July 2026

Conference Paper

Gigacycle Fatigue Strength Evaluation of Welded 316L Stainless Steels for Mercury Target Vessel

By:
Naoe, Takashi; Mcclintock, David A
Page Number:
11169-11169
Volume:
45
Book Title:
Proceedings of the 4th Japan Proton Accelerator Research Complex (J-PARC) Symposium 2024
Publication Date:
July 6, 2026
Publisher Location:
The Physical Society of Japan, Japan
Conference Name:
The 4th Japan Proton Accelerator Research Complex (J-PARC) Symposium 2024
Conference Location:
Ibaraki, Japan
Conference Sponsor:
Various
View DOI Listing:
https://doi.org/10.7566/JPSCP.45.011169

Abstract

At the Materials and Life Science Experimental Facility (MLF) in J-PARC, liquid mercury target for the pulsed spallation neutron source is in operation. An enclosure vessel for the liquid mercury target made of type 316L stainless steel (SS316L) suffers two kinds of cyclic stress during operation. One is the thermal stress due to the internal heating and swings by proton beam trip. The other is the impulsive stress by the pressure waves generated by the proton beam injection. The total number of loading cycles for the former is ∼104, and the latter is ∼4 × 108 for a year operation in the J-PARC mercury target vessel. The target vessel is assembled by an electron beam welding (EBW) and a gas tungsten arc welding (GTAW). However, fatigue data of welded SS316L up to gigacycle is limited. Ultrasonic fatigue testing, applying load cycles by utilizing ultrasonic resonance, for the welded SS316L was performed to investigate the effect of welding on fatigue behavior up to a gigacycle. The result showed that the fatigue strength degradation by EBW and EBW with GTAW were not recognized up to 109 cycles. Crack initiation in welded specimens nucliated at off-center areas of the specimen whereas the cracks in base metal specimen originated at the specimen center.


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