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A critical review of geopolymer properties for structural fire-resistance applications

机译:结构防火应用对地质聚合物特性的关键综述

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Protection of structures from fire is of extreme importance. Geopolymer is a novel material that has wide-ranging applications, and this review article focuses on assessing the potential of geopolymers towards enhancing the structural fire resistance by critically reviewing its properties subjected to elevated temperature exposure. The properties of geopolymers are categorized into three scales, namely, micro-scale, meso-scale and macro-scale, and are discussed at length. It is noted that geopolymers are chemically stable and do not undergo breakdown of chemical structure in contrary to OPC hydration products. Thermal deformations occurring in geopolymers, which cause macro-cracking, are discussed. Compressive strength of geopolymers is observed to be affected by microstructural changes (including crack formation, pore structure changes, densification, sintering, and melting) and phase composition changes (such as growth or destruction of crystals and transformations in geopolymer paste). Geopolymer-based binders show inherently superior fire resistance as compared to Portland cement-based binders. However, it requires careful mix design, to achieve substantial chemical stability, low volume changes, strength endurance, and spalling resistance. Factors such as choice of precursor, use of aggregates, total alkali content in geopolymer, water content, etc. are critical and should be controlled. The influence of these factors is discussed at length in this article. The current applications of geopolymers for heat and fire resistance have also been briefly presented. (C) 2019 Elsevier Ltd. All rights reserved.
机译:保护来自火灾的结构具有极端重要性。地质聚合物是一种具有广泛应用的新材料,该综述文章侧重于评估岩土聚合物的潜力,通过批判性对温度暴露进行升高的性能来评估岩土聚合物朝向增强结构耐火性的潜力。地质聚合物的性质分为三个尺度,即微尺度,中间尺度和宏观尺度,并以长度讨论。应注意,地质聚合物是化学稳定的,不与OPC水合产物相反的化学结构崩溃。讨论了导致宏观裂纹的地质聚合物中发生的热变形。观察到地质聚合物的抗压强度受到微观结构变化的影响(包括裂缝形成,孔隙结构改变,致密化,熔化,相位组成的变化(例如晶体晶体的生长或晶体和转化)。与基于波特兰水泥的粘合剂相比,基于地质聚合物的粘合剂显示出固有的优异防火。但是,它需要仔细的混合设计,实现大量化学稳定性,低体积变化,强度耐久性和剥落抗性。等因素,如前体的选择,聚集体,覆盖物中的总碱含量,含水量等是至关重要的,应控制。本文的长度讨论了这些因素的影响。还简要介绍了热聚合物的目前的热和耐火性的应用。 (c)2019 Elsevier Ltd.保留所有权利。

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