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Investigation on the Rheological Behavior of Lightweight Foamed Concrete for 3D Printing Applications

机译:三维印刷应用轻质发泡混凝土流变行为的研究

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Unlike ordinary concrete,lightweight foamed concrete(LWFC)has the benefit of decreasing the self-weight of constructive elements while ensuring an efficient thermal insulation and acoustic absorption as well as high fire resistance.A novel version of LWFC has been recently developed by the authors,with the unique property of"extrudability"in a wide density range,meaning that its production process can be carried out without formworks and exploiting innovative 3D printing technologies.The present contribution is focused on the rheological behaviour of this innovative extrudable LWFC(ELWFC).The rheological behaviour in terms of yield stress of the ELWFC is studied via a rotational rheometer in two different modalities,namely constant shear rate and increasing shear rate.Comparison of the rheological behaviour between ELWFC and classical LWFC is also presented.Additionally,the dimensional stability of the cementitious paste at the fresh state having a given yield stress is assessed through an extrusion test.In particular,the experimental investigation is focused on a target dry density of 800 kg/m~3,which is identified as a good compromise between insulating features and mechanical strengths.The experimental results show that the considered ELWFC,characterized by a zero slump in the extrusion test,has a yield stress of around 150 Pa(constant shear rate)and 130 Pa(increasing shear rate).
机译:与普通的混凝土不同,轻质发泡混凝土(LWFC)有益处减少建设性元件的自重,同时确保有效的隔热和声学吸收以及高耐火性。最近由作者开发的LWFC新颖的LWFC ,具有宽密度范围内的“挤出性”的独特性,这意味着其生产过程可以在没有模板和利用创新的3D印刷技术的情况下进行。目前的贡献集中在这种创新可挤压LWFC(ELWFC)的流变行为上。通过两种不同方式的旋转流变仪研究了ELWFC的屈服应力方面的流变行为,即恒定的剪切速率和增加的剪切速率。提出了提升者和古典LWFC之间的流变行为.Aditionally,尺寸在具有给定产量应激的新状态下水泥浆料的稳定性得到评估H一种挤出试验。特别是,实验研究专注于目标干燥密度为800kg / m〜3,在绝缘特征和机械强度之间被鉴定为良好的折衷。实验结果表明,考虑了ELWFC,其特征在于通过挤出试验中的零坍落度,屈服应力约为150Pa(恒定剪切速率)和130Pa(增加剪切速率)。

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