Some machines use heat to melt metal. 

Some machines use heat to melt metal. 
This machine uses a bright spark to get hot. The spark is called an arc. It can melt metal very fast.
Electricity flows through the metal. This makes the metal very hot. It turns the metal into liquid. 
This liquid can become steel. Steel is used to make many things. It is very strong.
Do you like big machines?
An electric arc furnace uses electricity to melt metal. 
Inside the furnace, there is a container called a hearth. This part is lined with special bricks. These bricks protect the furnace from the heat. Large rods called electrodes hang from the roof. The electricity flows from these rods to the metal. This creates an electric arc. An arc is a bright, hot spark. This spark can reach 3,500 degrees Celsius. The heat melts the metal into a liquid bath.
When the metal is ready, the furnace tilts. This process is called tapping. The liquid steel pours out of a spout. 
An electric arc furnace is a powerful machine used to melt metal. 

The furnace works by using electricity to create intense heat. It has a main body called a shell and a bottom called a hearth.
People have been trying to melt iron with electricity for a long time. Vasily Vladimirovich Petrov showed this was possible in 1803. Later, Sir Humphry Davy did an experiment in 1810. In 1878, Sir William Siemens took out patents for arc-type furnaces. 
Modern steelmaking uses many different types of these machines. Paul Héroult from France helped develop more advanced versions. In the United States, the Sanderson brothers built the first one in Syracuse, New York. 

You can think of an electric arc furnace like a giant, high-tech melting pot. Instead of using a fire, it uses a bolt of electricity to do the work. 
An electric arc furnace, often called an EAF, is a powerful industrial tool used to melt materials. 

The furnace is built with several specific parts. It has a shell, which includes the sidewalls and a lower steel bowl. The bottom of this bowl is called the hearth. The hearth is lined with refractory brick to protect the shell from extreme heat.
To melt the metal, the furnace uses a process involving an electric arc. The arc forms between the graphite electrodes and the material inside, known as the charge. 
History shows that many scientists worked to perfect this technology. In 1803, Vasily Vladimirovich Petrov demonstrated that an electric arc could melt metal. Sir Humphry Davy conducted an experimental demonstration in 1810. Later, Sir William Siemens took out patents for arc-type furnaces between 1878 and 1879. 
Efficiency and scale are very important in modern steelmaking. A mid-sized modern furnace might produce 80 tonnes of liquid steel in about 50 minutes. 

There are different ways to manage the liquid steel once it is melted. One method is called tapping, which is when the furnace tilts to pour the metal out. 

Electric arc furnaces have changed how the world produces metal. In the past, "electric steel" was a specialty product for things like spring steel. During World War II, these furnaces were used widely to produce alloy steels. In 1969, a company called Nucor used a mini-mill with an EAF to enter the steel market. Mini-mills are much cheaper to build than integrated steel mills. It costs about US$140–200 per ton of capacity to build a mini-mill. In contrast, an integrated mill costs about US$1,000 per ton. This allowed smaller companies to compete with giant steelmakers. Today, EAFs are used globally to produce many types of steel products.
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