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首页> 外文期刊>Composites. B, Engineering >Recycling and valorization of glass fibre thermoset composite waste by cold incorporation into a sustainable inorganic polymer matrix
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Recycling and valorization of glass fibre thermoset composite waste by cold incorporation into a sustainable inorganic polymer matrix

机译:冷凝掺入可持续无机聚合物基质中玻璃纤维热固性复合废物的再循环与算取

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摘要

Industrial applications using recycled fibres or resins are still rare due to inferior performance to cost ratio. In most cases, glass fibre reinforced polymer (GFRP) materials with thermoset matrices are considered unsuitable for reprocessing and reuse as a valuable reinforcement of composites. In this work, mechanical frictional grinding is utilized to recover the reinforcement fibres, which are still partially coated with the used epoxy resin. For the first time, the possibility and valorization potential of incorporating all the recycled GFRP waste into a Fe-rich silicate slag, a byproduct of non-ferrous metallurgy production, is evaluated. The results show that this doublerecycling route does not only allow for a much greater level of GFRP waste incorporation (20 wt%) in the inorganic matrix but also achieves remarkable flexural strength enhancement (79%) when compared with other results from the literature on fiber-reinforced cementitious materials.
机译:由于性能与成本比,使用再循环纤维或树脂的工业应用仍然很少。 在大多数情况下,具有热固性矩阵的玻璃纤维增强聚合物(GFRP)材料被认为是不适合再处理和重用作为复合材料的有价值的加强。 在这项工作中,利用机械摩擦磨削来回收仍然部分涂覆用过的环氧树脂的增强纤维。 首次,将所有再循环的GFRP废物掺入富含Fe的硅酸盐渣中的可能性和算价势,是非铁冶金生产的副产物。 结果表明,与纤维文献的其他结果相比,这种双字形途径不仅允许更大水平的GFRP废物掺入(20wt%),而且还达到了显着的弯曲强度增强(79%) - 重新凝固的水泥材料。

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