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Processes of Cracking and Crushing in Hybrid Fibre Reinforced High-Performance Concrete Slabs

机译:杂交纤维增强高性能混凝土板裂纹和粉碎过程

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摘要

This paper presents the experimental results obtained with the non-contact three-dimensional deformation measuring system–ARAMIS and finite element analysis performed using ANSYS of three slabs made of high-performance concrete (HPC) and hybrid (steel/ST and polypropylene/PP) fibre reinforced high-performance concrete (FRHPC). The research was performed on reinforced concrete (RC) slabs with a web mesh of ϕ8 mm bars. All the slabs had an identical amount of steel bars and differed by the fibre volume content. The main objective of the research was to determine the impact of adding polypropylene and steel fibres on the carrying capacity and ductility of HPC slabs. Analysis of the results was conducted based on load–deflection curves, crack distribution, vertical displacements and strains. The research findings indicate that fibres may improve peak strength. The presence of PP and ST hybrid fibres in HPC restricted the propagation of cracks. The energy absorption capacity as well as the ductility index of HPC can be raised by adding hybrid fibres. A comparison of the experimental test results with the nonlinear finite element analysis is made. The numerical results concurred well with the experimental data. The research results indicate that non-contact measurement of deformation is an effective tool for monitoring crushing in FRHPC slabs.
机译:本文介绍了采用非接触式三维变形测量系统 - 芳纶和有限元分析,使用由高性能混凝土(HPC)和杂交(钢/ ST和聚丙烯/ PP)的三个板式进行的ANSYS进行的有限元分析纤维增强高性能混凝土(FRHPC)。在具有φ8mm条的卷材滤网上对钢筋混凝土(RC)板进行了研究。所有板坯的所有钢筋都具有相同的钢筋,并且通过纤维体积含量不同。该研究的主要目的是确定将聚丙烯和钢纤维添加到HPC板携带能力和延展性上的影响。基于载荷偏转曲线,裂缝分布,垂直位移和菌株进行结果分析。研究结果表明纤维可以提高峰值强度。 HPC中PP和ST杂交纤维的存在限制了裂缝的传播。通过添加混合纤维,可以提高能量吸收能力以及HPC的延展性指数。对非线性有限元分析进行了实验试验结果的比较。数值结果与实验数据很好。研究结果表明,变形的非接触式测量是用于监测FRHPC板坯中的粉碎的有效工具。

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  • 作者

    Piotr Smarzewski;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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