This paper presents a non-local interface mechanical model to describe aortic dissection. In this regard, the mode-I debonding problem based on a cohesive zone modeling is endowed with non-local terms to include long-range interactions that are present in multi-layered biological tissue. Such non-local effects are related to the collagen fibers that transmit forces between non-adjacent elements. Numerical simulations are provided with different values of the non-local parameters in order to show the effect of the non-locality during the debonding processes.

A Non-Local Mode-I Cohesive Model for Ascending Thoracic Aorta Dissections (ATAD) / Alotta, G.; Bologna, E.; Di Giuseppe, M.; Zingales, M.; Dimitri, R.; Pinnola, F. P.; Zavarise, G.. - STAMPA. - (2018), pp. 1-6. (Intervento presentato al convegno 4th IEEE International Forum on Research and Technologies for Society and Industry, RTSI 2018 tenutosi a ita nel 2018) [10.1109/RTSI.2018.8548349].

A Non-Local Mode-I Cohesive Model for Ascending Thoracic Aorta Dissections (ATAD)

Zavarise G.
2018

Abstract

This paper presents a non-local interface mechanical model to describe aortic dissection. In this regard, the mode-I debonding problem based on a cohesive zone modeling is endowed with non-local terms to include long-range interactions that are present in multi-layered biological tissue. Such non-local effects are related to the collagen fibers that transmit forces between non-adjacent elements. Numerical simulations are provided with different values of the non-local parameters in order to show the effect of the non-locality during the debonding processes.
2018
978-1-5386-6282-3
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2787117