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FeCoNiCrAl High Entropy Alloy Powder for Additive Manufacturing (3D Printing) - MSE Supplies LLC

MSE PRO FeCoNiCrTi High Entropy Alloy Powder for Additive Manufacturing (3D Printing)

  • $ 25990


MSE PRO™ FeCoNiCrTi High Entropy Alloy Powder for Additive Manufacturing (3D Printing)

High entropy alloys (HEAs) are defined as alloys that have at least five principal elements and the concentration of each element is between 5 and 35 at.%. Under the effects of a high mixing entropy and the accompanied sluggish cooperative diffusion, they can easily yield the formation of simple solid-solution phases and nanostructures during solidification, rather than many binary and ternary intermetallic compounds or other complicated phases. Extensive research has been carried out on numerous HEAs, and many attractive properties have been achieved, such as high hardness and strength, high fatigue resistance and fracture toughness, high-temperature oxidation resistance, high corrosion resistance, unique electrical and magnetic properties. These promising properties offer many potential applications in various fields, such as tools, molds, dies, diffusion barriers, and soft magnetic films.

Many elements can be used to make HEAs. MSE Supplies provides the most commonly investigated HEAs and MEAs powders as standard products: 

  • FeCoNiCrMo
  • FeCoNiCrMn
  • FeCoNiCrAl
  • FeCoNiCrTi
  • FeCoNiCr

For customized HEA powders with different components or content, please contact us.

Technical Data

Product Name FeCoNiCrTi High Entropy Alloy Powder
SKU#

0-25um (D50 size) (MP0310)

15-53um (D50 size) (MP0311)

45-105um (D50 size) (MP0312)

Chemical Composition (at.%)

Fe

Co

Ni

Cr

Ti

≈20 20
20
20
20
Oxygen Content (ppm) <900
Nitrogen Content (ppm) <900
Minimum Order Quantity (kg) 1
Applicable Equipment Powder can be used in various types of metal 3D printers, including Renishaw from the UK, EOS (EOSINT M series) from Germany, Concept Laser, 3D systems from the United States and many other laser melting equipment.

Please contact us for detail specification

References:

1. He, J. Y., et al. "Precipitation behavior and its effects on tensile properties of FeCoNiCr high-entropy alloys." Intermetallics 79 (2016): 41-52.

2. Tong, Y., et al. "Outstanding tensile properties of a precipitation-strengthened FeCoNiCrTi0. 2 high-entropy alloy at room and cryogenic temperatures." Acta Materialia 165 (2019): 228-240.

3. Chen, Da, et al. "Microstructural response of He+ irradiated FeCoNiCrTi0. 2 high-entropy alloy." Journal of Nuclear Materials 510 (2018): 187-192.


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