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US Patent 9494562 Method and apparatus for defect detection in composite structures

Patent 9494562 was granted and assigned to Agency for Science, Technology and Research on November, 2016 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Current Assignee
Agency for Science, Technology and Research
Agency for Science, Technology and Research
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9494562
Date of Patent
November 15, 2016
Patent Application Number
13977319
Date Filed
May 27, 2011
Patent Citations Received
0
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US Patent 11860131 System and method for portable ultrasonic testing
0
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US Patent 12072315 System and method for real-time visualization of defects in a material
0
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US Patent 12066405 System and method for real-time degree of cure evaluation in a material
0
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US Patent 11686707 System and method for real-time visualization of defects in a material
0
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US Patent 11754529 System and method for evaluating defects in a material
Patent Primary Examiner
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Carol S. Tsai
Patent abstract

Methods and apparatus for non-destructive testing of a composite structure utilizing sonic or ultrasonic waves. In response to a wideband chirp wave sonic excitation signal transmitted from a probe to the composite structure, a probe signal received is correlated with a library of predetermined probe signals and a graphical representation of defects detected is generated. The graphical representation provides detailed information on defect type, defect location and defect shape. Also contemplated is a probe for non-destructive testing of a composite structure comprising three or more transducers wherein each transducer is separately configurable as a transmitter or as a receiver; and a controller coupled to each of transducer for providing signals thereto and receiving signals therefrom, wherein the signals provided thereto include signals for configuring each transducer as either a transmitter or a receiver, and signals for providing an excitation signal from each transducer which is configured as a transmitter.

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