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A Unified Approach to Substructuring and Structural Modification Problems

机译:子结构和结构修改问题的统一方法

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Substructures coupling is still an important tool in several applications of modal analysis, especially structural modification and structures assembling. The subject is particularly relevant in virtual prototyping of complex systems and responds to actual industrial needs. This paper analyzes the possibility of assembling together different substructures' models. The important role of rotational DoFs is highlighted, underlying the difficulty of assembling theoretical and experimental models, for which, usually, the rotational DoFs are not available. Expansion techniques can be used to provide this information as well as appropriate modelling of joints. With this information FRF models, modal models and FE models can be appropriately combined together and solutions for several cases of practical interest are presented. The analyzed procedures are tested on purpose-built benchmarks, showing limits and capabilities of each of them.
机译:子结构耦合仍然是模态分析在多个应用程序中的重要工具,尤其是结构修改和结构装配。该主题在复杂系统的虚拟原型设计中尤为重要,并且可以满足实际的工业需求。本文分析了将不同子结构的模型组装在一起的可能性。强调了旋转自由度的重要作用,这隐藏了组装理论和实验模型的困难,而通常很难获得旋转和自由度。扩展技术可用于提供此信息以及适当的关节建模。利用这些信息,可以将FRF模型,模态模型和FE模型适当地组合在一起,并针对几种实际情况提出解决方案。分析的过程在特定的基准上进行了测试,显示了每个基准的极限和功能。

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