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Title:Meshless solution of the crack propagation in brittle elastic material under shear, compressible and tensile loading
Authors:ID Ali, Izaz (Author)
ID Vuga, Gašper (Author)
ID Mavrič, Boštjan (Author)
ID Šarler, Božidar (Author)
Files:.pdf PDF - Presentation file, download (9,95 MB)
MD5: 5FA2D390596749EACB664FDF9EEB95D7
 
URL URL - Source URL, visit https://www.sciencedirect.com/science/article/pii/S0013794425004084?via%3Dihub
 
Language:English
Typology:1.01 - Original Scientific Article
Organization:Logo IMT - Institute of Metals and Technology
Abstract:This study explores a robust and computationally efficient two-dimensional solution procedure for phase-field modelling of crack propagation under tensile, compressive, and shear loadings by using the meshless local radial basis function collocation method (LRBFCM). The mechanical model is based on the brittle elastic material, and the crack propagation is governed by the fourth-order phase field equation coupled in a staggered way. The spectral-split method for strain tensor decomposition of a brittle elastic material is used with LRBFCM for crack propagation for the first time. It ensures that the crack is propagated physically correctly under different loading types, filling the gap in our previous study [1], where crack propagation only under tensile loading was possible. The strong-form LRBFCM is constructed on 13-noded subdomains with augmented third- order polyharmonic spline shape functions. A novel adaptive loading step size criterion is introduced to increase computational efficiency by removing cumbersome internal iteration processes. The method’s performance is assessed with three benchmark tests subjected to mixed-mode tension, shear and compressive loading. The results are validated with the reference solutions regarding accuracy and convergence rates for scattered and regular node arrangements. The effects of the iterative and non-iterative processes with different loading step sizes are shown.
Keywords:strong form LRBFCM, higher-order phase field, crack propagation, PHSs, spectral-split, strain decomposition, shear test
Publication status:Published
Publication version:Version of Record
Publication date:01.01.2025
Publisher:Elsevier
Year of publishing:2025
Number of pages:26 str.
Numbering:Vol. 323, [article no.] 111207
Source:Engineering Fracture Mechanics
PID:20.500.12556/DiRROS-22248 New window
UDC:621.7.019.1
ISSN on article:1873-7315
DOI:10.1016/j.engfracmech.2025.111207 New window
COBISS.SI-ID:235555843 New window
Copyright:© 2025 The Author(s). Published by Elsevier Ltd.
Note:Nasl. z nasl. zaslona; Soavtorji: Gašper Vuga, Boštjan Mavrič, Božidar Šarler; Opis vira z dne 12. 5. 2025;
Publication date in DiRROS:13.05.2025
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Downloads:269
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Record is a part of a journal

Title:Engineering fracture mechanics
Publisher:Elsevier
ISSN:1873-7315
COBISS.SI-ID:9089633 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0162
Name:Večfazni sistemi

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:J2-4477
Name:RAZVOJ INOVATIVNIH BREZMREŽNIH METOD ZA VEČFIZIKALNE IN VEČNIVOJSKE SIMULACIJE VRHUNSKIH TEHNOLOGIJ

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:L2-3173
Name:NAPREDNA SIMULACIJA IN OPTIMIZACIJA CELOTNE PROCESNE POTI ZA IZDELAVO VRHUNSKIH JEKEL

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Link:http://creativecommons.org/licenses/by-nc-nd/4.0/
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