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The flexural performance of structural concrete beams reinforced with carbon textile fabrics

机译:碳纤维织物增强结构混凝土梁的抗弯性能

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The flexural behavior of carbon textile-reinforced concrete (TRC) beams was studied and compared with that of conventional steel-reinforced concrete (SRC) beams. Four types of TRC beams were examined of different fabric layers (2 and 4) and different shear reinforcements (steel cage rebars and U-shaped fabrics). The mode of failure and the flexural behavior were significantly influenced by the shear reinforcement configuration, such that greater flexural load-bearing capacity with no delamination was observed in the U-shaped fabric TRC beams, whereas the steel cage rebar TRC beams exhibited severe delamination with lower flexural load-bearing capacity. This difference was due to the mechanical anchoring of the U-shaped fabric to the matrix, which was not the case for the steel cage rebar TRC beams. A mathematical model for calculating the flexural tolerability of TRC beams at failure was developed, showing an excellent correlation with the experimental results.
机译:研究了碳纤维增强混凝土(TRC)梁的抗弯性能,并将其与传统的钢增强混凝土(SRC)梁进行了比较。研究了四种TRC梁,分别用于不同的织物层(2和4)和不同的剪力(钢笼式钢筋和U型织物)。破坏模式和抗弯性能受剪力配置的影响很大,因此在U形织物TRC梁中观察到更大的挠曲承载能力而没有分层,而钢笼钢筋TRC梁则表现出严重的分层。较低的挠曲承载力。这种差异是由于将U形织物机械锚固到基体上,而钢笼钢筋TRC梁则不是这种情况。建立了计算TRC梁破坏时的挠曲耐受性的数学模型,该模型与实验结果具有很好的相关性。

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