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    • 2. 发明公开
    • 교류 전기영동 기반 미세유체 혼합 이송 장치 및미세유체의 혼합 이송 방법
    • 用于泵送和混合液体的AC电致变色微流体装置和用于输送和混合液体的方法
    • KR1020080066123A
    • 2008-07-16
    • KR1020070003176
    • 2007-01-11
    • 한국과학기술원
    • 성형진윤상열김병재
    • G01N27/447A61B5/1468
    • F04B19/006B01F13/0076
    • An apparatus for mixing and transferring microfluid based on AC electroosmosis is provided to simplify the whole system by forming at least one bending part in the middle of a pair of electrodes disposed in a linear shape such that microfluid is simultaneously transferred and mixed. An apparatus of mixing and transferring microfluid based on AC electroomosis comprises a pair of electrodes(103) including a first electrode(101) and a second electrode(102). The second electrode has a width larger than that of the first electrode. At least one electrode is provided at an inner surface of a fluid passage(100). The electrodes are disposed in a linear or curved strip shape. The electrodes are provided with at least one bending part and receive voltage of alternating current. The electrodes have a cross section in circular shape, a triangular shape, a rectangular shape, a pentagonal shape or a hexagonal shape.
    • 提供了一种用于混合和转移基于交流电渗的微流体的装置,以通过在一对电极的中间形成至少一个弯曲部分来简化整个系统,该对电极设置成线性形状,使得微流体同时转移和混合。 基于AC电晕混合和转移微流体的装置包括一对包括第一电极(101)和第二电极(102)的电极(103)。 第二电极的宽度大于第一电极的宽度。 至少一个电极设置在流体通道(100)的内表面处。 电极被设置成线状或弯曲的条形。 电极设置有至少一个弯曲部分并接收交流电压。 电极的截面为圆形,三角形,矩形,五边形,六边形。
    • 3. 发明公开
    • 속도 프로파일 생성장치 및 생성방법
    • 速度轮廓生成装置及其生成方法
    • KR1020150112294A
    • 2015-10-07
    • KR1020140036155
    • 2014-03-27
    • 한국과학기술원
    • 심현철윤상열이웅희
    • B60W40/00B60W40/06B60W40/12B60W30/16
    • B60W40/00B60W30/16B60W40/06B60W40/12
    • 본발명은속도프로파일생성장치및 그의생성방법에관한것으로, 차량의현재위치와상기차량의주행경로상의복수의경로점을사용하여곡률반경을생성하는곡률반경생성부및 상기곡률반경을사용하여상기복수의경로점각각에서의최대허용속도와상기차량의최대가/감속도를생성하고, 생성된상기최대허용속도와상기차량의최대가/감속도에의해상기복수의경로점각각에서의실현가능속도를순차생성하여, 순차생성된상기복수의경로점각각에서의실현가능속도로부터상기차량의주행경로상의속도프로파일을생성하는속도생성부를포함한다.
    • 本发明涉及一种用于产生速度分布的装置和方法。 用于产生速度分布的装置包括:曲率半径产生单元和速度产生单元。 曲率半径生成单元使用车辆的当前位置和车辆的行驶路径上的多个路径点来生成曲率半径。 速度产生单元相对于每个路径点产生最大允许速度,并且使用曲率半径对车辆的最大加速/减速度顺序地产生具有最大允许速度和最大值的每个路径点的可实现速度 并且根据每个通路点的顺序产生的可实现速度生成车辆的行驶路径的速度分布。 根据本发明,当存在路径跟踪误差时,可以产生反映路径跟踪误差的速度分布。
    • 4. 发明公开
    • 전해질막 없는 마이크로 연료 전지
    • MAMBRANELESS微型燃料电池
    • KR1020090015711A
    • 2009-02-12
    • KR1020070080270
    • 2007-08-09
    • 한국과학기술원
    • 성형진윤상열데완박홍범
    • H01M8/02
    • H01M8/04186H01M4/8626H01M8/0265H01M8/04201H01M8/2455
    • A micro fuel cell with no electrolyte film is provided to prevent the exhaustion of reactants on the surface of electrodes by removing the direct mixing of cathode fluid and anode fluid and to improve the efficiency of a fuel cell. A micro fuel cell with no electrolyte film comprises a plurality of unit cells(100). Each unit cell comprises a cathode channel(110) segmented to flow the cathode fluid, anode channel(120) segmented to flow the anode fluid, and a connection pathway(130). The connection pathway connects the interval of the cathode channel and the anode channel, forms a boundary of the cathode fluid and the anode fluid, and is mixed by the diffusion.
    • 提供没有电解质膜的微型燃料电池,以通过去除阴极流体和阳极流体的直接混合并提高燃料电池的效率来防止反应物在电极表面上的耗尽。 没有电解质膜的微型燃料电池包括多个单元电池(100)。 每个单电池包括被分段以流过阴极流体的阴极通道(110),被分段以流过阳极流体的阳极通道(120)和连接通路(130)。 连接路径连接阴极通道和阳极通道的间隔,形成阴极流体和阳极流体的边界,并通过扩散混合。
    • 6. 发明公开
    • 진공배기를 이용한 미세접촉 인쇄방법
    • 使用真空泵的微型打印工艺
    • KR1020140106318A
    • 2014-09-03
    • KR1020130020717
    • 2013-02-26
    • 한국과학기술원
    • 성형진강현욱임주영고승환윤상열
    • H01L21/027
    • H01L21/0274B41F15/34B41F15/40H01L21/56
    • A microcontact printing method using vacuum exhausting of the present invention comprises a step for preparing a flexible stamp formed along a printing part where unselective printing pattern is formed and the edge of the printing part, including the peripheral part projected higher than the printing part; a step for placing the flexible stamp in order for the printing pattern to face a substrate and mounting the printing part to be separated from the substrate in order for the edge of the printing part to be in contact with the substrate; and a step for enabling the printing part to be in contact with on the surface of the substrate by discharging air inside the printing part from one side of the flexible stamp.
    • 使用本发明的真空排气的微接触印刷方法包括制备沿着形成非选择性印刷图案的印刷部分形成的柔性印模的步骤,以及包括突出高于印刷部分的周边部分的印刷部分的边缘; 为了使印刷部件的边缘与基板接触,放置柔性印模以使印刷图案面对基板并安装要从基板分离的印刷部件的步骤; 以及通过从柔性印模的一侧排出印刷部件内的空气,使印刷部件能够与基板的表面接触的步骤。