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In Situ Elevated Temperature Testing of Fly Ash Based Geopolymer Composites

机译:粉煤灰基地质聚合物复合材料的原位高温测试

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摘要

In situ elevated temperature investigations using fly ash based geopolymers filled with alumina aggregate were undertaken. Compressive strength and short term creep tests were carried out to determine the onset temperature of viscous flow. Fire testing using the standard cellulose curve was performed. Applying a load to the specimen as the temperature increased reduced the temperature at which viscous flow occurred (compared to test methods with no applied stress). Compressive strength increased at the elevated temperature and is attributed to viscous flow and sintering forming a more compact microstructure. The addition of alumina aggregate and reduction of water content reduced the thermal conductivity. This led to the earlier onset and shorter dehydration plateau duration times. However, crack formation was reduced and is attributed to smaller thermal gradients across the fire test specimen.
机译:使用填充有氧化铝骨料的粉煤灰基地质聚合物进行了现场高温研究。进行抗压强度和短期蠕变测试以确定粘性流的起始温度。使用标准纤维素曲线进行了燃烧测试。随着温度升高,向样品施加载荷会降低发生粘性流动的温度(与没有施加应力的测试方法相比)。抗压强度在高温下增加,并且归因于粘性流动和烧结,形成了更紧凑的微观结构。氧化铝骨料的添加和水含量的降低降低了热导率。这导致了较早的发作和较短的脱水高原持续时间。但是,裂纹形成减少了,并且归因于整个耐火试样的热梯度较小。

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