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Dynamic performance of concrete slabs reinforced with steel and GFRP bars under impact loading

机译:冲击载荷作用下钢和GFRP筋混凝土板的动力性能

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Reinforced concrete slabs are common structural elements that could be exposed to impact loading. Although use of reinforced concrete slabs and utilization of Fiber Reinforced Polymer (FRP) as alternative to traditional steel reinforcement slabs are growing, but the influence of various parameters on their response under impact loads is not properly evaluated. This study investigated the effect of rebar's material, amount and arrangement of reinforcements, concrete strength and slab thickness on dynamic behavior of reinforced concrete slabs using both laboratory experiments and numerical simulations. Performance of fifteen 1000 x 1000 mm concrete slabs, including two 75 mm thick plain slabs, five 75 mm thick steel reinforced concrete slabs, six 75 mm thick reinforced concrete slabs with Glass Fiber Reinforced Polymer (GFRP) bars and two 100 mm thick steel reinforced concrete slabs under drop weight impact loads was experimentally investigated. Failure mode, crack development, displacement-time, strain-time, and acceleration-time responses were studied and compared between various slabs. Finite element analyses and simulation of specimens were conducted using LS-DYNA explicit software. The results obtained from experiments and numerical models are in good agreement, and they indicate that increasing the reinforcement ratio or the slab thickness enhance the behavior of RC slabs under impact loads. By adjusting the amount and arrangement of GFRP, better performance in GFRP slabs than steel reinforced slabs can be achieved, which considering the corrosion resistance of this material, can make it an appropriate selection of reinforcement material.
机译:钢筋混凝土平板是常见的结构元件,可能会承受冲击载荷。尽管使用钢筋混凝土板和使用纤维增强聚合物(FRP)代替传统的钢增强板的趋势正在增长,但是并未正确评估各种参数对其在冲击载荷下的响应的影响。本研究通过实验室实验和数值模拟研究了钢筋材料,钢筋数量和布置,混凝土强度和板厚度对钢筋混凝土板动力特性的影响。 15个1000 x 1000 mm的混凝土板的性能,包括两个75 mm厚的普通板,五个75 mm厚的钢筋混凝土板,六个带有玻璃纤维增​​强(GFRP)棒的75 mm厚的钢筋混凝土板和两个100 mm厚的钢增强板实验研究了落锤冲击载荷下的混凝土板。研究了失效模式,裂纹发展,位移时间,应变时间和加速时间响应,并在各种平板之间进行了比较。使用LS-DYNA显式软件进行了样品的有限元分析和模拟。从实验和数值模型获得的结果吻合良好,它们表明增加钢筋的配比或板的厚度可以增强RC板在冲击载荷下的性能。通过调整GFRP的数量和排列方式,可以使GFRP板的性能优于钢增强板,考虑到这种材料的耐腐蚀性,可以使其成为增强材料的合适选择。

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