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Shaking table study on sand-EPS beads-mixtures using a laminar box

机译:使用层状箱握住砂脂珠 - 混合物的摇摆桌子研究

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Mixture of sand-expanded polystyrene (EPS) beads is one of the new geo-materials with high compressibility that can be used as a seismic buffer and base isolation due to its great capability for energy dissipation. In this study, a series of 1-g shaking table tests is conducted to assess the dynamic properties of the sand-EPS beads mixtures with a particular focus on the stress-strain response and the variation of shear modulus and damping ratio at the range of medium to large levels of strain. The influence of various parameters, including the amplitude of input base acceleration and EPS content, on the response of sand-EPS beads mixtures is examined. The physical model of sand-EPS bead mixtures showed a lower induced peak acceleration compared to the clean sand model. Moreover, the addition of EPS beads to sand reduced the deformations caused by dynamic loading. The results also revealed that the damping ratio and shear modulus of the samples depend on the EPS bead content, such that its increase results in the damping ratio increasing to 100% or more. On the contrary, the shear modulus of all sand-EPS bead mixtures undergoes a significant reduction with the increase in EPS bead content.
机译:沙膨胀的聚苯乙烯(EPS)珠子的混合物是具有高压缩性的新型地质材料之一,可用作由于其能量耗散的巨大能力而用作地震缓冲液和基础隔离。在该研究中,进行了一系列1G振动台测试,以评估砂EPS珠粒混合物的动态性质,特别聚焦在应力 - 应变响应和剪切模量和阻尼比范围内的剪切模量和阻尼比的变化中等到大含量的菌株。研究了各种参数,包括输入基础加速度和EPS含量的幅度的影响,对砂脂珠混合物的响应进行了影响。与清洁砂模型相比,沙埃珠混合物的物理模型显示出较低的诱导峰加速度。此外,加入EPS珠子的沙子降低了由动态载荷引起的变形。结果还表明,样品的阻尼比和剪切模量取决于EPS珠含量,使得其增加导致阻尼比增加到100%以上。相反,所有砂EPS珠子混合物的剪切模量随着EPS珠含量的增加而经历显着降低。

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