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Experimental evaluation of bonded overlay and NSM GFRP bar strengthening on flexural behavior of precast prestressed hollow core slabs

机译:粘结覆盖层和NSM GFRP筋对预制预应力空心板抗弯性能的试验评估

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A hollow core slab is a precast prestressed concrete member with longitudinal cores that reduce its self-weight. Strengthening of prestressed hollow core slabs is required for several reasons to maintain their structural integrity. The main focus of this research is to understand the flexural behavior of hollow core slabs and failure modes with hybrid strengthening techniques including bonded overlay and near surface mounted (NSM) glass fiber reinforced polymer (GFRP) bars. The test variables include different strengthening techniques such as (i) bonded overlay with and without shear keys, (ii) NSM GFRP rebar and (iii) hybrid strengthening combination which includes a thin bonded overlay in the compression region and NSM GFRP bars in the tension region. A total of seven full scale slabs were cast, strengthened and tested until failure. Test results show that bonded overlay increases the flexural strength by 89% without much compromise on the ductility when compared to control slab, whereas NSM GFRP bar strengthening increases the strength by about 100% but with reduced ductility. Hybrid strengthening led to a highest increase in the ultimate strength (about 200%) and ductility when compared to only NSM and only bonded overlay strengthening. (C) 2016 Elsevier Ltd. All rights reserved.
机译:空心板是预制的预应力混凝土构件,其纵向芯减少了其自重。由于一些原因需要加强预应力空心板,以保持其结构完整性。这项研究的主要重点是通过混合强化技术(包括粘结覆盖层和近表面安装(NSM)玻璃纤维增​​强聚合物(GFRP)钢筋)来了解空心板的弯曲行为和破坏模式。测试变量包括不同的加固技术,例如(i)有和没有剪切键的粘结覆盖层,(ii)NSM GFRP钢筋和(iii)混合加固组合,其中压缩区域包括薄粘结覆盖层,而拉力包括NSM GFRP钢筋区域。总共铸造,加固和测试了七个全尺寸平板,直到失效。测试结果表明,与对照板相比,粘结覆盖层可将抗弯强度提高89%,而对延展性没有太大的影响,而NSM GFRP筋加固可将强度提高约100%,但延展性降低。与仅NSM和仅粘结覆面强化相比,混合强化导致极限强度(约200%)和延性的最高增加。 (C)2016 Elsevier Ltd.保留所有权利。

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