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Flexural Characteristics of Sunlight-Aged Polyester Composites: Influence of Processing Variables

机译:阳光老化聚酯复合材料的弯曲特性:加工变量的影响

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摘要

This work presents the results of flexural tests carried out on samples aged for different periods of time in a UV-Visible light chamber. The processing variables studied were the type of reinforcing fabric, the resin type, and the cure conditions. The evolution of flexural characteristics with time exposure adjusts to a mathematical model that corresponds to a damped exponential curve. The aging degree varies between 16 and 41%, depending on the preparation of the composites and the mechanical characteristics of the material. The aged material featured losses of its mechanical properties, and more on toughness than on strength properties. The kind of unsaturated o-phthalic polyester resin used showed no influence on the loss of mechanical properties. High cure temperatures decreased the loss of toughness to a higher degree than that observed for the loss of strength. The configuration of the reinforced fabrics used also influenced the mechanical properties: a mixed taffeta-multiaxial reinforced configuration leads to a high loss index on toughness properties and modulus of the composite.
机译:这项工作介绍了在紫外线可见光室内对不同时间老化的样品进行的挠曲测试的结果。研究的加工变量是增强织物的类型,树脂的类型和固化条件。弯曲特性随时间的变化演变为与阻尼指数曲线相对应的数学模型。老化程度在16%到41%之间变化,具体取决于复合材料的制备和材料的机械特性。时效材料的特征在于其机械性能的损失,而韧性方面的优势胜于强度特性。所用的不饱和邻苯二甲酸聚酯树脂的种类对机械性能的损失没有影响。高的固化温度将韧性的损失降低到比强度降低所观察到的程度更高的程度。所使用的增强织物的结构也影响了机械性能:塔夫绸-多轴混合增强结构导致复合材料的韧性和模量较高的损耗指数。

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