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Experimental study of the flexural response of steel beams strengthened with anchored hybrid composites

机译:锚固混杂复合材料加固钢梁的弯曲响应试验研究。

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This paper proposes an innovative technique for flexural strengthening of steel beams using a special type of drillable fiber reinforced polymer laminates. The utilized laminates are hybrid carbon-glass fiber (CFRP-GRFP) pultruded strips that provide both high tensile and high bearing strengths. The current study explores experimentally the potential enhancement in the flexural capacity of steel beams strengthened with mechanically anchored CFRP-GFRP laminates. The experimental program involves flexural testing of eleven full-scale beams under three-point loading. The influence of various strengthening parameters including length and thickness of FRP laminates, and number of anchoring bolts on the behavior is investigated. The experimental results reveal that increasing length and/or thickness of the FRP laminates improves the ultimate capacity of the strengthened sections. Strengthened beams are shown to exhibit ductile response associated with high deflection if adequate number of anchors is used. Otherwise, a brittle failure takes place because of shear failure in the anchors connecting FRP laminates to the steel beam. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种创新技术,该技术使用一种特殊类型的可钻纤维增强聚合物层压板来抗弯加固钢梁。所用的层压板是混合碳纤维玻璃纤维(CFRP-GRFP)拉挤条,可提供高拉伸强度和高承载强度。当前的研究通过实验探索了用机械锚固的CFRP-GFRP层压板加固的钢梁的抗弯能力的潜在提高。实验程序包括在三点载荷下对十一个全尺寸梁进行挠曲测试。研究了各种加固参数(包括FRP层压板的长度和厚度以及地脚螺栓的数量)对性能的影响。实验结果表明,增加FRP层压板的长度和/或厚度可提高加固型材的极限承载力。如果使用足够数量的锚,则加固梁将表现出与高挠度相关的延性响应。否则,由于将FRP层压板连接到钢梁的锚固件中的剪切破坏,会发生脆性破坏。 (C)2015 Elsevier Ltd.保留所有权利。

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