具有尖端质量的粘弹性支承轴向功能梯度杆的固有频率

Cihan Demir
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引用次数: 0

摘要

研究了轴向功能梯度杆在粘弹性和点质量边界条件下的频率参数。具有功能梯度材料的结构在轴向载荷作用下可以被建模为AFG杆。在隔振中,它们可以看作是带有弹簧和阻尼器的支撑元件。将力频率与固有频率的比值保持在一定水平,保证了固有频率的控制,从而控制了不同材料组合下的动态放大系数。通过改变粘弹性支承元件的弹簧系数和阻尼系数以及杆端质量比,可以得到不同的边界条件。研究人员在他们的研究中假设光束材料的特性在长度和厚度方向上呈指数变化,或者单独变化,或者同时变化。在现有的研究中,对AFG棒的研究较少。在MATLAB中对杆的无量纲频率参数进行了有限元分析。考虑杆的材料特性沿纵向呈幂律分布,在轴向杆理论框架下得到了运动的能量方程。材料分布、弹簧、阻尼和尖端质量值对杆的频率参数和结构性能的影响已经进行了广泛的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural Frequencies of a Viscoelastic Supported Axially Functionally Graded Bar With Tip Masses
The frequency parameters of an Axially Functionally Graded (AFG) bar for viscoelastic and point mass boundary conditions are studied in this paper. The structures with functionally graded materials under axial loads can be modelled as AFG bars. Those may be considered as support elements with spring and dashpot in the vibration isolation. Keeping the ratio of force frequency and natural frequency at a certain level is ensured to control the natural frequency therefore dynamic amplification factor with different material combinations. Various boundary conditions are attained by changing the spring and damping coefficients of viscoelastic support elements and the ratio of rod mass to tip mass. Researchers assume that the beam material properties in directions of length and thickness change exponentially, individually, or both in their studies. There are a few studies on the AFG rods in the existing studies. Analysis is carried out via the finite element method for the non-dimensional frequency parameters of the bar in MATLAB. The energy equations of the motion are obtained in the frame of axial bar theory considering the material properties of the bar vary longitudinally according to the power-law distribution. The effects of material distribution, spring, damping and tip mass values on the bar's frequency parameters and structural behaviour have been extensively investigated.
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