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    • 3. 发明授权
    • Open-celled rigid polyurethane foam and method for producing the same
    • 开孔硬质聚氨酯泡沫及其制造方法
    • US06235806B1
    • 2001-05-22
    • US09337686
    • 1999-06-22
    • Michihiro OhgaMasato HayashiJunnichi HosakaReishi Naka
    • Michihiro OhgaMasato HayashiJunnichi HosakaReishi Naka
    • C08G1834
    • C08J9/34B29C44/025C08J2205/05C08J2205/10C08J2375/04
    • In order to provide an open-celled rigid polyurethane foam, which realizes a low material cost per unit volume of the foam and excellent surface smoothness because of its unique structure, and a thermal insulation material comprising the foam, an open-celled rigid polyurethane foam which has an open cell content of not less than 99% in a state that a skin layer is left on the foam is produced by foam molding, preferably multiple-stage compression molding, of foaming components containing a polyol component and an isocyanate component with an equivalent ratio of NCO/OH of about 0.55-0.95, and a blowing agent, preferably water, and a thermal insulation material is produced from the foam preferably subjected to a baking treatment by means of far-infrared ray exposure. Further, in order to provide a vacuum insulation material that does not result waste upon production, and provide good appearance and high reliability when used for products such as freezing and refrigerating apparatuses by using the aforementioned open-celled rigid polyurethane foam, a vacuum insulation material is produced by covering the foam as a whole with a container composed of a gas barrier film, reducing internal pressure of the container, and sealing the container to provide the vacuum insulation material.
    • 为了提供一种开孔刚性聚氨酯泡沫,其泡沫单位体积的材料成本低,由于其独特的结构而具有优异的表面平滑性,而且包括泡沫的绝热材料,开孔硬质聚氨酯泡沫 通过泡沫成型,优选多级压缩成型,在含有多元醇成分和异氰酸酯成分的发泡成分中制造具有不小于99%的开孔含量, NCO / OH的当量比为约0.55-0.95,发泡剂,优选为水,并且由优选通过远红外线曝光进行烘烤处理的泡沫制成绝热材料。 此外,为了提供不会在生产时造成浪费的真空绝热材料,并且当通过使用上述开孔硬质聚氨酯泡沫体用于冷冻和制冷装置等产品时,提供良好的外观和高可靠性的真空绝热材料 是通过用由阻气膜构成的容器整体覆盖泡沫而产生的,降低了容器的内部压力,并且密封容器以提供真空绝热材料。
    • 4. 发明授权
    • Temperature measuring apparatus
    • 温度测量仪
    • US08608378B2
    • 2013-12-17
    • US13516916
    • 2010-12-06
    • Hisaki IshidaMasato HayashiKoudai Higashi
    • Hisaki IshidaMasato HayashiKoudai Higashi
    • G01K7/00
    • G01K1/18H01L21/67248H01L2224/48091H01L2224/8592H01L2924/00014
    • Disclosed is a temperature measuring apparatus which is provided with: a substrate (2); a temperature sensor (3) disposed on one surface of the substrate (2); and a wire (8) disposed to electrically connect together a circuit, which detects a temperature using the temperature sensor (3), and the temperature sensor (3). In said surface of the substrate (2), a recessed section (7) having a heat capacity smaller than that of the material of the substrate (2) is formed on the periphery of the temperature sensor (3). The recessed section (7) is formed at a predetermined interval from the temperature sensor (3) such that the recessed section surrounds the temperature sensor (3) and has predetermined width and depth. Preferably, the low heat capacity zone is the recessed section (7), i.e., the groove having a recessed cross-section.
    • 公开了一种温度测量装置,其设置有:基板(2); 设置在所述基板(2)的一个表面上的温度传感器(3); 以及布置成将使用温度传感器(3)检测温度的电路和温度传感器(3)电连接在一起的线(8)。 在基板(2)的所述表面中,在温度传感器(3)的周围形成有具有小于基板(2)的材料的热容的凹部(7)。 凹部(7)从温度传感器(3)以预定的间隔形成,使得凹部包围温度传感器(3)并且具有预定的宽度和深度。 优选地,低热容区是凹部(7),即凹槽具有凹入的横截面。
    • 5. 发明申请
    • BATTERY MODULE CHARGING SYSTEM
    • 电池模块充电系统
    • US20130257371A1
    • 2013-10-03
    • US13994360
    • 2011-12-26
    • Tomoyuki KomaiMikihiko KataokaKatsutoshi HigumaMasato Hayashi
    • Tomoyuki KomaiMikihiko KataokaKatsutoshi HigumaMasato Hayashi
    • H02J7/02
    • H02J50/80H01M10/44H02J7/0019H02J7/025H02J50/10H02J50/40
    • A battery module charging system includes a power transmitting device, including a primary coil configured to transmit AC power, and a power receiving unit, including a secondary coil configured to receive the AC power transmitted from the primary coil by electromagnetic induction. The power receiving unit is configured to convert the received AC power into DC power. A positioning mechanism is configured to allow the power transmitting device to be detachably attached to the power receiving unit and to position the primary and secondary coils such that the coils are allowed to be electromagnetically coupled to each other when the power transmitting device is attached to the power receiving unit. Further, a selection circuitry is configured to selectively charge a plurality of cells in a battery module with the DC power. The plurality of cells, the cells being secondary batteries, are connected to each other in a series.
    • 电池模块充电系统包括:电力传输装置,包括被配置为传送AC电力的初级线圈;以及受电单元,包括被配置为通过电磁感应接收从初级线圈发送的AC电力的次级线圈。 受电单元被配置为将接收的AC电力转换为DC电力。 定位机构被配置为允许动力传递装置可拆卸地附接到受电单元并且定位主和次级线圈,使得当电力传输装置附接到电力传输装置时,允许线圈彼此电磁耦合 受电单元 此外,选择电路被配置为以DC电力选择性地对电池模块中的多个单元进行充电。 多个电池,作为二次电池的电池串联连接。