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Improving printability of limestone-calcined clay-based cementitious materials by using viscosity-modifying admixture

机译:通过使用粘度改性混合物改善石灰石煅烧粘土基水泥材料的可印刷性

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摘要

In 3D concrete printing (3DCP), it is necessary to meet contradicting rheological requirements: high fluidity during pumping and extrusion, and high stability and viscosity at rest to build the layered structure. In this paper, the impact of the hydroxypropyl methylcellulose (HPMC)-based viscosity-modifying admixture (VMA) on the 3D printability and mechanical performance of a limestone and calcined clay based cementitious material is investigated. A combination of VMA and superplasticizer was used for that purpose. In this case, controlling the competitive effects between VMA and superplasticizer becomes critical. The main strategy for 3D printing in this study was to add an optimal dosage of VMA in the solid suspension that was already mixed with water and superplasticizer. A lab-scale 3DCP setup was developed and demonstrated as well. A series of tests was performed to characterize the effects of VMA on flowability, extrudability, open time, buildability, green strength, hydration, compressive strength, and air void content and distribution. Experiments performed in this study showed that the mixture containing 0.24% (of the binder mass) of VMA exhibited satisfactory 3D printability and optimal mechanical performance. Finally, the results, limitations, and perspectives of the current research were discussed.
机译:在3D混凝土印刷(3DCP)中,有必要满足矛盾的流变要求:泵送和挤出过程中的高流动性,以及静止的高稳定性和粘度以构建层状结构。本文研究了羟丙基甲基纤维素(HPMC)的粘度改性混合物(VMA)对石灰石和煅烧粘土基胶质材料的3D可印刷性和机械性能的影响。用于该目的的VMA和Super塑化剂的组合。在这种情况下,控制VMA和SuperPlasticionizer之间的竞争效果变得至关重要。本研究中的3D打印的主要策略是在已经与水和超稳定剂混合的固体悬浮液中增加VMA的最佳剂量。还开发了实验室标准3DCP设置并展示。进行一系列测试以表征VMA对流动性,耐用性,开放时间,易用性,绿色强度,水合,抗压强度和空隙含量和分布的影响。本研究中进行的实验表明,含有0.24%(粘合品质量)的vma的混合物表现出令人满意的3D可印刷性和最佳的机械性能。最后,讨论了当前研究的结果,限制和观点。

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