Compressive study on recycled concrete: experiment and numerical homogenization modelling

Djamel Fellah, S. Barboura, Thileli Tilmatine, K. Benyahi, M. S. Kachi, Jia Li, Y. Bouafia
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Abstract

This paper describes a study of recycled concrete under compressive loads. The study was conducted in two main parts. In the first part, experimental tests were carried out on concrete samples with varying levels of substitution (25%, 50%, and 75%) with recycled aggregate in order to measure the mechanical properties of the recycled concrete. In the second part of the study, a nonlinear homogenization model was developed on the basis of a classical secant approach to predict the behavior of recycled concrete. In this model, we assume that the behavior of the mortar phase, the concrete, and the recycled aggregates follow Mazars damage law. Comparison with the experimental data shows that the proposed homogenization model is accurate and efficient in predicting the correct nonlinear behavior of the recycled concrete. By better understanding the properties and behavior of recycled concrete, it will be possible to develop more effective methods for incorporating recycled materials into concrete structures.
再生混凝土的抗压研究:实验和均质化数值建模
本文介绍了对承受抗压负荷的再生混凝土的研究。研究主要分两部分进行。第一部分是对再生骨料替代程度不同(25%、50% 和 75%)的混凝土样品进行实验测试,以测量再生混凝土的机械性能。在研究的第二部分,我们在经典的秒切法基础上开发了一个非线性均质化模型,用于预测再生混凝土的行为。在该模型中,我们假设砂浆相、混凝土和再生骨料的行为遵循马扎尔损伤定律。与实验数据的比较表明,所提出的匀质化模型在预测再生混凝土的正确非线性行为方面是准确而有效的。通过更好地了解再生混凝土的特性和行为,将有可能开发出更有效的方法,将再生材料融入混凝土结构中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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