Parametric study of crack propagation under thermal shock using phase field method

Thermal shock is a major concern for brittle and quasi-brittle construction materials such as ceramics as it can easily lead to fracture. The complex mechanism and fracture pattern of this phenomenon make its analysis and prediction challenging. The phase-field method in this context is a promising...

Full description

Saved in:
Bibliographic Details
Main Authors: Quy-Minh VUONG, Anh-Tu TRAN, Quan Minh THAI, Yann CHARLES, Jia LI
Format: Article
Language:English
Published: Mouloud Mammeri University of Tizi-Ouzou 2024-12-01
Series:Journal of Materials and Engineering Structures
Subjects:
Online Access:https://revue.ummto.dz/index.php/JMES/article/view/3692
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850206285600915456
author Quy-Minh VUONG
Anh-Tu TRAN
Quan Minh THAI
Yann CHARLES
Jia LI
author_facet Quy-Minh VUONG
Anh-Tu TRAN
Quan Minh THAI
Yann CHARLES
Jia LI
author_sort Quy-Minh VUONG
collection DOAJ
description Thermal shock is a major concern for brittle and quasi-brittle construction materials such as ceramics as it can easily lead to fracture. The complex mechanism and fracture pattern of this phenomenon make its analysis and prediction challenging. The phase-field method in this context is a promising candidate for simulating this phenomenon. By representing a discrete crack with a continuous damage variable that evolves according to its governing equations, the entire fracture process could be captured within the original finite element mesh. In this work, we developed a phase-field thermomechanical fracture model and implemented it into Abaqus software to reproduce literature work on the fracture behavior of ceramic materials subjected to water quenching. Different types of ceramic plates at various temperature conditions were investigated. The obtained results showed good agreement with the published works, validating the model implementation to be applied to further studies.
format Article
id doaj-art-42617f786295489ca35c525aa101abcf
institution OA Journals
issn 2170-127X
language English
publishDate 2024-12-01
publisher Mouloud Mammeri University of Tizi-Ouzou
record_format Article
series Journal of Materials and Engineering Structures
spelling doaj-art-42617f786295489ca35c525aa101abcf2025-08-20T02:10:53ZengMouloud Mammeri University of Tizi-OuzouJournal of Materials and Engineering Structures2170-127X2024-12-011143813902328Parametric study of crack propagation under thermal shock using phase field methodQuy-Minh VUONG0Anh-Tu TRAN1Quan Minh THAI2Yann CHARLES3Jia LI4Université Sorbonne Paris Nord, Laboratoire des Sciences des Procédés et des Matériaux, LSPM, CNRS, UPR 3407, F-93430, VilletaneuseUniversity of Science and Technology of Hanoi, Vietnam Academy of Science and Technology, HanoiUniversity of Transport and CommunicationsUniversité Sorbonne Paris Nord, Laboratoire des Sciences des Procédés et des Matériaux, LSPM, CNRS, UPR 3407, F-93430, VilletaneuseUniversité Sorbonne Paris Nord, Laboratoire des Sciences des Procédés et des Matériaux, LSPM, CNRS, UPR 3407, F-93430, VilletaneuseThermal shock is a major concern for brittle and quasi-brittle construction materials such as ceramics as it can easily lead to fracture. The complex mechanism and fracture pattern of this phenomenon make its analysis and prediction challenging. The phase-field method in this context is a promising candidate for simulating this phenomenon. By representing a discrete crack with a continuous damage variable that evolves according to its governing equations, the entire fracture process could be captured within the original finite element mesh. In this work, we developed a phase-field thermomechanical fracture model and implemented it into Abaqus software to reproduce literature work on the fracture behavior of ceramic materials subjected to water quenching. Different types of ceramic plates at various temperature conditions were investigated. The obtained results showed good agreement with the published works, validating the model implementation to be applied to further studies.https://revue.ummto.dz/index.php/JMES/article/view/3692thermal shockceramicsfracturephase-field modeling
spellingShingle Quy-Minh VUONG
Anh-Tu TRAN
Quan Minh THAI
Yann CHARLES
Jia LI
Parametric study of crack propagation under thermal shock using phase field method
Journal of Materials and Engineering Structures
thermal shock
ceramics
fracture
phase-field modeling
title Parametric study of crack propagation under thermal shock using phase field method
title_full Parametric study of crack propagation under thermal shock using phase field method
title_fullStr Parametric study of crack propagation under thermal shock using phase field method
title_full_unstemmed Parametric study of crack propagation under thermal shock using phase field method
title_short Parametric study of crack propagation under thermal shock using phase field method
title_sort parametric study of crack propagation under thermal shock using phase field method
topic thermal shock
ceramics
fracture
phase-field modeling
url https://revue.ummto.dz/index.php/JMES/article/view/3692
work_keys_str_mv AT quyminhvuong parametricstudyofcrackpropagationunderthermalshockusingphasefieldmethod
AT anhtutran parametricstudyofcrackpropagationunderthermalshockusingphasefieldmethod
AT quanminhthai parametricstudyofcrackpropagationunderthermalshockusingphasefieldmethod
AT yanncharles parametricstudyofcrackpropagationunderthermalshockusingphasefieldmethod
AT jiali parametricstudyofcrackpropagationunderthermalshockusingphasefieldmethod