IP Library Granted Patent US 7,194,908
Granted Patent B2
US 7,194,908 · App. 11/031,841 · Granted Mar 27, 2007

Device and method for ultrasonic inspection using profilometry data

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Quick Facts
Patent No.
US 7,194,908
App. No.
11/031,841
Granted
Mar 27, 2007
Kind
B2
Abstract

An ultrasonic testing assembly structured to examine a test object, wherein the test object has a surface, and the examination examines the structure of the test object under the surface as well as the profile of the surface. The ultrasonic testing assembly includes a sled assembly structured to support a plurality of ultrasonic transducers, the sled assembly including at least one support member having a lower surface, at least one surface ultrasonic transducer coupled to the sled assembly and structured to extend below the support member lower surface and further structured to engage the test object surface, the surface ultrasonic transducer structured to examine internal structure of the test object and provide a first output, at least one profiling device coupled to the sled assembly, the profiling device structured to measure the profile of the test object surface and provide a second output, and a control device structured to correlate the first output and the second output and to calculate a corrected output.

Claims (59)

1. An ultrasonic testing assembly structured to examine a test object having a surface, including the structure of the test object under said surface, said ultrasonic testing assembly comprising:

a sled assembly structured to support a plurality of ultrasonic transducers, said sled assembly including at least one support member having a lower surface;

at least one surface ultrasonic transducer coupled to said sled assembly and structured to extend below said support member lower surface and further structured to engage said test object surface, said surface ultrasonic transducer structured to examine internal structure of said test object and provide a first output;

at least one profiling device coupled to said sled assembly, said profiling device structured to measure the profile of said test object surface and provide a second output; and

a control device structured to correlate said first output and said second output and to calculate a corrected output.

2. The ultrasonic testing assembly of claim 1 wherein said control device includes a recording device and said corrected output is recorded.

3. The ultrasonic testing assembly of claim 1 wherein said control device includes a recording device and a display device, and said corrected output is recorded and displayed.

4. The ultrasonic testing assembly of claim 1 wherein said control device includes a recording device, a display device, and a three dimensional modeling device, said corrected output is recorded and displayed as a three dimensional model.

5. The ultrasonic testing assembly of claim 1 wherein:

said at least one profiling device is at least one profiling ultrasonic transducer, said profiling ultrasonic transducer coupled to said sled assembly so that said profiling ultrasonic transducer is spaced above said test object surface.

6. The ultrasonic testing assembly of claim 5 wherein said at least one profiling ultrasonic transducer is disposed adjacent to said at least one surface ultrasonic transducer.

7. An ultrasonic testing assembly structured to examine a test object having a surface, including the structure of the test object under said surface, said ultrasonic testing assembly comprising:

a sled assembly structured to support a plurality of ultrasonic transducers, said sled assembly including at least one support member having a lower surface;

at least one surface ultrasonic transducer coupled to said sled assembly and structured to extend below said support member lower surface and further structured to engage said test object surface, said surface ultrasonic transducer structured to examine internal structure of said test object and provide a first output;

at least one profiling device coupled to said sled assembly, said profiling device structured to measure the profile of said test object surface and provide a second output;

a control device structured to correlate said first output and said second output and to calculate a corrected output; and

said sled assembly includes a propulsion device structured to move said sled assembly at a predetermined speed;

said sled assembly is further structured to position said at least one surface ultrasonic transducer and said at least one profiling device in a predetermined relationship;

said control device structured to include data representing said speed of said sled assembly and said positioning of said at least one surface ultrasonic transducer and said at least one profiling device in comparison of said first and second output signals, whereby the profile of the surface at the location that said at least one surface ultrasonic transducer is engaging may be factored into said corrected output.

