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Fabrication and Mechanical Properties of PE/PE Interface-less Composites using Micro-braiding

机译:PE / PE无界面复合材料微编织的制备及其力学性能

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An interface-less PE/PE composite has been fabricated using a micro-braiding technique.With braided fabrics,additional non-braiding yarns can be inserted,within the intertwining yarns (this type is called the middle-end fibre) and at the centre of the micro-braided yarn (this type is called the axial fibre).The effect of moulding conditions on the tensile properties was examined,followed by the effect of the diameter of the reinforcement fibre bundles,which we have called the impregnation distance.Middle-end fibres are more effective in improving the tensile strength than axial fibres because the permeation of the matrix resin into the reinforcement fibre of the middle-end fibre is easier than that of the axial fibre,although the modulus of middle-end fibre was lower than that of axial fibre because the reinforcement fibre bundles of the middle-end fibres were slightly wavy compared to that of the axial structure.
机译:采用微编织技术制造了无界面的PE / PE复合材料。使用编织织物时,可以在中间的交织纱线(这种类型的纱线称为中端纤维)中插入其他非编织纱线。研究了成型条件对拉伸性能的影响,接着是增强纤维束直径的影响,我们将其称为浸渍距离。端纤维比轴向纤维更有效地提高了抗张强度,因为尽管中端纤维的模量较低,但基体树脂渗透到中端纤维的增强纤维中要比轴向纤维容易。与轴向纤维相比,中端纤维的增强纤维束与轴向结构相比略微呈波浪形。

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