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Free vibration and buckling analysis of beams with a modified couple-stress theory

机译:修正耦合应力理论的梁自由振动和屈曲分析

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摘要

A model based on a modified couple stress theory for the free vibration and buckling analyses of beams is presented. The model also incorporates the Poisson's effect and allows the analysis of Timoshenko beams with any arbitrary end boundary condition. The natural frequencies and buckling loads are computed using the Ritz method. Parametric studies show that, while the natural frequencies and the buckling loads increase monotonically with the increase of the material length scale, they present a minimum in certain values of the Poisson's ratio. A study relating the classical elasticity and the couple stress strain energies is also presented. By establishing this relation, explicit formulas to obtain the natural frequencies and buckling loads, in which the couple stress and Poisson's effects are accounted for, in terms of the buckling loads of the classical elasticity are found. These formulas, which are valid when the shear strain and stress are zero, allow an expedite computation of natural frequencies and buckling loads of beams with couple stress and Poisson's effect.
机译:提出了一种基于改进耦合应力理论的梁自由振动和屈曲分析模型。该模型还包含了泊松效应,并可以分析任意端边界条件下的季莫申科光束。固有频率和屈曲载荷使用Ritz方法计算。参数研究表明,尽管固有频率和屈曲载荷随材料长度尺度的增加而单调增加,但它们在某些泊松比值中呈现最小值。还提出了有关经典弹性和耦合应力应变能的研究。通过建立这种关系,找到了用于计算固有频率和屈曲载荷的显式公式,其中考虑了经典弹性的屈曲载荷,考虑了耦合应力和泊松效应。这些公式在剪切应变和应力为零时有效,可以加快计算固有频率和梁在耦合应力和泊松效应的作用下的屈曲载荷。

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