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    • 9. 发明申请
    • ALUMINUM ALLOY SHEET WITH EXCELLENT HIGH-TEMPERATURE PROPERTY FOR BOTTLE CAN
    • 铝合金板材,具有出色的高温特性
    • US20090053099A1
    • 2009-02-26
    • US11909665
    • 2006-03-07
    • Katsura KajiharaKiyohito TsurudaYasuhiro Aruga
    • Katsura KajiharaKiyohito TsurudaYasuhiro Aruga
    • C22C21/08
    • C22C21/08C22C21/00
    • An aluminum alloy sheet for bottle cans superior in high-temperature properties and capable of preventing thermal deformation thereof in coating and heat treatment and securing can strength after the heat treatment. The aluminum alloy sheet has the following composition: Mn 0.7-1.5%, Mg 0.8-1.7%, Fe 0.1-0.7%, Si 0.05-0.5%, Cu 0.1-0.6%, with the remainder being Al and inevitable impurities, and has a crystal structure elongated in a rolling direction and with an aspect ratio of crystal grains of 3 or more as determined through an examination from above of a part located at the center in the through-thickness direction. In the sheet, the amount of solute Cu is 0.05-0.3%, which means the amount of Cu in a solution separated from a precipitate exceeding 0.2 m in particle size by the extracted residue method using hot phenol, and the amount of solute Mg is 0.75-1.6%, which means the amount of solute Mg separated from a precipitate exceeding 0.2 m in particle size by the extracted residue method using hot phenol. The aluminum alloy sheet can have improved high-temperature properties without impairing its formability.
    • 一种用于高温性能优异且能够防止其热涂覆和热处理和固化的热变形的瓶罐用铝合金板,可以在热处理后具有强度。 铝合金板具有以下组成:Mn 0.7-1.5%,Mg 0.8-1.7%,Fe 0.1-0.7%,Si 0.05-0.5%,Cu 0.1-0.6%,其余为Al和不可避免的杂质,并具有 通过从位于贯穿厚度方向的中心的部分的上方检查确定的,在轧制方向上延伸的晶体结构和晶粒的纵横比为3以上。 在片材中,溶质Cu的量为0.05〜0.3%,这意味着通过使用热苯酚的提取残渣法从沉淀超过0.2μm的析出物中分离出的溶液中的Cu的量,溶质Mg的量为 0.75-1.6%,这意味着通过使用热苯酚的提取残留方法从沉淀超过0.2μm的沉淀物中分离出的溶质Mg的量。 铝合金板可以具有改善的高温性能而不损害其成形性。
    • 10. 发明授权
    • Copper alloy having excellent stress relaxation property
    • 铜合金具有优异的应力松弛性能
    • US08641837B2
    • 2014-02-04
    • US11469648
    • 2006-09-01
    • Yasuhiro ArugaKatsura Kajihara
    • Yasuhiro ArugaKatsura Kajihara
    • C22C9/06
    • C22C9/02C22C9/06C22F1/08
    • A Cu—Ni—Sn—P alloy is provided, which is excellent in stress relaxation property in a direction perpendicular to a rolling direction, and has any of high strength, high conductivity, and excellent bendability. A copper alloy contains 0.1 to 3.0% of Ni, 0.1 to 3.0% of Sn, and 0.01 to 0.3% of P in mass percent respectively, and includes copper and inevitable impurities as the remainder; wherein in a radial distribution function around a Ni atom according to a XAFS analysis method, a first peak position is within a range of 2.16 to 2.35 Å, the position indicating a distance between a Ni atom in Cu and an atom nearest to the Ni atom. Thus, distances to atoms around the Ni atom in Cu are comparatively increased, so that the stress relaxation property in a direction perpendicular to the rolling direction of the copper alloy is improved.
    • 提供了一种Cu-Ni-Sn-P合金,其在与轧制方向垂直的方向上的应力松弛性优异,并且具有高强度,高导电性和优异的弯曲性。 铜合金分别含有0.1〜3.0%的Ni,0.1〜3.0%的Sn和0.01〜0.3%的P,以及其余的铜和不可避免的杂质; 其中,根据XAFS分析方法在围绕Ni原子的径向分布函数中,第一峰位置在2.16〜2.35的范围内,该位置表示Cu中的Ni原子和最接近Ni原子的原子之间的距离 。 因此,Cu中的Ni原子周围的原子的距离相对增加,从而提高了与铜合金的轧制方向垂直的方向上的应力松弛性。