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水热老化条件下碳纳米改性环氧树脂基玄武岩纤维复合材料

Basalt Fibre Composite with Carbon Nanomodified Epoxy Matrix under Hydrothermal Ageing.

作者信息

Glaskova-Kuzmina Tatjana, Zotti Aldobenedetto, Borriello Anna, Zarrelli Mauro, Aniskevich Andrey

机构信息

Institute for Mechanics of Materials, University of Latvia, 3-635, Jelgavas Str., LV-1004 Riga, Latvia.

Institute of Polymers, Composites and Biomaterials, National Research Council of Italy, 80055 Portici, Italy.

出版信息

Polymers (Basel). 2021 Feb 11;13(4):532. doi: 10.3390/polym13040532.

Abstract

This work aimed to investigate the effect of hybrid carbon nanofillers (e.g., carbon nanotubes/carbon nanofibers in the ratio 1:1 by mass) over the electrical and flexural properties for an epoxy matrix and corresponding basalt fibre reinforcing composite (BFRC) subjected to full-year seasonal water absorption. Hydrothermal ageing was performed by full immersion of the tested materials into distilled water according to the following model conditions (seasons). The mechanical properties were measured in three-point bending mode before environmental ageing and after each season. Upon environmental ageing, the relative change of flexural strength and elastic modulus of the epoxy and NC was within 10-15%. For nanomodified BFRCs, the slightly higher effect (approx. by 10%) of absorbed moisture on flexural characteristics was found and likely attributed to higher defectiveness (e.g., porosity, the formation of agglomerates etc.). During flexural tests, electrical resistance of the nanocomposites (NC) and BFRC/NC samples was evaluated. The electrical conductivity for UD BFRC/NC, before and after hydrothermal ageing, was by 2 and 3 times higher than for the NC, accordingly, revealing the orientation of electrically conductive nanoparticles and/or their agglomerates during lay-up manufacturing which was evaluated by the rules of the mixture. Based on all results obtained it can be concluded that the most potentially applicable for damage indication was UD BFRC/NC along fibres since full-year hydrothermal ageing improved its electrical conductivity by approx. 98% and, consequently, the ability to monitor damages was also enhanced.

摘要

本研究旨在探究混合碳纳米填料(如质量比为1:1的碳纳米管/碳纳米纤维)对环氧基体及其相应的玄武岩纤维增强复合材料(BFRC)在全年季节性吸水情况下的电学性能和弯曲性能的影响。根据以下模型条件(季节),通过将测试材料完全浸入蒸馏水中进行水热老化。在环境老化之前以及每个季节之后,以三点弯曲模式测量力学性能。经过环境老化后,环氧材料和纳米复合材料(NC)的弯曲强度和弹性模量的相对变化在10% - 15%以内。对于纳米改性的BFRC,发现吸湿对弯曲特性的影响略高(约10%),这可能归因于更高的缺陷率(如孔隙率、团聚体的形成等)。在弯曲试验过程中,评估了纳米复合材料(NC)和BFRC/NC样品的电阻。相应地,单向BFRC/NC在水热老化前后的电导率分别比NC高2倍和3倍,这揭示了在铺层制造过程中导电纳米颗粒和/或其团聚体的取向,这是根据混合法则评估的。基于所有获得的结果,可以得出结论,由于全年水热老化使单向BFRC/NC沿纤维方向的电导率提高了约98%,从而增强了其监测损伤的能力,因此它最有可能适用于损伤指示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14b6/7918171/bba91e5c2c33/polymers-13-00532-g001.jpg

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