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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 | |||
| 48371 | Enhancing fatigue resistance of polyether-based polyurethanes via targeted modulation of microphase-separated structure | ||||||||
| Chenglong Tian, Tiancheng Dai, Lin Tang, Hecheng Wu, Hong Tan | International Journal of Fatigue | 211 | None | 109724–None | 2026 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48372 | Correction: Electrolyte–surface synergy in biomass-derived carbon electrodes for supercapacitors | ||||||||
| P. V. Subhanjaneyulu, Santosh Kumar Sahu, P. S. Rama Sreekanth | Journal of Materials Science | 61 | 27 | 19911–19911 | 2026 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48373 | Electrospun cellulose acetate nanofiber-regulated polydimethylsiloxane/carbon nanotube nanocomposites for a high-performance flexible strain sensor | ||||||||
| Chenzhuo Wei, Yanting Niu, Juqing Cui | Journal of Materials Science | 61 | 27 | 19586–19601 | 2026 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48374 | Study on Interfacial Fracture Mechanism and Properties of Carbon Fiber Reinforced Composites Under Transverse Tensile Loading | ||||||||
| Yu Li, Zhengwei Yang | Fatigue & Fracture of Engineering Materials & Structures | 49 | 1 | 244–256 | 2026 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48375 | Experimental investigation on the initiation and propagation of corrosion fatigue cracks in EA4T axle steel treated by ultrasonic surface rolling | ||||||||
| Dongdong Ji, Jiwang Zhang, Kaixin Su | Journal of Materials Science | 60 | 1 | 604–624 | 2025 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48376 | A Plastic Damage Model With Mixed Isotropic–Kinematic Hardening for Low-Cycle Fatigue in 7020 Aluminum | ||||||||
| Alireza Daneshyar, Dorina Siebert, Christina Radlbeck, Stefan Kollmannsberger | Fatigue & Fracture of Engineering Materials & Structures | 48 | 6 | 2649–2668 | 2025 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48377 | Machine Learning Models to Predict the Static Failure of Double-Lap Shear Bolted Connections | ||||||||
| H. Almuhanna, G. Torelli, L. Susmel | Fatigue & Fracture of Engineering Materials & Structures | 48 | 9 | 4041–4055 | 2025 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48378 | On the Relative Significance of Roughness, Printing Defects and Microstructure on the Fatigue Behavior of Electron Beam Melted Ti-6Al-4V | ||||||||
| Marcos Antonio Bergant, Sergio Raúl Soria, Raúl Ignacio Bustos, Hugo Ramón Soul, Alejandro Andrés Yawny | Fatigue & Fracture of Engineering Materials & Structures | 48 | 4 | 1647–1666 | 2025 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48379 | Dynamic Deep Learning to Predict Mechanical Properties of High-Strength Low-Alloy Steels | ||||||||
| Yang Cao, Siwei Wu, Zhenyu Liu | Metallurgical and Materials Transactions A | 56 | 1 | 168–179 | 2025 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||
| 48380 | Fatigue Behavior Up to Very High Cycle Regime of Laser Beam Welded Ti60 Joints | ||||||||
| Lisha Ren, Yao Chen, Guangpei Xu, Fei Li, Qiaoling Wang, Jie Zhou | Fatigue & Fracture of Engineering Materials & Structures | 48 | 5 | 2132–2148 | 2025 | 0.96 | |||
| 平均評価: / 5 ( 件のレビュー) | |||||||||