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    • 4. 发明公开
    • SWITCHING VALVE FOR FLOW-TYPE ANALYSIS DEVICE
    • SCHALTVENTILFÜREINESTRÖMUNGSANALYSEVORRICHTUNG
    • EP2990791A4
    • 2017-01-04
    • EP14788272
    • 2014-04-22
    • SEKISUI MEDICAL CO LTD
    • YOTANI TAKUYATAIRA HIROAKIOKA TAKAYUKIMURAKI HIDEKI
    • G01N30/26G01N1/00G01N30/20G01N35/10
    • G01N30/20G01N33/491G01N35/1097G01N2030/201G01N2030/202G01N2030/207
    • Provided is a switching valve including the following (A) to (C): (A) a rotor including the following (1) to (3): (1) a center pipe connection port, (2) a first in-valve flow path in communication with the center pipe connection port, and (3) an arc-like second in-valve flow path; (B) a stator including the following (4) and (5): (4) a first pipe connection port group which is brought into communication independently with the center pipe connection port via the first in-valve flow path when the rotor is turned, and (5) a second pipe connection port group which is brought into mutual communication via the second in-valve flow path when the rotor is turned; and (C) an arrangement of the rotor and the stator which satisfies the following relationship: the state of communication or non-communication among the second pipe connection port group via the second in-valve flow path is switched in accordance with the state of communication between the first pipe connection port group and the center pipe connection port.
    • 本发明提供一种包括以下(A)至(C)的切换阀:(A)包括以下(1)至(3)的转子:(1)中心管连接口,(2) 与中心管连接口连通的路径,(3)弧形第二阀内流路; (B)包括以下(4)和(5)的定子:(4)第一管连接口组,当转子转动时,第一管连接口组通过第一通阀流路与中心管连接口独立连通 和(5)第二管连接口组,当转子转动时,第二管连接口组通过第二通阀流路相互连通; 和(C)转子和定子的结构,其满足以下关系:根据通信状态来切换第二管连接端口组之间经由第二进气门流路的通信状态或非通信状态 在第一管连接端口组和中心管连接端口之间。
    • 8. 发明公开
    • VENTIL MIT VERFORMBAREM TEIL UND VERWENDUNG DES VENTILS
    • EP2681547A1
    • 2014-01-08
    • EP12718557.7
    • 2012-03-01
    • Artner, Christoph
    • SCHUBERT, MichaelBUSCH, ReinhardNADER, Michael
    • G01N30/20F16K11/074F16K11/076F16K15/14G01N35/10
    • F16K11/00F16K11/0743G01N30/20G01N30/26G01N35/1097G01N2030/201G01N2030/202Y10T137/86493
    • The invention relates to a valve, in particular a sample injection valve, for a device (1) for synthesizing, analyzing, and/or separating, comprising at least three liquid connections (3', 4', 5', 6', 7', 7"), a housing (8) as a valve part, and a valve body (9) as another valve part for selectively connecting the liquid connections (3', 4', 5', 6', 7', 7") by means of at least one flow channel (10, 11, 12) bounded at least partially by sealing surfaces (10', 11', 12') between the housing (8) and the valve body (9), wherein the housing (8) and/or the valve body (9) are supported in such a way as to be movable relative to each other. In order to a create a one-way valve, at least one valve part (8 or 9) adjacent to the sealing surface (10', 11', 12') and made of a plastic material can be plastically deformed according to a relative position (9'), in particular of the valve body (9), in order to be able to withstand the elevated pressure loads in the flow channel (10, 11, 12) in a liquid-tight manner in said relative position (9'), in particular of the valve body (9).
    • 本发明涉及用于合成,分析和/或分离的装置(1)的阀,特别是样品注射阀,其包括至少三个液体连接(3',4',5',6',7 ',7“),作为阀部的壳体(8)和作为用于选择性地连接液体连接(3',4',5',6',7',7')的另一个阀部分的阀体 “)通过至少部分地由壳体(8)和阀体(9)之间的密封表面(10',11',12')限定的至少一个流动通道(10,11,12) 壳体(8)和/或阀体(9)以相对于彼此可移动的方式被支撑。 为了形成单向阀,与密封表面(10',11',12')相邻并且由塑料材料制成的至少一个阀部件(8或9)可以根据相对位置塑性变形 (9'),特别是阀体(9),以便能够以相对位置(9')以液密方式承受流道(10,11,12)中的升高的压力负荷,特别是阀体(9) ),特别是阀体(9)。