Published by HUAXIAO TECH manufacturer
FGH100L powder is a nickel-based superalloy powder specially designed for manufacturing turbine blades and other aerospace components requiring excellent high-temperature strength and oxidation resistance.
FGH100L combines nickel with elements like cobalt, chromium, and molybdenum to provide:
Exceptional creep resistance at temperatures above 1000°C
Superior oxidation and corrosion resistance under extreme conditions
Maintained mechanical strength for long service life in turbine engines
These characteristics ensure reliability in jet engines and gas turbines operating under harsh environments.
FGH100L powder features spherical particles with consistent size distribution, enabling:
Smooth flowability and uniform layer deposition
Stable melting behavior suitable for laser powder bed fusion (LPBF)
High density and low porosity in printed parts
These features improve the quality and precision of 3D printed turbine components.
Aircraft turbine blades and vanes
Industrial gas turbines
High-temperature aerospace parts
Power generation components
Enhanced creep and fatigue resistance at elevated temperatures
Superior oxidation and corrosion protection
Excellent printability for additive manufacturing
Long-term dimensional stability under thermal stress
Q1: What particle size range does FGH100L powder have?
A1: Typically 15–45 μm for optimal AM performance.
Q2: Can FGH100L be used in conventional casting?
A2: Yes, but powder form is primarily optimized for additive manufacturing.
Q3: What post-processing is recommended?
A3: Hot isostatic pressing (HIP) and solution treatment followed by aging improve mechanical properties.
FGH100L powder is a premium nickel-based superalloy designed to meet the demanding requirements of turbine blade manufacturing. Its excellent high-temperature performance and additive manufacturing compatibility make it indispensable in modern aerospace engineering.
Contact HUAXIAO TECH today for tailored FGH100L powder solutions to enhance your turbine component production.