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Effects of EPS bead inclusions on stress-strain behaviour of sand

机译:EPS颗粒夹杂物对砂土应力应变行为的影响

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Lightweight fill solutions have been used in many civil engineering projects throughout the world. At locations with poor soil conditions, alternative lightweight construction fill materials such as expanded polystyrene (EPS) geofoam, wood chips, and tyre wastes may be used instead of conventional fill materials. These materials are used as an additive for the soil. It is known that the type, aspect ratio and content of the admixtures have an important role in the mechanical properties of the mixtures. The main objective of this study was to assess the feasibility of the potential use of EPS beads in geotechnical applications. The effect of EPS bead gradation on the stress-strain behaviour of lightweight composite materials composed of EPS bead-sand mixtures (EPS-sand) was investigated through a series of triaxial compression tests under three different confining pressures. Three different types of spherical EPS beads with different unit weights (EPS-1, EPS-2, and EPS-3) were mixed with sand with varying EPS bead content. This study has shown that the deviatoric stress of a EPS-sand mixture is not only a function of volumetric EPS bead content but it also depends on EPS bead grain size distribution (EPS bead type). Whereas volumetric EPS bead content increases when all other variables are constant (EPS bead type in EPS-sand), the initial modulus of elasticity decreases linearly. Consequently, EPS bead inclusion did not enhance the maximum deviatoric stress of EPS-sand when compared with that of the sand-only specimen. However, bead addition provides a lightweight aspect to the mixture which can be attractive to use in many geotechnical engineering projects. EPS bead content, confining pressure and EPS bead type-dependent multiple linear regression (MLR) equations were proposed to estimate the initial undrained elastic modulus of EPS-sand to reduce the cost and time involved in conventional laboratory testing of EPS-sand mixtures. Based on the stress-strain behaviour of EPS-sand, these mixtures may be utilised in geotechnical applications as a lightweight fill material.
机译:轻质填充解决方案已在全球许多土木工程项目中使用。在土壤条件差的地区,可以使用替代的轻质建筑填充材料,例如膨胀聚苯乙烯(EPS)泡沫土,木屑和轮胎废料,来代替传统的填充材料。这些材料用作土壤的添加剂。已知混合物的类型,纵横比和含量在混合物的机械性能中具有重要作用。这项研究的主要目的是评估EPS珠在岩土工程应用中的潜在可行性。通过在三种不同围压下的一系列三轴压缩试验,研究了EPS珠级配对由EPS珠-砂混合物(EPS-砂)组成的轻质复合材料的应力-应变行为的影响。将三种具有不同单位重量的球形EPS珠(EPS-1,EPS-2和EPS-3)与具有不同EPS珠含量的砂混合。这项研究表明,EPS-砂混合物的偏应力不仅是EPS珠粒体积的函数,而且还取决于EPS珠粒的粒度分布(EPS珠粒类型)。当所有其他变量不变时(EPS砂中的EPS珠类型),体积EPS珠含量会增加,而初始弹性模量则线性下降。因此,与纯砂试样相比,EPS珠夹杂物没有增加EPS砂的最大偏应力。但是,添加珠子为混合物提供了轻巧的外观,在许多岩土工程项目中使用可能很有吸引力。提出了EPS珠含量,围压和EPS珠类型相关的多元线性回归(MLR)方程,以估计EPS砂的初始不排水弹性模量,从而减少了传统的EPS砂混合物实验室测试所需的成本和时间。基于EPS砂的应力应变行为,这些混合物可在岩土工程应用中用作轻质填充材料。

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