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The influence of stitching and unconventional fibres orientation on the tensile properties of CFRP laminates

机译:缝合和非常规纤维取向对CFRP层压板拉伸性能的影响

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摘要

In the typical structures of carbon-fibre-reinforced plastics (CFRP), multiple layers are stacked together with a particular sequence in order to give specific mechanical characteristics. Layers are organized with different angles, different sequences and different technological processes to obtain innovative materials. This paper introduces a new parameter, able to improve mechanical properties of composites. It analyses an unconventional fibres orientation combined with the through-the-thickness stitching on the in-plane mechanical properties of CFRP. Conventional carbon fibres orientation is generally referred to a Cartesian coordinate system, in which fibres are arranging in bundles along different angle orientations respect to the zero lamina. In this paper a polar coordinate system of continue carbon tow is introduced to create specimens as well as complex geometry components in an easy way. Five different configurations are studied: two are classified as traditional composites (unstitched and Cartesian orientation of woven carbon cloth), three are defined as innovative composites (stitched laminates and continue carbon tow organized in polar or Cartesian system). The application of this technique aims to introduce some advantages in the material's manufacturing process and if compared with the conventional strategy seems to be very promising since it appears to be very efficient in stopping delamination phenomenon. (C)2016 Elsevier Ltd. All rights reserved.
机译:在碳纤维增强塑料(CFRP)的典型结构中,多层以特定顺序堆叠在一起,以提供特定的机械特性。各个层以不同的角度,不同的顺序和不同的工艺过程进行组织以获得创新的材料。本文介绍了一个可以改善复合材料力学性能的新参数。它分析了非常规纤维的取向,并结合了厚度方向缝制对CFRP的面内机械性能的影响。常规的碳纤维取向通常被称为笛卡尔坐标系,其中,纤维相对于零层沿不同的角度取向成束排列。在本文中,引入了连续碳丝束的极坐标系统,以一种简单的方式来创建标本以及复杂的几何形状组件。研究了五种不同的配置:两种分类为传统复合材料(机织碳纤维布的非缝合和直角方向),三种定义为创新性复合材料(缝合的层压板,并以极性或笛卡尔系统连续组织碳丝束)。这项技术的应用旨在在材料的制造过程中引入一些优势,并且与传统策略相比似乎很有希望,因为它在阻止分层现象方面非常有效。 (C)2016 Elsevier Ltd.保留所有权利。

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