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Effect of structural parameters on the tensile properties of multilayer 3D composites from Tururi palm tree (Manicaria saccifera Gaertn) fibrous material

机译:结构参数对Tururi棕榈树(Manicaria saccifera Gaertn)纤维材料多层3D复合材料拉伸性能的影响

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摘要

Tururi (Manicaria saccifera Gaertn.) is a naturally integrated fibrous structure in a form of sac, which protects the fruits of the Amazon Ubucu palm tree. The goal of this research was to develop and characterize multilayer 3D green composites from Tururi fibrous material and identify applications based on their performance. A total of 12 composite samples were fabricated using Vacuum Assisted Resin Transfer Molding Technique (VARTM) to study the effect of the structural parameters, namely, number of Tururi fibrous layers, fiber orientation, and fiber volume fraction on the tensile and impact behavior of the final composites. The focus of this paper will be on the tensile properties in the sac and cross directions, as for the impact properties, it will be covered in another publication. It was found that a proper stacking sequence, can produce composites from Tururi fibers with quasi-isotropic tensile behavior, and with the proper combination of number of layers, and stretch %, the tensile properties of the produced composite can be optimized. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Tururi(Manicaria saccifera Gaertn。)是囊状的天然整合纤维结构,可保护亚马逊Ubucu棕榈树的果实。这项研究的目的是开发和表征Tururi纤维材料制成的多层3D绿色复合材料,并根据其性能确定应用。使用真空辅助树脂传递模塑技术(VARTM)总共制造了12个复合样品,以研究结构参数(即Tururi纤维层数,纤维取向和纤维体积分数)对复合材料拉伸和冲击行为的影响。最终复合材料。本文的重点将放在囊和横向的拉伸特性上,关于冲击特性,将在另一篇出版物中进行介绍。发现适当的堆叠顺序可以由具有准各向同性拉伸性能的Tururi纤维生产复合材料,并且通过适当组合层数和拉伸%,可以优化所生产复合材料的拉伸性能。 (C)2016 Elsevier Ltd.保留所有权利。

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