Modeling quasi-static and dynamic thermo-elastic coupled brittle fracture using an adaptive isogeometric hybrid phase-field method

被引:15
作者
Li, Yicong [1 ]
Yu, Tiantang [1 ]
Xing, Chen [1 ]
Natarajan, Sundararajan [2 ]
机构
[1] Hohai Univ, Coll Mech & Mat, Nanjing 211100, Peoples R China
[2] Indian Inst Technol Madras, Dept Mech Engn, Chennai 600036, India
基金
中国国家自然科学基金;
关键词
Thermo-elastic fracture; Quasi-static and dynamic brittle fracture; Hybrid phase-field method; Isogeometric analysis; Locally refined NURBS; Staggered scheme; Adaptive local refinement; CRACK-PROPAGATION; DAMAGE; FORMULATION; REFINEMENT; ELEMENTS; SURFACE; NURBS;
D O I
10.1016/j.finel.2023.103993
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
Thermal shocks are ubiquitous in engineering applications. Due to the multi-field nature, numerical simulation of thermally induced cracking and subsequent propagation is challenging. Thanks to the recent introduction of variational phase-field model of fracture, it is now possible to numerically model the complex behavior of damage nucleation, growth, bifurcation and coalescence within one unified framework. Despite its popularity, one of the difficulties that hinder its practical application is the heavy computational requirement. In this paper, we propose a space adaptive framework based on locally refined non-uniform rational B-splines (LR NURBS) with generalized-������ method for temporal discretization for studying the crack growth in brittle materials subjected to combined thermo-mechanical loading under quasi-static and dynamic loading conditions. The coupled three-field problem, viz., temperature, displacement and phase fields is solved using a staggered scheme. Adaptive refinement is done in the vicinity of evolving damage based on user-defined threshold on the critical damage variable. The accuracy in predicting the crack path and morphology with the proposed framework is demonstrated with a few examples that involve quasi-static and dynamic loading conditions. It is opined that the adaptive framework yields comparable results similar to uniformly refined mesh, but with less computational effort.
引用
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页数:24
相关论文
共 65 条
[31]  
Kästner M, 2016, ADV STRUCT MAT, V60, P307, DOI 10.1007/978-981-10-0959-4_17
[32]   Phase field modeling of fracture in Quasi-Brittle materials using natural neighbor Galerkin method [J].
Kasirajan, P. ;
Bhattacharya, S. ;
Rajagopal, A. ;
Reddy, J. N. .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2020, 366
[33]   Pressure and fluid-driven fracture propagation in porous media using an adaptive finite element phase field model [J].
Lee, Sanghyun ;
Wheeler, Mary F. ;
Wick, Thomas .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2016, 305 :111-132
[34]   Phase-field modeling of brittle fracture in a3Dpolycrystalline material via an adaptive isogeometric-meshfree approach [J].
Li, Weidong ;
Nguyen-Thanh, Nhon ;
Zhou, Kun .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2020, 121 (22) :5042-5065
[35]   A dynamic description of material brittle failure using a hybrid phase-field model enhanced by adaptive isogeometric analysis [J].
Li, Yicong ;
Yu, Tiantang ;
Natarajan, Sundararajan ;
Bui, Tinh Quoc .
EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2023, 97
[36]   An adaptive isogeometric phase-field method for brittle fracture in rock-like materials [J].
Li, Yicong ;
Yu, Tiantang ;
Natarajan, Sundararajan .
ENGINEERING FRACTURE MECHANICS, 2022, 263
[37]   Fracture of thermo-elastic solids: Phase-field modeling and new results with an efficient monolithic solver [J].
Mandal, Tushar Kanti ;
Nguyen, Vinh Phu ;
Wu, Jian-Ying ;
Nguyen-Thanh, Chi ;
Vaucorbeil, Alban de .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2021, 376
[38]   A coupled phase field shear band model for ductile-brittle transition in notched plate impacts [J].
McAuliffe, Colin ;
Waisman, Haim .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2016, 305 :173-195
[39]   Analysis and computations of oscillating crack propagation in a heated strip [J].
Menouillard, Thomas ;
Belytschko, Ted .
INTERNATIONAL JOURNAL OF FRACTURE, 2011, 167 (01) :57-70
[40]   Thermodynamically consistent phase-field models of fracture: Variational principles and multi-field FE implementations [J].
Miehe, C. ;
Welschinger, F. ;
Hofacker, M. .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2010, 83 (10) :1273-1311