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Mechanical Behavior of Steel Fiber-Reinforced Concrete Beams Bonded with External Carbon Fiber Sheets

机译:碳纤维薄板粘结钢纤维增强混凝土梁的力学性能

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This study investigates the mechanical behavior of steel fiber-reinforced concrete (SFRC) beams internally reinforced with steel bars and externally bonded with carbon fiber-reinforced polymer (CFRP) sheets fixed by adhesive and hybrid jointing techniques. In particular, attention is paid to the load resistance and failure modes of composite beams. The steel fibers were used to avoiding the rip-off failure of the concrete cover. The CFRP sheets were fixed to the concrete surface by epoxy adhesive as well as combined with various configurations of small-diameter steel pins for mechanical fastening to form a hybrid connection. Such hybrid jointing techniques were found to be particularly advantageous in avoiding brittle debonding failure, by promoting progressive failure within the hybrid joints. The use of CFRP sheets was also effective in suppressing the localization of the discrete cracks. The development of the crack pattern was monitored using the digital image correlation method. As revealed from the image analyses, with an appropriate layout of the steel pins, brittle failure of the concrete-carbon fiber interface could be effectively prevented. Inverse analysis of the moment-curvature diagrams was conducted, and it was found that a simplified tension-stiffening model with a constant residual stress level at 90% of the strength of the SFRC is adequate for numerically simulating the deformation behavior of beams up to the debonding of the CFRP sheets.
机译:这项研究调查了钢纤维增强混凝土(SFRC)梁的内部受力钢筋,并与碳纤维增强聚合物(CFRP)板通过粘结和混合连接技术固定的外部粘结。特别要注意复合梁的抗荷载能力和破坏模式。钢纤维用于避免混凝土保护层的撕裂破坏。通过环氧树脂粘合剂将CFRP板固定到混凝土表面,并与各种直径的小直径钢钉组合以进行机械紧固,以形成混合连接。发现这样的混合接头技术通过促进混合接头内的渐进式破坏而在避免脆性脱胶破坏方面特别有利。 CFRP板的使用在抑制离散裂纹的局部化方面也很有效。使用数字图像相关方法监测裂纹图案的发展。从图像分析中可以看出,通过适当布置钢销,可以有效地防止混凝土-碳纤维界面的脆性破坏。对弯矩-曲率图进行了反分析,发现简化的拉伸-刚度模型具有恒定的残余应力水平,为SFRC强度的90%,足以对梁的变形行为进行数值模拟。 CFRP板剥离。

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