首页> 外文期刊>International journal of nanomechanics science and technology >MODELING THE EFFECTIVE DYNAMIC PROPERTIES OF FIBER COMPOSITES MODIFIED ACROSS LENGTH SCALES
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MODELING THE EFFECTIVE DYNAMIC PROPERTIES OF FIBER COMPOSITES MODIFIED ACROSS LENGTH SCALES

机译:跨长度尺度修改纤维复合材料的有效动态特性

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In the present work, we aim to estimate the effective storage and loss moduli of bristled fiber composite material (modified composites), where the surfaces of fibers are radially grown or coated with nanostructures such as nanowires, nanorods, or carbon nanotubes (fuzzy fiber). We use the Eshelby integral formula, which plays a fundamental role in the micromechanics of composite materials and especially in gradient models of micromechanics that allow one to describe the scale effects. In a two-phase composite system, the use of an integral formula in the framework of a generalized self-consistent scheme allows accurate closed-form solutions of effective properties for the interphase layer and for the composite as a whole. We employ a variant of generalized Eshelby's homogenization method to deduce effective damping properties of multilayer nanostructured fiber composites where one layer is highly heterogeneous with respect to its mechanical response strain gradients. The novelty of the work lies in the fact of treating the ZnO nanowires and CNT "fuzzy" layers by the gradient model that consequently allows us to consider the extra gradient coefficient or internal length in relation to other constitutive and geometric parameters of the composite to definition of its overall mechanical and dynamical properties and functionality.
机译:在本作本作中,我们的目的是估算刷毛纤维复合材料(改性复合材料)的有效储存和损失模量,其中纤维表面径向生长或涂覆纳米结构,例如纳米线,纳米峰或碳纳米管(模糊纤维) 。我们使用eShelby积分公式,在复合材料的微机械中起着基本作用,特别是在允许一个描述尺度效应的微机械的梯度模型中。在两相复合系统中,在广义自我一致方案的框架中使用整体式允许精确的闭合性能用于相邻层和整体的复合材料。我们采用广义eShelby的均质化方法的变体来推导多层纳米结构纤维复合材料的有效阻尼性能,其中一层相对于其机械响应应变梯度高度异质。作品的新颖性在于通过梯度模型处理ZnO纳米线和CNT“模糊”层的事实,从而允许我们考虑额外的梯度系数或内部长度与复合材料的其他组成型和几何参数定义其整体机械和动态性能和功能。

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