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Hybrid control of sound fields from vibrating laminated plate using piezoelectric and viscoelastic material

机译:使用压电和粘弹性材料从振动层压板的声场混合控制

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The motivation of this research is to replace the conventional steel automotive roof by laminated composite plate for light weight and high damping. The coupled finite/boundary element method is used in numerical analysis for acoustic radiation from the vibration of rectangular composite plate which is simply supported. This analysis is validated using the Wallace equation for an isotropic plate. Active control of sound fields has been carried out using 3 pairs of piezoelectric sensor/actuator and a pair of viscoelastic material by passive constrained layer damping treatment. The results show that the optimal placement of piezoelectric sensor/actuator and VE patch is required to control the sound fields from vibrating composite plate. It is concluded that the conventional steel automotive roof could be replaced by the laminated composite.
机译:该研究的动机是通过层压复合板更换传统的钢制汽车屋顶,用于重量轻,耐高压。耦合的有限/边界元件方法用于简单地支撑的矩形复合板振动的声学辐射数值分析。使用用于各向同性板的华莱士方程来验证该分析。通过3对压电传感器/致动器和一对粘弹性材料通过被动约束层阻尼处理进行了对声场的主动控制。结果表明,压电传感器/致动器和VE贴片的最佳放置需要控制来自振动复合板的声场。结论是,传统的钢汽车屋顶可以由层压复合材料代替。

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