Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Xu, B.X.
Wang, X.M.
and
Yue, Z.F.
2007.
Indentation behavior of polycrystalline copper under fatigue-peak overloading.
Journal of Materials Research,
Vol. 22,
Issue. 6,
p.
1585.
Xu, B.X.
Yue, Z.F.
and
Wang, J.
2007.
Indentation fatigue behaviour of polycrystalline copper.
Mechanics of Materials,
Vol. 39,
Issue. 12,
p.
1066.
Liou, Jeng Luen
Wei, Pal Jen
Liang, Wen Long
Ai, Chi Fong
and
Lin, Jen Fin
2008.
Analyses of the work required to delaminate a coating film from a substrate under oscillating load conditions and the film-substrate contact behavior after delamination.
Journal of Applied Physics,
Vol. 103,
Issue. 10,
Wei, Pal Jen
Wang, Yun Che
and
Lin, Jen Fin
2008.
Retardation of cyclic indentation creep exhibited in metal alloys.
Journal of Materials Research,
Vol. 23,
Issue. 10,
p.
2650.
Wei, Pal Jen
Liang, Wen Long
Ai, Chi Fong
and
Lin, Jen Fin
2009.
A new method for determining the strain energy release rate of an interface via force–depth data of nanoindentation tests.
Nanotechnology,
Vol. 20,
Issue. 2,
p.
025701.
Han, Chang-Fu
Wu, Bo-Hsiung
Huang, Chao-Yu
and
Lin, Jen-Fin
2009.
Determination of the strain energy release rate for C/a-Si composite film produced in nanoindentation tests.
Journal of Applied Physics,
Vol. 105,
Issue. 2,
Xu, B.X.
Yue, Z.F.
and
Chen, X.
2009.
Numerical investigation of indentation fatigue on polycrystalline copper.
Journal of Materials Research,
Vol. 24,
Issue. 3,
p.
1007.
Han, Chang-Fu
Huang, Chao-Yu
Wu, Bo-Hsiung
and
Lin, Jen-Fin
2009.
The nanoindentation applied to predict the interface delamination for the C/amorphous Si composite film.
Journal of Applied Physics,
Vol. 106,
Issue. 8,
Cavaliere, P.
2010.
Cyclic deformation of ultra-fine and nanocrystalline metals through nanoindentation: similarities with crack propagation.
Procedia Engineering,
Vol. 2,
Issue. 1,
p.
213.
Yonezu, Akio
Xu, Baoxing
and
Chen, Xi
2010.
An experimental methodology for characterizing fracture of hard thin films under cyclic contact loading.
Thin Solid Films,
Vol. 518,
Issue. 8,
p.
2082.
Zhao, Bin
Xu, Baoxing
and
Yue, Zhufeng
2010.
Indentation creep-fatigue test on aluminum alloy 2A12.
Materials Science and Engineering: A,
Vol. 527,
Issue. 16-17,
p.
4519.
Wei, Pal Jen
Chio, Sheng Bin
Liang, Wen Long
and
Lin, Jen Fin
2011.
Determining buckling strain energy release rate through indentation-induced delamination.
Thin Solid Films,
Vol. 519,
Issue. 15,
p.
4889.
Nguyen, Huu Hung
Wei, Pal Jen
and
Lin, Jen Fin
2011.
Electric contact resistance for monitoring nanoindentation-induced delamination.
Advances in Natural Sciences: Nanoscience and Nanotechnology,
Vol. 2,
Issue. 1,
p.
015007.
Yang, Fuqian
and
Li, James C.M.
2013.
Impression test—A review.
Materials Science and Engineering: R: Reports,
Vol. 74,
Issue. 8,
p.
233.
Chicot, D.
Tilkin, K.
Jankowski, K.
and
Wymysłowski, A.
2013.
Reliability analysis of solder joints due to creep and fatigue in microelectronic packaging using microindentation technique.
Microelectronics Reliability,
Vol. 53,
Issue. 5,
p.
761.
Jia, Yunfei
Xuan, Fu-zhen
Chen, Xiaoping
and
Yang, Fuqian
2014.
Finite element analysis of the cyclic indentation of bilayer enamel.
Journal of Physics D: Applied Physics,
Vol. 47,
Issue. 17,
p.
175401.
Yonezu, Akio
Kusano, Ryota
Hiyoshi, Tomohiro
and
Chen, Xi
2015.
A Method to Estimate Residual Stress in Austenitic Stainless Steel Using a Microindentation Test.
Journal of Materials Engineering and Performance,
Vol. 24,
Issue. 1,
p.
362.
Toyama, Hidehiko
Niwa, Michihiro
Xu, Jun
and
Yonezu, Akio
2015.
Failure assessment of a hard brittle coating on a ductile substrate subjected to cyclic contact loading.
Engineering Failure Analysis,
Vol. 57,
Issue. ,
p.
118.
Toyama, Hidehiko
Kishida, Hiroshi
and
Yonezu, Akio
2018.
Characterization of fatigue crack growth of concrete mortar under cyclic indentation loading.
Engineering Failure Analysis,
Vol. 83,
Issue. ,
p.
156.
Xu, Baoxing
Chen, Xi
and
Yue, Zhufeng
2018.
Handbook of Nonlocal Continuum Mechanics for Materials and Structures.
p.
1.