Ferrosilicon is an alloy of iron and silicon.Ferrosilicon is coke, steel chips, quartz (or silica) as raw materials, smelted by electric furnace made of iron silicon alloy.Common uses of ferrosilicon are as follows:
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(1) ferrosilicon is an essential deoxidizer in steelmaking industry.In steelmaking, ferrosilicate is used for precipitation deoxidation and diffusion deoxidation.Brick iron is also used as an alloying agent in steelmaking.
(2) Used as inoculant and spheroidizer in cast iron industry.In the production of ductile iron, ferrosilicon is an important inoculant (to help precipitate graphite) and spheroidizer.
(3) used as reducing agent in ferroalloy production.Not only is the chemical affinity between silicon and oxygen great, but the carbon content of high silicon ferrosilicon is very low.Therefore, high silicon ferrosilicon (or siliceous alloy) is a commonly used reducing agent in the production of low carbon ferroalloy in the ferroalloy industry.
(4)75 ferrosilicate in Pijiang magnesium smelting is often used in the high temperature smelting process of magnesium, the magnesium replacement in CaO.MgO, each one ton of magnesium will consume about 1.2 tons of ferrosilicate, which plays a great role in the production of magnesium.
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Ferrosilicon, commonly abbreviated FeSi, is an ironsilicon alloy that also contains smaller proportions of other elements. The most popular grade of ferrosilicon contains 75 wt% silicon (FeSi75), but the amount can range from 1590 wt% depending on the application.
The highest-quality ferrosilicon is made in an electric arc furnace by reducing silica with coke in the presence of iron (usually derived steel scrap or iron ore). The ferrosilicon usually takes the form of shiny, metallic-grey lumps, but is also available as pre-formed briquettes.
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In steelmaking, ferrosilicon is used for:
Ferrosilicon is often categorized according to the levels of various minor components, depending on the application requirements. These categories include:
As well as providing STD 75, STD 50 ferrosilicon and ferrosilicon briquettes, we offer a range of premium ferrosilicon compositions that provide optimum results for high-performance steel grades. Wed be delighted to talk about your requirements and find the best product for you.
Ferrosilicon from Elkem is among the cleanest available anywhere, helping you to meet the demands of exacting steel compositions while streamlining production and reducing energy costs.
Thanks to our strong quality management, our ferrosilicon is highly consistent in purity and size grading from batch to batch. This means that you can eliminate worries about shifting performance, unpredictable dissolution times, or variable downstream alloying requirements.
In contrast to other suppliers, we take care to ensure that the ferrosilicon we provide will give you the best possible results.
So whatever you want to ask us about from the optimum way of introducing our ferrosilicon into the melt, to trialling a new grade in your steel mill then were ready to listen to you.
With a global presence and regional knowledge, we can supply ferrosilicon to all major steel-producing areas, as quickly as you need it. So whatever grade of ferrosilicon you need, if you need it delivered urgently, then we wont let you down.
The production of silicon ferroalloys uses carbon to remove the oxygen from silica, releasing carbon dioxide in the process. The high temperatures needed in our furnaces also consume a lot of energy. But were committed to doing what we can to reduce this CO footprint, by increasing the proportion of renewably-sourced carbon we use, moving to renewable power sources, or embarking on an ambitious project for carbon capture and storage. You can read more about our plans in our global climate roadmap.
Were more than just a manufacturer buying ferrosilicon from us is a collaboration. Well listen carefully to your product requirements, work out the ferrosilicon specification that will deliver maximum product quality and cost-effectiveness for you, and offer expert guidance and insight at every stage of the production process.
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