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Fatigue crack propagation behavior of multiphase microstructure in a quenched and partitioned medium-carbon bainitic steel
| 順位 | タイトル | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| 著者 | 雑誌 | 巻 | 号 | ページ | 年 | PKVアクセス数 | |||
| 🥇 1 | Fatigue crack propagation behavior of multiphase microstructure in a quenched and partitioned medium-carbon bainitic steel | ||||||||
| Qiangguo Li, Yanan Zhang, Hong Luo | Fatigue & Fracture of Engineering Materials & Structures | 46 | 1 | 325–340 | 2023 | 290.28 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 🥈 2 | Fatigue response and AE characteristics of soft and hard composite rock containing coplanar double joints | ||||||||
| Zeyue Wang, Su Li, Hang Lin, Yifan Chen | International Journal of Fatigue | 198 | None | 108994–None | 2025 | 229.89 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 🥉 3 | Fatigue life prediction of aluminum alloy via knowledge-based machine learning | ||||||||
| Zhengheng Lian, Minjie Li, Wencong Lu | International Journal of Fatigue | 157 | None | 106716–None | 2022 | 182.92 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 4 | Creep fracture parameter C* solutions for semi-elliptical surface cracks in plates under tensile and bending loads | ||||||||
| Kai Wang, Guozhen Wang, Shantung Tu, Fuzhen Xuan | Fatigue & Fracture of Engineering Materials & Structures | 45 | 1 | 3–21 | 2022 | 173.94 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 5 | Effect of microstructure closed-pore content on the mechanical properties of flexible polyurethane foam | ||||||||
| Mohammad S. Gholami, Olivier Doutres, Noureddine Atalla | International Journal of Solids and Structures | 112 | None | 97–105 | 2017 | 168.19 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 6 | Coupled corrosion and fatigue in reinforced concrete beams: Experimental interpretation of mechanical and electrochemical synergy | ||||||||
| Vivek Vishwakarma, Sonalisa Ray | International Journal of Fatigue | 203 | None | 109318–None | 2026 | 148.7 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 7 | Theoretical model of homogenized piezoelectric materials with small non-collinear periodic cracks | ||||||||
| Jean-Marie Nianga, Driss Marhabi | Fracture and Structural Integrity | 11 | 42 | 280–292 | 2017 | 126.63 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 8 | Defect acceptability under full-scale fretting fatigue tests for railway axles | ||||||||
| M. Luke, M. Burdack, S. Moroz, I. Varfolomeev | International Journal of Fatigue | 86 | None | 34–43 | 2016 | 116.0 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 9 | A computational framework for microstructural crack propagation | ||||||||
| Robert A. Brockman, Rebecca M. Hoffman, Patrick J. Golden, William D. Musinski, Reji John | International Journal of Fatigue | 152 | None | 106397–None | 2021 | 111.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 10 | The limiting values of the Swift effect in hyperelastic-plastic materials exhibiting yield stress saturation | ||||||||
| Georgiy M. Sevastyanov | International Journal of Solids and Structures | 324 | None | 113661–None | 2026 | 109.53 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||