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Tensile Properties of Unsaturated Polyester and Epoxy Resin Reinforced with Recycled Carbon-Fiber-Reinforced Plastic

机译:再生碳纤维增强塑料加固不饱和聚酯和环氧树脂的拉伸性能

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摘要

To better understand the mechanical properties of recycled carbon-fiber-reinforced plastic (rCFRP), CFRP crushed into small pieces was mixed randomly in different proportions (0-30 wt%) with two different resins: unsaturated polyester and epoxy resin. Two different sizes of crushed CFRP were used: 0.1 mm x 0.007 mm (milled CFRP) and 30 mm x 2 mm (chopped CFRP). The tensile strength of rCFRP was found to depend on both the proportion and the size of the CFRP pieces. It increased with increasing proportion of chopped CFRP, but decreased with increasing proportion of milled CFRP. There was no clear dependence of the tensile strength on the resin that was used. A low fracture strain was found for rCFRP samples made with chopped CFRP, in contrast to those made with milled CFRP. The fracture strain was found to increase with increasing content of milled CFRP up to 20 wt%, at which point, coalescence of existing microvoids occurred. However, there was a reduction in fracture strain for rCFRP with 30 wt% of milled CFRP, owing to the formation of defects (blow holes). Overall, the fracture strain was higher for rCFRPs based on epoxy resin than for those based on unsaturated polyester with the same CFRP content, because of the high ductility of the epoxy resin. The different tensile properties reflected different failure characteristics, with the use of chopped CFRP leading to a complicated rough fracture surface and with milled CFRP causing ductile failure through the presence of tiny dimple-like fractures. However, for a high content of milled CFRP (30 wt%), large blow holes were observed, leading to low ductility.
机译:为了更好地了解再循环的碳纤维增强塑料(RCFRP)的力学性能,用两种不同的树脂(0-30wt%)随机混合将CFRP挤入小块中,具有两种不同的树脂:不饱和聚酯和环氧树脂。使用两种不同尺寸的粉碎CFRP:0.1mm×0.007mm(铣削CFRP)和30mm×2mm(切碎的CFRP)。发现RCFRP的拉伸强度取决于CFRP件的比例和大小。随着切碎的CFRP的比例增加而增加,但随着碾磨CFRP的比例增加而降低。抗拉强度在所用树脂上没有明显的依赖性。发现用切碎的CFRP制备的RCFRP样品,与用研磨的CFRP制备的RCFRP样品发现低断裂菌株。发现裂缝菌株随着碾磨CFRP的含量增加而增加,最高可达20%(重量),此时发生了现有微管的聚结。然而,由于形成缺陷(吹孔),RCFRP具有30wt%的碾磨CFRP的裂缝菌株减少。总的来说,由于环氧树脂的高延展性,基于环氧树脂的RCFRPS的裂缝菌株对于基于不饱和聚酯的基于不饱和聚酯的裂缝菌株较高,因此环氧树脂的高延性。不同的拉伸性能反映了不同的失效特性,使用切碎的CFRP导致复杂的粗糙骨折表面,并通过碾磨的CFRP通过存在微小的凹坑状骨折而导致延展性失效。然而,对于高含量的研磨CFRP(30wt%),观察大吹孔,导致低延展性。

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