会议论文详细信息
27th International Cryogenics Engineering Conference and International Cryogenic Materials Conference 2018
Fatigue Cyclic Testing of the ITER CS Inlets
Martovetsky, Nicolai^1 ; Walsh, Robert^2 ; Freudenberg, Kevin^1 ; Reiersen, Wayne^1 ; Everitt, David^1 ; McRae, Dustin^3 ; Myatt, Leonard^4 ; Cochran, Kristine^4 ; Jong, Cornelis^5
Oak Ridge National Laboratory, 1055 Commerce Park Drive, Oak Ridge
TN
37831, United States^1
1800 E. Paul Dirac Drive, Tallahassee
FL
32310-3706, United States^2
University of Colorado at Boulder, Boulder
CO
80309, United States^3
Myatt Consulting Inc, 8 Eric Road, Norfolk
MA
02056, United States^4
ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, Paul Lez Durance
13067 St, France^5
关键词: Central solenoid;    Compressive residual stress;    High stress concentration;    Inner diameters;    Mechanical performance;    Structural elements;    Supercritical helium;    Ultrasonic peening;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/502/1/012189/pdf
DOI  :  10.1088/1757-899X/502/1/012189
来源: IOP
PDF
【 摘 要 】

ITER Central Solenoid (CS) is cooled by injecting supercritical helium at the inner diameter (ID), an area with the highest stress. The jacket near the helium inlet is the weakest structural element of the ITER CS due to the high stress concentration. To verify adequate mechanical performance of the inlets, we made six full-scale specimens and subjected them to relevant cycling loading in liquid nitrogen to assess the operational margin of the inlets. To increase fatigue life of the inlets, we used a treatment called ultrasonic peening (UP). This treatment allows for the creation of a compressive residual stress at the surface of the jacket with the highest stress, which significantly delays initiation of the fatigue crack. For comparison purposes, one of the samples was intentionally not UP treated. Test results showed significant advantages of the UP treatment and demonstrated sufficient life to support the ITER CS mission.

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