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Experimental Investigation into the Influence of Roundness and Sphericity on the Undrained Shear Response of Silty Sand Soils

机译:圆度和球形度对粉质砂土不排水剪切响应影响的试验研究

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摘要

Particle shape represents one of the key parameters that significantly influences the mechanical response, shear strength, deformation, and settlement characteristics of cohesionless soil deposits when subjected to static or dynamic loading conditions. Shear behavior of coarse-grained soils (gravel, gravelly sand, sandy gravel, sand, silty sand, or sandy silt) depends heavily on the two essential particle shape characteristics, which are termed roundness and sphericity. However, there are limited published studies available in the literature that deal solely with the effects of particle shape on shear-strain characteristics and shear behavior of granular soil deposits. Therefore, the veritable role of the particle shape parameter on soil behavior remains incomplete and requires further investigation. The present research work attempts to investigate the effects of particle shape on shear response of different categories of sand-silt mixtures under static triaxial loading conditions. For this purpose, a series of undrained compression triaxial tests was carried out on mixtures of Chief (Algerian) rounded sand, Fontainebleau (France) subrounded sand, and Hostun (France) subangular sand mixed with low-plastic (I-p = 5 %) rounded silty fines. All the sand-silt mixture samples were reconstituted at an initial relative density (D-r = 52 %) and subjected to a constant confining pressure (P'(c) =100 kPa). An evaluation of particle shape characteristics of the tested materials (sand and silt) was performed using a digital microscope device. Two new indexes, termed combined roundness and combined sphericity based on the combination of sand and silt to account for the coupled effects of particle shape and fines content, were proposed. The test results are used to correlate the undrained shear strength of the silty sand soils to the particle shape characteristics. Therefore, particle shape appears to be an important soil index property that needs to be adequately identified, particularly for silty sand-silt mixture soils. The systematic identification of particle shape characteristics leads to a better understanding of silty sand behavior.
机译:颗粒形状代表关键参数之一,当受到静态或动态载荷条件时,该参数会显着影响无粘性土壤沉积物的机械响应,剪切强度,变形和沉降特性。粗粒土壤(砾石,砾石砂,砂砾石,沙子,粉砂或沙质粉砂)的剪切行为在很大程度上取决于两个基本的颗粒形状特征,即圆度和球形度。但是,文献中仅有有限的已发表研究,这些研究仅涉及颗粒形状对颗粒状土壤沉积物的剪切应变特性和剪切行为的影响。因此,颗粒形状参数对土壤行为的真正作用仍然不完全,需要进一步研究。本研究工作试图研究颗粒形状对静态三轴载荷条件下不同类别的砂-粉混合物的剪切响应的影响。为此,对长(阿尔及利亚)圆砂,枫丹白露(法国)亚圆砂和Hostun(法国)亚角砂与低塑性(Ip = 5%)圆砂混合的混合物进行了一系列不排水的三轴试验粉尘罚款。所有的沙-粉混合物样品均以初始相对密度(D-r = 52%)重构,并承受恒定的围压(P'(c)= 100 kPa)。使用数字显微镜设备评估了被测材料(沙和粉沙)的颗粒形状特征。提出了两种新的指标,即基于砂和粉砂的组合的圆度和组合球度,以说明颗粒形状和细粉含量的耦合效应。测试结果用于将粉砂土的不排水抗剪强度与颗粒形状特征相关联。因此,颗粒形状似乎是一个重要的土壤指数特性,需要充分确定,特别是对于粉质砂-粉砂混合土而言。对颗粒形状特征的系统识别有助于更好地了解粉质砂的行为。

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