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On the application of viscoelastic orthotropic double-nanoplates systems as nanoscale mass-sensors via the generalized Hooke's law for viscoelastic materials and Eringen's nonlocal elasticity theory

机译:通过广义的粘弹性材料的胡克定律和艾林根的非局部弹性理论研究粘弹性正交各向异性双纳米板系统在纳米尺度质量传感器中的应用

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摘要

Reviewing the literature reveals that in all previous research works related to the damped vibration analysis of nanoplates, the material damping of nanoplates has been represented by Kelvin-Voigt model without any reasonable justification. The Kelvin-Voigt model has no instantaneous elasticity in creep and also shows unrealistic behavior in relaxation. Due to these drawbacks, the Kelvin-Voigt model fails to capture time domain characteristics of viscoelastic solid materials correctly. On the other hand, the Zener model can predict both creep and relaxation functions of a viscoelastic solid material well in the time domain.
机译:回顾文献表明,在所有先前与纳米板的阻尼振动分析有关的研究工作中,用无可辩驳的理由用凯尔文-沃格模型来表示纳米板的材料阻尼。 Kelvin-Voigt模型在蠕变时没有瞬时弹性,在松弛中也表现出不切实际的行为。由于这些缺点,Kelvin-Voigt模型无法正确捕获粘弹性固体材料的时域特性。另一方面,齐纳模型可以在时域中很好地预测粘弹性固体材料的蠕变和松弛函数。

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