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Pinned Hybrid Glass-Flax Composite Laminates Aged in Salt-Fog Environment: Mechanical Durability

机译:在盐雾环境下老化的固定混合玻璃-亚麻复合层压板:机械耐久性

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摘要

The aim of the present paper is to study the mechanical performance evolution of pinned hybrid glass-flax composite laminates under environment aging conditions. Hybrid glass-flax fibers/epoxy pinned laminates were exposed to salt-spray fog environmental conditions up to 60 days. With the purpose of assessing the relationship between mechanical performances and failure mechanisms at increasing aging time, single lap joints at varying joint geometry (i.e., hole diameter D and hole distance E from free edge) were characterized after 0 days (i.e., unaged samples), 30 days, and 60 days of salt-fog exposition. Based on this approach, the property–structure relationship of the composite laminates was assessed on these critical environmental conditions. In particular, a reduction of failure strength for long-aging-time-aged samples was observed in the range 20–30% compared to unaged one. Due to the natural fiber degradation in a salt-fog environment, premature catastrophic fractures mode due to shear-out and net-tension were found, related to reduced joint fracture strength. This behavior identifies that this type of joint requires a careful design in order to guarantee an effective mechanical stability of the composite hybrid joint under long-term operating conditions in an aggressive environment.
机译:本文的目的是研究在环境老化条件下钉扎混合玻璃-亚麻复合层压板的机械性能演变。将混合玻璃亚麻纤维/环氧树脂固定层压板暴露于盐雾环境条件下长达60天。为了评估在延长的老化时间下机械性能和失效机理之间的关系,在0天后(即未老化的样品)表征了具有变化的接头几何形状(即,孔直径D和距自由边缘的孔距离E)的单搭接接头,盐雾暴露30天和60天。基于这种方法,在这些关键环境条件下评估了复合层压板的性能-结构关系。特别是,与未老化样品相比,长时间老化样品的破坏强度降低了20%到30%。由于盐雾环境中天然纤维的降解,人们发现由于剪切和净张力导致的过早灾难性断裂模式,与降低的联合断裂强度有关。这种行为表明,这种接头需要仔细设计,以保证在恶劣环境下的长期运行条件下复合混合接头的有效机械稳定性。

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