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Impact resistance of deflection-hardening fiber reinforced concretes with different mixture parameters

机译:不同混合参数偏转硬化纤维增强混凝土的抗冲击性

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摘要

The impact behavior of deflection-hardening High Performance Fiber Reinforced Cementitious Concretes (HPFRCs) was evaluated herein. During the preparation of HPFRCs, fiber type and amount, fly ash to Portland cement ratio and aggregate to binder ratio were taken into consideration. HPFRC beams were tested for impact resistance using free-fall drop-weight test. Acceleration, displacement, and impact load versus time graphs were constructed and their relationship to the proposed mixture parameters were evaluated. The paper also aims to present and verify a nonlinear finite element analysis, employing the incremental nonlinear dynamic analysis, concrete damage plasticity model, and contact surface between the dropped hammer and test specimen available in ABAQUS. The proposed modeling provides extensive and accurate data on structural behavior, including acceleration, displacement profiles, and residual displacement results. Experimental results which are further confirmed by numerical studies show that impact resistance of HPFRC mixtures can be significantly improved by a proper mixture proportioning. In the presence of high amounts of coarse aggregates, fly ash, and increased volume of hybrid fibers, impact resistance of fiberless reference specimens can be modified in a way to exhibit relatively smaller displacement results after impact loading without risking the basic mechanical properties and deflection-hardening response with multiple cracking.
机译:本文评估了挠曲硬化高效纤维增强胶凝液(HPFRC)的冲击性能。在制备HPFRCS,纤维型和量期间,考虑粉煤灰与波特兰水泥比和骨料比例。使用自由坠落滴重试验测试HPFRC梁进行抗冲击性。建立加速,位移和冲击载荷与时间图,并评估与所提出的混合物参数的关系。本文还旨在展示和验证非线性有限元分析,采用增量非线性动态分析,混凝土损伤塑性模型和滴锤与ABAQUS的试样之间的接触表面。该建模提供了关于结构行为的广泛和准确的数据,包括加速,位移轮廓和残留位移结果。通过数值研究进一步证实的实验结果表明,通过适当的混合物比例可以显着提高HPFRC混合物的抗冲击性。在存在大量粗聚集体的存在下,粉煤灰和杂化纤维的量增加,无纤维参考样品的抗冲击性可以以冲击载荷后表现出相对较小的位移结果而不冒着基本机械性能和偏转 - 多裂解的硬化反应。

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