Fatigue properties and damage mechanism of modified PC based GFRP
Author:
Affiliation:
1. Idemitsu Kosan Co., Ltd. Advanced Technology Research Laboratories
2. Department of Mechanical and Control Engineering, Kyushu Institute of Technology
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/80/815/80_2014smm0185/_pdf
Reference12 articles.
1. Ando, M., Nomura, M., Takeda, H., Kuroshima, Y. and Nakatsuka, Y., Relationship between the effect of the modification and the damage behavior of resin/fiber interface in glass fiber reinforced polycarbonate, Journal of the Society of Materials Science, Japan, Vol. 61, No. 5 (2012a), pp. 441-446 (in Japanese).
2. Ando, M., Nakatsuka, Y., Kuroshima, Y., Nomura, M. and Takeda, H., Relation between fatigue strength property and damage mechanism in GFPC having modified resin/fiber interface, Transactions of the Japan Society of Mechanical Engineers Series A, Vol. 78, No. 789 (2012b), pp. 609-612 (in Japanese).
3. Feresenbet, E., Raghavan, D. and Holmes, G. A., The influence of silane coupling agent composition on the surface characterization of fiber and on fiber-matrix interfacial shear strength, The Journal of Adhesion, Vol.79, No.7 (2003), pp. 643-665.
4. Hamada, H., Tomari, K., Xiao, J. and Maekawa, Z., Fatigue properties of short fiber reinforced polycarbonate injection moldings, Journal of the Society of Materials Science, Japan, Vol. 43, No. 495 (1994), pp. 1525-1531 (in Japanese).
5. Ishikawa, Y., Development of polycarbonate that improved the impact resistance under low temperature and weather resistance., PLASTICS AGE , Vol. 56, No.10 (2010), pp. 46-49 (in Japanese).
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