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A practical method for assessing reinforced concrete members under impact

机译:一种评估钢筋混凝土构件的实用方法

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The effect of the loading-rate on the dynamic response of reinforced concrete members under impact loading is investigated numerically through the use of three-dimensional dynamic nonlinear finite element analysis. The package employed is capable of realistically accounting for the triaxiality and the brittle nature characterising concrete material behaviour as well as the characteristics of the problem at hand, a wave propagation problem within a highly nonlinear medium. Due to the availability of tests data, the present study focusses on investigating the effect of impact loading on the behaviour of reinforced concrete beam specimens. The numerical predictions obtained provide detailed insight into the mechanisms underlying RC structural response and offer a quantitative description of the effect of loading-rate on certain important aspects of the exhibited behaviour. Based on the numerical predictions obtained, a physical model is proposed which is capable of realistically describing the behaviour of the RC structural elements under high rates of concentrated loading. The proposed physical model links the observed shift in structural response to the localised experimentally established and/or numerically predicted behaviour with increasing rates of applied loading. Its formulation is based on the use of the Compressive Force Path method which is capable of realistically describing the behaviour of a wide range of reinforced concrete structural configurations at their ultimate limit state under both static and seismic loading conditions.
机译:通过使用三维动态非线性有限元分析,在数值上进行了数值对冲击载荷下钢筋混凝土构件的动态响应的影响。所采用的包装能够真实地占三轴性和脆性性质,表征具体材料行为以及手中的问题的特征,高度非线性介质中的波传播问题。由于测试数据的可用性,本研究侧重于调查冲击载荷对钢筋混凝土梁样本行为的影响。获得的数值预测提供了对RC结构响应的基础机制的详细洞察力,并提供了对展出行为的某些重要方面的负载率的效果的定量描述。基于所获得的数值预测,提出了一种物理模型,其能够在高浓度负荷的高速率下实地描述RC结构元件的行为。所提出的物理模型将所观察到的转变与局部实验建立的和/或数值预测行为的结构响应相连,随着应用负载的增加。其配方基于使用压缩力路径方法,该路径方法能够在静态和地震负载条件下实现在其最终极限状态下广泛的钢筋混凝土结构配置的行为。

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