IP Library Granted Patent US 9,857,163
Granted Patent B2
US 9,857,163 · App. 14/523,251 · Granted Jan 2, 2018

Parametric control of object scanning

Inventors: Jonathan J. O'Hare (Warwick, RI); Stephen Darrouzet (West Warwick, RI)
Assignee: Hexagon Metrology, Inc.
G01B11/005G01B15/045G01N23/046G06K9/52G06T5/001H05G1/10G06T2207/10116
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Quick Facts
Patent No.
US 9,857,163
App. No.
14/523,251
Granted
Jan 2, 2018
Kind
B2
Abstract

A method of measuring an object having associated geometric data and material data receives the geometric data and material data relating to the object, and controls an x-ray device to scan the object. The x-ray device operates in accordance with a plurality of operating parameters. The method then varies at least one of the operating parameters during the scan as a function of one or both the geometric data and the material data.

Claims (45)

1. A method of measuring at least one object manufactured according to a design specification with associated nominal geometric data and material data, the method comprising:

loading a digital model of the at least one object having precise nominal geometric data of the manufactured object;

using the digital model to determine a plurality of features of interest of the manufactured object;

locating the features of interest of the manufactured object;

generating scanning trajectories for the features of interest of the manufactured object;

controlling an x-ray device to scan the manufactured object along the scanning trajectories for the features of interest of the manufactured object, the x-ray device operating in accordance with a plurality of operating parameters;

varying at least one of the operating parameters of the x-ray device during the scan of the features of interest of the manufactured object as a function of at least the precise nominal geometric data;

reconstructing no more than a portion of the manufactured object, the portion including the features of interest of the manufactured object; and

measuring the features of interest in the reconstruction of the manufactured object.

2. The method as defined by claim 1 wherein the operating parameters include at least one of voltage and current.

3. The method as defined by claim 2 wherein the x-ray device includes a scanner, the method further comprising:

moving the manufactured object relative to the scanner; and

varying the current as a function of the position of the manufactured object relative to the scanner.

4. The method as defined by claim 1 wherein the operating parameters includes at least one of voltage, voxel size, magnification, current, detector exposure time, image averaging, number of projections, and region of interest in the field of view.

5. The method as defined by claim 1 wherein the x-ray device has an operating voltage, further wherein varying comprises:

receiving information about the operating voltage of the x-ray device based on the nominal geometric data and material data; and

operating the x-ray device at the operating voltage.

6. The method as defined by claim 1 wherein receiving comprises receiving a 3D CAD file having the nominal geometric data.

7. The method as defined by claim 1 wherein varying at least one of the operating parameters comprises varying the exposure time of x-rays of the x-ray device.

8. The method as defined by claim 1 further comprising positioning the manufactured object so that the x-ray device can scan the manufactured object.

9. The method as defined by claim 1 further comprising:

providing a plurality of additional objects that are nominally the same as the manufactured object, the plurality of additional objects each nominally having the same features of interest as the features of interest of the manufactured object;

controlling the x-ray device to scan the plurality of additional objects along the scanning trajectories;

varying at least one of the operating parameters during the scan as a function of one or both the nominal geometric data and the material data;

reconstructing the plurality of additional objects, each of the plurality of additional objects being no more than partly reconstructed and including the features of interest; and

measuring the features of interest in the reconstruction of the plurality of additional objects.

10. The method as defined by claim 9 wherein the additional objects are serially inspected using the providing, controlling, varying, reconstructing, and measuring acts.

11. A computer program product for use on a computer system for measuring at least one object manufactured according to a design specification, the at least one object having associated nominal geometric data and material data, the computer program product comprising a tangible, non-transient computer usable medium having computer readable program code thereon, the computer readable program code, when executed by a processor, causing the computer system to execute the acts comprising:

receiving at least one of the precise nominal geometric data and material data of a given object;

using the digital model to determine a plurality of features of interest of the given object;

locating the features of interest of the given object;

generating scanning trajectories for the features of interest of the given object;

controlling an x-ray device to scan the given object along the scanning trajectories for the features of interest of the given object, the x-ray device operating in accordance with a plurality of operating parameters;

varying at least one of the operating parameters during the scan of the features of interest of the given object as a function of one or both the precise nominal geometric data and the material data;

reconstructing no more than a portion of the given object, the portion including the features of interest of the given object; and

measuring the features of interest in the reconstruction of the given object.

12. The computer program product as defined by claim 11 wherein the operating parameters include at least one of voltage and current.

13. The computer program product as defined by claim 11 , the computer program product being configured to inspect a plurality of additional objects that are nominally the same as the given object, the plurality of additional objects each nominally having the same features of interest as the features of interest of the given object, the computer program product having program code that further, when executed by the processor, causes the computer system to execute the acts comprising:

controlling the x-ray device to scan the plurality of additional objects along the scanning trajectories;

varying at least one of the operating parameters during the scan as a function of one or both the nominal geometric data and the material data;

reconstructing the plurality of additional objects, each of the plurality of additional objects being no more than partly reconstructed and including the features of interest; and

measuring the features of interest in the reconstruction of the additional objects.

14. The computer program product as defined by claim 13 wherein the additional objects are serially inspected.

15. The computer program product as defined by claim 11 further comprising comparing the measurements of the features of interest in the reconstruction with the precise nominal geometric data.

16. The method as defined by claim 1 further comprising comparing the measurements of the features of interest in the reconstruction with the precise nominal geometric data.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE INVENTORS NAME PREVIOUSLY RECORDED AT REEL: 058117 FRAME: 832. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 27, 2022
From: O'HARE, JONATHAN J.
To: HEXAGON METROLOGY, INC.
Reel/Frame 060203/0274 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: O'HARE, JONATHAN
To: HEXAGON METROLOGY, INC.
Reel/Frame 058117/0832 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2014
From: O'HARE, JONATHAN J.; DARROUZET, STEPHEN
To: HEXAGON METROLOGY, INC.
Reel/Frame 034262/0576 →
Continuity (2)
Provisional Application 61897860 · Oct 31, 2013
Related Publication 20150139381A1 · May 21, 2015