会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Alkaline cell
    • 碱性电池
    • US4376810A
    • 1983-03-15
    • US187529
    • 1980-09-15
    • Kazutoshi TakedaKoichi Sugimoto
    • Kazutoshi TakedaKoichi Sugimoto
    • H01M4/06H01M4/36H01M4/42H01M6/08H01M6/50H01M10/48
    • H01M4/366H01M4/36H01M4/42H01M6/08H01M6/5055
    • An electrochemical alkaline cell of the type comprising an anode, cathode and electrolyte for generating electrical energy and exhibiting an output discharge voltage comprises a consumable anode composed of zinc-indium-mercury alloy. The indium constituent is present in an amount of from more than 2% to 10% by weight and the mercury constituent is present in an amount 2% to 14% by weight with respect to the weight amount of the zinc constituent thereby obtaining a cell discharge voltage at one voltage level during substantially the whole useful life of the cell due to consumption of the zinc constituent followed by an abrupt lowering of the cell discharge voltage to a distinctly lower voltage level for the remainder of the cell useful life due to consumption of the indium and mercury constituents. The abrupt change of the cell discharge voltage to the lower level signifies that the cell is near exhaustion and should be replaced.
    • 包括用于产生电能并显示输出放电电压的阳极,阴极和电解质的电化学碱性电池包括由锌 - 铟 - 汞合金构成的可消耗阳极。 铟成分的存在量为大于2重量%至10重量%,并且汞成分以相对于锌成分的重量计为2重量%至14重量%的量存在,从而获得电池放电 由于锌组分的消耗,电池的基本上整个使用寿命期间的一个电压电压处于一个电压水平,随后将电池放电电压突然降低到明显较低的电压电平,这是由于电池的使用寿命 铟和汞成分。 电池放电电压突然变化到较低的水平表示电池接近耗尽并应更换。
    • 7. 发明授权
    • Double current collector cathode design using mixtures of two active materials for alkali metal or ion electrochemical cells
    • 双集电极阴极设计使用两种活性材料的混合物用于碱金属或离子电化学电池
    • US06692865B2
    • 2004-02-17
    • US10008823
    • 2001-10-24
    • Hong GanEsther S. Takeuchi
    • Hong GanEsther S. Takeuchi
    • H01M400
    • H01M4/13A61N1/378H01M4/06H01M4/08H01M4/34H01M4/366H01M4/48H01M4/581H01M4/582H01M4/5825H01M4/5835H01M4/661H01M4/667H01M6/16H01M6/5055H01M2004/028H01M2300/0037
    • A new sandwich cathode design is provided having a first cathode structure of a first cathode active material of a relatively low energy density but of a relatively high rate capability, for example SVO, mixed with a second cathode active material having a relatively high energy density but a relatively low rate capability, for example CFx, with the percentage of SVO being less than that of CFx and sandwiched between two current collectors. Then, a second cathode mixture of SVO and CFx active materials is contacted to the outside of the current collectors. However, the percentage of SVO to CFx is greater in the second structure than in the first. Such an exemplary cathode design might look like: (100−y)% SVO+y% CFx, wherein 0≦y≦100/current collector/(100−x)% SVO+x% CFx, wherein 0≦x≦100/current collector/(100−y)% SVO+y% CFx, wherein 0≦y≦100, and wherein the ratio of x to y is selected from the group consisting of y
    • 提供了一种新的夹层阴极设计,其具有第一阴极结构的第一阴极活性材料,该第一阴极活性材料具有相对低的能量密度但具有相对较高速率的能力,例如SVO,与具有较高能量密度的第二阴极活性材料混合,但是 相对较低的速率能力,例如CFx,SVO的百分比小于CFx的百分比,夹在两个集电器之间。 然后,SVO和CF x活性物质的第二阴极混合物与集电体的外部接触。 然而,在第二个结构中,SVO对CFx的比例大于第一个结构。 这种示例性阴极设计可能看起来像:(100-y)%SVO + y%CFx,其中0 <= y <= 100 /集电器/(100-x)%SVO + x%CFx,其中0 <= x <= 100 /集电体/(100-y)%SVO + y%CFx,其中0 <= y <= 100,并且其中x与y的比率选自y
    • 10. 发明授权
    • Method to determine the state of charge and remaining life of lithium
batteries used in oilfield services applications
    • 确定油田服务应用中使用的锂电池的充电状态和剩余寿命的方法
    • US6045941A
    • 2000-04-04
    • US889775
    • 1997-07-08
    • Marvin Milewits
    • Marvin Milewits
    • H01M4/02H01M6/14H01M6/50H01M4/12
    • H01M6/14H01M6/50H01M2200/00H01M6/5055
    • The present invention relates to a new method of constructing and interrogating electrochemical cells, especially those having lithium thionyl chloride (Li/SOCl.sub.2) chemistry, that permits rapid estimation of remaining discharge capacity. A preferred embodiment of the present invention employs cells with specially modified anode structures and a method for testing the state of charge and remaining life of these cells, as well as depassivating these cells, prior to their intended use or re-use. The test method can be performed using an inexpensive DC circuit and voltmeter at ambient conditions anytime prior to cell use or re-use. There is also disclosed an oilfield services downhole tool battery having a remaining life indicator comprising a housing containing one or more electrochemical cells having an internal anode means which selectively gets consumed at a predetermined state of discharge thereby creating a step change in the cell output voltage which is imperceptible to the tool while in operation at downhole temperatures, and which is capable of being detected at the surface under ambient temperatures upon administering of a suitable current load enabling the user to determine the remaining battery life at the surface prior to subsequent use or reuse of the battery in downhole oilfield services operations.
    • 本发明涉及一种构建和询问电化学电池的新方法,特别是具有锂亚硫酰氯(Li / SOCl 2)化学的那些,其允许快速估计剩余的放电容量。 本发明的优选实施方案采用具有特别改性的阳极结构的电池和用于测试这些电池的电荷状态和剩余寿命的方法,以及在其预期使用或再利用之前使这些电池脱矿。 测试方法可以使用廉价的直流电路和电压表在环境条件下,在电池使用或再次使用之前的任何时间进行。 还公开了一种具有剩余寿命指示器的油田服务井下工具电池,其具有包含一个或多个电化学电池的壳体,所述电化学电池具有在预定放电状态下选择性地消耗的内部阳极装置,从而产生电池输出电压的阶跃变化, 在工作时在井下温度下不可察觉的工具,并且能够在施加合适的电流负载的情况下在环境温度下在表面处被检测到,使得用户能够在随后的使用或再利用之前确定表面上的剩余电池寿命 的电池在井下油田服务业务。