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Effect of testing procedures on buildability properties of 3D-printable concrete

机译:测试程序对3D可打印混凝土可建造性的影响

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摘要

Digital fabrication with concrete enables the efficient and quick creation of architectural/structural elements without formworks. This technology does, however, introduce new challenges, especially concerning the mechanical requirements of printable materials. Consequently, the mechanical characterisation of early-age printable mortar is essential for designing, controlling and modelling the printing process, but no standardised testing procedures are currently available. In this paper, the results of uniaxial compressive tests performed on cylindrical samples are compared by varying the testing procedures, with the ultimate goal being to investigate their effect on the time-dependent mechanical properties of printable mortar. Finally, the results are used to predict failure during the printing process due to self-buckling or excessive compression on the first mortar layer. The outcomes highlight the role of specimen preparation, as well as the displacement rate on the predicted critical number of layers. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用混凝土进行数字化制造无需模板即可高效,快速地创建建筑/结构元素。但是,这项技术确实带来了新的挑战,特别是在可印刷材料的机械要求方面。因此,早期可印刷砂浆的机械特性对于设计,控制和建模印刷过程至关重要,但是目前尚无标准化的测试程序。在本文中,通过改变测试程序来比较圆柱样品上的单轴压缩测试结果,最终目的是研究它们对随时间变化的可印刷砂浆力学性能的影响。最后,将结果用于预测在印刷过程中由于第一砂浆层上的自屈曲或过度压缩而导致的故障。结果突出了标本制备的作用以及位移速率对预测的关键层数的影响。 (C)2020 Elsevier Ltd.保留所有权利。

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