A-Powder Inconel 718 — Nickel Superalloy Powder for AO Metal Printers

Inconel 718 nickel superalloy powder.

An age-hardenable nickel superalloy for parts that must keep their strength hot. It is weldable, which makes it one of the most printable superalloys for complex internal geometry.

All metal powders · How printing works

Inconel 718 metal powder for LPBF, 10 kg sealed container
Particle size15–53 µm
Container10 kg, sealed
Ships6–8 weeks
OriginChina
Price$835 / 10 kg

What it is

Typical use

Hot-section and high-temperature test parts, combustion and turbine research hardware, high-strength brackets.

On an AO Metal printer

AO Metal A30, A50 and A100 are open systems: every process parameter is exposed and there is no approved-material list, so you load this 15–53 µm powder like any other qualified alloy. Our materials engineer shares recommended starting parameters, which you then tune on your own printer.

Powder data

Powder

MaterialInconel 718 nickel superalloy
DesignationUNS N07718 · 2.4668
Particle size (PSD)15–53 µm
Size distributionD10 10–25 µm · D50 25–40 µm · D90 40–60 µm
Flow rate (Hall)≤ 20 s / 50 g
Apparent density≥ 3.5 g/cm³
Tap density≥ 4.0 g/cm³
Sphericity≥ 80%
AtomizationGas-atomized
Oxygen0.05–0.10%
Country of originChina
Package10 kg sealed container

Main alloying elements

Nickel (Ni)50.0–55.0%
Chromium (Cr)17.0–21.0%
Niobium + Tantalum4.75–5.50%
Molybdenum (Mo)2.80–3.30%
Iron (Fe)Balance

The full chemistry of your lot is on its certificate of analysis.

Printed properties

Manufacturer data

Tensile, as built≥ 1049 MPa
Yield, as built≥ 829 MPa
Elongation≥ 27%
Hardness286 HV1
Tensile strength, heat treated≥ 1458 MPa
Yield strength, heat treated≥ 1307 MPa
Elongation, heat treated≥ 17%
Hardness, heat treated530 HV1
Porosity0.18%
Heat treatment1065 °C 8 h, then 720 °C 4 h and 620 °C 4 h
Relative density99.82%

Published by the powder manufacturer. Use them as a starting point for your own qualification, not as a guaranteed result on your machine.

How to use it

  1. Store sealedKeep the container closed, dry and at room temperature until you load the printer. Reseal it after each use.
  2. Sieve before loadingPass the powder through a sieve before it goes into the printer, and every time you reuse powder recovered from a build.
  3. Load the dispenserFill the printer's powder dispenser, close the chamber and purge it with argon before the first layer.
  4. Start from our parametersOur materials engineer shares recommended starting parameters for this alloy; every value stays open for you to tune.
  5. Recover the restAfter the build, collect the unfused powder, sieve it and return it to a sealed container for the next job.

Wear a respirator, gloves and a lab coat when handling metal powder. The safety data sheet comes with every order. See the full printing workflow →

Ordering

  • Made to order — ships in 6–8 weeks; the exact date is confirmed by email after you order.
  • One 10 kg sealed container per unit — $835 ($83.50/kg), with the lot certificate of analysis on request.
  • 100 kg and more — ask for a volume quote.
  • Orders are placed and supported in the US by Additive Plus, AO Metal’s sales and service partner: card, PayPal or purchase order; tax-exempt certificates accepted.

Made in China. If your program requires US- or allied-origin material, ask us before ordering.

Questions

What heat treatment is the data based on?

Solution at 1065 °C for 8 h, then ageing at 720 °C for 4 h and 620 °C for 4 h, per the manufacturer’s figures above.

Is it suitable for a small research printer?

Yes — it is a 15–53 µm cut for open LPBF systems; our engineer shares starting parameters for your machine.

Other powders

Printing Inconel 718 for the first time?

Tell us the part and the printer, and our materials engineer will send starting parameters and answer questions before you order.

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