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Grade: Grade 5
Formula: Ti 90/Al 6/V 4
Form: Powder
Material: Titanium/Aluminum/Vanadium
Commodity: Alloys
Max Particle Size: 45μm
Production Method: Gas Atomized

Grade 5 Titanium/Aluminum/Vanadium Alloy Spherical Powder (Ti90/Al6/V4)

Grade 5 Titanium/Aluminum/Vanadium Alloy Rod (Ti90/Al6/V4) is known for its outstanding mechanical strength, excellent fatigue resistance, and superior corrosion protection, making it the most widely utilized titanium alloy in engineering applications. The α-β microstructure, stabilized by aluminum and vanadium, allows a unique combination of high tensile strength with workable ductility and weldability. These rods are applied extensively in aerospace, biomedical, marine, and automotive industries where both lightweight efficiency and durability under cyclic loading are required. Specific applications include aircraft landing gear and engine components, orthopedic implants and surgical instruments, and high-performance automotive connecting rods. In research, Ti-6Al-4V rods play an essential role in exploring thermo-mechanical treatments, alloy optimization for cost reduction, and novel surface treatments to enhance wear resistance and biocompatibility. Their balance of strength, corrosion resistance, and adaptability ensures that they remain a cornerstone in both industrial applications and advanced materials science.
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Tolerances

Powder
Mean Particle Size Nominal
Minimum Particle Size Nominal
Maximum Particle Size Nominal
Maximum Particle Size Nominal
Particle Size D10 Nominal
Particle Size D50 Nominal
Particle Size D90 Nominal

Material Properties for Alloys

Mechanical Properties
Element Value
Elongation at break( % ) >10
Modulus of elasticity( GPa ) 106-114
Izod impact strength( J m⁻¹ ) 20
Tensile strength( MPa ) 895
Electrical Properties
Element Value
Electrical resistivity( µOhmcm ) 168
Temperature coefficient( K⁻¹ ) 0.0004
Thermal Properties
Element Value
Melting point( C ) 1600-1650
Thermal conductivity( W m⁻¹ K⁻¹ ) 5.8@23
Thermal conductivity( W m⁻¹ K⁻¹ ) 5.8@23C
Coefficient of thermal expansion( x10⁻⁶ K⁻¹ ) 8@20-100
Coefficient of thermal expansion( x10⁻⁶ K⁻¹ ) 8.0@20-100C
Physical Properties
Element Value
Density( gcm⁻³ ) 4.42

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