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    • 6. 发明申请
    • DIFFERENTIAL PRESSURE SENSOR
    • 差压传感器
    • US20160076958A1
    • 2016-03-17
    • US14848790
    • 2015-09-09
    • SAMSON AG
    • FRANK VALENTIN-RUMPELSVEN RAUSCH
    • G01L9/00
    • G01L9/007G01L13/025G01L19/02
    • A differential pressure measuring device (10, 50) comprising a housing (18) having two pressure areas (20, 22) which are sealed relative to each other and are separated from each other by a membrane (12, 54). The membrane (12, 54) comprises a pressure plate (14) surrounded by an elastic circumferential area (16) allowing axial movement of the pressure plate (14). An indicator element (24, 56) is permanently connected to the pressure plate (14) and whose position can be evaluated in a non-contact manner by a sensor (34, 58). At least one pair of springs (28, 52) is provided, with one spring (30, 32) each of said pair of springs being located in an allocated pressure area (20, 22). Each spring (30, 32) of said pair of springs (28, 52) exerts an opposing spring force on the pressure plate (14).
    • 一种差压测量装置(10,50),包括具有两个压力区域(20,22)的壳体(18),所述两个压力区域相对于彼此密封并且通过隔膜(12,54)彼此分离。 膜(12,54)包括由允许压板(14)轴向移动的弹性圆周区域(16)包围的压力板(14)。 指示器元件(24,56)永久地连接到压板(14),并且其位置可以由传感器(34,58)以非接触的方式被评估。 提供至少一对弹簧(28,52),其中一个弹簧(30,32)中的每一个弹簧位于分配的压力区域(20,22)中。 所述一对弹簧(28,52)的每个弹簧(30,32)在压板(14)上施加相对的弹簧力。
    • 7. 发明申请
    • Control valve for adjusting a flow rate value
    • 用于调节流量值的控制阀
    • US20150267820A1
    • 2015-09-24
    • US14664384
    • 2015-03-20
    • SAMSON AG
    • JORG KIESBAUER
    • F16K3/316F16K3/02F16K31/12F16K3/32
    • F16K3/316F16K3/02F16K3/0209F16K3/029F16K3/06F16K3/32F16K31/12
    • The invention relates to a control valve (10, 30) for adjusting a flow rate value of said control valve, comprising a valve housing (12) as well as a housing-mounted throttling structure (14, 34, 52) which covers a flow channel and includes at least two passages (16, 36, 54), furthermore a second closing structure (18, 40, 56) which can be moved relative to the housing-mounted throttling structure (14, 34, 52), which closing structure (18, 40, 56) can be moved so as to close the passages (16, 36, 54) in such a way that the flow rate through the passages covered by the closing structure is lower than the flow rate through the uncovered passages (16, 36, 54). The invention is characterized in that guide means (22, 44) are arranged outside a passage area of the housing-mounted throttling structure (14, 34, 54) defined by passages (16, 36, 52), said guide means (22, 44) acting to support and guide the movable closing structure (18, 40, 56) spaced from the housing-mounted throttling structure (14, 34, 52).
    • 本发明涉及一种用于调节所述控制阀的流量值的控制阀(10,30),包括阀壳体(12)以及壳体安装的节流结构(14,34,52),该节流结构覆盖流体 通道并且包括至少两个通道(16,36,54),以及可相对于所述壳体安装的节流结构(14,34,52)移动的第二闭合结构(18,40,56),所述闭合结构 (18,40,56)可以移动以便关闭通道(16,36,54),使得通过由闭合结构覆盖的通道的流速低于通过未覆盖通道的流速( 16,36,54)。 本发明的特征在于,引导装置(22,44)布置在由通道(16,36,52)限定的外壳安装的节流结构(14,34,54)的通道区域的外部,所述引导装置(22, 44)用于支撑和引导与壳体安装的节流结构(14,34,52)间隔开的可移动关闭结构(18,40,56)。
    • 9. 发明申请
    • METHOD FOR DETERMINING THE BREAK-AWAY FORCE OF AN ACTUATOR
    • 用于确定执行器的断开力的方法
    • US20130047745A1
    • 2013-02-28
    • US13591199
    • 2012-08-21
    • FAUSTO CRESPO VIDAL
    • FAUSTO CRESPO VIDAL
    • G01L1/00
    • F16K37/0083
    • A method for determining a break-away force in an actuator is provided, the actuator comprising an actuator armature including a positioning element movable in relation to the actuator housing. The positioning element is movable by means of an actuator drive such that a driving force is applied through the actuator drive to the positioning element. The actuator is in a resting state in the beginning, the driving energy required for moving the actuator drive is successively increased, wherein the driving energy is converted into a driving force by driving means, and a measurement value at the actuator drive is measured by at least one sensor, wherein as soon as a change of the measurement value is detected, a state is verified in which a holding force counteracts the movement of the position element.
    • 提供了一种用于确定致动器中的断开力的方法,所述致动器包括致动器电枢,所述致动器电枢包括可相对于所述致动器壳体移动的定位元件。 定位元件可通过致动器驱动器移动,使得通过致动器驱动器将驱动力施加到定位元件。 致动器在开始时处于静止状态,驱动驱动器移动所需的驱动能量依次增加,其中驱动能量通过驱动装置转换为驱动力,并且在致动器驱动下的测量值由 至少一个传感器,其中当检测到测量值的改变时,验证其中保持力抵消位置元件的移动的状态。
    • 10. 发明授权
    • Position controller
    • 位置控制器
    • US07862003B2
    • 2011-01-04
    • US11435926
    • 2006-05-17
    • Thomas KarteJoerg Kiesbauer
    • Thomas KarteJoerg Kiesbauer
    • F16K31/02
    • F16K17/04F16K37/0083
    • Both improved protection against explosions and the possibility of performing diagnoses even when the I/P converter has been disconnected are to be provided by a position controller (5) for a pressure medium-operated actuating system, the controller being designed to be connected by a pneumatic line to a pneumatic drive (4)-equipped actuator (1) of an actuating element, especially an actuating element of a safety valve (2), where the actuator (1) has an electric power line (6) for controlling an I/P converter (7) according to the live-zero principle, and where the I/P converter (7) can be driven by an electrically controlled switch (10). The goal is achieved in that the switch (10) is designed to be driven by an additional circuit (11), which is connected to the power line (6) and installed in the position controller and which monitors the current in the power line (6).
    • 即使当I / P转换器断开连接时,改进的防止爆炸的保护和执行诊断的可能性都将由用于压力介质操作的致动系统的位置控制器(5)提供,该控制器被设计成通过 气动线路连接到致动元件的气动驱动器(4)装备的致动器(1),特别是安全阀(2)的致动元件,其中致动器(1)具有用于控制I的电力线(6) / P转换器(7),其中I / P转换器(7)可以由电控开关(10)驱动。 实现目标是,开关(10)被设计成由连接到电力线(6)并安装在位置控制器中的附加电路(11)驱动,并且监视电力线中的电流 6)。