High-performance ceramics, metals, and nanomaterials — engineered for research, built for industry.
Titanium Powder
Product Description
Titanium Powder (Ti Powder) is a high-performance metallic powder known for its excellent strength-to-weight ratio, corrosion resistance, low density, and high-temperature performance. It is widely used in additive manufacturing, powder metallurgy, aerospace, biomedical engineering, thermal spray, coatings, and advanced materials research.
Titanium Powder is available in different purity levels, particle sizes, and morphologies to meet specific industrial and research requirements.


Key Properties
Excellent strength-to-weight ratio
High corrosion resistance
Low density
High melting point
Excellent mechanical strength
Good biocompatibility
Excellent performance at elevated temperatures
High specific strength
Suitable for advanced manufacturing processes
Available in customized particle sizes
Applications
1. Additive Manufacturing
Titanium Powder is widely used in metal additive manufacturing processes such as Selective Laser Melting (SLM), Laser Powder Bed Fusion (LPBF), Electron Beam Melting (EBM), and Directed Energy Deposition (DED).
2. Aerospace & Defense
Used for manufacturing lightweight, high-strength components requiring excellent corrosion and temperature resistance.
3. Biomedical Applications
Titanium is widely used in biomedical engineering because of its excellent corrosion resistance and biocompatibility. Titanium powders can be used for research and manufacturing of implants and other medical components.
4. Powder Metallurgy
Used for producing titanium-based components through powder-processing and sintering techniques.
5. Thermal Spray & Coatings
Used in selected surface-engineering and coating applications to improve corrosion resistance, wear performance, and surface properties.
6. Advanced Composites
Titanium Powder can be incorporated into selected metal matrix composites, ceramic-metal composites, and advanced material systems.
7. Research & Development
Suitable for research involving metallurgy, additive manufacturing, nanotechnology, composites, coatings, and advanced materials.






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