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Compressive strength and mixture proportions of self-compacting light weight concrete

机译:自密实轻质混凝土的抗压强度和混合比

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Recently some efforts have been performed to combine the advantages of light-weight and self-compacting concrete in one package called Light-Weight Self-Compacting Concrete (LWSCC). Accurate prediction of hardened properties from fresh state characteristics is vital in design of concrete structures. Considering the lack of references in mixture design of LWSCC, investigating the proper mixture components and their effects on mechanical properties of LWSCC can lead to a reliable basis for its application in construction industry. This study utilizes wide range of existing data of LWSCC mixtures to study the individual and combined effects of the components on the compressive strength. From sensitivity of compressive strength to the proportions and interaction of the components, two equations are proposed to estimate the LWSCC compressive strength. Predicted values of the equations are in good agreement with the experimental data. Application of lightweight aggregate to reduce the density of LWSCC may bring some mixing problems like segregation. Reaching a higher strength by lowered density is a challenging problem that is investigated as well. The results show that, the compressive strength can be improved by increasing the of mixture density of LWSCC, especially in the range of density under 2000 Kg/m(3).
机译:近来,已经进行了一些努力以将轻质和自密实混凝土的优点结合在一个称为轻质自密实混凝土(LWSCC)的包装中。根据新鲜状态特征准确预测硬化性能对混凝土结构的设计至关重要。考虑到LWSCC的混合物设计缺乏参考,研究适当的混合物组分及其对LWSCC力学性能的影响可为其在建筑行业中的应用提供可靠的基础。这项研究利用了LWSCC混合物的大量现有数据来研究组分对抗压强度的单独影响和综合影响。从抗压强度的敏感性到各组分的比例和相互作用,提出了两个方程式来估算LWSCC的抗压强度。方程的预测值与实验数据非常吻合。使用轻质骨料降低LWSCC的密度可能会带来诸如混合等混合问题。通过降低密度来达到更高的强度也是一个具有挑战性的问题,也正在研究中。结果表明,通过增加LWSCC的混合密度可以提高抗压强度,特别是在2000 Kg / m以下的密度范围内(3)。

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