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Experimental study and failure criterion analysis on combined compression-shear performance of rubber concrete (RC) with different rubber replacement ratio

机译:不同橡胶混凝土(RC)组合压缩剪切性能的实验研究与故障标准分析

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摘要

In order to study the combined compression-shear mechanical properties of rubber concrete (RC), the compression-shear tests of RC under varying axial compression ratios and rubber content were carried out using compression-shear hydraulic servo machine. The shear failure modes and shear load & ndash;displacement curves of RC were generated. The characteristics points of load & ndash;displacement curves, peak shear strength, residual strength, shear failure displacement, for instance, were also extracted under different loading conditions. The effect of the axial compression ratios and replacement level of rubber particles on the shear mechanical properties of concrete was evaluated. It was reported that shear failure of RC developed slowly while shear failure plane was relatively flat by an increase in axial compression ratio. The friction traces on shear failure plane got more evident when the law of change was not associated to the replacement ratio of rubber particles. Research results also indicated that with successive increase in replacement ratio, the shear strength of concrete gradually decreases while the shear displacement gradually increases. Simultaneously, the increase coefficient of shear load of RC shows a decreasing trend, influenced by the axial compression ratio. The shear strength, residual load and shear displacement were enhanced as the axial compression ratio increased. While the reduction degree of shear load is larger due to the rubber replacement ratio. The cohesion and internal friction angle of concrete decrease by an increase in the rubber replacement ratio while the friction coefficient of the shear failure plane is relatively stable. The failure criterion models of concrete associated with the rubber replacement ratio under combined compression-shear stress are derived from the theory of plane stress space and octahedral stress space. Model results show favorable consistence with experimental data. The manuscript discussed and analyzed the mechanism of concrete under combined compression-shear. The research of this paper is of great significance for scientific research and engineering applications of RC.(c) 2021 Elsevier Ltd. All rights reserved.
机译:为了研究橡胶混凝土(RC)的组合压缩剪切力学性能,使用压缩剪切液压伺服机进行改变轴向压缩比和橡胶含量下RC的压缩剪切试验。剪切失效模式和剪切载荷和ndash;产生RC的位移曲线。例如,负载曲线,峰值剪切强度,残余强度,剪切失效位移的特性也在不同的负载条件下提取。评价轴压比对混凝土剪切力学性能的轴向压缩比和橡胶颗粒的效果。据报道,RC的剪切失效缓慢地发展,而剪切失效平面通过轴向压缩比的增加而相对平坦。当变化规律与橡胶颗粒的替代率无关时,剪切失效平面上的摩擦迹线更明显。研究结果还表明,随着更换比率的连续增加,混凝土的剪切强度逐渐降低,而剪切位移逐渐增加。同时,RC的剪切载荷的增加系数显示出通过轴向压缩比的影响降低。随着轴向压缩比增加,剪切强度,残余载荷和剪切位移增强了。由于橡胶更换比,剪切载荷的缩小程度较大。混凝土的内聚力和内部摩擦角度随着橡胶替代比的增加而降低,而剪切失效平面的摩擦系数相对稳定。在组合压缩剪切应力下与橡胶更换比相关的混凝土的故障标准模型源自平面应力空间和八面体应力空间的理论。模型结果显示了与实验数据的良好一致。在组合压缩剪切下讨论并分析了混凝土的机制。本文的研究对于RC的科学研究和工程应用具有重要意义。(c)2021 Elsevier Ltd.保留所有权利。

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