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Iron-Base Alloys Strengthened by Laves Phases as Substitutes for Stainless Steels

机译:Laves相加强铁基合金作为不锈钢的替代品

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Precipitation-hardening, iron-base alloys containing molybdenum and titanium was studied as substitutes for the high-tonnage stainless steels that are high in imported nickel and chromium. The precipitation-hardened iron-base alloys are strengthened by a dispersion of the ternary Laves phase, Fe2 (Mo, Ti). Aluminum and chromium additions changed the solid solubility limits of molybdenum and titanium in alpha-iron and affected the composition of precipitating phases. A baseline composition of Fe-7Mo-2Ti was selected to study the effects of aluminum and chromium additions on the precipitation-hardening mechanism and microstructure and was also used in studies of mechanical properties and oxidation resistance.

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