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Hybrid-Fiber-Reinforced Composite Boards Made of Recycled Aramid Fibers: Preparation and Puncture Properties

机译:杂交纤维增强复合板由再生的芳族纤维制成:制备和穿刺性能

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摘要

Protective textiles require massive consumption of fibers and fabrics, which is responsible for diverse highstrength fabric waste. Wrongly arranged disposal of textile waste is equivalent to the waste valuable resource while causing environmental pollutions. Aramid selvages are worthwhile recycling and used in this study. They are scattered into Aramid staple fibers and mixed with low melting point polyester (LMPET) fibers to form the Aramid matrices employing the nonwoven process. The matrices are added to different combinations to form Aramid composite matrices and hybrid-fiberreinforced composite boards. The process of shearing, crowding, and friction helps improve the mechanical properties of the composite boards according to the evaluations of conducted tests. With the premise of minimum damage to the fibers, this study uses recycled Aramid waste to produce composite boards that have features of high performance and low production cost. As a test result, the hybrid-fiber-reinforced composite boards with 90 wt% of recycled Aramid fibers have the optimal mechanical property and static puncture resistance.
机译:防护纺织品需要大量消耗的纤维和织物,这负责多样化的高分织物废物。错误地处理纺织废物的处理相当于造成环境污染的同时对废物有价值的资源。 Aramid Selvages值得回收并在本研究中使用。它们分散到芳纶短纤维中并与低熔点聚酯(LMPET)纤维混合以形成采用非织造方法的芳族聚酰胺基质。将基质添加到不同的组合中以形成芳族聚体复合矩阵和混合纤维纤维的复合板。剪切,拥挤和摩擦的过程有助于根据所进行测试的评估改善复合板的机械性能。随着纤维最小损伤的前提,本研究采用回收的芳族聚酰胺废料来生产具有高性能和低生产成本的特征的复合板。作为测试结果,具有90wt%的再循环芳族聚酰胺纤维的杂化 - 纤维增强复合板具有最佳的机械性能和静态穿刺性。

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