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首页> 外文期刊>Journal of Cleaner Production >Recycling glass fiber thermoplastic composites from wind turbine blades
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Recycling glass fiber thermoplastic composites from wind turbine blades

机译:从风力涡轮机叶片回收玻璃纤维热塑性复合材料

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摘要

Thermoplastic resin systems have long been discussed for use in large-scale composite parts but have yet to be exploited by the energy industry. The use of these resins versus their thermosetting counterparts can potentially introduce cost savings due to non-heated tooling, shorter manufacturing cycle times, and recovery of raw materials from the retired part. Because composite parts have high embedded energy, recovery of their constituent materials can provide substantial economic benefit. This study determines the feasibility of recycling composite wind turbine blade components that are fabricated with glass fiber reinforced Elium (R) thermoplastic resin. Several experiments are conducted to tabulate important material properties that are relevant to recycling, including thermal degradation, grinding, and dissolution of the polymer matrix to recover the constituent materials. Dissolution, which is a process unique to thermoplastic matrices, allows recovery of both the polymer matrix and full-length glass fibers, which maintain their stiffness (190 N/(mm g)) and strength (160 N/g) through the recovery process. Injection molded regrind material is stiffer (12 GPa compared to 10 GPa) and stronger (150 MPa compared to 84 MPa) than virgin material that had shorter fibers. An economic analysis of the technical data shows that recycling thermoplastic-glass fiber composites via dissolution into their constituent parts is commercially feasible under certain conditions. This analysis concludes that 50% of the glass fiber must be recovered and resold for a price of $0.28/kg. Additionally, 90% of the resin must be recovered and resold at a price of $2.50/kg. (C) 2018 Elsevier Ltd. All rights reserved.
机译:长期以来,一直在讨论将热塑性树脂体系用于大型复合材料部件,但尚未被能源工业开发。这些树脂与热固性树脂的使用可能会由于不加热模具,缩短制造周期时间以及从退役零件中回收原材料而潜在地节省成本。由于复合零件具有较高的嵌入能量,因此回收其组成材料可提供可观的经济效益。这项研究确定了回收由玻璃纤维增​​强的Elium(R)热塑性树脂制成的复合材料风力涡轮机叶片部件的可行性。进行了一些实验,以制表与回收有关的重要材料特性,包括热降解,研磨和溶解聚合物基体以回收组成材料。溶解是热塑性基质独有的工艺,可回收聚合物基质和全长玻璃纤维,在回收过程中,它们可保持其刚度(190 N /(mm g))和强度(160 N / g) 。与具有较短纤维的原始材料相比,注塑再生材料更硬(12 GPa比10 GPa)和更强(150 MPa比84 MPa)。对技术数据的经济分析表明,在某些条件下,通过溶解到其组成部分中来回收热塑性玻璃纤维复合材料在商业上是可行的。该分析得出的结论是,必须回收并重新出售50%的玻璃纤维,价格为$ 0.28 / kg。此外,必须回收并再出售90%的树脂,价格为2.50美元/千克。 (C)2018 Elsevier Ltd.保留所有权利。

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