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首页> 外文期刊>Journal of vibration and control: JVC >Mitigation of vibrations in sandwich-type structures by a controllable constrained layer
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Mitigation of vibrations in sandwich-type structures by a controllable constrained layer

机译:可控约束层夹芯型结构中的振动

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摘要

This study presents and tests a method for semi-active control of vibrations in sandwich-type beam structures. This method adapts a strategy called prestress accumulation release. The prestress accumulation release strategy is based on structural reconfiguration: it uses short time, impulsive and localised changes of actuator properties (such as stiffness or damping), which are applied to a part of the system in the moments, when its strain energy attains a local maximum. The method has been earlier applied as a global control scheme to mitigate the fundamental vibration mode of a cantilever beam (by stiffness control) and in the task of mitigating the first four modes of a frame structure (by damping control). This study proposes a prestress accumulation release strategy and tests its effectiveness for the case of a three-layered sandwich structure, with the internal layer fabricated from a material with dissipative characteristic locally controllable through the material damping coefficient. In contrast to the earlier research, the control is applied thus at the level of material characteristics instead of a discrete set of dedicated actuators. Based on the finite element method, a numerical experiment involving a passively damped, as well as prestress accumulation release-controlled, three-layered cantilever beam excited by initial displacements was performed. The effectiveness of the approach was studied for a broad range of internal layer damping parameters. The presented results revealed a high potential of the prestress accumulation release strategy in semi-active damping of vibrations of sandwich-type structures.
机译:本研究提出并测试了一种夹层型梁结构振动的半主动控制方法。这种方法采用了一种称为预应力累积释放的策略。预应力累积释放策略基于结构重构:它使用执行器特性(如刚度或阻尼)的短时间、脉冲和局部变化,当应变能达到局部最大值时,这些变化应用于系统的一部分。该方法早前已作为一种全局控制方案应用于减轻悬臂梁的基本振动模式(通过刚度控制)和减轻框架结构的前四种模式(通过阻尼控制)。本研究提出了一种预应力累积释放策略,并在三层夹层结构的情况下测试了其有效性,其中内层由具有耗散特性的材料制成,通过材料阻尼系数局部可控。与之前的研究不同,这种控制是在材料特性的层面上应用的,而不是一组离散的专用执行器。基于有限元方法,对初始位移激励下的被动阻尼预应力累积释放控制的三层悬臂梁进行了数值试验。针对广泛的内层阻尼参数,研究了该方法的有效性。结果表明,预应力累积释放策略在夹层结构振动半主动阻尼中具有很高的潜力。

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