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The Effect of Material Fresh Properties and Process Parameters on Buildability and Interlayer Adhesion of 3D Printed Concrete

机译:材料新鲜性能和工艺参数对3D打印混凝土的可施工性和层间附着力的影响

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摘要

The advent of digital concrete fabrication calls for advancing our understanding of the interaction of 3D printing with material rheology and print parameters, in addition to developing new measurement and control techniques. Thixotropy is the main challenge associated with printable material, which offers high yield strength and low viscosity. The higher the thixotropy, the better the shape stability and the higher buildability. However, exceeding a minimum value of thixotropy can cause high extrusion pressure and poor interface bond strength if the printing parameters are not optimized to the part design. This paper aims to investigate the effects of both material and process parameters on the buildability and inter-layer adhesion properties of 3D printed cementitious materials, produced with different thixotropy and print head standoff distances. Nano particles are used to increase the thixotropy and, in this context, a lower standoff distance is found to be useful for improving the bond strength. The low viscosity “control” sample is unaffected by the variation in standoff distances, which is attributed to its flowability and low yield stress characteristics that lead to strong interfacial bonding. This is supported by our microscopic observations.
机译:数字混凝土制造的问世,除了开发新的测量和控制技术外,还要求我们进一步理解3D打印与材料流变学和打印参数之间的相互作用。触变性是与可印刷材料相关的主要挑战,可印刷材料具有高屈服强度和低粘度。触变性越高,形状稳定性越好,可建造性越高。但是,如果未针对零件设计优化打印参数,则超过触变性的最小值可能会导致较高的挤出压力和较差的界面粘合强度。本文旨在研究材料和工艺参数对具有不同触变性和打印头间距的3D打印胶凝材料的可建性和层间粘合性能的影响。使用纳米颗粒来增加触变性,并且在这种情况下,发现较小的隔离距离对于提高粘结强度是有用的。低粘度“对照”样品不受支座距离变化的影响,这是由于其流动性和低屈服应力特性导致牢固的界面结合。这由我们的微观观察所支持。

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