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Novel application of a thermoplastic composite with improved matrix-fiber interface

机译:一种热塑性复合材料与改进的矩阵光纤界面的新应用

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Ornamental materials are widely used in many fields such as construction. However, they have a main issue: up to 60% of processed marble pieces break due to their low toughness. In this work, an externally bonded reinforcement which can cope with this problem is presented. It must absorb the shock energy when marble is subjected to an impact without increasing severely the production cost. A thermoplastic polymer matrix composite is proposed due to its high toughness compared with conventional thermoset polymer matrix composites. However, thermoplastics present an issue related to the adhesion with the reinforcement, therefore fibers must be treated to solve this matter. Atmospheric pressure plasma torch offers a time saving and environmental friendly solution for improving adhesion between the fibers and the matrix. Finally, when marble is reinforced with the composite an important increase in absorbed energy is found in both, Charpy and drop tower test.
机译:观赏材料广泛用于许多领域,如建筑。然而,他们有一个主要问题:由于其韧性低,高达60%的加工大理石碎片断裂。在这项工作中,提出了一种可以应对该问题的外部粘合强化。当大理石受到影响时,它必须吸收震动能量而不会严重生产成本。与常规热固性聚合物基质复合材料相比,其高韧性提出了一种热塑性聚合物基质复合材料。然而,热塑性塑料存在与粘合性有关的问题,因此必须处理纤维以解决此问题。大气压等离子体割炬提供了一种节省时间和环保的解决方案,用于改善纤维和基质之间的粘附性。最后,当用综合加强大理石时,在夏巴和滴塔测试中发现吸收能量的重要增加。

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