Copper alloy foil, flexible printed circuit board using the same, and method for producing copper alloy foil
    71.
    发明授权
    Copper alloy foil, flexible printed circuit board using the same, and method for producing copper alloy foil 有权
    铜合金箔,使用其的柔性印刷电路板以及铜合金箔的制造方法

    公开(公告)号:US09210805B2

    公开(公告)日:2015-12-08

    申请号:US13391847

    申请日:2010-09-13

    摘要: The zirconium content of the alloy composition of a copper alloy foil of the present invention is 3.0 to 7.0 atomic percent, and the copper alloy foil includes copper matrix phases and composite phases composed of copper-zirconium compound phases and copper phases. As shown in FIG. 1, the copper matrix phases and the composite phases form a matrix phase-composite phase layered structure and are arranged alternately parallel to a rolling direction as viewed in a cross-section perpendicular to the width direction. In addition, the copper-zirconium compound phases and the copper phases in the composite phases form a composite phase inner layered structure and are arranged alternately parallel to the rolling direction at a phase pitch of 50 nm or less as viewed in the above cross-section. This double layered structure presumably makes the copper alloy foil densely layered to provide a strengthening mechanism similar to multilayer reinforced composite materials.

    摘要翻译: 本发明的铜合金箔的合金组成的锆含量为3.0〜7.0原子%,铜合金箔包括铜基体相和由铜 - 锆化合物相和铜相组成的复合相。 如图所示。 如图1所示,铜基体相和复合相形成矩阵相复合相层叠结构,并且在垂直于宽度方向的截面中观察时交替平行于轧制方向排列。 此外,复合相中的铜 - 锆化合物相和铜相形成复合相内部层状结构,并且在上述横截面中观察到的相位间距为50nm以下的交替平行于轧制方向配置 。 这种双层结构可能使铜合金箔密集地层叠以提供类似于多层增强复合材料的强化机理。

    Sputtering target and method for production thereof
    72.
    发明授权
    Sputtering target and method for production thereof 有权
    溅射靶材及其制造方法

    公开(公告)号:US08430978B2

    公开(公告)日:2013-04-30

    申请号:US10566116

    申请日:2004-07-14

    IPC分类号: C22C45/00

    摘要: A sintered sputtering target having a structure where the average crystallize size is 1 nm to 50 nm and preferably comprises an alloy having a three-component system or greater containing, as its primary component, at least one element selected from among Zr, Pd, Cu, Co, Fe, Ti, Mg, Sr, Y, Nb, Mo, Tc, Ru, Rh, Ag, Cd, In, Sn, Sb, Te and a rare earth metal. This target is manufactured by sintering atomized powder. Thereby provided is a high density target having an extremely fine and uniform structure manufactured with the sintering method, in place of a conventional bulk metal glass produced by the quenching of a molten metal, which has a coarse crystal structure and requires a high cost for its production.

    摘要翻译: 具有平均结晶尺寸为1nm〜50nm的结构的烧结溅射靶,优选包含含有选自Zr,Pd,Cu中的至少一种元素作为其主要成分的具有三成分以上的三成分体系以上的合金 ,Co,Fe,Ti,Mg,Sr,Y,Nb,Mo,Tc,Ru,Rh,Ag,Cd,In,Sn,Sb,Te和稀土金属。 该目标通过烧结雾化粉末制造。 由此提供了通过烧结方法制造的具有非常细小而均匀结构的高密度靶材,代替了通过熔融金属淬火制备的常规体积金属玻璃,该熔融金属具有粗晶体结构并且需要高成本 生产。

    METAL MEMBER MANUFACTURING METHOD AND METAL MEMBER
    73.
    发明申请
    METAL MEMBER MANUFACTURING METHOD AND METAL MEMBER 有权
    金属会员制造方法和金属会员

    公开(公告)号:US20120295129A1

    公开(公告)日:2012-11-22

    申请号:US13574854

    申请日:2010-10-22

    IPC分类号: C23F1/00

    摘要: A metallic material containing both a second constituent and a third constituent having positive and negative heats of mixing relative to a first constituent, respectively, and including a compound, an alloy or a nonequilibrium alloy having a melting point that is higher than the solidifying point of a metal bath made of the first constituent is placed in the metal bath. The metal bath is controlled to a temperature lower than a minimum value of a liquidus temperature within a range of compositional variations in which the amount of the third constituent in the metallic material decreases down to a point where the metallic material becomes substantially the second constituent so that the third constituent is selectively dissolved into the metal bath.

