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Nano-modification to improve the ductility of cementitious composites

机译:纳米改性可改善水泥基复合材料的延展性

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Effect of nano-sized mineral additions on ductility of engineered cementitious composites (ECC) containing high volumes of fly ash was investigated at different hydration degrees. Various properties of ECC mixtures with different mineral additions were compared in terms of microstructural properties of matrix, fiber-matrix interface, and fiber surface to assess improvements in ductility. Microstructural characterization was made by measuring pore size distributions through mercury intrusion porosimetry (MIP). Hydration characteristics were assessed using thermogravimetric analysis/differential thermal analysis (TGA/DTA), and fiber-matrix interface and fiber surface characteristics were assessed using scanning electron microscopy (SEM) through a period of 90 days. Moreover, compressive and flexural strength developments were monitored for the same period. Test results confirmed that mineral additions could significantly improve both flexural strength and ductility of ECC, especially at early ages. Cheaper Nano-CaCO3 was more effective compared to nano-silica. However, the crystal structure of CaCO3 played a very important role in the range of expected improvements. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了纳米矿物质添加量对不同水化度下含有大量粉煤灰的工程水泥复合材料(ECC)延展性的影响。根据基质,纤维-基质界面和纤维表面的微观结构特性,比较了添加了不同矿物质的ECC混合物的各种特性,以评估延展性的提高。通过水银压入孔隙率法(MIP)测量孔径分布来进行微结构表征。使用热重分析/差热分析(​​TGA / DTA)评估水合特性,并使用扫描电子显微镜(SEM)在90天的时间内评估纤维-基质界面和纤维表面特性。此外,在同一时期还监测了抗压强度和抗弯强度的变化。测试结果证实,添加矿物质可以显着提高ECC的抗弯强度和延展性,尤其是在早期。与纳米二氧化硅相比,便宜的纳米CaCO3更为有效。但是,CaCO3的晶体结构在预期的改进范围内起着非常重要的作用。 (C)2015 Elsevier Ltd.保留所有权利。

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