Mixed-mode fatigue crack growth in orthotropic steel decks

被引:2
作者
Choi, Dong-Ho
Choi, Hang-Yong
Chung, Sang-Hwan
Yoo, Hoon
机构
[1] Hanyang Univ, Dept Civil Engn, Seoul 133791, South Korea
[2] Seoyeong Engn Co Ltd, Seoul 137739, South Korea
来源
ADVANCED NONDESTRUCTIVE EVALUATION I, PTS 1 AND 2, PROCEEDINGS | 2006年 / 321-323卷
关键词
fatigue crack growth; mixed-mode fracture; strain energy density factor; stress intensity factor;
D O I
10.4028/www.scientific.net/KEM.321-323.733
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The strain energy density factor approach under mixed-mode condition is used for the prediction of crack propagation in the orthotropic steel deck specimen, which is similar to that of existing suspension bridges. Stress intensity factor approach is used to compare with strain energy density factor approach for the fatigue crack growth analysis. The stress intensity factors are computed by numerical extrapolation using cracked models for the different crack length. The study shows that the fatigue crack propagation under mixed-mode condition is slower than that under mode I only. Parametric studies on the initial crack length, critical crack length and parameters related to crack growth equations are performed to show the influence of these parameters on the fatigue life.
引用
收藏
页码:733 / 738
页数:6
相关论文
共 50 条
[31]   A cohesive XFEM model for simulating fatigue crack growth under mixed-mode loading and overloading [J].
Dekker, R. ;
van der Meer, F. P. ;
Maljaars, J. ;
Sluys, L. J. .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2019, 118 (10) :561-577
[32]   Mixed-mode (I plus II) fatigue crack growth of marine steels in Arctic environments [J].
Qiao, Kaiqing ;
Liu, Zhijie ;
Guo, Qiuyu ;
Wang, Xiaobang ;
Zhang, Shengwei .
OCEAN ENGINEERING, 2024, 310
[33]   A phase-field model for mixed-mode elastoplastic fatigue crack [J].
Xie, Qikun ;
Qi, Hongyu ;
Li, Shaolin ;
Yang, Xiaoguang ;
Shi, Duoqi .
ENGINEERING FRACTURE MECHANICS, 2023, 282
[34]   Mixed-mode crack-tip stress fields for orthotropic functionally graded materials [J].
Vijaya Bhaskar Chalivendra .
Acta Mechanica, 2009, 204 :51-60
[35]   Analysis of fatigue crack growth under mixed-mode loading conditions for a pearlitic Grade 900A steel used in railway applications [J].
Nejad, Reza Masoudi ;
Liu, Zhiliang .
ENGINEERING FRACTURE MECHANICS, 2021, 247
[36]   Fatigue crack growth under mixed-mode I + II and I + III in heat treated 42CrMo4 steel [J].
Monika Duda ;
Dariusz Rozumek ;
Grzegorz Lesiuk ;
Michał Smolnicki ;
Bartosz Babiarczuk ;
Joanna Warycha .
International Journal of Fracture, 2022, 234 :235-248
[37]   Micromechanical modeling of mixed-mode crack growth in ceramic composites [J].
Zhai, J ;
Zhou, M .
MIXED-MODE CRACK BEHAVIOR, 1999, 1359 :174-200
[38]   An Approach to Predicting Fatigue Crack Growth Under Mixed-Mode Loading Based on Improved Gaussian Process [J].
Wang, Honghui ;
Fang, Xin ;
Liu, Guijie ;
Xie, Yingchun ;
Tian, Xiaojie ;
Leng, Dingxin ;
Mu, Weilei .
IEEE ACCESS, 2021, 9 :48777-48792
[39]   Evaluation of Stress Intensity Factor Range in the Prediction of Fatigue Crack Growth at Rib-to-Deck Welded Joints of Orthotropic Steel Decks [J].
Shi, Guangyu ;
Li, Xiaoxiao ;
Zhang, Gaonan .
CONSTRUCTION AND URBAN PLANNING, PTS 1-4, 2013, 671-674 :969-973
[40]   Study of the Fatigue Crack Growth in Long-Term Operated Mild Steel under Mixed-Mode (I plus II, I plus III) Loading Conditions [J].
Lesiuk, Grzegorz ;
Smolnicki, Michal ;
Rozumek, Dariusz ;
Krechkovska, Halyna ;
Student, Oleksandra ;
Correia, Jose ;
Mech, Rafal ;
De Jesus, Abilio .
MATERIALS, 2020, 13 (01)