Fatigue & Fracture of Engineering Materials & Structures - 巻 42 / 号 3
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| 著者 | 巻 | 号 | ページ | 年 | PKV | ||||
| Plastic mismatch effect on plasticity induced crack closure: Fatigue crack propagation perpendicularly across a plastically mismatched interface | |||||||||
| Xiao-Xiong Song, Yi-Bo Shang, Hui-Ji Shi, Li-Sha Niu, Zhao-Xi Wang | 42 | 3 | 597–611 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Analytical study on the mode III stress fields due to blunt notches with cracks | |||||||||
| Michele Zappalorto, Marco Salviato, Lucio Maragoni | 42 | 3 | 612–626 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Fast failure prediction of adhesively bonded structures using a coupled stress-energetic failure criterion | |||||||||
| Jérémy Le Pavic, Georgios Stamoulis, Thomas Bonnemains, David Da Silva, David Thévenet | 42 | 3 | 627–639 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Investigation of microstructure effect on fretting fatigue crack initiation using crystal plasticity | |||||||||
| Kaveh Minaii, Gholam Hossein Farrahi, Morad Karimpour, Hamid Bahai, Gholam Hossein Majzoobi | 42 | 3 | 640–650 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Statistical analysis on rolling contact fatigue in railroad axle bearing steel | |||||||||
| Rubing Guo, Guangxue Yang, Zhengyang Li, Zhiming Liu, Yujie Wei | 42 | 3 | 651–663 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Structural reliability assessment of cracked pipes: The role of probability of detection data | |||||||||
| Rodolfo Mussini, Héctor Cancela, Thomas Clarke | 42 | 3 | 664–673 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Probabilistic prediction of minimum fatigue life behaviour in α + β titanium alloys | |||||||||
| Patrick J. Golden, Ashley Whitney-Rawls, Sushant K. Jha, W. John Porter, III, Dennis Buchanan, Kartik Prasad, Vivek Chandravanshi, Vikas Kumar, Reji John | 42 | 3 | 674–685 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Effect of Laves phase on the toughness of P92 weld metals | |||||||||
| Xue Wang, Chengchao Du, Hong Liu, Hongwei Liu | 42 | 3 | 686–697 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Enhancing the high cycle fatigue life of high strength aluminum alloys for aerospace applications | |||||||||
| Lingamaneni Rama Krishna, Yarlagadda Madhavi, Thatipamula Sahithi, Dameracharla Srinivasa Rao, Vijaykumar Sharanappa Ijeri, Om Prakash, Stephen Paul Gaydos | 42 | 3 | 698–709 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||
| Fatigue life prediction for vibration isolation rubber based on parameter-optimized support vector machine model | |||||||||
| Qiaobin Liu, Wenku Shi, Zhiyong Chen | 42 | 3 | 710–718 | 2019 | 0.0 | ||||
| 平均評価: 0.0 / 5 (0 件のレビュー) | |||||||||