Numerical simulations of fracture initiation in ductile solids under mode I, dynamic loading

被引:0
作者
R Narasimhan
S Basu
机构
[1] Indian Institute of Science,Department of Mechanical Engineering
来源
Bulletin of Materials Science | 1999年 / 22卷
关键词
Ductile fracture; dynamic loading; strain-rate dependence; finite elements;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, an overview of some recent computational studies by the authors on ductile crack initiation under mode I, dynamic loading is presented. In these studies, a large deformation finite element procedure is employed along with the viscoplastic version of the Gurson constitutive model that accounts for the micro-mechanical processes of void nucleation, growth and coalescence. A three-point bend fracture specimen subjected to impact, and a single edge notched specimen loaded by a tensile stress pulse are analysed. Several loading rates are simulated by varying the impact speed or the rise time and magnitude of the stress pulse. A simple model involving a semi-circular notch with a pre-nucleated circular hole situated ahead of it is considered. The growth of the hole and its interaction with the notch tip, which leads to plastic strain and porosity localization in the ligament connecting them, is simulated. The role of strain-rate dependence on ductile crack initiation at high loading rates, and the specimen geometry effect on the variation of dynamic fracture toughness with loading rate are investigated.
引用
收藏
页码:891 / 900
页数:9
相关论文
共 50 条
[41]   Ductile fracture model for structural steel under cyclic large strain loading [J].
Jia, Liang-Jiu ;
Kuwamura, Hitoshi .
JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2015, 106 :110-121
[42]   Fracture study in notched ductile polymeric plates subjected to mixed mode I/II loading: Application of equivalent material concept [J].
Rahimi, A. S. ;
Ayatollahi, M. R. ;
Torabi, A. R. .
EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2018, 70 :37-43
[43]   Numerical simulation of plastic strain localization and failure mode transition in metals under dynamic loading [J].
Bilalov, Dmitry ;
Sokovikov, Mikhail ;
Bayandin, Yuri ;
Chudinov, Vasiliy ;
Oborin, Vladimir ;
Naimark, Oleg .
21ST EUROPEAN CONFERENCE ON FRACTURE, (ECF21), 2016, 2 :1951-1958
[44]   Fracture rate dependency of an adhesive under dynamic loading [J].
Dagorn, Noelig ;
Portemont, Gerald ;
Joudon, Vincent ;
Bourel, Benjamin ;
Lauro, Franck .
ENGINEERING FRACTURE MECHANICS, 2020, 235
[45]   Numerical Simulation for Studying Constraint Effect on Ductile Fracture Initiation Using Complete Gurson Model [J].
Younise, Bashir ;
Rakin, Marko ;
Medjo, Bojan ;
Sedmak, Aleksandar .
FME TRANSACTIONS, 2010, 38 (04) :197-202
[46]   Experimental and Numerical Research on Fracture Properties of Mass Concrete Under Quasi-Static and Dynamic Loading [J].
Zhang, Yazhou ;
Zhong, Hong ;
Li, Deyu ;
Li, Chunlei ;
Wang, Haibo ;
Li, Zhiyuan ;
Dong, Wei .
BUILDINGS, 2024, 14 (10)
[47]   Fracture behavior of ABS resin under mixed mode loading [J].
Kishimoto, K ;
Notomi, HM ;
Shibuya, T .
FRACTURE AND STRENGTH OF SOLIDS, PTS 1 AND 2: PT 1: FRACTURE MECHANICS OF MATERIALS; PT 2: BEHAVIOR OF MATERIALS AND STRUCTURE, 1998, 145-9 :743-748
[48]   Methodology for numerical assessment of stretch zone width under mixed mode I/III fracture [J].
Saxena, Sanjeev ;
Dutta, B. K. ;
Sasikala, G. .
THEORETICAL AND APPLIED FRACTURE MECHANICS, 2016, 85 :183-190
[49]   A method for measuring mode I crack tip constraint under static and dynamic loading conditions [J].
Maleski, MJ ;
Kirugulige, MS ;
Tippur, HV .
EXPERIMENTAL MECHANICS, 2004, 44 (05) :522-532
[50]   A method for measuring mode I crack tip constraint under static and dynamic loading conditions [J].
M. J. Maleski ;
M. S. Kirugulige ;
H. V. Tippur .
Experimental Mechanics, 2004, 44 (5) :522-532