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A viscoelastic-viscoplastic model for short-fibre reinforced polymers with complex fibre orientations

机译:具有复杂纤维取向的短纤维增强聚合物的粘弹-粘塑性模型

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This paper presents an innovative approach for the modelling of viscous behaviour of short-fibre reinforced composites (SFRC) with complex distributions of fibre orientations and for a wide range of strain rates. As an alternative to more complex homogenisation methods, the model is based on an additive decomposition of the state potential for the computation of composite’s macroscopic behaviour. Thus, the composite material is seen as the assembly of a matrix medium and several linear elastic fibre media. The division of short fibres into several families means that complex distributions of orientation or random orientation can be easily modelled. The matrix behaviour is strain-rate sensitive, i.e. viscoelastic and/or viscoplastic. Viscoelastic constitutive laws are based on a generalised linear Maxwell model and the modelling of the viscoplasticity is based on an overstress approach. The model is tested for the case of a polypropylene reinforced with short-glass fibres with distributed orientations and subjected to uniaxial tensile tests, in different loading directions and under different strain rates. Results demonstrate the efficiency of the model over a wide range of strain rates.
机译:本文提出了一种创新的方法,用于对纤维取向分布复杂且应变率范围很广的短纤维增强复合材料(SFRC)的粘性行为进行建模。作为更复杂的均质化方法的替代方法,该模型基于状态电势的加性分解来计算复合材料的宏观行为。因此,复合材料被视为基质介质和几种线性弹性纤维介质的组合。将短纤维分为几个家族意味着可以轻松地模拟复杂的取向分布或随机取向。基质行为是应变速率敏感的,即粘弹性和/或粘塑性的。粘弹性本构律基于广义线性麦克斯韦模型,而粘塑性建模则基于过应力方法。对模型进行了测试,以聚丙烯为材料,这些聚丙烯用分布方向的短玻璃纤维增​​强,并在不同的加载方向和不同的应变速率下进行了单轴拉伸测试。结果证明了该模型在各种应变速率下的效率。

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