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Correlation between shear and normal strength for brittle reinforced concrete member considering internal stress condition of concrete

机译:考虑混凝土内部应力条件的脆性钢筋混凝土构件的抗剪强度与法向强度的相关性

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Formulas used to predict shear strength of reinforced concrete in different standards do not always correspond to each other due to the complexity of the shear transfer mechanism. Currently there is no generally accepted method of shear strength pridiction, however, traditionally, shear strength anticipation of a structural concrete elements is performed differently on members with or without shear reinforcement. These empirical approches tend to predict the shear strength too conservatively; alternatively, shear strength of concrete can be easily predicted by Mohr-Coulomb theory. In case of high-axial load and low shear reinforcement, the strength is likely to be determined by the concrete's shear crack. Therefore, a method to predict the strength of concrete with Mohr-circle has been proposed but the circles crossed the boundary and could not evaluate the strength correctly. Mohr circle can be used for prediction of diagonal tension failure strength but the circle cannot be evaluated. In this paper, Mohr circles were investigated considering all steps of cyclic loading until shear crack occurred. It also investigates a correlation between shear strength and normal strength through recognition of the Mohr-Coulomb failure criteria for each specimen.
机译:由于剪切传递机制的复杂性,在不同标准中用于预测钢筋混凝土抗剪强度的公式并不总是相互对应。当前没有普遍接受的抗剪强度预测方法,但是,传统上,对结构混凝土构件的抗剪强度的预测是在具有或不具有抗剪增强的构件上进行的。这些经验方法倾向于过于保守地预测抗剪强度。另外,可以通过Mohr-Coulomb理论轻松预测混凝土的抗剪强度。在高轴向载荷和低剪切钢筋的情况下,强度很可能取决于混凝土的剪切裂缝。因此,提出了一种用莫尔圆预测混凝土强度的方法,但是圆越过边界并且不能正确地评估强度。莫尔圆可用于预测对角拉伸破坏强度,但无法评估该圆。在本文中,考虑了循环加载的所有步骤,直到出现剪切裂纹,才研究了莫尔圆。它还通过识别每个样本的Mohr-Coulomb破坏准则来研究抗剪强度与法向强度之间的相关性。

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