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Rheology and application of buoyant foam concrete for digital fabrication

机译:浮力泡沫混凝土数字制造的流变学与应用

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In the fresh state, conventional lightweight foam concrete (LWFC) has low yield stress which challenges shape retention and buildability in digital construction. Several literatures attempt to address the rheological performance of 3D printable lightweight foam concrete (3DP-LWFC) in essence. This research presents a comprehensive rheological characterisation with controlled shear rate tests and flow curve tests over different foam volume fractions and densities of 700, 1000 and 1400 kg/m3. LWFC is appropriately adapted for extrusion-based 3D printing in the experimental program by incorporating a small amount of nanopowder (replacing 2% of cement mass) for increased yield shear stress, and calcium sulfoaluminate cement replacing 10% of cement mass for improved thixotropy in the fresh state. Accordingly, this raises the yield stress to 347?812 Pa for 700?1400 kg/m3 LWFC compared to static yield stress below 100 Pa of conventional LWFC, improves thixotropic performance in terms of the rate of reflocculation (Rthix 0.21?3.15 Pa/s) and rate of structuration (Athix 0.06?1.02 Pa/s), viscosity (2.5?3.4 Pa?s), and elastic shear modulus evolution. Foam volume is found to significantly influence the rheological properties. To analyse the constructability, shape retention and buildability are investigated, resulting in up to 15 deposited filament layers to be reached in a buildability test. Lastly, a practical example is presented whereby a fa?ade element is printed with 3DP-LWFC at a wet density less than 1000 kg/m3, yielding a lightweight element with buoyant characteristics that further expands the application potential of 3D concrete printing.
机译:在新鲜状态下,传统的轻质泡沫混凝土(LWFC)具有低产量应力,这挑战了数字建设中的形状保留和易用性。几个文献试图以本质为本解决3D可印刷轻质泡沫混凝土(3DP-LWFC)的流变性能。该研究呈现了对受控剪切速率试验和流动曲线测试的综合流变性表征,并在不同的泡沫体积分数和700,1000和1400kg / m3的密度上进行测试。通过掺入少量纳米粉末(代替2%的水泥质量)来适当地适用于实验程序中基于挤出的3D印刷,以增加屈服剪切应力,并替代10%的水泥物质以改善触变性的硫化钙水泥新鲜状态。因此,与常规LWFC的静态屈服应力相比,这将屈服应力提高到700〜812Pa〜700〜1400kg / m3 lwfc,以改善回流速率(Rthix 0.21?3.15 pa / s)提高触变性能)和结构率(Athix 0.06?1.02 pa / s),粘度(2.5?3.4 paΔs)和弹性剪切模量进化。发现泡沫体积显着影响流变性质。为了分析施加性,调查形状保持和可易性,导致在可易性测试中达到最多15个沉积的长丝层。最后,提出了一个实际的例子,其中FAΔAde元件以小于1000kg / m3的湿密密度印刷3DP-LWFC,产生具有浮力特性的轻质元件,进一步扩展了3D混凝土印刷的应用势。

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