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    • 7. 发明授权
    • Nanofiber manufacturing apparatus and method of manufacturing nanofibers
    • 纳米纤维制造装置及其制造方法
    • US08696973B2
    • 2014-04-15
    • US13260824
    • 2010-10-27
    • Kazunori IshikawaTakahiro KurokawaHiroto Sumida
    • Kazunori IshikawaTakahiro KurokawaHiroto Sumida
    • D06M10/00H05B6/00G06F7/66
    • D04H1/728D01D5/0069D01D5/0092
    • A method of manufacturing nanofibers according to an aspect of the present invention by electrically stretching a solution in space and depositing the nanofibers in a given region includes: effusing the solution from an effusing body having an effusing hole which allows the solution to effuse in a direction; applying a given voltage between the effusing body and a charging electrode being conductive and disposed at a given distance from the effusing body, using a charging power supply configured to apply the given voltage; and determining a flight path of the solution and the nanofibers such that a length of the flight path of the solution and the nanofibers is longer than a shortest path length which is a length of a shortest imaginary path connecting an end opening of the effusing hole and an accumulation part on which the nanofibers are accumulated.
    • 根据本发明的一个方面制造纳米纤维的方法是通过在一个给定的区域中电解拉伸空间溶液并沉积纳米纤维,包括:从具有排出孔的排出体中排出溶液,该排出体允许溶液沿着方向 ; 在所述排出体和充电电极之间施加给定电压,所述充电电极导电并且设置在与所述排出体相距给定距离处,使用配置为施加给定电压的充电电源; 以及确定所述溶液和所述纳米纤维的飞行路径,使得所述溶液和所述纳米纤维的飞行路径的长度比作为连接所述排出孔的端部开口的最短假想路径的长度的最短路径长度和 纳米纤维聚集在其上的积聚部分。
    • 8. 发明申请
    • NANOFIBER MANUFACTURING SYSTEM AND NANOFIBER MANUFACTURING METHOD
    • NANOFIBER制造系统和NANOFIBER制造方法
    • US20120282411A1
    • 2012-11-08
    • US13520416
    • 2011-09-22
    • Takahiro KurokawaHiroto SumidaHiroyuki TsujiKazunori Ishikawa
    • Takahiro KurokawaHiroto SumidaHiroyuki TsujiKazunori Ishikawa
    • B05C5/04B05D3/14B82Y40/00
    • 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 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; 放置基片的背面和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运行所述第一介质带; 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。
    • 9. 发明申请
    • NANOFIBER MANUFACTURING APPARATUS AND METHOD OF MANUFACTURING NANOFIBERS
    • NANOFIBER制造设备和制造NANOFIBERS的方法
    • US20120242010A1
    • 2012-09-27
    • US13514098
    • 2010-12-06
    • Kazunori IshikawaHiroto SumidaTakahiro Kurokawa
    • Kazunori IshikawaHiroto SumidaTakahiro Kurokawa
    • B29C55/00
    • D04H1/728D01D5/0069D01D5/0076
    • A deposit of nanofibers which has an even thickness and even quality is produced. A nanofiber manufacturing apparatus according to the present invention includes: an effusing body (115) which has an effusing hole (118) through which a solution (300) is effused; a charging electrode (128); a charging power supply (122) which applies a given voltage between the effusing body (115) and the charging electrode (128); a drawing electrode (121) which draws nanofibers (301) produced in space, the drawing electrode (121) having, on a surface, a planar deposition region (A) onto which the drawn nanofibers (301) are deposited; a drawing power supply (123) which applies a given potential to the drawing electrode (121); and an insulating layer (101) which suppresses variation in resistance values of the nanofibers deposited in the deposition region (A) and is placed throughout the deposition region (A).
    • 生产具有均匀厚度和均匀质量的纳米纤维的沉积物。 根据本发明的纳米纤维制造装置包括:排出体(115),其具有排出孔(118),溶液(300)通过该排出孔渗出; 充电电极(128); 充电电源(122),其在所述汲水体(115)和所述充电电极(128)之间施加给定的电压; 在空间中制造纳米纤维(301)的拉丝电极(121),所述拉伸电极(121)在其上沉积有拉伸纳米纤维(301)的平面沉积区域(A) 向所述绘制电极施加给定电位的绘图电源(123); 以及抑制沉积在沉积区域(A)中的纳米纤维的电阻值的变化并被放置在整个沉积区域(A)中的绝缘层(101)。
    • 10. 发明申请
    • Part feeding unit, part feeding device, part feeding method, and part mounting device
    • 零件进给单元,零件进给装置,零件进给方法和零件安装装置
    • US20050096781A1
    • 2005-05-05
    • US10504291
    • 2003-02-18
    • Hiroto SumidaMinoru Kitani
    • Hiroto SumidaMinoru Kitani
    • H05K9/00H05K13/02H05K13/04G06F7/00
    • H05K9/0016H05K13/0417
    • By a component feed method for conveying a belt-shaped component-feeding member, in which component storage sections that store a plurality of electronic components while allowing the components to be picked up and feed perforations are formed at regular intervals in their lengthwise direction, in its rotational direction by the rotation around the center of rotation of a feed rotor on the outer periphery of which a plurality of feed claws capable of being engaged with the feed perforations and positioning each of the storage sections in a component pickup position to feed the component from the positioned storage section, the rotational driving amount of the feed rotor is controlled on the basis of correctional driving amount data of the rotational driving of the feed rotor formed based on displacement amount data of each of the feed claws with respect to the center of rotation or the rotational direction of the feed rotor, and the components are positioned successively in the component pickup position to feed the components.
    • 通过用于输送带状部件供给部件的部件供给方法,其中在允许部件被拾取并进给穿孔的同时存储多个电子部件的部件存放部分沿其长度方向以规则的间隔形成, 其旋转方向通过在其外周上围绕进给转子的旋转中心的旋转方向,多个进给爪能够与进给穿孔接合并将每个存储部分定位在部件拾取位置中,以将部件 基于定位的存储部分,基于基于每个进给爪的位移量数据形成的进给转子的旋转驱动的校正驱动量数据相对于中心位置来控制进给转子的旋转驱动量 旋转或进给转子的旋转方向,并且组件依次位于组合体中 nt拾取位置来馈送组件。