Aluminum-Vanadium Alloy is a high-performance material known for its excellent strength, lightweight properties, and resistance to corrosion and wear. This alloy is widely used in various industries, including aerospace, automotive, and manufacturing, where it serves in critical components exposed to demanding environments. Its unique properties make it ideal for applications requiring a combination of durability and high performance.
Product Overview
Aluminum-vanadium alloy is an intermediate alloy composed of aluminum and vanadium. It is widely used in aerospace, vanadium-titanium alloys, high-temperature alloys, and other industries. The unique chemical composition and structural properties of this alloy play an important role in enhancing the mechanical properties of aluminum alloys and improving the strength and stability of castings. The alloy is known for its ability to control the microstructure of metals, improving strength, machinability, and overall performance, making it highly valuable in various applications.
Product Features
- Enhanced Mechanical Strength:Improves alloy strength and stability by modifying the crystal structure.
- Optimized Microstructure:Changes the metal’s microstructure to improve toughness, ductility, and machinability.
- Hardening Properties:As a hardening agent, it significantly increases the hardness and wear resistance of the alloy.
- High-Temperature Performance:Suitable for high-temperature environments with excellent heat and corrosion resistance.
- Lightweight:A key material for aerospace applications, offering low weight and high elasticity, meeting the demands of modern high-performance materials.
Applications
- Aerospace Industry:Used in the manufacturing of seaplanes, amphibious aircraft, and other high-strength special aluminum alloys, with advantages of seawater corrosion resistance and lightweight properties.
- Vanadium-Titanium Alloy Production:Serves as a key alloying element in the production of vanadium-titanium and other high-temperature alloys, enhancing their performance.
- Alloy Additive:Used in the production of intermediate alloys, providing essential elements for vanadium-titanium and other special alloys.
- High-Strength Aluminum Alloy Manufacturing:Widely used in the production of high-strength aluminum alloys to meet the needs of aerospace and other high-performance industries.
brand | Chemical Composition % | |||||
V | Fe | Si | C | O | Al | |
≤ | ||||||
ALV55 | >50.0~60.0 | 0.35 | 0.3 | 0.15 | 0.2 | Margin |
ALV65 | >60.0~70.0 | 0.3 | 0.3 | 0.2 | 0.2 | Margin |
ALV75 | >70.0~80.0 | 0.3 | 0.3 | 0.2 | – | Margin |
ALV85 | >80.0~90.0 | 0.3 | 0.3 | 0.2 | – | Margin |
size | -40 mesh, -60 mesh, or on-demand processing. | |||||
packing | 25 kg / bag, 100 kg / drum, 1 ton / bag. | |||||
Uses | mainly for the production of vanadium titanium alloy, high temperature alloys and alloys in the middle of the elements of some special alloy additives. |