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Recycling of Glass Fibers from Fiberglass Polyester Waste Composite for the Manufacture of Glass-Ceramic Materials 被引量:2
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作者 Felix Antonio López Maria Isabel Martín +3 位作者 Irene García-Díaz Olga Rodríguez Francisco Jose Alguacil Maximina Romero 《Journal of Environmental Protection》 2012年第8期740-747,共8页
This work presents the feasibility of reusing a glass fiber resulting from the thermolysis and gasification of waste composites to obtain glass-ceramic tiles. Polyester fiberglass (PFG) waste was treated at 550℃ for ... This work presents the feasibility of reusing a glass fiber resulting from the thermolysis and gasification of waste composites to obtain glass-ceramic tiles. Polyester fiberglass (PFG) waste was treated at 550℃ for 3 h in a 9.6 dm3 thermolytic reactor. This process yielded an oil (≈24 wt%), a gas (≈8 wt%) and a solid residue (≈68 wt%). After the polymer has been removed, the solid residue is heated in air to oxidize residual char and remove surface contamination. The cleaning fibers were converted into glass-ceramic tile. A mixture consisting of 95 wt% of this solid residue and 5% Na2O was melted at 1450℃ to obtain a glass frit. Powder glass samples (<63 μm) was then sintered and crystallized at 1013℃, leading to the formation of wollastonite-plagioclase glass-ceramic materials for architectural applications. Thermal stability and crystallization mechanism have been studied by Differential Thermal Analysis. Mineralogy analyses of the glass-ceramic materials were carried out using X-ray Diffraction. 展开更多
关键词 Valorisation WASTE COMPOSITE THERMOLYSIS GASIFICATION glass fiber glass-ceramic
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纤维增强玻璃与玻璃陶瓷基复合材料 被引量:5
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作者 高积强 王永兰 金志浩 《兵器材料科学与工程》 CSCD 北大核心 1995年第5期53-59,共7页
简要介绍了纤维增强玻璃与玻璃陶瓷基复合材料的有关情况,包括纤维/基体配合原则,常用纤维与基体,典型材料与性能,以及目前的研究方向与仍需进一步研究的问题。
关键词 纤维增强 玻璃 玻璃陶瓷基 复合材料
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