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The application of piezoceramics for reducing noise and vibrations in vehicle structures

机译:压电陶瓷用于降低车辆结构噪声和振动的应用

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The application of piezoceramic materials (PZTs) for reducing noise and vibrations in vehicle structures is examined, using a test stand that can accommodate a test plate made of the same material as those used in vehicle structures. The "smart damping" technique used in this study involves attaching PZTs that are shunted with passive electrical circuits, consisting of resistors, capacitors, and inductors. The shunted PZTs are simple, do not require any external power, and can be easily and cost-effectively applied to vehicle structures in production. The test results indicate that the shunted PZTs can dissipate vibration energy, much the same way as adding viscoelastic damping materials to the structure, without adding any significant weight to the structure. The results further indicate that the shunt circuits can be tuned to specific vibration frequencies, in the lower frequency range where viscoelastic materials are commonly ineffective. It can be concluded from the study that shunted PZTs provide a practical means for augmenting the vibration reduction effects of viscoelastic damping materials in lower frequencies for many vehicle applications.
机译:使用可以容纳与车辆结构中使用的测试板制成的测试板的测试支架,检查压电陶瓷材料(PZT)用于降低车辆结构中的噪声和振动。本研究中使用的“智能阻尼”技术涉及附接具有被动电路的PZT,由电阻器,电容器和电感器组成。分流的PZTS很简单,不需要任何外部电源,并且可以很容易且经济地应用于生产中的车辆结构。测试结果表明,分流的PZTS可以耗散振动能量,与将粘弹性阻尼材料添加到结构上,而不会使任何重量与结构增加任何重量。结果进一步表明,分流电路可以调谐到特定的振动频率,在粘弹性材料通常无效的较低频率范围内。从研究中可以得出结论,分流PZTS提供了用于增强粘弹性阻尼材料在较低频率的振动减振效应中的许多车辆应用的实用手段。

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