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Response of RC panels accounting for crack development and its interaction with rebars

机译:RC面板考虑裂纹发展及其与钢筋相互作用的响应

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摘要

The response of reinforced concrete (RC) elements subjected to in-plane shear and axial stresses is governed by various potential failure mechanisms. For structural panels subjected to uniform stress states, their ultimate strength can be governed by yielding of the reinforcement, crushing of the concrete struts, sliding along a failure plane or spalling of the concrete cover. Although some expressions have been proposed in the literature to address this issue, they normally are empirical or semi-empirical in nature and do not distinguish among the failure mechanisms and their interaction. The purpose of this paper is to derive a mechanically-based efficiency factor for concrete in compression that is able to predict the actual behaviour of structural cracked concrete. This approach is shown to suitably predict the various potential failure modes and the development of the secondary shear cracks as well as the interaction between the reinforcement and the concrete.
机译:钢筋混凝土(RC)单元承受平面内剪力和轴向应力的响应受各种潜在破坏机制的控制。对于承受均匀应力状态的结构面板,其最终强度可以通过钢筋的屈服,混凝土支柱的压碎,沿破坏面的滑动或混凝土表层的剥落来控制。尽管在文献中已经提出了一些表达来解决这个问题,但是它们通常本质上是经验性的或半经验性的,并且不能区分故障机制及其相互作用。本文的目的是得出混凝土在压缩过程中基于机械的效率因子,该因子能够预测结构性开裂混凝土的实际性能。结果表明,该方法可以适当预测各种潜在的破坏模式,二次剪切裂纹的发展以及钢筋与混凝土之间的相互作用。

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