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Hybrid Fabrics for Structural Composites

机译:用于结构复合材料的混合织物

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This article gives an insight into the design considerations that have been considered to design a technical hybrid fabric structure for Radome application. An attempt has been made to study empirical relationship between various structural parameters that have a major influence on the final composite properties. The hybrid fabric structures woven out of E-glass (warp) and PEEK (weft) and E-glass (warp) and polyester (weft) have been designed based on mathematical approach and expressed in terms of geometrical parameters in order to have a complete geometric specification of the fabric. An effort has also been made to understand in a comprehensive manner the interrelationships between geometrical properties of yarns and fabrics and their influence on processing of composites and their performance. The study shows that impregnation of resin within the fiber network is primarily responsible for intimate fiber-fiber contact that contributes for the final properties in the composite and provides a good interface area in the composite. The effect of short processing cycle is also attempted keeping in view the techno-economic aspects and it is found that long process cycle with stand in time at major transition temperatures gives useful properties compared to short process cycle. Glass-polyester-based composites are also prepared and studied to have relative performance of glass-PEEK composites.
机译:本文深入介绍了设计为Radome应用程序设计的技术混合织物结构时所考虑的设计注意事项。已经尝试研究对最终复合材料性能有重大影响的各种结构参数之间的经验关系。由电子玻璃(经线)和聚醚醚酮(纬线)以及电子玻璃(经线)和聚酯(纬线)织成的混合织物结构已根据数学方法进行了设计,并以几何参数表示,从而具有完整的结构。织物的几何规格。还努力以一种全面的方式理解纱线和织物的几何特性之间的相互关系以及它们对复合材料加工及其性能的影响。研究表明,树脂在纤维网络中的浸渍主要负责紧密的纤维与纤维的接触,这有助于复合材料的最终性能,并在复合材料中提供良好的界面区域。考虑到技术经济方面,还尝试了短加工周期的影响,并且发现与短加工周期相比,在主要转变温度下具有较长时间的长加工周期具有及时性。还制备并研究了玻璃-聚酯基复合材料,使其具有玻璃-PEEK复合材料的相对性能。

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