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ENERGY INTENSITY AND QUALITY OF RECYCLATE IN COMPOSITE RECYCLING

机译:复合回收中再生回收的能量强度和质量

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Composite materials are widely used in various sectors such as aerospace, wind energy and automotive. The high demand especially for thermoset based glass (GFRP) and carbon fibre reinforced polymer (CFRP) composite materials has led to a rise in volumes of manufacturing scrap and end-of-life products as composite waste. Unlike thermoplastic polymers, thermoset polymers have difficulties in recycling due to their cross-linked nature. In this paper, thermoset composite recycling processes which are grouped into mechanical, thermal and chemical methods are assessed from the perspectives of energy consumption, processing rate and mechanical performance of the recycled products. The paper presents a benchmark of composite technologies as well as identifies research challenges.
机译:复合材料广泛用于各个部门,如航空航天,风能和汽车。特别适用于热固性基于热固性的玻璃(GFRP)和碳纤维增强聚合物(CFRP)复合材料的高要求导致制造废料和寿命末端产品的增加,作为复合废物。与热塑性聚合物不同,热固性聚合物由于其交联性质而导致回收困难。本文从能耗,加工率和再循环产品的机械性能的角度评估了分组的热固性复合回收过程,分组为机械,热和化学方法。本文提出了复合技术的基准,并确定了研究挑战。

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