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Direct Shear Tests on Waste Tires-Sand Mixtures

机译:废轮胎-砂混合物的直接剪切测试

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摘要

Waste tires are used in some engineering applications and thereby reduce the potential impact on the environment, for example, as lightweight materials in geotechnical engineering projects. This paper presents a brief literature review on geotechnical applications of processed waste tires, and a laboratory study on the effect of tire shreds on the physical properties of two different sands (fine angular sand and coarse rotund sand). Each type of sand was mixed four different percentages of rubber particles; 5, 10, 20 and 50% by dry weight. Direct shear tests were employed to investigate the effect of rubber particles on the shear strength of sands and internal friction angle. The addition of shredded waste rubber particles slightly decreased both the internal angle of friction and the shear strengths of the sands within the tested stress and strain levels. Additionally, a prediction model using stepwise regression (SR) method is proposed to calculate the shear strength of sands with the increasing rubber content. The performance of accuracies of proposed SR models are quite satisfactory. The proposed SR models are presented as relatively simple explicit mathematical functions for further use by researchers.
机译:废轮胎用于某些工程应用中,从而减少了对环境的潜在影响,例如在岩土工程项目中用作轻质材料。本文简要介绍了处理后的废轮胎的岩土工程应用的文献综述,以及关于轮胎碎片对两种不同沙粒(细角沙和粗圆形沙)的物理特性影响的实验室研究。每种类型的砂子都混合了四个不同百分比的橡胶颗粒。占干重的5、10、20和50%。采用直接剪切试验来研究橡胶颗粒对砂的剪切强度和内摩擦角的影响。在测试的应力和应变水平内,切碎的废橡胶颗粒的加入会略微降低砂轮的内角和剪切强度。此外,提出了使用逐步回归(SR)方法的预测模型,以计算随着橡胶含量增加而产生的砂的剪切强度。所提出的SR模型的准确性表现十分令人满意。提出的SR模型以相对简单的显式数学函数形式呈现,供研究人员进一步使用。

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