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Impact of elevated temperature on the mechanical properties of cement mortar reinforced with rope waste fibres

机译:高温升温对水泥砂浆机械性能的影响,用绳式废纤维加固

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The exposure of concrete or cement mortars to fire or other elevated temperatures negatively affects the mechanical properties, and a change may also occur in the pore structures, leading to cracking and spalling. In order to hinder or reduce the negative impact of elevated temperature on cement mortar, as well as to promote reuse of waste in the concrete industry to improve the environment, this study aims to investigate the effect of elevated temperature on the mechanical properties of cement mortar reinforced with rope waste fibres (RWF). The fibres were obtained by cutting a used polymeric rope (0.034 mm in diameter) into small fibres with average lengths of 12 mm. Four mortar mixtures, including one reference mixture (without fibres) and three mixtures containing RWF in proportions of 0.25%, 0.5% and 0.75%) (by mortar weight), were cast. After 28 days of curing, the hardened specimens were air dried for at least two weeks, and some specimens were exposed to a controlled temperatures of 300 and 600 °C for two hours, while the others were placed at ambient temperature. All specimens were then examined via compressive strength, flexural strength, mass loss, ultrasonic pulse velocity and visual inspection tests. The results indicated that RWF can prevent cracks appearing at 600 °C; however, the RWF had a negative impact on the compressive strength of the mortar under elevated temperatures, despite the flexural strength and UPV properties being improved significantly.
机译:将混凝土或水泥砂浆的暴露在火灾或其他升高的温度下产生负面影响,并且在孔结构中也可能发生变化,导致开裂和剥落。为了阻碍或减少水泥砂浆的温度升高的负面影响,并促进混凝土行业中的废物再利用,以改善环境,旨在探讨温度升高对水泥砂浆机械性能的影响用绳索废纤维(RWF)加固。通过将使用的聚合物绳索(0.034mm的直径)切割成小纤维来获得纤维,平均长度为12mm。铸造了四种砂浆混合物,包括一种参考混合物(不含纤维)和含有0.25%,0.5%和0.75%的RWF的三种混合物,铸造。在固化28天后,将硬化的标本空气干燥至少两周,并且将一些样品暴露于300和600℃的受控温度下2小时,而其他试样将其他试样暴露于300和600℃的温度下。然后通过抗压强度,弯曲强度,质量损失,超声波脉冲速度和目视检查检查所有标本。结果表明,RWF可以防止出现在600°C的裂缝;然而,尽管弯曲强度和UPV性能显着改善,但RWF对砂浆的压缩强度产生负面影响。

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