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Pairing effect and tensile properties of laminated high-performance hybrid composites prepared using carbon/glass and carbon/aramid fibers

机译:用碳/玻璃纤维和碳/芳纶纤维制备的高性能层压复合材料的配对效果和拉伸性能

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摘要

Many attempts have been made to fabricate lightweight, high-performance, and low-cost polymeric composites. To improve the mechanical performance of the same material compared to conventional composites, paired hybrid materials were manufactured with different lamination structures. Each of six types of hybrid composite was designed by lamination pairing of carbon/aramid fabric and carbon/glass fabric using VARTM. The dependence of the mechanical properties of the samples on the pairing effects of the lamination structures was investigated. All pairing materials did not lead to a large increase of tensile strength due to the domination of carbon fiber, but the mechanical properties of specific laminates were clearly changed by the particular pairing sequence used. Using the limited material, the design of an effective structure was the central laminating condition with a good tensile and bending properties. Laminating position of the carbon fiber was found to play an important role in the stacking design of hybrid composites. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经进行了许多尝试来制造轻质,高性能和低成本的聚合物复合材料。与常规复合材料相比,为了提高同一材料的机械性能,制造了具有不同层压结构的成对混合材料。六种类型的混合复合材料中的每一种都是通过使用VARTM将碳/芳纶织物和碳/玻璃织物层压配对而设计的。研究了样品的机械性能对叠层结构配对效应的依赖性。由于碳纤维的支配作用,所有配对材料均未导致抗张强度的大幅提高,但特定层压材料的机械性能已因所使用的特定配对顺序而明显改变。使用有限的材料,有效结构的设计是具有良好拉伸和弯曲性能的中央层压条件。发现碳纤维的层压位置在混合复合材料的堆叠设计中起重要作用。 (C)2015 Elsevier Ltd.保留所有权利。

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