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HYBRID PASSIVE-ACTIVE VIBRATION CONTROL OF COMPOSITE BEAMS

机译:复合梁的混合动力源主动振动控制

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Through the use of hybrid active-passive damping treatments it is possible to combine the well-known reliability, low cost and robustness of viscoelastic damping treatments and the high performance, modal selective and adaptive piezoelectric active control. Several configurations of hybrid damping treatments have already been reported in the literature. They differ mainly by the relative positions of viscoelastic treatments, sensors and piezoelectric actuators. The objective of this work is to provide a brief review of the literature concerning experimental studies on hybrid passive (viscoelastic) - active (piezoelectric) damping treatments of beams. Then, experimental results are presented and used to validate a finite element model proposed in a previous work, with special attention to an accurate prediction of viscoelastic damping frequency-dependence and piezoelectric materials sensor aspect. It is shown that the finite element model is effective in predicting both viscoelastic and piezoelectric materials vibration characteristics. Once validated, it is used to provide the optimised configurations for piezo embedded composite beams. Then, new experimental results are obtained.
机译:通过使用混合主动 - 被动阻尼处理也能够众所周知的可靠性,低成本和的粘弹性阻尼处理鲁棒性和高性能,模态选择性和自适应压电有源控制结合起来。在文献中已经报道了几种杂种阻尼处理的配置。它们主要是粘弹性处理,传感器和压电执行器的相对位置。这项工作的目的是简要介绍关于梁混合无源(粘弹性) - 活性(压电)阻尼处理梁的实验研究的文献。然后,提出并用于验证实验结果,用于验证在先前的工作中提出的有限元模型,特别注意粘弹性阻尼频率依赖性和压电材料传感器方面的精确预测。结果表明,有限元模型可有效地预测粘弹性和压电材料振动特性。一旦验证,它用于为压电嵌入式复合梁提供优化的配置。然后,获得了新的实验结果。

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