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Pressure Stiffened Modal Correlation of a Cylindrical Pressure Vessel

机译:圆柱形压力容器的压力加强模态相关性

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Acoustoelastic structures are a complex dynamic system that exhibit modal coupling between a structure and its enclosed acoustic fluid. Common structures that exhibit this phenomenon in the aerospace industry are pressure vessels such as a solid rocket boosters or advanced solid rocket motors. When a structural analyst simulates the structural modes of these pressure vessels with shell finite elements, they often apply an internal pressure force in their model to represent the acoustic fluid. In a model free of boundary conditions, the application of this internal pressure force produces modal results that ground some rigid body modes, often going from six to three zero-frequency modes. Therefore, since the finite element modal simulation inappropriately grounds the structure and thus is unable to accurately predict the rigid body modes, it calls into question whether the elastic or flexible modes predicted by the same modal analysis are accurate. This paper presents an experimental study to address this question by designing, analyzing, fabricating, and testing a simple cylindrical pressure vessel. A free-free steel cylindrical pressure vessel was modeled with finite elements and modal tested with and without pressure. Modal tap testing was used to extract the structural response and compute frequency response functions which were compared to analytical results to discern the accuracy of the predicted elastic modes of the pressure vessel.
机译:声弹性结构是一种复杂的动态系统,其在结构和封闭的声流体之间表现出模态耦合。在航空航天工业中表现出这种现象的常见结构是压力容器,如固体火箭助推器或先进的固体火箭电动机。当结构分析师用壳有限元模拟这些压力容器的结构模式时,它们通常在其模型中施加内部压力以表示声学流体。在没有边界条件的模型中,这种内部压力的应用产生了地接地一些刚体模式的模态结果,通常从六到三个零频模式进行。因此,由于有限元模拟不恰当地接地结构并且因此无法准确地预测刚体模式,因此呼叫质疑是否通过相同的模态分析预测的弹性或柔性模式是准确的。本文通过设计,分析,制造和测试简单的圆柱形压力容器来提出一个实验研究来解决这个问题。使用自由钢圆柱形压力容器,用有限元和模态进行模拟,用和无压力测试。模态抽头测试用于提取与分析结果进行比较的结构响应和计算频率响应函数,以辨别压力容器的预测弹性模式的精度。

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