    摘要翻译: 一种含有第二成分和第三成分的金属材料,分别具有相对于第一成分的正和负的混合热,并且包括熔点高于凝固点的化合物,合金或非平衡合金 将由第一成分制成的金属浴放置在金属浴中。 将金属浴控制在低于液相线温度的最小值的温度范围内,其中金属材料中的第三成分的量减少到金属材料基本上变成第二成分的程度 第三组分选择性地溶解到金属浴中。

    COPPER ALLOY FOIL, FLEXIBLE PRINTED CIRCUIT BOARD USING THE SAME, AND METHOD FOR PRODUCING COPPER ALLOY FOIL
    74.
    发明申请
    COPPER ALLOY FOIL, FLEXIBLE PRINTED CIRCUIT BOARD USING THE SAME, AND METHOD FOR PRODUCING COPPER ALLOY FOIL 有权
    铜合金箔,使用其的柔性印刷电路板以及生产铜合金箔的方法

    公开(公告)号:US20120145438A1

    公开(公告)日:2012-06-14

    申请号:US13391847

    申请日:2010-09-13

    摘要: The zirconium content of the alloy composition of a copper alloy foil of the present invention is 3.0 to 7.0 atomic percent, and the copper alloy foil includes copper matrix phases and composite phases composed of copper-zirconium compound phases and copper phases. As shown in FIG. 1, the copper matrix phases and the composite phases form a matrix phase-composite phase layered structure and are arranged alternately parallel to a rolling direction as viewed in a cross-section perpendicular to the width direction. In addition, the copper-zirconium compound phases and the copper phases in the composite phases form a composite phase inner layered structure and are arranged alternately parallel to the rolling direction at a phase pitch of 50 nm or less as viewed in the above cross-section. This double layered structure presumably makes the copper alloy foil densely layered to provide a strengthening mechanism similar to multilayer reinforced composite materials.

    摘要翻译: 本发明的铜合金箔的合金组成的锆含量为3.0〜7.0原子%,铜合金箔包括铜基体相和由铜 - 锆化合物相和铜相组成的复合相。 如图所示。 如图1所示,铜基体相和复合相形成矩阵相复合相层状结构,并且在与宽度方向垂直的截面中观察时交替平行于轧制方向排列。 此外,复合相中的铜 - 锆化合物相和铜相形成复合相内部层状结构,并且在上述横截面中观察到的相位间距为50nm以下的交替平行于轧制方向配置 。 这种双层结构可能使铜合金箔密集地层叠以提供类似于多层增强复合材料的强化机理。

    Aluminum base alloy
    76.
    发明授权
    Aluminum base alloy 失效
    铝基合金

    公开(公告)号:US07901521B2

    公开(公告)日:2011-03-08

    申请号:US12057985

    申请日:2008-03-28

    IPC分类号: C22C45/08

    CPC分类号: C22C45/08

    摘要: An aluminum base alloy is produced by supercooling a molten alloy composed mainly of aluminum. The molten alloy contains an element capable of forming a quasicrystalline phase, an element which aids formation of the quasicrystals, and an element which stabilizes a supercooled state of the molten alloy and delays crystallization of a crystalline phase, and is composed of a mixed composition of a fine amorphous phase and an aluminum crystalline phase or an aluminum supersaturated solid solution phase, or a single phase of only an amorphous phase.

