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Theoretical and experimental investigation of the nonlinear response of an electrically actuated imperfect microbeam

机译:电驱动非理想微束非线性响应的理论和实验研究

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In this study a theoretical and experimental investigation of the nonlinear response of an electrically actuated microbeam is performed. A mechanical model is proposed, which accounts for two common imperfections of microbeams, due to microfabrications, which are the compliant support conditions and the initially deformed profile. A computationally efficient single-mode reduced-order model is derived by combining the Ritz technique and the Padé approximation. Numerical simulations of the harmonic response of the device near primary resonance are shown illustrating nonlinear phenomena arising in the device response. Experimental investigation is conducted on a polysilicon imperfect microbeam confirming the simulation results. The concurrence between the theoretical results and the experimental data reveals that this model, while simple, is capable of properly capturing the response both at low and, especially, at higher electrodynamic voltages.
机译:在这项研究中,对电动微束的非线性响应进行了理论和实验研究。提出了一种机械模型,该模型考虑了由于微加工而引起的微梁的两个常见缺陷,即不合格的支撑条件和初始变形轮廓。通过结合Ritz技术和Padé逼近,得出了计算效率高的单模降阶模型。显示了接近一次谐振的设备谐波响应的数值模拟,说明了在设备响应中出现的非线性现象。对不完善的多晶硅微束进行了实验研究,证实了模拟结果。理论结果与实验数据之间的一致性表明,该模型虽然简单,但能够正确捕获低电压(尤其是较高的电动电压)下的响应。

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