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Effect of Granulated Rubber-Soil Mixture on Reducing Retaining Walls displacement under earthquake forces

机译:粒状橡胶 - 土混合物对地震力下减少挡土墙位移的影响

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In recent years, various studies have been undertaken on how to use waste materials in Civil Engineering projects. Among waste materials, waste rubber has been highlighted to be used for different purposes such as reinforcing of soil and making of reinforced slopes. To investigate the properties of granulated rubber-soil mixture and its application in making of slopes behind retaining walls, some series of cyclic tri-axial tests and numerical analyses were carried out. In the former, dynamic properties of granulated rubber-soil mixture such as shear modulus and dynamic behavior were obtained and in the latter the effect of using granulated rubber-soil mixture on dynamic pressures and displacement of retaining walls during earthquake was investigated. The results of the present study showed that for all the confining pressures, with an increase in rubber percentage, shear modulus decreases while for any percentage of rubber inclusion, shear modulus increases as the confining pressure increases. In addition, new relations were introduced to define maximum shear modulus (G_(max)) and Normalized shear modulus as functions of confining pressure and granulated rubber percentage. Regarding the dynamic analyses of the retaining wall, with an increase in rubber percentage, a decrease in dynamic pressure and residual displacement was observed.
机译:近年来,有关如何在土木工程项目中使用废物的各种研究。在废料中,突出了废物橡胶以用于不同的目的,例如加强土壤和增强斜坡的制造。为了研究粒状橡胶 - 土壤混合物的性能及其在挡土墙后面制作的应用,进行了一些循环三轴试验和数值分析。在前者中,获得了颗粒状橡胶 - 土壤混合物如剪切模量和动力学行为的动态性质,并在后者中,研究了使用粒状橡胶 - 土壤混合物对地震期间的动态压力和挡土墙位移的影响。本研究的结果表明,对于所有狭窄压力,随着橡胶百分比的增加,剪切模量随着橡胶夹杂物的任何百分比而降低,随着限制的压力增加,剪切模量增加。此外,引入了新的关系,以定义最大剪切模量(G_(最大))和归一化剪切模量作为限制压力和粒状橡胶百分比的函数。关于挡土墙的动态分析,随着橡胶百分比的增加,观察到动态压力和残留位移的降低。

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