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Rheo-viscoelastic behaviour of fresh cement-based materials: Cement paste, mortar and concrete

机译:新鲜水泥材料的Rheo-粘弹性行为:水泥膏,砂浆和混凝土

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The viscoelasticity of fresh fine cement-based material can be investigated by rheological means using dynamic shear rheometry, hence, the term rheo-viscoelasticity. However, readily available classical rheometers are limited to the study of paste due to the aggregate size associated with mortar and concrete. This study, therefore, sets out to experimentally investigate the rheo-viscoelastic behaviour of cement-based materials containing rheology modifiers, by progressively evaluating the viscoelasticity of cement paste-mortar-concrete. The tests carried out include strain sweep, shear rate sweep, creep and creep recovery, stress relaxation and three interval thixotropy test (3ITT). The results show a trend of improved linear viscoelastic properties of the control fresh cement-based materials due to progressive inclusion of aggregate (increasing volume fraction and size). However, the rheology modifiers widely varied this trend, tending to make it difficult to approximate the rheo-viscoelastic behaviour of mortar and concrete from that of the cement paste as generally suggested in literature. The increase in the coarse volume fraction improved the stability of the cement-based materials microstructure to varying shearing rates. The study suggests that the liquid phase has a role in improving the creep recovery and stress relaxation of the mixes. Furthermore, pseudo-strain hardening was observed for the cement-based materials and flocculation-driven structuration was found to be reduced for the cement paste due to the progressive inclusion of aggregates leaving hydration as the main driving source of concrete's structuration. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过使用动态剪切流变学,可以通过流变方法研究新鲜细水泥材料的粘弹性,因此,术语Rheo-粘弹性。然而,随机可获得的经典流变仪仅限于与砂浆和混凝土相关的骨料大小的粘贴的研究。因此,本研究开始通过逐步评估水泥膏 - 砂浆混凝土的粘弹性来实验研究含有流变改性剂的水泥基材料的Rheo-粘弹性行为。进行的测试包括应变扫描,剪切速率扫描,蠕变和蠕变恢复,应力松弛和三个间隔触变性测试(3条)。结果表明,由于累进的含量(增加体积分数和尺寸),由于逐渐包含(增加体积分数),对控制新鲜水泥基材料的改善的线性粘弹性性能的趋势。然而,流变改性剂的广泛改变了这种趋势,倾向于使得难以近似砂浆的Rheo-粘弹性行为与在文献中通常提出的水泥浆料中的砂浆和混凝土的粘弹性行为。粗体积分数的增加提高了基于水泥基材料微观结构的稳定性与变化的剪切速率。该研究表明,液相具有改善混合物的蠕变恢复和应力松弛的作用。此外,对于水泥基材料观察伪应变硬化,并且由于聚集体的逐步包含作为混凝土结构的主要驱动来源,因此发现絮凝驱动的结构降低了水泥浆料。 (c)2020 elestvier有限公司保留所有权利。

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