This paper concerns the numerical simulations, by a commercial FEM code, related to notched specimens experimentally tested by neutron diffraction and synchrotron radiation diffraction, in order to correlate the deformation states around the crack tip. Two cracked specimens were analyzed. In one case a long crack has been induced into the specimen, which has been investigated subsequently by neutron diffraction technique. In the other case a smaller crack was induced, which has been investigated by synchrotron radiation diffraction technique. The numerical and experimental results are substantially in good agreement. However some differences can be observed; the reason can be found in the microscopic structure and particular history of the material under load.
Numerical Evaluation and Experimental Comparison of Elasto-plastic Stress-strain Distribution Around the Corner Cracks of a Notched Specimen / Sepe, Raffaele; Armentani, Enrico; Caputo, Francesco; Lamanna, Giuseppe. - In: PROCEDIA ENGINEERING. - ISSN 1877-7058. - 109:(2015), pp. 285-295. (Intervento presentato al convegno 23rd Italian Group of Fracture National Conference, IGF 2014 tenutosi a Hotel Tempo di Mare, Favignana, Italy nel 22-24 giugno 2015) [10.1016/j.proeng.2015.06.235].
Numerical Evaluation and Experimental Comparison of Elasto-plastic Stress-strain Distribution Around the Corner Cracks of a Notched Specimen
SEPE, RAFFAELE
;ARMENTANI, ENRICO;
2015
Abstract
This paper concerns the numerical simulations, by a commercial FEM code, related to notched specimens experimentally tested by neutron diffraction and synchrotron radiation diffraction, in order to correlate the deformation states around the crack tip. Two cracked specimens were analyzed. In one case a long crack has been induced into the specimen, which has been investigated subsequently by neutron diffraction technique. In the other case a smaller crack was induced, which has been investigated by synchrotron radiation diffraction technique. The numerical and experimental results are substantially in good agreement. However some differences can be observed; the reason can be found in the microscopic structure and particular history of the material under load.File | Dimensione | Formato | |
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