SPECTROSCOPY HAVING CORRECTION FOR BROADBAND DISTORTION FOR ANALYZING MULTI-COMPONENT SAMPLES
    1.
    发明申请
    SPECTROSCOPY HAVING CORRECTION FOR BROADBAND DISTORTION FOR ANALYZING MULTI-COMPONENT SAMPLES 有权
    具有用于分析多组分样品的宽带失真校正的光谱

    公开(公告)号:US20100243900A1

    公开(公告)日:2010-09-30

    申请号:US12413666

    申请日:2009-03-30

    IPC分类号: G01J5/02 G01J1/42 G01J3/00

    摘要: A spectroscopic method and spectroscopy system therefrom for analyzing samples. A sample includes a first chemical component that has a characteristic first absorption peak is provided. The sample is irradiated in a measurement waveband proximate to the first absorption peak, and at a first and a second reference waveband where the first chemical component lacks characteristic absorption features. Reflected or transmitted detection data is obtained including a measured power proximate to the first absorption peak and first and second reference powers at the reference wavebands. A plurality of different waveband ratios are evaluated using pairs of detection data to generate a plurality of measured waveband ratio values. A parameter of the first chemical component is then determined by evaluating a multidimensional polynomial calibration equation that relates the parameter of the first chemical component to the plurality of different waveband ratios by substituting the measured waveband ratio values into the calibration relation.

    摘要翻译: 用于分析样品的光谱法和光谱系统。 样品包括具有特征性第一吸收峰的第一化学成分。 在接近第一吸收峰的测量波段和第一和第二参考波段照射样品,其中第一化学成分缺少特征吸收特征。 获得的反射或发射的检测数据包括接近第一吸收峰的测量的功率和在参考波段处的第一和第二参考功率。 使用成对的检测数据来评估多个不同的波段比,以产生多个测量的波段比值。 然后通过将测量的波段比值代入校正关系来评估将第一化学成分的参数与多个不同波段比率相关联的多维多项式校准方程来确定第一化学成分的参数。

    In-situ sensor for automated measurements of gas content in liquid and related system and method
    2.
    发明授权
    In-situ sensor for automated measurements of gas content in liquid and related system and method 有权
    用于液体和相关系统中气体含量自动测量的原位传感器和方法

    公开(公告)号:US08464572B2

    公开(公告)日:2013-06-18

    申请号:US12899707

    申请日:2010-10-07

    IPC分类号: G01N33/18

    摘要: A system includes a signal source that provides a first signal for measuring a gas content of a liquid sample. The system also includes an analyzer that determines the gas content of the liquid sample using a measurement of a second signal, where the second signal is based on the first signal. The system further includes an apparatus with a walled structure having a cavity. The apparatus also includes a piston that pulls the liquid sample into the cavity and pushes the liquid sample out of the cavity. The apparatus further includes at least one measurement window having at least one inner surface exposed within the cavity. The at least one measurement window receives the first signal from the signal source and provides the second signal to the analyzer. The piston could also clean the at least one inner surface, and the piston can include a reference material for calibrating the analyzer.

    摘要翻译: 一种系统包括提供用于测量液体样品的气体含量的第一信号的信号源。 该系统还包括分析器,其使用第二信号的测量来确定液体样品的气体含量,其中第二信号基于第一信号。 该系统还包括具有空腔的具有壁结构的装置。 该装置还包括将液体样品拉入空腔并将液体样品推出空腔的活塞。 该装置还包括至少一个测量窗口,其具有暴露在空腔内的至少一个内表面。 所述至少一个测量窗口从信号源接收第一信号,并向分析器提供第二信号。 活塞还可以清洁至少一个内表面,并且活塞可以包括用于校准分析器的参考材料。

    Differential Coat Weight Measurement by Means of Nuclear or X-ray Gauges
    3.
    发明申请
    Differential Coat Weight Measurement by Means of Nuclear or X-ray Gauges 有权
    通过核或X射线测量仪进行差分重量测量

    公开(公告)号:US20100159121A1

    公开(公告)日:2010-06-24

    申请号:US12621508

    申请日:2009-11-19

    IPC分类号: B05D1/00 G01D18/00 G01J1/42

    摘要: An improved differential coat weight technique employs a novel algorithm for measuring the weight of a coating material that has been deposited onto a sheet of substrate. The invention employs dual x-ray or nuclear gauges such that, even though the downstream sensor is never exposed to uncoated sheet substrate, imparting the downstream sensor with the ability to predict results that it would have yielded when measuring the uncoated sheet substrate, leads to the development of a coat weight calibration protocol from which the basis weight of the coating can be ascertained directly from measurements from the upstream and downstream sensors. No subtraction of results is required. Moreover, the two sensors do not need to be re-calibrated whenever the relative proportions of the coating and base substrate change. The technique is particularly suited for applications where the coating material and substrate are made of substances that have very different atomic numbers.

