Manufacturing Stress Corrosion-Cracking Tube Specimens for Eddy Current Technique Evaluation

Author:

Bum Bahn Chi,Bakhtiari Sasan,Park Jangyul,Majumdar Saurin1

Affiliation:

1. Argonne National Laboratory, Lemont, IL 60439

Abstract

To detect degradation in steam generator (SG) tubes, periodic inspection using nondestructive examination techniques, such as an eddy current testing, is a common practice. Therefore, it is critical to evaluate and validate the reliability of the eddy current technique for ensuring the structural integrity of the SG tubes. The eddy current technique could be evaluated by comparing the data estimated by the eddy current with the destructive examination data of field cracks, which would be both costly and labor intensive. A viable alternative to pulled tube data is to manufacture crack specimens that closely represent actual field cracks in laboratory environments. A crack manufacturing method that can be conducted at room temperature and atmospheric pressure conditions is proposed. The method was applied to manufacture different types of stress corrosion cracking (SCC) specimens: axial outer-diameter (OD) SCC for straight tubes, circumferential ODSCC and primary water SCC (PWSCC) at hydraulic expansion transition regions, and axial PWSCC at the apex and tangential regions of U-bend tubes. To help the growth of SCC into the tube, corrosive chemicals (sodium tetrathionate) and tensile stress were applied. Eddy current and destructive examination data for SCC specimens were compared with the available field crack data to determine whether those SCC specimens are representative. It was determined that the proposed method could manufacture the representative crack specimens.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference26 articles.

1. A Method for Controlled Stress Corrosion Cracking in Nonsensitized Inconel 600 Tubing;Corrosion,1980

2. Diercks, D. R., Bakhtiari, S., Kasza, K. E., Kupperman, D. S., Majumdar, S., Park, J. Y., and Shack, W. J., 1998, “Steam Generator Tube Integrity Program, Annual Report,” U.S. Nuclear Regulatory Commission Report No. NUREG/CR-6511, ANL-97/3.

3. Pement, F. W., Economy, G., and Aspden, R. G., 1987, “In Situ Heat Treatment of U-Bends,” Electric Power Research Institute Report No. EPRI NP-5496.

4. Dehmlow, S. M., 1995, “Development of Accelerated Test Methods: Application to a Fillett Welded Tube and Plate Geometry,” Proc. 1994 Workshop on Primary Water Stress Corrosion Cracking of Alloy 600 in PWRs, J. A.Gorman, ed., Electric Power Research Institute, Palo Alto, CA, Report No. TR 105406, pp. 4–7.

5. Advanced Flaw Production Method for In-Service Inspection Qualification Mock-Ups;Nucl. Eng. Des.,2003

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