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What can you make with Metal, cars, buildings, bridges, ships, what else? how about knives and forks, fridges and washing machines, food and drink can train tracks anything else tries everything else yes everything because even if something is made of Metal will have been used to make it from paper clips to pipelines paper to plastics nothing in this world could be made moved or manufactured without Metal so how do you make the product that helps make everything else well the quick answer is you Metal Corner Brackets take iron ore coke and limestone and put it in the top of a blast furnace blast stare at it until it's hot very hot white-hot in fact and out of the bottom you get molten iron the material from which Metal is made making molten iron into Metal involves removing some impurities such as carbon and silicon, in other words, it has to be refined and this is done by blowing oxygen onto it other elements are then added to adjust the Metals composition making it suitable for any one of the thousands of purposes. Large metal corner brackets, Metal corner brackets for wood, Heavy-duty metal corner brackets, Long metal corner brackets, Metal corner brackets Screwfix, Decorative metal corner brackets, Corner brace brackets, L brackets. 

 

Outdoor screws Screwfix, Railway sleeper brackets, Screwfix railway sleeper brackets, Railway sleeper brackets b&q. For which it could be used the molten Metal is then solidified before being formed into a suitable useable shape well that's the quick answer but now let's take a closer look at each of those processes and the effect they have on the production of Metal is an alloy or metallic mix of mainly iron and carbon as a finished product its carbon content is between nought point nought 2 and 1.5% but to start the production process we need high-quality iron ore is common in the Earth's crust and contains iron chemically bonded to oxygen this is mined in places such as the Americas Australia and Scandinavia and then shipped around Outdoor Screws the world to Metalworks ores are then blended together to produce a favourable mix this mix is combined with coke and heated to produce the iron-rich material called sinter.

 

Sintering reduces waste and provides an efficient raw material for the blast furnace carbon is required for the blast furnace and this is supplied in the form of coke to make coke coking coal is heated in an oven this drives off volatile byproducts and leaves carbon gas produced in this process is used as fuel whilst other byproducts such as tar and sulfur are extracted and refined these raw materials sinter iron ore and coke meet each other at the blast furnace where they are fed into the top of the furnace along with some limestone a hot air blast from which the furnace gets its name is injected through nozzles called queers in the base of the furnace this blast raises the temperature in the furnace to white-hot intensity around 2,200 degrees centigrade this very high temperature is needed for the chemical reduction and melting of the sinter and iron ore to form a pool of molten iron in the lower part of the furnace just above the half the limestone combines with the impurities.