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首页> 外文期刊>Journal of Applied Polymer Science >Low-temperature fast curable behavior and properties of bio-based carbon fiber composites based on resveratrol
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Low-temperature fast curable behavior and properties of bio-based carbon fiber composites based on resveratrol

机译:基于白藜芦醇的生物基碳纤维复合材料的低温快速可固化性能及性能

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Environmentally friendly materials are an integral part of sustainable chemistry, and bio-based polymer composites are an important class of materials. The manufacture of composites is expected to reduce or even eliminate the use of adjuvants, considering the importance of reducing energy consumption and avoiding health and environmental risks. In this study, a phenyl-containing, polyfunctional, bio-based epoxy resin (TGER) was synthesized, and carbon fiber-reinforced, bio-based epoxy resin composites were fabricated by vacuum-assisted resin infusion using two aromatic amine curing agents, 4,4 '-diaminodiphenylmethane (DDM) and 3,3 '-diethyl-4,4 '-diaminodiphenylmethane (DEDDM). Curing reactions and rheological behavior studies showed that TGER had higher curing reactivity toward DDM and DEDDM than to diglycidyl ether of bisphenol A (DGEBA) and possessed good processability. The results indicated that the resveratrol-based epoxy resin displayed low-temperature fast curing properties. The evaluation of the mechanical properties of the carbon fiber composites showed that the flexural strengths of CF/TGER/DDM and CF/TGER/DEDDM were 520 and 628 MPa, respectively. The initial decomposition temperature of CF/TGER composites is above 200 degrees C. Furthermore, the carbon fiber-reinforced biopolymers possess excellent heat resistance. Therefore, carbon fiber-reinforced, resveratrol-based epoxy resin composites are promising candidates as alternatives to petroleum-based high-performance carbon fiber composites.
机译:环保材料是可持续化学的一个组成部分,生物基聚合物复合材料是重要的材料。考虑到减少能源消耗和避免健康和环境风险的重要性,复合材料的制造预计将减少或甚至消除佐剂的使用。在该研究中,合成了含苯基,多官能,生物基环氧树脂(Tger),并通过使用两个芳族胺固化剂,4的真空辅助树脂输注来制造碳纤维增强的生物基环氧树脂复合材料4 ,4'-二胺二苯基甲烷(DDM)和3,3'-二乙基-4,4'-二胺二庚烷基甲烷(DIDDM)。固化反应和流变行为研究表明,Tger对DDM的固化反应性较高,DDM与双酚A(DGEBA)的二缩水甘油醚具有较高的DDM,并且具有良好的加工性。结果表明,白藜芦醇基环氧树脂显示出低温快速固化性能。碳纤维复合材料的力学性能的评价表明,CF / TGER / DDM和CF / TGER / DEDDM的抗弯强度分别为520和628MPa。 CF / Tger复合材料的初始分解温度高于200℃。此外,碳纤维增强的生物聚合物具有优异的耐热性。因此,碳纤维增强的白藜芦醇基环氧树脂复合材料是候选者作为石油基高性能碳纤维复合材料的替代品。

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