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Steady-state response and free vibration of an embedded imperfect smart functionally graded hollow cylinder filled with compressible fluid

机译:充满可压缩流体的嵌入式不完善智能功能梯度空心缸的稳态响应和自由振动

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摘要

A smart hollow cylinder consisting of a host functionally graded elastic core layer and two surface homogeneous piezoelectric layers is presented in this paper. The bonding between the layers can be perfect or imperfect, depending on the parameters taken in the general linear spring-layer interface model. The effect of such weak interfaces on free vibration and steady-state response is then investigated. Piezoelectric layers at inner and outer surfaces are polarized axially or radially and act as a sensor and an actuator respectively. For a simply supported condition, the state equations with non-constant coefficients are obtained directly from the formulations of elasticity/piezoelasticity. An approximate laminated model is then introduced for the sake of solving the state equations conveniently. It is further assumed that the hollow cylinder is embedded in an elastic medium and is simultaneously filled with compressible fluid. The interaction between the structure and its surrounding media is taken into account. Numerical examples are finally given with discussions on the effect of some related parameters.
机译:本文提出了一种智能空心圆柱体,它由功能梯度弹性主体层和两个表面均质压电层组成。层之间的粘合可以是完美的,也可以是不完美的,具体取决于常规线性弹簧层界面模型中采用的参数。然后研究了这种弱界面对自由振动和稳态响应的影响。内表面和外表面的压电层轴向或径向极化,分别用作传感器和致动器。对于简单支持的条件,具有非恒定系数的状态方程可直接从弹性/弹塑性公式获得。然后引入一个近似的叠层模型,以便于求解状态方程。进一步假设中空圆柱体嵌入弹性介质中,并同时充满可压缩流体。考虑到结构与其周围介质之间的相互作用。最后通过数值示例讨论了一些相关参数的影响。

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