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Effect of filler waviness and orientation on the damping behavior of CNF-reinforced epoxy composites

机译:填料波纹度和取向对CNF增强环氧复合材料阻尼性能的影响

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摘要

An ever increasing demand for material performance coupled with recent advances in the production and availability of nanoscale materials has led to a significant interest in the use of nanoscale fillers to augment and tailor material performance in nanocomposites. Specifically, the use of high aspect ratio fillers, such as carbon nanotubes and carbon nanofibers (CNF) to augment the viscoelastic performance of nanocomposites has been the focus of many studies. Previous study has shown the use of high aspect ratio fillers to significantly enhance the damping capacity at low frequencies by more than 100 %, relative to the neat epoxy. In light of the promise, this technology holds for use in engineered applications, requiring specific damping performance, there remains a fundamental lack in understanding of the precise mechanisms and thereby a lack of ability to accurately predict material performance, which is limiting application of the technology. This study looks at both the effect of the random filler orientation and the effect of filler waviness in examining the viscoelastic response of CNF-reinforced nanocomposites. Using a fundamental approach, this study employs experimental, analytical, and numerical modeling techniques to characterize the amount of strain energy transferred to the filler and the matrix, and to indirectly estimate the effective loss factor of the filler. Utilizing experimental investigation coupled with parametric inquiries using strain energy methods relative to both filler orientation and waviness, this study provides fundamental insight into the effect of imperfect geometries and random filler distributions seen in nanocomposites utilizing high aspect ratio fillers, such as CNF.
机译:对材料性能的不断增长的需求,再加上纳米级材料的生产和可用性的最新进展,引起了人们对使用纳米级填料来增强和调整纳米复合材料的材料性能的极大兴趣。具体而言,使用高纵横比的填料(例如碳纳米管和碳纳米纤维(CNF))来增强纳米复合材料的粘弹性能已成为许多研究的重点。先前的研究表明,相对于纯净的环氧树脂,使用高长宽比的填料可以显着增强低频下的阻尼能力,超过100%。根据希望,该技术可用于需要特定阻尼性能的工程应用中,但仍然缺乏对精确机理的理解,因此缺乏准确预测材料性能的能力,这限制了该技术的应用。 。这项研究着眼于无规填料取向和填料波纹度在检查CNF增强纳米复合材料的粘弹性响应中的作用。本研究采用一种基本方法,采用实验,分析和数值建模技术来表征传递至填料和基体的应变能的数量,并间接估算填料的有效损耗因子。利用实验研究以及使用应变能方法进行相对于填料取向和波纹度的参数查询,本研究为使用高长宽比填料(例如CNF)的纳米复合材料中不完美的几何形状和随机填料分布的影响提供了基本的见识。

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