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首页> 外文期刊>Journal of materials in civil engineering >Mechanical Properties of Fly Ash-Asphalt Emulsion Geopolymer Stabilized Crushed Rock for Sustainable Pavement Base
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Mechanical Properties of Fly Ash-Asphalt Emulsion Geopolymer Stabilized Crushed Rock for Sustainable Pavement Base

机译:用于可持续路面底座的粉煤灰 - 沥青乳液乳液稳定碎石的机械性能

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摘要

Research on the usage of industrial by-products to improve mechanical properties of low-quality materials in infrastructure applications is of global interest. Two industrial by-products, namely, fly ash (FA) and asphalt emulsion (AE), were used in this research to develop an FA-AE stabilized marginal crushed rock (CR) as a sustainable pavement base material. A liquid alkaline activator was used, comprised of a mixture of sodium hydroxide (NaOH) and sodium silicate hydrate (Na_2SiO_3) at Na_2SiO_3∶NaOH = 50∶50 and NaOH concentration = 5 M. In this research study, the mechanical properties of FA-AE stabilized CR were investigated via unconfined compressive strength (UCS), indirect tensile strength (ITS), flexural strength (FS), indirect tensile resilient modulus (IT M_r), and indirect tensile fatigue life (ITFL) tests. The UCS of FA geopolymer stabilized CR (without AE) was found to be dependent on the FA content and curing time. For all the curing times studied, the higher FA replacement ratio resulted in higher UCS values. Although the asphalt film enhances particle confinement, it was found to retard the geopolymerization reaction. According to the local road authority, which requires a UCS > 1.75 MPa for a stabilized base course, the addition of AE reduced the UCS of FA-AE geopolymer stabilized CR. To meet the minimum 7-day strength requirement for both low and high-traffic roads, a geopolymer mix was suggested with an FA replacement ratio ≥ 20% and an AE content ≥ 1 %. Compared with the cement stabilized CR at a similar UCS value, the FA-AE geopolymer stabilized CR had higher FS, ITS, IT M_r, and ITFL but lower carbon footprints.
机译:工业副产品的用途研究,提高基础设施应用中低质量材料的力学性能是全球兴趣。在本研究中使用了两种工业副产物,即粉煤灰(Fa)和沥青乳液(AE),以开发FA-AE稳定的边缘碎石(CR)作为可持续的路面基础材料。使用液体碱性活化剂,其包含氢氧化钠(NaOH)和硅酸钠水合物(Na_2SiO_3)的混合物,在Na_2SiO_3 -3:50:50和NaOH浓度= 5米。在本研究研究中,FA-的机械性能通过无凝结的抗压强度(UCS),间接拉伸强度(其),弯曲强度(FS),间接拉伸弹性模量(IT M_R)和间接拉伸疲劳寿命(ITFL)测试来研究Ae稳定的Cr。发现FA Geo聚物稳定的Cr(没有AE)的UCS依赖于FA含量和固化时间。对于所研究的所有固化时间,较高的FA更换比率导致更高的UCS值。虽然沥青薄膜增强了粒子限制,但发现延缓了地质聚合反应。根据当地的道路管理局,需要UCS> 1.75 MPa的稳定基础课程,添加AE的添加降低了Fa-AE地质聚合物稳定的CR的UC。为了满足低交通道路和高交通道路的最低7天的强度要求,提出了一种造成的地质聚合物混合物≥20%,AE含量≥1%。与在类似的UCS值下的水泥稳定的CR相比,FA-AE地质聚合物稳定化CR具有较高的FS,IT,IT M_R和ITFL,但碳足迹较低。

著录项

  • 来源
    《Journal of materials in civil engineering》 |2021年第9期|04021220.1-04021220.12|共12页
  • 作者单位

    Center of Excellence in Innovation for Sustainable Infrastructure Development Suranaree Univ. of Technology Nakhon Ratchasima 30000 Thailand;

    Program in Construction and Infrastructure Management Suranaree Univ. of Technology Nakhon Ratchasima 30000 Thailand;

    School of Civil Engineering Center of Excellence in Innovation for Sustainable Infrastructure Development Suranaree Univ. of Technology Nakhon Ratchasima 30000 Thailand Academy of Science Royal Society of Thailand Bangkok 10300 Thailand;

    School of Civil Engineering Center of Excellence in Civil Engineering Suranaree Univ. of Technology Nakhon Ratchasima 30000 Thailand;

    Dept. of Civil and Construction Engineering Swinburne Univ. of Technology Victoria 3122 Australia;

    School of Internal Medicine Research Fellow Center of Excellence in Innovation for Sustainable Infrastructure Development Suranaree Univ. of Technology Nakhon Ratchasima 30000 Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil-cement; Asphalt emulsion; Geopolymer; Recycled materials; Crushed rock; Pavement base; Ground improvement;

    机译:土壤 - 水泥;沥青乳液;地缘聚合物;再生材料;碎石;路面基地;地面改进;

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