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    • 1. 发明申请
    • A1-BASED ALLOY SPUTTERING TARGET
    • 基于A1的合金喷射目标
    • US20120325655A1
    • 2012-12-27
    • US13581436
    • 2011-02-25
    • Yuki IwasakiKatsushi MatsumotoToshiaki TakagiMamoru NagaoHidetada Makino
    • Yuki IwasakiKatsushi MatsumotoToshiaki TakagiMamoru NagaoHidetada Makino
    • C23C14/34
    • C23C14/3414C22C21/00
    • The present invention provides a technique capable of suppressing generation of splash even at high-speed deposition by an Al-based alloy sputtering target containing Ni and a rare earth element, wherein when crystallographic orientations , , , and in a normal direction of each sputtering surface at a surface part of the Al-based alloy sputtering target, a ¼×t (t: thickness of the Al-based alloy sputtering target) part thereof and a ½×t part thereof are observed by an electron backscatter diffraction pattern method, the Al-based alloy sputtering target satisfies the requirement (1) that, when a total of area fractions of the ±15°, ±15° and ±15° is defined as R (as for Rat each part, the R at the surface part is defined as Ra, the R at the ¼×t part is defined as Rb, and the R at the ½×t part is defined as Rc), R is 0.35 or more and 0.80 or less; and the requirement (2) that each of the Ra, the Rb and the Rc falls in the range of ±20% of an average R value [Rave=(Ra+Rb+Rc)/3].
    • 本发明提供一种能够通过含有Ni和稀土元素的Al系合金溅射靶在高速沉积时抑制飞溅的技术,其中当晶体取向<001>,<011>,<111>时, 在Al基合金溅射靶的表面部分的每个溅射表面的法线方向上,¼×t(t:Al基合金溅射靶的厚度)部分和½ 通过电子背散射衍射图法观察其×t部分,Al系合金溅射靶满足以下要求(1):当<001>±15°,<011>±15°的面积分数 并且<112>±15°被定义为R(对于大鼠每个部分,表面部分的R定义为Ra,¼×t部分的R定义为Rb,R在½×t 部分定义为Rc),R为0.35以上至0.80以下; 以及R a,R b和R c中的每一个落在平均R值[Rave =(Ra + Rb + Rc)/ 3]的±20%的范围内的要求(2)。
    • 2. 发明申请
    • MAGNESIUM ALLOY AND PROCESS FOR PRODUCING THE SAME
    • 镁合金及其制造方法
    • US20110017367A1
    • 2011-01-27
    • US12934090
    • 2009-03-30
    • Toshiaki TakagiMamoru Nagao
    • Toshiaki TakagiMamoru Nagao
    • C22C23/06
    • C22F1/06C22C23/06
    • A magnesium alloy having excellent strength and elongation at high temperatures and further having excellent creep characteristics at high temperatures. Also provided is a process for producing the alloy. In producing the magnesium alloy, a magnesium alloy containing yttrium and samarium in respective specific amounts is cast and the resultant cast is subjected to a solution heat treatment, subsequently hot working, and then an aging treatment, thereby reducing the average crystal grain diameter of the structure. In addition, the amounts of the yttrium and samarium in solution in the magnesium matrix are balanced with the number of precipitate particles of a specific size in the crystal grains. The magnesium alloy thus obtained has excellent strength and elongation at high temperatures and further having excellent creep characteristics at high temperatures.
    • 镁合金在高温下具有优异的强度和伸长率,并且在高温下还具有优异的蠕变特性。 还提供了一种用于生产合金的方法。 在制造镁合金时,铸造含有特定量的钇和钐的镁合金,然后对所得铸件进行固溶热处理,随后进行热加工,然后进行时效处理,从而降低了平均晶粒直径 结构体。 此外,镁基质中溶液中的钇和钐的量与晶粒中特定尺寸的沉淀颗粒的数量平衡。 由此获得的镁合金在高温下具有优异的强度和伸长率,并且在高温下还具有优异的蠕变特性。
    • 4. 发明授权
    • Magnesium alloy and process for producing the same
    • 镁合金及其制造方法
    • US08329094B2
    • 2012-12-11
    • US12934090
    • 2009-03-30
    • Toshiaki TakagiMamoru Nagao
    • Toshiaki TakagiMamoru Nagao
    • C22C23/06C22C14/00C22C23/00
    • C22F1/06C22C23/06
    • A magnesium alloy having excellent strength and elongation at high temperatures and further having excellent creep characteristics at high temperatures. Also provided is a process for producing the alloy. In producing the magnesium alloy, a magnesium alloy containing yttrium and samarium in respective specific amounts is cast and the resultant cast is subjected to a solution heat treatment, subsequently hot working, and then an aging treatment, thereby reducing the average crystal grain diameter of the structure. In addition, the amounts of the yttrium and samarium in solution in the magnesium matrix are balanced with the number of precipitate particles of a specific size in the crystal grains. The magnesium alloy thus obtained has excellent strength and elongation at high temperatures and further having excellent creep characteristics at high temperatures.
    • 镁合金在高温下具有优异的强度和伸长率,并且在高温下还具有优异的蠕变特性。 还提供了一种用于生产合金的方法。 在制造镁合金时,铸造含有特定量的钇和钐的镁合金,然后对所得铸件进行固溶热处理,随后进行热加工,然后进行时效处理,从而降低了平均晶粒直径 结构体。 此外,镁基质中的溶液中的钇和钐的量与晶粒中特定尺寸的沉淀颗粒的数量平衡。 由此获得的镁合金在高温下具有优异的强度和伸长率,并且在高温下还具有优异的蠕变特性。