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    • 3. 发明申请
    • FLUID POWERED DUAL-PISTON ACTUATOR WITH EFFICIENT FLUID PORTING AND METHOD OF IMPLEMENTATION
    • 流体动力双活塞执行器,具有有效的流体分配和实现方法
    • WO2007126462A2
    • 2007-11-08
    • PCT/US2007002437
    • 2007-01-31
    • METSO AUTOMATION USA INCBAYREUTHER DAVIDARMSTRONG LEONARD
    • BAYREUTHER DAVIDARMSTRONG LEONARD
    • F01B9/00
    • F16K31/1635F15B15/065F15B15/202
    • In an actuator, a first piston is attached to a first toothed rack, and a second piston is attached to a second toothed rack. A rotary member is attached to one pinion mating with the first or second toothed racks. A first volume is disposed in the cavity on one side of the first piston. A second volume is disposed in the cavity on another side of the first piston. A third volume is disposed on a side of the second piston opposite the second volume. A first fluid port is in fluid communication with the first volume via a primary fluid passage. A second fluid port, which is external to the cavity, is in fluid communication with the second volume. A fluid passage in the housing, external to the cavity and separate from the primary fluid passage connects the first and third volumes independently of the primary fluid passage..
    • 在致动器中,第一活塞附接到第一齿条,第二活塞附接到第二齿条。 旋转构件附接到与第一或第二齿形齿条配合的一个小齿轮。 第一容积设置在第一活塞的一侧的空腔中。 第二容积设置在第一活塞的另一侧的空腔中。 第三容积设置在与第二容积相对的第二活塞的一侧。 第一流体端口经由主流体通道与第一体积流体连通。 在空腔外部的第二流体端口与第二容积流体连通。 外壳中的流体通道在腔的外部并与主流体通道分离,独立于主流体通道连接第一和第三体积。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR ESTIMATING PRODUCTION AND FEED CONSISTENCY DISTURBANCES
    • 用于估算生产和进料一致性干扰的系统和方法
    • WO2006049661A3
    • 2006-07-27
    • PCT/US2005024016
    • 2005-07-07
    • METSO AUTOMATION USA INCFRALIC GREGORY RICHARD
    • FRALIC GREGORY RICHARD
    • G06F11/30
    • D21D1/20B02C7/14D21G9/0018
    • A fiber processing system including a refiner configured to process fibrous matter. The system further includes a plurality of measurement units coupled to the refiner to measure different operating conditions of the refiner, and a first control system coupled to the plurality of measurement units and configured to receive a plurality of operation conditions of the refiner from the plurality of measurement units. A processing unit is coupled to the control system and configured to estimate a production disturbance and a feed consistency disturbance of the refiner based on the plurality of operation conditions. The system also includes a second control system coupled to the processing unit and configured to generate a target operating condition based on the production disturbance and the feed consistency disturbance. The first control system is further configured to control an operation of the refiner based on the target operating condition.
    • 一种纤维处理系统,包括配置成处理纤维状物质的精制机。 所述系统还包括多个测量单元,其耦合到所述精磨机以测量所述精磨机的不同操作条件,以及耦合到所述多个测量单元并被配置为从所述多个测量单元接收所述精磨机的多个操作条件的第一控制系统 测量单位。 处理单元耦合到控制系统并且被配置为基于多个操作条件来估计精磨机的生产干扰和进料一致性干扰。 该系统还包括耦合到处理单元并被配置为基于生产干扰和进料一致性干扰产生目标操作条件的第二控制系统。 第一控制系统还被配置为基于目标操作条件控制精磨机的操作。
    • 5. 发明申请
    • SYSTEM AND METHOD FOR ESTIMATING PRODUCTION AND FEED CONSISTENCY DISTURBANCES
    • 用于估计生产和饲料一致性干扰的系统和方法
    • WO2006049661A2
    • 2006-05-11
    • PCT/US2005/024016
    • 2005-07-07
    • METSO AUTOMATION USA INC.FRALIC, Gregory, Richard
    • FRALIC, Gregory, Richard
    • G06F11/30
    • D21D1/20B02C7/14D21G9/0018
    • A fiber processing system including a refiner configured to process fibrous matter. The system further includes a plurality of measurement units coupled to the refiner to measure different operating conditions of the refiner, and a first control system coupled to the plurality of measurement units and configured to receive a plurality of operation conditions of the refiner from the plurality of measurement units. A processing unit is coupled to the control system and configured to estimate a production disturbance and a feed consistency disturbance of the refiner based on the plurality of operation conditions. The system also includes a second control system coupled to the processing unit and configured to generate a target operating condition based on the production disturbance and the feed consistency disturbance. The first control system is further configured to control an operation of the refiner based on the target operating condition.
    • 纤维处理系统包括配置成处理纤维物质的磨浆机。 该系统还包括耦合到精磨机以测量精磨机的不同操作条件的多个测量单元以及耦合到多个测量单元并且被配置为从多个测量单元接收精磨机的多个操作条件的第一控制系统 测量单位。 处理单元耦合到控制系统并且被配置为基于多个操作条件来估计磨浆机的生产扰动和进给一致性扰动。 该系统还包括第二控制系统,该第二控制系统耦合到处理单元并且被配置为基于生产干扰和进给一致性干扰来生成目标操作条件。 第一控制系统还被配置为基于目标操作条件来控制磨浆机的操作。
    • 10. 发明申请
    • STEM OR SHAFT SEAL ARRANGEMENT
    • STEM或SHAFT密封安排
    • WO2003029704A1
    • 2003-04-10
    • PCT/US2002/021834
    • 2002-08-08
    • METSO AUTOMATION USA, INC.
    • DORRIAN, Philip, J.BAYREUTHER, David, c.
    • F16J15/18
    • F16J15/186F16K41/046
    • An improved seal arrangement in an assembly such as a valve assembly provides a compression member (42) to press a seal (20) between the compression member and the first portion (21) of the seal. A second portion (22) of the seal is disposed between the compression member and the valve body (10). A recess (31) of the compression member provides a first inclined surface (33) which contacts a second inclined surface (23) provided on the first portion of the seal. A third inclined surface (34) on the compression member contacts a fourth inclined surface (24) provided at a juncture between the first and second portions of the seal. A fifth inclined surface (15) is provided on the housing to contact a sixth inclined surface (25) provided on the second portion of the seal. The arrangement creates lateral or side loads between the seal and the valve stem and also between the seal and the valve body to prevent or minimize leakage over a large number of valve operating cycles.
    • 在诸如阀组件的组件中的改进的密封布置提供了压缩构件(42),以挤压压缩构件和密封件的第一部分(21)之间的密封件(20)。 密封件的第二部分(22)设置在压缩构件和阀体(10)之间。 压缩构件的凹部(31)提供接触设置在密封件的第一部分上的第二倾斜表面(23)的第一倾斜表面(33)。 压缩构件上的第三倾斜表面(34)接触设置在密封件的第一和第二部分之间的接合处的第四倾斜表面(24)。 第五倾斜表面(15)设置在壳体上以接触设置在密封件的第二部分上的第六倾斜表面(25)。 该装置在密封件和阀杆之间以及在密封件和阀体之间产生横向或侧向负载,以防止或最小化在大量阀操作循环中的泄漏。