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首页> 外文期刊>Composite Structures >Strengthening of elevated home slabs on grade with external fiber-reinforced polymer (FRP) laminate
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Strengthening of elevated home slabs on grade with external fiber-reinforced polymer (FRP) laminate

机译:用外纤维增强聚合物(FRP)层压材料加强升高的家庭平板

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摘要

Concrete slab on grade homes are being increasingly elevated above the base flood elevation for mitigation of coastal and inland flooding. This is typically accomplished through placing additional beam and pier supports under a raised slab home. In this process, the slab support conditions are changed from uniform soil support to beam supports. This may lead to unanticipated stress/strain changes, concrete cracks and slab failure. This paper presents a numerical parametric study of such elevated slabs with non-linear finite element approach. The models were calibrated with data obtained from full-scale testing of two concrete slabs under uniform floor load, one of which was retrofitted with external carbon fiber reinforced polymer (CFRP) laminates at critical locations. The slabs were supported by typical wide-flange steel beams over hollow square concrete block masonry piers. The results showed that typical elevated slabs can behave in a brittle manner with low ductility and sudden explosive collapse. A single layer of a uniaxial CFRP application at the negative moment locations increased the floor load capacity by about 30% and more than three times the minimum building code specified live load. Increased beam spacing and lower slab thickness decreased the slab load capacity, as expected.
机译:级别的混凝土板越来越高于沿海和内陆洪水缓解的基础洪水升高。这通常通过将额外的光束和墩支撑件放置在凸起的板坯之下来实现。在该过程中,板坯支撑条件从均匀的土壤支撑件改变为梁支撑件。这可能导致意外的应力/应变变化,混凝土裂缝和板坯衰竭。本文介绍了具有非线性有限元方法这种升高的板坯的数值参数研究。使用从均匀的地板载荷下的两个混凝土板的全尺度测试中获得的数据进行校准,其中一个是在关键位置的外部碳纤维增强聚合物(CFRP)层压物。典型的宽法兰钢梁支撑在空心方形混凝土砌块砌块上。结果表明,典型的升高板可以以低延展性和突然爆炸塌陷的脆性方式行事。在负时刻位置的一层单轴CFRP应用程序将楼层负载容量增加约30%,最小建筑代码指定的Live Load的最小建筑码超过三倍。随着预期的预期,增加的光束间距和较低的板坯厚度降低了平板负载能力。

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