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    • 61. 发明授权
    • Free shape gauge by laser pointer
    • 激光指针自由形状计
    • US07934463B2
    • 2011-05-03
    • US12408758
    • 2009-03-23
    • David Cook
    • David Cook
    • G01D11/28G12B11/04G12B11/02
    • G01D11/28B60K35/00B60K2350/2047Y10S116/05
    • A gauge can include a face plate and an indication area disposed about a gauge center. The indication area can have a shape that can be defined by a bottom boundary, a top boundary, and first and second ends joining respective ends of the top and bottom boundaries. The top and bottom boundaries can be spaced apart from the gauge center by first and second radial distances. The indication area can be angled rearward relative to the face plate with the top boundary being spaced rearward from the face plate. A plurality of indicia can be disposed on the face plate. The gauge can further include a laser system disposed behind a rear side of the face plate and arranged to rotate and reflect a laser beam to a position adjacent or relative to a specific one of the plurality of indicia based on a signal output from a sensor.
    • 计量器可以包括面板和围绕计量中心设置的指示区域。 指示区域可以具有可以由底部边界,顶部边界以及连接顶部和底部边界的相应端部的第一和第二端限定的形状。 顶部和底部边界可以与测量中心间隔第一和第二径向距离。 指示区域可以相对于面板向后成角度,顶部边界与面板向后间隔开。 多个标记可以设置在面板上。 测量仪还可以包括设置在面板背面后面的激光系统,并且布置成基于从传感器输出的信号,将激光束旋转并反射到与多个标记中的特定标记相邻或相对的位置。
    • 63. 发明申请
    • LEAK DETECTOR
    • 泄漏检测器
    • US20090293581A1
    • 2009-12-03
    • US12455119
    • 2009-05-28
    • Charles Michael NadinDavid Cook
    • Charles Michael NadinDavid Cook
    • G01D18/00G01M3/04H01J49/26
    • G01F1/74G01F1/704G01M3/28G01M3/30
    • A method of measuring the gas flow of an incondensable gas in a flowing mixture of said incondensable gas and a condensable gas comprising the steps of calibrating a leak detector; injecting a known quantity of gauge gas at a known mass flow rate into said flowing mixture of gases; drawing a sample of the said gauge mix off at a sample point; passing said sample through a condenser so as to remove said condensable gas from the gauge mix, resulting in a test mix; passing the said test mix into the leak detector so as to measure the concentration of the gauge gas within the test mix; and calculating the mass flow rate of said incondensable gas within said flowing mixture. There is also provided a method of measuring the rate of ingress of an incondensable gas at an ingress point along a flow path of a flowing mixture of said incondensable gas and a condensable gas.
    • 一种测量所述不可冷凝气体和可冷凝气体的流动混合物中的不可冷凝气体的气体流量的方法,包括校准泄漏检测器的步骤; 将已知量的气体以已知的质量流速注入所述流动的气体混合物中; 在样品点处抽出所述量规混合物的样品; 使所述样品通过冷凝器,以从所述量规混合器中除去所述可冷凝气体,得到测试混合物; 将所述测试混合物通入泄漏检测器中,以测量测试混合物内的气体浓度; 以及计算所述流动混合物内的所述不可冷凝气体的质量流量。 还提供了一种测量沿着所述不可冷凝气体和可冷凝气体的流动混合物的流动路径的入口处的不可冷凝气体的进入速率的方法。
    • 67. 发明申请
    • Animal Feed Compositions
    • 动物饲料成分
    • US20070275152A1
    • 2007-11-29
    • US10574975
    • 2004-10-05
    • David CookMark NewcombMichael Beaver
    • David CookMark NewcombMichael Beaver
    • A23L1/20
    • A23K20/121A23K10/30
    • The present disclosure describes a certain isoflavone-enhanced domestic animal feed compositions and methods of producing such feed compositions. In one particular implementation, a feed composition includes a soy meal that is no more than about 20 weight percent of the feed composition. This soy meal has a soy isoflavone content that provides the feed composition with a soy isoflavone concentration, normalized to an aglycone content of about 250-1400 parts per million on a weight basis (ppm), e.g., about 800-1200 ppm. Feed compositions in certain adaptations have demonstrated some advantages over feeds with lower isoflavone content.
    • 本公开描述了某种异黄酮增强的家畜饲料组合物和生产这种饲料组合物的方法。 在一个具体实施方案中,饲料组合物包括不超过饲料组合物约20重量%的大豆粉。 该大豆粉具有大豆异黄酮含量,其为饲料组合物提供大豆异黄酮浓度,其标准化为基于重量(ppm)的约250-1400ppm(例如约800-1200ppm)的糖苷配基含量。 某些适应性的饲料组合物已经显示出具有较低异黄酮含量的饲料的一些优点。