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Vibration and damping characteristics of beams with active constrained layer treatments under parametric variations

机译:参数变化下主动约束层处理的梁的振动和阻尼特性

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摘要

Hybrid damping designs with active piezoelectric materials and passive viscoelastic materials (VEMs) combine the advantages of both active and passive constrained layer damping (ACLD/PCLD) treatments. Researchers have established the standards for the extent and placement of the PCLD treatment for common structures. However for ACLD treatment, such detailed studies are not available. This study is aimed to examine, the effect of parametric variation of active constrained layer on the vibration control of the beams treated with optimally placed active or passive constrained layer damping patches. Finite element model is developed to model the open-loop and dose-loop dynamics of active/passive constrained layer damping treated beam. The placement strategies of ACLD patches are devised using the modal strain energy (MSE) approach. Extensive experimentation studies are conducted by making twenty one separate samples of ACLD/PCLD treated beams with variations in viscoelastic material layer thickness, ACLD/PCLD patch coverage and location of the patch. Effects of key parameters, such as control gain, viscoelastic material thickness, coverage and location variation of ACLD patch on the system loss factor have been investigated. The careful analysis of results from partially covered ACLD treated beam suggests that the maximum damping of the first mode can be achieved by attaching the ACLD patch only up to 50% coverage. It also reveals that with proper choice of the control voltage and thickness, the effective loss factor can be almost doubled. The present study suggests the potential use of parametric studies that establish some guide lines for the extent and placement of the ACLD patches on the cantilevered beam.
机译:具有主动压电材料和被动粘弹性材料(VEM)的混合阻尼设计结合了主动和被动约束层阻尼(ACLD / PCLD)处理的优点。研究人员已经为常见结构的PCLD处理的范围和位置建立了标准。但是,对于ACLD治疗,尚无此类详细研究。这项研究旨在检查有源约束层的参数变化对以最佳放置的有源约束层或无源约束层阻尼贴片处理的梁的振动控制的影响。开发了有限元模型来对主动/被动约束层阻尼处理梁的开环和剂量环动力学建模。 ACLD贴片的放置策略是使用模态应变能(MSE)方法设计的。通过制作二十一个单独的ACLD / PCLD处理过的梁样品,进行了广泛的实验研究,这些样品的粘弹性材料层厚度,ACLD / PCLD贴剂覆盖率和贴剂位置均发生变化。研究了关键参数,如控制增益,粘弹性材料的厚度,ACLD贴片的覆盖范围和位置变化对系统损耗因子的影响。对部分覆盖的ACLD处理过的光束的结果进行的仔细分析表明,通过仅将ACLD贴片粘贴到50%的覆盖率,可以实现第一模的最大阻尼。它还表明,通过适当选择控制电压和厚度,有效损耗因子几乎可以提高一倍。本研究表明参数研究的潜在用途,该研究为悬臂梁上ACLD贴片的范围和位置建立了一些指导方针。

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