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Investigation of aggregate size effects on the compressive behavior of concrete by electromechanical and mechanical impedance spectroscopy

机译:机电机械阻抗光谱法对混凝土压缩行为的综合尺寸影响研究

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Concrete is a composite material that is composed of cement mortar and aggregate. The size of the aggregates in the internal structure of concrete affects the mechanical properties and compressive strength of the concrete. In this study, three-dimensional concrete models are created by idealizing the material properties such as modulus of elasticity and mass density which were experimentally acquired in order to investigate the effect of varying size of the aggregates on the compressive strength of concrete cubes in the age of 28 days. Piezoelectric ceramic patches (PZT) are embedded in the core of the concrete cube models with aggregates in fine, medium, and coarse sizes and the harmonic analyses are simulated in commercial software, ABAQUS using the multi-physics finite element method (MP-FEA). Eventually, electromechanical impedance spectroscopy (EMIS) results as well as mechanical impedance spectroscopy (MIS) results are obtained to highlight the relative changes in the impedance results depending on the aggregate sizes. Thus, EMIS and MIS simulation results are employed in order to predict the effects of varying aggregate sizes on the compressive strengths of the concrete models.
机译:混凝土是一种复合材料,由水泥砂浆和骨料组成。混凝土内部结构中的聚集体的尺寸会影响混凝土的机械性能和抗压强度。在这项研究中,通过理想的材料特性来创造三维混凝土模型,例如在实验上获得的弹性模量和质量密度,以便研究变化尺寸对年龄的混凝土立方体的压缩强度的影响28天。压电陶瓷贴片(PZT)被嵌入在混凝土立方体模型与细,中和粗尺寸聚集体和高次谐波分析的核心是使用多物理有限元法模拟的商业软件,ABAQUS(MP-FEA) 。最终,获得机电阻抗光谱(EMIS)结果以及机械阻抗光谱(MIS)结果以突出根据骨料尺寸的阻抗结果中的相对变化。因此,采用EMI和MIS模拟结果,以预测不同骨料大小对混凝土模型的压缩强度的影响。

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