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Effect of fines on the mechanical properties of composite soil stabilizer stabilized gravel soil

机译:细粉对复合土稳定剂稳定砂砾土力学性能的影响

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It is necessary to reduce the use of crushed stone and cement in base courses because of environmental concerns and cost issues. The objective of this study was to evaluate the effect of fines on the mechanical properties of composite soil stabilizer-stabilized gravel soil (CSSSGS) compared with cement-stabilized gravel soil (CSGS) in laboratory performance tests. These laboratory tests included unconfined compressive strength (UCS), splitting tensile strength (STS) and compressive modulus of resilience (CMR). Five different contents of fines were adopted-5%, 20%, 35%, 50% and 65%. The dosages of binders used in this study were determined on the basis of the target UCS (4.5 MPa). The study revealed that increased fines content (exceeding a certain threshold for STS) had a considerable adverse influence on the mechanical properties of CSSSGS and CSGS. Increasing fines content of CSSSGS and CSGS diminished the advantages of the gradation design with respect to the UCS and STS. Additionally, new models based on mixture proportions have been established to predict the UCS for mixture design and base course construction. Overall, CSSSGS can be used as base course material from the perspective of mechanical properties if the fines content is well-controlled. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于环境问题和成本问题,有必要减少在基础课程中使用碎石和水泥。这项研究的目的是评估粉尘对复合土壤稳定剂稳定的砾石土壤(CSSSGS)和水泥稳定的砾石土壤(CSGS)的力学性能的影响,以进行实验室性能测试。这些实验室测试包括无边压缩强度(UCS),劈裂抗张强度(STS)和压缩弹性模量(CMR)。分别采用了五种不同的罚款含量,分别为5%,20%,35%,50%和65%。根据目标UCS(4.5 MPa)确定本研究中使用的粘合剂剂量。研究表明,增加的细粉含量(超过STS的某个阈值)会对CSSSGS和CSGS的机械性能产生相当大的不利影响。相对于UCS和STS,增加CSSSGS和CSGS的罚款含量会削弱渐变设计的优势。此外,已经建立了基于混合物比例的新模型,以预测用于混合物设计和基础课程建设的UCS。总体而言,如果细粉含量得到良好控制,从机械性能的角度来看,CSSSGS可用作基础材料。 (C)2016 Elsevier Ltd.保留所有权利。

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