US20030192627A1

High strength aluminum alloy for high temperature applications

Claim Score by NHIP

Read claim 13, the broadest

Abstract

A cast article from an aluminum alloy has improved mechanical properties at elevated temperatures. The cast article has the following composition in weight percent: Silicon 6.0-25.0, Copper 5.0-8.0, Iron 0.05-1.2, Magnesium 0.5-1.5, Nickel 0.05-0.9, Manganese 0.05-1.2, Titanium 0.05-1.2, Zirconium 0.05-1.2, Vanadium 0.05-1.2, Zinc 0.05-0.9, Strontium 0.001-0.1, Phosphorus 0.001-0.1, and the balance is Aluminum, wherein the silicon-to-magnesium ratio is 10-25, and the copper-to-magnesium ratio is 4-15. The aluminum alloy contains a simultaneous dispersion of three types of Al<subscript>3</highlight>X compound particles (X=Ti, V, Zr) having a L1<subscript>2 </highlight>crystal structure, and their lattice parameters are coherent to the aluminum matrix lattice. A process for producing this cast article is also disclosed, as well as a metal matrix composite, which includes the aluminum alloy serving as a matrix containing up to about 60% by volume of a secondary filler material.

US20030192627A1, drawing sheet 1
Sheet 1 of 5

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Projected expiry passed 12 April 2023, 3.5 years ago.

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14 claims: 4 independent, 10 dependent

  1. 1
    A cast article from an aluminum alloy, which has improved mechanical properties at elevated temperatures, the cast article having the following composition in weight percent:Silicon  6.0-25.0 Copper  5.0-8.0 Iron 0.05-1.2 Magnesium  0.5-1.5 Nickel 0.05-0.9 Manganese 0.05-1.2 Titanium 0.05-1.2 Zirconium 0.05-1.2 Vanadium 0.05-1.2 Zinc 0.05-0.9 Strontium 0.001-0.1  Phosphorus 0.001-0.1  Aluminum Balance wherein the silicon-to-magnesium (Si/Mg) ratio is 10-25, and the copper-to-magnesium (Cu/Mg) ratio is 4-15.
  2. 7
    A process for making a cast article from an aluminum alloy, which article has improved mechanical properties at elevated temperatures, the process comprising:a. Casting an article from an aluminum alloy having the following composition in weight percent: Silicon  6.0-25.0 Copper  5.0-8.0 Iron 0.05-1.2 Magnesium  0.5-1.5 Nickel 0.05-0.9 Manganese 0.05-1.2 Titanium 0.05-1.2 Zirconium 0.05-1.2 Vanadium 0.05-1.2 Zinc 0.05-0.9 Strontium 0.001-0.1  Phosphorus 0.001-0.1  Aluminum Balance;Wherein the silicon-to-magnesium (Si/Mg) ratio is 10-25, and the copper-to-magnesium (Cu/Mg) ratio is 4-15;b. Exposing the cast article to a solutionizing step by exposing the cast article to a temperature within the range of 900° F. to 1000° F., for a time period of fifteen minutes to four hours;followed by c. Aging the cast article at a temperature within the range of 400° F. to 500° F. for a time period within the range of four to 16 hours.
  3. 11
    A metal matrix composite comprising an aluminum alloy having the following composition in weight percent:Silicon  6.0-25.0 Copper  5.0-8.0 Iron 0.05-1.2 Magnesium  0.5-1.5 Nickel 0.05-0.9 Manganese 0.05-1.2 Titanium 0.05-1.2 Zirconium 0.05-1.2 Vanadium 0.05-1.2 Zinc 0.05-0.9 Strontium 0.001-0.1  Phosphorus 0.001-0.1  Aluminum Balance Wherein the silicon-to-magnesium (Si/Mg) ratio is 10-25, and the copper-to-magnesium (Cu/Mg) ratio is 4-15;the aluminum alloy comprising Al 3 X (X=Ti, V, Zr) compound particles with L1 2 crystal structure in an aluminum solid solution, and the aluminum alloy serving as a matrix containing up to about 60% by volume of a secondary filler material having a geometry selected from the group consisting of particles, whiskers, chopped fibers or continuous fibers.
  4. 13
    Broadest claimClaim Score 87, very broad(NHIP)An aluminum alloy having the following composition in weight percent:Silicon  6.0-25.0 Copper  5.0-8.0 Iron 0.05-1.2 Magnesium  0.5-1.5 Nickel 0.05-0.9 Manganese 0.05-1.2 Titanium 0.05-1.2 Zirconium 0.05-1.2 Vanadium 0.05-1.2 Zinc 0.05-0.9 Strontium 0.001-0.1  Phosphorus 0.001-0.1  Aluminum Balance wherein the silicon-to-magnesium (Si/Mg) ratio is 10-25, and the copper-to-magnesium (Cu/Mg) ratio is 4-15.