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Preparation and characterization of continuous fly ash derived glass fibers with improved tensile strength

机译:具有改善的拉伸强度的连续粉煤灰衍生玻璃纤维的制备和表征

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摘要

The coal-based energy production in China generates more than 600 million tons of coal fly ash (CFA) each year, which drives us searching for new methods for recycling CFA. In this work, continuous glass fibers with a range of CFA (25-45%) were successfully prepared without showing any sign of fiber crystallization. The measured fiber tensile strength was found to increase with CFA proportionally. The fiber derived from 45% CFA exhibited the best tensile strength (higher than the E glass fiber prepared/tested under the same conditions) and good chemical stability (98% mass retention in the acid corrosion test). Our study shows a feasibility of making continuous CFA derived glass fibers with high iron oxide content and an alternative way for CFA recycling. Its improved strength and good chemical durability can benefit both economy and environmental protection. (C) 2018 Elsevier B.V. All rights reserved.
机译:中国以煤炭为基础的能源生产每年产生超过6亿吨的粉煤灰(CFA),这促使我们寻找回收CFA的新方法。在这项工作中,成功制备了具有CFA(25-45%)范围的连续玻璃纤维,而没有任何纤维结晶的迹象。发现测得的纤维拉伸强度随CFA成比例地增加。源自45%CFA的纤维表现出最佳的拉伸强度(高于在相同条件下制备/测试的E玻璃纤维)和良好的化学稳定性(在酸腐蚀试验中质量保留率为98%)。我们的研究表明,制造具有高氧化铁含量的连续CFA衍生玻璃纤维的可行性和CFA回收的替代方法。其提高的强度和良好的化学耐久性可同时有益于经济和环境保护。 (C)2018 Elsevier B.V.保留所有权利。

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