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    • 4. 发明申请
    • Rechargeable alkaline battery with overcharging protection
    • 带充电保护的充电碱性电池
    • US20060082345A1
    • 2006-04-20
    • US11211433
    • 2005-08-26
    • Josef Daniel-IvadDavid Zhang
    • Josef Daniel-IvadDavid Zhang
    • H02J7/00
    • H01M10/4207H01M4/50H01M10/24H01M10/465H02J7/0016H02J7/0029H02J2007/0037Y02E60/124
    • A rechargeable alkaline manganese (RAM) battery or battery pack comprising an overcharging protection circuit that allows the RAM battery or battery pack to be charged using a charging circuit designed for use with a different type of rechargeable battery, for example a NiCd or NiMH rechargeable battery. The battery of the present invention is particularly advantageous as a replacement battery for use in devices having an embedded charging circuit designed for use with NiCd or NiMH batteries. The overcharging protection circuit may be provided in a battery pack that allows the individual RAM cells to be removed and replaced. Alternatively, the overcharging protection circuit may be installed in the device itself. When the battery pack is provided as original equipment in an electronic device, an activation key may be provided that prevents discharge of the batteries before the device is used.
    • 一种可充电碱性锰(RAM)电池或电池组,其包括过充保护电路,其允许使用设计用于与不同类型的可充电电池(例如NiCd或NiMH可充电电池)一起使用的充电电路对RAM电池或电池组进行充电 。 本发明的电池作为用于具有设计用于NiCd或NiMH电池的嵌入式充电电路的装置中的替代电池是特别有利的。 过充电保护电路可以设置在允许单个RAM单元被移除和更换的电池组中。 或者,过充电保护电路可以安装在设备本身中。 当将电池组作为原始设备提供在电子设备中时,可以提供在使用设备之前防止电池放电的激活键。
    • 5. 发明申请
    • ALKALINE BATTERY AND CLOSURE ASSEMBLY THEREFOR
    • 碱性电池及其封闭组件
    • US20130065096A1
    • 2013-03-14
    • US13699604
    • 2011-05-18
    • Josef Daniel-Ivad
    • Josef Daniel-Ivad
    • H01M2/12H01M2/20
    • H01M2/0413H01M2/022H01M2/1241H01M2/34H01M6/04H01M10/24H01M10/286
    • The present invention relates to electrochemical cells and to closure assemblies for aqueous alkaline electrolyte cells of the conventional cylindrical type. The closure assembly is for the negative terminal and comprises an internal cap disc in unsecured electrical contact with an internal cap ring. When pressure within the cell increases, for example due to gas generation by electrolysis of the electrolyte through abuse or overcharging, the cap disc moves away from the cap ring, breaking the electrical contact and disrupting the electrochemical circuit within the cell. This prevents further gas generation and pressure build-up, thereby preventing a failure of the internal blow out safety vent and escape of the corrosive electrolyte. In time, the pressure dissipates and the cap disc again makes contact with the cap ring, permitting the cell to be used again.
    • 本发明涉及电化学电池和用于常规圆柱型水性碱性电解质电池的闭合组件。 闭合组件用于负极端子并且包括与内部盖环不牢固地电接触的内部盖盘。 当电池内的压力增加时,例如由于通过滥用或过度充电电解电解产生的气体,盖盘远离盖环移动,破坏电接触并破坏电池内的电化学电路。 这防止进一步的气体产生和压力积聚,从而防止内部吹出安全排气孔和腐蚀性电解液逸出的故障。 随着时间的推移,压力消失,盖盘再次与盖环接触,允许再次使用电池。
    • 9. 发明申请
    • RECHARGEABLE ALKALINE MANGANESE CELL WITH CATHODE CONSISTENCY COMPENSATION
    • 可充电的碱性锰电池与阴极一致性补偿
    • US20100209777A1
    • 2010-08-19
    • US12771402
    • 2010-04-30
    • Josef Daniel-Ivad
    • Josef Daniel-Ivad
    • H01M4/50
    • H01M4/24H01M4/043H01M4/26H01M4/30H01M4/50H01M4/621H01M10/24H01M10/44
    • In an improved rechargeable alkaline manganese cell that has a manganese dioxide cathode comprising pellets formed by pressing a cathode powder blend comprising a hygroscopic additive for increasing cumulative capacity, the sticky consistency of the pellets, which is un-desirable for continuous automated production is compensated for by the addition of up to 0.5% of a hydrophobic binder. This small amount leaves the cell performance substantially unimpaired, but provides the desired consistency for large-scale production. Further disclosed is an improved charge methodology for a rechargeable alkaline manganese cell wherein the charge current is pulsed at a voltage in excess of 1.65 V and the no-load cell voltage response is monitored at predetermined intervals. No charge current pulse is permitted to pass through the cell if the no-load voltage exceeds a threshold value. This results in increased utilization of the capacity of the cell while reducing the likelihood of damage to the cell due to overcharging.
    • 在具有二氧化锰阴极的改进的可再充电碱锰电池中,其包含通过压制包含吸湿添加剂的阴极粉末共混物形成的颗粒,所述阴极粉末共混物用于增加累积容量,对于连续自动化生产而言不理想的颗粒的粘稠度被补偿 通过加入高达0.5%的疏水性粘合剂。 这种少量的电池性能基本上不受损害,但是为大规模生产提供了所需的一致性。 进一步公开了一种用于可充电碱性锰电池的改进的充电方法,其中充电电流以超过1.65V的电压脉冲,并且以预定间隔监测空载单元电压响应。 如果空载电压超过阈值,则不允许充电电流脉冲通过电池。 这导致电池的容量的利用率增加,同时减少由于过度充电而损坏电池的可能性。