首页> 外文会议>Proceedings of the ASME international design engineering technical conferences and computers and information in engineering conference 2017 >THERMODYNAMIC VARIATIONAL FORMULATIONS OF SUBORDINATE OSCILLATOR ARRAYS (SOA) WITH LINEAR PIEZOELECTRICS
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THERMODYNAMIC VARIATIONAL FORMULATIONS OF SUBORDINATE OSCILLATOR ARRAYS (SOA) WITH LINEAR PIEZOELECTRICS

机译:线性压电谐振子阵列(SOA)的热力学变化式

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摘要

It has been shown theoretically that by prescribing the mass and stiffness distributions of a subordinate oscillator array (SOA) that is attached to a host structure, significant vibration attenuation of a host can be obtained over a finite frequency range. This case stands in stark contrast to classical vibration isolator designs for two degree of freedom systems that achieve exact vibration cancellation at a single isolated frequency. Despite the attractiveness of SOAs for the design of broader band vibration suppression, the theoretically desired result can deteriorate rapidly due to small fabrication imperfections in the SOA. This paper introduces and compares variational thermodynamic formulations of composite piezoelectric SOA that are designed to be adjustable in real-time to ameliorate the effects of disorder due to fabrication in a SOA.
机译:从理论上已经表明,通过规定附接到主体结构的从属振荡器阵列(SOA)的质量和刚度分布,可以在有限的频率范围内获得主体的显着振动衰减。这种情况与用于两个自由度系统的经典隔振器设计形成了鲜明的对比,该系统在单个隔离频率上实现了精确的振动消除。尽管SOA对于抑制宽带振动的设计具有吸引力,但由于SOA中的制造缺陷小,理论上期望的结果可能会迅速恶化。本文介绍并比较了复合压电SOA的热力学变化公式,该公式被设计为可实时调整以改善由于SOA制造中的无序效应。

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