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Crack growth resistance in fibre reinforced alkali-activated fly ash concrete exposed to extreme temperatures

机译:纤维增强碱活化粉煤灰混凝土在极端温度下的抗裂纹扩展性

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This paper examines the crack growth resistance of alkali-activated fly ash concrete under extreme temperatures. Plain and hybrid fibre reinforced alkali activated concrete prepared with fly ash were subjected to a range of temperatures from - 30 to 300 degrees C, sustained for 2 h. The alkali activation was effected with a blend of sodium hydroxide and sodium silicate. A fibre blend of steel to polypropylene in the volume ratio of 4:1 and a total as high as 1% by volume fraction reinforced the mixtures. The resulting systems were examined for residual strength under compression and splitting tension. Further, notched prisms were loaded under 4-point flexure to evaluate the residual fracture toughness. Based on the results, four different stages for fracture behaviour were identified with superior fibre efficiency seen at subzero temperatures. Across the breadth of temperatures examined, adding fibres led to higher residual fracture toughness for those systems that displayed a narrow range of thermal conductivity.%42.1-42.10
机译:本文研究了碱活化粉煤灰混凝土在极端温度下的抗裂纹扩展性。用粉煤灰制备的普通纤维和混合纤维增强碱活化混凝土,要经受从30到300摄氏度的温度范围,持续2小时。用氢氧化钠和硅酸钠的混合物进行碱活化。钢与聚丙烯的纤维混合物(体积比为4:1,总体积分数高达1%)增强了混合物。检查所得系统在压缩和分裂张力下的残余强度。此外,在四点弯曲下加载缺口棱柱,以评估残余的断裂韧性。根据结果​​,确定了断裂行为的四个不同阶段,在零度以下温度下,纤维效率更高。在所检查的温度范围内,添加纤维会导致导热率范围狭窄的那些系统具有更高的残余断裂韧性。%42.1-42.10

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