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Artificial fly ash based aggregates properties influence on lightweight concrete performances

机译:人造粉煤灰的骨料性能对轻质混凝土性能的影响

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摘要

The effect of the application of pelletized fly ash based aggregates obtained through different processing techniques on the behavior of lightweight concretes was analyzed. Experimental program implied production of four lightweight artificial aggregates-cold bonded and sintered pellets based on either mechanically activated or non-activated low-calcium fly ash and water glass. The lightweight concrete behavior was compared to that of normal-weight concrete through compressive strength, flexural strength, porosity, shrinkage, and modulus of elasticity investigation. Differences in concretes characteristics were discussed with SEM imagining support. The statistical analysis of lightweight aggregate and ash properties contribution on concrete performances was realized by analysis variance model (ANOVA). Optimal production combination that maximizes lightweight concrete performance was determined by employing response surface methodology. An increase in concrete strength induced by the increase in ash fineness was noticed. Mechanical activation also had effect on the pellets sintering period and sintering temperature reduction. The 28- and 56-day lightweight concrete specimens exhibited properties that met the requirements for normal-weight concretes. Finally, the ideal combinations of ash pellets production parameters and properties that gave the lightweight concrete with behavior matching to that of standard concrete were established. The production capability of lightweight concrete with advanced performances based on artificial aggregate approves the principle of waste material reusing and enables cleaner and economically sustainable concrete manufacturing procedure. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:分析了通过不同加工技术获得的粉煤灰颗粒状骨料的应用对轻质混凝土性能的影响。实验程序暗示基于机械活化或非活化的低钙粉煤灰和水玻璃生产四种轻质人造骨料,即冷粘结和烧结的颗粒。通过抗压强度,抗弯强度,孔隙率,收缩率和弹性模量研究,将轻质混凝土的性能与普通重量混凝土的性能进行了比较。在SEM成像支持下讨论了混凝土特性的差异。通过分析方差模型(ANOVA)实现了轻骨料和灰分特性对混凝土性能的统计分析。通过采用响应面法确定了使轻质混凝土性能最大化的最佳生产组合。注意到由灰分细度的增加引起的混凝土强度的增加。机械活化还影响粒料的烧结时间和烧结温度的降低。 28天和56天的轻质混凝土试样的性能满足普通重量混凝土的要求。最后,建立了粉煤灰颗粒生产参数和性能的理想组合,使轻质混凝土的性能与标准混凝土相匹配。基于人造骨料的具有先进性能的轻质混凝土的生产能力证明了废料再利用的原理,并实现了更清洁,经济上可持续的混凝土制造程序。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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