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    • 1. 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。
    • 2. 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。
    • 3. 发明授权
    • Nickel-metal hydride storage battery
    • 镍氢蓄电池
    • US07807282B2
    • 2010-10-05
    • US11630329
    • 2005-06-29
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • H01M2/12
    • H01M2/1229H01M2/0285H01M2/1264H01M2/1276H01M10/345Y02E60/124
    • A nickel-metal hydride storage battery is provided capable of suppressing an increase of discharge reserve of a negative electrode and preventing lowering of battery characteristics. A nickel-metal hydride storage battery 100 of the present invention comprises a battery main part (an electrode plate group 150, an electrolyte, and others), a case 102 housing this battery main part, and a safety valve device 101 having an excessive pressure preventing function for preventing excessive rise of the internal pressure in the case 102 by discharging gas from the case 102 when the internal pressure in the case 102 exceeds a predetermined value. The safety valve device 101 includes a valve member 110 having a protruding wall 118 forming a valve internal space C communicated with a release hole 122 and has a hydrogen leakage function for allowing leakage of hydrogen gas in the case 102 out of the battery through the valve internal space C even when the internal pressure in the case 102 is the predetermined value or less.
    • 提供能够抑制负极的放电储备的增加并防止电池特性降低的镍氢蓄电池。 本发明的镍氢蓄电池100包括电池主体部(电极板组150,电解液等),容纳该电池主体的壳体102和具有过压的安全阀装置101 防止在壳体102内的内部压力超过规定值时从壳体102排出气体来防止壳体102的内部压力过度上升的防止功能。 安全阀装置101包括阀构件110,阀构件110具有形成与释放孔122连通的阀内部空间C的突出壁118,并且具有氢泄漏功能,用于允许壳体102中的氢气通过阀从电池泄漏出电池 内部空间C即使在外壳102的内部压力为规定值以下的情况下也是如此。
    • 4. 发明申请
    • Nickel-Metal Hydride Storage Battery
    • 镍金属氢化物蓄电池
    • US20080020268A1
    • 2008-01-24
    • US11630329
    • 2005-06-29
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • Shinji HamadaTomohiro MatsuuraToyohiko EtoHiroyuki Miyamoto
    • H01M2/12
    • H01M2/1229H01M2/0285H01M2/1264H01M2/1276H01M10/345Y02E60/124
    • A nickel-metal hydride storage battery is provided capable of suppressing an increase of discharge reserve of a negative electrode and preventing lowering of battery characteristics. A nickel-metal hydride storage battery 100 of the present invention comprises a battery main part (an electrode plate group 150, an electrolyte, and others), a case 102 housing this battery main part, and a safety valve device 101 having an excessive pressure preventing function for preventing excessive rise of the internal pressure in the case 102 by discharging gas from the case 102 when the internal pressure in the case 102 exceeds a predetermined value. The safety valve device 101 includes a valve member 110 having a protruding wall 118 forming a valve internal space C communicated with a release hole 122 and has a hydrogen leakage function for allowing leakage of hydrogen gas in the case 102 out of the battery through the valve internal space C even when the internal pressure in the case 102 is the predetermined value or less.
    • 提供能够抑制负极的放电储备的增加并防止电池特性降低的镍氢蓄电池。 本发明的镍氢蓄电池100包括电池主体部(电极板组150,电解液等),容纳该电池主体的壳体102和具有过压的安全阀装置101 防止在壳体102内的内部压力超过规定值时从壳体102排出气体来防止壳体102的内部压力过度上升的防止功能。 安全阀装置101包括阀构件110,阀构件110具有形成与释放孔122连通的阀内部空间C的突出壁118,并且具有氢泄漏功能,用于允许壳体102中的氢气通过阀从电池泄漏出电池 内部空间C即使在外壳102的内部压力为规定值以下的情况下也是如此。
    • 9. 发明申请
    • Nickel-Metal Hydride Storage Battery
    • 镍金属氢化物蓄电池
    • US20080096096A1
    • 2008-04-24
    • US11629981
    • 2005-06-29
    • Katsunori KomoriTomohiro MatsuuraShinji HamadaToyohiko EtoYoshiyuki Nakamura
    • Katsunori KomoriTomohiro MatsuuraShinji HamadaToyohiko EtoYoshiyuki Nakamura
    • H01M2/12H01M2/02
    • H01M12/065H01M2/12
    • A nickel-metal hydride storage battery is provided capable of suppressing changes in discharge reserve and charge reserve of a negative electrode to prevent lowering of battery characteristics for a long term. A nickel-metal hydride storage battery 100 of the present invention comprises a battery main part (an electrode plate group 150, an electrolyte, and others), a case 102 housing this battery main part, and a safety valve device 101. The safety valve device 101 includes a valve member 110 of a closed-end substantially cylindrical shape. This nickel-metal hydride storage battery 100 is arranged such that a hydrogen leak rate V1 (μl/h/Ah) of the battery having been charged and discharged and then charged to 60% SOC satisfies a relationship: 2≦V1≦4, the hydrogen leak rate being per unit of battery capacity under an atmosphere at a battery temperature of 45° C., and a reduced pressure of 10 kPa.
    • 提供了能够抑制负极的放电储备和电荷储备的变化的镍氢蓄电池,以防止长期的电池特性的降低。 本发明的镍氢蓄电池100包括电池主体部(电极板组150,电解液等),容纳该电池主体的壳体102和安全阀装置101。 安全阀装置101包括封闭端大致圆筒形状的阀构件110。 该镍氢蓄电池100被配置为使得已经充放电然后充电至60%SOC的电池的氢泄漏率V1(mul / h / Ah)满足关系:2 <= V1 <= 4 在电池温度为45℃的气氛下,氢气泄漏率为单位电池容量,减压为10kPa。