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Strength prediction models for steel, synthetic, and hybrid fiber reinforced concretes

机译:钢,合成纤维和混合纤维增强混凝土的强度预测模型

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摘要

This paper proposes new strength models to predict compressive, splitting tensile and flexural strengths of steel, synthetic and hybrid fiber reinforced concretes. The strength models depending on fiber reinforcing index, concrete compressive strength, and fiber volume fraction have been developed by multiple regression analyses of the experimental results obtained from a comprehensive experimental program. Twenty-five concrete batches, one control and 24 fiber reinforced concrete with target compressive strength of 40MPa were produced. Steel and synthetic fibers, namely hooked-end steel (HF) and polyamide (PA) synthetic fibers of total volume of 0.25, 0.5, and 0.75% were added in single and hybrid forms to concrete mixes. Moreover, the predictions of the proposed strength models have been compared with the existing strength models in the literature. The test results clearly showed that the predictions of the proposed strength models are more accurate than the existing strength models for compressive, splitting tensile and flexural strengths of all the fiber types. Although the existing strength models may be applicable to the prediction of compressive strength of steel, synthetic, hybrid fiber reinforced concrete (FRC), they may not be safely used for splitting tensile and flexural strength of steel, synthetic and hybrid FRC.
机译:本文提出了新的强度模型,以预测钢,合成纤维和混合纤维增强混凝土的抗压,劈裂抗拉强度和抗弯强度。通过对综合实验程序获得的实验结果进行多元回归分析,建立了取决于纤维增强指数,混凝土抗压强度和纤维体积分数的强度模型。生产了25批混凝土,1份对照和24根纤维增强混凝土,目标抗压强度为40MPa。将钢和合成纤维,即总体积分别为0.25%,0.5%和0.75%的带钩钢(HF)和聚酰胺(PA)合成纤维以单一形式和混合形式添加到混凝土混合物中。此外,所提出的强度模型的预测已与文献中现有的强度模型进行了比较。测试结果清楚地表明,对于所有纤维类型的抗压强度,劈裂强度和弯曲强度,所提出的强度模型的预测比现有强度模型的预测更为准确。尽管现有的强度模型可能适用于预测钢,合成纤维,混合纤维增强混凝土(FRC)的抗压强度,但它们可能无法安全地用于拆分钢,合成纤维和混合FRC的拉伸强度和弯曲强度。

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