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Dynamic properties of sand-EPS bead mixtures

机译:EPS-EPS珠粒混合物的动态特性

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Soils modified with Expanded Polystyrene (EPS) beads are typically used as lightweight mixtures to solve many geotechnical challenges. In seismically active areas, understanding the relationship between dynamic properties and strain levels of such mixtures is important for geotechnical applications. The aim of the study is to evaluate the shear modulus and material damping of sand-EPS bead mixtures over a wide range of strains to provide a basis for evaluation of using such mixtures as seismic buffers behind earth retaining structures and for base isolation in seismic areas. Dynamic properties of sand-EPS bead mixtures are evaluated from resonant column and cyclic triaxial tests at small and large strains, respectively. Sand-EPS bead mixtures with varying EPS bead content, up to 2.5% by weight, have been tested at confining pressures of 50, 100 and 200 kPa. Results were analyzed to calculate the small-strain shear modulus, minimum damping ratio, shear modulus degradation curves, and damping curves. Results indicate a decrease in shear stiffness with increasing bead content at all strain levels. Material damping is relatively unaffected at small shear strains; however, it increases at larger strains. The dynamic testing performed yielded properties that can be reflected on applicability of the mixture in geotechnical applications.
机译:用膨胀聚苯乙烯(EPS)珠改性的土壤通常用作轻质混合物,以解决许多岩土工程难题。在地震活跃地区,了解这种混合物的动力特性与应变水平之间的关系对于岩土工程应用很重要。这项研究的目的是评估大范围应变下砂-EPS珠状混合物的剪切模量和材料阻尼,从而为评估将此类混合物用作挡土结构后面的地震缓冲器以及地震区域的基础隔离提供基础。 。分别通过共振柱和循环三轴试验分别在小应变和大应变下评估了EPS砂粒混合物的动力学特性。已经在50、100和200 kPa的围压下测试了EPS珠含量最高为2.5%的EPS珠混合物。分析结果以计算小应变剪切模量,最小阻尼比,剪切模量降解曲线和阻尼曲线。结果表明,在所有应变水平下,随着钢珠含量的增加,剪切刚度降低。在较小的剪切应变下,材料的阻尼相对不受影响。但是,它在较大的应变下会增加。进行的动态测试产生的特性可以反映出混合物在岩土应用中的适用性。

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