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Effect of fire exposure on cracking, spalling and residual strength of fly ash geopolymer concrete

机译:火灾对粉煤灰土聚合物混凝土的开裂,剥落和残余强度的影响

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摘要

Fly ash based geopolymer is an emerging alternative binder to cement for making concrete. The cracking, spalling and residual strength behaviours of geopolymer concrete were studied in order to understand its fire endurance, which is essential for its use as a building material. Fly ash based geopolymer and ordinary Portland cement (OPC) concrete cylinder specimens were exposed to fires at different temperatures up to 1000 ℃, with a heating rate of that given in the International Standards Organization (ISO) 834 standard. Compressive strength of the concretes varied in the range of 39-58 MPa. After the fire exposures, the geopolymer concrete specimens were found to suffer less damage in terms of cracking than the OPC concrete specimens. The OPC concrete cylinders suffered severe spalling for 800 and 1000 ℃ exposures, while there was no spalling in the geopolymer concrete specimens. The geopolymer concrete specimens generally retained higher strength than the OPC concrete specimens. The Scanning Electron Microscope (SEM) images of geopolymer concrete showed continued densification of the microstructure with the increase of fire temperature. The strength loss in the geopolymer concrete specimens was mainly because of the difference between the thermal expansions of geopolymer matrix and the aggregates.
机译:粉煤灰基地质聚合物是一种新兴的水泥替代粘合剂,可用于制造混凝土。为了了解其耐火性,研究了地聚合物的开裂,剥落和残余强度行为,这对于用作建筑材料至关重要。粉煤灰基地聚合物和普通波特兰水泥(OPC)混凝土圆柱体试样在高达1000℃的不同温度下暴露于火中,加热速率为国际标准组织(ISO)834标准中规定的速率。混凝土的抗压强度在39-58 MPa之间变化。火灾后,发现与OPC混凝土试样相比,地聚合物混凝土试样在开裂方面受到的损害较小。 OPC混凝土圆柱体在800和1000℃的暴露下会发生严重的剥落,而在地质聚合物混凝土标本中则没有剥落。地聚合物混凝土样品通常保持比OPC混凝土样品更高的强度。地质聚合物混凝土的扫描电子显微镜(SEM)图像显示,随着着火温度的升高,微观结构不断致密化。地质聚合物混凝土试样的强度损失主要是由于地质聚合物基体和骨料的热膨胀差异所致。

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