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    • 101. 发明申请
    • VALVE ASSEMBLY
    • 阀组件
    • US20140203204A1
    • 2014-07-24
    • US14126006
    • 2012-06-13
    • Michel MarechalFrederic SauvagePascal BellamyChristophe Breant
    • Michel MarechalFrederic SauvagePascal BellamyChristophe Breant
    • F16K3/26
    • F16K3/262F02M59/34F02M63/0056F16K3/26
    • A valve assembly for controlling the rate of flow of fluid between a valve inlet and a valve outlet comprises a valve housing, and a spool valve member that is movable axially within a valve bore provided in the valve housing in an opening direction and a closing direction. The spool valve member is provided with a blind bore, the open end of which communicates with the valve outlet, and at least one opening into the blind bore, the at least one opening communicating, to a variable degree dependent on the axial position of the spool valve member within the valve bore, with the valve inlet. The valve inlet comprises a first boundary and a second boundary, so that for axial positions of the spool valve member in which the opening does not overlap the first boundary there is no flow into the outlet.
    • 用于控制阀入口和阀出口之间的流体流速的阀组件包括阀壳体和滑阀构件,滑阀构件可沿设置在阀壳体中的阀孔内沿打开方向和闭合方向轴向移动 。 滑阀构件设置有盲孔,其开口端与阀出口连通,并且至少一个开口进入盲孔,至少一个开口连通到可变程度,取决于轴向位置 阀孔内的滑阀构件,带阀入口。 阀入口包括第一边界和第二边界,使得对于其中开口不与第一边界重叠的滑阀构件的轴向位置,没有流入出口。
    • 103. 发明授权
    • Sampling valve
    • 取样阀
    • US08549936B2
    • 2013-10-08
    • US12937556
    • 2009-04-03
    • Manfred Völker
    • Manfred Völker
    • B01L3/02
    • F16K5/0207F16K3/262
    • The sampling valve comprises a valve body that is movable in a valve housing between a closing position and an opening position of the sampling valve, and is characterized in that the valve body comprises an outlet bore for the sample to be taken, the outlet bore continuously increasing in size towards the free end of the valve body, and that the lower edge of the outlet bore is sloping downwards towards the free end. After a sample has been taken, there will be no drops remaining in the outlet bore, whereby a source of contamination for a sample taken that has so far been encountered frequently is now eliminated.
    • 采样阀包括阀体,其可在阀壳体中在取样阀的关闭位置和打开位置之间移动,其特征在于,阀体包括用于待取样品的出口孔,连续地出口孔 朝向阀体的自由端增加尺寸,并且出口孔的下边缘朝向自由端向下倾斜。 在采集样品后,出口孔中不会有液滴残留,从而消除了迄今为止经常遇到的样品的污染源。
    • 105. 发明申请
    • LIQUID FLOW RATE CONTROL VALVE
    • 液体流量控制阀
    • US20120234400A1
    • 2012-09-20
    • US13498399
    • 2010-09-30
    • Seiichiro IshikawaYuki ShibahataYasunari KimuraMasashi Kato
    • Seiichiro IshikawaYuki ShibahataYasunari KimuraMasashi Kato
    • F16K11/12F16K11/07F16K3/26
    • B60K6/12B60K6/40F02N7/08F15B13/0406F15B13/0444F16K3/262F16K3/34F16K5/0414Y02T10/6208Y02T10/6282Y10T137/3127Y10T137/86533Y10T137/86702Y10T137/8671Y10T137/86734Y10T137/86751Y10T137/88022
    • A liquid flow rate control valve is provided in which since a distributor (38) is rotated relative to a sleeve (37) by a first drive source (46) only through a predetermined angle, the total area of overlapping sections of a first opening (37a) of the sleeve (37) and the second opening (38c) of the distributor (38) changes, and a rotor (42) having a third opening (42c 42d) is rotated by a second drive source (47), it is possible to carry out PWM control of the liquid input from an input port (61e) and output it from an output port (61f). In this process, one end in an axis (L) direction of the rotor (42) disposed on an inside in a radial direction is coaxially connected to the second drive source (47), and one end in the axis (L) direction of the distributor (38) disposed on an outside in a radial direction is connected to the first drive source (46) via a gear train (66, 73, 70), and therefore, it is possible to individually rotate the distributor (38) and the rotor (42) while achieving a compact size by arranging the first and second drive sources (46, 47) in a concentrated manner at one end in the axis (L) direction of a liquid flow rate control valve (23).
    • 提供了一种液体流量控制阀,其中由于分配器38通过第一驱动源(46)仅通过预定角度相对于套筒(37)旋转,因此第一开口(...的重叠部分的总面积 分配器(38)的套筒(37)和第二开口(38c)的开口(37a)(37a)变化,并且具有第三开口(42c 42d)的转子(42)由第二驱动源(47)旋转, 可以从输入端口(61e)对液体输入进行PWM控制,并从输出端口(61f)输出。 在该工序中,沿径向设置在内侧的转子(42)的轴线(L)方向的一端与第二驱动源(47)同轴连接,另一端沿轴线(L)方向 通过齿轮系(66,73,70)将配置在径向外侧的分配器(38)与第一驱动源(46)连接,因此能够分别使分配器(38)和 通过在液体流量控制阀(23)的轴线(L)方向上的一端集中排列第一和第二驱动源(46,47),同时实现紧凑的尺寸。