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Physical-mechanical properties, and mesostructure of plain and fibre reinforced self-compacting concrete

机译:普通和纤维增强自密实混凝土的物理力学性能和介观结构

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This study analyses the mesostructural homogeneity of plain and steel fibre reinforced self-compacting concrete (SFR-SCC) to be used in slender elements of considerable height, avoiding the use of conventional reinforcement. Tests in the fresh state include the measurement of the rheological properties and self-compactability through engineering tests. Slender columns were filled with plain and SFRC-SCCs (up to 50 kg/m~3 of fibres). In the hardened state, studies at the mesostructural level include the quantification through image analysis of the distribution of the coarse aggregate and fibres along the height of the columns, and measures of modulus of elasticity, compressive strength and ultrasonic pulse velocity. The physical-mechanical properties did not vary significantly along the height of the columns, though a decrease was observed in the superior third of the elements, the compressive strength was the most affected parameter. The aggregate distribution was slightly more homogeneous in the case of fibre concretes. The variation of the fibre density along the columns was relatively high, with no identifiable tendency.
机译:这项研究分析了在相当高的细长构件中使用的普通钢纤维增强自密实混凝土(SFR-SCC)的细观结构同质性,避免了使用常规钢筋。新鲜状态下的测试包括通过工程测试测量流变性能和自密实性。细长的柱子填充有普通和SFRC-SCC(高达50 kg / m〜3的纤维)。在硬化状态下,细观结构方面的研究包括通过图像分析对粗骨料和纤维沿柱高的分布进行定量,并测量弹性模量,抗压强度和超声脉冲速度。物理力学性能沿圆柱高度没有明显变化,尽管在上三分之一的元素中观察到了下降,但抗压强度是影响最大的参数。在纤维混凝土的情况下,骨料分布稍微均匀一些。沿柱的纤维密度变化相对较高,没有明显的趋势。

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