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Nine papers about fatigue modelling of short fiber composite

Recently, we have published a series of nine papers about modelling fatigue and damage in short fiber composites.  Together, they provide a complete description of modelling of such materials including wavy fiber composites; starting from appropriate homogenization method to component level fatigue simulation. Discussion and feedback on the papers is welcome.

If you would like copies of the paper or would like further information, please feel free to write to atulatj@gmail.com or atuljain@usc.edu .

 

The list of papers (in order of suggested reading) is given below:

1.       Jain, A., Verpoest, I., Hack, M., Lomov, S., Adam, L., Van Paepegem W., Fatigue life simulation on fiber reinforced composites - Overview and methods of analysis for the automotive industry SAE Int. J. Mater. Manuf. April 2012 5 205-214; doi 10.4271/2012-01-0730

2.       Jain, A., Lomov, S.V., Abdin, Y., Verpoest, I., Van Paepegem, W., Pseudo-grain discretization and full Mori-Tanaka formulation for random heterogeneous media: Predictive abilities for stresses in individual inclusion and matrix Composites Science and Technology. 87(2013): p. 86-93 doi:10.1016/j.compscitech.2013.08.009 (Impact Factor: 3.569, SCI subject category Materials Science, Composites, rank: 1/24)

3.       Abdin, Y., Lomov, SV., Jain, A., Van Lenthe, H., Verpoest, I., Geometrical characterization & micro-structural modelling of short steel fiber composites. Composites: Part A 67(2014): p. 171-180; doi: doi:10.1016/j.compositesa.2014.08.025 (Impact Factor: 3.071, SCI subject category Materials Science, Composites, rank: 3/24)

4.       Abdin Y., Lomov S. V., Jain A., Verpoest I. Mean-field based micro-mechanical modeling of short wavy fiber reinforced composites Accepted in Composites: Part A http://dx.doi.org/10.1016/j.compositesa.2016.03.022. (Impact Factor: 3.071, SCI subject category Materials Science, Composites, rank: 3/24)

5.       Jain, A., Lomov, S. V., Abdin, Y., Van Paepegem, W., Verpoest, I., Effective anisotropic properties of inclusions with debonded interface for Eshelby-based models. Composites Structures 131(2015):p. 692-706, doi:doi:10.1016/j.compstruct.2015.06.007 (Impact Factor: 3.321, SCI subject category Materials Science, Composites, rank:2/24)

6.       Jain, A., Lomov, S. V., Abdin, Y., Van Paepegem, W., Verpoest, I., Non-symmetric stiffness tensor prediction by the Mori-Tanaka scheme - Comments on the article "Effective anisotropic stiffness of inclusions with debonded interface for Eshelby-based models, Comp. Structures 131 (2015) 692-706. Composites Structures 134(2015): p. 1118-1119, http://dx.doi.org/10.1016/j.compstruct.2015.08.140 (Impact Factor: 3.321, SCI subject category Materials Science, Composites, rank:2/24)

7.       Jain, A.,Veas, J. M., Straesser, S., Van Paepegem, W., Verpoest, I., Lomov S.V., The Master SN curve approach – A hybrid multi-scale fatigue simulation of short fiber reinforced composites. Accepted in Composites: Part A doi:10.1016/j.compositesa.2015.11.038 (Impact Factor: 3.071, SCI subject category Materials Science, Composites, rank: 3/24)

8.       Jain, A.,Van Paepegem, W., Verpoest, I., Lomov S.V., A feasibility study of the Master SN curve approach for short fiber reinforced composites.2016;91:264–74, International Journal of Fatigue, doi:10.1016/j.ijfatigue.2016.06.015 (Impact Factor: 2.162, SCI subject category Mechanical, rank: 24/131)

9.       Jain A., Van Paepegem, W., Verpoest, I., Lomov, SV; A statistical treatment of the loss of stiffness during cyclic loading for short fiber reinforced injection molded composites Accepted for publication in Composites Part B Engineering, 10.1016/j.compositesb.2016.08.002 (Impact Factor: 3.853, SCI Materials Science, Composites, rank: 3/24)

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