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    • 3. 发明授权
    • Motor operated valve analysis and testing system with monitoring of
spring pack movement through torque switch post
    • 电动阀门分析和测试系统,通过扭矩开关柱监测弹簧组件运动
    • US4735101A
    • 1988-04-05
    • US816749
    • 1986-01-07
    • Arthur G. CharbonneauJohn A. McMennamySteven Nafziger
    • Arthur G. CharbonneauJohn A. McMennamySteven Nafziger
    • G01M13/00F16K37/00G01M20060101G01M99/00G01M19/00G01P13/00
    • F16K37/0083Y10T137/8175
    • A unique apparatus and method are used to detect and measure movement of a valve spring pack and worm through monitoring rotation of the torque switch control post. A device for measuring the operating characteristics of a valve and its operator and the corresponding imposed valve stem load is attached to the valve operator. The apparatus provides devices for statically calibrating the operator relative to the imposed valve load and provides a device for recording traces of the imposed load and associated parameters during dynamic conditions as related to the operation of the operator and valve combined. The apparatus is then used to provide diagnostic dynamic traces at any specified time in the future for the operator and valve. These future traces are used to compare with earlier traces to verify correct performance and most importantly to detect induced or impending damage, malfunctions, or maintenance requirements for the operator and valve.
    • 使用独特的装置和方法通过监测转矩开关控制柱的旋转来检测和测量阀弹簧组件和蜗杆的运动。 用于测量阀门及其操作者的操作特性的装置以及对应的阀杆负载被附接到阀门操作器。 该设备提供用于相对于所施加的阀负载静态校准操作者的装置,并且提供用于在与操作者和阀组合的操作相关的动态条件期间记录施加的负载和相关参数的轨迹的装置。 然后,该设备用于在将来的任何指定时间为操作者和阀提供诊断动态轨迹。 这些未来轨迹用于与早期迹线进行比较,以验证正确的性能,最重要的是检测操作员和阀门的诱发或即将发生的故障,故障或维护要求。
    • 4. 发明授权
    • Quickly installed load measuring apparatus and associated system
    • 快速安装负载测量仪器及相关系统
    • US4912984A
    • 1990-04-03
    • US168161
    • 1988-03-15
    • John A. McMennamyBruce T. BooneJames H. Jenkins
    • John A. McMennamyBruce T. BooneJames H. Jenkins
    • F16K37/00
    • F16K37/0083
    • A load measuring apparatus is, in preferred embodiments, preassembled in a ready-to-use, portable assembly and comprises a load bearing body providing a deformable link between a shaft housing (such as a valve operator) and a shaft which moves relative to the housing, and which deformable, load bearing body functions as the support for a shaft engaging element of the invented device; and also comprises strain gauges measuring the deformation of the load bearing body, which deformation is related to the thrust of the shaft; load measuring apparatus operating in association with a signal conditioning device and display/recording device by which measurements are conveyed and interpreted; in the preferred embodiment, the load measuring apparatus includes an overload shear washer incorporated to prevent damage to the shaft housing by shearing away and allowing continued, unblocked movement of the shaft.
    • 在优选实施例中,负载测量装置预先组装在便于使用的便携式组件中,并且包括负载承载体,其在轴壳体(例如阀操作器)和相对于 壳体和可变形的承载体用作本发明装置的轴接合元件的支撑件; 并且还包括测量承载体的变形的应变计,该变形与轴的推力相关; 负载测量装置与信号调节装置和显示/记录装置相关联地通过其传送和解释测量; 在优选实施例中,负载测量装置包括过载剪切垫圈,其结合以防止通过剪切而损坏轴壳体,并允许轴的持续的,无阻挡的运动。
    • 5. 发明授权
    • Quickly installed load measuring apparatus and associated system
    • 快速安装负载测量仪器及相关系统
    • US5056374A
    • 1991-10-15
    • US461669
    • 1990-01-08
    • John A. McMennamyBruce T. BooneJames H. Jenkins
    • John A. McMennamyBruce T. BooneJames H. Jenkins
    • F16K37/00F16K49/00
    • F16K49/002F16K37/0083
    • A load measuring apparatus is, in preferred embodiments, pre-assembled in a ready-to-use, portable assembly and comprises a load bearing body providing a deformable link between a shaft housing (such as a valve operator) and a shaft which moves relative to the housing, and which deformable, load bearing body functions as the support for a shaft engaging element of the invented device; and also comprises strain gauges measuring the deformation of the load bearing body, which deformation is related to the thrust of the shaft; load measuring apparatus operating in association with a signal conditioning device and display/recording device by which measurements are conveyed and interpreted; in the preferred embodiment, the load measuring apparatus includes an overload shear washer incorporated to prevent damage to the shaft housing by shearing away and allowing continued, unblocked movement of the shaft.
    • 在优选实施例中,负载测量装置预先组装成即用便携式组件,并且包括承载体,其在轴壳体(例如阀门操作器)和相对移动的轴之间提供可变形连杆 并且可变形的承载体用作本发明装置的轴接合元件的支撑件; 并且还包括测量承载体的变形的应变计,该变形与轴的推力相关; 负载测量装置与信号调节装置和显示/记录装置相关联地通过其传送和解释测量; 在优选实施例中,负载测量装置包括过载剪切垫圈,其结合以防止通过剪切而损坏轴壳体,并允许轴的持续的,无阻挡的运动。
    • 7. 发明授权
    • Motor operated valve analysis and testing system with monitoring of
spring pack movement through torque switch post
    • 电动阀门分析和测试系统,通过扭矩开关柱监测弹簧组件运动
    • US4860596A
    • 1989-08-29
    • US66721
    • 1987-06-25
    • Arthur G. CharbonneauJohn A. McMennamySteven Nafziger
    • Arthur G. CharbonneauJohn A. McMennamySteven Nafziger
    • F16K37/00
    • F16K37/0083
    • A unique apparatus and method are used to detect and measure movement of a valve spring pack and worm through monitoring rotation of the torque switch control post. A device for measuring the operating characteristics of a valve and its operator and the corresponding imposed valve stem load is attached to the valve operator. The apparatus provides devices for statically calibrating the operator relative to the imposed valve load and provides a device for recording traces of the improved load and associated parameters during dynamic conditions as related to the operation of the operator and valve combined. The apparatus is then used to provide diagnostic dynamic traces at any specified time in the future for the operator and valve. These future traces are used to compare with earlier traces to verify correct performance and most importantly to detect induced or impending damage, malfunctions, or maintenance requirements for the operator and valve.
    • 使用独特的装置和方法通过监测转矩开关控制柱的旋转来检测和测量阀弹簧组件和蜗杆的运动。 用于测量阀门及其操作者的操作特性的装置以及对应的阀杆负载被附接到阀门操作器。 该装置提供用于相对于所施加的阀负载静态校准操作者的装置,并提供用于在与操作者和阀的组合的操作相关的动态条件期间记录改进的负载和相关参数的轨迹的装置。 然后,该设备用于在将来的任何指定时间为操作者和阀提供诊断动态轨迹。 这些未来轨迹用于与早期迹线进行比较,以验证正确的性能,最重要的是检测操作员和阀门的诱发或即将发生的故障,故障或维护要求。