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Homogenization of long fiber reinforced composites including fiber bending effects

机译:长纤维增强复合材料的均质化,包括纤维弯曲效应

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This paper presents a homogenization method, which accounts for intrinsic size effects related to the fiber diameter in long fiber reinforced composite materials with two independent constitutive models for the matrix and fiber materials. A new choice of internal kinematic variables allows to maintain the kinematics of the two material phases independent from the assumed constitutive models, so that stress-deformation relationships, can be expressed in the framework of hyper-elasticity and hyper-elastoplasticity for the fiber and the matrix materials respectively. The bending stiffness of the reinforcing fibers is captured by higher order strain terms, resulting in an accurate representation of the micro-mechanical behavior of the composite. Numerical examples show that the accuracy of the proposed model is very close to a non-homogenized finite-element model with an explicit discretization of the matrix and the fibers.
机译:本文提出了一种均质化方法,该方法考虑了长纤维增强复合材料中与纤维直径相关的固有尺寸效应,并具有两个独立的基体和纤维材料本构模型。内部运动学变量的新选择允许保持两个材料相的运动学与假定的本构模型无关,从而可以在纤维和纤维的超弹性和超弹塑性框架内表达应力-变形关系。分别为基质材料。增强纤维的弯曲刚度由较高阶的应变项捕获,从而可以精确表示复合材料的微机械性能。数值算例表明,所提出模型的精度非常接近于非均质有限元模型,并且对矩阵和纤维进行了离散化。

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