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Anisotropic mechanical performance of 3D printed fiber reinforced sustainable construction material

机译:3D打印纤维增强可持续建筑材料的各向异性力学性能

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Around the globe, ground breaking projects and case studies are being presented to showcase the potential of digital fabrication with concrete, better known as 3D printing of concrete. With these explorations, underway, the key quest in 3D concrete printing is for structural stability by means of high strength and ductility. This need could be avoided by designing printable fiber reinforcement concrete or concrete with in-process 'printed' reinforcement. Therefore, in this paper, an experimental investigation was carried out by reinforcing short glass fiber (GF) of different lengths (3 mm, 6 mmand 8 mm) and percentages (0.25%-1%) in a custom-made sustainable construction material developed for 3D printing application. Thixotropic GF/geopolymer mortar was printed using a 4-Axis gantry system and later loaded in different directions for measuring the mechanical properties. Our experimental results revealed, improved properties of the printed specimens with increase in fiber percentage up to 1% and an obvious directional dependency behaviour, caused by the layer wise deposition. (C) 2017 Elsevier B.V. All rights reserved.
机译:在全球范围内,正在开展具有开创性的项目和案例研究,以展示混凝土数字化制造的潜力,即众所周知的混凝土3D打印。通过这些探索,正在进行3D混凝土打印的关键要求是通过高强度和延展性来实现结构稳定性。通过设计可印刷的纤维增强混凝土或进行中的“印刷”增强混凝土,可以避免这种需求。因此,本文通过在开发的定制可持续建筑材料中增强不同长度(3 mm,6 mm和8 mm)和百分比(0.25%-1%)的短玻璃纤维(GF)进行了实验研究。适用于3D打印应用程序。触变GF /地质聚合物砂浆使用4轴龙门系统进行印刷,然后沿不同方向加载以测量机械性能。我们的实验结果表明,印刷样品的性能得到了改善,其中纤维百分比提高了1%,并且由于层状沉积而导致了明显的方向依赖性。 (C)2017 Elsevier B.V.保留所有权利。

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