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Comparison of flexural property between high performance polypropylene fiber reinforced lightweight aggregate concrete and steel fiber reinforced lightweight aggregate concrete

机译:高性能聚丙烯纤维轻骨料混凝土与钢纤维轻骨料混凝土抗弯性能的比较。

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摘要

The main purpose of this study was to investigate the flexural property of high performance polypropylene fiber reinforced lightweight aggregate concrete (HPPLWC) and steel fiber reinforced lightweight aggregate concrete (SFLWC). Firstly, two widely used standards (ASTM C1609 and JSCE SF-4) were used to evaluate their flexural toughness. Meanwhile, the advantages and disadvantages of these two methods in evaluating the flexural toughness of HPPFLWC and SFLWC were analyzed. Then, a new toughness evaluating method specified in JG/T 472-2015 was used. In addition, the optimal fiber content was proposed according to the flexural toughness of fiber reinforced lightweight aggregate concrete. The results showed that the optimal high performance polypropylene fiber (HPPF) content and steel fiber (SF) content were 1.1 vol% and 2.0 vol% respectively. SFs performed better on improving the equivalent initial flexural strength and equivalent residual flexural strength than HPPFs. HPPFs' effectiveness on post peak behavior was higher than its effectiveness on pre-peak behavior. However, SFs performed better on pre-peak behavior than its effect on post-peak behavior. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的主要目的是研究高性能聚丙烯纤维增强轻骨料混凝土(HPPLWC)和钢纤维增强轻骨料混凝土(SFLWC)的抗弯性能。首先,使用两种广泛使用的标准(ASTM C1609和JSCE SF-4)评估其挠曲韧性。同时,分析了这两种方法在评价HPPFLWC和SFLWC的弯曲韧性方面的优缺点。然后,使用了JG / T 472-2015中指定的新的韧性评估方法。另外,根据纤维增强轻骨料混凝土的抗弯韧性,提出了最佳纤维含量。结果表明,最佳高性能聚丙烯纤维(HPPF)含量和钢纤维(SF)含量分别为1.1vol%和2.0vol%。与HPPF相比,SF在改善等效初始抗弯强度和等效残余抗弯强度方面表现更好。 HPPF对峰值后行为的有效性高于其峰值前行为的有效性。但是,SF在峰前行为上的表现要好于峰后行为。 (C)2017 Elsevier Ltd.保留所有权利。

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