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Effect and mechanism of coal gangue concrete modification by fly ash

机译:粉煤灰煤矸石混凝土修饰的影响与机制

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Fly ash (FA) and gangue are common solid wastes. In this study, coarse aggregates were replaced with coal gangue at a constant substitution rate of 40% to promote the application of coal gangue in concrete production. The modification effect of FA content on the working and mechanical properties of coal gangue concrete (CGC) and its modification mechanism were revealed. At the macro level, the compression, splitting tensile, and flexural strengths were tested by using a pressure tester. From the microscopic aspect, the pore structure of the CGC was analyzed by nuclear magnetic resonance technique. The chemical products of the mortar and the micromorphology of the interfacial transition zone (ITZ) were characterized via scanning electron microscopy and energy dispersive spectroscopy. Results showed that the working and mechanical properties of the CGC can be significantly improved by adding an appropriate FA content. From a physical aspect, the modification mechanism is that fine FA particles fill the pores of the CGC during early cement hydration and contribute to the strength as microaggregates. Chemically, the secondary hydration of the FA particles changes the microstructure of the mortar and the ITZ. On the basis of grey relational analysis, the gel pore volume has the highest correlation with the concrete strength and the average gel pore size presents a linear relationship with the mechanical strength. Furthermore, appropriate addition of FA can significantly improve the average gel pore size.(c) 2021 Elsevier Ltd. All rights reserved.
机译:飞灰(FA)和煤矸石是普通固体废物。在这项研究中,用煤矸石以40%的常量替代率替换粗骨料,以促进煤矸石在混凝土生产中的应用。揭示了FA含量对煤矸石混凝土(CGC)加工和力学性能及其改性机制的改性效应。在宏观层面下,通过使用压力测试仪测试压缩,分裂拉伸和弯曲强度。从微观方面,通过核磁共振技术分析CGC的孔结构。通过扫描电子显微镜和能量分散光谱表征砂浆的化学产品和界面过渡区(ITZ)的微观物理。结果表明,通过添加适当的FA含量,可以显着提高CGC的工作和机械性能。从物理方面,修饰机制是精细的FA颗粒在早期水泥水合过程中填充CGC的孔,并有助于作为微烧结的强度。化学上,FA颗粒的二次水合改变了砂浆和ITZ的微观结构。在灰色关系分析的基础上,凝胶孔体积与混凝土强度具有最高的相关性,平均凝胶孔径呈现与机械强度的线性关系。此外,适当添加FA可以显着提高平均凝胶孔径。(c)2021 elestvier有限公司保留所有权利。

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