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    • 4. 发明授权
    • Sheet feeding device and image forming apparatus
    • 送纸装置和成像装置
    • US08720882B2
    • 2014-05-13
    • US13644915
    • 2012-10-04
    • Munehisa FudaHideyuki SatohTaewon KimToshihiro Okutsu
    • Munehisa FudaHideyuki SatohTaewon KimToshihiro Okutsu
    • B65H3/14
    • B65H1/04B65H3/48B65H2405/15B65H2405/32B65H2406/1222B65H2511/12B65H2801/06B65H2220/01B65H2220/04
    • A sheet feeding device includes a stacking unit configured to allow sheets to be stacked thereon; side end regulating members configured to make contact with both side ends of the stacked sheets so that positions of the side ends are regulated; a feeding unit configured to feed one sheet at a time from the stacked sheets; an air supply unit; and an air blow unit including a blow port from which air supplied from the air supply unit is blown against a side end of the stacked sheets, the air blow unit being housed in each of the side end regulating members. Each side end regulating member has an opening for exhausting the air that is blown from the blow port unit to the stacked sheets. An orientation of the blow port is adjustable about an axial line perpendicular to a plane corresponding to a surface of the stacked sheets.
    • 片材进给装置包括:堆叠单元,其构造成允许片材堆叠在其上; 所述侧端限制部件被配置为与所述堆叠的片材的两个侧端接触,从而调节所述侧端部的位置; 进给单元,其构造成一次从堆叠的片材供给一张片材; 供气单元; 以及吹气单元,其包括吹出口,从所述吹出口向所述堆叠的片材的侧端吹送从所述供气单元供给的空气,所述吹风单元容纳在所述侧端调节构件的每一个中。 每个侧端调节构件具有用于排出从吹出口单元吹送到堆叠的片材的空气的开口。 吹出口的取向可以围绕垂直于对应于堆叠的片材的表面的平面的轴线调节。
    • 9. 发明授权
    • System for image analysis and method thereof
    • 图像分析系统及其方法
    • US09390517B2
    • 2016-07-12
    • US13355358
    • 2012-01-20
    • Youngil KwonByoungkuk KimJinseo ParkTaewon KimYoungseok SongInhwan SulKiyeon Jo
    • Youngil KwonByoungkuk KimJinseo ParkTaewon KimYoungseok SongInhwan SulKiyeon Jo
    • G06T7/40H04N7/18
    • G06T7/401G06T7/41G06T2207/10056G06T2207/10061G06T2207/30121
    • A system for image analysis and a method thereof are disclosed. In one embodiment, the system includes a detector configured to receive an image of a sample, isolate particles from a background image of the sample image and detect positions of the isolated particles and a first operator configured to calculate a static degree of randomness values of the particles using Lennard-Jones potentials based on the detected positions. The system may further include a second operator configured to obtain a dynamic degree of randomness values of particles based at least in part on the sum of tensile forces between particles by implicit integration added until the particles reach a dynamic equilibrium, and calculate a positional degree of randomness of particles based at least in part on subtraction of the dynamic degree of randomness values from the static degree of randomness values.
    • 公开了一种图像分析系统及其方法。 在一个实施例中,系统包括检测器,其被配置为接收样本的图像,从样本图像的背景图像中分离粒子并检测孤立粒子的位置,以及第一操作器,被配置为计算静态随机度值 基于检测到的位置使用Lennard-Jones电位的粒子。 该系统可以进一步包括第二操作器,其被配置为至少部分地通过添加的隐式积分至少部分地获得颗粒之间的拉伸力的总和来获得粒子的随机值的动态度,直到粒子达到动态平衡,并且计算粒子的位置度 至少部分地基于从静态随机度值中减去动态随机性值的粒子的随机性。
    • 10. 发明申请
    • LAMINATED CELL AND METHOD FOR MANUFACTURING SAME
    • 层压电池及其制造方法
    • US20140120408A1
    • 2014-05-01
    • US14127254
    • 2012-03-19
    • Taewon KimKazumi Hisajima
    • Taewon KimKazumi Hisajima
    • H01M2/16H01M10/04
    • A laminated cell (100) of the present invention includes a laminated body (120) formed by sequential stacking a negative electrode (130), a separator (170, 180), a positive electrode (150), and a separator (170, 180). At least one of surfaces of the positive electrode (150) or the negative electrode (130) in a stacking direction (S) has a portion to which a resin member (190) is bonded. The separators each have a portion bonded to the resin member (190) on a side facing the at least one of surfaces. In the present invention, since the separators and at least one of the positive electrode and the negative electrode are integrated together, misalignment in a stacking work can be easily suppressed and the laminated cell has excellent productivity.
    • 本发明的层压电池(100)包括层叠体(120),其通过顺序堆叠负极(130),隔板(170,180),正极(150)和隔板(170,180) )。 正极(150)或负极(130)的堆叠方向(S)的至少一个表面具有与树脂部件(190)接合的部分。 分离器各自具有在面向所述至少一个表面的一侧上结合到树脂构件(190)的部分。 在本发明中,由于分离器和正电极和负电极中的至少一个一体化在一起,因此能够容易地抑制堆叠作业中的未对准,并且层压电池具有优异的生产率。