首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Free Vibration Analysis of a Rotating Mori-Tanaka-Based Functionally Graded Beam via Differential Transformation Method
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Free Vibration Analysis of a Rotating Mori-Tanaka-Based Functionally Graded Beam via Differential Transformation Method

机译:通过差分变换方法自由振动分析旋转森塔纳的功能分级梁

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摘要

In this paper, free vibration analysis of a rotating Mori-Tanaka-based functionally graded (FG) beam is investigated based on Timoshenko beam theory. The physical neutral axis position for the mentioned FG beam is determined. By using a semi-analytical differential transformation method (DTM), the governing differential equations are transformed into recurrence relations and the boundary conditions are converted to algebraic equations. The material properties of the rotating FG beam are supposed to vary across the thickness direction based on Mori-Tanaka micromechanics model. In the classical beam theory, the effects of transverse shear deformation and rotary inertia are not taken into consideration, while the Timoshenko beam model takes these effects into account. It is demonstrated that the DTM has high precision and computational efficiency in the vibration analysis of rotating FG beams. The good agreement between the results of this article and those available in the literature validated the presented approach. The detailed mathematical derivations are presented, and numerical investigations are performed, while the emphasis is placed on investigating the effect of functionally graded microstructure, mode number, slenderness ratios, rotational speed and hub radius and boundary conditions on the normalized natural frequencies of the rotating FG beam in detail. It is explicitly shown that the vibration behavior of a rotating FG beam is significantly influenced by these effects.
机译:本文研究了基于TIMOSHONKO光束理论的旋转森林的功能梯度(FG)梁的自由振动分析。确定了所提到的FG梁的物理中性轴位置。通过使用半分析差分变换方法(DTM),控制微分方程被转换为复发关系,边界条件转换为代数方程。旋转FG梁的材料特性应该基于Mori-Tanaka微机械模型在厚度方向上变化。在经典光束理论中,不考虑横向剪切变形和旋转惯性的影响,而TIMOSHENKO梁模型考虑这些效果。证明DTM在旋转FG梁的振动分析中具有高精度和计算效率。本文结果与文献中可用的良好一致性验证了提出的方法。提出了详细的数学衍生,并且进行了数值研究,而重点在于研究功能梯度微观结构,模式数,细长比,转速和枢纽半径以及旋转FG的归一化固定频率的边界条件的影响比赛详细。明确地示出了旋转FG梁的振动行为受到这些效果的显着影响。

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