Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder provided by Stanford Advanced Materials (SAM) is a thermal spray powder that forms hard, dense, scuff-resistant coatings with high wear and corrosion resistance, ideal for use in mild oxidizing environments.
Related Products: Molybdenum Powder (Mo Metal Powder), Nano Molybdenum Powder (Mo, 99.9%, 60nm), Spherical Molybdenum Powder
Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder provided by Stanford Advanced Materials (SAM) is a thermal spray powder that forms hard, dense, scuff-resistant coatings with high wear and corrosion resistance, ideal for use in mild oxidizing environments.
Related Products: Molybdenum Powder (Mo Metal Powder), Nano Molybdenum Powder (Mo, 99.9%, 60nm), Spherical Molybdenum Powder
Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder is a thermal spray powder designed to create hard, dense coatings that provide excellent resistance to scuffing and abrasion in mildly oxidizing environments. This two-component blend includes an agglomerated and sintered molybdenum constituent, which imparts toughness and a low coefficient of friction, along with an inert gas-atomized nickel-chromium-iron self-fluxing component that enhances resistance to high-temperature corrosion, erosion, and oxidation. The resulting coatings are self-bonding on most substrates, though they are not recommended for use on copper and copper-alloy substrates. This makes the powder an ideal choice for applications requiring high wear resistance.
Nominal Chemistry |
Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C |
Nom. Particle Size Distr.(µm) |
-90 +45 |
Morphology |
Spheroidal |
Max. Service Temperature (°C) |
340 |
Melting Temperature (°C) |
660 |
Our Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder is meticulously handled during storage and transportation to maintain its quality and ensure it remains in its original condition.
Q1: What industries commonly use Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder?
A1: It is widely used in aerospace, automotive, industrial machinery, oil and gas, power generation, and metal processing industries for components exposed to high wear and mildly oxidizing environments.
Q2: How is Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder synthesized?
A2: The powder consists of an agglomerated and sintered molybdenum constituent combined with an inert gas-atomized nickel-chromium-iron self-fluxing component, ensuring enhanced toughness, wear resistance, and high-temperature performance.
Q3: What are the optimal conditions for applying coatings using Mo 17.5Ni 4Cr 1Fe 1Si 0.85B 0.25C Powder?
A3: The powder is best applied using thermal spray techniques in conditions that require high wear resistance and protection against mildly oxidizing environments. Specific application parameters may vary depending on the substrate and desired coating properties.