Fluidized bed granulator
    2.
    发明授权
    Fluidized bed granulator 失效
    流化床雕刻机

    公开(公告)号:US5140756A

    公开(公告)日:1992-08-25

    申请号:US309670

    申请日:1989-01-25

    IPC分类号: B01J2/16 B01J8/00 B01J8/38

    摘要: In conventional fluidized granulators whose housing is made of a steel plate, a powder tends to cause blocking if it is highly hygroscopic, and the bag filter used therein causes clogging. These problems have been solved in the present invention by forming the housing of a fluidized granulator with a porous membrane in place of the conventional steel plate. This fluidized granulator produces granules or a coated powder by spraying powder with water, a binder fluid or a coating fluid while maintaining the powder in a fluidized state.

    摘要翻译: 在壳体由钢板制成的常规流化制粒机中,如果吸湿性高,则容易引起堵塞,并且其中使用的袋式过滤器导致堵塞。 在本发明中通过用多孔膜代替常规钢板形成具有多孔膜的流化造粒机的壳体,已经解决了这些问题。 该流化造粒机通过在将粉末保持在流化状态的同时,用水,粘合剂流体或涂布液喷洒粉末来产生颗粒或涂覆的粉末。

    Spray drying process and apparatus therefor
    3.
    发明授权
    Spray drying process and apparatus therefor 失效
    喷雾干燥工艺及其设备

    公开(公告)号:US4809442A

    公开(公告)日:1989-03-07

    申请号:US947245

    申请日:1986-12-29

    IPC分类号: B01D1/18 F26B3/08

    摘要: The spray drying process and the apparatus therefor, of the present invention use a spray drying chamber formed by a heat-resistant porous membrane. Said porous membrane enables rapid separation of a discharge gas and a produced powder and accordingly total recovery of the produced powder from the spray drying chamber. Therefore, there occurs no nonuniformity in product composition; cleaning and blowing-off of adhered fine powder can be conducted rapidly and easily even in frequent product change inevitable with a less grade larger quantity production system; as a result, a fine powder of higher quality and higher purity can be produced.

    摘要翻译: 本发明的喷雾干燥方法及其设备使用由耐热多孔膜形成的喷雾干燥室。 所述多孔膜可以快速分离放电气体和生产的粉末,从而从喷雾干燥室全部回收所生产的粉末。 因此,产品组成不发生不均匀性; 即使在产品变化频繁的情况下,附加细粉的清洁和吹除也可以快速,容易地进行,不可避免的是用较少量级的生产系统; 结果,可以生产出更高质量和更高纯度的细粉末。

    LITHIUM ION RECHARGEABLE BATTERY AND PROCESS FOR PRODUCING THE LITHIUM ION RECHARGEABLE BATTERY
    5.
    发明申请
    LITHIUM ION RECHARGEABLE BATTERY AND PROCESS FOR PRODUCING THE LITHIUM ION RECHARGEABLE BATTERY 审中-公开
    锂离子可充电电池和生产锂离子电池的方法

    公开(公告)号:US20100216032A1

    公开(公告)日:2010-08-26

    申请号:US12599941

    申请日:2008-05-09

    IPC分类号: H01M6/18 H01M10/04

    摘要: Conventional ion rechargeable batteries having an electrode layer on an electrolyte layer suffer from an impurity layer formed at the interface, degrading performance. Conventional batteries with no such impurity layer have a problem of weak interface bonding. In the present invention, in a baking process step after an electrode layer is laminated on an electrolyte layer, materials for an electrode layer and an electrolyte layer are selected such that an intermediate layer formed of a reaction product contributing to charging and discharging reactions is formed at the interface of the electrode layer and the electrolyte layer. In addition, a paste that an active material is mixed with a conductive material at a predetermined mixing ratio is used to form a positive electrode layer and a negative electrode layer. Reductions in electrode resistance and interface resistance and improvement of charging and discharging cycle characteristics are made possible.

    摘要翻译: 在电解质层上具有电极层的常规离子可再充电电池在界面处形成杂质层,降解性能。 没有这种杂质层的常规电池具有界面粘合弱的问题。 在本发明中,在将电极层层压在电解质层上之后的烘烤工序中,选择电极层和电解质层的材料,形成由有助于充放电反应的反应产物形成的中间层 在电极层和电解质层的界面处。 此外,使用活性物质以预定的混合比与导电材料混合的糊料形成正极层和负极层。 降低电极电阻和界面电阻以及充放电循环特性的改善成为可能。

    All solid state secondary battery
    7.
    发明授权
    All solid state secondary battery 有权
    全固态二次电池

    公开(公告)号:US08883347B2

    公开(公告)日:2014-11-11

    申请号:US12302250

    申请日:2007-02-13

    摘要: This is to provide an all solid state secondary battery which can be produced by an industrially employable method capable of mass-production and has excellent secondary battery characteristics.This is an all solid state secondary battery containing a laminated material in which a positive-electrode unit and a negative-electrode unit are laminated alternately through an ion conductive inorganic-material layer, the positive-electrode unit has positive active material layers on both surfaces of a positive-electrode collector layer, the above-mentioned negative-electrode unit has negative active material layers on both surfaces of a negative-electrode collector layer, (A) at least one of the positive-electrode collector layer and the negative-electrode collector layer comprises a metal of either of Ag, Pd, Au and Pt, or an alloy containing either of Ag, Pd, Au and Pt, or a mixture containing two or more kinds selected from the metals and alloys, (B) each layer is in a sintered state, or (C) at least the starting material for the ion conductive inorganic material of the ion conductive inorganic-material layer is a calcined powder.

