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    • 12. 发明申请
    • SENSOR MOUNT VIBRATION REDUCTION
    • 传感器安装减振
    • US20120291551A1
    • 2012-11-22
    • US13096450
    • 2011-04-28
    • Robert H. Moore
    • Robert H. Moore
    • G01C19/56
    • G01C19/5607
    • Techniques are provided for reducing mount vibration in an inertial rate sensor (IRS). For example, if oscillation in an IRS's vibratory members, vibrating along a first axis, cause displacement in the IRS's mount along a second axis, the vibratory members can be aligned so that the vibratory members have some component of movement along the second axis during oscillation. This component of movement can help reduce the displacement of the IRS's mount along the second axis. It can further reduce sensitivity to changes in the boundary conditions of an IRS (e.g., vibrations and other movements at the mount from forces external to the IRS). Vibratory members further can have portions of increased mass at the vibratory members' tips, which can impact the alignment of the vibratory members. These examples, however, are not exhaustive.
    • 提供了减少惯性速率传感器(IRS)中的安装振动的技术。 例如,如果沿着第一轴线振动的IRS的振动部件中的振动引起沿着第二轴线的IRS的安装座中的位移,则振动部件可以对齐,使得振动部件在振荡期间沿着第二轴线具有一些运动分量 。 运动的这个组成部分可以帮助减少IRS的底座沿第二轴的位移。 它可以进一步降低对IRS边界条件变化的敏感性(例如,IRS外部的力的振动和其他运动)。 振动构件还可以在振动构件的尖端处具有增加质量的部分,这可以影响振动构件的对准。 然而,这些例子并不详尽。
    • 13. 发明授权
    • Nip width sensing system and method
    • Nip宽度传感系统及方法
    • US06568285B1
    • 2003-05-27
    • US09252203
    • 1999-02-18
    • Robert H. MooreWilliam B. Kennedy
    • Robert H. MooreWilliam B. Kennedy
    • G01L500
    • G01L5/0085G01B7/14
    • Devices for measuring a nip width between rolls of a press nip include one or more sensors adapted to be placed in the nip while the nip is stationary. The electrical resistance of each sensor corresponds to the size of the nip width, whereby a nip width or a nip width distribution may be determined by measuring the sensor resistance(s). Methods of measuring a nip width distribution include providing a plurality of force sensitive resistor sensors each of which respond to pressure applied thereto to provide a variable sensor resistance as a function of the amount of pressure and the area of the pressure exerted on the sensor.
    • 用于测量压榨辊隙辊之间的辊隙宽度的装置包括一个或多个适于放置在压区中的传感器,同时辊隙是静止的。 每个传感器的电阻对应于压区宽度的大小,由此可以通过测量传感器电阻来确定压区宽度或压区宽度分布。 测量辊隙宽度分布的方法包括提供多个力敏电阻传感器,每个力敏电阻传感器响应施加到其上的压力,以提供作为压力量和施加在传感器上的压力面积的函数的可变传感器电阻。
    • 14. 发明授权
    • Nip pressure sensing system
    • 压力传感系统
    • US06205369B1
    • 2001-03-20
    • US09325938
    • 1999-06-04
    • Robert H. Moore
    • Robert H. Moore
    • G06F1900
    • G01L5/0085Y10S162/901
    • A roll sensing system for measuring the pressure distribution and nip width in a nip roll press. The sensing system comprises a strip having sensors thereon, the strip being placed in a nip press, for sensing the pressure at several locations therealong. At one end of the strip lies electronics associated with the sensors. The electronics communicate with an optional multiplexer and a bidirectional transmitter for signal transmission to an external signal conditioner and an external computer. The computer determines pressure values and nip width values at various locations along the strip, and communicates with a display which provides a visual, graphical and/or numerical data to the operator. Optionally, a control system can be in communication with the transmitter or the computer to initiate crown corrections in response to pressure or nip width readings.
    • 辊压感测系统,用于测量压辊压机中的压力分布和压区宽度。 感测系统包括带上的传感器的条带,条带被放置在辊隙压机中,用于感测在其上的几个位置处的压力。 带的一端位于与传感器相连的电子部件。 电子设备与可选的多路复用器和双向发射器通信,用于信号传输到外部信号调节器和外部计算机。 计算机确定沿着条带的不同位置处的压力值和压区宽度值,并与向操作者提供视觉,图形和/或数值数据的显示器通信。 可选地,控制系统可以与发射器或计算机通信,以响应于压力或压区宽度读数启动冠校正。
    • 18. 发明授权
    • Sensor mount vibration reduction
    • 传感器安装减震
    • US08573057B2
    • 2013-11-05
    • US13096450
    • 2011-04-28
    • Robert H. Moore
    • Robert H. Moore
    • G01C19/5607G01C19/5621
    • G01C19/5607
    • Techniques are provided for reducing mount vibration in an inertial rate sensor (IRS). For example, if oscillation in an IRS's vibratory members, vibrating along a first axis, cause displacement in the IRS's mount along a second axis, the vibratory members can be aligned so that the vibratory members have some component of movement along the second axis during oscillation. This component of movement can help reduce the displacement of the IRS's mount along the second axis. It can further reduce sensitivity to changes in the boundary conditions of an IRS (e.g., vibrations and other movements at the mount from forces external to the IRS). Vibratory members further can have portions of increased mass at the vibratory members' tips, which can impact the alignment of the vibratory members. These examples, however, are not exhaustive.
    • 提供了减少惯性速率传感器(IRS)中的安装振动的技术。 例如,如果沿着第一轴线振动的IRS的振动部件中的振动引起沿着第二轴线的IRS的安装座中的位移,则振动部件可以对齐,使得振动部件在振荡期间沿着第二轴线具有一些运动分量 。 运动的这个组成部分可以帮助减少IRS的底座沿第二轴的位移。 它可以进一步降低对IRS边界条件变化的敏感性(例如,IRS外部的力的振动和其他运动)。 振动构件还可以在振动构件的尖端处具有增加质量的部分,这可以影响振动构件的对准。 然而,这些例子并不详尽。
    • 19. 发明授权
    • Nip width sensing system and method
    • Nip宽度传感系统及方法
    • US06769314B2
    • 2004-08-03
    • US10444289
    • 2003-05-23
    • Robert H. MooreWilliam B. Kennedy
    • Robert H. MooreWilliam B. Kennedy
    • G01L500
    • G01L5/0085G01B7/14
    • Devices for measuring a nip width between rolls of a press nip include one or more sensors adapted to be placed in the nip while the nip is stationary. The electrical resistance of each sensor corresponds to the size of the nip width, whereby a nip width or a nip width distribution may be determined by measuring the sensor resistance(s). Methods of measuring a nip width distribution include providing a plurality of force sensitive resistor sensors each of which respond to pressure applied thereto to provide a variable sensor resistance as a function of the amount of pressure and the area of the pressure exerted on the sensor.
    • 用于测量压榨辊隙辊之间的辊隙宽度的装置包括一个或多个适于放置在压区中的传感器,同时辊隙是静止的。 每个传感器的电阻对应于压区宽度的大小,由此可以通过测量传感器电阻来确定压区宽度或压区宽度分布。 测量辊隙宽度分布的方法包括提供多个力敏电阻传感器,每个力敏电阻传感器响应施加到其上的压力,以提供作为压力量和施加在传感器上的压力面积的函数的可变传感器电阻。