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Additive Manufacturing of Cementitious Materials by Selective Paste Intrusion: Numerical Modeling of the Flow Using a 2D Axisymmetric Phase Field Method

机译:通过选择性粘贴侵入性粘合材料的添加剂制造:使用2D轴对称相法测定流量的数值模拟

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摘要

The 3D printing of concrete has now entered a new era and a transformation of the construction sector is expected to reshape fabrication with concrete. This work focuses on the selective paste intrusion method, which consists of bonding dry particles of aggregate with a cement paste. This innovative technique could lead to the production of very precise component for specific applications. The main obstacle to tackle in order to reach a high shape accuracy of high mechanical performances of 3D printing elements by selectively activating the material is the control of the distribution of the cement paste through the particle bed. With the aim to better understand the path followed by the solution as it penetrates a cut-section of the granular packing, two-dimensional numerical modeling is carried out using Comsol software. A phase-field method combined with a continuous visco-plastic model has been used to study the influence of the average grain diameter, the contact angle, and the rheological properties of cement pastes on the penetration depth. We compare the numerical modeling results to existing experimental results from 3D experiments and a one-dimensional analytical model. We then highlight that the proposed numerical approach is reliable to predict the final penetration of the cement pastes.
机译:现已进入混凝土的3D印刷新的时代,建筑部门的转变预计将用混凝土重塑制造。这项工作侧重于选择性粘贴入侵方法,该方法包括用水泥浆料粘合聚集体的干燥颗粒。这种创新技术可能导致为特定应用的生产非常精确的组件。通过选择性地激活材料来达到3D印刷元件的高机械性能的高机械性能的高形状精度的主要障碍是通过颗粒床控制水泥浆料的分布。随着旨在更好地理解溶液的路径,因为它穿透粒状包装的切割部分,使用COMSOL软件进行二维数值建模。结合连续粘塑料模型的相场方法已经用于研究平均粒径,接触角和水泥浆料对渗透深度的流变性能的影响。我们将数值模拟结果与3D实验和一维分析模型进行了比较现有的实验结果。然后,我们强调了所提出的数值方法是可靠的,以预测水泥浆料的最终渗透。

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