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A Review on Durability Performance of Reinforcement Bar in Geopolymer Paste Compare With Its Performance in Ordinary Portland Cement Paste

机译:普通波特兰水泥膏中钢筋钢筋耐力杆耐用性性能综述

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This paper presents the results of a study on the durability performance of the corrosion reinforcement bar in geopolymer manufactured using metakaolin and fly ash. Durability can be defined as the ability of the material to withstand the surrounding environment without any significant deterioration during their service life such as weathering action, chemical attack, abrasion, compressive strength, sorptivity and water absorption. This review will be focussing on compressive strength, water absorption and porosity of the geopolymer material. Geopolymer material is an alternative way to reduce carbon footprint as by using one tonne of Ordinary Portland Cement (OPC) will produce one tonne of carbon dioxide. Hence, metakaolin and fly ash geopolymer has been used to reduce this problem. Both types of geopolymers (metakaolin and fly ash) were synthesized with sodium silicate and potassium hydroxide solutions. The strength of the fly ash-based geopolymer increased, however, the strength of the corresponding metakaolin-based geopolymer decreased after similar exposure. The paper concludes that both types of geopolymers still gave a better result compare to OPC.
机译:本文介绍了使用Metakaolin和粉煤灰制造的地质聚合物中腐蚀加固棒的耐久性性能研究的研究结果。耐久性可以定义为材料抵御周围环境的能力,而在其使用寿命期间没有任何显着恶化,例如风化动作,化学攻击,磨损,抗压强度,吸附性和吸水性。该审查将重点关注地质聚合物材料的抗压强度,吸水和孔隙率。地缘聚合物材料是减少碳足迹的另一种方法,就像使用一吨普通的普通波特兰水泥(OPC)就会产生一吨二氧化碳。因此,Metakaolin和粉煤灰地质聚合物已被用来减少这个问题。用硅酸钠和氢氧化钾溶液合成两种类型的地质聚合物(Metakaolin和Fly Ash)。然而,粉煤灰基地质聚合物的强度增加了相应的甲酸盐素的地质聚合物的强度在相似暴露后降低。本文得出结论,两种类型的地质聚合物仍然给出了与OPC相比的更好结果。

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