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    • 2. 发明申请
    • Mg-BASE ALLOY
    • 镁基合金
    • US20110315282A1
    • 2011-12-29
    • US13144993
    • 2010-01-19
    • Hidetoshi SomekawaYoshiaki OsawaAlok SinghToshiji Mukai
    • Hidetoshi SomekawaYoshiaki OsawaAlok SinghToshiji Mukai
    • C22F1/06C22C23/04C22C23/02
    • C22F1/06C22C23/02C22C23/04
    • The quasicrystal phase and/or quasicrystal-like phase particles, which is composed of the Mg—Zn—Al, are dispersed into Mg-base alloy material for strain working. The microstructure in this material does not include the dendrite structure, and the size of the magnesium matrix is 40 μm or less than 40 μm. The present invention shows that the quasicrystal phase and/or quasicrystal-like phase is able to form by addition of the Zn and Al elements except for the use of rare earth elements. In addition, the excellent trade-off-balancing between strength and ductility and reduction of the yield anisotropy, which are the serious issues for the wrought processed magnesium alloys, is able to obtain by the microstructure controls before the strain working process.
    • 由Mg-Zn-Al组成的准晶相和/或准晶相状分散在用于应变加工的Mg基合金材料中。 该材料中的微结构不包括枝晶结构,镁基体的尺寸为40μm以下,40μm以下。 本发明表明,除了使用稀土元素之外,通过添加Zn和Al元素可以形成准晶相和/或准晶相。 另外,锻造加工镁合金的严重问题是强度和延展性之间优异的权衡平衡和屈服各向异性的降低,能够在应变工作过程之前通过微结构控制获得。
    • 5. 发明授权
    • Mg-base alloy
    • 镁基合金
    • US09347123B2
    • 2016-05-24
    • US13144993
    • 2010-01-19
    • Hidetoshi SomekawaYoshiaki OsawaAlok SinghToshiji Mukai
    • Hidetoshi SomekawaYoshiaki OsawaAlok SinghToshiji Mukai
    • C22C23/04C22F1/06C22C23/02
    • C22F1/06C22C23/02C22C23/04
    • The quasicrystal phase and/or quasicrystal-like phase particles, which is composed of the Mg—Zn—Al, are dispersed into Mg-base alloy material for strain working. The microstructure in this material does not include the dendrite structure, and the size of the magnesium matrix is 40 μm or less than 40 μm. The present invention shows that the quasicrystal phase and/or quasicrystal-like phase is able to form by addition of the Zn and Al elements except for the use of rare earth elements. In addition, the excellent trade-off-balancing between strength and ductility and reduction of the yield anisotropy, which are the serious issues for the wrought processed magnesium alloys, is able to obtain by the microstructure controls before the strain working process.
    • 由Mg-Zn-Al组成的准晶相和/或准晶相状分散在用于应变加工的Mg基合金材料中。 该材料中的微结构不包括枝晶结构,镁基体的尺寸为40μm以下,40μm以下。 本发明表明,除了使用稀土元素之外,通过添加Zn和Al元素可以形成准晶相和/或准晶相。 另外,锻造加工镁合金的严重问题是强度和延展性之间优异的权衡平衡和屈服各向异性的降低,能够在应变工作过程之前通过微结构控制获得。