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Softening coefficient of reinforced concrete elements subjected to three-dimensional loads

机译:三维荷载下钢筋混凝土构件的软化系数

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Reinforced concrete structures are prone to fail under the effect of complex three-dimensional loading conditions. Accurate constitutive models for concrete under the effect of triaxial stresses are therefore necessary in order to predict the proper response. A strong interaction between in-plane and out-of-plane shear loads has been observed in experimental tests of concrete structures. This paper presents the derivation of concrete constitutive laws under the effect of triaxial stresses, in particular the softening coefficient, using the results of large-scale tests on representative concrete panels. The experimental testing of eight full-scale panel specimens is briefly described and the results are then used to derive analytical expressions for the softening coefficient under the effect of bi-directional shear. Finally, existing membrane shear theories are modified to take into consideration the effect of applied out-of-plane shear. The response of the tested panels proved to be accurately predicted using the new theory.
机译:在复杂的三维载荷条件下,钢筋混凝土结构易于失效。因此,为了预测适当的响应,需要在三轴应力作用下的混凝土精确本构模型。在混凝土结构的实验测试中,观察到了平面内和平面外剪切载荷之间的强相互作用。本文通过对代表性混凝土面板进行大规模试验的结果,介绍了在三轴应力(特别是软化系数)作用下的混凝土本构定律的推导。简要描述了八个全尺寸面板样本的实验测试,然后将结果用于导出双向剪切作用下的软化系数的解析表达式。最后,对现有的膜剪切理论进行了修改,以考虑施加的面外剪切的影响。事实证明,使用新理论可以准确预测被测面板的响应。

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