首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >BAND GAPS FOR ELASTIC WAVE PROPAGATION IN A PERIODIC COMPOSITE BEAM STRUCTURE INCORPORATING SURFACE ENERGY, TRANSVERSE SHEAR AND ROTATIONAL INERTIA EFFECTS
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BAND GAPS FOR ELASTIC WAVE PROPAGATION IN A PERIODIC COMPOSITE BEAM STRUCTURE INCORPORATING SURFACE ENERGY, TRANSVERSE SHEAR AND ROTATIONAL INERTIA EFFECTS

机译:具有表面能,横向剪切和旋转惯性效应的周期性复合梁结构中弹性波传播的带空隙

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A new model for determining band gaps for elastic wave propagation in a periodic composite beam structure is developed using a non-classical Timoshenko beam model that incorporates the surface energy, transverse shear and rotational inertia effects. The Bloch theorem and transfer matrix method for periodic structures are employed in the formulation. The new model reduces to the classical elasticity-based model when the surface energy effect is not considered. It is shown that the band gaps predicted by the current model depend on the surface elastic constants of each constituent material, beam thickness, unit cell size, and volume fraction. The numerical results reveal that the band gap based on the current non-classical model is always larger than that given by the classical model when the beam thickness is very small, but the difference is diminishing as the thickness becomes large. Also, it is found that the first frequency for producing the band gap and the band gap size decrease with the increase of the unit cell length according to both the current and classical models. In addition, it is observed that the volume fraction has a significant effect on the band gap size, and large band gaps can be obtained by tailoring the volume fraction and material parameters.
机译:使用非典型Timoshenko光束模型开发了用于在周期性复合梁结构中用于针对周期性复合梁结构中弹性波传播的带间隙的新模型,该模特束型射线模型结合了表面能,横向剪切和旋转惯性效应。用于周期性结构的BLOCH定理和转移矩阵方法在制剂中使用。当不考虑表面能效应时,新模型减少到基于经典弹性的模型。结果表明,电流模型预测的带间隙取决于每个组成材料,光束厚度,单位电池尺寸和体积分数的表面弹性常数。数值结果表明,基于当前非经典模型的带隙总是大于经典模型给出的频率厚度非常小,但随着厚度变大,差异在减少。而且,发现根据电流和经典模型的单位电池长度的增加,用于产生带隙的第一频率和带隙尺寸的增加。另外,观察到,体积馏分对带隙尺寸的显着影响,并且可以通过定制体积分数和材料参数来获得大的带隙。

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