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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 | |||
| 261 | Experimental investigation on fatigue behaviour of glass/epoxy quasi-isotropic laminate composites under different ageing conditions | ||||||||
| N.H. Padmaraj, Kini M. Vijaya, Pai Dayananda | International Journal of Fatigue | 143 | None | 105992–None | 2021 | 47.85 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 262 | Progress in understanding of intrinsic resistance to shear-mode fatigue crack growth in metallic materials | ||||||||
| Václav Veselý, Jakub Sobek, Petr Frantík, Stanislav Seitl | International Journal of Fatigue | 89 | None | 36–42 | 2016 | 47.81 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 263 | Bending fatigue strength of aerospace quality gear steels at ambient and elevated temperatures | ||||||||
| Timothy J. Lisle, Christian P. Little, Chris J. Aylott, Brian A. Shaw | International Journal of Fatigue | 164 | None | 107125–None | 2022 | 47.75 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 264 | Low cycle fatigue damage and critical crack length affecting loss of fracture ductility | ||||||||
| Mauro Madia, Uwe Zerbst | International Journal of Fatigue | 82 | None | 89–97 | 2016 | 47.71 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 265 | Revealing and predicting fatigue crack nucleation in textured zircaloy-4 via full-field experiments and physics-informed machine learning | ||||||||
| Weifeng Wan, Xiuqi Xu, Yu Cheng, Haoyun Zhang, Xiaojun Yan | International Journal of Fatigue | 210 | None | 109673–None | 2026 | 47.68 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 266 | Corrosion fatigue behavior and mechanism of Mg-Zn-Zr-Nd alloy in protein-containing simulated body fluid | ||||||||
| Jinjin Liu, Hongyan Tang, Lili Tan, Qiang Wang, Jia Ma | International Journal of Fatigue | 203 | None | 109303–None | 2026 | 47.67 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 267 | Corrosion fatigue crack growth prediction of bridge suspender wires using Bayesian gaussian process | ||||||||
| Yafei Ma, Yu He, Guodong Wang, Lei Wang, Deuckhang Lee | International Journal of Fatigue | 168 | None | 107377–None | 2023 | 47.65 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 268 | Physics-informed deep operator networks for structural damage identification via damage function | ||||||||
| Zhiyong Zhang, Geyong Cao, Xiaojun Wang | International Journal of Fatigue | 213 | None | 109856–None | 2026 | 47.63 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 269 | Computational prediction of the fatigue behavior of additively manufactured porous metallic biomaterials | ||||||||
| R. Hedayati, H. Hosseini-Toudeshky, M. Sadighi, M. Mohammadi-Aghdam, A.A. Zadpoor | International Journal of Fatigue | 84 | None | 67–79 | 2016 | 47.63 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 270 | Characterization of the cyclic deformation behavior of simulated HAZs and other constituent microstructural regions of P91 steel weldment | ||||||||
| K. Mariappan, A. Nagesha, M. Vasudevan, A.K. Bhaduri | International Journal of Fatigue | 164 | None | 107118–None | 2022 | 47.54 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||