Ti6Al4V Titanium Alloy Powder 1kg 15-53μm AM ATOMFAIR®

Price range: $260.00 through $350.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

ATOMFAIR® Ti6Al4V titanium alloy powder for AM: 1 kg, spherical, D10 ≥15 μm, D50 30-40 μm, sphericity ≥0.9, tensile strength ≥950 MPa. Order now.

ATOMFAIR® TI6AL4V TITANIUM ALLOY POWDER

ADDITIVE MANUFACTURING GRADE MATERIAL

Product Overview

Ti6Al4V Titanium Alloy Powder is a premium alpha-beta spherical metal matrix optimized to establish part density, high thermal stability, and structural reliability during laser powder bed fusion. Highly engineered for state-of-the-art additive manufacturing workflows, this material delivers excellent yield limits and mechanical fatigue performance parameters across critical aerospace and medical components.

Technical Specifications

PARAMETER DETAILS
1. Chemical Composition (wt.%)
Base Element Matrix Titanium (Ti) – Balance
Alloying Elements Al: 5.5-6.75 | V: 3.5-4.5
Controlled Interstitials C: ≤0.08 | Fe: ≤0.3 | O: ≤0.12 | N: ≤0.03 | H: ≤0.015
2. Powder Physical Characteristics
Particle Size Range D10 ≥ 15 μm | D50: 30-40 μm | D90 ≤ 63 μm
Sphericity Threshold ≥ 0.9
Density Profiles Apparent Density ≥ 2.4 g/cm³ | Tap Density ≥ 2.8 g/cm³
Powder Flowability ≤ 35 s / Standard Weight Volume
3. Post Heat-Treatment Mechanical Metrics
Room Temperature Tensile Strength ≥ 950 MPa | Yield Strength ≥ 900 MPa | Elongation ≥ 10.0%
Manufacturing Processes Optimized for Selective Laser Melting (SLM), Laser Solid Forming (LSF), and Electron Beam Melting (EBM) systems.


Key Features & Advantages

  • Aerospace Industry Standard: Provides structural alpha-beta grouping equilibrium to maximize crack propagation resistance under intensive mechanical stress fields.
  • Excellent Flow and Sphericity: High sphericity baseline (≥0.9) minimizes inter-particle friction and eliminates void development during bed re-coating.
  • High Tensile Baseline: Post-treated geometries reveal a room-temperature tensile strength ≥950 MPa alongside verified elongation properties.
  • Severe Purity Control Bounds: Strict controls over interstitial parameters eliminate fragile microstructural defects and ensure ideal fatigue life behaviors.

APPLICATION SCOPE: Suitable for manufacturing aero-engine fan blades, compressor blades, aircraft frames, brackets, as well as artificial joints, hip implants, etc.
PACKAGING: Highly secure and atmosphere-isolated container design protecting exact compound properties and technical purity criteria during transit and storage.
IMPORTANT NOTICE: This high-purity spherical additive matrix must be kept and stored under anhydrous, gas-regulated laboratory protocols. For advanced system manufacturing applications only. Keep containers tightly sealed or handle exclusively within dry, inert environments (such as Argon or Nitrogen gloveboxes) to prevent powder contamination or early oxidation before melt validation. If you’re interested, have any specialized questions, or have specific customization requirements, please feel free to reach out to our support coordinates.

TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official industrial quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

Store this powder under anhydrous conditions in a sealed container to prevent moisture uptake and oxidation. Handle exclusively within an inert atmosphere such as argon or nitrogen to maintain powder integrity before melt processing.

  • Atmosphere Control: Maintain an inert atmosphere (argon or nitrogen) during all storage and handling operations to prevent oxidation.
  • Moisture Exclusion: Keep the container tightly sealed and store in a dry environment to avoid moisture contamination and premature degradation.
  • Container Integrity: Inspect container seals regularly to ensure no breaches that could expose the powder to ambient atmospheric conditions.

Follow these steps to safely transfer and store the powder without contamination. Use an inert atmosphere glovebox and sealed containers to preserve powder quality.

Required Equipment: Inert atmosphere glovebox (argon or nitrogen), Sealed storage container

  1. Inspect Container
    Inspect the container seal to confirm it is intact before any use.
  2. Open in Inert Environment
    Open the container only inside an inert atmosphere glovebox or under a protective argon/nitrogen purge.
  3. Transfer Powder
    Transfer the powder using appropriate handling tools within the inert environment to avoid contamination.
  4. Reseal Container
    Reseal the container securely after each use to maintain an anhydrous state and prevent oxidation.

What post-heat-treatment mechanical properties does Atomfair Ti6Al4V titanium alloy powder achieve?

Post-heat-treated Ti6Al4V components from this powder achieve a room-temperature tensile strength of at least 950 MPa and yield strength of at least 900 MPa, with elongation of at least 10.0%. These values are specified as post-heat-treatment mechanical metrics for the material.

Which additive manufacturing systems is Atomfair Ti6Al4V powder optimized for?

The powder is optimized for selective laser melting (SLM), laser solid forming (LSF), and electron beam melting (EBM) systems. It is intended for aerospace and medical components such as aero-engine fan blades, compressor blades, aircraft frames, brackets, artificial joints, and hip implants.

What storage and handling conditions are required for Atomfair Ti6Al4V powder?

Store the powder under anhydrous, gas-regulated laboratory conditions and keep containers tightly sealed. Handle it only in dry, inert environments such as argon or nitrogen gloveboxes to prevent powder contamination or early oxidation before melt validation.

ATOMFAIR® Ti6Al4V titanium alloy powder offers high sphericity (≥0.9) and controlled interstitial chemistry to support reproducible laser powder bed fusion, with post-heat-treatment tensile strength ≥950 MPa. Handling requires strict anhydrous, inert atmosphere storage to prevent oxidation, and the varied particle size ranges (0-20, 15-53, 53-150 μm) must be matched to each AM system's process window.

Positive

  • High sphericity and flowability: Sphericity ≥0.9 and flow time ≤35s minimize inter-particle friction, reducing void formation during recoating and promoting uniform layer deposition in powder bed fusion.
  • Post-heat-treatment mechanical strength: Room-temperature tensile strength ≥950 MPa, yield strength ≥900 MPa, and elongation ≥10% after heat treatment provide structural reliability for aerospace and medical components.

Trade-offs

  • Inert atmosphere handling required: The powder must be stored and handled under anhydrous, inert gas (Argon or Nitrogen) conditions to prevent oxidation and contamination, requiring glovebox or sealed container protocols.
  • Particle size variation affects process window: The available size ranges (0-20, 15-53, 53-150 μm) require distinct parameter optimization in AM systems; the standard D50 30-40 μm spec may not apply to all variations.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).

size

1Kg15-53μm, 1Kg0-20μm, 1Kg53-150μm