Critical state shear strength at concrete-sand-bentonite slurry interfaces: mix proportions and rate effects

K. G. O'Dwyer, B. A. McCabe, B. B. Sheil
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Abstract

This paper describes direct shear testing of a range of sand-bentonite slurry mixes, identified as a gap in the literature. In the absence of a concrete interface, there was an apparent transition zone from sand-governed strength (bentonite content ≤30%) to clay-governed strength (bentonite content ≥80%), which was linked to the sample void ratio. When a concrete interface was introduced, the critical stress ratio (critical state shear stress normalised by the effective normal stress) was found to change linearly with bentonite slurry content, reflecting an interface sliding failure mechanism. The testing also considered the effect of shearing rates ranging from 0.0025 mm/min to 10 mm/min on interface shear strength. The mixtures containing greater bentonite slurry content displayed a greater decrease in the critical stress ratio with increasing shear rate. Very few studies have explored the influence of the relative sand-clay mix composition on interface shear resistance; these results provide a better understanding of their mechanical behaviour and forms a basis for future research in this area.
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混凝土-砂土-膨润土浆体界面临界状态抗剪强度:配合比和速率效应
本文描述了一系列砂-膨润土料浆混合物的直接剪切试验,确定为文献中的空白。在不存在混凝土界面的情况下,从砂土控制强度(膨润土含量≤30%)到粘土控制强度(膨润土含量≥80%)存在明显的过渡区,这与试样孔隙率有关。当引入混凝土界面时,发现临界应力比(由有效正应力归一化的临界状态剪应力)随膨润土浆料含量线性变化,反映了界面滑动破坏机制。试验还考虑了0.0025 mm/min ~ 10 mm/min剪切速率对界面抗剪强度的影响。随着剪切速率的增加,膨润土浆料掺量越大,临界应力比的降低幅度越大。很少有研究探讨砂-粘土相对混合成分对界面抗剪性能的影响;这些结果提供了对其力学行为的更好理解,并为该领域的未来研究奠定了基础。
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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