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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 | |||
| 48701 | Experimental and analytical investigation for fatigue crack growth characteristics of an aero-engine fan disc | ||||||||
| Xiannian Huang, Chuanyong Chen, Haijun Xuan | International Journal of Fatigue | 148 | None | 106252–None | 2021 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48702 | Short-time fatigue-life estimation for non-stationary processes considering structural dynamics | ||||||||
| Aleš Zorman, Janko Slavič, Miha Boltežar | International Journal of Fatigue | 147 | None | 106178–None | 2021 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48703 | 天然ガスの組成変化を伴うブンゼン火炎の応答とその制御 | ||||||||
| 梅沢 修一, 石橋 卓也, 岡本 倫一, 横森 剛, 植田 利久 | 日本機械学会論文集 | 86 | 884 | 19–00432 | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48704 | Effect of Young’s modulus on fatigue crack growth | ||||||||
| M.F. Borges, F.V. Antunes, P.A. Prates, R. Branco, T. Vojtek | International Journal of Fatigue | 132 | None | 105375–None | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48705 | Competing mechanisms of particle fracture, decohesion and slip-driven fatigue crack nucleation in a PM nickel superalloy | ||||||||
| Alexander Bergsmo, Fionn P.E. Dunne | International Journal of Fatigue | 135 | None | 105573–None | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48706 | Effect of interface diffusion on low-cycle fatigue behaviors of MCrAlY coated single crystal superalloys | ||||||||
| Duoqi Shi, Jianan Song, Hongyu Qi, Shaolin Li, Xiaoguang Yang | International Journal of Fatigue | 137 | None | 105660–None | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48707 | Atomic-level structural identification for prediction of localized shear deformation in metallic glasses | ||||||||
| Ronghao Shi, Pan Xiao, Rong Yang, Yilong Bai | International Journal of Solids and Structures | 191 | None | 363–369 | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48708 | A numerical framework to predict the fatigue life of lattice structures built by additive manufacturing | ||||||||
| Alexis Burr, Théo Persenot, Pierre-Thomas Doutre, Jean-Yves Buffiere, Rémy Dendievel | International Journal of Fatigue | 139 | None | 105769–None | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48709 | A high-cycle fatigue energy dissipation accurate estimation method considering natural convection and radiation heat transfer | ||||||||
| Wenping Yang, Xinglin Guo, Qiang Guo | International Journal of Fatigue | 138 | None | 105717–None | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48710 | The low-cycle fatigue property, damage mechanism and life prediction of compacted graphite iron: Influence of strain rate | ||||||||
| C.L. Zou, J.C. Pang, L.J. Chen, S.X. Li, Z.F. Zhang | International Journal of Fatigue | 135 | None | 105576–None | 2020 | 3.77 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||