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Efficient hybrid strengthening for precast hollow core slabs at low and high shear span to depth ratios

机译:在低和高剪切跨度与深度比率下对预制空心板进行有效的混合加固

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摘要

Prestressed hollow core slabs are widely used in precast construction. The objective of this study is to understand the efficiency of hybrid strengthening technique at different levels of flexure to shear or shear span (a) to depth (d) ratios. Hybrid strengthening technique includes bonded overlay on the compression side and carbon fiber reinforced polymer (CFRP) composites on the tension side. Two different techniques are employed for the application of CFRP composites namely Near Surface Mounted (NSM) or Externally Bonded (EB). Fourteen full scale prestressed precast hollow core slabs were strengthened using different combinations of these techniques and tested at low (a/d = 3.75) and high (a/d = 7.50) shear span to depth ratio. The bonded overlay strengthening increased the peak strength by 59.2% and 89.0% respectively at low and high shear span to depth ratios. The externally bonded strengthening solely increased the peak strength by 16.9% and 87.6% at low and high aid ratios, respectively. The NSM strengthening increased the peak strength by 49.4% and 68.9% at low and high a/d ratios respectively. Hybrid strengthening resulted in the best performance with highest increase in peak strength at both a/d ratios without a significant reduction in the ultimate displacement. (C) 2017 Elsevier Ltd. All rights reserved.
机译:预应力空心板广泛用于预制建筑。这项研究的目的是了解在不同水平挠曲与剪切或剪切跨度(a)与深度(d)的比率下,混合强化技术的效率。混合强化技术包括压缩侧的粘合覆盖层和拉伸侧的碳纤维增强聚合物(CFRP)复合材料。 CFRP复合材料的应用采用两种不同的技术,即近表面安装(NSM)或外部粘结(EB)。使用这些技术的不同组合对十四个全尺寸预应力预制空心板进行了加固,并在低(a / d = 3.75)和高(a / d = 7.50)剪切跨度与深度之比下进行了测试。在低和高剪切跨度与深度的比率下,粘结的覆盖层强化分别使峰值强度增加了59.2%和89.0%。在低和高辅助比下,外部结合的强化仅使峰值强度分别增加了16.9%和87.6%。在低和高a / d比下,NSM强化分别使峰值强度增加了49.4%和68.9%。混合强化产生了最佳性能,在两种模数比下,峰值强度都有最大的提高,而最终位移却没有明显降低。 (C)2017 Elsevier Ltd.保留所有权利。

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