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A-Powder IN625 Nickel Powder for Metal 3D Printing | LPBF Compatible – 10 kg / 22 lbs

$1,090

Corrosion-Resistant. High-Temperature Stable. High-performance IN625 nickel powder for LPBF additive manufacturing. Corrosion-resistant, heat-stable, and fully heat-treatable for aerospace, energy, and industrial high-temperature components.

OEM-optimized IN625 powder for metal 3D printing, delivering reliable prints, predictable LPBF performance, and full traceable documentation.

  • Technology:

    Metal LPBF

  • Printing Materials:

    Metal Powders

  • Production Method:

    Vacuum Induction Melting Gas Atomization (VIGA)

  • Powder Package:

    10 kg bottle, 440 kg hopper, 840 kg hopper

  • In stock

  • Delivery: 5-10 Business Days

$1,090

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✔ Application-driven material engineering and validation
✔ Optimized printing parameters for maximum performance
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✔ Improved repeatability and process stability
✔ Developed for demanding industrial use cases

Order more than 100 kg and get a discount
Quantity, kg Per Bottle 10 kg Per kg
10-100 $1090.00 $109.00
100+ $980.00 $98.00
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Description

A-Powder IN625 Nickel Powder is a premium nickel-based superalloy engineered for LPBF additive manufacturing. Produced via vacuum induction gas atomization (VIGA), the powder features spherical morphology, tight particle size distribution (15–53 µm), and low oxygen content (≤200 ppm), enabling stable powder flow, smooth recoating, and repeatable layer fusion. The alloy composition (Ni balance, Cr 21.2 %, Nb 3.59 %, Mo 9.10 %, Al 0.31 %, Ti 0.31 %, Fe 1.0 %) provides excellent corrosion resistance and thermal stability. Heat treatment achieves optimized mechanical properties suitable for aerospace turbines, industrial machinery, and high-performance energy systems. A-Powder IN625 ensures small-batch flexibility, rapid delivery, and complete traceable documentation from AO Metal, enabling production-ready additive manufacturing of critical components.

Element Min Max Typical
Ni Bal. Bal. Bal.
Cr 20.0 23.0 21.2
Nb 3.15 4.15 3.59
Mo 8.0 10.0 9.10
C 0.1 0.02
Co 1.00 0.01
Al 0.40 0.31
Ti 0.40 0.31
Fe 5.00 1.00
Si 0.50 0.02
Mn 0.50 0.04
S 0.015 0.001
P 0.015 <0.004
Cu 0.07 <0.01
O 0.020 0.012
N 0.020 0.002

machine type: F – LPBF industries: Aerospace /  Automotive /  Marine

Key Performance Benefits

  • Corrosion-resistant nickel-based superalloy
  • Predictable LPBF performance with stable layer deposition
  • Spherical particle morphology ensures repeatable powder flow
  • Heat-treatable to achieve maximum mechanical performance
  • Suitable for complex geometries and high-stress end-use parts
  • Small-batch flexibility and full traceable documentation

Typical Applications

  • Aerospace turbine and structural components
  • Chemical processing and marine components
  • Industrial machinery requiring corrosion resistance and high strength
  • End-use parts for high-temperature, critical applications

Comparison Table: IN625 vs IN718 (LPBF)

Property IN625 IN718
Alloy Type Nickel-based superalloy Nickel-based superalloy
Primary Advantage Corrosion-resistant, thermal stability High-strength at elevated temperatures
Ultimate Tensile Strength 865 MPa 1350 MPa
Yield Strength 470 MPa 1150 MPa
Elongation 50 % 23 %
Corrosion Resistance Excellent Moderate
Heat Treatment Solution + standard aging Solution + double aging
High-Temperature Performance Up to 650 °C Up to 700 °C
LPBF Processing Smooth, repeatable, minimal spatter Stable, predictable, slightly narrower window
Best For Corrosion-resistant, high-temperature industrial parts High-strength structural parts in aerospace and energy
  • Brand AO Metal – High-Precision Metal 3D Printers for Innovation
  • Technology Metal LPBF
  • Powder Package 10 kg bottle, 440 kg hopper, 840 kg hopper
  • PSD (particle size distribution) 15–53 μm
  • Printing Materials Metal Powders
  • Material IN625
  • Country of origin China, USA
  • Production Method Vacuum Induction Melting Gas Atomization (VIGA)

Materials

  • IN625 IN625

Frequently asked questions

What is IN625 Nickel Powder?

IN625 is a nickel-based superalloy powder engineered for LPBF additive manufacturing. It combines high-temperature stability, corrosion resistance, and predictable mechanical performance for critical components.

Which additive manufacturing processes are compatible?

Optimized for LPBF. Spherical particles with narrow PSD (15–53 µm) and low oxygen content (≤200 ppm) provide smooth recoating, minimal spatter, and repeatable layer deposition.

Can IN625 be heat-treated?

Yes, heat treatment enhances mechanical performance, achieving UTS 865 MPa, yield 470 MPa, and elongation 50 %.

What industries typically use IN625 powder?

Aerospace, energy, automotive, and industrial applications requiring corrosion resistance and high-temperature performance.

Why choose A-Powder IN625?

Manufactured by AO Metal with small-batch flexibility, consistent quality, fast delivery, and full traceable documentation for reliable, production-ready LPBF performance.

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