Discrete Analyses of Shear Failure in Reinforced Concrete

S. Saito, T. Higai
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Abstract

This paper presents the numerical analyses of reinforced concrete (RC) members using discrete approaches, called spring network models. RC members under certain conditions exhibit brittle failure with strain localization under shear failure. In order to distinguish this failure mode from ordinary shear failure, which is less brittle and results in a more distributed strain field, this failure mode is called a sliding shear failure. The mechanisms of sliding shear failure are not well defined. Since the spring network model is one of the discrete-type approaches that are well suited to problems where material discontinuities are dominant, the results of numerical analysis are used to improve understanding of sliding shear failure. The model is validated through comparison of simulated and observed response for RC beams that exhibit ordinary shear failure and RC panels subjected to pure shear forces that exhibit sliding shear failure. A parameter study is then performed using the proposed model.
钢筋混凝土剪切破坏的离散分析
本文采用离散方法,即弹簧网络模型,对钢筋混凝土(RC)构件进行了数值分析。混凝土构件在一定条件下表现为脆性破坏,在剪切破坏下表现为应变局部化破坏。为了将这种破坏模式与脆性较小、应变场分布更均匀的普通剪切破坏模式区分开来,将这种破坏模式称为滑动剪切破坏。滑动剪切破坏的机制尚未明确。由于弹簧网络模型是一种离散型方法,非常适合于材料不连续性占主导地位的问题,因此数值分析的结果用于提高对滑动剪切破坏的理解。通过对比RC梁在普通剪切破坏和RC板在纯剪力下滑动剪切破坏的模拟和观测响应,验证了该模型的有效性。然后使用所提出的模型进行参数研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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