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Comparison of effects of basalt and polyacrylonitrile fibers on toughness behaviors of lightweight aggregate concrete

机译:玄武岩和聚丙烯腈纤维对轻质骨料混凝土韧性行为的效果比较

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To study the effects of fibers on the compressive and flexural toughness of lightweight aggregate concrete (LWAC), an experimental investigation of fiber-reinforced LWACs subjected to compressive and flexural loading conducted. In the study, basalt fibers (BFs) and polypropylene fibers (PANFs) are used as the reinforcing materials in 0.5%, 1.0%, and 1.5% volume fractions. The test results show that, except LYB0.5, BFs and PANFs can improve axial compressive strength, and BFs exhibit better improvement effect than PANFs under the same volume fraction. Moreover, compared to the plain LWAC specimen, the LWACs with BF and PANF reinforcements present better compressive stress-strain and flexural load-deflection behaviors, and the descending branches of these plots become curved with fiber addition. Additionally, the energy ratio method and the critical stress method are utilized to calculate the compressive toughness behaviors of the LWACs, respectively. And the calculation results demonstrate that at a particular fiber volume fraction, BFs improve the compressive toughness more than PANFs due to the higher tensile strength and elastic modulus. Moreover, energy ratio method is suggested to calculate compressive toughness. In addition, four methods from different standards are utilized to evaluate the flexural toughness behaviors of the LWACs. The comparative analysis results exhibit that the methods from ASTM C1609, JSCE SF-4, and JG/T 472-2015 can be used, whereas that from ASTM C1018 leads to some errors originating from the inaccurate determination of the first crack station of specimens. And specimen with 1% BF or 1.5% PANF are suggested to improve the flexural toughness behavior of LWACs respectively. (C) 2021 Elsevier Ltd. All rights reserved.
机译:为研究纤维对轻质骨料混凝土(LWAC)的抗压性和抗压韧性的影响,对传导抗压和弯曲载荷进行纤维增强LWAC的实验研究。在研究中,玄武岩纤维(BFS)和聚丙烯纤维(PANF)用作0.5%,1.0%和1.5%体积级分的增强材料。测试结果表明,除了LYB0.5,BFS和PAN​​F外,BFS和PAN​​F可以提高轴向抗压强度,并且BFS在相同体积分数下表现出比PANF更好的改善效果。此外,与普通LWAC标本相比,具有BF和PANF增强件的LWAC具有更好的压缩应力 - 应变和弯曲载荷 - 偏转行为,并且这些图的下降分支被纤维添加弯曲。另外,利用能量比方法和临界应力法分别计算LWAC的压缩韧性行为。并且计算结果表明,由于较高的拉伸强度和弹性模量,BFS在特定的纤维体积分数上提高了比PANF的压缩韧性。此外,建议能量比法计算压缩韧性。此外,利用来自不同标准的四种方法来评估LWAC的弯曲韧性行为。比较分析结果表明,可以使用来自ASTM C1609,JSCE SF-4和JG / T 472-2015的方法,而来自ASTM C1018的一些误差导致源自标本第一裂纹站的不准确测定。建议分别提高LWACS的抗锐韧行为1%BF或1.5%PANF的标本。 (c)2021 elestvier有限公司保留所有权利。

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