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    • 1. 发明授权
    • Modular microfluidic system
    • 模块化微流体系统
    • US08216525B2
    • 2012-07-10
    • US11992534
    • 2006-09-26
    • Astrid LohfReinhold SchneebergerRobert Sendner
    • Astrid LohfReinhold SchneebergerRobert Sendner
    • G01N1/38
    • B01J19/0093B01J2219/0081B01J2219/00867B01J2219/00871B01J2219/00873B01J2219/00891B01J2219/0097
    • A modular microfluidic system includes modules which are arranged next to each other in a row. Every module has a microfluidic part which rests on a contact surface of the module in a locally limited area and is forced against the contact surface by a fastening element. The microfluidic part includes a fluid channel system with fluid connections that are arranged on the top surface of the microfluidic part in edge areas relative to the adjoining microfluidic parts. The fluid connections of adjoining microfluidic parts are interlinked by respective connecting channels in a connecting part bridging the microfluidic parts, wherein the connecting part rests on the microfluidic parts in the edge areas. A clamping part rests against the lower surfaces of the adjoining microfluidic parts and is connected to the connecting part via an additional fastening element in the area between the microfluidic parts.
    • 模块化微流体系统包括彼此排列成一排的模块。 每个模块都具有微流体部件,该微流体部件在局部有限的区域中位于模块的接触表面上,并且通过紧固元件被迫抵靠接触表面。 微流体部件包括具有流体连接的流体通道系统,其相对于相邻的微流体部件布置在边缘区域中的微流体部件的顶表面上。 邻接的微流体部件的流体连接通过桥接微流体部件的连接部分中的相应的连接通道相互连接,其中连接部分搁置在边缘区域中的微流体部件上。 夹紧部件靠在邻接的微流体部件的下表面上,并且通过在微流体部件之间的区域中的附加紧固元件连接到连接部件。
    • 3. 发明申请
    • Modular Microfluidic System
    • 模块化微流体系统
    • US20100021345A1
    • 2010-01-28
    • US11992534
    • 2006-09-26
    • Astrid LohfReinhold SchneebergerRobert Sendner
    • Astrid LohfReinhold SchneebergerRobert Sendner
    • G01N33/00
    • B01J19/0093B01J2219/0081B01J2219/00867B01J2219/00871B01J2219/00873B01J2219/00891B01J2219/0097
    • There is described a modular microfluidic system with the following features: Modules are arranged next to each other in a row. Every module has a microfluidic part which rests on a contact surface of the module in a locally limited area and is forced against the same by means of a fastening element. The microfluidic part comprises a fluid channel system with fluid connections that are arranged on the top surface of the microfluidic part in edge areas relative to the adjoining microfluidic parts. The fluid connections of adjoining microfluidic parts are interlinked by respective connecting channels in a connecting part bridging the microfluidic parts, said connecting part resting on the microfluidic parts in the edge areas. A clamping part rests against the lower surfaces of the adjoining microfluidic parts and is connected to the connecting part via an additional fastening element in the area between the microfluidic parts.
    • 描述了具有以下特征的模块化微流体系统:模块被连续排列在一起。 每个模块都具有微流体部件,该微流体部件在局部有限的区域中位于模块的接触表面上,并且通过紧固元件而被迫力抵靠在其上。 微流体部件包括具有流体连接的流体通道系统,其布置在相对于邻接的微流体部件的边缘区域中的微流体部件的顶表面上。 邻接的微流体部件的流体连接通过桥接微流体部件的连接部分中的相应的连接通道相互连接,所述连接部分位于边缘区域中的微流体部件上。 夹紧部件靠在邻接的微流体部件的下表面上,并且通过在微流体部件之间的区域中的附加紧固元件连接到连接部件。
    • 4. 发明授权
    • Mixing device with valve disks
    • 混合装置与阀盘
    • US08118056B2
    • 2012-02-21
    • US12284691
    • 2008-09-24
    • Stefan KlehrRobert Sendner
    • Stefan KlehrRobert Sendner
    • F16K11/06
    • B01F5/0077Y10T137/0318Y10T137/86558Y10T137/87249Y10T137/87676
    • The invention relates to a mixing device for mixing substances with a valve control disk and a fixed valve seat disk having at least two groups of openings each of which consists of at least three through openings. A first opening is an inlet for a substance, a second opening connects to a mixing path and a third opening bridges the mixing path. The valve control disk has a first and second recess and is arranged parallel to the valve seat disk and a flow is realized via the first recess between the first and second opening and via the second recess between the first and third opening. The first opening is superimposed by the first and second recesses and a superimposed surface area remains constant. The total superimposed surfaces of the first openings by the first recesses and by the second recesses are also constant.
    • 本发明涉及一种用于将物质与阀控制盘混合的混合装置和具有至少两组开口的固定阀座盘,每组由至少三个通孔组成。 第一开口是物质的入口,第二开口连接到混合路径,第三开口桥接混合路径。 阀控制盘具有第一和第二凹部并且平行于阀座盘布置,并且经由第一和第二开口之间的第一凹部经由第一和第三开口之间的第二凹部实现流动。 第一开口由第一和第二凹槽叠加,并且叠加的表面积保持恒定。 通过第一凹部和第二凹部的第一开口的总叠加表面也是恒定的。
    • 5. 发明申请
    • Mixing device with valve disks
    • 混合装置与阀盘
    • US20090101211A1
    • 2009-04-23
    • US12284691
    • 2008-09-24
    • Stefan KlehrRobert Sendner
    • Stefan KlehrRobert Sendner
    • F16K11/02
    • B01F5/0077Y10T137/0318Y10T137/86558Y10T137/87249Y10T137/87676
    • The invention relates to a mixing device for mixing substances with a valve control disk and a fixed valve seat disk having at least two groups of openings each of which consists of at least three through openings. A first opening is an inlet for a substance, a second opening connects to a mixing path and a third opening bridges the mixing path. The valve control disk has a first and second recess and is arranged parallel to the valve seat disk and a flow is realized via the first recess between the first and second opening and via the second recess between the first and third opening. The first opening is superimposed by the first and second recesses and a superimposed surface area remains constant. The total superimposed surfaces of the first openings by the first recesses and by the second recesses are also constant.
    • 本发明涉及一种用于将物质与阀控制盘混合的混合装置和具有至少两组开口的固定阀座盘,每组由至少三个通孔组成。 第一开口是物质的入口,第二开口连接到混合路径,第三开口桥接混合路径。 阀控制盘具有第一和第二凹部并且平行于阀座盘布置,并且经由第一和第二开口之间的第一凹部经由第一和第三开口之间的第二凹部实现流动。 第一开口由第一和第二凹槽叠加,并且叠加的表面积保持恒定。 通过第一凹部和第二凹部的第一开口的总叠加表面也是恒定的。