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    • 1. 发明授权
    • Fuel cell vehicle
    • 燃料电池车
    • US07540343B2
    • 2009-06-02
    • US11428698
    • 2006-07-05
    • Akira NakashimaTohru OnoDaisuke Tsurumaki
    • Akira NakashimaTohru OnoDaisuke Tsurumaki
    • B60K1/00
    • B60K1/00B62D25/025B62D25/20B62D25/2036
    • A fuel cell vehicle includes: a vehicle body; a floor panel provided in the vehicle body that has a floor tunnel that bulges in substantially a center in the width direction of the vehicle body; a pair of front seats each having a seating surface and a seat back and disposed on the floor panel outside of the floor tunnel in the width direction of the vehicle body; seat rails provided between the front seats and the floor panel and adapted to be able to move the front seats in the longitudinal direction of the vehicle body; and a fuel cell stack having a plurality of unit fuel cells stacked in the longitudinal direction of the vehicle body, being disposed under the floor tunnel so as to be substantially parallel with the seat rails.
    • 燃料电池车辆包括:车体; 设置在所述车身中的地板面板,所述地板通道具有在所述车体的宽度方向上的大致中心突出的地板通道; 一对前排座椅,每个前座椅具有座位表面和座椅靠背,并且在车体的宽度方向上设置在地板通道外面的地板面板上; 座椅导轨设置在前排座椅和地板面板之间,适于能够沿着车身纵向方向移动前排座椅; 以及燃料电池堆,其具有在车体的纵向方向上堆叠的多个单位燃料电池,布置在地板通道下方以与座椅轨道基本平行。
    • 2. 发明申请
    • FUEL CELL VEHICLE
    • 燃油电池车
    • US20070007054A1
    • 2007-01-11
    • US11428698
    • 2006-07-05
    • Akira NakashimaTohru OnoDaisuke Tsurumaki
    • Akira NakashimaTohru OnoDaisuke Tsurumaki
    • B60K1/00
    • B60K1/00B62D25/025B62D25/20B62D25/2036
    • A fuel cell vehicle includes: a vehicle body; a floor panel provided in the vehicle body that has a floor tunnel that bulges in substantially a center in the width direction of the vehicle body; a pair of front seats each having a seating surface and a seat back and disposed on the floor panel outside of the floor tunnel in the width direction of the vehicle body; seat rails provided between the front seats and the floor panel and adapted to be able to move the front seats in the longitudinal direction of the vehicle body; and a fuel cell stack having a plurality of unit fuel cells stacked in the longitudinal direction of the vehicle body, being disposed under the floor tunnel so as to be substantially parallel with the seat rails.
    • 燃料电池车辆包括:车体; 设置在所述车身中的地板面板,所述地板通道具有在所述车体的宽度方向上的大致中心突出的地板通道; 一对前排座椅,每个前座椅具有座位表面和座椅靠背,并且在车体的宽度方向上设置在地板通道外面的地板面板上; 座椅导轨设置在前排座椅和地板面板之间,适于能够沿着车身纵向方向移动前排座椅; 以及燃料电池堆,其具有在车体的纵向方向上堆叠的多个单位燃料电池,布置在地板通道下方以与座椅轨道基本平行。
    • 3. 发明申请
    • Gaseous fuel vehicle rear structure
    • 气体燃料车辆后部结构
    • US20050161935A1
    • 2005-07-28
    • US11041796
    • 2005-01-21
    • Tohru OnoAkira NakashimaYusuke Sogawa
    • Tohru OnoAkira NakashimaYusuke Sogawa
    • B60K15/07B62D21/15B60P3/22B62D21/00
    • B60K15/07B60K2015/0638B62D21/152B62D21/155
    • A rear structure of a gaseous fuel vehicle in this invention includes right and left rear frame members, and a support frame mounted to the right and left rear frame members, on which support frame a gaseous fuel tank is mounted. Each of the right and left rear frame members is constituted by a curved member which includes a curved portion curving upward, and a front linear portion and a rear linear portion which are lower than the highest portion of the curved portion. The support frame is attached to the front linear portions and the rear linear portions. The front linear portions are attached to the rear end of a vehicle frame to provide a low floor in a passenger compartment. A load applied to the rear ends of the right and left rear frame members is dispersed into the right and left rear frame members and the support frame, and transmitted to the vehicle frame.
