When High Elastic Modulus Enhancer ferrovanadium is incorporated into a material, such as alloys or composites, vanadium interacts with its microstructure and contributes to the formation of a stif...
DESCRIPTION
When High Elastic Modulus Enhancer ferrovanadium is incorporated into a material, such as alloys or composites, vanadium interacts with its microstructure and contributes to the formation of a stiffer matrix. Vanadium enhances the bonding between atoms and reinforces the material’s structure, resulting in a higher elastic modulus.
The addition of High Elastic Modulus Enhancer ferrovanadium improves the material’s stiffness, rigidity, and resistance to deformation, making it suitable for applications that require high strength-to-weight ratios, dimensional stability, and load-bearing capacity. This alloy is particularly beneficial in industries such as aerospace, construction, and high-performance engineering, where lightweight materials with superior mechanical properties are essential.
Brand | Chemical Compositions (%) | |||||
V | C | Si | P | S | Al | |
≤ | ||||||
FbV60-A | 58.0~65.0 | 0.40 | 2.0 | 0.06 | 0.04 | 1.5 |
FeV60-B | 58.0~65.0 | 0.60 | 2.5 | 0.10 | 0.05 | 2.0 |
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