Advanced nondestructive evaluation for steam generator tubing
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Advanced nondestructive evaluation for steam generator tubing

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Published by Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission in Washington, DC .
Written in English

Subjects:

  • Steam-boilers -- Materials -- Testing.,
  • Non-destructive testing.

Book details:

Edition Notes

Statementprepared by S. Bakhtiari ... [et al.].
ContributionsBakhtiari, Sasan., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., Argonne National Laboratory.
The Physical Object
FormatMicroform
Paginationxvii, 94 p.
Number of Pages94
ID Numbers
Open LibraryOL16032362M

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Get this from a library! Advanced nondestructive evaluation for steam generator tubing. [U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory . Get this from a library! Advanced nondestructive evaluation for steam generator tubing. [Sasan Bakhtiari; U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology.; Argonne National Laboratory.;]. method for inservice inspection (ISI) of steam generator (SG) tubing that is exposed to corrosive, high-pressure, and temperature environments. This nondestructive evaluation (NDE) method has advanced significantly over the years in all areas associated with probe design, instrumentation, and computer-aided data by: 2. The papers which make up this volume reflect the very diverse nature of nondestructive evaluation; covering as they do topics ranging from traditional NDE to newly developing NDE.

@article{osti_, title = {Advanced Eddy current NDE steam generator tubing.}, author = {Bakhtiari, S}, abstractNote = {As part of a multifaceted project on steam generator integrity funded by the U.S. Nuclear Regulatory Commission, Argonne National Laboratory is carrying out research on the reliability of nondestructive evaluation (NDE). In this paper we report on the experimental results demonstrating the potential of using cylindrical guided waves (CGW) for inspection of steam generator tubing (SGT). The CGW ultrasonic technique is intended to complement the present eddy current (EC) practice for in-service inspection as well as to provide an alternative tool for pre-service. Nondestructive Evaluation Nuclear Power Industry Pulse Function Tube Support Steam Generator Tubing These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves. The corrosion and erosion of steam generator tubing in nuclear power plants can present problems of both safety and economics. In steam generators, the inconel tubes are fit loosely through holes drilled in carbon steel support plates. Corrosion is of particular concern with such tube/support plate structures. Non-protective magnetite can build up on the inner surface of the support plate.

  The utility of guided ultrasonic waves for increasing the efficiency and sensitivity of nuclear steam generator tubing evaluation by nondestructive means is explored. The basic theoretical background of guided waves in tubes is presented with major emphasis placed on those results with direct relevance to NDE applications. A pulsed eddy-current system has been designed and developed for nondestructive evaluation of ferromagnetic steam generator tubing from the bore side. Book. This book provides a wide ranging introduction to the meaning and context of violence. The authors build upon David Riches's concept of "the triangle of violence" which Carl Hamacher, Zvonko Vranesic Skywatchers A Revised and Updated Version of Skywatchers of Ancient Mexico, Anthony F. Aveni, , History, pages. Electromagnetic Nondestructive Evaluation in Korean Nuclear Power Plants Meeting Steam Generator Tube Inspection Needs in Nuclear Power Plants Corrosion Under Insulation: Electromagnetic NDE Capabilities Characterization of Matrices and Graphite Forms of Cast Irons by Electromagnetic Nondestructive Evaluation Section 2: ENDE in Nuclear Power.