Toward a circular economy: zero-waste manufacturing of carbon fiber-reinforced thermoplastic composites

Philip R. Barnett, Nadim S. Hmeidat, Bingqian Zheng, Dayakar Penumadu
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Abstract

Fiber-reinforced composites are becoming ubiquitous as a way of lightweighting in the wind, aerospace, and automotive industries, but current recycling technologies fall short of a circular economy. In this work, fiber-reinforced composites made of recycled carbon fiber and polyphenylene sulfide were recycled and remanufactured using common processing technologies such as compression and injection molding. An industrially viable size-exclusive sieving technique was used to retain fiber length and reduce variability in the mechanical properties of the remanufactured composites. Fiber length reduction alone could not explain the strength reductions apparent in the composites, which we propose are due to microstructural inhomogeneity as defined by poor dispersion of the fibers. Future recycling efforts must focus on fiber length retention and good dispersion to make composite remanufacturing a viable path toward a circular economy.

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实现循环经济:碳纤维增强热塑性复合材料的零废弃制造
纤维增强复合材料作为一种轻量化方式,在风能、航空航天和汽车行业中正变得无处不在,但目前的回收技术却无法实现循环经济。在这项研究中,使用压缩和注塑等普通加工技术,对回收碳纤维和聚苯硫醚制成的纤维增强复合材料进行了回收和再制造。为了保留纤维长度并减少再制造复合材料机械性能的变化,采用了一种工业上可行的尺寸排他性筛分技术。单靠减少纤维长度无法解释复合材料中明显的强度降低现象,我们认为这是由于纤维分散不良所导致的微结构不均匀性造成的。未来的回收工作必须关注纤维长度的保持和良好的分散性,使复合材料再制造成为实现循环经济的可行途径。
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