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    • 2. 发明授权
    • Shaft cone crown measurement system and methodology
    • 轴锥冠测量系统和方法
    • US07920254B2
    • 2011-04-05
    • US12252232
    • 2008-10-15
    • Ananda V. MysoreSteve G. Gonzalez
    • Ananda V. MysoreSteve G. Gonzalez
    • G01B11/26
    • G01B11/26G01B11/06
    • Aspects include metrology methods and systems for determining characteristics of conical shaft portions, such as angle of taper and crown height. In an example, a metrology system includes a fixture for supporting a workpiece. The fixture provides for translation in a longitudinal dimension, and rotation about an axis of symmetry. The system may include a sensor mounted for scanning lines including sections of the workpiece as well as control logic for coordinating translation of the workpiece to provide for an approximately constant ratio of longitudinal translation and lines scanned during scanning operations. The system may include image logic for assembling an image from image data generated during each scanning operation, edge detection logic for detecting an edge shape in each assembled image, and slope and crown height calculation logic for calculating a slope and a crown height of each of the detected edge shapes.
    • 方面包括用于确定锥形轴部分的特征的计量方法和系统,例如锥度角和冠高度。 在一个示例中,测量系统包括用于支撑工件的夹具。 夹具提供纵向尺寸的平移和围绕对称轴的旋转。 该系统可以包括安装用于扫描包括工件部分的线的传感器以及用于协调工件的平移以提供在扫描操作期间扫描的纵向平移和线的大致恒定比例的控制逻辑。 该系统可以包括用于从每个扫描操作期间产生的图像数据组装图像的图像逻辑,用于检测每个组合图像中的边缘形状的边缘检测逻辑,以及用于计算每个组合图像的斜率和冠高度的斜率和冠高度计算逻辑 检测到的边缘形状。
    • 3. 发明申请
    • SHAFT CONE CROWN MEASUREMENT SYSTEM AND METHODOLOGY
    • SHAFT CONE CROWN测量系统和方法
    • US20100094588A1
    • 2010-04-15
    • US12252232
    • 2008-10-15
    • Ananda V. MysoreSteve G. Gonzalez
    • Ananda V. MysoreSteve G. Gonzalez
    • G01B11/00G01B11/26
    • G01B11/26G01B11/06
    • Aspects include metrology methods and systems for determining characteristics of conical shaft portions, such as angle of taper and crown height. In an example, a metrology system includes a fixture for supporting a workpiece. The fixture provides for translation in a longitudinal dimension, and rotation about an axis of symmetry. The system may include a sensor mounted for scanning lines including sections of the workpiece as well as control logic for coordinating translation of the workpiece to provide for an approximately constant ratio of longitudinal translation and lines scanned during scanning operations. The system may include image logic for assembling an image from image data generated during each scanning operation, edge detection logic for detecting an edge shape in each assembled image, and slope and crown height calculation logic for calculating a slope and a crown height of each of the detected edge shapes.
    • 方面包括用于确定锥形轴部分的特征的计量方法和系统,例如锥度角和冠高度。 在一个示例中,测量系统包括用于支撑工件的夹具。 夹具提供纵向尺寸的平移和围绕对称轴的旋转。 该系统可以包括安装用于扫描包括工件部分的线的传感器以及用于协调工件的平移以提供在扫描操作期间扫描的纵向平移和线的大致恒定比例的控制逻辑。 该系统可以包括用于从每个扫描操作期间产生的图像数据组装图像的图像逻辑,用于检测每个组合图像中的边缘形状的边缘检测逻辑,以及用于计算每个组合图像的斜率和冠高度的斜率和冠高度计算逻辑 检测到的边缘形状。
    • 5. 发明授权
    • Sleeve cone angle measurement system
    • 袖锥角测量系统
    • US07350308B2
    • 2008-04-01
    • US11314412
    • 2005-12-20
    • Ananda V. MysoreSteve G. Gonzalez
    • Ananda V. MysoreSteve G. Gonzalez
    • G01B5/004G01B7/008
    • G01B5/20
    • For repeatably and accurately measuring characteristics of workpieces, such angle of taper of a conical cavity defined by a workpiece, examples may include a system having a stage movable in predictable and repeatable increments, and a compliancy fixture. The compliancy feature may include a sapphire to metal interface. Such examples may also include a mechanism, such as an elongate body or an arm, for alternately disposing each of a first object of a first size and a second object of a second size in the conical cavity. Examples may use spherical objects, or portions thereof. Systems further include at least one sensor for determining positions of the first and second objects in the conical cavity and logic for determining the characteristics, such the taper angle, based on the position of the first object and the second object in the conical cavity.
    • 为了重复和精确地测量工件的特性,由工件限定的锥形腔的锥度角可以包括具有以可预测和可重复的增量移动的台阶的系统以及柔性固定装置。 符合性的特征可以包括蓝宝石到金属界面。 这些实例还可以包括诸如细长主体或臂的机构,用于将锥形空腔中的第一尺寸的第一物体和第二尺寸的第二物体的每一个交替地设置。 示例可以使用球形物体或其部分。 系统还包括至少一个用于确定锥形腔中的第一和第二物体的位置的传感器,以及用于基于第一物体和第二物体在锥形空腔中的位置来确定特征(例如锥角)的逻辑。
    • 8. 发明授权
    • Shaft cone metrology system and method
    • 轴锥计量系统及方法
    • US07253889B2
    • 2007-08-07
    • US11315424
    • 2005-12-21
    • Ananda V. MysoreSteve G. Gonzalez
    • Ananda V. MysoreSteve G. Gonzalez
    • G01B11/26
    • G01B11/2433
    • Aspects include metrology methods and systems for determining characteristics of conical shaft portions, such as angle of taper. In an example, a metrology system includes a fixture for supporting a workpiece. The fixture provides for translation in a longitudinal dimension, and rotation about an axis of symmetry. The system may include a sensor mounted for scanning lines including sections of the workpiece as well as control logic for coordinating translation of the workpiece to provide for an approximately constant ratio of longitudinal translation and lines scanned during scanning operations. The system may include image logic for assembling an image from image data generated during each scanning operation; edge detection logic for detecting at least one edge shape in each assembled image; and slope calculation logic for calculating a slope of each of the at least one detected edge shape.
    • 方面包括用于确定锥形轴部分的特征的计量方法和系统,例如锥度角。 在一个示例中,测量系统包括用于支撑工件的夹具。 夹具提供纵向尺寸的平移和围绕对称轴的旋转。 该系统可以包括安装用于扫描包括工件部分的线的传感器以及用于协调工件的平移以提供在扫描操作期间扫描的纵向平移和线的大致恒定比例的控制逻辑。 该系统可以包括用于组合来自在每次扫描操作期间产生的图像数据的图像的图像逻辑; 用于检测每个组合图像中的至少一个边缘形状的边缘检测逻辑; 以及用于计算所述至少一个检测到的边缘形状中的每一个的斜率的斜率计算逻辑。