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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Random non-convex particle model for the fraction of interfacial transition zones (ITZs) in fully-graded concrete
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Random non-convex particle model for the fraction of interfacial transition zones (ITZs) in fully-graded concrete

机译:完全分级混凝土中界面过渡区(ITZS)分数的随机非凸粒子模型

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摘要

The structural configuration such as the fraction of interfacial transition zones (ITZs) has been found that can seriously impact the whole physico-mechanical properties of concrete. However, the fraction of ITZs is difficultly determined by traditional experimental methods and simple models proposed so far. In this work, a comprehensive numerical framework is devised to statistically obtain the fraction of ITZs around non-convex aggregates in fully-graded concrete. In the numerical framework, the authors generate a three-phase two-dimensional random non-convex particle model consisting of homogeneous cement paste, non-convex aggregates with a specific gradation and ITZs with a constant dimension, through a random sequential addition (RSA) scheme so as to characterize the geometric model of fully-graded concrete at a microscopic sale. The geometric morphology of a non-convex particle is mathematically parameterized in terms of the deformation of an ellipse-based cell. Such the operation can strictly govern the geometric shape of non-convex particle and precisely realize the topological geometry of an interfacial layer with a constant dimension to meet the requirement of the famous core-shell structure. Combining the proposed random non-convex particle model with the one-point probability function, we statistically analyze the fraction of ITZs by the Monte Carlo simulations. Plus, the influences of the geometric characteristics of aggregates including the shape, gradation, fraction and the maximum size and the ITZ dimension on the fraction of ITZs are systematically investigated in fully-graded concrete. Importantly, a quantitative manner on the effects of the geometric shape and gradation of non-convex aggregates is explored for the first time. As a critical ITZ property, the present contribution can be further drawn into assessing physico-mechanical properties of fully-graded concrete. (C) 2017 Elsevier B.V. All rights reserved.
机译:已经发现诸如界面过渡区(ITZS)的分数的结构配置,这可能会严重影响混凝土的整个物理机械性能。然而,通过传统的实验方法和迄今为止提出的简单模型难以确定ITZ的一部分。在这项工作中,设计了一个综合的数值框架,以统计地获得完全分级混凝土中的非凸骨料周围的ITZ部分。在数值框架中,作者通过随机顺序添加(RSA)产生由均匀水泥浆料组成的三相二维无随机非凸粒子模型,其具有特定灰度和ITZ的特定灰度和ITZ。方案以便在微观销售中表征完全分级混凝土的几何模型。非凸粒子的几何形态在数学上以基于椭圆形的细胞的变形而参数化。这种操作可以严格地控制非凸颗粒的几何形状,并精确地实现具有恒定尺寸的界面层的拓扑几何形状,以满足着名的芯壳结构的要求。将所提出的随机非凸粒子模型与单点概率函数组合,我们通过蒙特卡罗模拟统计分析ITZ的一部分。此外,在完全分级的混凝土中系统地研究了包括形状,灰度,分数和最大尺寸的聚集体的几何特征和ITZ维度的影响。重要的是,首次探讨了对几何形状和非凸形聚集体灰度效果的定量方式。作为关键的ITZ性质,可以进一步推导目前的贡献,评估完全分级混凝土的物理机械性能。 (c)2017 Elsevier B.v.保留所有权利。

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