会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 5. 发明公开
    • 미분쇄장치
    • 精细粉末研磨设备
    • KR1020120028433A
    • 2012-03-23
    • KR1020100090251
    • 2010-09-15
    • (주)씽크루트김봉석
    • 김봉석황재룡이욱기윤상필이경균
    • B02C7/16B02C7/02B02C7/17
    • PURPOSE: A pulverizer is provided to rotate two cutting blades in the opposite direction, thereby increasing the pulverized amount and speed of a single pulverizing process. CONSTITUTION: A pulverizer includes a first cutting unit(10) with a first cutting surface and a second cutting unit(40) with a second cutting surface. The second cutting surface is arranged facing the first cutting surface. A target object is pulverized between the first cutting surface and the second cutting surface. The first and the second cutting unit includes a first and the second cutting blades(12,42) with a disk shape.
    • 目的:提供粉碎机以相反方向旋转两个切割刀片,从而增加单次粉碎过程的粉碎量和速度。 构成:粉碎机包括具有第一切割面的第一切割单元(10)和具有第二切割面的第二切割单元(40)。 第二切割面配置成面向第一切割面。 目标物体在第一切割表面和第二切割表面之间被粉碎。 第一和第二切割单元包括具有圆盘形状的第一和第二切割刀片(12,42)。
    • 6. 发明公开
    • 미세유체 유동블럭과 이의 제조방법
    • 微流体浮动块及其制造方法
    • KR1020150138997A
    • 2015-12-11
    • KR1020140066199
    • 2014-05-30
    • 한국과학기술원(주)씽크루트
    • 이태재이석재이경균배남호한소영이문근신수정김봉석이명호김병일
    • G01N33/00
    • 본발명은미세유체유동블럭에관한것으로, 특히미세유체유동블럭을용이하게제조하는방법및 레고블럭과같이용이하게연결구성하는기술에관한것이다. 본발명은랩온어칩시스템(lab-on-a chip system)을위한미세유체유동블럭(block)에있어서, 미세유체유동블럭간의접합을위한접합홈(111)을구비한제 1 하우징(110)과; 상기제 1 하우징(110)의저부에설치되며, 실험에필요한센서(sensor), 재료또는실험툴(tool) 중선택되는하나이상이설치되는제 2 하우징(120)과; 상기제 1 하우징(110)과상기제 2 하우징(120)의사이에삽입설치되며, 내부에미세유체가통과할수 있도록채널(channel)(131)과상기채널(131)의양측말단부에주입구(132) 및배출구(133)가형성된미세유체채널필름(130)을포함하는것을특징으로하는미세유체유동블럭을제공한다.
    • 本发明涉及微流体流动块,更具体地,涉及一种容易地制备微流体流动块并连接微流控流动块的方法,如乐高块的连接。 微流体流动块用于片上实验室系统。 每个微流体流动块包括:第一壳体(110),其具有与另一个微流体流动块结合的结合槽(111) 第二壳体(120),安装在第一壳体(111)的下部,以安装实验所需的传感器,成分和实验工具中的至少一个; 以及微流体通道膜(130),其插入在所述第一和第二壳体(110,120)之间并且具有使微流体通过其内部的通道(131)以及入口和出口(132, 133)在通道(131)的两端。
    • 8. 发明公开
    • 미세 유체 소자 내 채널 표면의 친수성 개질 방법 및 친수성 채널을 갖는 미세 유체 소자
    • 一种在微流体装置中改造通道的疏水表面的方法和具有水解通道的微流体装置。
    • KR1020140097686A
    • 2014-08-07
    • KR1020130009538
    • 2013-01-28
    • (주)씽크루트한국과학기술원
    • 이경균김병일이석재이태재김봉석이상훈
    • B81C1/00B81B1/00G01N33/50G01N35/00
    • The present invention relates to a method for reforming hydrophilicity on the surface of a channel inside a micro-fluidic device and a micro-fluidic device. Specifically, the present invention relates to a method for rapidly conducting reaction and inspection experiments by reforming a channel of a micro-fluidic device into hydrophilicity in order to make a rapid fluid flow inside the channel. In addition, the method prepared by the present invention is a clean process which does not generate toxic substances using a vacuum evaporation method for coating with a hydrophilic material. Therefore, the method can perform hydrophilic coating in quantity at a time, can form stable hydrophilic coating at room temperature without any influence of changes in the environment, and can be applied to a micro-fluidic element which requires optical reading by providing high transparency when formed at an appropriate thickness.
    • 本发明涉及一种在微流体装置和微流体装置内的通道表面上的亲水性改性方法。 具体地说,本发明涉及一种快速进行反应和检验实验的方法,通过将微流体装置的通道重整成亲水性,以使通道内的流体快速流动。 此外,本发明制备的方法是使用真空蒸发法在亲水性材料上涂布不产生有毒物质的清洁方法。 因此,该方法可以一次性地进行亲水性涂布,可以在室温下形成稳定的亲水性涂层,而不受环境变化的影响,并且可以通过提供高透明度而应用于需要光学读取的微流体元件 以适当的厚度形成。