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Effect of Stacking Sequence and Sodium Bicarbonate Treatment on Quasi-Static and Dynamic Mechanical Properties of Flax/Jute Epoxy-Based Composites

机译:堆积顺序和碳酸氢钠处理对亚麻/黄麻环氧树脂基复合材料准静态和动态力学性能的影响

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摘要

The present paper deals with the investigation of quasi-static and dynamic mechanical response of epoxy-based composites reinforced with flax and/or jute plain weave fabrics. In order to evaluate the influence of the stacking sequence, two monolithic laminates reinforced with flax or jute fibers and two hybrid flax/jute laminates were manufactured through the vacuum infusion technique. Furthermore, an eco-friendly and cost-effective surface treatment based on fiber soaking in a sodium bicarbonate solution was employed to improve the fiber-matrix adhesion. The mechanical characterization (by means of quasi-static flexural, dynamic mechanical thermal analysis and Charpy impact tests) allowed to evidence that the sodium bicarbonate treatment leads to noticeable improvement of the mechanical performances of flax reinforced composites, whereas jute composites experience a slight decrease of their mechanical properties. Overall, the hybridization allows to achieve intermediate mechanical properties among those of monolithic composites. Furthermore, the coupled action of hybridization and surface treatment does not lead to a beneficial and reliable effect on the mechanical response of the resulting composites.
机译:本文研究了亚麻和/或黄麻平纹织物增强的环氧树脂基复合材料的准静态和动态力学响应。为了评估堆叠顺序的影响,通过真空灌注技术制造了两个用亚麻或黄麻纤维增强的整体式层压板和两个混杂的亚麻/黄麻层压板。此外,还采用了一种基于纤维在碳酸氢钠溶液中浸泡的环保且具有成本效益的表面处理方法,以改善纤维与基质的粘合力。机械特性(通过准静态挠曲,动态机械热分析和夏比冲击试验)可以证明,碳酸氢钠处理可显着改善亚麻增强复合材料的机械性能,而黄麻复合材料的力学性能略有下降。它们的机械性能。总的来说,杂交允许在整体式复合材料中获得中间的机械性能。此外,杂交和表面处理的耦合作用不会对所得复合材料的机械响应产生有益和可靠的影响。

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