Author:
Tamai Hiroki,Sonoda Yoshimi
Abstract
In the civil and structural engineering field, there are so many problems regarding act of impact loading against some structures due to natural disaster. So it is important to evaluate the damage condition of them after impact loading, and to estimate the residual performance of them. This study is focused on a reinforced concrete (herein after called RC) structure such as caisson breakwater and rock-shed. In order to quantitatively evaluate the dynamic behavior and cumulative damage of RC members under low-velocity single and repeated impact loading, we conducted numerical approach by using the theory of Continuum Damage Mechanics (herein after called CDM). At the result, we clarified not only impact behavior of the members but also the relationship between cumulative kinetic energy of repeated impact loading and cumulative damage of the members. In addition, applicability limit of our model based on scalar damage modeling was clarified.
Publisher
Trans Tech Publications, Ltd.
Reference9 articles.
1. JSCE, Practical Methods for Impact Test and Analysis, Structural Engineering Series 15, 2004. [In Japanese].
2. Hiroki, T., Yoshimi, S., A numerical study on evaluation of residual strength of RC member under repeated impact load, Journal of JSCE, JSCE, 2008, Vol. 64, No. 4, pp.915-925. [In Japanese].
3. Hiroki, T., Yoshimi, S., Numerical studies on cumulative damage of RC members under repeated impact loading, Journal of Applied Mechanics and Materials, 2011, Vol. 82, pp.320-325.
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5. L.I. Knab and J.R. Clifton: Cumulative Damage of Reinforced Concrete Subjected to Repeated Impact, Cement and Concrete Research, Vol. 12, pp.359-370, (1982).
Cited by
2 articles.
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