$95.1 per kg

KOS - IN625 (15-53um)

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Priced and sold in kg units
Usually ships in 24-48 hours
Minimum Purchase:
10 units

Bulk discount rates

Here are the available bulk discount rates for each individual item when you purchase a certain amount.

  • Quantity Price
  • 10 - 49
  • 50 - 99
  • 100 - 199
  • 200 or above

This 15-53um cut of 625 alloy by KOS is perfect for use in marine, nuclear, and aerospace applications that require nickel. IN625 powder is ideal for powder bed fusion and other AM methods.

  • Suitable for a range of additive manufacturing methods
  • Resistance to corrosion and oxidation
  • Enhanced physical strength
  • Long-term mechanical durability
  • Highly spherical and pure

Please download material specifications and safety data sheets for more details.

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Atomized 625 Alloy For Smooth Additive Manufacturing

This nickel-based superalloy facilitates smooth additive manufacturing with its impressive physical and chemical properties, such as resistance to extreme temperatures and oxidation. KOS’ argon-based EIGA atomization further enhances this metal powder with an unmatched level of purity and sphericity.

Blazing-Fast Lead Times

As an inventory bridge between you and the leading powder manufacturers in the world, KBM works around the clock to ensure you receive your additive manufacturing materials on time, every time. Our lightning fast lead times allow you to plan your operations around our deliveries and save big on storage costs.

$95.1 per kg
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Applicable Markets

  • grey silos emitting smoke

    Nuclear Applications

    Whether it’s for energy production or manipulation, IN625 powder can withstand the demanding environment due to its high resistance to corrosion, oxidation, and extreme temperatures.

  • a white ship at sea

    Marine Environments

    Businesses working with marine pipelines and construction can benefit immensely from 625 alloy’s easy malleability and oxidation resistance.

  • a rocket trail after liftoff


    Jump into high-end aerospace manufacturing with a material designed to excel in high-pressure environments and maintain its signature strength.