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FAST Mast Structural Response to Axial Loading: Modeling and Verification

机译:FAST桅杆对轴向载荷的结构响应:建模和验证

摘要

The International Space Station s solar array wing mast shadowing problem is the focus of this paper. A building-block approach to modeling and analysis is pursued for the primary structural components of the solar array wing mast structure. Starting with an ANSYS (Registered Trademark) finite element model, a verified MSC.Nastran (Trademark) model is established for a single longeron. This finite element model translation requires the conversion of several modeling and analysis features for the two structural analysis tools to produce comparable results for the single-longeron configuration. The model is then reconciled using test data. The resulting MSC.Nastran (Trademark) model is then extended to a single-bay configuration and verified using single-bay test data. Conversion of the MSC. Nastran (Trademark) single-bay model to Abaqus (Trademark) is also performed to simulate the elastic-plastic longeron buckling response of the single bay prior to folding.
机译:国际空间站的太阳电池阵列机翼桅杆遮蔽问题是本文的重点。对于太阳能电池阵列机翼桅杆结构的主要结构部件,追求一种建模和分析的构建方法。从ANSYS(注册商标)有限元模型开始,为单个longon建立经过验证的MSC.Nastran(商标)模型。这种有限元模型转换需要转换两个结构分析工具的几个建模和分析功能,以产生与单纵梁配置相当的结果。然后使用测试数据对模型进行协调。然后将生成的MSC.Nastran(商标)模型扩展到单托架配置,并使用单托架测试数据进行验证。 MSC的转换。还对Nabatran(商标)的Abaqus(商标)的单托架模型进行了模拟,以模拟折叠前单个托架的弹塑性Longon屈曲响应。

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