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Finite Element Modeling of the Dynamic Properties of Composite Steel–Polymer Concrete Beams

机译:钢-聚合物混凝土组合梁动力特性的有限元建模

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摘要

This paper presents a method for modeling the dynamic properties of steel–polymer concrete beams, the basic structural components of machine tools, assembly lines, vibratory machines, and other structures subjected to time-varying loads during operation. The presented method of modeling steel–polymer concrete beams was developed using the finite element method. Three models of beams differing in cross-sectional dimensions showed high agreement with experimental data: relative error in the case of natural frequencies did not exceed 5% (2.2% on average), the models were characterized by the full agreement of mode shapes and high agreement of frequency response functions with the results of experimental tests. Additionally, the developed beam models supported the reliable description of complex structures, as demonstrated on a spatial frame, obtaining a relative error for natural frequencies of less than 3% (on average 1.7%). Full agreement with the mode shapes and high agreement with the frequency response functions were achieved in the analyzed frequency range.
机译:本文提出了一种对钢-聚合物混凝土梁,建筑机械的基本结构部件,装配线,振动机械以及其他在运行过程中承受时变载荷的结构进行动力学特性建模的方法。使用有限元方法开发了提出的钢-聚合物混凝土梁建模方法。三种截面尺寸不同的梁模型与实验数据高度吻合:自然频率下的相对误差不超过5%(平均为2.2%),这些模型的特征在于模态形状完全一致且高频率响应函数与实验测试结果一致。此外,开发的光束模型支持对复杂结构的可靠描述,如在空间框架上展示的那样,对于固有频率而言,获得的相对误差小于3%(平均为1.7%)。在分析的频率范围内,与模式形状完全一致,与频率响应函数高度一致。

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