What is Spherical TC4 Titanium Based Micron Powder for 3D Printers (Ti6Al4V)?
Spherical TC4 Titanium Based Micron Powder (Ti6Al4V) is a high-performance metal powder widely used in additive manufacturing and 3D printing applications. It is composed of titanium, aluminum, and vanadium, offering excellent mechanical properties, high corrosion resistance, and biocompatibility.
Chemical Properties and CAS Number
- Material: Titanium Alloy (Ti6Al4V)
- CAS Number: 7440-32-6 (Titanium base)
- Composition: Ti (90%), Al (6%), V (4%)
- Particle Shape: Spherical
- Density: ~4.43 g/cm³
- Melting Point: ~1,660°C
- Hardness: ~30-40 HRC
- Thermal Conductivity: ~6.7 W/m·K
- Electrical Resistivity: ~1.7 × 10⁻⁶ Ω·m
Applications of Spherical TC4 Titanium Based Micron Powder
1. Additive Manufacturing (3D Printing)
Used in aerospace, medical implants, and industrial parts due to its high strength and lightweight properties.
2. Aerospace and Defense
Applied in turbine blades, structural components, and high-performance aerospace parts.
3. Biomedical and Medical Implants
Utilized in orthopedic implants, prosthetics, and dental applications due to its excellent biocompatibility.
4. Automotive Industry
Used for lightweight, high-performance parts in motorsports and advanced vehicle manufacturing.
5. Marine and Chemical Processing
Resistant to corrosion in harsh environments, making it ideal for marine applications and chemical reactors.
Pricing of Spherical TC4 Titanium Based Micron Powder
Pricing varies based on purity, particle size, and bulk order quantity:
- Standard Grade: Typically ranges from $200 – $800 per kilogram
- High-Purity Grade: Prices range from $800 – $2,500 per kilogram, depending on aerospace and medical applications.
Factors Influencing Pricing
- Purity level (Standard vs. High-Purity)
- Particle size distribution (15-45μm, 45-105μm, 105-150μm)
- Industrial demand in aerospace, medical, and 3D printing sectors
- Bulk purchase volume and supplier availability
Conclusion
Spherical TC4 Titanium Based Micron Powder (Ti6Al4V) is a premium-grade material with extensive applications in aerospace, medical implants, and additive manufacturing. Its superior strength-to-weight ratio, corrosion resistance, and biocompatibility make it a critical component in advanced engineering and manufacturing.
