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Material Design and Performance Evaluation of Foam Concrete for Digital Fabrication

机译:数字制造用泡沫混凝土的材料设计与性能评估

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摘要

Three-dimensional (3D) printing with foam concrete, which is known for its distinct physical and mechanical properties, has not yet been purposefully investigated. The article at hand presents a methodological approach for the mixture design of 3D-printable foam concretes and a systematic investigation of the potential application of this type of material in digital construction. Three different foam concrete compositions with water-to-binder ratios between 0.33–0.36 and densities of 1100 to 1580 kg/m3 in the fresh state were produced with a prefoaming technique using a protein-based foaming agent. Based on the fresh-state tests, including 3D printing as such, an optimum composition was identified, and its compressive and flexural strengths were characterized. The printable foam concrete showed low thermal conductivity and relatively high compressive strengths of above 10 MPa; therefore, it fulfilled the requirements for building materials used for load-bearing wall elements in multi-story houses. Thus, it is suitable for 3D-printing applications, while fulfilling both load-carrying and insulating functions.
机译:泡沫混凝土的三维(3D)打印以其独特的物理和机械性能而闻名,但尚未进行有目的的研究。这篇文章提出了一种用于3D可打印泡沫混凝土的混合料设计的方法论方法,以及对该类型材料在数字建筑中的潜在应用的系统研究。使用蛋白基发泡剂通过预发泡技术生产了三种不同的水灰比在0.33–0.36和密度为1100至1580 kg / m 3 的泡沫混凝土组合物。基于包括3D打印在内的新鲜状态测试,确定了最佳成分,并对其抗压强度和抗弯强度进行了表征。可印刷泡沫混凝土显示出较低的导热率和相对较高的抗压强度,高于10 MPa。因此,它满足了用于多层房屋中承重墙元件的建筑材料的要求。因此,它既适用于承载功能又适用于绝缘功能,因此适合3D打印应用。

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