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Vibrations of Discretely Layered Structures Using a Continuous Variation Model

机译:使用连续变化模型的离散分层结构的振动

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Recently, there has been a large body of work directed towards the use of non-homogeneous materials in controlling waves and vibrations in elastic media. Two broad categories have been studied, namely, media with continuous variation of properties and those with discrete layers (cells). Structures with both a finite and infinite number of cells (periodic layout) have been examined. For the former, direct numerical simulation or transfer matrix methods have been used. The current work focuses on one-dimensional cases, in particular a two-layer cell. Transfer matrix methods require writing solutions for each layer of the basic cell and then matching them across the interface, a process that can be quite lengthy. Here an alternate strategy is explored in which the discrete cell properties are modeled by continuously varying functions (here logistic functions), which has the advantage of working with a single differential equation. Natural frequencies have been obtained using a forced motion method and are in excellent agreement with those found using a transfer matrix approach. Mode shapes for the continuous variation model have been obtained using a finite difference scheme and compare well with those obtained via the transfer matrix approach.
机译:最近,有大量的工作旨在使用非均质材料来控制弹性介质中的波浪和振动。已经研究了两种广泛的类别,即具有连续变化的介质和具有离散层(细胞)的介质。已经检查了有限和无限数量的细胞(周期性布局)的结构。对于前者,已经使用了直接数值模拟或转移矩阵方法。目前的工作侧重于一维案例,特别是双层小区。传输矩阵方法需要为每层基本单元格编写解决方案,然后将它们与接口匹配,这是一个可以非常冗长的过程。这里探讨了替代策略,其中通过连续变化的功能(这里是物流函数)来建模的离散小区属性,其具有与单个微分方程一起使用的优点。使用强制运动方法获得了自然频率,并且与使用传输矩阵方法发现的那些非常吻合。使用有限差分方案获得了连续变化模型的模式形状,并与通过传输矩阵方法获得的那些相比很好地比较。

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