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首页> 外文期刊>Fibers and Polymers >Mechanical Properties of Composites Made from Locally Manufactured Carbon Fabrics and the Composites Produced from Air-Textured Glass Yarns
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Mechanical Properties of Composites Made from Locally Manufactured Carbon Fabrics and the Composites Produced from Air-Textured Glass Yarns

机译:由局部制造的碳织物制成的复合材料的机械性能和由空气纹理玻璃纱产生的复合材料

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Composite materials have a wide range of applications in structural components because of their high strength-to-weight and stiffness-to-weight ratios. However, the most crucial and common life-restricting crack growth mode in laminated composites i.e. delamination is of great concern. Air jet texturing was selected to provide a small amount of bulk to the glass yarn. The purpose was to provide more surface contact between the fibres and resin and also to increase the adhesion between the neighbouring layers. These were expected to enhance the resistance to delamination in the woven glass composites. The development and characterisation of core-and-effect textured glass yarns was presented in the previous paper. This paper describes the comparison of the mechanical properties of composites produced from air-textured glass yarns and the composites made from locally manufactured carbon fabrics. The tensile, flexure and inter-laminar shear strength (ILSS) were compared and it was observed that although glass fibres are inferior to carbon fibres in terms of mechanical properties however, the flexure strength and ILSS of glass based composites increases after texturing and were found closer to the properties of carbon based composites.
机译:复合材料在结构部件中具有广泛的应用,因为它们的高强度重量和刚度至重量比率。然而,层压复合材料中最重要的和常见的寿命裂缝增长模式即分层非常关注。选择空气喷射纹理以提供少量散装到玻璃纱线。目的是在纤维和树脂之间提供更多表面接触,并且还可以增加相邻层之间的粘附性。这些预期可提高编织玻璃复合材料中对分层的抵抗力。核心和效应纹理玻璃纱的开发和表征在前一篇论文中呈现。本文介绍了由空气织物玻璃纱线和由局部制造的碳织物制成的复合材料产生的复合材料的机械性能的比较。比较拉伸,弯曲和层间剪切强度(ILS),观察到,虽然玻璃纤维在机械性能方面差不等,但是,玻璃基复合材料的弯曲强度和ILS在纹理后增加并发现靠近碳基复合材料的性质。

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