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    • 91. 发明授权
    • Process for manufacturing fabric pressure sensor
    • 织物压力传感器制造工艺
    • US09488536B2
    • 2016-11-08
    • US13825124
    • 2011-08-23
    • Xiaoming TaoTao HuaYangyong WangQiao LiYee Kwan Chow
    • Xiaoming TaoTao HuaYangyong WangQiao LiYee Kwan Chow
    • G01L1/00G01N27/04G01L1/20G01L11/02
    • G01L1/00G01L1/20G01L1/205G01L11/025G01N27/04Y10T29/49004Y10T29/49117Y10T29/53
    • A process for manufacturing a fabric pressure sensor comprises cutting a sensing fabric to a pre-determined size, connecting a flexible electric wire with a wire of the sensing fabric by sewing, fixing the sensing fabric by means of a clamping positioner at a pre-determined tension, bonding a lower conversion layer with the sensing fabric by means of a lower conversion layer positioning box, bonding an adjustable column with the sensing fabric by means of an upper conversion layer positioning box, and bonding the upper conversion layer with the adjustable column by means of the upper conversion layer positioning box. A tool for manufacturing the sensor comprises an electrical property measuring device, a wire connecting tool, and a sensor structural component assembling tool. The present invention provides an easy and convenient way of manufacturing a fabric pressure sensor, monitoring the quality of manufacture, and enhancing the manufacturing precision and product yield.
    • 用于制造织物压力传感器的方法包括将感测织物切割成预定尺寸,通过缝合将柔性电线与感测织物的线连接,借助于夹紧定位器将感测织物固定在预定的 张力,通过下转换层定位盒与感测织物粘合较低转换层,通过上转换层定位盒将可调节柱与感测织物结合,并将上转换层与可调列结合 上转换层定位盒的手段。 用于制造传感器的工具包括电性能测量装置,线连接工具和传感器结构部件组装工具。 本发明提供一种容易制造织物压力传感器的方法,监测制造质量,提高制造精度和产品产量。
    • 95. 发明授权
    • Fiber grating sensor system for measuring key parameters during high speed
    • 用于高速测量关键参数的光纤光栅传感器系统
    • US09417127B2
    • 2016-08-16
    • US13658535
    • 2012-10-23
    • Eric Udd
    • Eric Udd
    • G01B11/16G01J3/18G01J3/10G01K11/32G01L1/24G01L11/02
    • G01J3/1895G01J3/10G01J2003/102G01K11/3206G01L1/246G01L11/025
    • A fiber grating sensor system is used to measure key parameters that include pressure, strain and temperature at specific locations and at high speed. The system relies on spectral properties associated with the fiber grating sensors, the light source and the optical detection system to provide these capabilities. The system has been successfully applied to measurement of pressures up to 1,200,000 psi and by increasing the spectral width of the light source extensions of pressure measurements to 4,000,000 psi and higher are possible. Temperature change measurements have been made of 400 degrees C. over a period of 25 micro-seconds limited by the physical response of the fiber sensors and the output detector bandwidth both of which can be greatly improved by reducing fiber sizes and with improved detectors. Novel methods have been devised to lower cost and enable measurements with spatial location, speed and accuracy that have been very difficult or not yet achieved.
    • 光纤光栅传感器系统用于测量关键参数,包括特定位置和高速下的压力,应变和温度。 该系统依赖于与光纤光栅传感器,光源和光学检测系统相关联的光谱性质来提供这些能力。 该系统已经成功应用于高达1,200,000psi的压力测量,并且通过将压力测量的光源延伸的光谱宽度增加到4,000,000psi和更高是可能的。 通过光纤传感器的物理响应和输出检测器带宽限制的25微秒的时间内,温度变化测量已经达到400摄氏度,这两者都可以通过减小光纤尺寸和改进的检测器而大大提高。 已经设计了新的方法来降低成本并且使得具有非常困难或尚未实现的空间位置,速度和精度的测量。
    • 96. 发明授权
    • Systems and methods for multiplexing sensors along a cable
    • 沿着电缆复用传感器的系统和方法
    • US09250140B2
    • 2016-02-02
    • US14226062
    • 2014-03-26
    • General Electric Company
    • William Albert Challener
    • G01N21/55G01K11/32G01L11/02G01V8/10B81B7/02
    • G01K11/32B81B7/02G01L11/025G01V8/10H04J14/0201H04J14/028
    • A wavelength assignment system in one embodiment includes an upstream port, a sensor port, and a downstream port. The upstream port is configured to receive a transmitted signal including a drive component and a read component comprising individual read channel components at corresponding individual read wavelengths. The sensor port is configured to provide a sensor component of the transmitted signal including a sensor portion of the drive component and substantially all of an individual read channel component to a sensor. The downstream port is configured to provide a downstream component including a downstream portion of the drive component and at least one additional read channel component of the transmitted signal to at least one additional sensor disposed downstream of the sensor. The wavelength assignment system is configured to receive the transmitted signal and separate the transmitted signal into the sensor component and the downstream component.
    • 一个实施例中的波长分配系统包括上游端口,传感器端口和下游端口。 上游端口被配置为接收包括驱动部件的传输信号和包括在相应的单独读取波长的各个读取通道部件的读取部件。 传感器端口被配置为提供传输信号的传感器部件,其包括驱动部件的传感器部分和基本上所有的单个读取通道部件到传感器。 下游端口被配置为提供包括驱动部件的下游部分的下游部件以及传输信号的至少一个附加读取通道部件到设置在传感器下游的至少一个附加传感器。 波长分配系统被配置为接收所发送的信号并将发送的信号分离成传感器部件和下游部件。
    • 97. 发明申请
    • SMALL PROFILE PRESSURE AND TEMPERATURE GAUGES
    • 小型压力和温度测量
    • US20160011066A1
    • 2016-01-14
    • US14330338
    • 2014-07-14
    • Weatherford/Lamb, Inc.
    • Domino TAVERNERJohn J. GRUNBECKJames DUNPHY
    • G01L11/02G01K11/32G02B6/34
    • G01L11/025E21B47/01E21B47/011E21B47/06G01K11/32G02B6/02057G02B6/02076G02B6/02209G02B6/34
    • Small profile apparatus for pressure and/or temperature sensing within a wellbore are provided. The apparatus may include optical sensing assemblies designed for inclusion in traditional or coiled production tubing deployments and suitable for use in high pressure, high temperature environments. One example assembly generally includes a housing having a divider for separating a first volume from a second volume inside the housing, a compressible element disposed in the first volume, wherein a first end of the compressible element is coupled to the divider and a second of the compressible element is sealed, and a large diameter optical waveguide disposed in an internal volume of the compressible element. The waveguide typically includes a first portion with a first grating and a second portion with a second grating, wherein the first portion has a greater outer diameter than the second portion.
    • 提供了用于井筒内的压力和/或温度感测的小型装置。 该装置可以包括设计成包含在传统的或盘绕的生产管道部署中并且适用于高压,高温环境的光学感测组件。 一个示例性组件通常包括具有用于将第一体积与壳体内的第二体积分隔开的分隔件的壳体,设置在第一体积中的可压缩元件,其中可压缩元件的第一端联接到分隔器, 可压缩元件被密封,并且设置在可压缩元件的内部体积中的大直径光波导。 波导通常包括具有第一光栅的第一部分和具有第二光栅的第二部分,其中第一部分具有比第二部分更大的外径。