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Analysis of Nonlinear Thermoelastic Dissipation in Euler-Bernoulli Beam Resonators

机译:Euler-Bernoulli梁谐振器的非线性热弹性耗散分析

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摘要

The linear theory of thermoelastic damping (TED) has been extensively developed over the past eight decades, but relatively little is known about the different types of nonlinearities that are associated with this fundamental mechanism of material damping. Here, we initiate the study of a dissipative nonlinearity (also called thermomechanical nonlinearity) whose origins reside at the heart of the thermomechanical coupling that gives rise to TED. The finite difference method is used to solve the nonlinear governing equation and estimate nonlinear TED in Euler-Bernoulli beams. The maximum difference between the nonlinear and linear estimates ranges from 0.06% for quartz and 0.3% for silicon to 7% for aluminum and 28% for zinc.
机译:在过去的八十年中,热弹性阻尼(TED)的线性理论得到了广泛的发展,但是对于与材料阻尼这一基本机理相关的不同类型的非线性知之甚少。在这里,我们开始研究耗散非线性(也称为热机械非线性),其起源位于产生TED的热机械耦合的核心。有限差分法用于求解非线性控制方程并估计Euler-Bernoulli梁中的非线性TED。非线性和线性估计之间的最大差值范围为石英的0.06%和硅的0.3%,铝的7%和锌的28%。

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