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Viscoelasticity of multi-layer textile reinforced polymer composites used in soccer balls

机译:足球用多层纺织增强聚合物复合材料的粘弹性

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摘要

This paper gives details of a comprehensive dynamic mechanical analysis (DMA) material characterisation activity for all constituent layers of two modern-day thermoformed soccer balls. The resulting material data were used to define a series of viscoelastic finite element (FE) models of each ball design which incorporated the through-thickness composite material properties, including an internal latex bladder, woven fabric-based carcass and polymer based outer panels. The developed FE modelling methodology was found to accurately describe the viscoelastic kinetic energy loss characteristics apparent throughout a soccer ball impact at velocities which are typical of those experienced throughout play. The models have been validated by means of experimental impact testing under dynamic loading conditions. It was found that the viscoelastic material properties of the outer panels significantly affected ball impact characteristics, with outer panel materials exhibiting higher levels of viscous damping resulting in higher losses of kinetic energy.
机译:本文详细介绍了两个现代热成型足球的所有组成层的全面动态力学分析(DMA)材料表征活动。所得的材料数据用于定义每个球设计的一系列粘弹性有限元(FE)模型,该模型结合了整个厚度复合材料的性能,包括内部乳胶囊,基于机织物的胎体和基于聚合物的外板。发现发达的有限元建模方法可以准确地描述整个足球撞击过程中以速度进行的粘弹性动能损失特征,这是整个比赛过程中典型的表现。该模型已通过在动态载荷条件下的实验冲击测试进行了验证。已经发现,外面板的粘弹性材料特性显着影响了球的冲击特性,外面板材料表现出更高水平的粘性阻尼,导致动能损失更高。

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