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期刊


ISSN0142-1123
刊名International Journal of Fatigue
参考译名国际疲劳杂志
收藏年代1998~2023



全部

1998 1999 2000 2001 2002 2003
2004 2005 2006 2007 2008 2009
2010 2011 2012 2013 2014 2015
2016 2017 2018 2019 2020 2021
2022 2023

2004, vol.26, no.1 2004, vol.26, no.10 2004, vol.26, no.11 2004, vol.26, no.12 2004, vol.26, no.2 2004, vol.26, no.3
2004, vol.26, no.4 2004, vol.26, no.5 2004, vol.26, no.6 2004, vol.26, no.7 2004, vol.26, no.8 2004, vol.26, no.9

题名作者出版年年卷期
Prolonging fatigue life of a damaged steel by annealingBaiping Du; Weidou Zhu; Baotian Ma; Nian Li20042004, vol.26, no.9
Effect of microstructure on fretting fatigue and sliding wear of highly workable titanium alloy, Ti-4.5Al-3V-2Mo-2FeJ. Takeda; M. Niinomi; T. Akahori; Gunawarman20042004, vol.26, no.9
Fatigue life assessment for welded structures without initial defects: an algorithm for predicting fatigue crack growth from a sound siteMasahiro Toyosada; Koji Gotoh; Toshio Niwa20042004, vol.26, no.9
Fatigue crack propagation for a through thickness crack: a crack propagation law considering cyclic plasticity near the crack tipMasahiro Toyosada; Koji Gotoh; Toshio Niwa20042004, vol.26, no.9
The influence of surface enhancement by low plasticity burnishing on the corrosion fatigue performance of AA7075-T6Paul S. Prevey; John T. Cammett20042004, vol.26, no.9
Fatigue behavior of arc melted Ti-13Nb-13Zr alloyC. A. R. P. Baptista; S. G. Schneider; E. B. Taddei; H. M. da Silva20042004, vol.26, no.9
The effect of inclusions on the fatigue behavior of fine-grained high strength 42CrMoVNb steelZ. G. Yang; G. Yao; G. Y. Li; S. X. Li; Z. M. Chu; W. J. Hui; H. Dong; Y. Q. Weng20042004, vol.26, no.9
Modeling spatial strain gradient effects in thermo-mechanical fatigue of copper microstructuresRaghuram V. Pucha; Gnyaneshwar Ramakrishna; Saketh Mahalingam; Suresh K. Sitaraman20042004, vol.26, no.9
Effect of mean stress on the stress-controlled fatigue of a short E-glass fiber reinforced polyamide-6,6P. K. Mallick; Yuanxin Zhou20042004, vol.26, no.9
A numerical study of transient fatigue crack growth by use of an irreversible cohesive zone modelT. Siegmund20042004, vol.26, no.9
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