Thermal insulating container for a heat generating unit of a fuel cell system
    3.
    发明授权
    Thermal insulating container for a heat generating unit of a fuel cell system 有权
    用于燃料电池系统的发热单元的隔热容器

    公开(公告)号:US07938289B2

    公开(公告)日:2011-05-10

    申请号:US11667356

    申请日:2005-11-02

    IPC分类号: B65D81/38

    摘要: A thermal insulating container (1) of the present invention includes a container body (9) formed of an inner container shell (2) for housing a heat generation unit (H), and of an outer container shell (3) for covering the inner container shell (2), and a vacuum layer (4) located between the inner container shell (2) and the outer container shell (3). Further, the thermal insulating container (1) is characterized in that the heat generation unit-side surface of the inner container shell (2) is covered with a thermal insulator (5). In the thermal insulating container (1), the thermal insulator (5) is provided between the inner container shell (2) and the heat generation unit (5), and the temperature rise of the inner container shell (2) is gas permeation through the inner container shell (2) is restricted.

    摘要翻译: 本发明的隔热容器(1)包括:容纳体(9),其由容纳发热体单元(H)的内容器壳(2)和外容器壳(3)构成, 容器壳(2)和位于内容器壳(2)和外容器壳(3)之间的真空层(4)。 此外,绝热容器(1)的特征在于,内部容器壳体(2)的发热单元侧表面被绝热体(5)覆盖。 在绝热容器(1)中,在内容器壳体(2)和发热体单元(5)之间设置绝热体(5),内部容器壳体(2)的温度升高通过气体渗透 内部容器壳体(2)受到限制。

    FUEL CELL
    4.
    发明申请
    FUEL CELL 有权
    燃料电池

    公开(公告)号:US20100015503A1

    公开(公告)日:2010-01-21

    申请号:US12518592

    申请日:2008-01-31

    IPC分类号: H01M2/00

    摘要: A fuel cell (A1) includes a cell stack (B) and a casing (210) for housing the cell stack (B), and is supplied with two reactant gases flowing separately from each other. The cell stack (B) includes a plurality of solid electrolyte fuel cell units (200) stacked on one another with inter-unit spaces provided therebetween. One of the reactant gases is supplied to the inter-unit spaces and used for power generation. The casing (210) includes a peripheral wall (222) surrounding the cell stack (B). The peripheral wall (222) is provided with at least one gas inlet opening (223) for introducing the one of the reactant gases into the inter-unit spaces and at least one gas outlet opening (224) for discharging the introduced reactant gas, wherein total opening width dimension of the gas inlet opening (223) is greater than total opening width dimension of the gas outlet opening (224).

    摘要翻译: 燃料电池(A1)包括用于容纳电池组(B)的电池组(B)和壳体(210),并且被供应有彼此分开流动的两个反应气体。 电池组(B)包括彼此堆叠的多个固体电解质燃料电池单元(200),其间设置有单位间空间。 其中一种反应气体被提供给单元间空间并用于发电。 壳体(210)包括围绕电池堆(B)的周壁(222)。 周壁(222)设置有至少一个气体入口(223),用于将一个反应气体引入单元间空间和用于排出引入的反应气体的至少一个气体出口(224),其中 气体入口开口(223)的总开口宽度尺寸大于气体出口(224)的总开口宽度尺寸。

    STARTUP METHOD FOR FUEL CELL STACK STRUCTURE, TEMPERATURE CONTROL METHOD FOR FUEL CELL STACK STRUCTURE, AND FUEL CELL STACK STRUCTURE
    5.
    发明申请
    STARTUP METHOD FOR FUEL CELL STACK STRUCTURE, TEMPERATURE CONTROL METHOD FOR FUEL CELL STACK STRUCTURE, AND FUEL CELL STACK STRUCTURE 有权
    燃料电池堆结构的启动方法,燃料电池堆结构的温度控制方法和燃料电池堆叠结构

    公开(公告)号:US20090092866A1

    公开(公告)日:2009-04-09

    申请号:US11722133

    申请日:2005-12-01

    IPC分类号: H01M8/04 H01M2/02 H01M8/02

    摘要: A fuel cell stack structure and a method of starting up the fuel cell stack structure are disclosed. The fuel cell stack structure includes a stack of a plurality of solid electrolyte fuel cells, each equipped with a solid electrolyte simplex cell accommodated in a cell space surrounded by a metallic thin plate-like separator and having one surface exposed to the outside, and a gas flow channel formed in and extending through the solid electrolyte fuel cells to supply gas to the respective cell space areas of the solid electrolyte fuel cells, wherein an area with high-heat capacity is preferentially supplied with and heated by high temperature gas at the stage of increasing temperatures of the plurality of solid electrolyte fuel cells during startup thereof.

    摘要翻译: 公开了燃料电池堆结构和启动燃料电池堆结构的方法。 燃料电池堆结构包括多个固体电解质燃料电池的堆叠,每个固体电解质燃料电池均装有固体电解质单体电池,该固体电解质单体电池被容纳在由金属薄板状隔离物包围并且具有暴露于外部的一个表面的电池空间中, 在固体电解质燃料电池中形成并延伸穿过固体电解质燃料电池的气体流动通道,以向固体电解质燃料电池的各个电池空间区域供应气体,其中具有高热容量的区域优选地被供给高温气体并在该阶段加热 在启动时多个固体电解质燃料电池的温度升高。

    Fuel Cell Device
    6.
    发明申请
    Fuel Cell Device 审中-公开
    燃料电池装置

    公开(公告)号:US20080014488A1

    公开(公告)日:2008-01-17

    申请号:US11628721

    申请日:2005-05-12

    IPC分类号: H01M8/10 H01M2/18

    摘要: A fuel cell device (1) comprises at least one fuel cell unit (10). The fuel cell unit (10) includes a cell plate (11), a separator plate (15) and fixing part (17). The cell plate (11) includes a metal base (13) and a fuel cell (12) supported on the metal base. The separator plate (15) faces the cell plate, the separator plate includes a flat body (15a) and an extension (15c) at least partly extending from a peripheral edge of the body. The extension (15c) includes a side wall (15d) extending from the edge of the body toward the cell plate and a joint (15f) extending from a tip of the side wall in a diametrical direction and joined to the metal base. The fixing part (17) fixes a central part of the cell plate to a central part of the separator plate.

