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首页> 外文期刊>Construction and Building Materials >Effect of groove characteristics on CFRP-to-concrete bond behavior of EBROG joints: Experimental study using particle image velocimetry (PIV)
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Effect of groove characteristics on CFRP-to-concrete bond behavior of EBROG joints: Experimental study using particle image velocimetry (PIV)

机译:沟槽特性对EBROG接头CFRP与混凝土粘结行为的影响:使用粒子图像测速仪(PIV)的实验研究

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摘要

Externally bonded reinforcement on grooves (EBROG) technique has been recently introduced as a promising alternative to conventional externally bonded reinforcement (EBR) to eliminate debonding of fiber reinforced polymer (FRP) sheets from concrete substrate. FRP-to-concrete bond behavior in EBROG technique, however, has not been comprehensively investigated up to now due to the novelty of the technique. Consequently, the intention of the current study is to experimentally investigate the effect of groove characteristics on CFRP-to-concrete bond behavior of EBROG joints. To do so, a set of single-shear bond tests were conducted on 9 concrete prism specimens and the effects of groove dimensions (i.e. width and depth) on CFRP-to-concrete bond behavior of tested specimens including load bearing, failure mode, load-slip behavior, and strain distribution were discussed. Bond-slip behavior of CFRP sheets in EBROG technique was obtained for the first time, utilizing an accurate image-based deformation measurement technique, i.e. particle image velocimetry (PIV). PIV analyses demonstrated that EBROG technique can significantly improve the interfacial fracture characteristics of CFRP-to-concrete bonded joints.
机译:沟槽外增强粘结(EBROG)技术最近被引入,有望取代传统的外增强增强(EBR),以消除纤维增强聚合物(FRP)板从混凝土基材上的脱粘。然而,由于该技术的新颖性,目前尚未对EBROG技术中的FRP与混凝土的粘结行为进行全面研究。因此,本研究的目的是通过实验研究沟槽特性对EBROG接头CFRP与混凝土的粘结行为的影响。为此,在9个混凝土棱镜样品上进行了一组单剪切粘结测试,以及沟槽尺寸(即宽度和深度)对测试样品的CFRP与混凝土粘结性能的影响,包括承载力,破坏模式,载荷讨论了滑移行为和应变分布。利用基于图像的精确变形测量技术(即粒子图像测速(PIV)),首次获得了EBROG技术中CFRP片材的粘结滑移行为。 PIV分析表明,EBROG技术可以显着改善CFRP与混凝土粘结接头的界面断裂特性。

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