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首页> 外文期刊>Fibers and Polymers >Recycling Carbon Fiber/Epoxy Resin Composites by Thermal Excitation Oxide Semiconductors
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Recycling Carbon Fiber/Epoxy Resin Composites by Thermal Excitation Oxide Semiconductors

机译:通过热激发氧化物半导体回收碳纤维/环氧树脂复合材料

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摘要

A novel method was proposed for recycling the composites by thermal excitation oxide semiconductors. The decomposition ability of TiO2 and Cr2O3 was investigated based on analysis of effects of the temperature and time on decomposition rate of the epoxy resin. The microstructure, graphitization degree and mechanical properties of the recycled carbon fiber were investigated, and the effects of O-2 on the decomposition were analyzed. The results indicated that TiO2 and Cr2O3 had excellent decomposition ability on CF/EP composites at 350-500 degrees C; Cr2O3 was more suitable to decompose composites due to its high purity and good thermal stability against TiO2; the temperature and time were positively correlated with the decomposition rate of epoxy resin, and the influence intensity of the temperature was higher than that of the time; O-2 could promote recycling by oxidation of the carbon deposit and supporting combustion, and the I-G/I-D of the recycled carbon fiber was significantly lower than that of original carbon fiber; the monofilament tensile strength of the recycled carbon fiber was 87% of that of the original carbon fiber at 500 degrees C, 15 min and the flow rate of 100 ml/min (99.999% O-2).
机译:提出了一种新的方法,用于通过热激发氧化物半导体回收复合材料。研究了TiO2和Cr2O3的分解能力,基于对环氧树脂的分解率的温度和时间的影响分析。研究了再循环碳纤维的微观结构,石墨化程度和力学性能,分析了O-2对分解的影响。结果表明,在350-500摄氏度下,TiO2和Cr2O3在CF / EP复合材料上具有优异的分解能力; Cr2O3更适合于复合材料,其由于其高纯度和对TiO 2的良好热稳定性;温度和时间与环氧树脂的分解速率正相关,温度的影响强度高于时间; O-2可以通过氧化碳沉积和支撑燃烧来促进回收,再生碳纤维的I-G / I-D显着低于原始碳纤维的I-G / I-D;再循环碳纤维的单丝拉伸强度为500℃,15分钟的原始碳纤维的87%,流速为100毫升/分钟(99.999%O-2)。

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