    摘要翻译: 铝基合金是通过过冷化由铝构成的熔融合金制成的。 熔融合金含有能够形成准晶相的元素,有助于形成准晶体的元素,以及稳定熔融合金的过冷状态并延迟晶相结晶的元素,并且由以下组成: 精细的非晶相和铝结晶相或铝过饱和固溶相,或仅为非晶相的单相。

    Cu-base amorphous alloy
    78.
    发明申请
    Cu-base amorphous alloy 失效
    铜基非晶合金

    公开(公告)号:US20090078342A1

    公开(公告)日:2009-03-26

    申请号:US12292723

    申请日:2008-11-25

    IPC分类号: C22F1/08 C22F1/00

    CPC分类号: C22C45/001 C22C1/002

    摘要: The present invention provides Cu-base amorphous alloys comprising an amorphous phase of 90% or more by volume fraction. The amorphous phase has a composition represented by the formula: Cu100-a-b(Zr+Hf)aTib or Cu100-a-b-c-d(Zr+Hf)aTibMcTd, wherein M is one or more elements selected from the group consisting of Fe, Cr, Mn, Ni, Co, Nb, Mo, W, Sn, Al, Ta and rare earth elements, T is one or more elements selected from the group consisting of Ag, Pd, Pt and Au, and a, b, c and d are atomic percentages falling within the following ranges: 5

    摘要翻译: 本发明提供了包含90体积%或更多体积分数的无定形相的Cu基非晶态合金。 非晶相具有由下式表示的组成:Cu100-ab(Zr + Hf)aTib或Cu100-abcd(Zr + Hf)aTibMcTd,其中M是一种或多种选自Fe,Cr,Mn, Ni,Co,Nb,Mo,W,Sn,Al,Ta和稀土元素,T是选自Ag,Pd,Pt和Au中的一种或多种元素,a,b,c和d是原子 百分比落在以下范围内:5

    Cu-base amorphous alloy
    80.
    发明授权
    Cu-base amorphous alloy 失效
    铜基非晶合金

    公开(公告)号:US07399370B2

    公开(公告)日:2008-07-15

    申请号:US10525738

    申请日:2003-06-12

    IPC分类号: C22C45/00

    CPC分类号: C22C45/001 C22C1/002

    摘要: To provide a Cu-based amorphous alloy having a glass-forming ability higher than that of a Cu—Zr—Ti amorphous alloy and a Cu—Hf—Ti amorphous alloy, as well as excellent workability and excellent mechanical properties without containing large amounts of Ti.A Cu-based amorphous alloy characterized by containing 90 percent by volume or more of amorphous phase having a composition represented by Formula: Cu100-a-b(Zr,Hf)a(Al,Ga)b [in Formula, a and b are on an atomic percent basis and satisfy 35 atomic percent≦a≦50 atomic percent and 2 atomic percent≦b≦10 atomic percent], wherein the temperature interval ΔTx of supercooled liquid region is 45 K or more, the temperature interval being represented by Formula ΔTx=Tx−Tg (where Tx represents a crystallization initiation temperature and Tg represents a glass transition temperature.), a rod or a sheet having a diameter or thickness of 1 mm or more and a volume fraction of amorphous phase of 90% or more can be produced by a metal mold casting method, the compressive strength is 1,900 MPa or more, the Young's modulus is 100 GPa or more, and the Vickers hardness is 500 Hv or more.

    摘要翻译: 为了提供具有比Cu-Zr-Ti非晶合金和Cu-Hf-Ti非晶合金高的玻璃形成能力的Cu基非晶合金,以及优异的可加工性和优异的机械性能,而不含大量的 钛 一种Cu基非晶态合金,其特征在于含有90体积%以上的非晶相,其具有式:Cu 100-ab(Zr,Hf)a(a) Al,Ga)b在式中,a和b以原子百分比为基准,并且满足35原子百分比<= a <= 50原子%和2原子%<= b <= 10原子% ],其中过冷液体区域的温度区间DeltaTx为45K以上,温度区间由式DeltaTx = Tx-Tg(其中Tx表示结晶起始温度,Tg表示玻璃化转变温度)表示,棒或 可以通过金属模铸法制造具有1mm以上的直径或厚度,非晶相的体积分率为90%以上的片材,抗压强度为1900MPa以上,杨氏模量为100GPa, 维氏硬度为500Hv以上。