    摘要翻译: 改进的差速涂层重量技术采用新颖的算法来测量已沉积在基片上的涂层材料的重量。 本发明采用双X射线或核仪表,使得即使下游传感器从未暴露于未涂覆的片材基底,赋予下游传感器预测在测量未涂覆片材基底时可能产生的结果的能力,导致 开发涂层重量校准方案,可以从上游和下游传感器的测量直接确定涂层的基重。 不需要减去结果。 此外,只要涂层和基底的相对比例改变,两个传感器就不需要重新校准。 该技术特别适用于涂料和基材由具有非常不同原子序数的物质制成的应用。

    Automatic z-Correction for Basis Weight Sensors
    4.
    发明申请
    Automatic z-Correction for Basis Weight Sensors 有权
    自动z校正基重量传感器

    公开(公告)号:US20150323375A1

    公开(公告)日:2015-11-12

    申请号:US14517762

    申请日:2014-10-17

    摘要: Nuclear-based basis weight sensors are passline-sensitive. Error in measurement is induced when the sheet moves up and down in the gap between the radiation source and detector. A passline-insensitive basis weight sensor includes a triangulation sensor to measure the position of the sheet within the gap. The sensor and gap is characterized in the laboratory for its passline behavior over a range of basis weights. The curves are either parameterized or a lookup table is created for each weight and passline position and the data added to the sensor's processor. The basis weight measured can be automatically corrected to account for deviations from the passline or nominal path through the sensor.

    摘要翻译: 基于核的基重传感器是通过线路敏感的。 当片材在辐射源和检测器之间的间隙中上下移动时,会引起测量误差。 无线传感器的基重传感器包括三角测量传感器,用于测量间隙内片材的位置。 传感器和间隙在实验室中的特征在于在一定范围的基重上的通行行为。 曲线既可以参数化,也可以为每个加权和通行位置以及添加到传感器处理器的数据创建查找表。 测量的基重可以自动校正,以解决通过传感器的通行线或标称路径的偏差。

    Differential coat weight measurement by means of nuclear or X-ray gauges
    5.
    发明授权
    Differential coat weight measurement by means of nuclear or X-ray gauges 有权
    通过核或X射线测量仪进行差示涂层重量测量

    公开(公告)号:US08394449B2

    公开(公告)日:2013-03-12

    申请号:US12621508

    申请日:2009-11-19

    IPC分类号: C23C16/52 G01T1/167 H04N5/33

    摘要: An improved differential coat weight technique employs a novel algorithm for measuring the weight of a coating material that has been deposited onto a sheet of substrate. The invention employs dual x-ray or nuclear gauges such that, even though the downstream sensor is never exposed to uncoated sheet substrate, imparting the downstream sensor with the ability to predict results that it would have yielded when measuring the uncoated sheet substrate, leads to the development of a coat weight calibration protocol from which the basis weight of the coating can be ascertained directly from measurements from the upstream and downstream sensors. No subtraction of results is required. Moreover, the two sensors do not need to be re-calibrated whenever the relative proportions of the coating and base substrate change. The technique is particularly suited for applications where the coating material and substrate are made of substances that have very different atomic numbers.

    摘要翻译: 改进的差速涂层重量技术采用新颖的算法来测量已沉积在基片上的涂层材料的重量。 本发明采用双X射线或核仪表,使得即使下游传感器从未暴露于未涂覆的片材基底,赋予下游传感器预测在测量未涂覆片材基底时可能产生的结果的能力,导致 开发涂层重量校准方案,可以从上游和下游传感器的测量直接确定涂层的基重。 不需要减去结果。 此外,只要涂层和基底的相对比例改变,两个传感器就不需要重新校准。 该技术特别适用于涂料和基材由具有非常不同原子序数的物质制成的应用。

    IN-SITU SENSOR FOR AUTOMATED MEASUREMENTS OF GAS CONTENT IN LIQUID AND RELATED SYSTEM AND METHOD
    6.
    发明申请
    IN-SITU SENSOR FOR AUTOMATED MEASUREMENTS OF GAS CONTENT IN LIQUID AND RELATED SYSTEM AND METHOD 有权
    用于自动测量液体中气体含量的现场传感器及相关系统及方法

