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首页> 外文期刊>成形加工: プラスチツク成形加工学会志 >Fabrication and mechanical properties of PE/PE knitted fabric composites
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Fabrication and mechanical properties of PE/PE knitted fabric composites

机译:PE / PE针织织物复合材料的制造和力学性能

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摘要

Combinations of inorganic fibers and organic matrices can produce high performance composites such as CFRP and GFRP. Normally, the adhesion between these two material types is not good due to their Completely different nature. Composites that consist of a matrix reinforced with fibers of the same material however, may have excellent interfacial strength. Often, the melting temperature of thermoplastic fibers is higher than that of the corresponding bulk material due to molecular orientation in the fibers. Therefore, a processing window between the two melting temperatures of the fibers and the bulk materials may enable fabrication of composites with a high strength interface and fiber reinforcement. We call this class of composites "Interface-less Composites". In this paper, UHMWPE fibers and PE film were selected as the first step in the validation of this concept Knitted PE fabric with good drapeability was also used as a reinforcement. The effects of processing temperature and time in film stacking method on mechanical properties were investigated. Even at a low fiber volume fraction (12%) PE/PE composites showed two times higher tensile strength than the neat PE matrix. On the other hand, the tensile strength of PE/ Epoxy composites was lower than that of Epoxy resin. This concept can be extended to any thermoplastic material. The use of these composites could greatly improve the recycle ability since matrix and reinforcement are the same materials.
机译:无机纤维和有机基质的组合可以产生高性能复合材料,例如CFRP和GFRP。通常,由于它们的完全不同的性质,这两种材料类型之间的粘附性并不好。然而,由相同材料的纤维增强的基质组成的复合材料可能具有优异的界面强度。通常,热塑性纤维的熔化温度高于纤维中的分子取向引起的相应散装材料的熔融温度。因此,纤维的两个熔化温度与散装材料之间的处理窗口可以使具有高强度界面和纤维增强材料的复合材料制造。我们称为这类复合材料“较少的界面复合材料”。在本文中,选择UHMWPE纤维和PE薄膜作为验证该概念验证的第一步,具有良好的可覆盖性的编织PE织物也被用作加强件。研究了研究温度和时间在薄膜堆叠方法上对机械性能的影响。即使在低纤维体积分数(12%)的PE / PE复合材料均比纯净PE基质的拉伸强度呈两倍。另一方面,PE /环氧复合材料的拉伸强度低于环氧树脂的拉伸强度。该概念可以扩展到任何热塑性材料。这些复合材料的使用可以大大提高回收能力,因为基质和加强件是相同的材料。

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