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Creep and thermal cracking of ultra-high volume fly ash mass concrete at early age

机译:早年超大体积粉煤灰质量混凝土的蠕变和热破裂

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摘要

An experimental study characterized fresh and hardened ultra-high volume fly ash mass concrete (HP-HVFA, with 80% fly ash and a water-to-binder ratio of 0.26) and normal content fly ash mass concrete (NS-FA, with 35% fly ash and a water-to-binder ratio of 0.43). The creep and thermal cracking behaviors of the HP-HVFA and NS-FA concrete were evaluated using a temperature stress testing machine (TSTM). A series of TSTM tests were conducted under an adiabatic curing mode and a temperature matched curing (TMC) mode. The results indicate that HP-HVFA concrete had moderate strength at early age and desirable fresh and hardened engineering properties. Under the both curing modes studied, HP-HVFA exhibited lower hydration temperature rise. Under the TMC mode, both compressive and tensile creep of HP-HVFA were lower than that of NS-FA although their specific creep and creep-to-shrinkage strain ratio at time of cracking were almost the same. Under adiabatic mode, HP-HVFA had higher creep strain, specific creep, and creep-to-shrinkage strain ratio than NS-FA.
机译:实验研究表征了新鲜和硬化超高量粉煤灰质量混凝土(HP-HVFA,粉煤灰80%,水 - 粘合剂比为0.26)和正常的粉煤灰质量混凝土(NS-FA,35粉煤灰和水 - 粘合剂比为0.43)。使用温度胁迫试验机(TSTM)评估HP-HVFA和NS-FA混凝土的蠕变和热裂解行为。在绝热固化模式和温度匹配的固化(TMC)模式下进行一系列TSTM测试。结果表明,HP-HVFA混凝土在早期和理想的新鲜和硬化工程性质中具有中等强度。在研究的两种固化模式下,HP-HVFA表现出较低的水化温度升高。在TMC模式下,HP-HVFA的压缩和拉伸蠕变均低于NS-FA的压缩和拉伸蠕变,尽管它们的特异性蠕变和裂缝的蠕变和蠕变 - 收缩应变比在裂缝时几乎相同。在绝热模式下,HP-HVFA具有比NS-FA更高的蠕变菌株,特异性蠕变和蠕变 - 收缩应变比。

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