
Hot-section alloys for power generation
Industrial Gas Turbine
Capabilities
What we do for industrial gas turbine.
- 01
High-temperature alloys
Nickel and cobalt alloys for blades, vanes, combustors and other hot-section hardware.
- 02
Critical material recovery
Recovery and reprocessing of alloy content from turbine arisings and production scrap.
- 03
Air-melt and vacuum grade
Material is prepared and certified for return to either air-melt or vacuum-grade production routes.
- 04
Segregated by grade
Turbine alloys are kept separated by specification so their full metallurgical value is retained.
Materials
Alloy families we supply into this sector.
48 gradesComplex Nickel Alloys
Precipitation-hardened and cast nickel superalloys engineered for creep resistance in the hot section of gas turbines and aero engines.
- High Temperature Alloys
- Heat Resistant
- Corrosion Resistant
Cobalt Alloys
Cobalt-base wear, heat and corrosion resistant alloys — the Stellite and MAR-M families — used for hardfacing and turbine hot-section components.
- Heat Resistant
- Corrosion Resistant
- Wear Resistant
52 gradesNickel Alloys
Corrosion- and heat-resistant nickel-base alloys, including the Hastelloy, Inconel, Incoloy and Nimonic families, used where chemical attack and elevated temperature occur together.
- Heat Resistant
- Corrosion Resistant
- Acid Resistant
10 gradesTungsten Alloys
Tungsten and tungsten carbide grades characterised by very high hardness and density, used in cutting tools, wear parts and heavy metal applications.
- High Hardness
- High Density
140 grades documented for industrial gas turbine
Across 4 categories, covering Ni, Cr, Co, Mo, W, Fe, Al, Ti and 5 more elements. Search them by composition, line up candidates side by side, or send a specification straight through for pricing.
Other sectors

Talk to us about industrial gas turbine material.
Supply, recovery or both — tell us the specification and the volume and we will come back with a route for it.


