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The effect of the particle size distribution on the mechanics of fibre-reinforced sands under one-dimensional compression

机译:一维压缩下粒径分布对纤维增强砂力学特性的影响

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Seven reconstituted sands of different mineralogies and different particle size distributions, from uniform to well-graded and coarse to fine, were tested under one-dimensional compression, with and without reinforcement by discrete fibres. The compressibility, the particle breakage and the associated change in particle shape were examined in the sands with and without reinforcement. Each reconstituted sand was found to have a unique normal compression line. The compressibility increased with increasing uniformity and with larger mean diameters, thus coarse uniform sands were found to be the most compressible. They also underwent more breakage of particles, which was more significant in the weaker carbonate sands. At the grain scale, the addition of fibres seemed to reduce the amount of particle breakage in the soil, more significantly in well-graded sands. A unique NCL was found for each fibre-reinforced sand, parallel to that of the corresponding non-reinforced sand. A strong correlation was found between the ability of the fibres to prevent particle breakage and their ability to limit changes in particle shape. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在一维压缩下测试了七种不同矿物学和不同粒度分布的再生砂,这些砂从均匀到良好渐变,从粗糙到精细,有或没有离散纤维增强。在有和没有增强的情况下,检查了沙子的可压缩性,颗粒破碎和相关的颗粒形状变化。发现每种再生砂具有唯一的法向压缩线。可压缩性随着均匀性的增加和平均直径的增大而增加,因此发现粗大均匀的砂子具有最高的可压缩性。它们还经历了更多的颗粒破碎,这在较弱的碳酸盐砂中更为明显。在粮食规模上,添加纤维似乎减少了土壤中的颗粒破碎量,在分级良好的沙土中更明显。对于每种纤维增强砂,发现了一个唯一的NCL,与相应的非增强砂相似。在纤维防止颗粒破裂的能力与限制颗粒形状变化的能力之间发现了很强的相关性。 (C)2015 Elsevier Ltd.保留所有权利。

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