Ultrasonic Guided Waves in Structural Health Monitoring

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Key Engineering Materials (Volumes 270-273)

Edited by:

Seung-Seok Lee, Dong-Jin Yoon, Joon-Hyun Lee and Sekyung Lee

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14-21

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J. L. Rose "Ultrasonic Guided Waves in Structural Health Monitoring", Key Engineering Materials, Vols. 270-273, pp. 14-21, 2004

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August 2004

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[1] Rose, J.L., 1999, Ultrasonic Waves in Solid Media, Cambridge University Press.

[2] Rose, J.L., 2003, Back to Basics - Dispersion Curves in Guided Wave Testing, Materials Evaluation, 60, p.20.

[3] Rose, J.L., 2003, NDT Solution - Guided Wave Testing of Water Loaded Structures, Materials Evaluation, 60, p.23.

[4] Rose, J.L., 2002, Standing on the Shoulders of Giants - An Example of Guided Wave Inspection, Mehl Honor Lecture, Materials Evaluation, 60, pp.53-59.

[5] Rose, J.L., 2002, A Baseline and Vision of Ultrasonic Guided Wave Inspection Potential, Transactions of the ASME, Journal of Pressure Vessel Technology, 124, pp.273-282.

DOI: https://doi.org/10.1115/1.1491272

[6] Hayashi, T. and Rose, J.L., 2003, Guided Wave Simulation and Visualization by a Semi-Analytical Finite Element Method, Materials Evaluation, 60, pp.75-79.

[7] Rose, J.L., Pelts, S.P., Quarry, M.J., 1998, A Comb Transducer Model for Guided Wave NDE, Ultrasonics, 36, pp.163-169.

DOI: https://doi.org/10.1016/s0041-624x(97)00042-5

[8] Rose, J.L., Soley, L.E., 2000, Ultrasonic guided waves for anomaly detection in aircraft components, Materials Evaluation, 50, pp.1080-1086.

[9] Hongerholt, D.D., Willms, G., Rose, J.L., 2002, Summary of Results from an Ultrasonic In-Flight Wing Ice Detection System, Review of Progress in Quantitative Nondestructive Evaluation, 21, pp.1023-1028.

[10] Rose, J.L., Zhu, W., Zaidi, M., 1998, Ultrasonic NDT of Titanium Diffusion Bonding with Guided Waves, Materials Evaluation, 56, pp.535-539.

[11] Rose, J.L., Hay, T.R., Agarwala, V., Stephenson, J.E., A Leave-in-place Sensor for Damage Detection in an SH-60 Helicopter Transmission Beam, 2001 USAF Aircraft Structural Integrity Program Conference, Williamsburg, VA, 10-13 December (2001).

[12] Rose, J.L., Hay, T., Agarwala, V.S., Skin to Honeycomb Core Delamination Detection with Guided Waves, Fourth Joint DoD/FAA/NASA Conference on Aging Aircraft, CD Session Composites Debond/Disbond, pp.36-47, St. Louis, MO, May 15-18 (2000).

[13] Song, W. -J., Rose, J.L., Whitesel, H., 2003, An Ultrasonic Guided Wave Technique for Damage Testing in a Ship Hull, Materials Evaluation, 60, pp.94-98.

[14] Nagy, P.B. and Kent, R.M., 1995, Ultrasonic Assessment of Poisson's Ratio in Thin Rods, JASA, 98, pp.2694-2701.

[15] Kwun, H., and Teller, C.M., 1994, Detection of fractured wires in steel cables using magnetostrictive sensors, Materials Evaluation, 52, pp.503-507.

[16] Rose, J.L., Morris, C., Spurlock, K., Schupp, J., 2002, Ultrasonic Sensor System for Calcium Fluoride Crystal Manufacture, presented at the Third International Symposium on 157 nm Lithography, Antwerp, Belgium, September 3-6, (2002).

[17] Energy Based Products for Endoscopic Surgery from Ethicon Endo-Surgery, Ethicon-Endo Surgery, Inc., Retrieved September 29, 2003 from the World Wide Web: http: /www. ethiconendo. com/ultrasonic. jsp.

[18] Rose, J.L., Ultrasonic Inspection of Adhesive Bonds (Chapter 18), Adhesion Science and Engineering: The Mechanics of Adhesion, Vol. 1, D.A. Dillard and A.V. Pocius, eds., pp.699-724, (2002).

DOI: https://doi.org/10.1016/b978-0-444-51140-9.50045-7

[19] Rose, J.L., Sun, Z., Zaidi, M., 2003, A Phased Array Guided Wave Approach to Adhesive Bonding Structural Integrity Analysis, Materials Evaluation, 61, pp.941-946.

[20] Song, W. -J., Rose, J.L., Galan, J.M., Abascal, R., 2003, Ultrasonic Guided Wave Scattering in a Plate Overlap, to be published in IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.

DOI: https://doi.org/10.1109/tuffc.2005.1503975

[21] Li, J. and Rose, J.L., 2001, Guided Wave Testing of Containment Structures, Materials Evaluation, 59, pp.783-787.

