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Recycled carbon fiber reinforced poly(butylenes terephthalate) thermoplastic composites: fabrication, crystallization behaviors and performance evaluation

机译:再生碳纤维增强聚对苯二甲酸丁二醇酯热塑性复合材料:制备,结晶行为和性能评估

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摘要

The thermoplastic composites based on poly(butylene terephthalate) (PBT) and recycled carbon fiber (RCF) were prepared through simple melt compounding by a twin-screw extruder. An effective approach was utilized to clean and treat the RCF surface with a concentrated solution of nitric acid and then a solution of diglycidyl ether of bisphenol A as macromolecular coupling agent so as to improve the interfacial adhesion between the RCF and PBT matrix. As a result, the reinforcing potential of the RCF was enhanced substantially, and the mechanical properties, heat distortion temperature, and thermal stability of PBT could be significantly improved by incorporating this surface-treated RCF. The morphologies of fracture surfaces indicated that the RCF achieved a homogeneous dispersion in the PBT matrix due to a good interfacial interaction between fiber and PBT. The investigations on the crystallization behaviors and kinetics demonstrated that the RCF acted as a nucleation agent for the crystallization of PBT, and the crystallization rate and nucleation density of PBT were increased remarkably due to the heterogeneous nucleating effect of RCF in the matrix. These features may be advantageous for the enhancement of mechanical properties, heat resistance, and process ability of PBT-based composites. This study may provide a design guide for carbon fiber-reinforced PBT composites with a great potential as well as a low cost for industrial and civil applications.
机译:通过双螺杆挤出机的简单熔融混合,制备了基于聚对苯二甲酸丁二酯(PBT)和再生碳纤维(RCF)的热塑性复合材料。一种有效的方法是先用浓硝酸然后用双酚A的二缩水甘油醚作为大分子偶联剂的溶液清洗和处理RCF表面,以改善RCF和PBT基质之间的界面粘合力。结果,通过加入该表面处理的RCF,RCF的增强电势大大提高,并且PBT的机械性能,热变形温度和热稳定性可以显着提高。断裂表面的形态表明,由于纤维和PBT之间的良好界面相互作用,RCF在PBT基质中实现了均匀分散。对结晶行为和动力学的研究表明,RCF是PBT结晶的成核剂,并且由于RCF在基体中的异形成核作用,PBT的结晶速率和成核密度显着提高。这些特征对于增强基于PBT的复合材料的机械性能,耐热性和加工能力可能是有利的。这项研究可以为工业和民用领域具有巨大潜力和低成本的碳纤维增强PBT复合材料提供设计指南。

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