Heat resistant separators and electrical and electronic parts using the same
    5.
    发明申请
    Heat resistant separators and electrical and electronic parts using the same 审中-公开
    耐热分离器和使用其的电气和电子部件

    公开(公告)号:US20070092799A1

    公开(公告)日:2007-04-26

    申请号:US10582086

    申请日:2004-10-26

    申请人: Shinji Naruse

    发明人: Shinji Naruse

    IPC分类号: H01M2/14

    摘要: This invention provides a separator for electrical or electronic parts which is characterized in that the increase ratio in internal resistance of the separator before and after its heat treatment at 300° C. for 45 minutes is within 25%, where the internal resistance is calculated according to the following equation (1): (internal resistance)={(electrical conductivity of electrolytic solution/(electrical conductivity of electrolytic solution-injected separator)}×(thickness of separator)  equation (1)wherein (electrical conductivity when the electrolytic solution is injected into separator) is the electrical conductivity calculated from the AC impedance measured by sandwiching the electrolytic solution-injected separator between two electrodes.

    摘要翻译: 本发明提供一种用于电气或电子部件的隔膜,其特征在于,隔板在300℃下热处理45分钟之前和之后的内阻增加率在25%以内,其中内阻根据 (1):<?in-line-formula description =“In-line formula”end =“lead”?>(internal resistance)= {(电解液的导电性/(电解液 - 注入分离器)}×(分离器的厚度)方程式(1)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中(电解液注入分离器时的导电率) 通过将电解液注入的分离器夹在两个电极之间测量的由AC阻抗计算的电导率。

    Conductive aramid paper and method for producing same
    6.
    发明授权
    Conductive aramid paper and method for producing same 有权
    导电芳族聚酰胺纸及其制造方法

    公开(公告)号:US08747614B2

    公开(公告)日:2014-06-10

    申请号:US14009808

    申请日:2012-03-27

    IPC分类号: D21F11/00

    摘要: Provided is a conductive aramid paper comprising an aramid short fiber, an aramid fibrid, and a conductive filler, and having a density of 0.45 to 1.10 g/cm3, a tensile strength of 2.5 kN/m or higher, and a surface resistivity of 1.0×101 to 5.0×102Ω/□. This conductive aramid paper has an electric field relaxation function and an antistatic function enough to be favorably used as a material for reducing corona in rotating electrical machines, and also antistatic components for electrical and electronic devices, and sub-materials for processing or assembling any of these.

    摘要翻译: 提供一种导电性芳族聚酰胺纸,其包含芳族聚酰胺短纤维,芳族聚酰胺分散纤维和导电填料,密度为0.45〜1.10g / cm 3,拉伸强度为2.5kN / m以上,表面电阻率为1.0 ×101〜5.0×102&OHgr; /□。 该导电性芳族聚酰胺纸具有电场弛豫功能和抗静电功能,足以有利地用作用于减少旋转电机中的电晕的材料,以及用于电气和电子设备的抗静电部件以及用于加工或组装任何 这些。

    CONDUCTIVE ARAMID PAPER AND METHOD FOR PRODUCING SAME
    7.
    发明申请
    CONDUCTIVE ARAMID PAPER AND METHOD FOR PRODUCING SAME 有权
    导电性ARAMID PAPER及其制造方法

    公开(公告)号:US20140034256A1

    公开(公告)日:2014-02-06

    申请号:US14009808

    申请日:2012-03-27

    IPC分类号: D21H15/00

    摘要: Provided is a conductive aramid paper comprising an aramid short fiber, an aramid fibrid, and a conductive filler, and having a density of 0.45 to 1.10 g/cm3, a tensile strength of 2.5 kN/m or higher, and a surface resistivity of 1.0×101 to 5.0×102Ω/□. This conductive aramid paper has an electric field relaxation function and an antistatic function enough to be favorably used as a material for reducing corona in rotating electrical machines, and also antistatic components for electrical and electronic devices, and sub-materials for processing or assembling any of these.

