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Combined effects of steel fiber and coarse aggregate size on the compressive and flexural toughness of high-strength concrete

机译:钢纤维和粗骨料尺寸对高强度混凝土抗压和抗弯韧性的综合影响

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This paper investigates the effects of steel fiber content and coarse aggregate size on the mechanical properties of high-strength concrete with a specified compressive strength value of 60 MPa. The paper also explores the correlation between the compressive and flexural toughness of high-strength steel fiber-reinforced concrete (SFRC). For this purpose, twelve high-strength SFRC mixtures with four fiber volume fraction of steel fiber (V-f = 0.5%, 1.0%, 1.5%, and 2.0%) and different aggregate sizes were designed and fabricated. Compressive and flexural tests for each concrete mixture were conducted, and the test results were used to investigate the effects of steel fiber volume fraction and aggregate size on the compressive and flexural toughness of high-strength SFRC prims. The results indicate that the mechanical properties of SFRC are related more closely to volume fraction than to aggregate size. The compressive and flexural toughness ratios of the SFRC significantly improved with an increase in fiber content. Also, equations that are suggested to determine the compressive toughness ratio based on the equivalent flexural strength ratio were used to predict the mechanical properties of the SFRC in this study.
机译:本文研究了钢纤维含量和粗骨料尺寸对指定抗压强度值为60 MPa的高强度混凝土力学性能的影响。本文还探讨了高强度钢纤维增强混凝土(SFRC)的抗压和抗弯韧性之间的关系。为此,设计并制造了十二种高强度SFRC混合物,其中钢纤维的纤维体积分数为四个(V-f = 0.5%,1.0%,1.5%和2.0%),并且骨料尺寸不同。对每种混凝土混合物进行了压缩和弯曲试验,测试结果用于研究钢纤维体积分数和集料尺寸对高强度SFRC底漆的压缩和弯曲韧性的影响。结果表明,SFRC的机械性能与体积分数的关系比与集料尺寸的关系更紧密。 SFRC的压缩和弯曲韧性比随纤维含量的增加而显着提高。此外,在本研究中,建议使用基于等效抗弯强度比确定抗压韧度比的方程式来预测SFRC的机械性能。

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