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首页> 外文期刊>Journal of advanced concrete technology >Analytical Study on Shear Capacity Evaluation of RC Beams with PVA Short Fiber
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Analytical Study on Shear Capacity Evaluation of RC Beams with PVA Short Fiber

机译:PVA短纤维RC梁抗剪承载力分析研究。

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摘要

This paper reports experimental and analytical results of shear capacity evaluation of concrete beams reinforced by PVA short fibers. Loading tests were carried out on various reinforced concrete beams with PVA short fibers of varying types and content, shear reinforcement ratios, effective depths, and shear span-to-effective depth ratios, a/d . The analysis was carried out using the tension-softening model obtained from the material test to simulate the beam shear tests. >As a result of the investigation, it was confirmed that shear capacity is improved by mixing PVA short fibers in concrete and that the increase in shear capacity is governed by fiber content and beam effective depth. Further, effective fiber behavior was confirmed in beams showing the tied-arch resisting mechanism. As a result of analysis, it was confirmed that the effect of the tension-softening model for diagonal cracks was large in beams with a small a/d , and that the effect of the shear transfer model was large in beams with a large a/d . Based on comparison with experimental results, we recommend the combination of constitutive laws in the evaluation and analysis of the shear capacity of FRC beams.
机译:本文报道了PVA短纤维增强混凝土梁抗剪承载力评估的实验和分析结果。在具有不同类型和含量,剪切增强比,有效深度以及剪切跨度与有效深度比(a / d)的PVA短纤维的各种钢筋混凝土梁上进行了载荷测试。使用从材料试验获得的拉伸软化模型进行分析,以模拟梁的剪切试验。 >研究结果表明,通过在混凝土中掺入PVA短纤维可以提高剪切能力,并且剪切能力的提高取决于纤维含量和梁的有效深度。此外,在显示束缚拱抵抗机制的光束中证实了有效的纤维行为。分析的结果证实,对于a / d较小的梁,对角裂纹的拉伸软化模型的影响较大,对于具有a / d的梁,剪切传递模型的影响较大。大 a / d。在与实验结果进行比较的基础上,我们建议在FRC梁的抗剪承载力评估和分析中结合本构律。

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