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On-demand additive manufacturing of functionally graded concrete

机译:随机补充混凝土的需求添加剂制造

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The rapid development of additive manufacturing of cementitious materials has enabled the emergence of a new design paradigm, namely functional grading of material properties by location. Target performance parameters could be material weight and insulation value or (particularly important) ductility. A generic concept to achieve this, is through the selective addition of fibres or aggregates. In 3D concrete printing (3DCP), this concept can be developed into two strategies: by adding particles (i) to the bulk mixture through a second stage mixing process at the printer head (Simultaneous Process, SP), or (ii) in between the layers of deposited cementitious filament (Repetitive Sequential Process, RSP). The present paper presents the development of specific equipment required to obtain on-demand functional grading of the printed material. Subsequently, the application of these systems in print trials is shown. The current study focussed on ductility by creating fibre-reinforced 3D printed concrete through both strategies. The mechanical performance of the obtained material has been established through compressive, flexural, and crack-mouth opening displacement tests. To underline the generic nature of the strategies, a trial with lightweight aggregates has also been performed. It was shown that particularly the SP is capable of achieving improvements in ductility and self-weight.
机译:加固材料添加剂制造的快速发展使得新设计范例的出现,即通过位置的材料特性的功能性分级。目标性能参数可以是材料重量和绝缘值或(特别重要的)延展性。达到这一点的通用概念,是通过选择性添加纤维或聚集体。在3D混凝土印刷(3DCP)中,该概念可以开发成两种策略:通过在打印机头(同时工艺,SP)或(II)之间的第二级混合过程将颗粒(I)添加到体积中沉积的水泥细丝层(重复顺序过程,RSP)。本文介绍了采用印刷材料的按需功能分级所需的特定设备的开发。随后,显示了这些系统在打印试验中的应用。目前通过两种策略产生纤维增强3D印刷混凝土的延展性的研究侧重于延展性。通过压缩,弯曲和裂缝开口位移试验建立了所得材料的机械性能。为了强调策略的通用性质,也已经进行了一种轻量级聚集体的试验。结果表明,SP能够实现延展性和自重的改善。

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