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    • 1. 发明申请
    • ALUMINUM ALLOY MATERIAL FOR HIGH-TEMPERATURE/HIGH-SPEED MOLDING, METHOD OF PRODUCING THE SAME, AND METHOD OF PRODUCING A MOLDED ARTICLE OF AN ALUMINUM ALLOY
    • 用于高温/高速成型的铝合金材料及其制造方法以及生产铝合金制品的方法
    • US20080257462A1
    • 2008-10-23
    • US12171380
    • 2008-07-11
    • Koji ICHITANITsutomu TAGATAToshio KOMATSUBARAKen TAKATA
    • Koji ICHITANITsutomu TAGATAToshio KOMATSUBARAKen TAKATA
    • C22F1/047C22C21/08
    • C22C21/08B29C2049/4605C22C21/06C22F1/047
    • An aluminum alloy material for high-temperature/high-speed molding containing 2.0 to 8.0 mass % of Mg, 0.05 to 1.0 mass % of Mn, 0.01 to 0.3 mass % of Zr, 0.06 to 0.4 mass % of Si and 0.06 to 0.4 mass % of Fe, with the balance being made of aluminum and inevitable impurities; an aluminum alloy material for high-temperature/high-speed molding containing 2.0 to 8.0% of Mg, 0.05 to 1.5% of Mn and 0.05 to 0.4% of Cr, Fe being restricted to 0.4% or less and Si being restricted to 0.4% or less, the grain diameter of a Cr-base intermetallic compound formed by melt-casting being 20 μm or less, and grains of intermetallic compounds with a grain diameter in the range from 50 to 1,000 nm as Mn-base and Cr-base precipitates being present in a distribution density of 350,000 grains/mm2 or more, the aluminum alloy material being used for high-temperature/high-speed molding by subjecting the alloy material to cooling at a cooling rate of 20° C./min or more immediately after molding at a temperature range from 200 to 550° C. and at a strain rate from 10−2 to 10/sec; and a method of producing the aluminum alloy material.
    • 含有2.0〜8.0质量%的Mg,0.05〜1.0质量%的Mn,0.01〜0.3质量%的Zr,0.06〜0.4质量%的Si和0.06〜0.4质量%的用于高温/高速成型的铝合金材料 %的Fe,余量由铝和不可避免的杂质制成; 含有Mg:2.0〜8.0%,Mn:0.05〜1.5%,Cr:0.05〜0.4%的高温高速成型用铝合金材料,Fe:0.4%以下,Si:0.4% 通过熔融浇铸形成的Cr基金属间化合物的粒径为20μm以下,作为Mn基和Cr基析出物,粒径为50〜1000nm的金属间化合物的粒子以下 以350,000粒/ mm 2以上的分布密度存在,铝合金材料通过使合金材料以20的冷却速度进行冷却而用于高温/高速成型 在200至550℃的温度范围内和在10 -2至10 /秒的应变速率下立即进行成型之后, 以及铝合金材料的制造方法。
    • 8. 发明授权
    • Rolled aluminum alloy adapted for superplastic forming and method for
making
    • 适用于超塑性成型的轧制铝合金及其制造方法
    • US5181969A
    • 1993-01-26
    • US711308
    • 1991-06-06
    • Toshio KomatsubaraTsutomu TagataMamoru Matsuo
    • Toshio KomatsubaraTsutomu TagataMamoru Matsuo
    • C22C21/00C22C21/06C22F1/047C25D11/14
    • C22F1/047C22C21/06Y10S420/902
    • Provided is a superplastic forming aluminum alloy in rolled form which exhibits superplasticity and has improved corrosion resistance, weldability, and strength and fatigue property after superplastic forming, eliminating a need for heat treatment after superplastic forming. Preferred alloys have an excellent outer appearance of grey to black color after anodization. The alloy consists essentially of, in % by weight, 2.0-8.0% of Mg, 0.3-1.5% of Mn, 0.0001-0.01% of Be, an optional element selected from C, V, and Zr, an optional grain refining agent of Ti or Ti and B, less than 0.2% of Fe and less than 0.1% of Si as impurities, and the balance of Al, wherein intermetallic compounds have a size of up to 20 .mu.m, and the content of hydrogen present is up to 0.35 cc/100 grams. Particularly when a minor amount of Ti or Ti and B grain refining agent is contained, Mn precipitates have a size of 0.05 .mu.m or larger, and the Si content in entire precipitates is less than 0.07% of the total rolled alloy weight, the rolled alloy is grey or black on the anodized surface.
