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Mechanical, thermal insulation, thermal resistance and acoustic absorption properties of geopolymer foam concrete

机译:地聚物泡沫混凝土的机械,隔热,耐热和吸声性能

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摘要

This study reports the synthesis and characterization of geopolymer foam concrete (GFC). A Class F fly ash with partial slag substitution was used for GFC synthesis by mechanical mixing of preformed foam. The GFCs exhibited 28 d compressive strengths ranging from 3 to 48 MPa with demolded densities from 720 to 1600 kg/m (105 °C oven-dried densities from 585 to 1370 kg/m), with the different densities achieved through alteration of the foam content. The thermal conductivity of GFCs was in the range 0.15-0.48 W/m K, showing better thermal insulation properties than normal Portland cement foam concrete at the same density and/or at the same strength. The GFC derived from alkali activation of fly ash as a sole precursor showed excellent strength retention after heating to temperatures from 100 to 800 °C, and the post-cooling compressive strength increased by as much as 100% after exposure at 800 °C due to densification and phase transformations. Partial substitution of slag for fly ash increased the strength of GFC at room temperature, but led to notable shrinkage and strength loss at high temperature. Thin GFC panels (20-25 mm) exhibited acoustic absorption coefficients of 0.7-1.0 at 40-150 Hz, and 0.1-0.3 at 800-1600 Hz.
机译:这项研究报告了地聚合物泡沫混凝土(GFC)的合成和表征。通过机械混合预制泡沫,将具有部分熔渣替代作用的F级粉煤灰用于GFC合成。 GFC表现出28 d的抗压强度,范围从3到48 MPa,脱模密度从720到1600 kg / m(105°C烘箱干燥的密度从585到1370 kg / m),并且通过改变泡沫获得了不同的密度内容。 GFC的导热系数在0.15-0.48 W / m K的范围内,在相同的密度和/或相同的强度下,其导热性能优于普通的波特兰水泥泡沫混凝土。由粉煤灰作为唯一前体的碱活化得到的GFC在加热至100至800°C的温度后表现出优异的强度保持性,而在800°C下暴露后,冷却后的抗压强度提高了100%致密化和相变。用炉渣部分替代粉煤灰可提高室温下GFC的强度,但导致高温下明显的收缩和强度损失。薄的GFC面板(20-25毫米)在40-150 Hz时的吸声系数为0.7-1.0,在800-1600 Hz时的吸声系数为0.1-0.3。

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