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    • 2. 发明授权
    • Combined 2D and 3D nondestructive examination
    • 组合2D和3D无损检测
    • US07689003B2
    • 2010-03-30
    • US11455523
    • 2006-06-19
    • Robert E. ShannonClifford HatcherClaudio LaloniFrank ForsterFredrick M. Davis
    • Robert E. ShannonClifford HatcherClaudio LaloniFrank ForsterFredrick M. Davis
    • G06K9/00G01N21/00G01N21/84
    • G06K9/00G01J5/0088G01J5/0896G01N25/72G06T7/0006G06T2200/08G06T2207/10048G06T2207/10064G06T2207/30164
    • An inspection apparatus (10) applying two dimensional nondestructive examination images onto a three dimensional solid model of a component (12) to display a virtual component (73) that may be manipulated to perform a nondestructive inspection. The two dimensional nondestructive examination images may be acquired from a plurality of views of the component in order to provide full coverage of the surface to be inspected, with appropriate stitching of images in regions of overlap between adjacent views. The two dimensional images (62) may be color or black and white photographs or ultraviolet or infrared images, for example. Multiple types of nondestructive examination images, results of inspection data evaluations, and design, operational and/or maintenance information may be displayed separately or jointly on the three dimensional solid model. Surface features of interest that are mapped as defined areas (76) on the three dimensional solid model may be displayed simultaneously in different views on 2D and 3D images of the virtual component.
    • 一种检查装置(10),其将二维非破坏性检查图像应用于组件(12)的三维实体模型,以显示可被操纵以执行非破坏性检查的虚拟部件(73)。 可以从组件的多个视图中获取二维非破坏性检查图像,以便通过在相邻视图之间的重叠区域中适当地拼接图像来提供要检查的表面的全面覆盖。 例如,二维图像(62)可以是彩色或黑白照片或紫外或红外图像。 可以在三维实体模型上单独地或联合地显示多种类型的非破坏性检查图像,检查数据评估结果以及设计,操作和/或维护信息。 映射为三维实体模型上的定义区域(76)的感兴趣的表面特征可以在与虚拟组件的2D和3D图像不同的视图中同时显示。
    • 3. 发明申请
    • Combined 2D and 3D nondestructive examination
    • 组合2D和3D无损检测
    • US20070217672A1
    • 2007-09-20
    • US11455523
    • 2006-06-19
    • Robert E. ShannonClifford HatcherClaudio LaloniFrank ForsterFredrick M. Davis
    • Robert E. ShannonClifford HatcherClaudio LaloniFrank ForsterFredrick M. Davis
    • G06K9/00
    • G06K9/00G01J5/0088G01J5/0896G01N25/72G06T7/0006G06T2200/08G06T2207/10048G06T2207/10064G06T2207/30164
    • An inspection apparatus (10) applying two dimensional nondestructive examination images onto a three dimensional solid model of a component (12) to display a virtual component (73) that may be manipulated to perform a nondestructive inspection. The two dimensional nondestructive examination images may be acquired from a plurality of views of the component in order to provide full coverage of the surface to be inspected, with appropriate stitching of images in regions of overlap between adjacent views. The two dimensional images (62) may be color or black and white photographs or ultraviolet or infrared images, for example. Multiple types of nondestructive examination images, results of inspection data evaluations, and design, operational and/or maintenance information may be displayed separately or jointly on the three dimensional solid model. Surface features of interest that are mapped as defined areas (76) on the three dimensional solid model may be displayed simultaneously in different views on 2D and 3D images of the virtual component.
