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Influence of Basalt FRP Mesh Reinforcement on High-Performance Concrete Thin Plates at High Temperatures

机译:玄武岩FRP钢筋网对高温下高性能混凝土薄板的影响

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摘要

A basalt fiber-reinforced polymer (BFRP) mesh was introduced as reinforcement in high-performance concrete (HPC) thin plates (20-30mm) for implementation in precast sandwich panels. An experimental program studied the BFRP mesh influence on HPC exposed to high temperature. A set of standard furnace tests compared performances of HPC with and without BFRP mesh, assessing material behavior; another set including polypropylene (PP) fibers to avoid spalling compared the performance of BFRP mesh reinforcement to that of regular steel reinforcement, assessing mechanical properties. Stereomicroscope observations before and after fire testing focused on the interface between HPC and BFRP mesh and its change with temperature exposure. BFRP mesh showed tendency to reduce the probability of HPC spalling without solving this issue. BFRP mesh alone leads to mechanical failure of concrete elements, requiring the use of steel. Microscope observations highlighted degradation of the HPC-BFRP mesh interface with temperature due to the melting polymer matrix of the mesh. These observations call for caution when using fiber-reinforced polymer (FRP) reinforcement in elements exposed to fire hazard. (C) 2015 American Society of Civil Engineers.
机译:引入了玄武岩纤维增强聚合物(BFRP)网作为高性能混凝土(HPC)薄板(20-30mm)中的增强材料,以用于预制夹芯板。一个实验程序研究了BFRP网格对暴露于高温下的HPC的影响。一组标准的炉子测试比较了有无BFRP筛网的HPC性能,评估了材料的性能。为了避免剥落,另一组包括聚丙烯(PP)纤维避免了剥落,将BFRP网眼钢筋的性能与常规钢钢筋的性能进行了比较,从而评估了机械性能。防火测试前后的立体显微镜观察主要集中在HPC和BFRP网格之间的界面及其随温度变化的变化。 BFRP网格显示出降低HPC剥落可能性的趋势,而没有解决该问题。单独的BFRP网格会导致混凝土构件的机械故障,需要使用钢。显微镜观察强调了由于网状物的聚合物基体熔化,HPC-BFRP网状物界面随温度的下降。当在暴露于火灾隐患的元件中使用纤维增强聚合物(FRP)增强材料时,这些观察结果需要引起注意。 (C)2015年美国土木工程师学会。

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