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Dynamic modulus of elasticity of geopolymer lightweight aggregate concrete

机译:地质聚合物轻质骨料混凝土的动态弹性模量

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The production processes of ordinary Portland cement (OPC), accompanying with bad environment influences such as, huge energy consumption, greenhouse gases emissions and natural resource exploitation; but fly ash-based geopolymer concrete is produced without (OPC), yet that has many sustainable environment benefits. In this study locally artificial lightweight aggregate was used to produce lightweight fly ash geopolymer concrete. The dynamic modulus of elasticity for geopolymer lightweight concrete produced by using locally artificial aggregate was investigated. Reference lightweight geopolymer concrete containing natural normal weight fine aggregate without fiber, lightweight geopolymer concrete reinforced with two volume fractions of steel fibers (0.25 and 0.5); in addition to four concrete mixtures containing artificial coarse lightweight aggregate and artificial lightweight fine aggregate with 25, 50, 75 and 100% volumetric replacement to natural normal weight fine aggregate (sand) were prepared. The dynamic modulus of elasticity was tested at 28day age for all specimens using resonance frequency method. The results demonstrate that the incorporation of artificial fine lightweight aggregate as a volumetric replacement to natural fine aggregate in concrete geopolymer lightweight concrete reduces the dynamic modulus of elasticity gradually with the increase of artificial lightweight aggregate content.
机译:普通波特兰水泥(OPC)的生产过程,伴随着不良环境影响,如巨大的能源消耗,温室气体排放和自然资源开采;但是粉煤灰基地缘聚合物混凝土是没有(OPC)的,但却具有许多可持续的环境益处。在这项研究中,局部人造轻质骨料用于生产轻质的粉煤灰地质聚合物混凝土。研究了采用局部人工骨料产生的地缘聚合物轻质混凝土动态弹性模量。参考轻质地缘聚合物混凝土含有天然正常重量的细骨料,无纤维,轻量级地缘聚合物混凝土加强了两块钢纤维(0.25和0.5);除了含有人造粗轻质聚集体和人造轻质细骨料的四种混凝土混合物外,制备了25,50,75和100%对天然正常重量细骨料(沙子)的体积替代品。使用共振频率方法的所有标本在28天测试动态弹性模量。结果表明,在混凝土地质聚合物的混凝土地质聚合物中对天然精细聚集体的体积替代的人造细小聚集体的掺入随着人工轻质骨料含量的增加而逐渐降低了动态弹性模量。

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