Electric storage device
    5.
    发明授权
    Electric storage device 有权
    蓄电装置

    公开(公告)号:US09034514B2

    公开(公告)日:2015-05-19

    申请号:US13992645

    申请日:2011-12-19

    摘要: In order to accurately protect current collectors included in an electric storage device, the electric storage device includes an electric storage element 3 arranged inside an electric storage device case BC; an electrode terminal 5 arranged outside the electric storage device case; a current collector 4 including a first posture part FP and a second posture part SP, the first posture part FP extending along a surface of the electric storage device case on which the electrode terminal 5 is arranged, the second posture part SP extending from an end portion of the first posture part toward the side opposite to the electrode terminal, the current collector fixed at the first posture part FP by means of a fixing member 8 penetrating through an opening formed in the electric storage device case, the current collector supporting the electric storage element 3 by the second posture part SP, thereby electrically connecting the electrode terminal 5 and the electric storage element 3; and a reinforcing member 13 arranged on the side of the first posture part FP where the electric storage element 3 is present, so as to extend longer toward the second posture part side than the fixing member 8, and sandwiched and fixed between the first posture part FP and the fixing member 8.

    摘要翻译: 为了精确地保护蓄电装置所具备的集电体,蓄电装置具备:设置在蓄电装置壳体BC内部的蓄电元件3; 布置在蓄电装置壳体外部的电极端子5; 包括第一姿态部分FP和第二姿势部分SP的集电体4,第一姿势部分FP沿着布置有电极端子5的蓄电装置壳体的表面延伸,第二姿势部分SP从端部延伸 所述第一姿势部分朝向与所述电极端子相反的一侧的部分,所述集电体通过穿过形成在所述蓄电装置壳体中的开口的固定部件8固定在所述第一姿势部分FP,所述集电体支撑所述电气 通过第二姿势部分SP存储元件3,从而电连接电极端子5和蓄电元件3; 以及配置在第一姿势部FP的存在着蓄电元件3的一侧的加强构件13,以比固定构件8朝向第二姿势部侧延伸的方式延伸,并被固定在第一姿势部 FP和固定构件8。

    Hand drying device
    7.
    发明授权
    Hand drying device 有权
    手干装置

    公开(公告)号:US08850713B2

    公开(公告)日:2014-10-07

    申请号:US13698532

    申请日:2010-07-06

    IPC分类号: F26B21/00 A47K10/48

    CPC分类号: A47K10/48

    摘要: A hand drying device includes: a drying chamber; a nozzle; a supply unit; a hand detection sensor; a control unit; and an illuminating unit. The drying chamber includes: an opening; a first inner wall surface; and a second inner wall surface facing the first inner wall surface. A hand is inserted from the opening into a space between the first inner wall surface and the second inner wall surface. The nozzle is arranged on the first inner wall surface and is configured to blow an air stream toward the second inner wall surface. A center axis of the nozzle and an optical axis of the illuminating unit intersect with each other at a proper position in the drying chamber where a hand is supposed to be inserted.

    摘要翻译: 手干燥装置包括:干燥室; 一个喷嘴; 供应单位 手检测传感器; 一个控制单元; 和照明单元。 干燥室包括:开口; 第一内墙表面; 以及面向第一内壁表面的第二内壁表面。 将手从开口插入到第一内壁表面和第二内壁表面之间的空间中。 喷嘴布置在第一内壁表面上并且构造成朝向第二内壁表面吹送空气流。 喷嘴的中心轴和照明单元的光轴在要插入手的干燥室中的适当位置处彼此相交。

    METHOD FOR PROVIDING GLASS INFORMATION AND GLASS MATERIAL
    9.
    发明申请
    METHOD FOR PROVIDING GLASS INFORMATION AND GLASS MATERIAL 审中-公开
    提供玻璃信息和玻璃材料的方法

    公开(公告)号:US20130065745A1

    公开(公告)日:2013-03-14

    申请号:US13605143

    申请日:2012-09-06

    IPC分类号: G06F17/30 C03C3/00

    CPC分类号: G01N33/386

    摘要: There is provided a method for providing glass information and a glass material capable of preventing a generation of a gap between an evaluation regarding chemical durability of the glass material and an actual surface state, which is the method for providing glass information for providing information regarding the chemical durability of the glass material, wherein a correlation between a variation of hydrogen ion concentration indexes of a process liquid in which the glass material is immersed, and a variation of chemical durability index values of a prescribed types of glass materials, is tabulated in a visible form, and is provided individually for each type of the glass materials.

    摘要翻译: 提供了一种提供玻璃信息的方法和能够防止在关于玻璃材料的化学耐久性的评估与实际表面状态之间产生间隙的玻璃材料,这是提供用于提供有关玻璃的信息的玻璃信息的方法 玻璃材料的化学耐久性,其中将浸渍有玻璃材料的处理液体的氢离子浓度指数的变化与规定类型的玻璃材料的化学耐久性指数值的变化之间的相关性列在 可视形式,并且为每种类型的玻璃材料单独提供。