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A Study of the Flexural Behavior of Fiber-Reinforced Concretes Exposed to Moderate Temperatures

机译:纤维增强混凝土弯曲行为的研究暴露于中等温度

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摘要

The use of synthetic fibers in fiber-reinforced concretes (FRCs) is often avoided due to the mistrust of lower performance at changing temperatures. This work examines the effect of moderate temperatures on the flexural strengths of FRCs. Two types of polypropylene fibers were tested, and one steel fiber was employed as a reference. Three-point bending tests were carried out following an adapted methodology based on the standard EN 14651. This adapted procedure included an insulation system that allowed the assessment of FRC flexural behavior after being exposed for two months at temperatures of 5, 20, 35 and 50 °C. In addition, the interaction of temperature with a pre-cracked state was also analyzed. To do this, several specimens were pre-cracked to 0.5 mm after 28 days and conditioned in their respective temperature until testing. The findings suggest that this range of moderate temperatures did not degrade the behavior of FRCs to a great extent since the analysis of variances showed that temperature is not always a significant factor; however, it did have an influence on the pre-cracked specimens at 35 and 50 °C.
机译:由于在变化温度下的性能下降,通常避免在纤维增强混凝土(FRC)中使用合成纤维。这项工作探讨了中等温度对FRC弯曲优势的影响。测试两种类型的聚丙烯纤维,并采用一种钢纤维作为参考。基于标准EN 14651的适当方法进行三点弯曲试验。该适当的程序包括绝缘系统,允许在5,200,35和50的温度下暴露两个月后评估FRC弯曲行为。 °C。此外,还分析了温度与预破裂状态的相互作用。为此,在28天后,几种样本在0.5天后预裂至0.5mm,并在其各自的温度下调节直至测试。结果表明,由于对差异的分析表明,这种温度在很大程度上没有降低FRC的行为,因为差异显示温度并不总是一个重要因素;但是,它确实对35和50℃的预破裂的样品产生了影响。

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