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首页> 外文期刊>Mathematical Problems in Engineering >Numerical Modeling and Control of Rotating Plate with Coupled Self-Sensing and Frequency-Dependent Active Constrained Layer Damping
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Numerical Modeling and Control of Rotating Plate with Coupled Self-Sensing and Frequency-Dependent Active Constrained Layer Damping

机译:自感应与频率相关的主动约束层阻尼耦合的旋转板数值建模与控制

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摘要

This work proposes a coupled finite element model for actively controlled constrained layer damped (CLD) rotating plate with self-sensing technique and frequency-dependent material property in both the time and frequency domain analyses. Constrained layer damping with viscoelastic material can effectively reduce the vibration in rotating structures. However, most existing research models use complex modulus approach to model the viscoelastic material, but it limits to frequency domain analysis and the frequency dependency of the viscoelastic material is not well-included as well. It is meaningful use of the anelastic displacement fields (ADFs) that is done in order to include the frequency dependency of the material for both the time and frequency domains. Also, unlike previous ones, all types of damping are taken into account by this finite element model. Thus, in this work, a single layer finite element is adopted to model a three-layer active constrained layer damped rotating plate in which the constraining layer is made of piezoelectric material to work as both the self-sensing sensor and actuator. This newly proposed finite element model is validated, and then, as shown in numerical studies, this proposed approach can achieve effective vibration reduction in both the frequency and time domains.
机译:这项工作提出了一个耦合有限元模型的主动控制的约束层阻尼(CLD)旋转板具有自感应技术和频率相关的材料特性的时域和频域分析。粘弹性材料的约束层阻尼可以有效地减少旋转结构中的振动。然而,大多数现有的研究模型都使用复数模量法对粘弹性材料进行建模,但是它仅限于频域分析,而且粘弹性材料的频率相关性也没有很好地包括在内。有意义的是使用非弹性位移场(ADF),以便在时域和频域中都包括材料的频率依赖性。而且,与以前的阻尼方法不同,此有限元模型考虑了所有类型的阻尼。因此,在这项工作中,采用单层有限元来模拟三层有源约束层阻尼旋转板,其中约束层由压电材料制成,既可以用作自感应传感器又可以用作致动器。对该新提出的有限元模型进行了验证,然后,如数值研究所示,该提议的方法可以在频域和时域上实现有效的减振。

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  • 来源
    《Mathematical Problems in Engineering》 |2012年第12期|194010.1-194010.15|共15页
  • 作者单位

    Department of Electromechanical Engineering, University of Macau, Macau, China;

    Department of Electromechanical Engineering, University of Macau, Macau, China;

    Magnecomp Precision Technology, 38975 Skycanyon Drive, Murrieta, CA 92563, USA;

    Department of Electromechanical Engineering, University of Macau, Macau, China;

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