Magnesium alloy material and production process thereof
    3.
    发明授权
    Magnesium alloy material and production process thereof 有权
    镁合金材料及其生产工艺

    公开(公告)号:US09562277B2

    公开(公告)日:2017-02-07

    申请号:US11943207

    申请日:2007-11-20

    IPC分类号: C22C23/04 C22C23/06 C22F1/06

    CPC分类号: C22C23/06 C22C23/04 C22F1/06

    摘要: The present invention provides a magnesium alloy material, having superior mechanical properties without using special production equipment or processes, and a production process thereof. The magnesium alloy material of the present invention composed of an Mg—Zn—RE alloy comprises essential components in the form of 0.5 to 3 atomic percent of Zn and 1 to 5 atomic percent of RE, with the remainder comprising Mg and unavoidable impurities. The Mg—Zn—RE alloy has a lamellar phase formed from a long period stacking ordered structure and α-Mg in the alloy structure thereof. The long period stacking ordered structure has at least one of a curved portion and a bent portion and has a divided portion in at least a portion thereof. Finely granulated α-Mg having a mean particle diameter of 2 μm or less is formed in the divided portion.

    摘要翻译: 本发明提供一种在不使用特殊的生产设备或方法的情况下具有优异的机械性能的镁合金材料及其制造方法。 由Mg-Zn-RE合金构成的本发明的镁合金材料包含0.5〜3原子%的Zn和1〜5原子%的RE的必需成分,其余为Mg和不可避免的杂质。 Mg-Zn-RE合金在其合金结构中具有由长周期堆积有序结构形成的层状相和α-Mg。 长周期层叠结构具有弯曲部分和弯曲部分中的至少一个,并且在其至少一部分中具有分割部分。 在分割部分中形成平均粒径为2μm以下的细粒状的α-Mg。

    MAGNESIUM ALLOY MATERIAL AND METHOD FOR MANUFACTURING THE SAME
    4.
    发明申请
    MAGNESIUM ALLOY MATERIAL AND METHOD FOR MANUFACTURING THE SAME 审中-公开
    镁合金材料及其制造方法

    公开(公告)号:US20100061882A1

    公开(公告)日:2010-03-11

    申请号:US12517134

    申请日:2007-11-27

    IPC分类号: C22C23/06 C22C23/04 B22D23/00

    CPC分类号: C22F1/00 C22C23/06 C22F1/06

    摘要: Disclosed is a magnesium alloy material which can be produced without the need of employing any specialized production facility or process and has excellent mechanical properties, particularly high elongation. Also disclosed is a process for producing the magnesium alloy material. The magnesium alloy material comprises a Mg—Gd—Zn alloy comprising 1 to 5 mass % of Zn and 5 to 15 mass % of Gd as essential ingredients, with the remainder being Mg and unavoidable impurities, wherein the Mg—Gd—Zn alloy has a long period stacking structure in its alloy structure and also has Mg3Gd and/or Mg3Zn3Gd2. The process for producing the magnesium alloy material comprises a melting/casting step and a forging processing step for subjecting the casted material to a hot forging processing at a predetermined processing rate.

    摘要翻译: 公开了一种镁合金材料,其可以在不需要使用任何专门的生产设备或方法的情况下生产并且具有优异的机械性能,特别是高的伸长率。 还公开了一种用于生产镁合金材料的方法。 镁合金材料包括Mg-Gd-Zn合金,其包含1至5质量%的Zn和5至15质量%的Gd作为必要成分,其余为Mg和不可避免的杂质,其中Mg-Gd-Zn合金具有 其合金结构长周期堆叠结构,并具有Mg3Gd和/或Mg3Zn3Gd2。 制造镁合金材料的方法包括熔融/铸造步骤和锻造加工步骤,用于以预定的加工速率对铸造材料进行热锻造加工。

    MAGNESIUM ALLOY MATERIAL AND METHOD FOR MANUFACTURING THE SAME
    5.
    发明申请
    MAGNESIUM ALLOY MATERIAL AND METHOD FOR MANUFACTURING THE SAME 审中-公开
    镁合金材料及其制造方法

    公开(公告)号:US20100206438A1

    公开(公告)日:2010-08-19

    申请号:US12678516

    申请日:2008-09-18

    IPC分类号: C22F1/06 C22C23/06 C21D11/00

    摘要: The present invention provides a magnesium alloy material excellent in mechanical properties without using specific manufacturing facilities and processes and a method of manufacturing the same. The magnesium alloy material is an Mg—Zn—RE alloy containing, as an essential component, Zn and at least one of Gd, Tb, and Tm as RE, and of the rest including Mg and unavoidable impurities, and has stacking faults of a thickened two-atomic layer of Zn and RE in the alloy structure of the Mg—Zn—RE alloy. A method of manufacturing a magnesium alloy material involves a casting step, a solution treatment step, and a heat treatment step and the heat treatment step is carried out in a condition satisfying −14.58 [ln(x)]+532.32

    摘要翻译: 本发明提供一种在不使用特定制造设备和方法的情况下机械性能优异的镁合金材料及其制造方法。 镁合金材料是含有作为主要成分的Zn和作为RE的Gd,Tb,Tm中的至少一种的Mg-Zn-RE合金,其余的包括Mg和不可避免的杂质,并且具有 在Mg-Zn-RE合金的合金结构中增加了Zn和RE的两原子层。 制造镁合金材料的方法包括铸造步骤,溶液处理步骤和热处理步骤,并且热处理步骤在满足-14.58 [ln(x)] + 532.32