3D numerical investigation of functionally graded concrete

Nguyen Ngoc Hau, Le Thanh Cuong
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Abstract

In the design of engineering structures, concrete is assumed to have homogeneously mechanical properties. However, in reality, the concrete material is usually not uniform with respect to the height of structures because segregation mostly occurs during construction. The higher density is presented at, the lower part of the structure due to a higher proportion of aggregate and vice versa. Moreover, the disparity of creep, shrinkage, hydration heat, and curing method also leads to the difference in the quality of concrete. Therefore, it is necessary to study the responses of a concrete element with various mechanical properties. In this study, the functional elastic modulus of concrete material (FGC) is investigated numerically for its effects on the static responses of the element under axial compression. Conventional Finite Element Method (FEM) and Meshless method are used to model the structure. The reliability of the numerical model is validated by comparing the obtained results with experimental data.
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功能级配混凝土的三维数值研究
在工程结构设计中,假定混凝土具有均匀的力学性能。然而,在现实中,由于离析主要发生在施工过程中,混凝土材料通常与结构高度不均匀。由于骨料的比例较高,结构的下部呈现较高的密度,反之亦然。此外,徐变、收缩、水化热、养护方法的差异也导致混凝土质量的差异。因此,有必要对具有不同力学性能的混凝土构件的响应进行研究。本文对混凝土材料的功能弹性模量(FGC)在轴压作用下对单元静力响应的影响进行了数值研究。采用传统有限元法和无网格法对结构进行建模。通过与实验数据的比较,验证了数值模型的可靠性。
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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审稿时长
8 weeks
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