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Titanium (Ti) Micron Powder, Purity:99.5+%, Size:5-25 µm, Spherical

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  •  Titanium (Ti) Micron Powder, Purity:99.5+%, Size:5-25 µm, Spherical
  • Titanium (Ti) Micron Powder, Purity:99.5+%, Size:5-25 µm, Spherical
€98.00
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100 grams / 98€
500 grams / 346€
1000 grams / 624

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Titanium (Ti) Micron Powder

Purity: 99.5+%, Size: 5-25 µm

Titanium (Ti) Micron Powder is a high-purity material composed of fine spherical particles in the micron scale. Known for its exceptional strength-to-weight ratio, corrosion resistance, and biocompatibility, titanium is a premium choice for advanced engineering and medical applications. In powder form, it is highly versatile, supporting processes such as 3D printing (additive manufacturing), coatings, and composite integration. Its stability in harsh environments and compatibility with biological systems make it suitable for both industrial and biomedical use.

Technical Properties

Purity 99.5+%          
Particle Size 5-25 µm          
Melting Point 1668 °C          
Boiling Point 3260 °C          
Density 4.507 g/cm³          
Coefficient of Thermal Expansion @20°C 8.5×10−6 K−1          
Electrical Resistivity 47.8 μΩ⋅cm          
Crystal Structure  Spherical          
CAS No 7440-32-6          
Chemical Composition (%) Fe Al Cr Mo As Cu
  <0.2 <0.01 <0.005 <0.001 <0.001 <0.001

SEM Image

 

Applications

  • Aerospace and Engineering: Used in aerospace machines and high-performance components where lightweight strength and corrosion resistance are critical.
  • Biomedical and Implants: Applied in medical implants and devices due to its biocompatibility and mechanical durability.
  • Electronics and Devices: Integrated into electronic components and devices, leveraging its conductivity and stability.
  • 3D Printing / Additive Manufacturing: Widely used in 3D printing to produce complex, lightweight, and durable structures for aerospace, medical, and industrial applications.
  • Nano-Composites and Advanced Materials: Serves as a reinforcing agent in nano-composites, improving mechanical strength and thermal stability.
  • Optical and Glass Applications: Utilized in optical materials and as a glass modification additive, enhancing performance and durability.
  • Sensors and Precision Devices: Employed in micro and nano sensors, benefiting from titanium’s stability and resistance to environmental factors.
  • Porcelain Enamels: Used as an opaque and whitening agent in porcelain enamels, providing high gloss, acid resistance, and hardness.

 

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