    摘要翻译: 提供一种导电性芳族聚酰胺纸,其包含芳族聚酰胺短纤维,芳族聚酰胺分散纤维和导电填料,密度为0.45〜1.10g / cm 3,拉伸强度为2.5kN / m以上,表面电阻率为1.0 ×101〜5.0×102Omega /□。 该导电性芳族聚酰胺纸具有电场弛豫功能和抗静电功能,足以有利地用作用于减少旋转电机中的电晕的材料,以及用于电气和电子设备的抗静电部件以及用于加工或组装任何 这些。

    METHOD FOR PRODUCING ELECTRODE SHEET
    8.
    发明申请
    METHOD FOR PRODUCING ELECTRODE SHEET 审中-公开
    生产电极片的方法

    公开(公告)号:US20090208841A1

    公开(公告)日:2009-08-20

    申请号:US12309649

    申请日:2007-07-20

    申请人: Shinji Naruse

    发明人: Shinji Naruse

    IPC分类号: H01M4/02 H01G9/04 H01M4/04

    摘要: This invention discloses a method for producing an electrode sheet adapted to high-temperature drying and to charge and discharge under high voltage, comprising applying onto a collector a slurry which comprises an electrode active material, electroconductive agent, binder and solvent, using as the binder fibrid of meta-aramid, and pressing the electrode sheet.

    摘要翻译: 本发明公开了一种适用于高温干燥并在高电压下进行充放电的电极片的制造方法,其特征在于,使用包含电极活性物质,导电剂,粘合剂和溶剂的浆料作为粘合剂 间位芳族聚酰胺的纤维状物,并压制电极片。

    Vehicle air conditioner
    9.
    发明授权
    Vehicle air conditioner 有权
    车用空调

    公开(公告)号:US07380587B2

    公开(公告)日:2008-06-03

    申请号:US11210002

    申请日:2005-08-23

    IPC分类号: B60H1/00

    摘要: An air conditioner for a vehicle is provided with an air conditioning unit for blowing conditioned air to a passenger compartment of the vehicle, multiple seat air conditioning units for respectively controlling temperatures of seats of the vehicle, and a control unit for controlling the air conditioning unit and the seat air conditioning units. The larger the difference between a target blowing-out temperature of the air conditioning unit and a compartment setting temperature of the passenger compartment, the larger the degree of influence of the target blowing-out temperature on a seat target blowing-out temperature in the calculation of the seat target blowing-out temperature, based on which the seat air conditioning unit is controlled.

    摘要翻译: 一种用于车辆的空调装置,具有用于向车辆的乘客室吹送调节空气的空调单元,用于分别控制车辆座椅温度的多个座椅空调单元和用于控制空调单元的控制单元 和座椅空调机组。 空调单元的目标吹出温度与乘客室的室设定温度之间的差越大,计算中的目标吹出温度对座椅目标吹出温度的影响程度越大 的座椅空气调节单元被控制的座椅目标吹出温度。

    Aramid thin sheet material and electrical/electronic parts using the same

    公开(公告)号:US20070167101A1

    公开(公告)日:2007-07-19

    申请号:US11578570

    申请日:2004-10-26

    IPC分类号: D04H13/00 D04H1/00

    摘要: The invention provides an aramid thin sheet material comprising two components of aramid staple fibers and fibrillated aramid, or said two components and aramid fibrid, in particular, characterized by satisfying both of the following expressions (1) and (2): [internal resistance] (μm)≦250 (μm)  expression (1) [Oken-type gas permeability] (sec/100 cm3)≧0.5 (sec/100 cm3)  expression (2) wherein the [internal resistance] is a resistance value calculated by the following expression (3): [ internal ⁢   ⁢ resistance ⁢   ] ⁢ ( μ ⁢   ⁢ m ) = [ electrical ⁢   ⁢ conductivity ⁢   of ⁢   ⁢ electrolyic ⁢   ⁢ solution ] [ electrical ⁢   ⁢ conductivity of ⁢   ⁢ electrolytic solution ⁢ - ⁢ injected ⁢   thin ⁢   ⁢ sheet ⁢   ⁢ material ] × [ thickness ⁢   of ⁢   ⁢ the ⁢     ⁢ thinsheet   ⁢ material ] ⁢ ( μ ⁢   ⁢ m ) . expression ⁢   ⁢ ( 3 )