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    • 1. 发明授权
    • Selection of component
    • 组件选择
    • US07519215B2
    • 2009-04-14
    • US11156468
    • 2005-06-21
    • Ian R. Gower
    • Ian R. Gower
    • G06K9/00G06F19/00G06F17/50
    • G06F17/50G05B19/4099G05B2219/35128G05B2219/37205G05B2219/37617G05B2219/45147G06F2217/08Y02P90/265
    • A method of selecting a component of optimal design comprising automated steps of a) measuring the periphery of at least part of said component; b) producing a 2D co-ordinate dataset (20) from said measurements; c) processing the 2D co-ordinate dataset (20) so as to produce a representation of characteristics of the periphery of the component; d) assigning a value to the difference between the characteristics of the periphery of the component and characteristics of a component of optimal design; and e) conducting a parametric analysis of the differences between the characteristics of the periphery of the component and the characteristics of a component of optimal design. The method further comprises the step of using the results of the parametric analysis to determine whether the component meets a predetermined criteria for acceptability.
    • 一种选择最佳设计的部件的方法,包括以下自动步骤:a)测量所述部件的至少一部分的周边; b)从所述测量产生2D坐标数据集(20); c)处理2D坐标数据集(20),以产生组件周边特征的表示; d)将分量周边的特征与优化设计的分量的特征之间的差值分配给一个值; e)进行元件外围特性与最优设计元件特性之差的参数分析。 该方法还包括使用参数分析的结果来确定组件是否满足预定的可接受标准的步骤。
    • 2. 发明授权
    • Surface profile evaluation
    • 表面轮廓评估
    • US08718975B2
    • 2014-05-06
    • US13202358
    • 2010-02-24
    • Hugo M P LobatoIan R GowerChristopher A PowellNicholas B Orchard
    • Hugo M P LobatoIan R GowerChristopher A PowellNicholas B Orchard
    • G06F15/00
    • G01B21/04
    • A method and system for accepting or rejecting a curved surface of a body under evaluation involves conducting a comparison between the curvature of a surface profile for the surface under evaluation and higher and lower curvature tolerance boundaries. The higher and lower curvature tolerance boundaries are determined from a desired surface profile. The curvature at a plurality of locations on the curve profile under evaluation may be defined with reference to a geometric variable for said curved surface and may be plotted on a graph. The higher and lower curvature tolerance boundaries may also be plotted on the graph so as to determine whether the plot of curvature for the surface under evaluation falls within the bounds of the higher and lower tolerance boundaries.
    • 用于接受或拒绝正在评价的身体的曲面的方法和系统包括进行被评估表面的曲率曲率与较高和较低曲率公差边界之间的比较。 根据期望的表面轮廓确定较高和较低的曲率公差边界。 在评估曲线轮廓上的多个位置处的曲率可以参考所述弯曲表面的几何变量来定义并且可以绘制在图上。 也可以在曲线图上绘制较高和较低的曲率公差边界,以便确定被评估表面的曲率曲线是否落在较高和较低公差边界的范围内。
    • 3. 发明申请
    • SURFACE PROFILE EVALUATION
    • 表面轮廓评估
    • US20110301915A1
    • 2011-12-08
    • US13202358
    • 2010-02-24
    • Hugo M. P. LobatoIan R. GowerChristopher A. PowellNicholas B. Orchard
    • Hugo M. P. LobatoIan R. GowerChristopher A. PowellNicholas B. Orchard
    • G06F15/00
    • G01B21/04
    • A method and system for accepting or rejecting a curved surface of a body under evaluation involves conducting a comparison between the curvature of a surface profile for the surface under evaluation and higher and lower curvature tolerance boundaries. The higher and lower curvature tolerance boundaries are determined from a desired surface profile. The curvature at a plurality of locations on the curve profile under evaluation may be defined with reference to a geometric variable for said curved surface and may be plotted on a graph. The higher and lower curvature tolerance boundaries may also be plotted on the graph so as to determine whether the plot of curvature for the surface under evaluation falls within the bounds of the higher and lower tolerance boundaries.
    • 用于接受或拒绝正在评价的身体的曲面的方法和系统包括进行被评估表面的曲率曲率与较高和较低曲率公差边界之间的比较。 根据期望的表面轮廓确定较高和较低的曲率公差边界。 在评估曲线轮廓上的多个位置处的曲率可以参考所述弯曲表面的几何变量来定义并且可以绘制在图上。 也可以在曲线图上绘制较高和较低的曲率公差边界,以便确定被评估表面的曲率曲线是否落在较高和较低公差边界的范围内。