A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams

In the present paper, the mechanical behaviour of edge-cracked nanobeams under Mixed-Mode loading is analytically investigated by means of the Stress-Driven nonlocal model. Firstly, the proposed formulation is outlined, and then applied to the case of a cantilever edge-cracked nanobeam. A parametr...

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Main Authors: Daniela Scorza, Andrea Carpinteri, Camilla Ronchei, Andrea Zanichelli, Sabrina Vantadori, Raimondo Luciano
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2024-01-01
Series:Frattura ed Integrità Strutturale
Subjects:
Online Access:https://www.fracturae.com/index.php/fis/article/view/4691/3935
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author Daniela Scorza
Andrea Carpinteri
Camilla Ronchei
Andrea Zanichelli
Sabrina Vantadori
Raimondo Luciano
author_facet Daniela Scorza
Andrea Carpinteri
Camilla Ronchei
Andrea Zanichelli
Sabrina Vantadori
Raimondo Luciano
author_sort Daniela Scorza
collection DOAJ
description In the present paper, the mechanical behaviour of edge-cracked nanobeams under Mixed-Mode loading is analytically investigated by means of the Stress-Driven nonlocal model. Firstly, the proposed formulation is outlined, and then applied to the case of a cantilever edge-cracked nanobeam. A parametric study is performed by varying both the crack depth and the crack position along the beam axis. Finally, the above formulation is applied to simulate some experimental tests available in the literature.
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spelling doaj.art-830745756c8e40419784ec4f8a32dd7b2024-01-05T10:06:31ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932024-01-01186728029110.3221/IGF-ESIS.67.2010.3221/IGF-ESIS.67.20A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeamsDaniela ScorzaAndrea CarpinteriCamilla RoncheiAndrea ZanichelliSabrina VantadoriRaimondo LucianoIn the present paper, the mechanical behaviour of edge-cracked nanobeams under Mixed-Mode loading is analytically investigated by means of the Stress-Driven nonlocal model. Firstly, the proposed formulation is outlined, and then applied to the case of a cantilever edge-cracked nanobeam. A parametric study is performed by varying both the crack depth and the crack position along the beam axis. Finally, the above formulation is applied to simulate some experimental tests available in the literature.https://www.fracturae.com/index.php/fis/article/view/4691/3935crackmixed-mode loadingnanobeamstress-driven modelstress-intensity factor
spellingShingle Daniela Scorza
Andrea Carpinteri
Camilla Ronchei
Andrea Zanichelli
Sabrina Vantadori
Raimondo Luciano
A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams
Frattura ed Integrità Strutturale
crack
mixed-mode loading
nanobeam
stress-driven model
stress-intensity factor
title A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams
title_full A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams
title_fullStr A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams
title_full_unstemmed A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams
title_short A nonlocal elasticity theory to model the static behaviour of edge-cracked nanobeams
title_sort nonlocal elasticity theory to model the static behaviour of edge cracked nanobeams
topic crack
mixed-mode loading
nanobeam
stress-driven model
stress-intensity factor
url https://www.fracturae.com/index.php/fis/article/view/4691/3935
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