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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



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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

2023, vol.166 2023, vol.167, no.Pt.A 2023, vol.167, no.Pt.B 2023, vol.168 2023, vol.169 2023, vol.170
2023, vol.171 2023, vol.172 2023, vol.173 2023, vol.174 2023, vol.175 2023, vol.176
2023, vol.177

题名作者出版年年卷期
Effects of martensitic phase transformation on fatigue indicator parameters determined by a crystal plasticity modelMoore J.A.; Rusch J.P.; Nezhad P.S.; Manchiraju S.; Erdeniz D.20232023, vol.168
Direct observation of three-dimensional short fatigue crack closure behavior in Ti-6Al-4V alloy using ultra-high-resolution X-ray microtomographyTubei V.; Toda H.; Ketanond W.; Fujihara H.; Takakuwa O.; Takeuchi A.; Uesugi M.20232023, vol.168
Vibration fatigue life prediction method for needled C/SiC composite based on frequency response curve with low signal strengthWu S.-D.; Shang D.-G.; Hou G.; Hao G.-C.; Shi F.-T.; Zuo L.-X.; Qu L.-F.20232023, vol.168
A short evaluation of simultaneous corrosion fretting fatigue behaviors in piston aluminium-silicon alloys considering effects of nano-particles and heat-treatingParast M.S.A.; Azadi M.20232023, vol.168
Cracking of S355J2+N steel in the high-cycle and very-high-cycle fatigue regimesSwacha P.; Lipski A.20232023, vol.168
Fatigue strength improvement in roller chain due to press fitting between pin and outer plate and between bush and inner plateSano Y.; Miyagi A.; Tottori H.; Noda N.-A.; Saito R.20232023, vol.168
Thermomechanical testing and modelling of railway wheel steelLandstrom E.V.; Vernersson T.; Steyn E.; Ahlstrom J.20232023, vol.168
Microscale fatigue mechanisms in high silicon alloyed nodular cast ironGebhardt C.; Zhang J.; Bezold A.; Broeckmann C.20232023, vol.168
Vibration fatigue properties of laminated and 2.5D woven composites: A comparative studyWang Y.; Jiao J.; Zhang Q.; He Y.; Gong Y.; Hu N.20232023, vol.168
Designing a gradient structure in a Ni-based superalloy to improve fretting fatigue resistance at elevated temperatures through an ultrasonic surface rolling processYang J.; Liu D.; Fan K.; Liu Y.; Jia T.; Zhang H.; Ren Z.; Xu X.; Ye C.20232023, vol.168
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