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Five-phase sphere equivalent model of recycled concrete and numerical simulation based on the base force element method

机译:基于基力元件法的再生混凝土和数值模拟的五相球等效模型

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摘要

Purpose This paper aims to propose the five-phase sphere equivalent model of recycled concrete, which can be used to deduce the theoretical formulas for the Poisson's ratio and effective elastic modulus. Design/methodology/approach At a mesoscopic level, the equivalent model converts the interfacial layer, which consists of the new interfacial transition zone (ITZ), the old mortar and the old (ITZ), into a uniform equivalent medium. This paper deduces a strength expression for the interfacial transition zone at the microscopic level using the equivalent model and elastic theory. In addition, a new finite element method called the base force element method was used in this research. Findings Through numerical simulation, it was found that the mechanical property results from the five-phase sphere equivalent model were in good agreement with those of the random aggregate model. Furthermore, the proposed model agree on quite well with the available experimental data. Originality/value The equivalent model can eliminate the influence of the interfacial layer on the macroscopic mechanical properties, thereby improving the calculation accuracy and computational efficiency. The proposed model can also provide a suitable model for multi-scale calculations.
机译:目的本文旨在提出再生混凝土的五相球体等效模型,可用于推导泊松比和有效弹性模量的理论公式。设计/方法/方法在介面镜片层面下,等效模型转换界面层,该界面层由新的界面过渡区(ITZ),旧砂浆和旧(ITZ)组成,进入均匀的等效介质。本文采用等效模型和弹性理论推断出微观水平界面过渡区的强度表达。此外,在本研究中使用了一种新的有限元方法,称为基力元件方法。发现通过数值模拟,发现五相球体等同模型的机械特性与随机骨料模型的吻合良好。此外,拟议的模型与可用的实验数据相当一致。原创性/值等效模型可以消除界面层对宏观机械性能的影响,从而提高计算精度和计算效率。所提出的模型还可以为多尺度计算提供合适的模型。

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