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Shear behaviour of ambient cured geopolymer concrete beams reinforced with BFRP bars under static and impact loads

机译:用BFRP钢筋加固环境固化的地缘混凝土梁的剪切行为,静电和冲击载荷

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摘要

The use of fiber reinforced polymer (FRP) bars in GeoPolymer Concrete (GPC) structures has drawn increasing attention in recent years. The application of GPC with basalt fiber reinforced polymer (BFRP) reinforcements in replacing Ordinary Portland cement Concrete (OPC) and steel reinforcements leads to green and sustainable constructions. Currently, very limited studies have been conducted to investigate the performance of GPC beams reinforced with BFRP bars under static loads, but no study on their performance under impact loads has been reported yet in open literature. In this study, ambient-cured GPC beams reinforced with BFRP bars were designed, cast and tested under static and impact loads. The damage mode and quantitative results such as midspan deflection, reinforcement strain, and impact and reaction forces were recorded and analysed. Test results showed that spiral stirrups led to superior performance of the beams under both static and impact loads as compared to conventional rectangular stirrups. The commonly used concrete material model *Mat_072R3 in LSDYNA was modified based on test data to model GPC material. With the modified GPC material model, numerical models were developed and calibrated against the impact test results. Parametric studies were carried out to investigate the influences of GPC material strength and longitudinal and stirrup reinforcement ratios on the performance of beams subjected to impact loads. It was also found that using steel bars as the compression reinforcements led to better performance because BFRP bars under shear and compression were vulnerable to splitting damage subjected to impact loads.
机译:近年来,使用纤维增强聚合物(GPC)结构中的纤维增强聚合物(FRP)棒的用途增加了越来越关注。 GPC用玄武岩纤维增强聚合物(BFRP)加强件代替普通波特兰水泥混凝土(OPC)和钢筋的增强率导致绿色和可持续的建筑。目前,已经进行了非常有限的研究,以调查GPC梁在静载下用BFRP棒加固的GPC梁的性能,但在开放文献中尚未报告对冲击载荷下的性能的研究。在该研究中,设计了用BFRP棒加强的环境固化的GPC光束,在静态和冲击载荷下进行了设计,铸造和测试。记录和分析了损坏模式和定量结果,例如中坡偏转,增强菌株和冲击和反作用力。测试结果表明,与传统的矩形搅拌相比,螺旋镫会导致横向和冲击载荷下的梁的优异性能。基于试验数据修改了LSDYNA中的常用混凝土材料模型* MAT_072R3以模拟GPC材料。利用改进的GPC材料模型,开发了数值模型和校准了影响试验结果。进行参数研究,以研究GPC材料强度和纵向和搅拌加固比对经受冲击载荷的梁的性能的影响。还发现,使用钢筋随着压缩增强件导致更好的性能,因为剪切和压缩下的BFRP棒易受分裂受冲击载荷的损伤。

著录项

  • 来源
    《Engineering Structures 》 |2021年第15期| 111730.1-111730.19| 共19页
  • 作者单位

    Zhejiang Univ Coll Civil Engn & Architecture Inst Geotech Engn Hangzhou 310058 Peoples R China|Curtin Univ Sch Civil & Mech Engn Ctr Infrastruct Monitoring & Protect Bentley WA Australia;

    Curtin Univ Sch Civil & Mech Engn Ctr Infrastruct Monitoring & Protect Bentley WA Australia;

    Curtin Univ Sch Civil & Mech Engn Ctr Infrastruct Monitoring & Protect Bentley WA Australia;

    Zhejiang Univ Coll Civil Engn & Architecture Inst Geotech Engn Hangzhou 310058 Peoples R China|China Inst Water Resources & Hydropower Res Dept Geotech Engn Beijing 100048 Peoples R China;

    Curtin Univ Sch Civil & Mech Engn Ctr Infrastruct Monitoring & Protect Bentley WA Australia;

    Curtin Univ Sch Civil & Mech Engn Ctr Infrastruct Monitoring & Protect Bentley WA Australia;

    Univ Western Australia Sch Civil Environm & Min Engn 35 Stirling Highway Nedlands WA 6009 Australia;

  • 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 concrete beam; BFRP bar; Shear; Static test; Impact test; Numerical simulation;

    机译:地缘混凝土梁;BFRP吧;剪切;静态试验;冲击试验;数值模拟;
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