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Ultrasonic guided wave NDE for piping

Journal Article · · Materials Evaluation
OSTI ID:418058
 [1];  [2];  [3]
  1. Pennsylvania State Univ., University Park, PA (United States)
  2. FBS, Inc., State College, PA (United States)
  3. EPRI NDE Center, Charlotte, NC (United States)
An ultrasonic guided wave nondestructive evaluation (NDE) system for rapidly detecting and quantifying the reduction in wall thickness caused by corrosion in piping under insulation is discussed. Only small, easily replaceable sections need to be removed from the thermal insulation that surrounds the pipework. The worst case scenario of the guided wave work will be a two-stage system, the first with guided waves capable of rapidly surveying the piping to indicate areas of corrosion attack and wall thinning, followed by a more quantitative technique using a more conventional normal beam ultrasonic longitudinal wave inspection. In most cases, however, the guided wave technique will be sufficient for quantitatively determining wall thickness, depending on the accuracy required and the local or global nature of the wall thinning. Drawing on guided wave experiences to date on a variety of different plate and tubing problems, preliminary feasibility experiments have already been conducted on piping under insulation in both a laboratory and a chemical processing facility field environment. Three guided wave techniques have been introduced, one on normal beam excitation, one using a broad variable angle beam transducer on a curved shoe, and a third on a newly developed pipe comb system.
Sponsoring Organization:
Electric Power Research Inst., Palo Alto, CA (United States)
OSTI ID:
418058
Journal Information:
Materials Evaluation, Journal Name: Materials Evaluation Journal Issue: 11 Vol. 54; ISSN MAEVAD; ISSN 0025-5327
Country of Publication:
United States
Language:
English

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