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Mix design process of polyester polymer mortars modified with recycled GFRP waste materials

机译:再生GFRP废料改性聚酯聚合物砂浆的配合比设计工艺

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摘要

In this study, the effect of incorporation of recycled glass fibre reinforced plastics (GFRP) waste materials, obtained by means of shredding and milling processes, on mechanical behaviour of polyester polymer mortars (PM) was assessed. For this purpose, different contents of GFRP recyclates, between 4% up to 12% in weight, were incorporated into polyester PM materials as sand aggregates and filler replacements. The effect of the addition of a silane coupling agent to resin binder was also evaluated. Applied waste material was proceeding from the shredding of the leftovers resultant from the cutting and assembly processes of GFRP pultrusion profiles. Currently, these leftovers as well as non-conform products and scrap resulting from pultrusion manufacturing process are landfilled, with additional costs to producers and suppliers. Hence, besides the evident environmental benefits, a viable and feasible solution for these wastes would also conduct to significant economic advantages.Design of experiments and data treatment were accomplish by means of full factorial design approach and analysis of variance ANOVA. Experimental results were promising toward the recyclability of GFRP waste materials as partial replacement of aggregates and reinforcement for PM materials, with significant improvements on mechanical properties of resultant mortars with regards to waste-free formulations.
机译:在这项研究中,评估了通过粉碎和研磨工艺获得的回收玻璃纤维增​​强塑料(GFRP)废料的掺入对聚酯聚合物砂浆(PM)力学性能的影响。为此,将不同含量的GFRP回收物(重量介于4%至12%之间)掺入聚酯PM材料中,作为砂骨料和填料替代品。还评估了向树脂粘合剂中添加硅烷偶联剂的效果。应用的废料是从玻璃纤维增​​强拉挤成型型材的切割和组装过程中产生的残渣切碎开始的。目前,这些残留物以及拉挤成型过程中产生的不合格产品和废料被填埋,给生产商和供应商带来额外成本。因此,除了明显的环境效益外,对这些废物的可行可行的解决方案也将具有显着的经济优势。实验和数据处理的设计是通过全因子设计方法和方差分析进行的。实验结果表明,对于GFRP废料的可回收性,如骨料的部分替代和PM材料的增强,就无灰配方而言,所得灰浆的机械性能有了显着改善。

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