[22] Na, W. -B., Kundu, T., Ehsani, M.R., 2003, A Comparison of Steel/Concrete and Glass Fiber Reinforced Polymers/Concrete Interface Testing by Guided Waves, Materials Evaluation, 61, pp.155-161.

[23] Prasad, S.M., Jagannathan, R., Balasubramaniam, K., Krishnamurthy, C.V., Structural Helath Monitoring of Anisotropic Layered Composite Plates Using Guided Ultrasonic Lamb Wave Data, Presented at QNDE 2003, Green Bay, WI.

DOI: https://doi.org/10.1063/1.1711787

[24] Hay, T.R., Rose, J.L., 2003, Fouling Detection in the Food Industry using Ultrasonic Guided Waves, Food Control, 14, pp.481-488.

DOI: https://doi.org/10.1016/s0956-7135(02)00107-x

[25] Costly R.D., Ingram, M., Simpson, J., Shah, V.V., and Balasubramaniam, K., Torsional waveguide sensor for molten materials, Review of Progress in Quanitative Nondestructive Evaluation, eds. D.O. Thompson and D. Chimenti, Vol. 17, pp.859-860, (1998).

DOI: https://doi.org/10.1007/978-1-4615-5339-7_111

[26] Owens, S.E., Hauck, E.T., Rose, J.L., 2004, A Novel Couplant Free Mediator Ultrasonic Rayleigh Wave Technique for Detecting Surface Cracks in Green Parts, to be presented at the SAE 2004 World Congress, March 8-11, 2004, Detroit, MI.

DOI: https://doi.org/10.4271/2004-01-0493

[27] Balasubramaniam, K., Rose, J.L., 1991, Physically Based Dispersion Curve Feature Analysis in the NDE of Composites, Research in Nondestructive Evaluation, 3, pp.41-67.

DOI: https://doi.org/10.1080/09349849109409501

[28] Cawley, P., Lowe, M.J.S., Alleyne, D.N., Pavlakovic, B., Wilcox, P., 2003, Practical Long Range Guided Wave Testing: Applications to Pipes and Rail, Materials Evaluation, 61, pp.66-74.

[29] Rose, J.L., Avioli, M.J., Elastic Wave Analysis for Broken Rail Detection, ASNT Ninth Annual Research Symposium, Birmingham, AL, March 27-31, 2000. Title of Publication (to be inserted by the publisher).

[30] Hayashi, T., Song, W-J, Rose, J.L., 2003, Guided wave dispersion curves for a bar with an arbitrary cross-section, a rod and rail example, Ultrasonics, 41, pp.175-183.

DOI: https://doi.org/10.1016/s0041-624x(03)00097-0

[31] Alleyne, D.N., Cawley, P., 2003, Long Range Propagation of Lamb Waves in Chemical Plant Pipework, Materials Evaluation, 55, pp.504-508.

[32] Qu, J., Jacobs, L.J., 2003, Guided Circumferential Waves and Their Applications in Characterizing Cracks in Annular Components, Materials Evaluation, 61, pp.85-93.

[33] Kwun, H., Kim, S.Y., Light, G.M., 2003, The Magnetostrictive Sensor Technology for Long Range Guided Wave Testing and Monitoring of Structures, Materials Evaluation, 61, pp.80-84.

[34] Rose, J.L., 2002, Guided Wave Ultrasonic Pipe Inspection-The Next Generation, 8 th European Conference on Non-Destructive Testing, Barcelona, Spain, June 17-21.

[35] Li, Jian, Rose, J.L., 2002, Angular-Profile Tuning of Guided Waves in Hollow Cylinders Using a Circumferential Phased Array, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, 49, pp.1720-1729.

DOI: https://doi.org/10.1109/tuffc.2002.1159849

[36] Rose, J.L., Mudge, P.J., 2002, Flexural Mode Focusing in Pipe, 8 th European Conference on Non-Destructive Testing, Barcelona, Spain, June 17-21.

[37] Barshinger, J., Rose, J.L., Avioli, M.J., 2002, Guided Wave Resonance Tuning for Pipe Inspection, Transactions of the ASME, Journal of Pressure Vessel Technology, 124, pp.303-310.

DOI: https://doi.org/10.1115/1.1491580

[38] Rose, J.L., Sun, Z., Mudge, P.J., Avioli, M.J., 2003, Guided Wave Flexural Mode Tuning and Focusing for Pipe Inspection, Materials Evaluation, 61, pp.162-167.

[39] Zhao, X., Rose, J.L., 2003, Boundary Element Modeling for Defect Characterization Potential in a Wave Guide, " Int, l. Journal of Solids & Structures, 40, pp.2645-2658.

DOI: https://doi.org/10.1016/s0020-7683(03)00097-0

[40] Lowe, M.J.S., Cawley, P., Kao, J. -Y., Diligent, O., 2002, The Low Frequency Reflection Characteristics of the Fundamental Antisymmetric Lamb Wave a0 from a Rectangular Notch in a Plate, JASA, 112, pp.2612-2622.

DOI: https://doi.org/10.1121/1.1512702

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