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首页> 外文期刊>Journal of Sound and Vibration >Prediction of displacement and stress fields of a notched panel with geometric nonlinearity by reduced order modeling
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Prediction of displacement and stress fields of a notched panel with geometric nonlinearity by reduced order modeling

机译:用降阶建模方法预测带几何非线性缺口板的位移和应力场

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摘要

The focus of this investigation is on a first assessment of the predictive capabilities of nonlinear geometric reduced order models for the prediction of the large displacement and stress fields of panels with localized geometric defects, the case of a notch serving to exemplify the analysis. It is first demonstrated that the reduced order model of the notched panel does indeed provide a close match of the displacement and stress fields obtained from full finite element analyses for moderately large static and dynamic responses (peak displacement of 2 and 4 thicknesses). As might be expected, the reduced order model of the virgin panel would also yield a close approximation of the displacement field but not of the stress one. These observations then lead to two "enrichment" techniques seeking to superpose the notch effects on the virgin panel stress field so that a reduced order model of the latter can be used. A very good prediction of the full finite element stresses, for both static and dynamic analyses, is achieved with both enrichments.
机译:这项研究的重点是对非线性几何降阶模型的预测能力进行首次评估,以预测具有局部几何缺陷的面板的大位移和应力场,切口的情况可作为例证分析。首先证明,刻槽面板的降阶模型确实确实提供了位移和应力场的紧密匹配,该位移场和应力场是通过对有限的静态和动态响应(2和4厚度的峰值位移)进行完全有限元分析而获得的。可以预期,原始面板的降阶模型也将产生位移场的近似值,而不是应力场的近似值。然后,这些观察结果导致了两种“富集”技术,试图将缺口效应叠加在原始面板应力场上,以便可以使用后者的降阶模型。两种富集都可以对静态和动态分析的全部有限元应力进行很好的预测。

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