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The modal analysis and modeling study of the spacecraft payload load-bearing floor structure

机译:航天器有效载荷承载底结构的模态分析与建模研究

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As space industry and technology develop, the spacecraft structure systems become increasingly complex and the scales become much larger. Early in the project stage, finite element analysis is required to rapidly and accurately analyze and forecast dynamic characteristics of spacecraft. Based on this, the optimized structural design of spacecraft is then determined. Theoretical analysis done, the effect of both the type and size of shell elements and solid elements on calculation result is discussed during the dynamic analysis process. Shell elements and solid elements are respectively used for the study on load-bearing structure of spacecraft payload instrument. The purpose is, based on meeting the requirement of accuracy, to quickly conduct finite element dynamic analysis of the structure in the early payload structural design and provide a reference for the optimized design of spacecraft structure.
机译:随着太空工业和技术的发展,航天器结构系统变得越来越复杂,尺度变得更大。在项目阶段,需要有限元分析来快速准确地分析和预测航天器的动态特性。基于此,然后确定航天器的优化结构设计。在动态分析过程中讨论了理论分析,在动态分析过程中讨论了壳体元素的类型和尺寸和固体元素对计算结果的影响。壳体元素和固体元素分别用于对航天器有效载荷仪的承载结构的研究。该目的是基于满足准确性要求,在早期有效载荷结构设计中快速进行有限元动态分析,为航天器结构的优化设计提供了参考。

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