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Frequency dependent mass and stiffness matrices of bar and beam elements and their equivalency with the dynamic stiffness matrix

机译:杆和梁元件的频率相关质量和刚度矩阵及其与动态刚度矩阵的等效

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Starting from the solutions of the governing differential equations of motion in free vibration, the frequency dependent mass and stiffness matrices of bar and beam elements have been derived in this paper, but importantly, their equivalency with the corresponding dynamic stiffness matrix is established. In sharp contrast to series solutions, reported in the literature, explicit expressions for each term of the frequency dependent mass and stiffness matrices of bar and beam elements are generated in concise form through the application of symbolic computation and their relationship with the single dynamic stiffness matrix (which contains both the mass and stiffness properties) for each of the two element types is highlighted. The theory is demonstrated by numerical results. By splitting the dynamic stiffness matrix into frequency dependent mass and stiffness matrices and at the same time retaining the exactness of results, the investigation paves the way for future research to overcome the difficulty to include damping in the dynamic stiffness research which has not been possible earlier. Furthermore, the frequency dependent mass and stiffness matrices derived in this paper permit the application of the Wittrick-Williams algorithm to compute with certainty the exact natural frequencies of structures comprising bar and beam elements. (c) 2021 Elsevier Ltd. All rights reserved.
机译:从自由振动的控制差分方程的解决方案开始,本文已经得出了钢筋和梁元件的频率相关质量和刚度矩阵,但重要的是,建立了它们与相应的动态刚度矩阵的等效性。与串联解决方案的鲜明对比,在文献中报道,通过应用符号计算及其与单个动态刚度矩阵的关系以简洁的形式产生频率相关质量和刚度矩阵的每个术语的显式表达式(其中包含两个元素类型中的每种类型的质量和刚度特性)被突出显示。该理论通过数值结果证明。通过将动态刚度矩阵分成频率依赖质量和刚度矩阵,同时保持结果的准确性,调查为未来的研究铺平了道路,以克服难以包括在更早的动态刚度研究中的阻尼。此外,本文得出的频率依赖质量和刚度矩阵允许应用Wittrick-Williams算法以确定性地计算包括杆和光束元件的结构的精确自然频率。 (c)2021 elestvier有限公司保留所有权利。

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