Validation of RTT0 for German Reactor Pressure Vessel Steels

Author:

Siegele Dieter1,Keim Elisabeth2,Nagel Gerhard3

Affiliation:

1. Fraunhofer Institut für Werkstoffmechanik, 79108 Freiburg, Germany

2. AREVA NP GmbH, 91052 Erlangen, Germany

3. EON Kernkraft GmbH, 30457 Hannover, Germany

Abstract

For the introduction of the new reference temperature RTT0 of the ASME Code Cases N-629 and N-631 into the German Standard KTA 3201.2, the applicability of RTT0 was validated by the reevaluation of the existing fracture toughness database of German reactor pressure vessel. (RPV) steels including unirradiated and irradiated base materials and weld metal data. The test temperatures of the database were standardized to the reference temperature T0 of the master curve of the data sets and the database was compared with the ASME KIC-curve as adjusted by RTT0. The KIC-curve adjusted by RTT0 enveloped both the 1T-size adjusted database and also the as-measured database, corresponding to the definition of RTT0. Thus, the results also prove the validity of the KIC(RTT0)-curve for allowable flaw sizes and up to the crack length spectrum of the ASME KIC-database without size adjustment of T0. The results of both investigations confirmed the validity of RTT0 for German RPV steels. The majority of existing fracture toughness data are based on KIC-values. More recent data are (KJC) related to the issuing of ASTM E 1921 in 1997 and to the success of the master curve-based T0 approach. Therefore, the possible difference between T0 determined from KJC and from KIC was investigated with available databases for RPV steels. The comparison of T0(KJC) and T0(KIC) showed a 1:1 correlation proving the equivalence of KJC and KIC in the determination of T0.

Publisher

ASME International

Subject

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

Reference13 articles.

1. ASTM E 1921–03, Standard Test Method for Determination of Reference Temperature, T0, for Ferritic Steels in the Transition Range.

2. ASME Code Case N-629, 1999, “Use of Fracture Toughness Test Data to Establish Reference Temperature for Pressure Retaining Materials,” Sec. XI, Division 1.

3. ASME Code Case N-631, 1999, “Use of Fracture Toughness Test Data to Establish Reference Temperature for Pressure Retaining Materials Other Than Bolting for Class 1 Vessels,” Sec. III, Division 1.

4. Technical Basis for Application of the Master Curve Approach to Reactor Pressure Vessel Integrity Assessment;Server

5. Master Curve Analysis of a German RPV Steel Considering Local Constraint;Siegele

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