    公开(公告)号:US20120085144A1

    公开(公告)日:2012-04-12

    申请号:US12899707

    申请日:2010-10-07

    IPC分类号: G01N33/18

    摘要: A system includes a signal source that provides a first signal for measuring a gas content of a liquid sample. The system also includes an analyzer that determines the gas content of the liquid sample using a measurement of a second signal, where the second signal is based on the first signal. The system further includes an apparatus with a walled structure having a cavity. The apparatus also includes a piston that pulls the liquid sample into the cavity and pushes the liquid sample out of the cavity. The apparatus further includes at least one measurement window having at least one inner surface exposed within the cavity. The at least one measurement window receives the first signal from the signal source and provides the second signal to the analyzer. The piston could also clean the at least one inner surface, and the piston can include a reference material for calibrating the analyzer.

    摘要翻译: 一种系统包括提供用于测量液体样品的气体含量的第一信号的信号源。 该系统还包括分析器,其使用第二信号的测量来确定液体样品的气体含量,其中第二信号基于第一信号。 该系统还包括具有空腔的具有壁结构的装置。 该装置还包括将液体样品拉入空腔并将液体样品推出空腔的活塞。 该装置还包括至少一个测量窗口,其具有暴露在空腔内的至少一个内表面。 所述至少一个测量窗口从信号源接收第一信号,并向分析器提供第二信号。 活塞还可以清洁至少一个内表面,并且活塞可以包括用于校准分析器的参考材料。

    Spectroscopy having correction for broadband distortion for analyzing multi-component samples
    8.
    发明授权
    Spectroscopy having correction for broadband distortion for analyzing multi-component samples 有权
    光谱学对宽带失真进行校正,用于分析多组分样品

    公开(公告)号:US07868296B2

    公开(公告)日:2011-01-11

    申请号:US12413666

    申请日:2009-03-30

    IPC分类号: G01J5/02

    摘要: A spectroscopic method and spectroscopy system therefrom for analyzing samples. A sample includes a first chemical component that has a characteristic first absorption peak is provided. The sample is irradiated in a measurement waveband proximate to the first absorption peak, and at a first and a second reference waveband where the first chemical component lacks characteristic absorption features. Reflected or transmitted detection data is obtained including a measured power proximate to the first absorption peak and first and second reference powers at the reference wavebands. A plurality of different waveband ratios are evaluated using pairs of detection data to generate a plurality of measured waveband ratio values. A parameter of the first chemical component is then determined by evaluating a multidimensional polynomial calibration equation that relates the parameter of the first chemical component to the plurality of different waveband ratios by substituting the measured waveband ratio values into the calibration relation.

    摘要翻译: 用于分析样品的光谱法和光谱系统。 样品包括具有特征性第一吸收峰的第一化学成分。 在接近第一吸收峰的测量波段和第一和第二参考波段照射样品,其中第一化学成分缺少特征吸收特征。 获得的反射或发射的检测数据包括接近第一吸收峰的测量的功率和在参考波段处的第一和第二参考功率。 使用成对的检测数据来评估多个不同的波段比,以产生多个测量的波段比值。 然后通过将测量的波段比值代入校正关系来评估将第一化学成分的参数与多个不同的波段比率相关联的多维多项式校准方程来确定第一化学成分的参数。

    Single-point measurement of high-Z additives in sheets
    9.
    发明授权
    Single-point measurement of high-Z additives in sheets 有权
    单位测量片材中高Z添加剂

    公开(公告)号:US07399971B2

    公开(公告)日:2008-07-15

    申请号:US11317693

    申请日:2005-12-23

    IPC分类号: G01F23/00

    摘要: An apparatus, method and computer program product for determining a concentration of a high-Z material in a material sample. The method comprises steps of: receiving a material sample and subjecting the material sample to a first sensor device that is substantially ash insensitive for generating a first sensor response signal, and a second sensor device that is sensitive to presence of high-Z material and generating a second sensor response signal. Both the first and second sensor response signals from the first and second sensor devices are processed simultaneously to extract a weight of the high-Z material additive. The weight of the high-Z material additive is determined in a single scan of the material sample.

    摘要翻译: 一种用于确定材料样品中高Z材料浓度的装置,方法和计算机程序产品。 该方法包括以下步骤:接收材料样品并使材料样品经受对于产生第一传感器响应信号基本上不敏感的第一传感器装置,以及对存在高Z材料敏感的第二传感器装置,并产生 第二传感器响应信号。 来自第一和第二传感器装置的第一和第二传感器响应信号都被同时处理以提取高Z材料添加剂的重量。 在材料样品的单次扫描中确定高Z材料添加剂的重量。