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The utilization of waste rubber tire powder to improve the mechanical properties of cement-clay composites

机译:废橡胶轮胎粉的利用改善水泥粘土复合材料的力学性能

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摘要

This study investigated utilizing waste tire powder as a cement replacement material in soil-cement blends. It also proposed improving cemented clays' strength and stiffness characteristics to decrease environmental impacts due to cement production and waste tire dumping. A light compaction method has been utilized to produce the samples of two densities (1600 kg/m(3) and 1800 kg/m(3)), three cement dosages (7%, 10%, 13%), and five tire powder contents (2.5%, 5%, 10% and 20% weight of cement) cured for 7, 28, and 60 days. Mechanical properties of prepared blends have been assessed by unconfined compressive strength and ultrasonic pulse velocity tests to determine the unconfined compressive strength, elastic modulus, and initial shear modulus of samples. The results showed that 2.5% tire powder can be utilized as an optimum value. To additionally clarify the featured mechanical properties of the blends, microstructure analysis of the samples has been performed with the XRF, XRD, and SEM. Correlations have been proposed to determine unconfined compressive strength (q(u)), initial shear modulus (G(0)), and modulus of elasticity (E) to be acquired utilizing just a single test. Moreover, a novel correlation has been developed to predict the unconfined compressive strength and elastic modulus of any specimen through non-destructive testing. The final composites can be utilized in different structural and non-load bearing applications, such as a base, sub-base, embankments, rammed earth, and retaining walls dependent on the performance of the final composites.
机译:本研究采用废轮胎粉作为土壤水泥混合物中的水泥置换材料。它还提出了改善粘土的粘土的强度和刚度特性,以降低由于水泥生产和废气轮胎倾销而降低环境影响。已经利用光压缩方法来生产两种密度的样品(1600kg / m(3)和1800kg / m(3)),三个水循环剂量(7%,10%,13%)和五个轮胎粉末内容物(2.5%,5%,10%和20%的水泥体重)固化7,28和60天。通过非整合的抗压强度和超声波脉冲速度试验评估了制备的混合物的机械性能,以确定不同的抗压强度,弹性模量和样品的初始剪切模量。结果表明,2.5%轮胎粉末可作为最佳值使用。为了另外阐明共混物的特色机械性能,已经使用XRF,XRD和SEM进行了样品的微观结构分析。已经提出了相关性以确定不包含束缚的压缩强度(Q(U)),初始剪切模量(G(0))和待利用单个测试获得的弹性模量(e)。此外,已经开发了一种新的相关性来通过非破坏性测试预测任何样本的非整合压缩强度和弹性模量。最终的复合材料可以用于不同的结构和非负载轴承应用,例如基础,子基础,堤防,夯土和挡土墙,依赖于最终复合材料的性能。

著录项

  • 来源
    《Construction and Building Materials》 |2021年第20期|124306.1-124306.16|共16页
  • 作者单位

    Middle East Tech Univ Civil Engn Program Northern Cyprus Campus Via Mersin 10 Guzelyurt North Cyprus Turkey;

    Middle East Tech Univ Civil Engn Program Northern Cyprus Campus Via Mersin 10 Guzelyurt North Cyprus Turkey;

    European Univ Lefke Fac Engn Dept Civil Engn TR 10 Mersin Lefke Northern Cyprus Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Strength; Clay; Stabilization; Microstructure; Tire; Waste; Base; Sub-base;

    机译:强度;粘土;稳定化;微观结构;轮胎;废物;基础;子基础;

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