Functionally graded concrete: porosity gradation to enhance durability under carbonation

Daniel Veras Ribeiro, Adriana dos Santos Silva, C.M.R. Dias
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Abstract

Abstract The present paper evaluated the potential application of the functionally graded material (FGM) concept to develop more durable concrete to carbonation, one of the main degradation mechanisms of reinforced concrete structures. Accelerated carbonation tests with controlled temperature (27 ( 2°C), CO2 concentration (3 ( 0.5%) and humidity (65 ( 5%) were carried out in homogeneous concretes and with functional gradation in which the porosity of the material was varied across the slices. For the manufacture of graded concrete specimens, concretes with water/cement ratios equal to 0.35, 0.45, and 0.55 were produced, with lower porosity (w/c = 0.35) close to the surface of the specimen. The advance of the carbonation front was evaluated after 8, 9, 10, 14, and 24 weeks of accelerated exposure, using the chemical indicator phenolphthalein. The results show that the functionally graded concrete had a carbonation coefficient (K) slightly higher than that of the concrete with a w/c ratio equal to 0.35 (1.71 and 1.54 mm.week-0.5, respectively) and much lower than concrete with water-cement ratio equal to 0.45 (2.31 mm.week-0.5) and 0.55 (3.78 mm.week-0.5). This demonstrates that functional grading can be an efficient method to increase the durability of concrete elements subject to carbonation.
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功能分级混凝土:通过孔隙率分级提高碳化条件下的耐久性
摘要 本文评估了应用功能分级材料(FGM)概念开发更耐久混凝土的可能性,碳化是钢筋混凝土结构的主要降解机制之一。在控制温度(27 ( 2°C)、二氧化碳浓度(3 ( 0.5%)和湿度(65 ( 5%)的条件下,对均质混凝土进行了加速碳化试验,并在各切片上进行了功能分级,改变了材料的孔隙率。为了制作分级混凝土试样,生产了水灰比分别为 0.35、0.45 和 0.55 的混凝土,靠近试样表面的孔隙率较低(w/c = 0.35)。在经过 8、9、10、14 和 24 周的加速暴露后,使用化学指示剂酚酞对碳化前沿的进展进行了评估。结果表明,功能分级混凝土的碳化系数(K)略高于水灰比等于 0.35 的混凝土(分别为 1.71 和 1.54 mm.week-0.5),远低于水灰比等于 0.45 和 0.55 的混凝土(分别为 2.31 mm.week-0.5 和 3.78 mm.week-0.5)。这表明,功能分级是提高受碳化影响的混凝土构件耐久性的有效方法。
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