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Does the Carbon Fibre Coating Reinforcement Have an Influence on the Bearing Capacity of High-Performance Self-Compacting Fibre-Reinforced Concrete?

机译:碳纤维涂层增强对高性能自密实纤维增强混凝土的承载能力有影响吗?

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摘要

This study investigated the impact of the location of a carbon fibre coated reinforcement ring (CFCRr) inside the structure of high-performance self-compacting fibre-reinforced concrete (HPSCFRC). Nowadays, cement matrix is considered as an alternative binder when reinforcing concrete structures with composite materials. Due to the plastic behavior of composite structures at relatively low temperatures when carbon fibres are reinforced with epoxy resin, the author attempted to locate carbon fibres inside a concrete structure. Thanks to this, the reinforcement will be less vulnerable to high temperatures (during a fire) and more compatible with concrete. The fibres act as a perimeter reinforcement that is compatible with the concrete mixture. The position of the CFCRr in the structure of concrete has an influence on the load capacity, stiffness and stress-strain behavior of concrete elements. The research was conducted on circular shape short concrete columns and tested under axial compression. The results demonstrated that by including CFCRr inside a concrete specimen, the maximum compressive strength decreases with an increase in the number of composite rings and a greater distance from the vertical axis of symmetry to the edge of the element. It has been proven in these studies that carbon fibres do not have good adhesive properties between CFCRr and a concrete mixture. As a result of this phenomenon, a shear surface is created, which leads to crack propagation along the CFCRr. Therefore, the presented idea of an internal CFCRr should not be used when designing new concrete structures.
机译:这项研究调查了高性能自密实纤维增强混凝土(HPSCFRC)结构内部碳纤维涂层增强环(CFCRr)位置的影响。如今,当用复合材料加固混凝土结构时,水泥基被认为是一种替代的粘合剂。当碳纤维用环氧树脂增强时,由于复合结构在较低温度下的塑性行为,因此作者试图将碳纤维定位在混凝土结构内部。因此,钢筋将不易受高温(在火灾中)的影响,而与混凝土更相容。纤维充当与混凝土混合物相容的周边增强材料。 CFCRr在混凝土结构中的位置会影响混凝土构件的承载能力,刚度和应力应变性能。该研究是在圆形短混凝土柱上进行的,并在轴向压缩下进行了测试。结果表明,通过将CFCRr包含在混凝土试样中,最大抗压强度会随着复合环数量的增加以及垂直对称轴到单元边缘的距离增加而降低。这些研究已证明,碳纤维在CFCRr与混凝土混合物之间没有良好的粘合性能。这种现象的结果是,产生了一个剪切表面,该剪切表面导致裂纹沿着CFCRr传播。因此,在设计新的混凝土结构时,不应使用提出的内部CFCRr想法。

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