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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 | |||
| 101 | Complementary energy principle for elastodynamics: Free of volumetric locking | ||||||||
| Li Wang, Zhong-Rong Lu, Zuo-Qiu Liu | International Journal of Solids and Structures | 120 | None | 103–114 | 2017 | 59.08 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 102 | Nonlocal approach to fatigue analysis of a welded bicycle frame joint | ||||||||
| Tomasz Tomaszewski | Fatigue & Fracture of Engineering Materials & Structures | 46 | 9 | 3179–3192 | 2023 | 59.05 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 103 | Characterization of anisotropic behaviour of ZK60 extrusion under stress-control condition and notes on fatigue modeling | ||||||||
| A.H. Pahlevanpour, S.B. Behravesh, S. Adibnazari, H. Jahed | International Journal of Fatigue | 127 | None | 101–109 | 2019 | 59.01 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 104 | The influence of the stress state type and scale factor on the relationship between the acoustic quality factor and the residual strength of gypsum rocks in fatigue tests | ||||||||
| Aleksandr Sergeevitсh Voznesenskii, Yaroslav Olegovich Kutkin, Maksim Nikolaevich Krasilov, Aleksandr Aleksandrovich Komissarov | International Journal of Fatigue | 84 | None | 53–58 | 2016 | 58.86 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 105 | Experimental characterization of fatigue life of ZrB2-SiC based ultra high-temperature ceramic matrix composites | ||||||||
| T. Reimer, G.D. Di Martino, D. Sciti, L. Zoli, N. Azurmendi | International Journal of Fatigue | 168 | None | 107389–None | 2023 | 58.76 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 106 | Mixed-mode fatigue crack propagation based on the Virtual Element Method and the material configurational force | ||||||||
| Yujie Chen, Zhenjie Zhang, Dexin Sun, Umberto Perego, Yifeng Hu | International Journal of Fatigue | 211 | None | 109713–None | 2026 | 58.74 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 107 | Multiaxial fatigue testing of welded steel joints under frequency- and phase-shifted non-proportional loading | ||||||||
| N.B. Winther, M.L. Larsen, S.M. Jensen, J.H. Andreasen, J. Schjødt-Thomsen | International Journal of Fatigue | 209 | None | 109580–None | 2026 | 58.41 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 108 | In-situ investigations of structural changes during cyclic loading of aluminium by high resolution reciprocal space mapping | ||||||||
| Annika M. Diederichs, Felix Thiel, Ulrich Lienert, Wolfgang Pantleon | International Journal of Fatigue | 117 | None | 206–216 | 2018 | 58.04 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 109 | Fatigue crack growth mechanisms in similar and dissimilar aluminum friction stir welds: Residual stress, microstructure, and microhardness effects | ||||||||
| Xiangbin Wang, Anthony G. Spangenberger, Adrian DeWald, Diana A. Lados | International Journal of Fatigue | 203 | None | 109287–None | 2026 | 57.91 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 110 | Review of the fatigue strength of welded joints based on the notch stress intensity factor and SED approaches | ||||||||
| C. Fischer, W. Fricke, C.M. Rizzo | International Journal of Fatigue | 84 | None | 59–66 | 2016 | 57.88 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||