Products Parameters
|
Grade |
V |
Al |
P |
Si |
C |
|
FeV40-A |
38-45 |
1.5 |
0.09 |
2 |
0.6 |
|
FeV40-B |
38-45 |
2 |
0.15 |
3 |
0.8 |
|
FeV50-A |
48-55 |
1.5 |
0.07 |
2 |
0.4 |
|
FeV50-B |
45-55 |
2 |
0.1 |
2.5 |
0.6 |
|
FeV60-A |
58.0~65.0 |
1.5 |
0.06 |
2 |
0.4 |
|
FeV60-B |
58.0~65.0 |
2 |
0.1 |
2.5 |
0.6 |
|
FeV60-A |
58.0~65.0 |
0.4 |
2 |
0.06 |
0.04 |
|
FeV60-B |
58.0~65.0 |
0.6 |
2.5 |
0.1 |
0.05 |
|
FeV80-A |
78-82 |
1.5 |
0.05 |
1.5 |
0.15 |
|
FeV80-B |
78-82 |
2 |
0.06 |
1.5 |
0.2 |
Size: 03 – 20mm, 10 – 50mm
Color: Silver Gray/Gray
Melting point: 1800°C
Packing: Steel Drums (25Kgs, 50Kgs, 100Kgs & 250Kgs) or 1 Ton bags.

Products Description
The ferrovanadium produced in China mainly includes 50 ferrovanadium and 80 ferrovanadium, which contain 40%~60% and 70%~85% vanadium respectively. In addition, there are varieties such as V401 and V402, which also contain about 40% vanadium. The production process of ferrovanadium mainly includes carbon thermal reduction and aluminothermic method. The carbon thermal reduction method uses carbon to reduce vanadium pentoxide in an electric furnace to obtain ferrovanadium; the aluminothermic method uses aluminum as a reducing agent to reduce vanadium pentoxide at high temperature to obtain ferrovanadium.

Ferrovanadium is an iron alloy composed of vanadium and iron, with vanadium pentoxide as the main raw material, and is smelted in an electric furnace. It can be used as an alloying element additive and is widely used in low-alloy steel, alloy structural steel, spring steel, tool steel, heat-resistant steel and hydrogen-resistant steel, cast iron, and is also used to make permanent magnets.

Ferrovanadium is an important additive in the steel industry. It can significantly improve the strength, toughness, wear resistance and corrosion resistance of steel, while improving the welding performance and low temperature toughness of steel. In the production of alloy steel, ferrovanadium is used to refine grains, increase the strength and toughness of steel, and improve the quality of steel. In the manufacturing of high-end equipment such as aircraft, rockets, and satellites, ferrovanadium plays an irreplaceable role as a high-strength, lightweight, and corrosion-resistant material. It can improve the high-temperature performance and strength of materials and is used to manufacture key components such as aircraft engine components. Ferrovanadium can be used to manufacture new energy equipment such as high-efficiency batteries and fuel cells. Especially in energy storage technologies such as all-vanadium redox flow batteries, the application of vanadium is gradually increasing. Ferrovanadium is used to manufacture artificial joints, dental implants and other medical devices that require high strength, corrosion resistance and good biocompatibility.

Ferrovanadium is also used to make vanadium liquid crystals, an electronic material widely used in televisions, display screens, computer monitors, mobile communication equipment and other fields. Ferrovanadium is also used in the manufacture of carbon dioxide reduction catalysts and a variety of other catalysts. Ferrovanadate can be used as a raw material for vanadium chemicals to produce ammonium vanadate, sodium vanadate and other chemical products. In the metallurgical industry, the use of ferrovanadium can extend the service life of smelting furnace bricks and reduce production costs. In addition, ferrovanadium can also be used in magnetic materials, cast iron, cemented carbide, superconducting materials and nuclear reactor materials.
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