In the past few decades, ultrasonic guided waves have been utilized more frequently Non-Destructive Testing (NDT); most notably, in the qualitative screening of buried piping. However, only a fraction of their potential applications in NDT have been fully realized. This is due, in part, to their complex nature, as well as the high level of expertise required to understand and utilize their propagation characteristics. The mode/frequency combinations that can be generated in a particular structure depend on geometry and material properties and are represented by the so-called dispersion curves. Although extensive research has been done in ultrasonic guided wave propagation in various geometries and materials, the treatment of ultrasonic guided wave propagation in periodic structures has received little attention. In this paper, academic aspects of ultrasonic guided wave propagation in structures with periodicity in the wave vector direction are investigated, with the practical purpose of developing an ultrasonic guided wave based inspection technique for finned tubing. Theoretical, numerical, and experimental methods are employed. The results of this investigation show excellent agreement between theory, numerical modeling, and experimentation; all of which indicate that ultrasonic guided waves will propagate coherently in finned tube only if the proper wave modes and frequencies are selected. It is shown that the frequencies at which propagating wave modes exist can be predicted theoretically and numerically, and depend strongly on the fin geometry. Furthermore, the results show that these propagating wave modes are capable of screening for and identifying the axial location of damage in the tube wall, as well as separation of the fins from the tube wall. The conclusion drawn from these results is that Guided Wave Testing (GWT) is a viable inspection method for screening finned tubing.
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ASME 2015 Pressure Vessels and Piping Conference
July 19–23, 2015
Boston, Massachusetts, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
978-0-7918-5698-7
PROCEEDINGS PAPER
Ultrasonic Guided Wave Testing of Finned Tubing Available to Purchase
Owen M. Malinowski,
Owen M. Malinowski
Structural Integrity Associates, Inc., State College, PA
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Matthew S. Lindsey,
Matthew S. Lindsey
Structural Integrity Associates, Inc., State College, PA
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Jason K. Van Velsor
Jason K. Van Velsor
Structural Integrity Associates, Inc., State College, PA
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Owen M. Malinowski
Structural Integrity Associates, Inc., State College, PA
Matthew S. Lindsey
Structural Integrity Associates, Inc., State College, PA
Jason K. Van Velsor
Structural Integrity Associates, Inc., State College, PA
Paper No:
PVP2015-45594, V005T10A002; 7 pages
Published Online:
November 19, 2015
Citation
Malinowski, OM, Lindsey, MS, & Van Velsor, JK. "Ultrasonic Guided Wave Testing of Finned Tubing." Proceedings of the ASME 2015 Pressure Vessels and Piping Conference. Volume 5: High-Pressure Technology; Rudy Scavuzzo Student Paper Competition and 23rd Annual Student Paper Competition; ASME NDE Division. Boston, Massachusetts, USA. July 19–23, 2015. V005T10A002. ASME. https://doi.org/10.1115/PVP2015-45594
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