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Investigating the mechanical and microstructure properties of fibre-reinforced lightweight concrete under elevated temperatures

机译:升高温度下纤维增强轻质混凝土的机械和微观结构性能

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摘要

This study investigated the mechanical properties and elevated temperatures of lightweight concrete (LWC) incorporating polypropylene fibre (PPF) and glass fibre (GF). The experimental research used five types of concrete mixtures, which were produced to indicate the effects of PPF and GF. Fibres were added in two ratios (i.e. 0.2 % and 0.4 %) by volume of concrete. A lightweight pumice aggregate was used as a coarse aggregate with a ratio of 65 %. The fresh and hardened LWC properties, such as slump, unit weight, compressive, tensile and flexural strengths, of LWC were analysed. Compressive, flexural strengths and microstructural analysis were investigated under elevated temperatures at ambient temperature, 200 °C, 400 °C and 600 °C for 2 h of exposure time. Flexural and tensile strengths increased by 53 % and 38 % for mixtures containing 0.4 % GF, respectively. Compressive and flexural strengths of the LWC exposed to elevated temperature were improved by adding GF. PPF increased the number of pores of the concrete structure, and elevated temperature resulted in numerous cracks owing to the evaporation of numerous fibres and the replacement of air voids. Consequently, a considerable reduction in compressive and flexural strengths was observed.
机译:本研究研究了聚丙烯纤维(PPF)和玻璃纤维(GF)的轻质混凝土(LWC)的机械性能和高温。实验研究使用了五种类型的混凝土混合物,其产生了指示PPF和GF的影响。用混凝土的体积分三个比例(即0.2%和0.4%)加入纤维。轻质浮石骨料用作粗骨料,比率为65%。分析了LWC的新鲜和硬化的LWC性能,例如坍落度,单位重量,压缩,拉伸和抗弯强度。在环境温度,200℃,400℃和600℃的升高温度下进行压缩,弯曲强度和微观结构分析,曝光时间为2小时。弯曲和拉伸强度分别含有0.4%GF的混合物的增加53%和38%。通过添加GF,改善了暴露于升高温度的LWC的压缩和弯曲强度。 PPF增加了混凝土结构的孔的数量,并且由于许多纤维的蒸发和空隙的蒸发而升高的温度导致了许多裂缝。因此,观察到压缩和弯曲强度相当大的降低。

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