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    • 1. 发明专利
    • Rolled copper foil
    • 卷绕铜箔
    • JP2013241630A
    • 2013-12-05
    • JP2012113853
    • 2012-05-17
    • Hitachi Cable Ltd日立電線株式会社
    • MUROGA TAKEMISEKI SOSHI
    • C22C9/00C22C9/02C22C9/05C22C9/06C22F1/00C22F1/08H05K1/09
    • PROBLEM TO BE SOLVED: To impart excellent crease resistance, in addition to high bending resistance.SOLUTION: A plurality of crystal faces parallel to a main surface include faces {022}, {002}, {113}, {111} and {133}. The diffraction peak strength of each crystal face, which is determined from X-ray diffraction measurement using 2θ/θ method to the main surface and converted so that the total value becomes 100, is I+I≥75. The diffraction peak strength ratio of each crystal face relative to a diffraction peak strength ratio in powdery copper having faces {022}, {113}, {111}, {133} and {002}, which is converted so that the total value becomes 100, and the half value width of the diffraction peak of each face satisfy [(I/I)×FWHM]+[(I/I)×FWHM]+[(I/I)×FWHM]≤1.5, and the 10-point average surface roughness of the main surface is ≤1.2 μm.
    • 要解决的问题:除了具有高抗弯曲性外,还具有优异的抗折皱性。解决方案:平行于主表面的多个晶面包括面{022},{002},{113},{111}和{133 }。 每个晶面的衍射峰强度,其用X射线衍射测量使用2&Thetas; /Θ 方法转换为主表面,使总值变为100,为I +I≥75。 每个晶面的衍射峰强度比相对于具有面{22},{113},{111},{133}和{002}的粉状铜中的衍射峰强度比,其被转换为使得总值变为 100,各面的衍射峰的半值宽度满足[(I / I)×FWHM] + [(I / I)×FWHM] + [(I / I)×FWHM]≤1.5, - 主表面的平均表面粗糙度≤1.2μm。
    • 4. 发明专利
    • Rolled copper foil
    • 卷绕铜箔
    • JP2010150578A
    • 2010-07-08
    • JP2008327610
    • 2008-12-24
    • Hitachi Cable Ltd日立電線株式会社
    • MUROGA TAKEMISASAKI HAJIMESEKI SOSHI
    • C22F1/08C22F1/00H05K1/09
    • PROBLEM TO BE SOLVED: To provide rolled copper foil having excellent bending characteristics and being in low cost, to deal with a demand for higher bending characteristics for a flexible wiring member such as a flexible printed board. SOLUTION: The rolled copper foil is rolled copper foil before recrystallization annealing after a final cold rolling step. In a result of positive pole figure of ä220} Cu plate diffraction of a copper crystal by an X-ray diffraction measurement of a pole figure on the basis of a rolling plane, a diffraction peak resulting from a crystal grain group existing for each at least 90±5° of β angle and showing 4 time symmetry, is present in a range of α angle of 40-50°. Further, a diffraction peak resulting from another crystal grain group existing for each 90±10° of β angle and showing 4 time symmetry, is present. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供弯曲特性优异并且成本低的轧制铜箔,可以应对柔性印刷基板等柔性布线部件对弯曲特性的要求。 解决方案:轧制的铜箔是在最后的冷轧步骤之后的再结晶退火之前的轧制铜箔。 通过基于滚动平面的极图的X射线衍射测量,铜晶体的ζ220} Cu 平板衍射的正极图的结果,由晶体产生的衍射峰 存在每个至少90±5°的β角并显示4次对称的粒组存在于α角为40-50°的范围内。 此外,存在由每个90°±10°的β角存在并显示4个时间对称性的另一个晶粒组产生的衍射峰。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Manufacturing method of oxide superconductive wire rod, and judgement method of powder for oxide superconductive wire rod
    • 氧化物超导线的制造方法及氧化物超导线的粉末判定方法
    • JP2008103155A
    • 2008-05-01
    • JP2006283874
    • 2006-10-18
    • Hitachi Cable Ltd日立電線株式会社
    • OHATA KAZUMIMUROGA TAKEMIIWAKI GENZO
    • H01B13/00H01B12/10H01F6/06
    • Y02E40/644
