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Nonlinear vibration of smart nonlocal magneto-electro-elastic beams resting on nonlinear elastic substrate with geometrical imperfection and various piezoelectric effects

机译:具有几何缺陷和各种压电效应的非线性弹性基板上静电非识别磁电弹性梁的非线性振动

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摘要

This paper studies nonlinear free vibration characteristics of nonlocal magneto-electro-elastic (MEE) nanobeams resting on nonlinear elastic substrate having geometrical imperfection by considering piezoelectric reinforcement scheme. The piezoelectric reinforcement can cause an enhanced vibration behavior of smart nanobeams under magnetic field. All of previously reported studies on MEE nanobeams ignore the influences of geometric imperfections which are very substantial due to the reason that a nanobeam cannot be always perfect. Nonlinear governing equations of a smart nanobeam are derived based on classical beam theory and an analytical trend is provided to obtained nonlinear vibration frequency. This research shows that changing the volume fraction of piezoelectric constituent in the material has a great influence on vibration behavior of smart nanobeam under electric and magnetic fields. Also, it can be seen that nonlinear vibration behaviors of smart nanobeam are dependent on the magnitude of exerted electric voltage, magnetic potential, hardening elastic foundation and geometrical imperfection.
机译:本文通过考虑压电加强方案,在具有几何缺陷的非线性弹性基板上搁置非识别磁体电弹性(MEE)纳米束的非线性自由振动特性。压电加强件会在磁场下引起智能纳米芯片的增强振动行为。所有先前报告的关于Mee Nanobeams的研究忽视了几何缺陷的影响,这是由于纳米云不能总是完美的原因而非常重大的。基于经典光束理论推导出智能纳米射游的非线性控制方程,并提供分析趋势以获得非线性振动频率。该研究表明,改变了材料中压电成分的体积分数对电磁场下智能纳米振动的振动行为有很大影响。此外,可以看出,智能纳米流的非线性振动行为取决于施加电压,磁电位,硬化弹性基础和几何缺陷的幅度。

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