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首页> 外文期刊>International Journal of Solids and Structures >Nonlinear dynamic model with multi-fields coupling effects for giant magnetostrictive actuators
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Nonlinear dynamic model with multi-fields coupling effects for giant magnetostrictive actuators

机译:巨型磁致伸缩执行器的具有多场耦合效应的非线性动力学模型

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摘要

This paper addresses the modeling of complex hysteresis behavior for giant magnetostrictive actuator system under magnetically unbiased conditions. The hysteresis behavior is modeled by establishing a novel nonlinear dynamic model with multi-fields coupling effects, in which both the eddy current effects and the change of stress are considered. The former is included in the nonlinear transient constitutive model with magnetic-elastic-thermal coupling effect, which is employed as the basic constitutive equations of Terfenol-D. The latter is characterized through the structural dynamic behavior of actuator system itself, which is modeled by theorem of momentum. The quantitative agreements between numerical simulation results and existing experimental data indicate that nonlinear dynamic model can accurately describe the complex hysteresis behavior of the giant magnetostrictive actuator system not only under quasi-static operating conditions but also under dynamic operating conditions. The numerical simulation results also indicate that both the eddy current effects and structural dynamic behavior are the origin of frequency-dependent hysteresis behavior for giant magnetostrictive actuator system, and demonstrate the significance and necessity of simultaneously considering the eddy current effects and the change of stress in the system-level. Thus, the nonlinear dynamic model established in this paper is a system-lever coupled theoretical model, which can be directly used in the active vibration control and any other engineering application of the giant magnetostrictive actuators.
机译:本文讨论了在无磁条件下巨型磁致伸缩执行器系统的复杂磁滞行为的建模。通过建立具有多场耦合效应的新型非线性动力学模型来对磁滞行为进行建模,其中考虑了涡流效应和应力变化。前者包含在具有磁-弹-热耦合效应的非线性瞬态本构模型中,该模型用作Terfenol-D的基本本构方程。后者的特征在于执行器系统本身的结构动力学行为,该行为通过动量定理建模。数值模拟结果与现有实验数据之间的定量一致性表明,非线性动态模型不仅可以在准静态工况下而且在动态工况下都能准确地描述巨型磁致伸缩执行器系统的复杂磁滞行为。数值模拟结果还表明,涡流效应和结构动力学行为都是巨型磁致伸缩执行器系统的频率相关磁滞行为的起源,并说明了同时考虑涡流效应和应力变化的重要性和必要性。系统级。因此,本文建立的非线性动力学模型是系统杠杆耦合的理论模型,可以直接用于主动振动控制和巨型磁致伸缩执行器的任何其他工程应用中。

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