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Pore- and micro-structural characterization of a novel structural binder based on iron carbonation

机译:基于铁碳酸化的新型结构粘合剂的孔隙和微观结构表征

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摘要

abstract: The pore- and micro-structural features of a novel binding material based on the carbonation of waste metallic iron powder are reported in this paper. The binder contains metallic iron powder as the major ingredient, followed by additives containing silica and alumina to facilitate favorable reaction product formation. Compressive strengths sufficient for a majority of concrete applications are attained. The material pore structure is investigated primarily through mercury intrusion porosimetry whereas electron microscopy is used for microstructural characterization. Reduction in the overall porosity and the average pore size with an increase in carbonation duration from 1 day to 4 days is noticed. The pore structure features are used in predictive models for gas and moisture transport (water vapor diffusivity and moisture permeability) through the porous medium which dictates its long-term durability when used in structural applications. Comparisons of the pore structure with those of a Portland cement paste are also provided. The morphology of the reaction products in the iron-based binder, and the distribution of constituent elements in the microstructure are also reported.
机译:摘要:本文报道了一种基于废金属铁粉碳化的新型粘结材料的孔结构和微观结构特征。粘合剂包含金属铁粉作为主要成分,其次是包含二氧化硅和氧化铝的添加剂以促进有利的反应产物形成。获得了足以满足大多数混凝土应用的抗压强度。主要通过水银压入孔隙率法研究材料的孔结构,而电子显微镜则用于微观结构表征。注意到随着碳化时间从1天增加到4天,总孔隙率和平均孔径减小。孔隙结构特征用于通过多孔介质的气体和水分传输(水蒸气扩散率和透湿性)的预测模型中,该模型指示了其在结构应用中的长期耐久性。还提供了与波特兰水泥浆的孔结构的比较。还报道了铁基粘合剂中反应产物的形态以及微观结构中组成元素的分布。

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  • 年度 2014
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  • 正文语种 eng
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