    摘要翻译: 这是提供一种能够通过工业上可以大规模生产并且具有优异的二次电池特性的方法生产的全固态二次电池。 这是一种包含层叠材料的全固体二次电池,其中正极单元和负极单元交替地通过离子导电无机材料层层压,正极单元在两个表面上具有正的活性材料层 上述负极单元在负极集电体层的两面具有负极活性物质层,(A)正极集电体层和负极中的至少一个 集电体层包括Ag,Pd,Au和Pt中的任一种的金属,或包含Ag,Pd,Au和Pt中的任一种的合金,或包含选自金属和合金的两种或更多种的混合物,(B)每层 或(C)至少离子传导性无机材料层的离子传导性无机材料的原料为煅烧粉末。

    ALL SOLID STATE SECONDARY BATTERY
    8.
    发明申请
    ALL SOLID STATE SECONDARY BATTERY 有权
    所有固态二次电池

    公开(公告)号:US20090202912A1

    公开(公告)日:2009-08-13

    申请号:US12302250

    申请日:2007-02-13

    IPC分类号: H01M4/40 H01M4/24 H01M10/00

    摘要: This is to provide an all solid state secondary battery which can be produced by an industrially employable method capable of mass-production and has excellent secondary battery characteristics.This is an all solid state secondary battery containing a laminated material in which a positive-electrode unit and a negative-electrode unit are laminated alternately through an ion conductive inorganic-material layer, the positive-electrode unit has positive active material layers on both surfaces of a positive-electrode collector layer, the above-mentioned negative-electrode unit has negative active material layers on both surfaces of a negative-electrode collector layer, (A) at least one of the positive-electrode collector layer and the negative-electrode collector layer comprises a metal of either of Ag, Pd, Au and Pt, or an alloy containing either of Ag, Pd, Au and Pt, or a mixture containing two or more kinds selected from the metals and alloys, (B) each layer is in a sintered state, or (C) at least the starting material for the ion conductive inorganic material of the ion conductive inorganic-material layer is a calcined powder.

    摘要翻译: 这是提供一种能够通过工业上可以大规模生产并且具有优异的二次电池特性的方法生产的全固态二次电池。 这是一种包含层叠材料的全固体二次电池,其中正极单元和负极单元交替地通过离子导电无机材料层层压,正极单元在两个表面上具有正的活性材料层 上述负极单元在负极集电体层的两面具有负极活性物质层,(A)正极集电体层和负极中的至少一个 集电体层包括Ag,Pd,Au和Pt中的任一种的金属,或包含Ag,Pd,Au和Pt中的任一种的合金,或包含选自金属和合金的两种或更多种的混合物,(B)每层 或(C)至少离子传导性无机材料层的离子传导性无机材料的原料为煅烧粉末。

    Lithium ion secondary battery and process for manufacturing the same
    10.
    发明授权
    Lithium ion secondary battery and process for manufacturing the same 有权
    锂离子二次电池及其制造方法

    公开(公告)号:US09236594B2

    公开(公告)日:2016-01-12

    申请号:US12527430

    申请日:2007-02-16

    摘要: In multilayer wholly solid lithium ion secondary batteries, a laminate having a collector layer of material with high conductivity superimposed on an active material layer has been disposed so as to attain a lowering of battery impedance. Consequently, in the fabrication of each of positive electrode layer and negative electrode layer, stacking of three layers consisting of an active material layer, a collector layer and an active material layer has been needed, thereby posing the problem of complex processing and high production cost. In the invention, a positive electrode layer and a negative electrode layer are fabricated from paste consisting of active material mixed with conductive substance in a given mixing ratio, and no collector layer is disposed. This realizes process simplification and manufacturing cost reduction without deterioration of battery performance and has also been effective in enhancing of battery performance, such as improvement to cycle characteristics.

    摘要翻译: 在多层全固体锂离子二次电池中,已经布置了具有叠加在活性物质层上的具有高导电性的材料的集电体层的层压体,以便获得电池阻抗的降低。 因此,在正极层和负极层的制造中,需要层叠由活性物质层,集电体层和活性物质层构成的3层,因此存在复杂的加工和高生产成本的问题 。 在本发明中,正极层和负极层由以与给定混合比例的与导电物质混合的活性物质组成的糊料制成,没有设置集电体层。 这实现了过程简化和制造成本的降低,而不会降低电池性能,并且还有效地提高电池性能,例如改善循环特性。