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    • 7. 发明授权
    • Aluminum alloy product having improved combinations of strength and
corrosion resistance properties and method for producing the same
    • 具有改进的强度和耐腐蚀性能的组合的铝合金产品及其制造方法
    • US4863528A
    • 1989-09-05
    • US99445
    • 1987-09-21
    • Melvin H. BrownJames T. StaleyJohn LiuSootae Lee
    • Melvin H. BrownJames T. StaleyJohn LiuSootae Lee
    • C22F1/053
    • C22F1/053
    • There is disclosed a method for producing an aluminum alloy product and the resulting product having improved combinations of strength and corrosion resistance. The method includes providing an alloy consisting essentially of about 6-16% zinc, about 1.5-4.5% magnesium, about 1-3% cooper, one or more elements selected from zirconium, chromium, manganese, titanium, vanadium and hafnium, the total of said elements not exceeding about 1%, the balance aluminum and incidental impurities. The alloy is then solution heat treated; precipitation hardened to increase its strength to a level exceeding the as-solution heat treated strength level by at least about 30% of the difference between as-solution heat treated strength and peak strength; subjected to treatment at a sufficient temperature or temperatures for improving its corrosion resistance properties; and again precipitation hardened to raise its yield strength and produce a high strength, highly corrosion resistant alloy product.
    • 公开了一种生产铝合金产品的方法,所得到的产品具有改善的强度和耐腐蚀性的组合。 该方法包括提供基本上由约6-16%的锌,约1.5-4.5%的镁,约1-3%的铜,一种或多种选自锆,铬,锰,钛,钒和铪的元素组成的合金,总计 的元素不超过约1%,余量为铝和杂质。 然后将该合金进行固溶热处理; 沉淀硬化以将其强度提高到超过溶液热处理强度水平的至少约30%的溶液热处理强度和峰强度之间的差异; 在足够的温度或温度下进行处理以改善其耐腐蚀性; 再次沉淀硬化以提高其屈服强度,并产生高强度,高耐蚀合金产品。