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Multiscale analysis of woven composite structures in MSC.Nastran

机译:MSC.Nastran中编织复合结构的多尺度分析

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摘要

In the finite element analysis (FEA) of composite structures, shell and beam elements with homogenized material properties are often used to reduce the computational costs and modeling efforts. However, significant loss of accuracy may occur due to constitutive modeling limitations of commercially available software packages for complex mesostructures such as woven composites. In this paper, CQUAD4, CQUAD8 and CBEAM elements in MSC.Nastran have been enabled to analyze complex woven composite structures using mechanics of structure genome (MSG). The plate and beam stiffness matrices are computed using MSG plate and beam models and transformed into MSC.Nastran element and material properties to perform the structural analysis. A three-dimensional (3D) orthogonal woven plate is analyzed using MSC.Nastran CQUAD4 elements based on MSG plate model. In addition, a 3D woven beam with extension-bending couplings is analyzed using MSC.Nastran CBEAM elements with homogenized properties with the help of MSG beam model. The beam and shell elements in MSC.Nastran powered by MSG models provide a new way to analyze complex woven composite structures. A graphical user interface (GUI) has been developed for MSC.Nastran to incorporate the constitutive modeling and to enable the automation of the information passing between constitutive modeling and structural analysis.
机译:在复合结构的有限元分析(FEA)中,通常使用具有均质材料属性的壳单元和梁单元来减少计算成本和建模工作。但是,由于用于复杂介观结构(例如机织复合材料)的商用软件包的本构模型限制,可能会导致准确性的显着下降。本文利用MSC.Nastran中的CQUAD4,CQUAD8和CBEAM元素,利用结构基因组(MSG)的原理分析复杂的机织复合结构。使用MSG板和梁模型计算板和梁刚度矩阵,并将其转换为MSC.Nastran元素和材料属性以进行结构分析。使用基于MSG板模型的MSC.Nastran CQUAD4元素分析三维(3D)正交编织板。此外,借助MSG梁模型,使用具有均质特性的MSC.Nastran CBEAM元素分析了具有伸缩弯耦合的3D编织梁。由MSG模型提供支持的MSC.Nastran中的梁和壳单元为分析复杂的机织复合结构提供了一种新方法。已经为MSC.Nastran开发了图形用户界面(GUI),以结合本构模型并实现本构模型和结构分析之间传递的信息的自动化。

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