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A laboratory investigation of steel to fly ash-based geopolymer paste bonding behavior after exposure to elevated temperatures

机译:钢的实验室调查,暴露于升高温度后的粉煤灰的地质聚合物浆料粘合行为

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摘要

Geopolymers are generally agreed to provide good steel-to-concrete bonding performance and fire resistance. However, few previous studies on geopolymer investigated the steel-to-concrete bonding behavior and fire-resistance at very high temperatures (800 degrees C), hence cannot reveal the damage of a severe fire accident. This paper presents the results of an extensive experimental study carried out to investigate the effect of elevated temperature on the thermal-physical behaviors and mechanical properties of fly ash-based geopolymer paste. After being exposed up to 1200 degrees C according to the RATB fire curve, the damage stages of geopolymer paste (GPC) and ordinary Portland cement (OPC) were investigated through the unconfined compressive strength test, push-out test, thermogravimetric analysis (TGA), differential thermal analysis (DTA) and scanning electron microscopy (SEM) analysis. Based on the results and existing literature, there was a less mass loss and a better compressive strength for GPC paste after the treatment, which led to a better bonding behavior of GPC compared with OPC paste. In addition, a positive linear relationship between the bond strength and the compressive strength was found for both GPC and OPC. Furthermore, the stable properties of phases change and porous micro-structure in GPC identified by SEM and XRD methods were important for a better bond behavior at elevated temperatures. Thus, the GPC offers a feasible alternative to OPC in practical fire-resistant building applications. (C) 2020 Elsevier Ltd. All rights reserved.
机译:均同意地缘聚合物提供良好的钢 - 混凝土粘接性能和耐火性。然而,很少有关于地质聚合物的研究在非常高的温度下调查了钢 - 混凝土的粘合行为和防火性(> 800℃),因此无法揭示严重火灾事故的损害。本文介绍了进行了广泛的实验研究的结果,以研究升高温度对粉煤灰基地质聚合物浆料热物理行为和力学性能的影响。通过根据鼠李火焰曲线暴露在1200摄氏度下,通过无束缚的抗压强度试验,推出试验,热重分析(TGA)研究了地质聚合物糊(GPC)和普通波特兰水泥(OPC)的损伤阶段,差分热分析(DTA)和扫描电子显微镜(SEM)分析。基于结果和现有文献,治疗后GPC糊的质量损失和更好的抗压强度,导致GPC与OPC浆料更好的GPC粘合行为。此外,发现GPC和OPC粘合强度与抗压强度之间的正线性关系。此外,通过SEM和XRD方法鉴定的GPC中相变化和多孔微结构的阶段变化和多孔微结构对于在升高的温度下更好的粘合行为是重要的。因此,GPC在实用的耐火建筑应用中提供了可行的OPC替代品。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2020年第10期|119267.1-119267.15|共15页
  • 作者单位

    Tongji Univ Coll Civil Engn Dept Geotech Engn Shanghai 200092 Peoples R China|Univ Tennessee Dept Civil & Environm Engn Knoxville TN 37996 USA|Tongji Univ Minist Educ Key Lab Geotech & Underground Engn Shanghai 200092 Peoples R China;

    Univ Tennessee Dept Civil & Environm Engn Knoxville TN 37996 USA;

    Univ Tennessee Dept Civil & Environm Engn Knoxville TN 37996 USA;

    Univ Tennessee Dept Civil & Environm Engn Knoxville TN 37996 USA;

    Tongji Univ Coll Civil Engn Dept Geotech Engn Shanghai 200092 Peoples R China|Tongji Univ Minist Educ Key Lab Geotech & Underground Engn Shanghai 200092 Peoples R China;

    Univ Tennessee Dept Civil & Environm Engn Knoxville TN 37996 USA;

  • 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

    Geopolymer; Elevated temperatures; Bonding behavior; Fire resistance;

    机译:地缘聚合物;温度升高;粘接行为;耐火性;

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