Spherical Ti-based Powder Ti-6Al-4V Description
Spherical Ti-based Powder Ti-6Al-4V refers to an alloy composed primarily of titanium (Ti), with 6% aluminum (Al) and 4% vanadium (V). This alloy is widely used in various industries, including aerospace, automotive, and biomedical, due to its excellent combination of high strength, low density, and corrosion resistance.
Spherical powder particles ensure better flowability and packing density, which in turn leads to improved printing accuracy and surface finish.
In the context of dental applications, using Ti-6Al-4V powder for laser melting enables the fabrication of dental implants, crowns, bridges, and other dental prostheses with precise geometries and biocompatibility, crucial for successful dental procedures.
Spherical Ti-based Powder Ti-6Al-4V Specifications
Particle Size (μm)
|
15-53
|
Particle Size Distribution
(μm)
|
D10
|
17-22
|
D50
|
28-38
|
D90
|
50-60
|
Hall flow rate (s/50g)
|
40
|
Bulk density (g/cm³)
|
2.35
|
Tap Density (g/cm³)
|
2.6
|
Vickers hardness
|
≥260HV10
|
Elongation after break
|
≥2%
|
Tensile Strength
|
≥500MPa
|
Bending Stress
|
≥800MPa
|
Young's modulus
|
≥90 GPa
|
Gold and porcelain bonding properties
|
≥25MPa
|
Chemical Composition (Wt, %)
Ti
|
Al
|
V
|
Fe
|
C
|
O
|
N
|
H
|
Bal.
|
5.5-6.5
|
3.5-4.5
|
≤0.25
|
≤0.08
|
≤0.13
|
≤0.03
|
≤0.012
|
Spherical Ti-based Powder Ti-6Al-4V Applications
Spherical Ti-based Powder Ti-6Al-4V is used to fabricate dental implants, crowns, bridges, and other prosthetic components due to its biocompatibility, corrosion resistance, and ability to withstand the mechanical stresses of chewing. Dental implants are crafted using laser selective melting, a precise additive manufacturing technique that involves layer-by-layer fusion of metal powder.
Spherical Ti-based Powder Ti-6Al-4V Packaging
Our Spherical Ti-based Powder Ti-6Al-4V is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Specification
Particle Size (μm)
|
15-53
|
Particle Size Distribution
(μm)
|
D10
|
17-22
|
D50
|
28-38
|
D90
|
50-60
|
Hall flow rate (s/50g)
|
40
|
Bulk density (g/cm³)
|
2.35
|
Tap Density (g/cm³)
|
2.6
|
Vickers hardness
|
≥260HV10
|
Elongation after break
|
≥2%
|
Tensile Strength
|
≥500MPa
|
Bending Stress
|
≥800MPa
|
Young's modulus
|
≥90 GPa
|
Gold and porcelain bonding properties
|
≥25MPa
|
Chemical Composition (Wt, %)
Ti
|
Al
|
V
|
Fe
|
C
|
O
|
N
|
H
|
Bal.
|
5.5-6.5
|
3.5-4.5
|
≤0.25
|
≤0.08
|
≤0.13
|
≤0.03
|
≤0.012
|