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Numerical and experimental study of externally reinforced RC slabs using FRPs subjected to close-in blast loads

机译:使用近距离爆破载荷的FRPS外部增强RC板的数值和实验研究

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摘要

The use of woven Fiber Reinforced Polymer (FRP) as strengthening material on full-scale Reinforced Concrete (RC) slabs was studied in this paper. Carbon (CFRP) and E-glass (GFRP) fibers were tested for comparison. The specimens of the trials were subjected to blast loads at scaled distances of 0.83 m/kg1/3, 0.42 m/kg1/3 and 0.21 m/kg1/3, varying both charge and distance to the slab. Furthermore, Finite Element (FE) numerical models have been developed to study, in-depth, the response of the structural elements. A non-reinforced slab facing the highest scaled distance has been used as calibration test. It was monitored with pressure gauges and accelerometers, obtaining errors of around 2% and 5%, respectively, compared with the models' predictions. Seven other trials were carried out and used as validation tests. The explosive charge model was developed using the *LOAD_BLAST_ENHANCED (LBE) tool available in the LS-DYNA software. Two concrete material models have been tested, CSCM and RHT, achieving better results with the first one. To model the FRP reinforcement, *MAT_058 (LAMINATED_COMPOSITE_FABRIC) was used. Applying CFRP resulted in a generally reduced damage area on both surfaces especially at intermediate scaled distances. Concerning the specimens reinforced with GFRP, further investigation needs to be conducted as the field test outcomes were not entirely conclusive due to the bonding of the fiber on concrete. The experimental results were closely reproduced with the developed numerical models, with errors in terms or surface damage below 15%.
机译:在本文中研究了使用编​​织纤维增强聚合物(FRP)作为强化钢筋混凝土(RC)板的加强材料。测试碳(CFRP)和E-玻璃(GFRP)纤维进行比较。在0.83m / kg1 / 3,0.42m / kg1 / 3和0.21 m / kg1 / 3的缩放距离下进行试验标本的喷射载荷,改变电荷和与板坯的距离。此外,已经开发了有限元(FE)数值模型来研究结构元件的响应。面向最高缩放距离的非增强板已被用作校准测试。与模型预测相比,用压力表和加速度计监测压力表和加速度计,从而分别获得约2%和5%的误差。进行七项其他试验并用作验证测试。使用LS-DYNA软件中提供的* Load_Blast_enhanced(LBE)工具开发了爆炸性电荷模型。已经测试了两种混凝土材料模型,CSCM和RHT,第一个,实现了更好的结果。为了模拟FRP加固,使用* MAT_058(LAMING_COMPOSED_FABRIC)。施加CFRP导致两个表面上的损伤区域通常在中间缩放距离上。关于用GFRP加固的标本,需要进行进一步的调查,因为由于纤维在混凝土上的粘接,由于磁场试验结果并不完全决定。实验结果与发达的数字模型密切相关,术语或表面损坏的误差低于15%。

著录项

  • 来源
    《International journal of impact engineering》 |2021年第10期|103939.1-103939.13|共13页
  • 作者单位

    Univ Politecn Madrid Dept Ingn Geol & Minera Madrid Spain;

    Univ Politecn Madrid Dept Ingn Geol & Minera Madrid Spain;

    Univ Politecn Madrid Dept Ingn Geol & Minera Madrid Spain;

    Univ Politecn Madrid Dept Ingn Geol & Minera Madrid Spain;

    Univ Politecn Madrid Dept Ingn Geol & Minera Madrid Spain;

    Univ Politecn Madrid Dept Mecon Medios Continuos & Teoria Estruct Madrid Spain|FHECOR Consulting Engineers Madrid Spain;

    Univ Politecn Madrid Dept Ingn Geol & Minera Madrid Spain|Minist Def Escuela Politecn Super Ejercito Madrid Spain;

    Univ Salamanca Escuela Politecn Super Avila Salamanca Spain;

  • 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

    Field tests; LS-DYNA; CFRP; GFRP; Full-scale slabs;

    机译:现场测试;LS-DYNA;CFRP;GFRP;全尺寸平板;

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