Fracture Simulation of Concrete Beams to assess softening behavior by varying different fractions of Aggregates

H. S. Vishwanatha, S. Muralidhara, B. Raghu Prasad
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Abstract

Simulating the concrete fracture unlike other elastic and brittle materials quite different due to its quasibrittleness. The present research focussed on assess softening behavior by varying different fractions of aggregates  and cement matrix in micro details. Extended Finite Element Method (XFEM) for crack modeling implemented for simulating and visualizing crack propagation through Cement matrix, Interfacial Transition Zone (ITZ) and Aggregates . This approach permits the initializing crack by from enrichment zone and propagation of crack through element by traction separation law .The crack formation initiates when the maximum principal tensile stress reaches the tensile strength. The work involves creating python script for iterative process of random distribution of aggregates with in the matrix using Monte Carlo method and creating Cohesive zone element for zero thickness ITZ. introduces a finite element modeling technique for investigating multiscale fracture characteristics. This approach encompasses multiple levels of analysis, including the generation of aggregate particles using a Monte Carlo method implemented via a Python script. Additionally, we replicate the Interfacial Transition Zone (ITZ) between aggregate and mortar in the model. The load-deflection curves can be used to assess the softening behavior of concrete and suggest the realistic fraction of coarse aggregate in mix proportion to impart more ductility to beams.
混凝土梁的断裂模拟,以评估不同骨料成分的软化行为
由于混凝土的准脆性,模拟混凝土断裂与其他弹性和脆性材料截然不同。本研究的重点是通过在微观细节上改变骨料和水泥基体的不同比例来评估软化行为。采用扩展有限元法(XFEM)进行裂缝建模,以模拟和观察裂缝在水泥基质、界面过渡区(ITZ)和骨料中的扩展情况。当最大主拉伸应力达到抗拉强度时,裂纹开始形成。这项工作包括使用蒙特卡洛方法创建 python 脚本,用于基体中聚集体随机分布的迭代过程,并创建零厚度 ITZ 的内聚区元素。这种方法包含多个层次的分析,包括使用蒙特卡洛方法通过 Python 脚本生成集料颗粒。此外,我们还在模型中复制了骨料和砂浆之间的界面过渡区(ITZ)。荷载-挠度曲线可用于评估混凝土的软化行为,并建议混合比例中粗骨料的实际比例,以提高梁的延性。
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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