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    • 3. 发明授权
    • Flat non-aqueous electrolyte secondary cell
    • 扁平非水电解质二次电池
    • US06521373B1
    • 2003-02-18
    • US09641267
    • 2000-08-17
    • Masami SuzukiMuneto HayamiKazuo UdagawaKazuo IizukaNaomi IshiharaSatoshi HiraharaHirotaka SakaiKiyoto YodaMasataka Shikota
    • Masami SuzukiMuneto HayamiKazuo UdagawaKazuo IizukaNaomi IshiharaSatoshi HiraharaHirotaka SakaiKiyoto YodaMasataka Shikota
    • H01M646
    • H01M10/0583H01M2/0222H01M2/027H01M2/0275H01M2/1241H01M4/13H01M4/587H01M4/669H01M6/10H01M6/103H01M6/164H01M10/0427H01M10/0431H01M10/052H01M10/0525H01M10/0568H01M10/0569H01M10/0585H01M10/0587H01M2004/021H01M2006/106
    • In a flat non-aqueous electrolyte secondary cell comprising an electricity-generating element including at least a cathode, a separator and an anode and a non-aqueous electrolyte in the inside of a cathode case, a plurality of electrode units each consisting of the cathode and the anode opposite to each another via the separator are laminated to form an electrode group, or an electrode unit in a sheet form consisting of the cathode and the anode opposite to each another via the separator is wound to form an electrode group, or a sheet-shape cathode is wrapped with the separator except for a part contacting at inner face of cathode case and a sheet-shaped anode is set on the sheet-shaped cathode in a right angled position each other and then these cathode and anode are bent alternately to form an electrode group, and the total sum of the areas of the opposing cathode and anode in this electrode group is larger than the area of the opening of an insulating gasket in a sealed portion in the cathode case or than the area of an opening in a sealed plate in a sealed portion in the cathode case, whereby the discharge capacity upon heavy-loading discharge is significantly increased as compared with the conventional cells. Accordingly, while the size of the cell is small, the discharge capacity is increased as described above, and thus it is possible to provide a highly utilizable flat non-aqueous electrolyte secondary cell. Further, in said flat non-aqueous electrolyte secondary cell, problems which may be caused by the increased discharge capacity in the cell can be solved by improving the solvent and supporting electrolyte for the electrolyte or by various improvements in the cathode and anode cases.
    • 在包括在阴极壳体的内部至少包括阴极,隔膜和阳极以及非水电解质的发电元件的扁平非水电解质二次电池中,多个电极单元由阴极 并且通过隔板彼此相对的阳极被层压以形成电极组,或者通过隔板将彼此相对的由阴极和阳极组成的片状的电极单元卷绕形成电极组,或 除了与阴极壳体的内表面接触的部分之外,用隔膜包裹片状阴极,并且在片状阴极上将片状阳极设置在彼此成直角的位置,然后这些阴极和阳极交替弯曲 形成电极组,并且该电极组中​​的相对的阴极和阳极的面积的总和大于t中的密封部分中的绝缘垫圈的开口面积 与阴极壳体的密封部分中的密封板中的开口面积相比,与常规电池相比,重负载放电时的放电容量显着增加。 因此,在电池尺寸小的情况下,如上所述,放电容量增加,因此可以提供高可利用的扁平非水电解质二次电池。 此外,在所述平坦的非水电解质二次电池中,可以通过改善溶剂和支持电解质的电解质或通过阴极和阳极壳体的各种改进来解决电池中放电容量增加可能引起的问题。
    • 6. 发明授权
    • Liquid action substance battery
    • 液体动作物质电池
    • US08043738B2
    • 2011-10-25
    • US10599715
    • 2005-04-05
    • Masami SuzukiMuneto HayamiKoji KanoKazuo Udagawa
    • Masami SuzukiMuneto HayamiKoji KanoKazuo Udagawa
    • H01M6/14H01M2/26H01M2/12H01M2/30
    • H01M2/30H01M2/1235H01M2/34H01M2/348H01M4/36H01M4/368H01M4/38H01M4/381H01M6/16H01M10/05H01M10/052H01M10/0563
    • A liquid action substance battery having its external terminal welded after assembling the battery in which safety of the battery is enhanced by protecting an explosion-proof valve against being torn apart in the subsequent welding work of the external terminal even if the position of a negative pole action substance being press-bonded to the inner surface of the battery can is shifted and that substance is extruded to the bottom face of the battery can. The liquid action substance battery employing an alkaline metal such as lithium, sodium or potassium or its alloy as the negative pole action substance, and an oxyhalide such as thionyl chloride, sulfuryl chloride or phosphoryl chloride in a liquid state at normal temperature as the positive pole action substance, and storing and sealing the negative pole action substance and the positive pole action substance in the bottomed battery, wherein a metal plate is welded to the inner surface at the bottom part of the battery can to form a partial space between them so that welding heat is not transmitted directly to the negative pole action substance when the external terminal is welded.