8. An ultrasonic testing assembly structured to examine a test object having a surface, including the structure of the test object under said surface, said ultrasonic testing assembly comprising:

a sled assembly structured to support a plurality of ultrasonic transducers, said sled assembly including at least one support member having a lower surface;

at least one surface ultrasonic transducer coupled to said sled assembly and structured to extend below said support member lower surface and further structured to engage said test object surface, said surface ultrasonic transducer structured to examine internal structure of said test object and provide a first output;

at least one profiling device coupled to said sled assembly. said profiling device structured to measure the profile of said test object surface and provide a second output;

a control device structured to correlate said first output and said second output and to calculate a corrected output,

said sled assembly includes a speed monitoring device structured to provide a third output signal;

said sled assembly is further structured to position said at least one surface ultrasonic transducer and said at least one profiling device in a predetermined relationship; and

said control device structured is further structured to record said third output signal and include data representing said positioning of said at least one surface ultrasonic transducer and said at least one profiling device in comparison of said first and second output signals, whereby the profile of the surface at the location that said at least one surface ultrasonic transducer is engaging may be factored into said corrected output.

9. The ultrasonic testing assembly of claim 1 wherein said at least one surface ultrasonic transducer and said at least one profiling device are structured to operate in a liquid medium.

10. A method of examining the interior structure of a test object using an ultrasonic testing assembly wherein the ultrasonic testing assembly comprises a sled assembly structured to support a plurality of ultrasonic transducers, said sled assembly including at least one support member having a lower surface, at least one surface ultrasonic transducer coupled to said sled assembly and structured to extend below said support member lower surface and further structured to engage said test object surface, said surface ultrasonic transducer structured to examine internal structure of said test object and provide a first output, at least one profiling device coupled to said sled assembly, said profiling device structured to measure the profile of said test object surface and provide a second output and a control device structured to correlate said first output and said second output and to calculate a corrected output, wherein said method comprises the steps of:

positioning said at least one surface ultrasonic transducer against said test object;

moving said sled assembly along the surface of said test object;

utilizing said at least one surface ultrasonic transducer to create an output signal representing the interior structure of said test object;

utilizing said profiling device to measure any changes in the surface of said test object;

correlating said first output and said second output and to calculate a corrected output representing the interior structure of said test object.

11. The method of claim 10 wherein said control device includes a recording device and said corrected output is recorded and said method includes the step of recording said corrected output.

12. The method of claim 10 wherein said control device includes a recording device and a display device, and said method includes the step of recording and displaying said corrected output.

13. The method of claim 10 wherein said control device includes a recording device, a display device, and a three dimensional modeling device, and said method includes the step of displaying said interior structure as a three dimensional model.

14. The method of claim 10 wherein said at least one profiling device is at least one profiling ultrasonic transducer, said profiling ultrasonic transducer coupled to said sled assembly so that said profiling ultrasonic transducer is spaced above said test object surface.

15. The method of claim 14 wherein said at least one profiling ultrasonic transducer is disposed adjacent to said at least one surface ultrasonic transducer.

16. The method of claim 10 wherein said sled assembly is further structured to position said at least one surface ultrasonic transducer and said at least one profiling device in a predetermined relationship, and said control device is structured to include data representing said speed of said sled assembly and said positioning of said at least one surface ultrasonic transducer and said at least one profiling device in comparison of said first and second output signals, and said method includes the step of utilizing said data representing said speed of said sled assembly and said positioning of said at least one surface ultrasonic transducer and said at least one profiling device in comparison of said first and second output signals.

17. The method of claim 10 wherein said sled assembly includes a distance measurement device structured to provide a third output signal, said sled assembly is further structured to position said at least one surface ultrasonic transducer and said at least one profiling device in a predetermined relationship, said control device structured to record said third output signal and include data representing said positioning of said at least one surface ultrasonic transducer and said at least one profiling device in comparison of said first and second output signals, and said method includes the step of utilizing said third output signal in said step of correlating said first output and said second output and to calculate a corrected output representing the interior structure of said test object.

18. The method of claim 10 wherein said at least one surface ultrasonic transducer and said at least one profiling device are structured to operate in a liquid medium.

