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Composites reinforced with Guadua fibers: Physical and mechanical properties

机译:瓜杜瓦纤维增强的复合材料:物理和机械性能

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The need to mitigate the environmental impact produced by the use of conventional materials in the construction sector of industry has motivated research based on alternative composite materials reinforced with vegetable fibers. In this paper, the influence of the orientation of the fibers and the effect of their surface treatments on the physical and mechanical properties of panels constructed using non-conventional materials were analyzed. For the manufacture of the composites, bamboo fibers and castor oil resin were used. In order to evaluate the effect of the orientation of the fibers on the performance of the composite, two fiber typologies were employed: long, unidirectional fibers and randomly-distributed short fibers. To modify the surface of the fibers, two methods were applied: a cold plasma treatment and an alkaline treatment. The physical characterization was focused on the determination of the theoretical and experimental density, the effective absorption, and the percentage of swelling. The mechanical characterization focused on the determination of the tensile, compression, and flexural behavior. In order to evaluate the degradation of the material with the temperature, a thermogravimetric test was performed. The results obtained demonstrate the influence of the orientation and surface modifications of the fibers on the physical and mechanical behavior of non-conventional composites. (C) 2019 Elsevier Ltd. All rights reserved.
机译:减轻在建筑业中使用常规材料所产生的环境影响的需求已激发了基于以植物纤维增强的替代复合材料为基础的研究的动机。在本文中,分析了纤维的取向及其表面处理对使用非常规材料构造的面板的物理和机械性能的影响。为了制造复合材料,使用了竹纤维和蓖麻油树脂。为了评估纤维取向对复合材料性能的影响,采用了两种纤维类型:长单向纤维和随机分布的短纤维。为了修饰纤维的表面,应用了两种方法:冷等离子体处理和碱处理。物理表征集中在确定理论和实验密度,有效吸收和溶胀百分比上。机械特性集中于确定拉伸,压缩和弯曲行为。为了评估材料随温度的降解,进行了热重测试。获得的结果证明了纤维的取向和表面改性对非常规复合材料的物理和机械性能的影响。 (C)2019 Elsevier Ltd.保留所有权利。

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