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首页> 外文期刊>Journal of Sound and Vibration >Transient analysis of nonlinear Euler-Bernoulli micro-beam with thermoelastic damping, via nonlinear normal modes
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Transient analysis of nonlinear Euler-Bernoulli micro-beam with thermoelastic damping, via nonlinear normal modes

机译:通过非线性法向模式对具有热弹性阻尼的非线性Euler-Bernoulli微梁进行瞬态分析

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In this paper an Euler-Bernoulli model has been used for vibration analysis of micro-beams with large transverse deflection. Thermoelastic damping is considered to be the dominant damping mechanism and introduced as imaginary stiffness into the equation of motion by evaluating temperature profile as a function of lateral displacement. The obtained equation of motion is analyzed in the case of pure single mode motion by two methods; nonlinear normal mode theory and the Galerkin procedure. In contrast with the Galerkin procedure, nonlinear normal mode analysis introduces a nonconventional nonlinear damping term in modal oscillator which results in strong damping in case of large amplitude vibrations. Evaluated modal oscillators are solved using harmonic balance method and tackling damping terms introduced as an imaginary stiffness is discussed. It has been shown also that nonlinear modal analysis of micro-beam with thermoelastic damping predicts parameters such as inverse quality factor, and frequency shift, to have an extrema point at certain amplitude during transient response due to the mentioned nonlinear damping term; and the effect of system's characteristics on this critical amplitude has also been discussed.
机译:本文使用Euler-Bernoulli模型对具有大横向挠度的微梁进行振动分析。热弹性阻尼被认为是主要的阻尼机制,并通过评估温度曲线作为横向位移的函数,将其作为假想刚度引入运动方程。在纯单模运动的情况下,通过两种方法分析获得的运动方程:非线性法则模式理论和Galerkin程序。与Galerkin程序相反,非线性正态分析在模态振荡器中引入了非常规的非线性阻尼项,在大振幅振动的情况下会产生强阻尼。评估模态振荡器使用谐波平衡法求解,并讨论了引入阻尼项作为虚构刚度。还表明,具有热弹性阻尼的微梁的非线性模态分析可以预测诸如逆品质因数和频移之类的参数,由于上述非线性阻尼项,在瞬态响应过程中具有一定幅度的极值点。还讨论了系统特性对该临界振幅的影响。

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