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Application of Interface Technology in Nonlinear Analysis of a Stitched/RFI Composite Wing Stub Box

机译:接口技术在缝线/ RFI复合翼短管箱非线性分析中的应用

摘要

A recently developed interface technology was successfully employed in the geometrically nonlinear analysis of a full-scale stitched/RFI composite wing box loaded in bending. The technology allows mismatched finite element models to be joined in a variationally consistent manner and reduces the modeling complexity by eliminating transition meshing. In the analysis, local finite element models of nonlinearly deformed wide bays of the wing box are refined without the need for transition meshing to the surrounding coarse mesh. The COMET-AR finite element code, which has the interface technology capability, was used to perform the analyses. The COMET-AR analysis is compared to both a NASTRAN analysis and to experimental data. The interface technology solution is shown to be in good agreement with both. The viability of interface technology for coupled global/local analysis of large scale aircraft structures is demonstrated.
机译:最近开发的接口技术已成功地用于弯曲中满载的全尺寸缝合/ RFI复合机翼盒的几何非线性分析。该技术允许不匹配的有限元模型以变化一致的方式进行连接,并通过消除过渡网格来降低建模复杂性。在分析中,无需对过渡网格划分到周围的粗网格,对机翼盒的非线性变形宽舱的局部有限元模型进行了改进。使用具有接口技术功能的COMET-AR有限元代码进行分析。将COMET-AR分析与NASTRAN分析和实验数据进行了比较。界面技术解决方案显示出与两者的高度吻合。证明了接口技术对大型飞机结构进行全局/局部分析的可行性。

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