Title :
A nonlinear guided wave NDE and tomography for micro damage detection and imaging
Author :
Younho Cho ; Krishnaswamy, S.
Author_Institution :
Sch. of Mech. Eng., Pusan Nat. Univ., Pusan, South Korea
Abstract :
Ultrasonic guided waves have been of great interest to safety and maintenance related engineers and scholars because they render a number of practical merits over a conventional local point-by-point inspection techniques. They include possibilities of inspecting a large scale structural integrity at a distance from a fixed transducer position without scanning and improving monitoring sensitivity with a variety of mode choice and data analysis schemes. While most of earlier efforts in the guided wave SHM (Structural Health Management) and NDE (Nondestructive Evaluation) were confined to initial screening applications of pressure vessels and pipes to narrow down the follow-up inspection, recent progress in the related area shows some promising feasibility even for much more challenging tasks including early stage damage detection, quantitative imaging of hidden damage zone and non-contact based inspection scheme. This paper addresses the forwarding steps of guided wave SHM and NDE recently accomplished introducing the key concepts of each technique for near future applications in a variety of industry including power industry.
Keywords :
acoustic tomography; condition monitoring; data analysis; inspection; maintenance engineering; microsensors; nondestructive testing; pipes; pressure vessels; structural engineering; ultrasonic imaging; ultrasonic transducers; ultrasonic waves; SHM; data analysis scheme; initial screening application; maintenance; microdamage detection; microimaging; noncontact based inspection scheme; nondestructive evaluation; nonlinear guided wave NDE; pipe; point-by-point inspection technique; power industry; pressure vessel; safety; structural health management; structural integrity inspection; tomography; transducer; ultrasonic guided wave; Materials; Monitoring; Reliability; Time-frequency analysis; Tomography; Ultrasonic variables measurement; nonlinearity; tomography; ultrasonic guided waves;
Conference_Titel :
Future of Instrumentation International Workshop (FIIW), 2011
Conference_Location :
Oak Ridge, TN
Print_ISBN :
978-1-4673-5835-4
DOI :
10.1109/FIIW.2011.6476803