    摘要翻译: 一种燃料电池装置(1)包括至少一个燃料电池单元(10)。 燃料电池单元(10)包括电池板(11),隔板(15)和固定部件(17)。 电池板(11)包括支撑在金属基座上的金属基座(13)和燃料电池(12)。 隔离板(15)面向单元板,隔板包括平坦体(15a)和至少部分地从主体的周缘延伸的延伸部(15c)。 延伸部(15c)包括从主体的边缘朝向单元板延伸的侧壁(15d)和从侧壁的尖端沿直径方向延伸并且接合到金属基底的接头(15f) 。 固定部17将电池板的中央部固定在隔板的中央部。

    Thermal Insulating Container for a Heat Generating Unit of a Fuel Cell System
    7.
    发明申请
    Thermal Insulating Container for a Heat Generating Unit of a Fuel Cell System 有权
    用于燃料电池系统的发热单元的绝热容器

    公开(公告)号:US20070295734A1

    公开(公告)日:2007-12-27

    申请号:US11667356

    申请日:2005-11-02

    IPC分类号: H01M8/02 B65D81/38 F16L59/065

    摘要: A thermal insulating container (1) of the present invention includes a container body (9) formed of an inner container shell (2) for housing a heat generation unit (H), and of an outer container shell (3) for covering the inner container shell (2), and a vacuum layer (4) located between the inner container shell (2) and the outer container shell (3). Further, the thermal insulating container (1) is characterized in that the heat generation unit-side surface of the inner container shell (2) is covered with a thermal insulator (5). In the thermal insulating container (1), the thermal insulator (5) is provided between the inner container shell (2) and the heat generation unit (5), and the temperature rise of the inner container shell (2) is gas permeation through the inner container shell (2) is restricted.

    摘要翻译: 本发明的隔热容器(1)包括:容纳体(9),其由容纳发热体单元(H)的内容器壳(2)和外容器壳(3)构成, 容器壳(2)和位于内容器壳(2)和外容器壳(3)之间的真空层(4)。 此外,绝热容器(1)的特征在于,内部容器壳体(2)的发热单元侧表面被绝热体(5)覆盖。 在绝热容器(1)中,在内容器壳体(2)和发热体单元(5)之间设有绝热体(5),内部容器壳体(2)的温度上升通过气体渗透 内部容器壳体(2)受到限制。

    Unit cell solid oxide fuel cell and related method
    8.
    发明授权
    Unit cell solid oxide fuel cell and related method 有权
    单体固体氧化物燃料电池及相关方法

    公开(公告)号:US07226691B2

    公开(公告)日:2007-06-05

    申请号:US10642734

    申请日:2003-08-19

    摘要: A unit cell for a solid oxide fuel cell is provided with a substrate including a portion having a first porosity, a battery element formed on the substrate and having an electrode layer and an electrolyte layer, and a low porosity layer provided in at least one of the substrate and the battery element to have a second porosity lower than the first porosity. Sizes of a plurality of pores of the low porosity layer falls in a value equal to or less than 10 μm to laminate a part of the battery element on the low porosity layer.

    摘要翻译: 固体氧化物型燃料电池用单电池具备:基板,具有第一孔隙率的部分,形成在基板上的电池元件,具有电极层和电解质层;以及低孔隙率层, 所述基板和所述电池元件具有低于所述第一孔隙率的第二孔隙率。 低孔隙率层的多个孔的尺寸落入等于或小于10μm的值,以将电池元件的一部分层压在低孔隙率层上。

    Collector having multiple resin layers for bipolar lithium ion secondary battery
    9.
    发明授权
    Collector having multiple resin layers for bipolar lithium ion secondary battery 有权
    具有双极性锂离子二次电池的多个树脂层的集电体

    公开(公告)号:US09077040B2

    公开(公告)日:2015-07-07

    申请号:US13395565

    申请日:2010-12-06

    摘要: To provide a method that is capable of suppressing absorption of lithium ions into the inner portion of a resin collector that is used in a bipolar lithium ion secondary battery. The collector for a bipolar lithium ion secondary battery of the invention has at least two conductive layers. One of the conductive layers that constitute the collector (a first conductive layer) is configured by adding a conductive filler into a base material that contains an imide group-containing resin. The other of the conductive layers that constitute the collector (a second conductive layer) is configured by adding a conductive filler into a base material that contains a polar resin containing no imide group. The collector for a bipolar lithium ion secondary battery is further characterized in that when a bipolar electrode is formed, the first conductive layer is arranged on the positive electrode side.

    摘要翻译: 提供一种能够抑制锂离子进入用于双极性锂离子二次电池的树脂集电体的内部的吸收的方法。 本发明的双极性锂离子二次电池的集电体具有至少两个导电层。 构成集电体(第一导电层)的导电层之一通过将导电填料添加到含有含酰亚胺基的树脂的基材中构成。 构成集电体的另一个导电层(第二导电层)通过将导电填料添加到含有不含酰亚胺基的极性树脂的基材中构成。 双极性锂离子二次电池用集电体的特征还在于,在形成双极性电极的情况下,将第一导电层配置在正极侧。