19. A method of examining the interior structure of a test object using an ultrasonic testing assembly wherein the ultrasonic testing assembly comprises a sled assembly structured to support a plurality of ultrasonic transducers, said sled assembly including at least one support member having a lower surface, at least one surface ultrasonic transducer coupled to said sled assembly and structured to extend below said support member lower surface and further structured to engage said test object surface, said surface ultrasonic transducer structured to examine internal structure of said test object and provide a first output, at least one profiling device coupled to said sled assembly, said profiling device structured to measure the profile of said test object surface and provide a second output and a control device structured to correlate said first output and said second output and to calculate a corrected output, wherein said method comprises the steps of:

acquiring and storing data;

processing the data, including the step of correcting the depth of the defect measurement as determined by the surface ultrasonic transducer based on the profile measurements of the defect location; and

displaying the data.

20. The method of claim 19 wherein said step of processing the data includes the further steps of:

compensating for the spatial offsets of the surface ultrasonic transducer and at least one profiling device; and

correcting the sound path of the surface ultrasonic transducer based on the surface profile at the sound entry point as determined by at least one profiling device.

21. The method of claim 19 wherein said step of acquiring and storing data includes the further steps of:

positioning the sled assembly having the surface ultrasonic transducer and at least one profiling device;

acquiring surface and profile data; and

storing the surface and profile data.

22. The method of claim 21 wherein said step of acquiring and storing data includes the further steps of:

deciding whether the scan is complete; and,

if not, moving the sled assembly to another position.

23. The method of claim 21 wherein said step of processing the data includes the further steps of:

compensating for the spatial offsets of the surface ultrasonic transducer and at least one profiling device; and

correcting the sound path of the surface ultrasonic transducer based on the surface profile at the sound entry point as determined by at least one profiling device.

Assignments (9)
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jan 30, 2024
From: CREDIT SUISSE AG, CAYMAN ISLANDS, AS COLLATERAL AGENT
To: WESTINGHOUSE ELECTRIC COMPANY LLC; FAUSKE AND ASSOCIATES LLC
Reel/Frame 066380/0392 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jan 30, 2024
From: BANK OF MONTREAL, AS COLLATERAL AGENT
To: WESTINGHOUSE ELECTRIC COMPANY LLC; BHI ENERGY I SPECIALTY SERVICES LLC
Reel/Frame 066380/0599 →
SECURITY INTEREST Recorded Jan 26, 2024
From: WESTINGHOUSE ELECTRIC COMPANY LLC; BHI ENERGY I SPECIALTY SERVICES LLC; STONE & WEBSTER, L.L.C. (FORMERLY STONE & WEBSTER, INC.)
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 066373/0604 →
PATENT SECURITY AGREEMENT Recorded May 27, 2022
From: WESTINGHOUSE ELECTRIC COMPANY LLC; BHI ENERGY I SPECIALTY SERVICES LLC
To: BANK OF MONTREAL, AS COLLATERAL AGENT
Reel/Frame 060791/0372 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Aug 1, 2019
From: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
To: WESTINGHOUSE ELECTRIC COMPANY LLC; FAUSKE AND ASSOCIATES LLC
Reel/Frame 049937/0032 →
SECURITY INTEREST Recorded Aug 1, 2018
From: WESTINGHOUSE ELECTRIC COMPANY LLC; FAUSKE AND ASSOCIATES LLC
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 046708/0222 →
SECURITY INTEREST Recorded Aug 1, 2018
From: WESTINGHOUSE ELECTRIC COMPANY LLC; FAUSKE AND ASSOCIATES LLC
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 046708/0332 →
SECURITY INTEREST Recorded Aug 1, 2018
From: WESTINGHOUSE ELECTRIC COMPANY LLC; FAUSKE AND ASSOCIATES LLC
To: BANK OF MONTREAL, AS ADMINISTRATIVE AGENT
Reel/Frame 046708/0639 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2005
From: NENNO, THOMAS W.; MINOGUE, PATRICK M.; RISHEL, RICK D.
To: WESTINGHOUSE ELECTRIC COMPANY LLC
Reel/Frame 016179/0545 →