Prediction of tensile strength of injection-molded GF/PA considering effects of reinforcement fiber diameter and interfacial properties

Author:

SHIRAKI Ryoji1,OKAMOTO Takeshi1,OZAWA Kento1,KIM Tae Sung1,HIRAYAMA Norio2,TANIGUCHI Norihiko3,NISHIWAKI Tsuyoshi3,HOSOI Atsushi4,KAWADA Hiroyuki45

Affiliation:

1. Department of Applied Mechanics, Graduate School of Fundamental Science and Engineering, Waseda University

2. Department of Mechanical Engineering, College of Industrial Technology, Nihon University

3. Institute of Sport Science, ASICS Corporation

4. Department of Applied Mechanics and Aerospace Engineering, Fuculty of Science and Enginerring, Waseda University

5. The Kagami Memorial Research Institute for Materials Science and Technology, Waseda University

Publisher

Japan Society of Mechanical Engineers

Reference30 articles.

1. Bernasconi, A., Davoli, P., Basile, A. and Filippi, A., Effect of fiber orientation on the fatigue behavior of a short glass fiber reinforced polyamide-6, International Journal of Fatigue, Vol.29 (2007), pp.199-208.

2. De Monte, M., Moosbrugger, E. and Quaresimin, M., Influence of temperature and thickness on the off-axis behavior of short glass fibre reinforced polyamide 6.6 - Quasi-static loading, Composites: Part A, Vol.41 (2010), pp.859-871.

3. Désarmot, G. and Favre, J. P., Advances in pull-out testing and data analysis, Composite Science and Technology, Vol.42 (1991), pp.151-187.

4. Fukuda, H. and Chou, T., A probability theory of the strength of short-fibre composites with variable fibre length and orientation, Journal of Materials Science, Vol.17 (1982), pp.1003-1011.

5. Gu, X.H., Young, R.J. and Day, R.J., Deformation micromechanics in model carbon fiber-reinforced composites, Journal of Materials Science, Vol.30 (1995), pp.1409-1419.

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