    • 提供了一种超塑性成形铝合金,其具有超塑性,并且具有改善的耐腐蚀性,焊接性,超塑性成形后的强度和疲劳性能,消除了在超塑性成型后的热处理需要。 优选的合金在阳极氧化后具有优异的灰色至黑色外观。 该合金基本上以重量%计,2.0-8.0%的Mg,0.3-1.5%的Mn,0.0001-0.01%的Be,一种选自C,V和Zr的任选元素,任选的晶粒细化剂 Ti或Ti和B,少于0.2%的Fe和小于0.1%的Si作为杂质,余量为Al,其中金属间化合物的尺寸高达20微米,并且存在的氢的含量高达 0.35 cc / 100克。 特别是当含有少量的Ti或Ti和B晶粒细化剂时,Mn析出物的尺寸为0.05μm或更大,并且整个沉淀物中的Si含量小于总轧制合金重量的0.07%,轧制 阳极氧化表面上的合金为灰色或黑色。
    • 9. 发明授权
    • Aluminum alloy material for high-temperature/high-speed molding, method of producing the same, and method of producing a molded article of an aluminum alloy
    • 用于高温/高速成型的铝合金材料及其制造方法以及铝合金模制品的制造方法
    • US08500926B2
    • 2013-08-06
    • US12171380
    • 2008-07-11
    • Koji IchitaniTsutomu TagataToshio KomatsubaraKen Takata
    • Koji IchitaniTsutomu TagataToshio KomatsubaraKen Takata
    • C22F1/047C22C21/08
    • C22C21/08B29C2049/4605C22C21/06C22F1/047
    • An aluminum alloy material for high-temperature/high-speed molding containing 2.0 to 8.0 mass % of Mg, 0.05 to 1.0 mass % of Mn, 0.01 to 0.3 mass % of Zr, 0.06 to 0.4 mass % of Si and 0.06 to 0.4 mass % of Fe, with the balance being made of aluminum and inevitable impurities; an aluminum alloy material for high-temperature/high-speed molding containing 2.0 to 8.0% of Mg, 0.05 to 1.5% of Mn and 0.05 to 0.4% of Cr, Fe being restricted to 0.4% or less and Si being restricted to 0.4% or less, the grain diameter of a Cr-base intermetallic compound formed by melt-casting being 20 μm or less, and grains of intermetallic compounds with a grain diameter in the range from 50 to 1,000 nm as Mn-base and Cr-base precipitates being present in a distribution density of 350,000 grains/mm2 or more, the aluminum alloy material being used for high-temperature/high-speed molding by subjecting the alloy material to cooling at a cooling rate of 20° C./min or more immediately after molding at a temperature range from 200 to 550° C. and at a strain rate from 10−2 to 10/sec; and a method of producing the aluminum alloy material.
    • 含有2.0〜8.0质量%的Mg,0.05〜1.0质量%的Mn,0.01〜0.3质量%的Zr,0.06〜0.4质量%的Si和0.06〜0.4质量%的用于高温/高速成型的铝合金材料 %的Fe,余量由铝和不可避免的杂质制成; 含有Mg:2.0〜8.0%,Mn:0.05〜1.5%,Cr:0.05〜0.4%的高温高速成型用铝合金材料,Fe:0.4%以下,Si:0.4% 通过熔融浇铸形成的Cr基金属间化合物的粒径为20μm以下,作为Mn基和Cr基析出物,粒径为50〜1000nm的金属间化合物的粒子以下 以350,000粒/ mm2以上的分布密度存在,铝合金材料通过使合金材料以20℃/分钟以上的冷却速度立即冷却而被用于高温/高速成型 在200至550℃的温度范围和10-2至10 /秒的应变速率下成型后, 以及铝合金材料的制造方法。