Durable Ferrotitanium 40 For Alloy Production
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Durable Ferrotitanium 40 For Alloy Production

Ferrotitanium 40 is an iron alloy composed of titanium and iron.
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Product Introduction

Products Parameters

 

Grade Chemical Composition %
Ti AI Si P S C Cu Mn
FeTi30-A 25-35 8 4.5 0.05 0.03 0.1 0.2 0.2
FeTi30-B 25-35 8.5 5 0.06 0.04 0.15 0.2 0.2
FeTi40-A 35-45 9 3 0.03 0.03 0.1 0.4 0.4
FeTi40-B 35-45 9.5 4 0.04 0.04 0.15 0.4 0.4
FeTi70-A 65-75 3 0.5 0.04 0.03 0.1 0.2 0.2
FeTi70-B 65-75 5 4 0.06 0.03 0.2 0.2 0.2
FeTi70-C 65-75 7 5 0.08 0.04 0.3 0.2 0.2

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Products Description

 

Ferrotitanium 40 is an important ferroalloy product, mainly composed of iron and titanium, with a titanium content of about 40%. The alloy has a wide range of applications in the metallurgical industry, mainly as a deoxidizer, alloy additive, and grain refiner in steelmaking and casting processes. The production of Ferrotitanium 40 is usually carried out by aluminothermic or electrosilicon thermal methods, depending on the availability of raw materials and the scale of production.

 

Ferrotitanium 40 lumps

 

In the steelmaking process, the main role of titanium ferro 40 is to improve the performance of steel. Titanium has a strong affinity with oxygen and nitrogen, which can effectively remove harmful gases in molten steel and reduce the content of inclusions in steel, thereby improving the purity of steel. In addition, titanium can also combine with carbon in steel to form titanium carbide, refine the grain structure, and improve the strength and toughness of steel. Therefore, titanium ferro 40 is often used in the production of high-strength low-alloy steel, stainless steel, tool steel and other special steel grades.

 

Ferrotitanium 40 supplier

 

In the foundry industry, the addition of titanium iron 40 can improve the structure and properties of cast iron. Titanium can promote the spheroidization of graphite and improve the mechanical properties and wear resistance of cast iron. At the same time, the addition of titanium can also reduce the shrinkage and crack tendency of castings and improve the yield rate of castings. This makes titanium iron 40 of great value in the production of automobiles, machinery manufacturing and engineering structural parts.

 

Ferrotitanium 40

 

The production process of titanium iron 40 has a direct impact on its quality. The aluminothermic method uses aluminum as a reducing agent to reduce ilmenite or rutile at high temperature to produce titanium iron alloy. This method has high production efficiency and is suitable for large-scale production, but it requires high purity of raw materials. The electro-silicon thermal method uses ferrosilicon as a reducing agent and carries out reduction reaction in an electric arc furnace. It is suitable for small and medium-scale production and has stronger adaptability to raw materials. Regardless of which method is used, the temperature, reaction time and raw material ratio need to be strictly controlled during the production process to ensure the stability of the composition of the final product. In general, titanium iron 40, as an important metallurgical raw material, plays an irreplaceable role in the steel and foundry industries.

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