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Experimental study about the effects of granular skeleton distribution on the mechanical properties of self-compacting concrete (SCC)

机译:粒状骨架分布对自密实混凝土力学性能影响的试验研究

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摘要

In recent years, the use of self-compacting concrete (SCC) has been increasing. Although methods for designing the mixture proportions usually derive from experience with conventional concretes, some specific procedures still are not universally accepted. The design and characterization of SCC influences not only the mix components (paste volume and nature, binder amount and type, granular skeleton, etc.) but also the testing methods used to validate the self-compactability (usually in terms of rheology, fluidity, viscosity and resistance to segregation). This paper studies the influence on SCC mechanical properties based on the consideration of two types of granular skeleton, discontinuous and continuous, for different strength levels (35 and 60 MPa). For the both strength levels studied, the mix with continuous granular skeleton exhibited slightly higher segregation resistance and mechanical properties than did mixes with discontinuous granular skeleton. (C) 2015 Elsevier Ltd. All rights reserved.
机译:近年来,自密实混凝土(SCC)的使用一直在增加。尽管设计混合比的方法通常是从常规混凝土的经验中得出的,但是某些特定的程序仍未被普遍接受。 SCC的设计和特性不仅影响混合成分(糊料的体积和性质,粘合剂的数量和类型,颗粒状骨架等),而且还会影响用于验证自密实性的测试方法(通常在流变性,流动性,粘度和抗偏析性)。本文基于两种不同强度水平(35和60 MPa)的不连续和连续的两种颗粒骨架,研究了对SCC力学性能的影响。对于所研究的两种强度水平,具有连续颗粒骨架的混合物比具有不连续颗粒骨架的混合物表现出略高的抗偏析性和机械性能。 (C)2015 Elsevier Ltd.保留所有权利。

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