Product Overview
Vanadium ingot is a high-purity vanadium metal ingot with excellent chemical stability and mechanical properties. Known for its exceptional high-temperature resistance, corrosion resistance, and good electrical conductivity, vanadium ingots are widely used in high-tech industries. They are typically used in the production of alloy steels and catalysts, exhibiting excellent metallurgical properties, and are ideal for use in aerospace, metallurgy, and chemical industries.
Key Features
- High Purity: With a purity of 99.95%, vanadium ingots offer superior performance in specialized applications.
- High Melting Point and Heat Resistance: Vanadium ingots have a high melting point of 1890°C, providing excellent high-temperature resistance.
- Corrosion Resistance: Vanadium ingots demonstrate superior corrosion resistance in strong corrosive media such as hydrochloric acid and sulfuric acid, outperforming most stainless steels.
- Chemical Stability: Vanadium ingots are stable in air and do not easily oxidize, making them suitable for high-temperature and corrosive environments.
Applications
Vanadium ingots are widely used in the following fields:
- Alloy Manufacturing: Vanadium ingots are key raw materials for producing high-speed cutting steels and alloy steels, particularly for materials requiring high strength and heat resistance.
- Catalysts: Vanadium ingots are used in the chemical industry as catalysts, especially in petrochemical and fine chemicals production.
- Aerospace: Due to their outstanding physical properties, vanadium ingots are widely used in aerospace applications for manufacturing aircraft components and engine parts.
- Metallurgy: Vanadium ingots' excellent corrosion resistance makes them an important material in the metallurgy industry, particularly for producing heat-resistant steels and specialty metal materials.
Element | Measured Value | Standard Value | Unit | Element | Measured Value | Standard Value | Unit | Element | Measured Value | Standard Value | Unit |
Li | Zn | Pb | |||||||||
B | <10 | ppm | Ga | Bi | |||||||
F | Ge | Y | |||||||||
Na | As | Th | |||||||||
Mg | Se | Er | |||||||||
Al | 10 | ppm | Zr | <10 | ppm | Ru | |||||
Si | 150 | ppm | Nb | 10 | ppm | Rh | |||||
P | <10 | ppm | Mo | <10 | ppm | Os | |||||
Cl | Pd | Cd | |||||||||
K | Ag | In | |||||||||
Ca | Sn | <10 | ppm | ||||||||
Ti | <10 | ppm | Sb | ||||||||
V | Matrix | wt% | Ba | ||||||||
Cr | 18 | ppm | Hf | ||||||||
Mn | Ta | <10 | ppm | C | <100 | ppm | |||||
Fe | 350 | ppm | W | <20 | ppm | S | <20 | ppm | |||
Co | <10 | ppm | Pt | O | 200 | ppm | |||||
Ni | <10 | ppm | Au | N | <50 | ppm | |||||
Cu | <10 | ppm | Hg | H | <10 | ppm |