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An Efficient Finite Element Framework to Assess Flexibility Performances of SMA Self-Expandable Carotid Artery Stents

Articolo
Data di Pubblicazione:
2015
Abstract:
Computer-based simulations are nowadays widely exploited for the prediction of the mechanical behavior of different biomedical devices. In this aspect, structural finite element analyses (FEA) are currently the preferred computational tool to evaluate the stent response under bending. This work aims at developing a computational framework based on linear and higher order FEA to evaluate the flexibility of self-expandable carotid artery stents. In particular, numerical simulations involving large deformations and inelastic shape memory alloy constitutive modeling are performed, and the results suggest that the employment of higher order FEA allows accurately representing the computational domain and getting a better approximation of the solution with a widely-reduced number of degrees of freedom with respect to linear FEA. Moreover, when buckling phenomena occur, higher order FEA presents a superior capability of reproducing the nonlinear local effects related to buckling phenomena.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
carotid artery stents; finite element analysis; shape memory alloys; stent flexibility
Elenco autori:
Ferraro, Mauro; Auricchio, Ferdinando; Boatti, Elisa; Scalet, Giulia; Conti, Michele; Morganti, Simone; Reali, Alessandro
Autori di Ateneo:
AURICCHIO FERDINANDO
CONTI MICHELE
MORGANTI SIMONE
REALI ALESSANDRO
SCALET GIULIA
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1100439
Pubblicato in:
JOURNAL OF FUNCTIONAL BIOMATERIALS
Journal
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