Presenting our premium Ferro Vanadium, meticulously sourced from the heart of the manufacturing hub, ensuring unmatched quality and reliability. Our product stands as a testament to our commitment to excellence, offering you an alloy that is both dependable and superior in performance.
Ferrovanadium (ferrovanadium alloy) is a crucial ferroalloy prominently utilized in the steel industry. This alloy combines the strength of vanadium and iron, with trace elements such as sulfur, phosphorus, silicon, and aluminum. It is crafted with precision through carbon reduction of vanadium pentoxide in an electric furnace or via aluminothermic reduction. This exceptional alloy is essential as an element additive in the production of vanadium-rich alloy steels and cast irons, also playing a significant role in the development of permanent magnets.
The vanadium content in ferrovanadium is expertly tailored to meet specific alloy formulations and manufacturing needs. Typically, the vanadium content ranges from 30% to 80%, offset by iron. FeV alloys are classified into three notable types based on their vanadium content: FeV40, FeV60, and FeV80, all of which are vital in alloy and low-alloy steel production. Additionally, vanadium aluminum alloys are crucial in the manufacture of titanium alloys, commonly known as 'VQ' VAl.
Grade |
V≥ |
C≤ |
Si≤ |
P≤ |
S≤ |
Al≤ |
FeV40 |
40 |
1.0 |
3.0 |
0.2 |
0.1 |
1.5 |
FeV50 |
50 |
0.75 |
2.5 |
0.1 |
0.05 |
0.8 |
FeV75 |
75 |
0.3 |
2.0 |
0.1 |
0.05 |
3.0 |
The chemical composition of ferro vanadium |
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Our main product line features ferromanganese, metallic silicon, silicon carbon alloy, cored wire, ferrochrome, silicon manganese alloy, silicon carbide, ferrosilicon, silicon aluminum barium calcium, and silicon barium calcium. Moreover, we are adept at exporting refractory materials and a diverse range of other metallurgical products. Our custom processing services are specifically designed to fulfill unique customer demands with precision.
Our company is equipped with a 206 cubic meter blast furnace, two 12500 kVA submerged arc furnaces, two 3600 kVA refining furnaces, four medium-frequency electric furnaces, and three cladding line production lines. This advanced infrastructure supports the seamless operation of the manganese series hot charging and hot mixing systems, ensuring an efficient, one-stop production process that is characterized by exceptional quality, high yield, and low consumption.