    • 一种液体动作物质电池,其在组装电池之后将其外部端子焊接,其中通过在外部端子的随后的焊接工作中保护防爆阀而不会被撕开,从而提高了电池的安全性,即使负极的位置 被压接到电池壳体的内表面的动作物质被移动,并且该物质被挤出到电池罐的底面。 使用锂,钠或钾等碱金属或其合金作为负极作用物质的液体动作物质电池,以及常温下为液态的氧化亚砜,硫酰氯或磷酰氯作为正极 动作物质,并将负极作用物质和正极活性物质储存和密封在有底电池中,其中将金属板焊接在电池壳体的底部的内表面上以在它们之间形成部分空间,使得 当焊接外部端子时,焊接热量不会直接传递到负极作用物质。
    • 7. 发明授权
    • Flat non-aqueous electrolyte secondary cell
    • 扁平非水电解质二次电池
    • US07378186B2
    • 2008-05-27
    • US10318177
    • 2002-12-13
    • Masami SuzukiMuneto HayamiKazuo UdagawaKazuo IizukaNaomi IshiharaSatoshi HiraharaHirotaka SakaiKiyoto YodaMasataka Shikota
    • Masami SuzukiMuneto HayamiKazuo UdagawaKazuo IizukaNaomi IshiharaSatoshi HiraharaHirotaka SakaiKiyoto YodaMasataka Shikota
    • H01M2/02H01M2/08H01M4/58H01M10/40H01M4/66
    • H01M10/0583H01M2/0222H01M2/027H01M2/0275H01M2/1241H01M4/13H01M4/587H01M4/669H01M6/10H01M6/103H01M6/164H01M10/0427H01M10/0431H01M10/052H01M10/0525H01M10/0568H01M10/0569H01M10/0585H01M10/0587H01M2004/021H01M2006/106
    • In a flat non-aqueous electrolyte secondary cell comprising an electricity-generating element including at least a cathode, a separator and an anode and a non-aqueous electrolyte in the inside of a cathode case, a plurality of electrode units each consisting of the cathode and the anode opposite to each another via the separator are laminated to form an electrode group, or an electrode unit in a sheet form consisting of the cathode and the anode opposite to each another via the separator is wound to form an electrode group, or a sheet-shape cathode is wrapped with the separator except for a part contacting at inner face of cathode case and a sheet-shaped anode is set on the sheet-shaped cathode in a right angled position each other and then these cathode and anode are bent alternately to form an electrode group, and the total sum of the areas of the opposing cathode and anode in this electrode group is larger than the area of the opening of an insulating gasket in a sealed portion in the cathode case or than the area of an opening in a sealed plate in a sealed portion in the cathode case, whereby the discharge capacity upon heavy-loading discharge is significantly increased as compared with the conventional cells. Accordingly, while the size of the cell is small, the discharge capacity is increased as described above, and thus it is possible to provide a highly utilizable flat non-aqueous electrolyte secondary cell. Further, in said flat non-aqueous electrolyte secondary cell, problems which may be caused by the increased discharge capacity in the cell can be solved by improving the solvent and supporting electrolyte for the electrolyte or by various improvements in the cathode and anode cases.
    • 在包括在阴极壳体的内部至少包括阴极,隔膜和阳极以及非水电解质的发电元件的扁平非水电解质二次电池中,多个电极单元由阴极 并且通过隔板彼此相对的阳极被层压以形成电极组,或者通过隔板将彼此相对的由阴极和阳极组成的片状的电极单元卷绕形成电极组,或 除了与阴极壳体的内表面接触的部分之外,用隔膜包裹片状阴极,并且在片状阴极上将片状阳极设置成彼此成直角的位置,然后这些阴极和阳极交替弯曲 形成电极组,并且该电极组中​​的相对的阴极和阳极的面积的总和大于t中的密封部分中的绝缘垫圈的开口面积 与阴极壳体的密封部分中的密封板中的开口面积相比,与常规电池相比,重负载放电时的放电容量显着增加。 因此,在电池尺寸小的情况下,如上所述,放电容量增加,因此可以提供高可利用的扁平非水电解质二次电池。 此外,在所述平坦的非水电解质二次电池中,可以通过改善溶剂和支持电解质的电解质或通过阴极和阳极壳体的各种改进来解决电池中放电容量增加可能引起的问题。
    • 8. 发明申请
    • Liquid Action Substance Battery
    • 液体动作物质电池
    • US20080003497A1
    • 2008-01-03
    • US10599715
    • 2005-04-05
    • Masami SuzukiMuneto HayamiKoji KanoKazuo Udagawa
    • Masami SuzukiMuneto HayamiKoji KanoKazuo Udagawa
    • H01M2/14
    • H01M2/30H01M2/1235H01M2/34H01M2/348H01M4/36H01M4/368H01M4/38H01M4/381H01M6/16H01M10/05H01M10/052H01M10/0563
    • A liquid action substance battery having its external terminal welded after assembling the battery in which safety of the battery is enhanced by protecting an explosion-proof valve against being torn apart in the subsequent welding work of the external terminal even if the position of a negative pole action substance being press-bonded to the inner surface of the battery can is shifted and that substance is extruded to the bottom face of the battery can. The liquid action substance battery employing an alkaline metal such as lithium, sodium or potassium or its alloy as the negative pole action substance, and an oxyhalide such as thionyl chloride, sulfuryl chloride or phosphoryl chloride in a liquid state at normal temperature as the positive pole action substance, and storing and sealing the negative pole action substance and the positive pole action substance in the bottomed battery, wherein a metal plate is welded to the inner surface at the bottom part of the battery can to form a partial space between them so that welding heat is not transmitted directly to the negative pole action substance when the external terminal is welded.
    • 一种液体动作物质电池,其在组装电池之后将其外部端子焊接,其中通过在外部端子的随后的焊接工作中保护防爆阀而不会被撕开,从而提高了电池的安全性,即使负极的位置 被压接到电池壳体的内表面的动作物质被移动,并且该物质被挤出到电池罐的底面。 使用锂,钠或钾等碱金属或其合金作为负极作用物质的液体动作物质电池,以及常温下为液态的氧化亚砜,硫酰氯或磷酰氯作为正极 动作物质,并将负极作用物质和正极活性物质储存和密封在有底电池中,其中将金属板焊接在电池壳体的底部的内表面上以在它们之间形成部分空间,使得 当焊接外部端子时,焊接热量不会直接传递到负极作用物质。