High carbon ferrosilicon is ferrosilicon with a larger carbon content; High carbon ferrosilicon specifications and particle size: natural block, 10-100mm, powder or customized according to customer requirements. Packaging of high carbon ferrosilicon: tons of bags (1000kg/bag) or customized according to customer requirements.
High carbon ferrosilicon uses: High-carbon ferrosilicon is a new type of alloy used in converters. It can replace ferrosilicon, silicon carbide, and carburizers, reduce the amount of deoxidizer, and is used in the deoxidation alloying process of converter smelting. The effect is stable, and the chemical composition, mechanical properties and The quality of internal control is better than that of traditional processes. As a new type of strong composite deoxidizer, it can also be used for tempering general steel, alloy steel and special steel. In addition, as a temperature-raising agent, it can replace the more expensive traditional temperature-raising agent required in converter and open-hearth steelmaking.
Ferro-Silico-Aluminum is a deoxidizer used in steelmaking production. It improves the shape of inclusions and reduces the content of gas elements in molten steel. It is an effective new technology to improve steel quality, reduce costs, and save aluminum. It is especially suitable for the deoxidation requirements of continuous casting molten steel. Practice has proved that it not only meets the deoxidation requirements of steelmaking, but also has desulfurization performance and has the advantages of large specific gravity and strong penetrating power.
Silicon carbide is composed of carbon and silicon elements. It has many excellent properties, making it widely used in various fields.
With outstanding high temperature resistance, it can withstand temperatures above 1600�°C.
Silicon carbide can be used as a refining agent in the steelmaking process. It provides high-temperature reduction, helping to remove impurities and oxides from the steel, improving its quality and purity.
Due to its unique properties, silicon carbide finds wide application in areas such as abrasive tools, high-temperature equipment, steelmaking, chemical industry, optical components, and solar energy.
Additionally, silicon carbide is also used in the production of ceramic products, thermal barrier coatings, and catalysts.
High-carbon Silicon is Silicon with a larger carbon content. High-carbon silicon Iron is a new type of alloy used in converters. It can replace ferrosilicon, silicon carbide and carburizing agents, reduce the amount of deoxidizer, and is used in the deoxidation alloying process of converter smelting. The effect is stable, and the chemical composition, mechanical properties and internal quality of the steel are all uniform. Better than traditional craftsmanship. As a new type of strong composite deoxidizer, it can also be used for the tempering of general steel, alloy steel and special steel. In addition, as a temperature-raising agent, it can replace the more expensive traditional temperature-raising agent required in converter and open-hearth steelmaking.
Alloy silicon balls are commonly used silicon-based alloy additives in the alloy preparation process. They are usually in the form of spherical particles and consist of a high proportion of silicon elements. They can be used as deoxidizers and reducers.
During the steelmaking process, alloy silicon balls react with oxygen, reducing it to gaseous form, thereby reducing the oxygen content and improving the purity and quality of the steel.
The presence of silicon increases the hardness, strength, and wear resistance of the steel.
By controlling the amount of alloy silicon balls added, specific performance requirements of the steel can be met.
Additionally, the addition of alloy silicon balls can improve the fluidity and wetting ability of the steel, facilitating smooth operation and uniform distribution of the molten steel during the smelting process.
Alloy silicon balls exhibit good thermal stability, allowing them to operate effectively in high-temperature environments.
Their inclusion enhances smelting efficiency, reduces energy consumption, and lowers production costs, ultimately improving the efficiency and quality of steel production.
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1. Silicon carbon can be used as metallurgical deoxidizer and high temperature resistant material in smelting.
2. Silicon carbide can also be used as abrasive, which can be used to manufacture abrasive tools, such as grinding wheels, oil stones, grinding heads, etc.
3. Silicon carbon is a new type of reinforced steelmaking deoxidizer and an ideal thermal insulator. It is used for deoxygenation. Using a dose of 14kg/t can reduce power consumption by 15-20kw/h and time by 15-20 minutes per furnace to increase productivity to 8-10%.
1.Ferro silicon is often used as deoxidizer in steel making.
2.Ferro silicon also can be used as alloy elements join agent,which is widely used in low alloy steel,non-ferrous metal,bearing steel,heat-resistant steels and electrician silicon steel.
3.Ferro silicon commonly used as a reductant in ferroalloy production and chemical industry.
4.In iron industry,ferro silicon often used as inoculant and nodulizer and deoxidizer.
1.Ferro silicon is often used as deoxidizer in steel making.
2.Ferro silicon also can be used as alloy elements join agent,which is widely used in low alloy steel,non-ferrous metal,bearing steel,heat-resistant steels and electrician silicon steel.
3.Ferro silicon commonly used as a reductant in ferroalloy production and chemical industry.
4.In iron industry,ferro silicon often used as inoculant and nodulizer and deoxidizer.
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