Title of article :
Evaluation of the depth-dependent yield strength of a nanoindented ion-irradiated Fe–Cr model alloy by using a finite element modeling
Author/Authors :
Shin، نويسنده , , Chansun and Jin، نويسنده , , Hyung-ha and Kim، نويسنده , , Maan-Won، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
6
From page :
476
To page :
481
Abstract :
Ion bombardment of materials produces a shallow damaged region, in which the density of the radiation-induced defects is highly heterogeneous in depth from the irradiated surface. A nanoindentation on the surface of an ion-irradiated specimen probes the load-depth (L–h) response of the damaged region, which has varying mechanical property along the indentation depth. The measured nano-hardness thus is an average value of a varying hardness over the damaged region. The dose dependence of the increase in yield strength of an ion-irradiated Fe–Cr model alloy was evaluated by combining a nanoindentation test with a finite element (FE) modeling. The radiation damaged region was discretized into a finite number of layers with a pre-defined depth profile of the yield strength in terms of the dose level in the FE modeling. The dose-dependent yield strength and the intrinsic hardness of the damaged regions were extracted by comparing the computed L–h curve with the experimentally measured one.
Journal title :
Journal of Nuclear Materials
Serial Year :
2009
Journal title :
Journal of Nuclear Materials
Record number :
1365051
Link To Document :
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