首页> 外文期刊>Chinese journal of mechanical engineering >THEORY AND EXPERIMENTAL INVESTIGAION OF FLEXURAL WAVE PROPAGATION IN THIN RECTANGULAR PLATE WITH PERIODIC STRUCTURE
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THEORY AND EXPERIMENTAL INVESTIGAION OF FLEXURAL WAVE PROPAGATION IN THIN RECTANGULAR PLATE WITH PERIODIC STRUCTURE

机译:矩形结构矩形薄板弯曲波传播的理论与实验研究

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摘要

With the idea of the phononic crystals, a thin rectangular plate with two-dimensional periodic structure is designed. Flexural wave band structures of such a plate with infinite structure are calculated with the plane-wave expansion (PWE) method, and directional band gaps are found in the FX direction. The acceleration frequency response in the FX direction of such a plate with finite structure is simulated with the finite element method and verified with a vibration experiment. The frequency ranges of sharp drops in the calculated and measured acceleration frequency response curves are in basic agreement with those in the band structures. Thin plate is a widely used component in the engineering structures. The existence of band gaps in such periodic structures gives a new idea in vibration control of thin plates.
机译:基于声子晶体的思想,设计了具有二维周期性结构的矩形薄板。用平面波扩展法(PWE)计算出这种无限结构板的弯曲波带结构,并在FX方向上找到了定向带隙。用有限元方法模拟了这种有限结构板沿FX方向的加速度频率响应,并通过振动实验进行了验证。计算和测量的加速度频率响应曲线中的急剧下降的频率范围与频带结构中的频率范围基本一致。薄板是工程结构中广泛使用的组件。这种周期性结构中带隙的存在为薄板的振动控制提供了新思路。

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