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    • 1. 发明授权
    • Method of manufacturing a pattern of conductive fine-line films and
setting ink used for the same
    • 制造导电细线膜的图案的方法和用于其的设定墨水的方法
    • US5362513A
    • 1994-11-08
    • US698563
    • 1991-05-10
    • Mikinari ShimadaHirotoshi WatanabeSatoru FujiiMasato HaginoMasahide Tsukamoto
    • Mikinari ShimadaHirotoshi WatanabeSatoru FujiiMasato HaginoMasahide Tsukamoto
    • H05K1/09H05K3/04H05K3/12B05D1/00
    • H05K3/1275H05K3/048H05K1/092H05K2203/0113H05K2203/0143H05K2203/0195H05K2203/0534H05K2203/121
    • A pattern forming method comprises at least a lower pattern forming step for printing a setting ink on a substrate, a setting step for setting the setting ink, an upper layer pattern forming step for forming a metalo-organic compound paste layer on the lower layer pattern by a printing method, and a firing step for firing at high temperature to remove the lower layer pattern. In the upper layer pattern forming step, the metalo-organic compound paste is printed so that the metalo-organic compound paste may be divided on the hardened setting ink so as to fill up gaps of the lower layer pattern. Otherwise the metalo-organic compound paste is printed on the hardened setting ink, and the metalo-organic compound paste is mechanically cut off, before the metalo-organic compound paste is dried, on the hardened setting ink, thereby forming an upper layer pattern. The setting ink comprises a thermo-setting resin, a setting agent, and an organic solvent, with an amount of nonvolatile materials of 50 to 70 wt. %, or comprises a carbon powder, a thermo-setting resin, a setting agent and an organic solvent, with an amount of nonvolatile materials of 60 to 80 wt. %.
    • 图案形成方法至少包括用于在基板上印刷固化油墨的下图案形成步骤,用于设定设定油墨的设定步骤,在下层图案上形成金属有机化合物浆料层的上层图案形成工序 通过印刷方法,以及在高温下烧制以除去下层图案的焙烧步骤。 在上层图案形成工序中,印刷金属有机化合物糊料,使得金属有机化合物糊剂可以在硬化的固化油墨上分配,以便填满下层图案的间隙。 另外,将金属有机化合物糊剂印刷在硬化凝固油墨上,并且在金属有机化合物浆料被干燥之前,在硬化的固化油墨上机械地切割金属有机化合物浆料,从而形成上层图案。 固化油墨包括热固性树脂,固化剂和有机溶剂,其中非挥发性物质的量为50〜70重量%。 %,或包含碳粉末,热固性树脂,固化剂和有机溶剂,其中非挥发性物质的量为60〜80重量%。 %。
    • 5. 发明申请
    • BATTERY
    • 电池
    • US20110052971A1
    • 2011-03-03
    • US12747752
    • 2009-11-05
    • Masato FujikawaTomohiko YokoyamaMikinari Shimada
    • Masato FujikawaTomohiko YokoyamaMikinari Shimada
    • H01M2/26
    • H01M10/0587H01M2/22H01M2/26H01M4/661H01M4/70H01M10/0431H01M10/0525H01M2004/027Y02T10/7011
    • In a battery, an electrode group (4) and an electrolyte are together sealed in a battery case (10). The electrode group (4) includes a positive electrode (1) and the negative electrode (2) which are wound or stacked with a separator (3) interposed therebetween. At least one of the positive electrode (1) and the negative electrode (2) includes a current collector (2A) and an active material layer (2B), and a lead (6) is electrically connected to an exposed portion (21) of the current collector (2A). The lead (6) is arranged to extend from the exposed portion (21) to the outside of the current collector (2A) such that the lead (6) straddles a first edge (21a) which is one of edges constituting the exposed portion (21), and is welded to the exposed portion (21) at a position close to the first edge (21a).
    • 在电池中,电极组(4)和电解质一起密封在电池壳体(10)中。 电极组(4)包括正极(1)和负极(2),它们之间插入有隔板(3)卷绕或堆叠。 正极(1)和负极(2)中的至少一个包括集电体(2A)和活性物质层(2B),引线(6)电连接到暴露部分 集电体(2A)。 引线(6)布置成从暴露部分(21)延伸到集电器(2A)的外部,使得引线(6)跨越构成暴露部分的边缘之一的第一边缘(21a) 并且在接近第一边缘(21a)的位置处焊接到暴露部分(21)。
    • 9. 发明申请
    • ELECTRODE FOR LITHIUM ION SECONDARY BATTERY
    • 用于锂离子二次电池的电极
    • US20090104529A1
    • 2009-04-23
    • US11916603
    • 2006-07-21
    • Hajime NishinoShuji TsutsumiShinji KasamatsuHideharu TakezawaMikinari Shimada
    • Hajime NishinoShuji TsutsumiShinji KasamatsuHideharu TakezawaMikinari Shimada
    • H01M4/58
    • H01M4/70H01M10/0525Y02E60/122Y02T10/7011
    • An object of the present invention is to provide an electrode for a lithium ion secondary battery that can ensure a high level of safety even when exposed to severe conditions such as a nail penetration test or crush test, and exhibit excellent output characteristics.The present invention relates to an electrode for a lithium ion secondary battery having a material mixture containing active material particles capable of reversibly absorbing and desorbing lithium, and a current collector that carries the material mixture, wherein a surface of the current collector has recessed portions, and an area occupied by the recessed portions accounts for not less than 30% of an a material mixture carrying area of the current collector. The present invention further relates to an electrode for a lithium ion secondary battery wherein, in a cut surface obtained by simultaneously cutting a material mixture and a current collector vertically to an electrode plane, the maximum depth of recessed portions is not less than 1 μm, or a difference between an average thickness of a current collector and a maximum thickness of the current collector is not less than 0.35 μm.
    • 本发明的目的是提供一种锂离子二次电池用电极,即使在暴露于诸如指甲穿透试验或粉碎试验等严酷条件下也能够确保高水平的安全性,并且显示出优异的输出特性。 本发明涉及一种锂离子二次电池用电极,其具有包含能够可逆地吸收和解吸锂的活性物质粒子的材料混合物,以及承载该材料混合物的集电体,其中集电体的表面具有凹部, 并且由凹部占据的面积占集电体的混合物承载面积的30%以上。 本发明还涉及一种锂离子二次电池用电极,其特征在于,在与电极平面垂直地同时切割材料混合物和集电体的切断面中,凹部的最大深度为1μm以上, 或者集电体的平均厚度与集电体的最大厚度的差为0.35μm以上。