    • 本发明的气体燃料车辆的后部结构包括右后框架构件和左后框架构件,以及安装在右后框架构件和左后框架构件上的支撑框架,支撑框架安装在气体燃料箱上。 右后框架构件和左后框架构件均由弯曲构件构成,该构件包括向上弯曲的弯曲部分和比弯曲部分的最高部分低的前直线部分和后直线部分。 支撑框架附接到前线性部分和后线性部分。 前线性部分附接到车架的后端以在乘客舱中提供低地板。 施加到左右后框架构件的后端的负荷分散在左右后框架构件和支撑框架中,并被传递到车架。
    • 5. 发明授权
    • Gaseous fuel vehicle rear structure
    • 气体燃料车辆后部结构
    • US07264277B2
    • 2007-09-04
    • US11041796
    • 2005-01-21
    • Tohru OnoAkira NakashimaYusuke Sogawa
    • Tohru OnoAkira NakashimaYusuke Sogawa
    • B60P3/22
    • B60K15/07B60K2015/0638B62D21/152B62D21/155
    • A rear structure of a gaseous fuel vehicle in this invention includes right and left rear frame members, and a support frame mounted to the right and left rear frame members, on which support frame a gaseous fuel tank is mounted. Each of the right and left rear frame members is constituted by a curved member which includes a curved portion curving upward, and a front linear portion and a rear linear portion which are lower than the highest portion of the curved portion. The support frame is attached to the front linear portions and the rear linear portions. The front linear portions are attached to the rear end of a vehicle frame to provide a low floor in a passenger compartment. A load applied to the rear ends of the right and left rear frame members is dispersed into the right and left rear frame members and the support frame, and transmitted to the vehicle frame.
    • 本发明的气体燃料车辆的后部结构包括右后框架构件和左后框架构件,以及安装在右后框架构件和左后框架构件上的支撑框架,支撑框架安装在气体燃料箱上。 右后框架构件和左后框架构件均由弯曲构件构成,该构件包括向上弯曲的弯曲部分和比弯曲部分的最高部分低的前直线部分和后直线部分。 支撑框架附接到前线性部分和后线性部分。 前线性部分附接到车架的后端以在乘客舱中提供低地板。 施加到左右后框架构件的后端的负荷分散在左右后框架构件和支撑框架中,并被传递到车架。
    • 7. 发明授权
    • Method for forming amorphous silica-based coating film with low dielectric constant and thus obtained amorphous silica-based coating film
    • 用于形成具有低介电常数的无定形二氧化硅基涂膜的方法,由此获得无定形二氧化硅基涂膜
    • US08227028B2
    • 2012-07-24
    • US12310486
    • 2007-07-11
    • Miki EgamiAkira NakashimaMichio Komatsu
    • Miki EgamiAkira NakashimaMichio Komatsu
    • B05D3/02B05D3/04H01L29/00
    • C09D1/00C09D4/00H01L21/316C08G77/04
    • A method of forming on a substrate an amorphous silica-based coating film having a low dielectric constant of 3.0 or below and a film strength (Young's modulus) of 3.0 GPa or more, which comprises, as a typical one, the steps of; (a) coating on the substrate a liquid composition containing hydrolysate of an organic silicon compound or compounds hydrolyzed in the presence of tetraalkylammonium hydroxide (TAAOH); (b) setting the substrate in a chamber and then drying a coating film formed on the substrate at a temperature in the range from 25 to 340° C.; (c) heating the coating film at a temperature in the range from 105 to 450° C. with introduction of a superheated steam having such a temperature into the chamber, and (d) curing the coating film at a temperature in the range from 350 to 450° C. with introduction of a nitrogen gas into the chamber.
    • 一种在基板上形成介电常数低于3.0或更低的无定形二氧化硅基涂层以及3.0GPa或更高的膜强度(杨氏模量)的方法,其中典型的步骤包括: (a)在基材上涂覆含有有机硅化合物的水解产物或在四烷基氢氧化铵(TAAOH))存在下水解的化合物的液体组合物; (b)将基板设置在室中,然后在25至340℃的温度范围内干燥形成在基板上的涂膜。 (c)在105至450℃的温度范围内加热涂膜,并将具有这种温度的过热蒸汽引入室中,和(d)在350℃的温度下固化涂膜 至450℃,同时将氮气引入室中。
    • 8. 发明授权
    • Sheet feeding device
    • 送纸装置
    • US07600752B2
    • 2009-10-13
    • US11700878
    • 2007-02-01
    • Akira NakashimaToyoaki Nanba
    • Akira NakashimaToyoaki Nanba
    • B65H7/12
    • B65H1/14B65H1/18B65H2301/42252B65H2801/06B65H2801/21
    • A sheet feeding device includes a stacking plate, a moving mechanism, a pick-up device, a detection plate, a detecting device, and a control section. The stacking plate is movably supported inside the sheet feeding device. The mechanism moves the stacking plate up and down. The pick-up device sends a top one of sheets stacked on the stacking plate, out in a direction from a sheet feeding position within a predetermined level range. The detection plate is mounted above the position and below a top inner surface of the sheet feeding device, with a lower surface thereof facing an object to be placed on the stacking plate. The detection plate is movably supported at a support portion provided at a predetermined location in an upper surface thereof. The detecting device detects upward and downward displacement of the detection plate. According to the detection result, the section controls operation of the mechanism.
    • 片材进给装置包括堆叠板,移动机构,拾取装置,检测板,检测装置和控制部。 堆叠板可移动地支撑在片材进给装置的内部。 该机构上下移动堆放板。 拾取装置沿着从预定水平范围内的送纸位置的方向向上发送堆叠在堆叠板上的顶片。 检测板安装在片材进给装置的顶部内表面上方的位置的下方,其下表面面向要放置在堆叠板上的物体。 检测板可移动地支撑在设置在其上表面中的预定位置处的支撑部分处。 检测装置检测检测板的向上和向下位移。 根据检测结果,该部分控制机构的操作。