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Use of recycled glass powder to improve the performance properties of high volume fly ash-engineered cementitious composites

机译:使用再生玻璃粉改善高粉煤灰工程水泥基复合材料的性能

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High-volume fly ash (HVFA) Engineered Cementitious Composites (ECC) show reduced strength and physical properties, especially at early curing ages. The goal of this study was to improve their strength characteristics by incorporating recycled glass powder (RGP) for enhanced material sustainability. Composites containing 15, 30, 45 and 60% RGP as a replacement for FA, with FA to cement ratio of 2.2, were studied in HVFA-ECC. Standard ECC mixtures with FA to Portland cement (FA/PC) ratio of 1.2, and HVFA-ECC with FA/C ratio of 2.2 without RGP were also produced as control mixtures. The experimental results confirmed that incorporating RGP into HVFA-ECC significantly improves compressive and flexural strengths, chloride ion resistance and electrical resistivity, and results in a comparable ductility to standard ECC, based on FA to cement ratio of 1.2. Furthermore, self-healing of HVFA-ECC was accelerated and final recovery rate of strength and physical properties improved. Microstructural analysis showed high portlandite consumption and the formation of low Ca/Si ratio in new C-S-H structures near C-Na-Al-S-H as the main outcome of the binary admixture in ECC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:大体积粉煤灰(HVFA)工程胶凝复合材料(ECC)显示出降低的强度和物理性能,尤其是在早期固化时代。这项研究的目的是通过加入回收玻璃粉(RGP)来提高材料的强度特性,以增强材料的可持续性。在HVFA-ECC中研究了包含15、30、45和60%RGP的替代FA的复合材料,FA与水泥的比例为2.2。还生产了FA与波特兰水泥(FA / PC)之比为1.2的标准ECC混合物和FA / C之比为2.2且无RGP的HVFA-ECC作为对照混合物。实验结果证实,将RGP掺入HVFA-ECC中可显着提高抗压强度和抗折强度,耐氯离子性和电阻率,并且基于FA与水泥的比率为1.2,可产生与标准ECC相当的延展性。此外,加快了HVFA-ECC的自我修复,提高了强度和物理性能的最终恢复率。显微组织分析表明,在ECC中,C-Na-Al-S-H附近新的C-S-H结构中的高硅酸盐消耗量高,并且低Ca / Si比的形成。 (C)2017 Elsevier Ltd.保留所有权利。

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