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Mechanical performance of geopolymeric mortars based on tunisian calcined clay, fly ash and metakaolin

机译:基于突尼斯煅烧粘土,粉煤灰和偏高岭土的地聚合物砂浆的力学性能

摘要

Infrastructure rehabilitation represents a multitrillion dollar opportunity for the construction industry.Since the majority of the existent infrastructures are Portland cement concrete based this means that concrete infrastructure rehabilitation is a hot issue to be dealt with. Geopolymers are novel inorganic binders with high potential to replace Portland cement based ones. So far very few studies in the geopolymer field have addressed the rehabilitation of deteriorated concrete structures. This paper discloses results of an investigation concerning the development geopolymeric repair mortars. The mortars are based on Tunisian clay coming from Medenine region, plus calcium hydroxide, sodium silicate and sodium hydroxide. Results show that the geopolymeric mortar has a high compressive strength and a lower unrestrained shrinkage performance as long as partial replacement by metakaolin is carried out. The results also show that Tunisian calcined clay based mortars have hydration products with typical geopolymeric phases.
机译:基础设施的修复为建筑业带来了数万亿美元的机会。由于现有的大多数基础设施都是基于硅酸盐水泥的水泥,这意味着混凝土基础设施的修复是一个亟待解决的问题。地聚合物是新型的无机粘合剂,具有取代波特兰水泥基粘合剂的高潜力。迄今为止,在地聚合物领域中很少有研究致力于修复劣化的混凝土结构。本文公开了有关开发地聚合物修补砂浆的研究结果。砂浆是基于来自美德宁地区的突尼斯粘土,再加上氢氧化钙,硅酸钠和氢氧化钠。结果表明,只要进行偏高岭土的部分替代,地聚合物砂浆就具有较高的抗压强度和较低的无约束收缩性能。结果还表明,突尼斯煅烧粘土基砂浆的水合产物具有典型的地聚相。

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