Next Article in Journal
Experimental Evaluation of Concrete Blended with Eco-Friendly Bio-Sulfur as a Cement Replacement Material
Next Article in Special Issue
Comparison of the Modified CTOD Measurement Method with the Double Clip Gauge Method in a Compact Tension Specimen
Previous Article in Journal
Modification of Uniaxial Stress–Strain Model of Concrete Confined by Pitting Corroded Stirrups
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Fatigue Crack Growth Performance of Q370qENH Weathering Bridge Steel and Butt Welds

by
Yujie Yu
1,2,*,
Xiang Zhang
2,
Chunjian Hu
2,
Liangkun Liu
3 and
Haibo Wang
4
1
National Engineering Research Center of High-Speed Railway Construction Technology, Central South University, Changsha 410075, China
2
School of Civil Engineering, Central South University, Changsha 410075, China
3
Key Laboratory of Intelligent Disaster Prevention and Emergency Technologies for Urban Lifeline Engineering, Dongguan 523808, China
4
Hunan Tieyuan Civil Engineering Testing Co., Ltd., Changsha 410075, China
*
Author to whom correspondence should be addressed.
Materials 2024, 17(23), 6015; https://doi.org/10.3390/ma17236015
Submission received: 9 October 2024 / Revised: 5 November 2024 / Accepted: 12 November 2024 / Published: 9 December 2024
(This article belongs to the Special Issue Engineering Materials and Structural Integrity)

Abstract

Weathering steel possesses good atmospheric corrosion resistance and is increasingly applied in highway and railway bridges. The fatigue performance of the weld joint is an important issue in bridge engineering. This study experimentally investigates the microstructural properties and fracture crack growth behaviors of a Q370qENH bridge weathering steel weld joint. The FCG parameters of the base steel, butt weld, and HAZs, considering the effect of different plate thicknesses and stress ratios, are analyzed. Microstructural features, microhardness, and fatigue fracture surfaces are carefully inspected. The FCG rates of different weld regions in the stable crack growth stage are obtained using integral formulas based on the Paris and Walker law. The test results indicate that the heating and cooling process during the welding of Q370qENH steel creates improved microstructures with refined grain sizes and fewer impurities, thus leading to improved FCG performances in the HAZ and weld regions. The crack growth rate of Q370qENH weld regions increases with the stress ratio, and the influencing extent increasingly ranks as the base steel, HAZ, and the weld. The thick plate has a slightly slower fatigue crack growth rate for the Q370qENH weld joints. The Q370qENH base steel presents the highest fatigue crack growth rate, followed by the heat-treated and HAZ cases, while the weld area exhibits the lowest FCG rate. The Paris law coefficients of different regions of Q370qENH welds are presented. The collected data serve as a valuable reference for future analyses of fatigue crack propagation problems of Q370qENH steel bridge joints.
Keywords: Q370qENH weathering steel; fatigue crack growth; butt weld; heat-affected zone (HAZ); stress ratio; fracture morphology Q370qENH weathering steel; fatigue crack growth; butt weld; heat-affected zone (HAZ); stress ratio; fracture morphology

Share and Cite

MDPI and ACS Style

Yu, Y.; Zhang, X.; Hu, C.; Liu, L.; Wang, H. Fatigue Crack Growth Performance of Q370qENH Weathering Bridge Steel and Butt Welds. Materials 2024, 17, 6015. https://doi.org/10.3390/ma17236015

AMA Style

Yu Y, Zhang X, Hu C, Liu L, Wang H. Fatigue Crack Growth Performance of Q370qENH Weathering Bridge Steel and Butt Welds. Materials. 2024; 17(23):6015. https://doi.org/10.3390/ma17236015

Chicago/Turabian Style

Yu, Yujie, Xiang Zhang, Chunjian Hu, Liangkun Liu, and Haibo Wang. 2024. "Fatigue Crack Growth Performance of Q370qENH Weathering Bridge Steel and Butt Welds" Materials 17, no. 23: 6015. https://doi.org/10.3390/ma17236015

APA Style

Yu, Y., Zhang, X., Hu, C., Liu, L., & Wang, H. (2024). Fatigue Crack Growth Performance of Q370qENH Weathering Bridge Steel and Butt Welds. Materials, 17(23), 6015. https://doi.org/10.3390/ma17236015

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop