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    • 1. 发明授权
    • Vapor treatment system for volatile liquid
    • 挥发性液体的蒸气处理系统
    • US5931141A
    • 1999-08-03
    • US166525
    • 1998-10-06
    • Yuji Chino
    • Yuji Chino
    • B60K15/035F02M25/08F02M33/02F02M15/00
    • F02M25/089B60K15/035B60K15/03504B60K15/03519B60K2015/03414B60K2015/03509B60K2015/03576
    • A vapor treatment system incorporated with an automotive fuel storage tank for a gasoline. The vapor treatment system comprises a vapor adsorbent canister containing therein vapor adsorbent. A first ventilation line is provided to have a first end section connected to an upper space inside the storage tank, and a second end section connected to the vapor adsorbent canister. A vapor control valve is disposed in the first ventilation line to control flow of vapor of the gasoline passing through the first ventilation line. A second ventilation line is provided to have a first end section connected to a liquid supply pipe through which the gasoline is supplied into the storage tank, and a second end section connected to the vapor adsorbent canister. A vapor-liquid contacting device is provided to include a container disposed inside the storage tank. A return line is provided such that the gasoline is returned from an engine through it into the storage tank. The return line has an end section located in the container of the vapor-liquid contacting device so as to fill the container with the returned gasoline. A purge line is provided to have a first end section located in the container and close to a bottom of the container of the vapor-liquid contacting device, and a second end section connected to the vapor adsorbent canister. Additionally, a vacuum pump is disposed in the purge line and operated to purge the vapor from the vapor adsorbent and feed the purged vapor into the container of the vapor-liquid contacting device so that the vapor is absorbed in the gasoline in the container of the vapor-liquid contacting device.
    • 一种与用于汽油的汽车燃料储罐结合的蒸汽处理系统。 蒸汽处理系统包括含有蒸汽吸附剂的蒸汽吸附剂罐。 第一通气管线被设置成具有连接到储罐内的上部空间的第一端部分和连接到蒸气吸收剂罐的第二端部分。 蒸汽控制阀设置在第一通气管线中,以控制通过第一通风管线的汽油的蒸汽流。 第二通风管路设置成具有连接到液体供给管的第一端部分,汽油通过该供应管被供应到储罐中,第二端部连接到蒸气吸收剂罐。 气 - 液接触装置设置成包括设置在储罐内的容器。 提供返回管线,使得汽油通过其从发动机返回到储罐中。 返回管线具有位于气液接触装置的容器中的端部,以便用返回的汽油填充容器。 提供净化管线以使第一端部位于容器中并靠近气液接触装置的容器的底部,以及连接到蒸汽吸附剂罐的第二端部。 此外,真空泵设置在净化管线中并且被操作以从蒸汽吸附剂中吹扫蒸气并将净化的蒸汽送入气液接触装置的容器中,使得蒸气被吸收在汽油 - 液体接触装置的容器中的汽油中 汽液接触装置。
    • 3. 发明申请
    • ELECTRO-OPTICAL DEVICE, ELECTRONIC APPARATUS, AND METHOD OF MANUFACTURING THE SAME
    • 电光装置,电子装置及其制造方法
    • US20080067506A1
    • 2008-03-20
    • US11846090
    • 2007-08-28
    • Shuichi TAKEIYuji CHINO
    • Shuichi TAKEIYuji CHINO
    • H01L51/52H01L51/56
    • H01L51/0018H01L27/3246H01L51/0005
    • An electro-optical device includes a substrate having a plurality of pixel electrodes thereon, a bank structure formed on the substrate and provided with a plurality of pixel apertures corresponding to the plurality of pixel electrodes, an injection layer formed in each of the plurality of pixel apertures for injecting electrons or holes, an organic semiconductor layer formed on the injection layer in each of a plurality of pixel apertures; and an electrode formed on the organic semiconductor layer, P wherein the individual bank includes a lyophilic layer formed on the substrate and a lyophobic layer formed on the lyophilic layer. Here, each of the plurality of the pixel apertures is formed so as to penetrate the lyophilic layer and the lyophobic layer. The lyophobic layer has relatively weak affinity for a material solution used for forming the injection layer in comparison with the lyophilic layer and includes a plurality of lyophilic portions corresponding to the plurality of pixel apertures.
