Fig. 1 Laser peening system for reactor vessel head
Fig. 2 UNSM device and conceptual diagram
Table 1 The sample of the peening acceptance criteria
참고문헌
- Dennis P. Weakland, Glenn White and Paul Crooker, 2016, "Incorporating Peening Into ASME Section XI Code Cases N-729 and N-770 for PWSCC Mitigation in Alloy 82/182/600 Locations". Proc. Of ASME 2016 PVP Conference, Vancouver, BC, July 17-21, PVP2016-64008.
- John H Jackson, Denise Paraventi, Michael Wright, 2017 "Topical Report for Primary Water Stress Corrosion Cracking Mitigation by Surface Stress Improvement" Electric Power Research Institute, Palo Alto, CA, MRP-267
- ASME BPVC Sec.XI, Code Case N-729-6, 2017, "Alternative Examination Requirements for PWR Reactor Vessel Upper Heads With Nozzles Having Pressure-Retaining Partial-Penetration Welds," American Society of Mechanical Engineers, NY.
- ASME BPVC Sec.XI, Code Case N-770-5, 2017, "Alternative Examination Requirements and Acceptance Standards for Class 1 PWR Piping and Vessel Nozzle Butt Welds Fabricated With UNS N06082 or UNS W86182 Weld Filler Material with or Without Application of Listed Mitigation Activities," American Society of Mechanical Engineers, NY.
- EPRI, 2016, Materials Reliability Program : Topical Report for Primary Water Stress Corrosion Cracking Mitigation by Surface Stress Improvement, Electric Power Research Institute, Palo Alto, CA: MRP-335, Revision 3-A
- EPRI, 2016, Materials Reliability Program: Technical Basis for Primary Water Stress Corrosion Cracking Mitigation by Surface Stress Improvement, Electric Power Research Institute, Palo Alto, CA, MRP-267, Revision 2