    • 一种检查装置(10),其将二维非破坏性检查图像应用于组件(12)的三维实体模型,以显示可被操纵以执行非破坏性检查的虚拟部件(73)。 可以从组件的多个视图中获取二维非破坏性检查图像,以便通过在相邻视图之间的重叠区域中适当地拼接图像来提供要检查的表面的全面覆盖。 例如,二维图像(62)可以是彩色或黑白照片或紫外或红外图像。 可以在三维实体模型上单独地或联合地显示多种类型的非破坏性检查图像,检查数据评估结果以及设计,操作和/或维护信息。 映射为三维实体模型上的定义区域(76)的感兴趣的表面特征可以在与虚拟组件的2D和3D图像不同的视图中同时显示。
    • 5. 发明申请
    • METHOD AND DEVICE FOR INSPECTING AN OBJECT FOR THE DETECTION OF SURFACE DAMAGE
    • 用于检查对象以检测表面损伤的方法和装置
    • US20130297232A1
    • 2013-11-07
    • US13976210
    • 2012-01-16
    • Helmuth EulerFrank ForsterChristian HommaClaudio Laloni
    • Helmuth EulerFrank ForsterChristian HommaClaudio Laloni
    • G01N21/95
    • G01N21/95G01N21/8422G01N21/9515G01N2021/8427G01N2021/8887
    • A method and device for performing the method of inspecting an object for the purpose of detecting defective surface regions of the object, comprising the steps of using a scanning device to survey a surface of the object to be inspected and generating two-dimensional image data and a measured surface profile in at least one cross-sectional plane through the object in each case; using a computer device to evaluate the two-dimensional image data in order to localize a potentially defective surface region; using the computer device to generate a calculated surface profile within the potentially defective surface region in the cross-sectional plane on the basis of the measured surface pro-file outside of the potentially defective surface region of the cross-sectional plane; using the computer device to compare the calculated and measured surface profiles within the potentially defective surface region, the localized surface region being assessed as actually defective if defined differentiating features are present.
    • 一种用于执行用于检测物体的缺陷表面区域的目的的检查方法的方法和装置,包括以下步骤:使用扫描装置来检测被检查物体的表面并产生二维图像数据;以及 在每种情况下通过物体的至少一个横截面平面中的测量的表面轮廓; 使用计算机设备来评估二维图像数据以便定位潜在有缺陷的表面区域; 基于所述横截面的潜在有缺陷的表面区域之外的所测量的表面原件,使用所述计算机设备在所述横截面中的潜在有缺陷的表面区域内产生计算的表面轮廓; 使用计算机设备来比较潜在有缺陷的表面区域内的计算和测量的表面轮廓,如果存在确定的微分特征,局部表面区域被评估为实际有缺陷的。
    • 6. 发明授权
    • Method for determining an axle geometry and sensor for its execution
    • 确定车轴几何形状和传感器用于其执行的方法
    • US07230694B2
    • 2007-06-12
    • US10724234
    • 2003-12-01
    • Frank ForsterLars JahnClaudio Laloni
    • Frank ForsterLars JahnClaudio Laloni
    • G01B11/26
    • G01B11/2755G01B2210/14G01B2210/286
    • Method for determining an axle geometry by recording and evaluating a topographical image of a face (6) of a wheel (1) fitted to an axle (2), and a sensor (10) for execution of the method. The method includes projecting light with a coding onto an area on the face (6) of the wheel (1) from a projecting direction; recording the light reflected from the area on the face (6) of the wheel (1) with an image converter (8), from a direction other than the light projecting direction; determining three-dimensional surface coordinates for the topographical image of the face (6) of the wheel (1) from the recorded light; and evaluating the topographical image in relation to a reference system.
    • 用于通过记录和评估装配到轴(2)的车轮(1)的面(6)的地形图像以及用于执行该方法的传感器(10)来确定车轴几何形状的方法。 该方法包括将投影光从投影方向投射到轮(1)的面(6)上的区域上; 从图像转换器(8)从光投射方向以外的方向记录从车轮(1)的面(6)上的区域反射的光; 从所记录的光线确定所述车轮(1)的所述面(6)的所述地形图像的三维表面坐标; 并评估与参考系统相关的地形图像。