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Vitrimer composites for rotorcraft comnonents

机译:旋翼飞行器的virimer复合材料

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Carbon fiber reinforced composites (CFRP) are frequently used in rotorcraft components due to their high strength to weight ratio. Carbon fibers are the principal load carriers whereas polymer matrix provides structural integrity to the CFRP components. Fatigue failure originating in the matrix pose a design constraint on CFRP components. The fatigue failure originates in form of small scale sub-critical cracks which eventually grow into macroscopic cracks/shear localization resulting in eventual failure. Research efforts have been directed at improving fracture and fatigue performance of polymeric matrix by arresting incipient cracks. Thermoset polymers are widely used as matrix material as they posses superior strength due to high crosslinking density. However, since no self-healing mechanism operates in thermosets, damage is irreversibly accumulated over the life cycle of components. A new class of materials called vitrimers provide a novel approach to develop fatigue resistant CFRP. Vitrimers are associative covalent adaptive networks (CAN) which have reversible crosslinking reactions which can be activated by external energy stimulus like heat. As the crosslinked network is reversible, the incipient damage can be 'healed' by application of heat. In this work we explore the self-healing properties of vitrimer fabricated by the reaction of adipic acid and epoxy resin. The vitrimer is initially tested in static tests to probe mechanical properties, followed by fatigue experiments. The vitrimer is then used to make a vitrimeric CFRP (vCFRP) composite and is tested for its static and fatigue performance.
机译:碳纤维增强复合材料(CFRP)中旋翼飞行器部件经常使用由于它们的高的强度重量比。碳纤维是主要的负载载波,而聚合物基体提供结构完整性的CFRP部件。疲劳失效原产于基质构成对CFRP组件的设计约束。疲劳失效起源于小规模亚临界裂纹,最终长成宏观裂纹/导致最终失效局部剪切形式。研究努力已经针对通过阻止初裂改善聚合物基质的断裂和疲劳性能。因为它们posses优异的强度由于高交联密度的热固性聚合物被广泛用作基质材料。不过,由于没有自我修复机制在运作热固性塑料,损害不可逆积累组件的生命周期。一类新的材料称为vitrimers提供一种新颖的方法来开发抗疲劳CFRP。 Vitrimers是关联的共价自适应网络(CAN),它具有可以通过如热外部能量刺激可以激活可逆的交联反应。作为交联网络是可逆的,可以通过施加热“痊愈”初期损伤。在这项工作中,我们探索由己二酸和环氧树脂的反应制造vitrimer的自愈性能。该vitrimer在静态试验最初测试来探测的机械性能,其次是疲劳试验。然后将vitrimer是用来制造一个vitrimeric CFRP(vCFRP)复合物和用于其静态和疲劳性能进行了测试。

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