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Waste Fiber Reinforced Composite Materials: Production and Mechanical Properties

机译:废纤维增强复合材料:生产和机械性能

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Today, the cost, excellence and availability of raw materials are of principal importance. Due to environmental concerns, a very large number of companies are currently developing manufacturing processes using alternative materials for their crop and in search of new markets for the sub-products of their first-line production. Textile industry is an example of the reality that the industry is living these days. With a significant production of waste fibrous materials, textile companies are now looking for applications where waste materials could be an added-value material. Composites reinforced by fibres are being considered for several uses when high performance is essential. The corrosion resistance, potentially high overall durability, light weight, tailor ability and high specific performance attributes enable the use of composite materials in areas in which the use of conventional material might be constrain due to durability, weight or lack of design flexibility. This paper describes the work that is being done at University of Minho concerning the development of waste fibers reinforced composite materials. Different waste fibers reinforced composite materials have been produced varying the density and the variation in ratio of resin and waste fibers. Waste fibers have been collected within some textile companies and processed in order to individualize the fibers and to allow subsequent processing. Composite panels have been produced by compression moulding technique, through the application of heat and pressure. Panel thicknesses of 5 mm using resin aminoplastic for urea-formaldehyde have been produced. Materials thus obtained have been tested in tensile, bending, compression test. The results obtained are presented and discussed.
机译:如今,原材料的成本,卓越性和可用性至关重要。由于环境方面的考虑,许多公司目前正在开发使用替代材料生产农作物的制造工艺,并为一线生产的副产品寻找新的市场。纺织业是当今生活在这个行业中的现实的一个例子。随着废纤维材料的大量生产,纺织公司现在正在寻找将废材料作为增值材料的应用。当需要高性能时,考虑将纤维增强的复合材料用于多种用途。耐腐蚀性,潜在的高总体耐久性,轻质,定制能力和高特定性能属性使复合材料可以在由于耐久性,重量或缺乏设计灵活性而限制使用常规材料的领域中使用。本文介绍了Minho大学正在进行的有关废纤维增强复合材料开发的工作。已经生产了不同的废纤维增强的复合材料,其改变了树脂和废纤维的密度以及比率的变化。废纤维已在一些纺织公司内部收集并进行处理,以使纤维个性化并允许后续处理。通过施加热量和压力,通过压模技术生产了复合板。使用脲醛树脂用树脂氨基塑料制成的面板厚度为5毫米。如此获得的材料已经在拉伸,弯曲,压缩测试中进行了测试。介绍并讨论了获得的结果。

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