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of an oxide superconductive wire rod capable of obtaining high critical current characteristics with good reproducibility and a judgement method of the oxide superconductive wire rod powder. SOLUTION: The manufacturing method of the oxide superconductive wire rod is provided with a filling process to fill powders of the oxide superconductor or powders to become its material into a metal sheath material and a drawing process to manufacture a wire rod by applying a plastic working on the metal sheath material. The H 2 O molecular number desorbed from sample powders 1g is measured and, at its measurement, those sample powders having a maximum value A of the H 2 O molecular number in a range of 50-300°C of 10 18 or less and a ratio (B/A) of the peak value B of the H 2 O molecular number measured at further temperature rise within temperature range of 200°C from the measuring temperature of the maximum value A and the maximum value A being below 0.5 are judged as an adequate powder 1, and the adequate powders 1 are filled into the metal sheath material 2 to manufacture the wire rod. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够以良好的再现性获得高临界电流特性的氧化物超导线材的制造方法和氧化物超导线材粉末的判断方法。 解决方案:氧化物超导线材的制造方法具有填充工艺,以填充氧化物超导体或粉末的粉末,以将其材料变成金属护套材料和拉制工艺以通过施加线材来制造线材 塑料加工在金属护套材料上。 测量从样品粉末1g脱附的H SB 2 O分子量,并且在其测量中,在一个样品粉末中具有H 2 S 2 O分子数的最大值A的那些样品粉末 50-300℃的范围为10 18 或更小,并且在进一步温度下测量的H 2 O分子的峰值B的比率(B / A) 从最大值A的测量温度和低于0.5的最大值A的200℃的温度范围内上升到足够的粉末1,并且将足够的粉末1填充到金属护套材料2中以制造线 竿。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Rolled copper foil
    • 卷绕铜箔
    • JP2013170280A
    • 2013-09-02
    • JP2012033440
    • 2012-02-17
    • Hitachi Cable Ltd日立電線株式会社
    • MUROGA TAKEMISEKI SOSHI
    • C22C9/00C22C9/02C22F1/00C22F1/08
    • PROBLEM TO BE SOLVED: To provide a rolled copper foil having excellent bending resistance and high flexing characteristics.SOLUTION: A plurality of crystal faces parallel to the main surface include a {022} face, a {002} face, a {113} face, a {111} face and a {133} face, and the diffraction peak intensity ratios of the respective crystal faces obtained from X-ray diffraction measurement using a 2θ/θ method to the main surface and converted in such a manner that the total value reaches 100 satisfy I≤6.0, I≤6.0 and I≤6.0, respectively, the half-value widths of the diffraction peaks of the respective crystal faces satisfy FWHM≤0.60, FWHM≤0.50, FWHM≤0.50, FWHM≤0.50 and FWHM≤0.70, respectively.
    • 要解决的问题:提供具有优异的抗弯曲性和高弯曲特性的轧制铜箔。解决方案:平行于主表面的多个晶面包括{002}面,{002}面,{113}面 ,{111}面和{133}面,以及使用2& Thetas的X射线衍射测定得到的各晶面的衍射峰强度比; 方法转换成总值达到100,满足I≤6.0,I≤6.0和I≤6.0,各晶面的衍射峰的半值宽度满足FWHM≤0.60 FWHM≤0.50,FWHM≤0.50,FWHM≤0.50,FWHM≤0.70。
    • 9. 发明专利
    • Rolled copper foil
    • 卷绕铜箔
    • JP2013170278A
    • 2013-09-02
    • JP2012033438
    • 2012-02-17
    • Hitachi Cable Ltd日立電線株式会社
    • MUROGA TAKEMISEKI SOSHI
    • C22F1/08C22C9/00C22C9/02C22F1/00H05K1/09
    • PROBLEM TO BE SOLVED: To include excellent flexing characteristics after a recrystallization annealing step.SOLUTION: When diffraction peak intensity ratios of a plate {022}, a plate {113}, a plate {111}, a plate {133}, and a plate {002} parallel to a main surface, which are converted so that the total value is 100, are I, I, I, I, and I, and diffraction peak intensity ratios, which are converted so that the total value is 100, of powder copper including the plate {022}, the plate {113}, the plate {111}, the plate {133}, and the plate {002} are I, I, II, and I, respectively, I/I≥7.0, I/I≥0.40, I/I≥0.090, and I/I≥1.4.
    • 要解决的问题:在重结晶退火步骤之后包括优异的弯曲特性。解决方案:当板{022},板{113},板{111},板{133}和 转换为总数为100的主表面的平板{002}为I,I,I,I和I以及转换为总数为100的衍射峰强度比, 包括板{022},板{113},板{111},板{133}和板{002}的粉末铜分别为I,I,II和I,I /I≥ 7.0,I /I≥0.40,I /I≥0.090,I /I≥1.4。