High silicon niobium casting alloy and process for producing the same
View Patent ↗An iron-based high-silicon alloy contains (in weight percent) 2.6-3.5% carbon, 3.7-4.9% silicon, 0.45-1.0% niobium, up to 0.6% manganese, up to 0.02% sulfur, up to 0.02% phosphorus, up to 0.5% nickel, up to 1.0% chromium, up to 0.1% magnesium, and the balance iron and up to 0.2% of other elements. The alloy is heat resistant and is suitable for use in producing, among other things, turbochargers, center housings, back plates, exhaust manifolds, and integrated turbo manifolds that are used in the automotive and truck manufacturing industries.
1. An enhanced high temperature strength ductile iron alloy consisting of:
carbon in an amount of 2.79 to 2.9% by weight,
silicon in an amount of 4.17 to 4.67% by weight,
niobium in an amount of 0.6 to 0.77% by weight,
manganese in an amount of 0.6% by weight or less,
sulfur in an amount of 0.02% by weight or less.
phosphorus in an amount of 0.02% by weight or less,
nickel in an amount of 0.08 to 0.14% by weight or less,
chromium in an amount of 1.0% by weight or less,
magnesium in an amount of 0.1% by weight or less,
any other single element in an amount of 0.02 to 0.05% by weight, up to a combined total of 0.2% by weight of all such other elements, and
the balance iron.
2. A process for producing an enhanced high temperature strength ductile iron alloy consisting of the steps of:
providing carbon in an amount of 2.79 to 2.9% by weight,
providing silicon in an amount of 4.17 to 4.67% by weight,
providing niobium in an amount of 0.6 to 0.77% by weight,
providing manganese in an amount of 0.6% by weight or less,
providing sulfur in an amount of 0.02% by weight or less,
providing phosphorus in an amount of 0.02% by weight or less,
providing nickel in an amount of 0.08 to 0.14% by weight,
providing chromium in an amount of 1.0% by weight or less,
providing magnesium in an amount of 0.1% by weight or less,
providing 0.02 to 0.05% by weight of any other single element, up to a combined total of 0.2% by weight of all such other elements,
providing the balance iron,
combining the elements,
melting the combined elements, and
air cooling the alloy in the form of an end-product.