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Shear strength of concrete members without transverse reinforcement: A mechanical approach to consistently account for size and strain effects

机译:没有横向加固的混凝土构件的抗剪强度:一种机械方法来始终考虑尺寸和应变效应

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摘要

Many theories and empirical formulae have been proposed to estimate the shear strength of reinforced concrete members without transverse reinforcement. It can be noted that these approaches differ not only in the resulting design expressions, but also on the governing parameters and on the interpretation of the failure mechanisms and governing shear-transfer actions. Also, no general consensus is yet available on the role that size and strain effects exhibit on the shear strength and how should they be accounted. This paper reviews the various potential shear-transfer actions in reinforced concrete beams with rectangular cross-section and discusses on their role, governing parameters and the influences that the size and level of deformation may exhibit on them. This is performed by means of an analytical integration of the stresses developed at the critical shear crack and accounting for the member kinematics. The results according to this analysis are discussed, leading to a number of conclusions. Finally, the resulting shear strength criteria are compared and related to the Critical Shear Crack Theory. This comparison shows the latter to be physically consistent, accounting for the governing mechanical parameters and leading to a smooth transition between limit analysis and Linear Elastic Fracture Mechanics in agreement to the size-effect law provided by Bazant et al. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经提出了许多理论和经验公式来估计没有横向钢筋的钢筋混凝土构件的抗剪强度。可以注意到,这些方法不仅在最终的设计表达式上有所不同,而且在控制参数上以及在对破坏机理和控制剪切传递作用的解释上也有所不同。同样,对于尺寸和应变效应在剪切强度上的作用以及如何考虑,尚无普遍共识。本文回顾了矩形截面钢筋混凝土梁中各种潜在的剪力传递作用,并讨论了它们的作用,控制参数以及变形量和变形水平可能对其产生的影响。这是通过对临界剪切裂纹处产生的应力进行分析积分并考虑构件运动学来实现的。讨论了根据该分析得出的结果,得出了许多结论。最后,将所得的抗剪强度标准进行比较,并将其与临界剪切裂纹理论联系起来。这种比较表明,后者在物理上是一致的,考虑了控制力学参数,并导致极限分析和线性弹性断裂力学之间的平稳过渡,这与Bazant等人提供的尺寸效应定律一致。 (C)2015 Elsevier Ltd.保留所有权利。

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