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INFLUENCE OF TEXTILE ARCHITECTURE ON THE MECHANICAL PROPERTIES OF 3D WOVEN CARBON COMPOSITES

机译:纺织架构对3D编织碳复合材料力学性能的影响

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The application of 3D woven composites in advanced structural components is limited by a lack of understanding of the influence of weaving parameters on the final architecture and mechanical properties of composites. This paper investigates the effect of fundamental and easily adjustable weave parameters (pick density and float length) on the mechanical properties (tension, compression and flexure) in 3D woven warp interlock layer-to-layer carbon/epoxy composite structures. The purpose of this paper is to establish a link between the textile and composite performance within this 3D weave architecture. The 3D fabrics, manufactured using a Jacquard loom, are fabricated in three different pick densities: 4, 10 & 16 wefts/cm, with a constant end density of 12 warps/cm from T700S-50C-12k carbon fibre. The pick density with the best mechanical properties is then used for the float length change iteration. The aim is to keep end and pick densities constant in the two float length variation specimens. The mechanical properties of the specimens are affected by the fibre content, tow waviness, misalignment of the load carrying tows and the distribution/size of resin rich areas. This paper depicts a link between the pick density/float length, mechanical properties and failure mechanisms in 3D woven layer-to-layer carbon/epoxy composites.
机译:3D编织复合材料在高级结构部件中的应用受到对编织参数对复合材料的最终结构和机械性能的影响的限制。本文研究了基本且易于可调节的织物参数(拾取密度和浮动长度)对3D编织经线互锁层碳/环氧复合结构中的机械性能(张力,压缩和挠曲)的影响。本文的目的是在该3D编织架构中建立纺织和复合性能之间的联系。使用提花织机制造的3D织物,由三种不同的挑选密度制造:4,10和16堰/厘米,恒定的12个扭曲/厘米,来自T700S-50C-12K碳纤维的恒定端密度。然后使用具有最佳机械性能的拾取密度用于浮动长度变化迭代。目的是在两个浮法长度变化样本中保持终点和挑选密度。样品的机械性能受到纤维含量,牵引波纹,负荷携带奶头的不对准和树脂富有区域的分布/尺寸的影响。本文描绘了3D编织层 - 层碳/环氧复合材料中的拾取密度/浮法长度,机械性能和故障机构之间的连接。

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