates a microstructure made of different types of crystals. Some alloys are even intermetallic. If an alloy is cooled very quickly, it might become supersaturated. This means the atoms are trapped in a single phase before they have time to separate into a more stable second phase.

History shows that humans have mastered alloying for thousands of years. One of the earliest major alloys was bronze, made by mixing copper and tin. Bronze was much harder and stronger than its individual parts.

Bronzebeile.JPG
Bronzebeile.JPG
In ancient times, steel was often made by accident. It happened when iron ore was heated in fires during the smelting process. Other ancient mixtures included brass, pewter, and pig iron. Some alloys even occur in nature without human help. Electrum is a natural mixture of silver and gold.
25 litrai en électrum représentant un trépied delphien.jpg
25 litrai en électrum représentant un trépied delphien.jpg
Even meteorites can contain natural alloys of iron and nickel.
Meteorite and a meteoritic iron hatchet.JPG
Meteorite and a meteoritic iron hatchet.JPG

Modern engineering relies on highly controlled alloys with specific properties. We can change the properties of steel by varying the amount of carbon it contains. For instance, mild steel is soft, while spring steel is very hard. We can also create alloy steels by adding elements like chromium or nickel. Adding chromium to steel creates stainless steel, which resists corrosion. Adding silicon creates silicon steel, which changes how the metal conducts electricity. Some modern superalloys, like Inconel, consist of many different elements to handle extreme conditions.

Inconel gate valve--The-Alloy-Valve-Stockist.JPG
Inconel gate valve--The-Alloy-Valve-Stockist.JPG
These materials are essential for high-tech industries like aerospace.

There are many surprising ways that tiny changes affect a metal. Adding a small amount of non-metallic carbon to iron trades ductility for great strength. This creates steel, which is one of the most common alloys used today. Even small amounts of manganese are added to most modern steels. Manganese helps remove unwanted impurities like phosphorus or sulfur. If sulfur is left in steel, it can form iron sulfide, which makes the metal very brittle. In aluminum alloys, impurities like lithium or calcium can harm the structural integrity of the metal. This shows how much control over atoms matters.

Understanding alloys is a key part of materials science. We use different methods to change an alloy's properties, such as heat treatment. Annealing is a process where a metal is heated and then cooled slowly to soften it. Other alloys can be work-hardened by hammering or bending them. This creates defects in the crystal structure that make the metal harder.

Photomicrograph of annealed and quenched steel, from 1911 Britannica plates 11 and 14.jpg
Photomicrograph of annealed and quenched steel, from 1911 Britannica plates 11 and 14.jpg
Most alloys do not have a single melting point like pure metals do. Instead, they have a melting range. This range has a starting temperature called the solidus and an ending temperature called the liquidus. During this time, the metal is a mixture of solid and liquid, often called a slush.

824 words
🖼️ Images & Media (13)
File:Alloy and metal samples - Beryllium-Copper, Inconel, Steel, Titanium, Aluminum, Magnesium.jpg
Alloy and metal samples -...
File:Born bronze - Bronze casts.jpg
Born bronze - Bronze casts.jpg
File:A brass light.JPG
A brass light.JPG
File:Inconel gate valve--The-Alloy-Valve-Stockist.JPG
Inconel gate valve--The-Alloy-Valve-Stockist.JPG
File:Chemical surface diffusion slow.gif
Chemical surface diffusion slow.gif
File:IronAlfa&IronGamma.svg
IronAlfa&IronGamma.svg
File:Photomicrograph of annealed and quenched steel, from 1911 Britannica plates 11 and 14.jpg
Photomicrograph of annealed and quenched...
File:Alloy atomic arrangements showing the different types.svg
Alloy atomic arrangements showing the...
File:Meteorite and a meteoritic iron hatchet.JPG
Meteorite and a meteoritic iron hatchet.JPG
File:Bronzebeile.JPG
Bronzebeile.JPG
File:Tray Stand MET sf91-1-528b.jpg
Tray Stand MET sf91-1-528b.jpg
File:25 litrai en électrum représentant un trépied delphien.jpg
25 litrai en électrum représentant un...

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