    • 一种电光装置,包括:具有多个像素电极的基板;形成在所述基板上并具有与所述多个像素电极对应的多个像素孔的堤结构;形成在所述多个像素 用于注入电子或空穴的孔,形成在多个像素孔中的每一个中的注入层上的有机半导体层; 以及形成在有机半导体层P上的电极,其中单独的堤包括在基底上形成的亲液层和在亲液层上形成的疏液层。 这里,多个像素孔径中的每一个形成为穿透亲液层和疏液层。 疏液层对于与亲液层相比用于形成注射层的材料溶液具有相对弱的亲和性,并且包括对应于多个像素孔的多个亲液部分。
    • 5. 发明授权
    • Fuel vapor treatment device
    • 燃油蒸汽处理装置
    • US5641344A
    • 1997-06-24
    • US566717
    • 1995-12-04
    • Masafumi TakahashiYuji ChinoHiroyuki Yoshida
    • Masafumi TakahashiYuji ChinoHiroyuki Yoshida
    • B01D53/04F02M25/08
    • B01D53/0415F02M25/0854B01D2253/102B01D2257/702B01D2258/01B01D2259/40086B01D2259/4516B01D2259/4566F02M2025/0863
    • A fuel vapor treatment device or canister for a vehicle evaporative emission control system has a casing filled with a fuel vapor absorbent material in its chamber. A relay pipe projects outwardly from one end the casing and communicates with the chamber. A liquid-fuel separator having a cavity is sealingly mounted to the one end of the casing so that the relay pipe extends into the cavity. Inlet and outlet pipes, which communicate with the cavity and fuel vapor, are formed in the separator. A fuel vapor outflow passage is formed inside the separator and communicates with the outlet pipe. The suction pipe has a reduced size section with an orifice. A liquid-fuel suction pipe, which communicates with the outflow passage through the orifice, extends perpendicularly downwardly from the outflow passage. The suction pipe extends from the orifice to the area where the liquid-fuel collects.
    • 用于车辆蒸发排放控制系统的燃料蒸汽处理装置或罐具有在其室中填充有燃料蒸气吸收材料的壳体。 继电器管从一端向外突出并与腔连通。 具有空腔的液体 - 燃料分离器密封地安装到壳体的一端,使得继电器管延伸到空腔中。 在分离器中形成与空腔和燃料蒸气连通的入口管和出口管。 燃料蒸汽流出通道形成在分离器内并与出口管连通。 抽吸管具有减小的具有孔口的尺寸部分。 通过孔口与流出通道连通的液体 - 燃料吸入管从流出通道垂直向下延伸。 吸入管从孔口延伸到液体 - 燃料收集的区域。
    • 6. 发明授权
    • Electro-optical device, electronic apparatus, and method of manufacturing the same
    • 电光装置,电子装置及其制造方法
    • US07902750B2
    • 2011-03-08
    • US11846090
    • 2007-08-28
    • Shuichi TakeiYuji Chino
    • Shuichi TakeiYuji Chino
    • H01L51/50
    • H01L51/0018H01L27/3246H01L51/0005
    • An electro-optical device includes a substrate having a plurality of pixel electrodes thereon, a bank structure formed on the substrate and provided with a plurality of pixel apertures corresponding to the plurality of pixel electrodes, an injection layer formed in each of the plurality of pixel apertures for injecting electrons or holes, an organic semiconductor layer formed on the injection layer in each of a plurality of pixel apertures; and an electrode formed on the organic semiconductor layer, wherein the individual bank includes a lyophilic layer formed on the substrate and a lyophobic layer formed on the lyophilic layer. Here, each of the plurality of the pixel apertures is formed so as to penetrate the lyophilic layer and the lyophobic layer.
