An Efficient Multiscale Virtual Testing Platform for Composite Via Component-wise Models

I. Kaleel, M. Nagaraj, M. Petrolo, E. Carrera, A. Waas
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引用次数: 1

Abstract

The aim of the current work is to develop a multiscale framework based on higherorder 1D finite elements developed using the Carrera Unified Formulation (CUF). The multiscale framework consists of a macroscale model to describe the global structure, and a CUF micromechanical model described using the Component-Wise approach. Such an approach allows for the explicit modelling of the fiber and matrix at the microscale, resulting in a high-fidelity finite element model at both scales. The use of refined CUF elements result in a computationally efficient analysis, due to a reduction in the degrees of freedom at both scales, as well as the reduction in total computational time when compared to standard 3D finite element analysis. The parallel implementation of the multiscale framework results in additional savings in computational time.
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基于组件模型的高效复合材料多尺度虚拟测试平台
当前工作的目的是开发一个基于使用Carrera统一公式(CUF)开发的高阶一维有限元的多尺度框架。多尺度框架由描述全局结构的宏观模型和使用组件智能方法描述的CUF微观力学模型组成。这种方法允许在微观尺度上对纤维和基体进行明确的建模,从而在两个尺度上产生高保真的有限元模型。与标准3D有限元分析相比,由于降低了两个尺度的自由度,以及减少了总计算时间,因此使用精炼的CUF单元可以实现计算效率高的分析。多尺度框架的并行实现可以节省额外的计算时间。
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