中国机械工程学会生产工程分会知识服务平台

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

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
Fatigue crack growth in polysilicon microstructures subjected to multi-axial loading: A Poisson-Voronoi-based finite element analysisRui Xu; Kyriakos Komvopoulos20232023, vol.177
An equivalent strain energy density model for fatigue life prediction under large compressive mean stressFeinong Gao; Lijing Xie; Tongyu Liu; Bowen Song; Siqin Pang; Xibin Wang20232023, vol.177
Fatigue limit prediction of cracked and notched specimens related to grain sizeChunguo Zhang; Shuangge Yang; Yuanzhe Dong; Shengyong Mu; Hongchang Li; Jianlong Zhang20232023, vol.177
Study on the composite strengthening with laser shock processing and ultrasonic extrusion strengthening for small hole componentsYinfang Jiang; Yangyang Wang; Jianhua Sun; Guoqing Wu; Wenfan Jiang; Xiancheng Liu; Xin Li20232023, vol.177
Experimental and numerical study of the compressive fatigue behavior of a Ti6Al4V mapped rhombioidal dodecahedral structure fabricated by electron beam meltingBoning Yu; Yuming Li; Boussad Abbes; Shujun Li; Baoyi Yu20232023, vol.177
Local MIL-HDBK-5D equivalent stress based fatigue assessment of the gusset welded joint improved by Portable Pneumatic Needle-Peening treatmentPeiyuan Dai; Naoki Osawa; Sherif Rashed; Donghui Ma; Jun Okada; Masahito Honnami20232023, vol.177
Predicting fatigue crack growth metrics from fractographs: Towards fractography by computer visionKatelyn Jones; William D. Musinski; Adam L. Pilchak; Reji John; Paul A. Shade; Anthony D. Rollett; Elizabeth A. Holm f20232023, vol.177
Quantitative analysis of oxidative aging effects on the fatigue resistance of asphalt mixtures based on the simplified viscoelastic continuum damage (S-VECD) modelXingyu Chen; Yuhong Wang; Yong Wen; Huailei Cheng; Gengren Hao; Jingbo Wang20232023, vol.177
Research on low cycle fatigue damage and macroscopic anisotropic constitutive model of Ni-based single crystal superalloy at different temperaturesJundong Wang; Leike Yang; Hao Lu; Zhixun Wen; Tianyu Liu; Qian Yin; Zhufeng Yue20232023, vol.177
Four-dimensional microstructurally small fatigue crack growth in cyclically loaded nickel superalloy specimenDavid B. Menasche; Paul A. Shade; Peter Kenesei; Jun-Sang Park; William D. Musinski20232023, vol.177
123456