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    • 23. 发明授权
    • Nanofiber manufacturing system and nanofiber manufacturing method
    • 纳米纤维制造系统和纳米纤维制造方法
    • US08399066B2
    • 2013-03-19
    • US13520416
    • 2011-09-22
    • Takahiro KurokawaHiroto SumidaHiroyuki TsujiKazunori Ishikawa
    • Takahiro KurokawaHiroto SumidaHiroyuki TsujiKazunori Ishikawa
    • B05C5/04B05C11/00B05D1/06B29B9/00
    • D04H1/728D01D5/0076D01D5/0084
    • A nanofiber manufacturing system in which nanofiber is formed from a raw material liquid by electrostatic explosions in a nanofiber forming space and the formed nanofiber is collected and deposited on a main surface of a base sheet. The system includes: a first dielectric belt having dielectric property; sheet conveying devices for conveying the base sheet in the nanofiber forming space; a sheet contacting device for putting a back surface of the base sheet and a first surface of the first dielectric belt into contact with each other; a dielectric belt driving device for running the first dielectric belt in a conveyance direction of the base sheet within the nanofiber forming space while the first surface is kept in contact with the back surface of the base sheet; and a voltage applying device for applying a voltage to the second surface of the first dielectric belt so that dielectric polarization occurs to the first dielectric belt.
    • 纳米纤维制造系统,其中通过在纳米纤维形成空间中通过静电爆炸由原料液体形成纳米纤维并且形成的纳米纤维被收集并沉积在基片的主表面上。 该系统包括:具有介电特性的第一绝缘带; 用于在纳米纤维形成空间中输送基片的片材输送装置; 用于将所述基片的背面和所述第一介电带的第一表面彼此接触的片接触装置; 介质带驱动装置,用于在所述第一表面与所述基片的背面保持接触的同时在所述纳米纤维形成空间内的所述基片的输送方向上行进所述第一介电带; 以及用于向第一介质带的第二表面施加电压使得电介质极化发生到第一介质带的电压施加装置。
    • 24. 发明申请
    • NANOFIBER MANUFACTURING APPARATUS AND METHOD OF MANUFACTURING NANOFIBERS
    • NANOFIBER制造设备和制造NANOFIBERS的方法
    • US20120013047A1
    • 2012-01-19
    • US13258128
    • 2010-08-11
    • Kazunori IshikawaHiroto SumidaTakahiro KurokawaMasanobu MiyataTakatoshi Mitsushima
    • Kazunori IshikawaHiroto SumidaTakahiro KurokawaMasanobu MiyataTakatoshi Mitsushima
    • D01D5/12B82Y40/00
    • D01D5/0069D01D5/0038D01D5/0076
    • A nanofiber manufacturing apparatus (100) which produces nanofibers (301) by electrically stretching a solution (300) in space, includes: an effusing body (115) having effusing holes (118) for effusing the solution (300) into the space, a tip part (116) in which openings (119) at ends of the effusing holes (118) are one-dimensionally arranged at given intervals, and two side wall parts (117) provided extending from both sides of the tip part (116) so that the effusing holes (118) are located between the side wall parts (117) and distance between the side wall parts (117) increases with distance from the tip part (116); a charging electrode (121) disposed at a given distance from the effusing body (115); and a charging power supply (122) which applies a given voltage between the effusing body (115) and the charging electrode (121). The nanofiber manufacturing apparatus (100) keeps a high production rate per unit time and unit area and limits the impact of ionic wind while producing high and consistent quality of nanofibers.
    • 一种纳米纤维制造装置(100),其通过在空间中电解拉伸溶液(300)来生产纳米纤维(301),包括:具有用于将溶液(300)喷射到空间中的排出孔(118)的流出体(115), 这样一个尖端部分(116),其中在排出孔(118)的端部处的开口(119)以给定的间隔一维地排列,以及从尖端部分(116)的两侧延伸设置的两个侧壁部分 排气孔(118)位于侧壁部分(117)之间并且侧壁部分(117)之间的距离随着与尖端部分(116)的距离而增加; 设置在距离所述汲取体(115)一定距离处的充电电极(121); 以及在所述汲取体(115)和充电电极(121)之间施加给定电压的充电电源(122)。 纳米纤维制造装置(100)每单位时间和单位面积保持高生产率,并限制离子风的影响,同时产生高且一致的纳米纤维质量。
    • 29. 发明授权
    • Power transmission device
    • 动力传动装置
    • US09086140B2
    • 2015-07-21
    • US13281998
    • 2011-10-26
    • Tetsuya ShimizuTomomi IshikawaTomoya JinnoKenichi TsuchidaKazunori Ishikawa
    • Tetsuya ShimizuTomomi IshikawaTomoya JinnoKenichi TsuchidaKazunori Ishikawa
    • F16H61/00F16H61/02
    • F16H61/0021F16H61/0031F16H61/0206F16H2312/14F16H2312/20
    • A power transmission device that transmits power from a motor to a wheel via a hydraulically driven friction engagement element and that includes a mechanical pump driven by the motor to produce a hydraulic pressure that is regulated by a pressure regulating valve; an electric pump that produces a hydraulic pressure; a switching mechanism that either switches an output pressure of the regulating valve or an output pressure of the electric pump to a servo of the engagement element based upon a signal pressure; a passage to supply pressure from the mechanical pump to the hydraulic servo; a check valve in the passage that allows supply of the pressure from the mechanical pump to the hydraulic servo and prohibits supply of the pressure from the electric pump to the mechanical pump, and the switching mechanism either shuts off or allows communication through the passage based upon the signal pressure.
    • 一种动力传递装置,其通过液压驱动的摩擦接合元件将电动机从电动机传递到车轮,并且包括由电动机驱动的机械泵,以产生由压力调节阀调节的液压; 产生液压的电动泵; 切换机构,其基于信号压力将调节阀的输出压力或电动泵的输出压力切换到接合元件的伺服机构; 从机械泵向液压伺服提供压力的通道; 通道中的止回阀,其允许将来自机械泵的压力提供给液压伺服机构,并禁止从电动泵向机械泵供给压力,并且切换机构关闭或允许通过通道的连通基于 信号压力。