A-Powder Ti-6Al-4V (Ti64) Titanium Powder for Metal 3D Printing | LPBF Compatible – 10 kg / 22 lbs
$1,220
Lightweight Strength. Medical-Grade Purity. Reliable LPBF Performance. High-performance Ti-6Al-4V titanium powder engineered for LPBF additive manufacturing. Lightweight, corrosion-resistant, and heat-treatable for aerospace, medical, and high-performance industrial components. OEM-optimized Ti-6Al-4V powder for metal 3D printing, delivering predictable prints, stable LPBF processing, and full traceable documentation.
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Technology:
Metal LPBF
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Printing Materials:
Metal Powders
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Production Method:
EIGA (Electrode Induction Gas Atomization)
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Powder Package:
10 kg bottle
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✔ Developed for demanding industrial use cases
| Quantity, kg | Per Bottle 10 kg | Per kg Grade 5 (TC4) / Grade 23 (ELI) |
|---|---|---|
| Grade 5 (TC4) | ||
| 10-100 | $1220.00 | $122.00 |
| 100+ | $1100.00 | $110.00 |
| Grade 23 (ELI) | ||
| 10-100 | $1350.00 | $135.00 |
| 100+ | $1220.00 | $122.00 |
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Description
A-Powder Ti-6Al-4V (Ti64) Titanium Powder is a premium alpha-beta titanium alloy developed specifically for LPBF additive manufacturing. Produced via advanced gas atomization, the powder features highly spherical particles, a tight particle size distribution (15–53 µm), and controlled oxygen content. These characteristics ensure stable powder flow, consistent layer deposition, and reliable fusion behavior.
The Ti-6Al-4V composition (Ti balance, 6 % Al, 4 % V) provides an exceptional combination of low density, high mechanical strength, and corrosion resistance. After appropriate heat treatment, printed parts achieve excellent tensile strength, fatigue resistance, and dimensional stability.
A-Powder Ti64 supports production of complex, lightweight, end-use components across aerospace, medical, automotive, and energy industries. AO Metal ensures small-batch availability, rapid lead times, and full traceability for every production lot.
| Parameter | Grade 23 | Grade 5 |
|---|---|---|
| Alloy | Ti-6Al-4V ELI | Ti-6Al-4V |
| AM Process | LPBF / SLM | LPBF / SLM |
| Typical Particle Size | 15–53 μm | 15–53 μm |
| Oxygen Content | Lower (ELI) | Higher than Grade 23 |
| Strength Level | High | Very High |
| Ductility | Excellent | Moderate |
| Heat Treatable | Yes | Yes |
Key Differences Ti-6Al-4V Grade 5 vs Grade 23 (ELI)
- Grade 5 offers slightly higher strength due to higher oxygen content, making it ideal for structural and load-bearing aerospace components.
- Grade 23 (ELI) contains reduced interstitial elements, improving ductility, fracture toughness, and fatigue resistance. It is the preferred option for medical implants and safety-critical components.
machine type: F – LPBF
Key Performance Benefits of A-Powder Ti-6Al-4V (Ti64) Titanium Powder
- Outstanding strength-to-weight ratio
- Corrosion-resistant titanium alloy
- Stable LPBF processing with predictable results
- Spherical morphology for consistent powder flow
- Heat-treatable for optimized mechanical performance
- Suitable for complex geometries and load-bearing parts
Typical Applications
- Aerospace brackets, housings, and structural components
- Orthopedic and dental implants
- Lightweight automotive and motorsport parts
- High-performance industrial machinery components
industries: Automotive / Industrial / Medical / Aerospace / Energy
- Brand AO Metal – High-Precision Metal 3D Printers for Innovation
- Technology Metal LPBF
- Powder Package 10 kg bottle
- PSD (particle size distribution) 15–53 μm
- Printing Materials Metal Powders
- Material Ti-6Al-4V Grade 23 (ELI), Ti-6Al-4V Grade 5 (TC4)
- Country of origin China
- Production Method EIGA (Electrode Induction Gas Atomization)
Materials
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Ti-6Al-4V Grade 23 (ELI)
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Ti-6Al-4V Grade 5 (TC4)
Frequently asked questions
What is the difference between Ti-6Al-4V Grade 23 and Grade 5?
Grade 23 has lower oxygen and interstitial content, resulting in better ductility and fracture toughness. Grade 5 offers higher strength and hardness, making it suitable for structural applications.
What is Ti-6Al-4V titanium powder?
It is a high-strength alpha-beta titanium alloy powder widely used in LPBF additive manufacturing for lightweight, corrosion-resistant, and structurally critical components.
Which additive manufacturing process is supported?
Optimized for LPBF systems. The spherical morphology and controlled particle size distribution (15–53 µm) provide stable recoating and predictable layer fusion.
Is this titanium powder heat-treatable?
Yes. Heat treatment allows tuning of strength, ductility, and fatigue resistance depending on application requirements.
What industries typically use Ti-6Al-4V?
Aerospace, medical (implants and surgical devices), automotive, energy, and high-performance engineering sectors.
Why choose A-Powder Ti-6Al-4V?
AO Metal provides small-batch flexibility, controlled chemistry, fast delivery, and full traceable documentation for production-ready LPBF applications.
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