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Toughness behaviour of high-performance lightweight foamed concrete reinforced with hybrid fibres

机译:混杂纤维增强高性能轻质泡沫混凝土的韧性

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Lightweight foamed concrete (LWFC) is a concrete having structural strength with lightweight density and high flowability. High-performance lightweight foamed concrete (HPLWFC) is used in modern concrete technology and intensively in the construction of high-rise buildings, long-span concrete structures, road sub-bases and other applications. The present work deals with the fresh and hardened properties of LWFC. The fresh properties of LWFC are measured with the flow and fresh density tests. The hardened properties tests include compressive strength, flexural strength, flexural toughness, static modulus of elasticity, ultrasonic pulse velocity, water absorption and oven-dry density. In addition, the study focuses mainly on the effect of the fibres added to LWFC mixes. Two types of fibre have been used: glass fibres and polypropylene fibres, and the combination of glass fibres (GF) and polypropylene fibres (PPF) to obtain hybrid fibres (GF+PPF). This study also focuses on the effect of hybrid fibres on the flexural toughness of HPLWFC. Trial mixes have been used to choose the optimum mix. The definition for choosing the best mix depended on three parameters: oven-dry density, flowability and compressive strength. The volume fraction of glass and polypropylene fibres are 0.06, 0.2, 0.4 and 0.6 %, and 0.2, 0.6, 1 and 1.4 % respectively. The percentages of hybrid fibres "GF + PPF" are "0.2 + 0.6", "0.4 + 0.6", "0.2 + 1" and "0.4 + 1" %. The results show that the greatest increments in the compressive and flexural strengths of LWFC are 51 and 21 % respectively due to the use of 0.6 % glass fibres. On the other hand, LWFC reinforced with polypropylene fibres exhibits only a minor increase in compressive, splitting tensile and flexural strengths. The best percentage of hybrid fibres yielding the highest increment in LWFC is "0.4 % GF + 0.6 % PPF". The results of flexural toughness tests indicate that the polypropylene fibres denote a higher efficiency in the flexural toughness than is the case with glass fibres. The flexural toughness results increase with the volume fraction of the fibres. The hybridization shows the best flexural toughness values due to the cooperative work of the glass and polypropylene fibres boost the performance of flexural toughness in pre-crack and post-crack zones. Therefore, the use of 0.4 % GF + 1 % PPF gives the best results in this regard.
机译:轻质泡沫混凝土(LWFC)是具有轻质密度和高流动性的结构强度的混凝土。高性能轻质泡沫混凝土(HPLWFC)用于现代混凝土技术,并广泛用于高层建筑,大跨度混凝土结构,路基和其他应用领域。目前的工作涉及LWFC的新鲜和硬化特性。 LWFC的新鲜特性通过流量和新鲜密度测试进行测量。硬化性能测试包括抗压强度,弯曲强度,弯曲韧性,静态弹性模量,超声脉冲速度,吸水率和烘箱干燥密度。此外,研究主要集中在添加到LWFC混合物中的纤维的效果上。已使用两种类型的纤维:玻璃纤维和聚丙烯纤维,以及玻璃纤维(GF)和聚丙烯纤维(PPF)的组合以获得混合纤维(GF + PPF)。这项研究还集中在混合纤维对HPLWFC弯曲韧性的影响。尝试混合已用于选择最佳混合。选择最佳混合物的定义取决于三个参数:烘箱干燥密度,流动性和抗压强度。玻璃纤维和聚丙烯纤维的体积分数分别为0.06%,0.2%,0.4%和0.6%,以及0.2%,0.6%,1%和1.4%。混合纤维“ GF + PPF”的百分比为“ 0.2 + 0.6”,“ 0.4 + 0.6”,“ 0.2 + 1”和“ 0.4 + 1”%。结果表明,由于使用0.6%的玻璃纤维,LWFC的抗压强度和抗弯强度的最大增量分别为51%和21%。另一方面,用聚丙烯纤维增强的LWFC的抗压强度,劈裂抗张强度和挠曲强度仅表现出很小的提高。在LWFC中产生最高增量的杂化纤维的最佳百分比是“ 0.4%GF + 0.6%PPF”。弯曲韧性测试的结果表明,聚丙烯纤维比玻璃纤维具有更高的弯曲韧性效率。弯曲韧性结果随纤维的体积分数而增加。由于玻璃纤维和聚丙烯纤维的协同作用提高了裂纹前和裂纹后区域的弯曲韧性,因此杂化显示出最佳的弯曲韧性值。因此,就此而言,使用0.4%GF + 1%PPF可获得最佳效果。

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