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    • 1. 发明申请
    • BATTERY, AND BATTERY MANUFACTURING METHOD
    • 电池和电池制造方法
    • US20090029244A1
    • 2009-01-29
    • US12280694
    • 2007-02-28
    • Takashi AsahinaShinji HamadaToyohiko EtoMasanori Ito
    • Takashi AsahinaShinji HamadaToyohiko EtoMasanori Ito
    • H01M2/26B23K31/02
    • H01M2/266H01M10/0436H01M10/28H01M10/345
    • Provided are a low-cost battery in which an outermost first electrode plate is designed to be bent at a bent portion farther from a current collector than its own joint end so that a near portion extending from the bent portion to the joint end is positioned inward in a lamination direction than a distant portion positioned farther from the current collector than the bent portion, and first electrode plates including the outermost first electrode plate are connected to a collector joint part, and a manufacturing method thereof. In the battery of the invention, a negative collector joint part is connected to a negative joint end of an inside negative electrode plate with a fillet formed of metal melted from the negative collector joint part itself and also connected to a negative joint end of an outermost negative electrode plate with a fillet formed of metal melted from the negative collector joint part itself.
    • 提供一种低成本电池,其中,最外侧的第一电极板被设计成在比集电体比其自身的接合端更弯曲的部分弯曲,使得从弯曲部延伸到接合端的近部位于内侧 在比与弯曲部分更远离集电体的远处部分的层叠方向上,并且包括最外面的第一电极板的第一电极板连接到集电器接合部分及其制造方法。 在本发明的电池中,负极集电体接合部与内部负极板的负极接合端部连接,该负极接合端部具有由负极集电体接合部本身熔化的金属形成的圆角,并且还连接到最外侧的负极接合端 负极板具有由负极集电体接合部本身熔化的金属形成的圆角。
    • 4. 发明授权
    • Sealed battery
    • 密封电池
    • US08940422B2
    • 2015-01-27
    • US11885252
    • 2006-03-16
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • H01M2/12
    • H01M2/0404H01M2/043H01M2/08H01M2/12H01M2/1229H01M2/1247H01M10/281
    • A battery cell includes a battery housing case formed with a through hole communicating with an interior space, a hollow rivet, and a seal rubber. The hollow rivet has a seal surface annularly extending outside the battery housing case, and a hollow portion formed with an exhaust port continuous to the inner edge of the seal surface and positioned at the through hole to allow gas in the interior space to flow out through the exhaust port. The seal rubber has a contact unit extending annularly facing the seal surface to press the seal surface and is provided so as to close the exhaust port. The contact unit is formed to project toward the seal surface so as to contact the seal surface at a position away from the inner edge of the seal surface. Such an arrangement prevents an electrolyte leakage over a long period of time.
    • 电池单元包括形成有与内部空间连通的通孔的电池外壳,中空铆钉和密封橡胶。 中空铆钉具有环形延伸到电池壳体外部的密封表面,以及形成有与密封表面的内边缘连续并位于通孔处的排气口的中空部分,以允许内部空间中的气体流出 排气口。 密封橡胶具有接触单元,该接触单元环形地面向密封表面延伸以按压密封表面并且设置成关闭排气口。 接触单元形成为朝向密封表面突出,以便在远离密封表面的内边缘的位置处接触密封表面。 这种布置防止电解质在长时间内泄漏。
    • 5. 发明申请
    • Sealed Battery
    • 密封电池
    • US20080199763A1
    • 2008-08-21
    • US11885252
    • 2006-03-16
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • Masanori ItoTomohiro MatsuuraToyohiko Eto
    • H01M2/12
    • H01M2/0404H01M2/043H01M2/08H01M2/12H01M2/1229H01M2/1247H01M10/281
    • A battery cell comprising a battery housing case formed with a through hole communicating with an interior space, a hollow rivet, and a seal rubber. The hollow rivet has a seal surface annularly extending outside the battery housing case, and a hollow portion formed with an exhaust port continuous to the inner edge of the seal surface and positioned at the through hole to allow gas in the interior space to flow out through the exhaust port. The seal rubber has a contact unit extending annularly facing the seal surface to press the seal surface and is provided so as to close the exhaust port. The contact unit is formed to project toward the seal surface so as to contact the seal surface at a position away from the inner edge of the seal surface. Such an arrangement prevents an electrolyte leakage over a long period of time.
    • 一种电池单元,包括形成有与内部空间连通的通孔的电池外壳,中空铆钉和密封橡胶。 中空铆钉具有环形延伸到电池壳体外部的密封表面,以及形成有与密封表面的内边缘连续并位于通孔处的排气口的中空部分,以允许内部空间中的气体流出 排气口。 密封橡胶具有接触单元,该接触单元环形地面向密封表面延伸以按压密封表面并且设置成关闭排气口。 接触单元形成为朝向密封表面突出,以便在远离密封表面的内边缘的位置处接触密封表面。 这种布置防止电解质在长时间内泄漏。
    • 10. 发明申请
    • STORAGE UNIT, DATA WRITE METHOD AND DATA WRITE PROGRAM
    • 存储单元,数据写入方法和数据写入程序
    • US20100241802A1
    • 2010-09-23
    • US12696219
    • 2010-01-29
    • Atsushi IGASHIRAMasanori ItoYoshihito KontaNorihide KubotaKenji Kobayashi
    • Atsushi IGASHIRAMasanori ItoYoshihito KontaNorihide KubotaKenji Kobayashi
    • G06F12/08G06F12/00
    • G06F12/0873G06F2212/262G06F2212/281
    • A storage unit includes a cache memory, a cache controller which accesses the cache memory, one or more disk units, a data receiving unit, a merge interpolation determination unit, a data readout unit, a write data generation unit and a data write unit. The data receiving unit receives, from the cache controller, unit readout data that includes update records updated by the cache controller and is unit of data read from the cache memory. The merge interpolation determination unit determines whether the received unit readout data is merge interpolated. The data readout unit reads, from the disk unit, data corresponding to the unit readout data when the unit readout data is determined to be merge interpolated. The write data generation unit generates data to be written to the disk unit by merge interpolating the unit readout data. The data write unit writes, to the disk unit, the generated data.
    • 存储单元包括高速缓存存储器,访问高速缓冲存储器的高速缓存控制器,一个或多个盘单元,数据接收单元,合并插值确定单元,数据读出单元,写入数据生成单元和数据写入单元。 数据接收单元从高速缓存控制器接收包括由高速缓存控制器更新的更新记录的单元读出数据,并且是从高速缓冲存储器读取的数据单位。 合并插值确定单元确定接收单元读出数据是否合并内插。 当确定单元读出数据被合并内插时,数据读出单元从盘单元读取对应于单元读出数据的数据。 写数据生成单元通过合并内插单位读出数据来生成要写入到盘单元的数据。 数据写入单元向盘单元写入生成的数据。