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Analytical Modeling of the Postcracking Response Observed in Hybrid Steel/Polypropylene Fiber-Reinforced Concrete

机译:杂交钢/聚丙烯纤维钢筋混凝土中观察到的后传播响应的分析模型

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摘要

This study deals with the analytical modeling of hybrid fiber-reinforced concretes (HyFRCs) made with a blend of different types of fibers characterized by different geometries and/or constitutive materials. The presented analytical formulation is oriented towards predicting the postcracking behavior of HyFRC and is mainly based on the well-known “cracked-hinge” model originally employed for standard fiber-reinforced concrete beams. The proposed model is validated by considering the experimental results obtained in a previous study carried out on HyFRCs mixtures made with a blend of steel and polypropylene fibers. Theoretical results are presented to demonstrate the predictive capabilities of the model to simulate the observed experimental behavior. The model performance is in very good agreement with the experimental data. Therefore, it has the capability to forecast the postcracking behavior of a generic HyFRC of given fiber contents depending on the actual proportion of the fiber blend. Finally, the proposed formulation can be applied as a computational aid to the design of HyFRC mixtures for structural purposes.
机译:该研究涉及用不同类型的纤维混合物制备的混合纤维增强混凝土(HYFRC)的分析建模,其特征在于不同的几何形状和/或组成型材料。所提出的分析制剂以预测HYFRC的突出行为为导向,主要基于最初用于标准纤维钢筋混凝土梁的众所周知的“裂纹铰链”模型。通过考虑在用钢和聚丙烯纤维的混合物制成的HYFRCS混合物中进行的先前研究中获得的实验结果,验证了所提出的模型。提出了理论结果以证明模型的预测能力模拟观察到的实验行为。模型性能与实验数据非常好。因此,它具有根据纤维混合物的实际比例预测给定纤维内容物的通用HYFRC的后蜡行为的能力。最后,所提出的配方可以应用于用于结构目的的HYFRC混合物的设计辅助。

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