Academic Journal
Q2Fatigue and Fracture of Engineering Materials and Structures
About Fatigue and Fracture of Engineering Materials and Structures
Fatigue and Fracture of Engineering Materials and Structures is a scholarly journal published by Wiley-Blackwell Publishing Ltd. SCImago 2025 lists it in Q2, with an SJR of 0.648 and H-index of 108.
Coverage: 1979-2026. Research categories: Materials Science (miscellaneous) (Q2); Mechanical Engineering (Q2); Mechanics of Materials (Q2).
Verified field sources
- Editor(s): Prof. Youshi Hong (Editor) — Official source; checked 2026-10-03. Editorial leadership listed under Edited By on the Wiley journal homepage; publisher role retained without assuming Editor-in-Chief.
- Journal Impact Factor: 3.2 — Official source; checked 2026-10-03. Journal Impact Factor and reporting year from Wiley Journal Metrics, distinct from CiteScore and Journal Citation Indicator.
- Impact Factor year: 2025 — Official source; checked 2026-10-03. Journal Impact Factor and reporting year from Wiley Journal Metrics, distinct from CiteScore and Journal Citation Indicator.
Source-backed journal facts
Topics in published research
Fatigue and fracture mechanics; High Temperature Alloys and Creep; Mechanical Behavior of Composites; Mechanical stress and fatigue analysis; Non-Destructive Testing Techniques; Microstructure and Mechanical Properties of Steels.
OpenAlex classifies topics from published works. These topics are not the publisher’s official aims and scope.
Reported open-access list prices
3,860.00 USD; 3,230.00 EUR; 2,580.00 GBP
APC list prices reported by OpenAlex, which obtains this information from DOAJ. Confirm current charges, taxes, waivers and eligibility with the publisher; this is not a fee quotation.
Source: OpenAlex source record. Retrieved 2026-10-03. Source record updated 2026-10-02. OpenAlex metrics are different from SCImago metrics and the Clarivate Journal Impact Factor.
Journal Metrics
Quartile, SJR and the listed SCImago H-index use the 2025 imported SCImago dataset. A quartile may vary by subject category. Values without a source or reporting year are unverified historical entries. Verify the current Journal Impact Factor with Clarivate or the publisher before using it.
Aims & Scope
The publisher’s official aims and scope have not yet been verified for this profile. Use the journal website to check subject fit and accepted article types before submitting.
Recent Research Articles
Latest publications matched automatically by ISSN.
Deterministic Assessment of Solution Sensitivity for Fatigue Crack Growth Path Validation Benchmarking
Adrian Loghin, David Berrios
2026-10-02 · DOI: 10.1111/ffe.70477Influence of Temperature Dependent Properties on Tunneling Cracks in Multi‐Layer Polymer Thin Films
Ibrahim Elsayed, Gilles Dusserre, Sjoerd van der Veen, Marie Dubaa et al.
2026-10-02 · DOI: 10.1111/ffe.70475Physical Decomposition of the Critical Fracture Load P c in Ductile‐To‐Brittle Transition Toughness Testing: Toward Integrated Statistical‐Deterministic Characterization
Toshiyuki Meshii
2026-10-02 · DOI: 10.1111/ffe.70461Effects of Specimen Heights on Fracture Process of Concrete Using DIC Technique
Yangyang Yin, Kai Liang, Shaowei Hu, Shunxiang Wang et al.
2026-10-02 · DOI: 10.1111/ffe.70396Nonlinear Rock Creep Constitutive Model Based on Energy Entropy Increase Theory
Bin Wang, Shutian Zhao, Wenbo Liu
2026-09-30 · DOI: 10.1111/ffe.70481A Practical Application of Gronwall's Inequality to the Crack Propagation Problem
Claudio R. Ávila da Silva Junior
2026-09-30 · DOI: 10.1111/ffe.70487Quantitative Scale‐Invariant Analysis of Fracture Surface Roughness in Very‐High‐Cycle Fatigue of LPBF‐Manufactured 316L Stainless Steel
V. A. Oborin, M. V. Bannikov, B. S. Voloskov, J. V. Bondareva et al.
2026-09-30 · DOI: 10.1111/ffe.70480Study on Ring Shear Creep Mechanical Properties and Creep Model of Carbonaceous Shale With Different Water Content
Qingli Luo, Zhangyin Dai, Hongwei Bai, Houya Fan et al.
2026-09-29 · DOI: 10.1111/ffe.70464Fatigue Failure Mechanism of Low‐Frequency Vibration‐Assisted Self‐Piercing Riveted CFRP/Aluminum Structures
Cong Shao, Jun Lin, Yanjin Guan, Zhuoyi Li et al.
2026-09-29 · DOI: 10.1111/ffe.70473Comparative Study of the Influence of PPS, PAEK, and PEEK Thermoplastic Matrices on the Fatigue Mechanical Behavior of Carbon Fiber Reinforced Composites
Dijan Vinicius Osti de Moraes, Larissa Stiven Montagna, Rodrigo Magnabosco, Mirabel Cerqueira Rezende et al.
2026-09-29 · DOI: 10.1111/ffe.70404A Generalized Temperature‐Modified Smith–Watson–Topper Model for Low‐Cycle Fatigue Life Prediction Over a Wide Temperature Range
Guoxi Jing, Xinghao Yang, Teng Ma, Yinpeng Han et al.
2026-09-29 · DOI: 10.1111/ffe.70468Approximately Right Versus Exactly Wrong—Insights and Overview
Shan‐Tung Tu, Wanlin Guo, Hongbiao Dong, Ali Mehmanparast et al.
2026-09-25 · DOI: 10.1111/ffe.70467Fracture Behavior of Modified Asphalt Mixtures Under Varying Temperature and Notch Depth: Experimental Investigation and XFEM Simulation
Esma Bakir, Erkut Yalcin, Muhammed Atar, Mehmet Yilmaz et al.
2026-09-25 · DOI: 10.1111/ffe.70474Effects of a Weak Interlayer Zone on the Tensile Mechanical Properties and Failure Characteristics of Rock
Yueming Kang, Deyi Jiang, Jing Bi, Lin Ning et al.
2026-09-24 · DOI: 10.1111/ffe.70455Prediction of Crack Propagation Behavior in Silicon Carbide Ceramics Using Artificial Neural Networks
Yafeng Shu, Shaohui Wang, Xiaorong Zhong, Canglong Wang et al.
2026-09-24 · DOI: 10.1111/ffe.70472Physics‐Informed Convolutional Neural Network for Predicting Fatigue Life of Rubber Composites Under Different Strain Ratios
Jingwei Xu, Yuxin Yang, Xiangnan Liu
2026-09-23 · DOI: 10.1111/ffe.70471Very‐High‐Cycle Fatigue Behavior of Railway Axle Steel Subjected to Induction Hardening and Press Fitting
Makoto Akama, Masahiro Tsukahara, Benjamin Guennec, Shinya Matsuda et al.
2026-09-23 · DOI: 10.1111/ffe.70423High Strength Steel Fatigue Crack Growth Database for Offshore Renewable Energy Applications
Machar Devine, Moray Stiven, Madison Asbury, Ali Mehmanparast et al.
2026-09-22 · DOI: 10.1111/ffe.70457Fatigue Life Evaluation Using the Damage‐Equivalent Strain for 7075‐T6 Aluminum Alloy Under Bending and Torsion Bending Vibrations
Junji Sakamoto, Naoya Tada, Takeshi Uemori
2026-09-21 · DOI: 10.1111/ffe.70466Reviews
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Version History
October 2, 2026 at 9:10 pm
October 2, 2026