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Mechanical Properties of Woven Mat Jute/Epoxy Composites

机译:机织毡黄麻/环氧树脂复合材料的机械性能

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摘要

Natural fibers combine technological, economic and ecological aspects. However, a major restriction on their successful use in long term composite applications is their high moisture absorption and poor dimensional stability. This paper is aimed at establishing a link between the mats grammage and the mechanical properties of the epoxy/jute fibers laminates. Composites reinforced by coarse, medium and fine (C, M and F) mats were processed by vacuum bagging. Some batches were immersed in water up to 60 days in order to study the hydro-degradation. Mechanical tests were performed to obtain the bending strength and impact response. The mechanical response to bending and impact loadings was conditioned not only by the percentage of fiber, but also by the thickness of the specimens, which leads to composites F having lower strength than composites C despite having a higher percentage of fiber. Immersion in water causes a marked loss of mechanical properties in the first days of immersion, especially for thinner fiber grammage composites. A strong influence of the mats grammage on the impact response was observed. Increasing mats grammage promotes a strong increase in peak load, restored energy and impact energy for perforation and also a marked reduction of the deformation.
机译:天然纤维结合了技术,经济和生态方面。然而,它们在长期复合材料应用中成功使用的主要限制是它们的高吸湿性和差的尺寸稳定性。本文旨在在毡的克重与环氧/黄麻纤维层压板的机械性能之间建立联系。用真空,装袋处理由粗糙,中等和精细(C,M和F)毡增强的复合材料。为了研究加氢降解,将一些批次浸入水中长达60天。进行机械测试以获得弯曲强度和冲击响应。对弯曲和冲击载荷的机械响应不仅取决于纤维的百分比,而且还取决于样品的厚度,这导致复合材料F的强度低于复合材料C,尽管纤维的百分比较高。浸入水中在浸入的第一天会导致明显的机械性能下降,尤其是对于纤维含量较低的复合材料而言。观察到垫层克重对冲击响应的强烈影响。垫层克重的增加会大大增加峰值载荷,恢复穿孔的能量和冲击能量,并显着减少变形。

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