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    • 5. 发明授权
    • Aluminum base alloy containing boron and manufacturing method thereof
    • 含硼基铝合金及其制造方法
    • US07125515B2
    • 2006-10-24
    • US10413158
    • 2003-04-15
    • Yasuhiro ArugaKatsura KajiharaYasuaki Sugizaki
    • Yasuhiro ArugaKatsura KajiharaYasuaki Sugizaki
    • B22D30/00C22F1/04
    • C22C21/00C22C1/026C22C32/0073G21C19/40G21F1/08
    • A aluminum base alloy containing boron and manufacturing method thereof, said alloy exhibiting good mechanical properties (such as high-temperature strength and creep strength) over a long period of time and also having a neutron absorbing capacity owing to boron present therein in the form of a compound without segregation. The alloy contains 0.5–10 mass % of boron with an isotopic element satisfying a relation of 10B/(10B +11B)≦30%. said boron being present in the form of a boron compound which is 300 μm or below in size. The alloy is obtained by melting at a temperature in excess of 950° C. and cast at a temperature in the range of 800° C. to 950° C., in such a way that the molten metal is kept for 60–180° seconds until it cools from 950° C. to the casting temperature.
    • 一种含硼的铝基合金及其制造方法,所述合金长时间表现出良好的机械性能(如高温强度和蠕变强度),并且由于其中存在硼的形式的中子吸收能力 没有分离的化合物。 该合金含有0.5-10质量%的硼,其同位素元素满足关系为 10 B /( 10 B + 11 B) = 30%。 所述硼以硼化合物的形式存在,其尺寸为300μm或更小。 该合金通过在超过950℃的温度下熔融而获得,并且在800℃至950℃的温度范围内铸造,使得熔融金属保持在60-180℃ 秒,直到其从950℃冷却至铸造温度。
    • 10. 发明授权
    • A1-Mg-Si based alloy sheet
    • A1-Mg-Si基合金板
    • US06334916B1
    • 2002-01-01
    • US09569043
    • 2000-05-10
    • Katsushi MatsumotoYasuaki SugizakiMasahiro YanagawaYuichi Seki
    • Katsushi MatsumotoYasuaki SugizakiMasahiro YanagawaYuichi Seki
    • C22C2108
    • C22C21/06C22C21/02C22C21/08C22F1/05
    • The present invention provides an Al—Mg—Si based alloy sheet whose press-formability (particularly, deep-drawing formability, stretch-formability and bendability) is made higher than conventional Al—Mg—Si based alloy sheets of JIS 6000 series. For texture of the Al—Mg—Si based alloy sheet, orientation density of at least Cube orientation is controlled in accordance with a sort of press forming, so that press-formability improved to match with the press forming is provided. For example, to improve deep-drawing formability of an Al—Mg—Si based alloy sheet, the ratio of orientation density of Goss orientation to the orientation density of the Cube orientation (Goss/Cube) is set to 0.3 or less, and a grain size is set to 80 &mgr;m or less.
    • 本发明提供一种Al-Mg-Si系合金板,其压制成形性(特别是深冲成形性,拉伸成形性和弯曲性)比JIS 6000系列的常规Al-Mg-Si系合金板高。 对于Al-Mg-Si基合金板的织构,根据一种压制成型来控制至少Cube取向的取向密度,从而提高了冲压成形性以适应冲压成形。 例如,为了提高Al-Mg-Si系合金板的深冲压成形性,将高斯取向的取向密度与立方体取向(Goss / Cube)的取向密度的比例设定为0.3以下, 粒径设定为80μm以下。