    • 一种电光装置,包括:具有多个像素电极的基板,形成在所述基板上并具有对应于所述多个像素电极的多个像素孔的堤结构,形成在所述多个像素的每一个中的注入层 用于注入电子或空穴的孔,形成在多个像素孔中的每一个中的注入层上的有机半导体层; 以及形成在所述有机半导体层上的电极,其中所述单独的堤包括在所述基底上形成的亲液层和在所述亲液层上形成的疏液层。 这里,多个像素孔径中的每一个形成为穿透亲液层和疏液层。
    • 7. 发明授权
    • Organic electroluminescence device capable of preventing light from being not emitted
    • 能够防止不发光的有机电致发光元件
    • US08242685B2
    • 2012-08-14
    • US12420401
    • 2009-04-08
    • Yuji ChinoSuguru Akagawa
    • Yuji ChinoSuguru Akagawa
    • H01J1/62H01J63/04
    • H01L51/5228H01L27/3246
    • An organic electroluminescence device includes an organic electroluminescence element having a function layer interposed between a first electrode and a second electrode. The function layer includes at least an organic light emission layer. The electroluminescence device includes: partition walls which define concave portions and each of formation areas of the organic electroluminescence element within each of the concave portions to arrange the function layer within the concave portion; and auxiliary electrodes which are each arranged continuously on the partition wall and within the concave portion. The second electrode is formed in an area where both the formation area of the organic electroluminescence element and a non-formation area of the organic electroluminescence element overlap with each other, so as to be electrically connected to the function layer and the auxiliary electrode and is formed continuously between the function layer arranged within the concave portion and the auxiliary electrode in a state where the second electrode contacts with the function layer arranged within the concave portion and the auxiliary electrode. The auxiliary electrode is formed to be thicker than the second electrode.
    • 有机电致发光器件包括具有介于第一电极和第二电极之间的功能层的有机电致发光元件。 功能层至少包括有机发光层。 所述电致发光元件具备:在所述凹部内形成所述有机电致发光元件的凹部和形成区域的分隔壁,以将所述功能层配置在所述凹部内; 以及辅助电极,其各自连续地布置在分隔壁上并在凹部内。 第二电极形成在有机电致发光元件的形成区域和有机电致发光元件的非形成区域都彼此重叠的区域中,以与功能层和辅助电极电连接,并且是 在第二电极与布置在凹部内的功能层接触的状态和辅助电极之间,在布置在凹部中的功能层与辅助电极之间连续形成。 辅助电极形成为比第二电极厚。
    • 8. 发明申请
    • ORGANIC ELECTROLUMINESCENCE DEVICE
    • 有机电致发光器件
    • US20090273279A1
    • 2009-11-05
    • US12420401
    • 2009-04-08
    • Yuji CHINOSuguru AKAGAWA
    • Yuji CHINOSuguru AKAGAWA
    • H01J1/62
    • H01L51/5228H01L27/3246
    • An organic electroluminescence device includes an organic electroluminescence element having a function layer interposed between a first electrode and a second electrode. The function layer includes at least an organic light emission layer. The electroluminescence device includes: partition walls which define concave portions and each of formation areas of the organic electroluminescence element within each of the concave portions to arrange the function layer within the concave portion; and auxiliary electrodes which are each arranged continuously on the partition wall and within the concave portion. The second electrode is formed in an area where both the formation area of the organic electroluminescence element and a non-formation area of the organic electroluminescence element overlap with each other, so as to be electrically connected to the function layer and the auxiliary electrode and is formed continuously between the function layer arranged within the concave portion and the auxiliary electrode in a state where the second electrode contacts with the function layer arranged within the concave portion and the auxiliary electrode. The auxiliary electrode is formed to be thicker than the second electrode.
    • 有机电致发光器件包括具有介于第一电极和第二电极之间的功能层的有机电致发光元件。 功能层至少包括有机发光层。 所述电致发光元件具备:在所述凹部内形成所述有机电致发光元件的凹部和形成区域的分隔壁,以将所述功能层配置在所述凹部内; 以及辅助电极,其各自连续地布置在分隔壁上并在凹部内。 第二电极形成在有机电致发光元件的形成区域和有机电致发光元件的非形成区域都彼此重叠的区域中,以与功能层和辅助电极电连接,并且是 在第二电极与布置在凹部内的功能层接触的状态和辅助电极之间,在布置在凹部中的功能层与辅助电极之间连续形成。 辅助电极形成为比第二电极厚。