A Natural Focusing Low Frequency Guided Wave Experiment for the Detection of Defects Beyond Elbows

Author:

Rose Joseph L.1,Zhang Li1,Avioli Michael J.2,Mudge Peter J.3

Affiliation:

1. Department of Engineering Science and Mechanics, The Pennsylvania State University, 212 Earth Engineering Sciences Bldg., University Park, PA 16802

2. FBS, Inc., 2134 Sandy Dr., Suite #14, State College, PA 16803

3. Plant Integrity Ltd., Granta Park, Great Abington, Cambridge CB1 6AL UK

Abstract

Long range ultrasonic guided wave inspection is advancing rapidly and is quite commonplace today. Benefits of using longitudinal or torsional modes are being established in special circumstances of improved sensitivity, resolution, or penetration power. The possibility of inspection under insulation, coatings, or with water filled pipes or around elbows is possible. Detection of defects beyond a pipe elbow is difficult for axisymmetric wave impingement onto the elbow. For nonaxisymmetric input to the elbow region, however, via partial loading around the circumference, natural focusing occurs because of angular profile variation around the circumference of the pipe. Sample computations of possible angular profiles are illustrated. An experiment is also reported here to demonstrate this inspection process.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference7 articles.

1. Practical Long Range Guided Wave Testing: Application to Pipes and Rails;Cawley;Mater. Eval.

2. The Magnetostrictive Sensor Technology for Long Range Guided Wave Testing and Monitoring of Structures;Kwun;Mater. Eval.

3. Guided Wave Flexural Mode Tuning and Focusing for Pipe Inspection;Rose;Mater. Eval.

4. Flexural Mode Tuning for Pipe Elbow Inspection;Rose;Mater. Eval.

5. Excitation and Propagation of Non-axisymmetric Guided Waves in a Hollow Cylinder;Li;J. Acoust. Soc. Am.

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