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  • Format: ePub

Nonlinear ultrasonic guided waves have strong potential for nondestructive evaluation of structures, especially for detection of material degradation at an early stage, when action can then be taken to repair or replace the component based on condition. This enables a paradigm shift in maintenance philosophy from schedule-based or upon failure - to condition-based with sufficient warning to allow for logistics.
The last few years have brought a proliferation of journal articles that advance the state of knowledge regarding nonlinear ultrasonic guided waves for nondestructive evaluation of
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Produktbeschreibung
Nonlinear ultrasonic guided waves have strong potential for nondestructive evaluation of structures, especially for detection of material degradation at an early stage, when action can then be taken to repair or replace the component based on condition. This enables a paradigm shift in maintenance philosophy from schedule-based or upon failure - to condition-based with sufficient warning to allow for logistics.

The last few years have brought a proliferation of journal articles that advance the state of knowledge regarding nonlinear ultrasonic guided waves for nondestructive evaluation of structural components. However, this knowledge has yet to be consolidated into a single source that also provides the background information, which makes the knowledge accessible to newcomers to the field. Having one consistent source will make it easier for graduate students and others entering research and development in this field to understand the fundamental concepts and know how to apply them. The book will enable readers to design and test their own measurement system numerically and experimentally.


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Autorenporträt
Cliff Lissenden is a professor of engineering science and mechanics at Penn State. He joined the Department of Engineering Science and Mechanics in 1995 and gained a joint appointment in Acoustics in 2011. He is an ASME Fellow and the founding director of the Ben Franklin Center of Excellence in Structural Health Monitoring. His current research is mainly for nondestructive characterization of materials using ultrasonic guided waves and is broadly applicable to metals, composites, concrete, rock, and bone. Characterization systems use piezoelectric, magnetostrictive, electromagnetic, and laser-based transduction of ultrasonic waves for nondestructive testing, inspection, and monitoring, often in harsh environments.