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Discrete material optimization of vibrating laminated composite plates for minimum sound radiation

机译:振动叠层复合板的离散材料优化,可将声音辐射降至最低

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摘要

This paper deals with vibro-acoustic optimization of laminated composite plates. The vibration of the laminated plate is excited by time-harmonic external mechanical loading with prescribed frequency and amplitude, and the design objective is to minimize the total sound power radiated from the surface of the laminated plate to the surrounding acoustic medium. Instead of solving the Helmholtz equation for evaluation of the sound power, advantage is taken of the fact that the surface of the laminated plate is flat, which implies that Rayleigh's integral approximation can be used to evaluate the sound power radiated from the surface of the plate. The novel Discrete Material Optimization (DMO) formulation has been applied to achieve the design optimization of fiber angles, stacking sequence and selection of material for laminated composite plates. Several numerical examples are presented in order to illustrate this approach.
机译:本文研究了叠层复合板的振动声学优化。层压板的振动是由具有规定频率和幅度的时谐外部机械载荷激发的,其设计目标是使从层压板表面辐射到周围声介质的总声功率最小。不用求解亥姆霍兹方程来评估声功率,而是利用了层压板表面平坦的事实,这意味着可以使用瑞利积分近似来评估从板表面辐射的声功率。 。新颖的离散材料优化(DMO)配方已用于实现纤维角度,堆叠顺序和层压复合板材料选择的设计优化。提出了几个数值示例,以说明此方法。

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