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    • 61. 发明申请
    • FLOW CONTROL VALVE
    • 流量控制阀
    • US20100243076A1
    • 2010-09-30
    • US12413328
    • 2009-03-27
    • Shigeyuki Hayashi
    • Shigeyuki Hayashi
    • F16K13/00F16K11/00
    • F16K31/007F16K7/14F16K25/00F16K31/0655Y10T137/7722Y10T137/87249Y10T137/87507
    • A flow control valve is disclosed that includes a valve body member having a seating surface that is seated on a valve seated surface. Multiple inflow orifices and multiple outflow orifices may be formed on the valve seated surface or the seating surface, and may be formed so as not to overlap each other in a state in which the seating surface is seated on the valve seated surface. An inside inflow channel that is in communication with the inflow channel and the inflow orifice may be formed inside a member where the inflow orifices are formed and an inside outflow channel that is in communication with the outflow channel and the outflow orifice is formed inside a member where the outflow orifices are formed.
    • 公开了一种流量控制阀,其包括阀体构件,该阀体构件具有安置在阀座表面上的就座表面。 多个流入孔和多个流出孔可以形成在阀座表面或座表面上,并且可以形成为在座表面位于阀座表面上的状态下彼此不重叠。 与流入通道和流入孔连通的内部流入通道可以形成在形成有流入孔的部件的内部,并且与流出通道和流出孔连通的内部流出通道形成在部件的内部 在那里形成流出孔。
    • 62. 发明申请
    • Redundant Electrohydraulic Valve System
    • 冗余电液阀系统
    • US20090000672A1
    • 2009-01-01
    • US11813128
    • 2005-12-14
    • Armin Goll
    • Armin Goll
    • F15B13/044F15B13/06F15B11/20G05D16/20
    • G05D16/204G05B19/0421Y10T137/7761Y10T137/7768Y10T137/86389Y10T137/86622Y10T137/87209Y10T137/87507
    • The invention relates to an electrohydraulic valve system comprising a feeding duct (P), a working duct (A), and a discharge duct (T), a first and a second valve mechanism (20, 30), each of which is provided with a valve piston (3.1), a control device, and a magnetic regulating device for impinging the valve piston (3.1, 3.2) with a controlled actuating force. The first and the second valve mechanism (20, 30) are placed parallel to each other. The first valve mechanism or the second valve mechanism is active and performs the function of the electrohydraulic valve system while the other valve mechanism is passive during operation. The control device of the active valve mechanism activates the passive valve mechanism and deactivates itself when said control device recognizes a fault while the control device of the passive valve mechanism activates itself and deactivates the active valve mechanism when the control device of the passive valve mechanism recognizes a fault. Deactivation of a valve mechanism comprises moving the valve piston of said valve mechanism to the neutral hydraulic position by means of an apparatus that is separate from the magnetic regulating device.
    • 本发明涉及一种电动液压阀系统,包括进料管道(P),工作管道(A)和排放管道(T),第一和第二阀门机构(20,30) 阀活塞(3.1),控制装置和用于以受控制动力冲击阀活塞(3.1,3.2)的磁调节装置。 第一和第二阀机构(20,30)彼此平行放置。 第一阀机构或第二阀机构是有效的,并且执行电动液压阀系统的功能,而另一个阀机构在操作期间是被动的。 主动阀机构的控制装置启动被动阀机构,并且当所述控制装置识别到故障时自动停止,而被动阀机构的控制装置自动启动并且当被动阀机构的控制装置识别 一个错误 阀机构的停用包括通过与磁调节装置分离的装置将所述阀机构的阀活塞移动到中性液压位置。
    • 68. 发明申请
    • Compressed air flow controller
    • 压缩空气流量控制器
    • US20030196709A1
    • 2003-10-23
    • US10346332
    • 2003-01-17
    • Michael J. MendozaJason T. Koch
    • G05D016/20
    • G05D16/2013Y10T137/7761Y10T137/87338Y10T137/87507
    • An electrically-actuated flow controller for compressed air systems is disclosed. The flow controller includes a control panel, a transducer for sampling downstream air pressure, an electrical actuator with an electric motor, and a valve driven by the motor. The flow controller also optionally includes a bypass assembly and battery backup system. The transducer measures downstream pressure, and an electrical actuator incrementally positions the valve to maintain set point pressure between the flow controller and the point of use. By using an electrical actuator rather than the traditional pneumatic actuator, the present invention avoids the contamination and response time problems that have plagued earlier flow controllers.
    • 公开了一种用于压缩空气系统的电动流量控制器。 流量控制器包括控制面板,用于对下游空气压力进行取样的换能器,具有电动马达的电致动器以及由马达驱动的阀。 流量控制器还可选地包括旁路组件和电池备用系统。 传感器测量下游压​​力,电动执行器逐步定位阀门,以保持流量控制器和使用点之间的设定点压力。 通过使用电气致动器而不是传统的气动致动器,本发明避免了早期流量控制器困扰的污染和响应时间问题。