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Effect of surface moisture on inter-layer strength of 3D printed concrete

机译:表面水分对3D打印混凝土层间强度的影响

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摘要

The extrusion-based 3D concrete printing is a new technology under development for construction of buildings and structures of complex geometries without the use of expensive formwork. The weak inter-layer strength between printed layers is one of the limitations of this technology when compared with cast-in-the-mold concrete. This study investigates effects of print-time interval on the inter-layer strength, along with compressive and flexural strengths of extrusion-based 3D printed concrete in different directions. Specimens were printed with 10, 20 and 30 min delay times (print-time intervals). Compressive, flexural and inter-layer strengths of the 3D printed concretes were measured. The interlayer strengths of the specimens printed with 10 and 30 min delay times were comparable but higher than that of the specimens printed with 20 min delay time. A correlation was found between the results of inter-layer strength and the surface moisture content at the interface of the layers. The surface moisture content, in turn, depends on the bleed rate of the concrete and the rate of drying of moisture from the surface among other factors. The results also indicated that the compressive and flexural strengths of 3D printed concrete depended on the testing direction. The orthotropic phenomenon was more pronounced in compressive than flexural strength. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于挤压的3D混凝土打印是一项正在开发中的新技术,用于在不使用昂贵的模板的情况下建造具有复杂几何形状的建筑物和结构。与模铸混凝土相比,印刷层之间较弱的层间强度是该技术的局限之一。这项研究调查了打印时间间隔对层间强度以及挤压型3D打印混凝土在不同方向上的抗压强度和弯曲强度的影响。标本以10、20和30分钟的延迟时间(打印时间间隔)打印。测量了3D打印混凝土的抗压强度,挠曲强度和层间强度。延迟时间为10分钟和30分钟的样本的层间强度是可比的,但高于延迟时间为20分钟的样本的层间强度是可比的。发现层间强度的结果与各层界面处的表面水分含量之间存在相关性。进而,表面水分含量取决于混凝土的渗出速率和水分从表面的干燥速率等因素。结果还表明3D打印混凝土的抗压强度和抗弯强度取决于测试方向。正交各向异性现象在抗压强度方面比抗弯强度更明显。 (C)2018 Elsevier Ltd.保留所有权利。

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