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首页> 外文期刊>Journal of intelligent material systems and structures >Improved sound transmission loss in an automotive component using piezoceramic patches and dissipative shunt circuits
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Improved sound transmission loss in an automotive component using piezoceramic patches and dissipative shunt circuits

机译:使用压电陶瓷贴片和耗散并联电路改善了汽车部件的声音传输损耗

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摘要

Noise in a vehicle is generally caused by the vibration of various automotive components, such as the dashboard, door panels, and roof. For example, vibrations caused by the engine may cause a dash panel to vibrate leading to noise in the vehicle cabin. The control of such noise and vibration may be achieved by placing a viscoelastic or other suitable damping material on the automotive component; however, conventional damping materials usually have a high density, which can lead to significant increases in the overall mass of the sound insulation system. A lightweight alternative employs piezoceramic patches connected to a resistor-inductor circuit, where the mechanical vibration, converted into electrical energy by the piezoceramic, is dissipated in the form of thermal heat through the resistor. The presence of an inductive element allows the system to perform in the vicinity of a mode of the vibrating structure, in an effect similar to a resonant vibration absorber. In this work, the damping capacity of this resonant electrical circuit is demonstrated in a dash panel installed between coupled reverberant and anechoic rooms for assessments of sound transmission loss. Finite element simulation and theoretical analysis are used to support the choice of the electrical component values and the correct placement for piezoelectric patches. The resulting sound transmission control is compared to baseline measurements with conventional viscoelastic material thermally bonded to the panel surface. The work is concluded with a discussion on the achieved results and mass saving benefits of the proposed damping technique.
机译:车辆中的噪音通常是由各种汽车部件(例如仪表板,门板和车顶)的振动引起的。例如,由发动机引起的振动可能导致仪表板振动,从而导致车厢中的噪声。可以通过在汽车部件上放置粘弹性或其他合适的阻尼材料来控制这种噪声和振动。然而,常规的阻尼材料通常具有高密度,这可能导致隔音系统的整体质量显着增加。一种轻巧的替代方案是使用连接到电阻器-电感器电路的压电陶瓷贴片,通过压电陶瓷将机械振动(通过压电陶瓷转换为电能)以热能的形式通过电阻散发。感应元件的存在允许系统在振动结构的模式附近执行,其效果类似于共振吸振器。在这项工作中,该共振电路的阻尼能力在安装在耦合混响室和消声室之间的仪表板上进行了演示,以评估声音的传输损耗。有限元模拟和理论分析用于支持电气元件值的选择和压电贴片的正确放置。将所得的声音传输控制与热粘合到面板表面的常规粘弹性材料的基线测量值进行比较。最后,对所提出的阻尼技术的成果和节省质量的好处进行了讨论。

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