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Numerical study of the interfaces of 3D-printed concrete using discrete element method

机译:3D打印混凝土界面的离散元数值研究

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摘要

3D concrete printing is an additive manufacturing method which reduces the time and improves the efficiency of the construction process. Structural behavior of printed elements is strongly influenced by the properties of the material and the interface surfaces. The printing process creates interface surfaces between layers in the horizontal and vertical directions. The bond strength between layers is the most critical property of printed elements. In this paper, the structural behavior of printed elements is studied using the discrete element method. The material is modelled using discrete particles with bonding between them. A new discrete model of a multilayer geometry is presented to study the behavior of the interfaces of printed concrete. The layers are made up of randomly placed particles to simulate the heterogeneous nature of concrete. The numerical model is developed to simulate the flexural behavior of multilayer specimens. A four-point flexural test is simulated considering the interface surfaces between layers. This numerical model provides relevant results to improve the behavior of this kind of structural elements. The aim of this work is to provide a discrete element model to predict the mechanical behavior of 3D concrete printed components.
机译:3D混凝土打印是一种增材制造方法,可减少时间并提高施工过程的效率。印刷元件的结构行为在很大程度上受到材料和界面表面特性的影响。印刷过程会在水平和垂直方向的层之间创建界面。层之间的粘合强度是印刷元件的最关键特性。在本文中,使用离散元素方法研究了印刷元件的结构行为。使用离散粒子之间的结合对材料进行建模。提出了一种新的多层几何离散模型来研究印刷混凝土界面的行为。这些层由随机放置的颗粒组成,以模拟混凝土的异质性。建立了数值模型以模拟多层试样的弯曲行为。考虑了层之间的界面,对四点弯曲试验进行了模拟。该数值模型提供了相关的结果,以改善这种结构元素的行为。这项工作的目的是提供一个离散元素模型来预测3D混凝土印刷部件的机械性能。

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