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首页> 外文期刊>Journal of magnetism and magnetic materials >A nonlinear magneto-mechanical-thermal-electric coupling model of Terfenol-D/PZT/Terfenol-D and Ni/PZT/Ni laminates
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A nonlinear magneto-mechanical-thermal-electric coupling model of Terfenol-D/PZT/Terfenol-D and Ni/PZT/Ni laminates

机译:Terfenol-D / PZT / Terfenol-D和Ni / PZT / Ni层压板的非线性磁-机-热-电耦合模型

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摘要

A nonlinear magneto-mechanical-thermo-electric coupling finite element model is established for the Terfenol-D/PZT and Ni/PZT laminates structure respectively, based on Maxwell electromagnetic equations and nonlinear constitutive equations of giant magnetostrictive materials. The magnetoelectric (ME) coefficients of the two laminates with considering the coupling stress or without considering the coupling stress are calculated respectively. The results indicate that the predicted values of ME coefficient of our model are very well in agreement with the experimental datas both in the low, intermediate and high magnetic field for the two kinds of materials structures at different temperatures (most of previous theoretical models just give the well comparison in low and intermediate field). The coupling stress has a significant effect on the ME coefficient for the Terfenol-D/PZT laminate, but little effect for the Ni/PZT laminate. The ME coefficient with considering coupling stress is smaller than that without considering coupling stress. Besides, the magnetic flux density, displacement and voltage distribution characteristics of ME laminates at different temperatures and pre-stresses are also detailed investigated. It has been shown a noteworthy phenomenon that the sensitivity of ME effect on temperature and/or pre-stress can be tuned by the pre-stress and/or temperature, respectively. Adjusting pre-stress can reduce the sensitivity of ME effect on temperature, which may promote the stability of ME devices operating in complex environments.
机译:基于Maxwell电磁方程和巨型磁致伸缩材料的非线性本构方程,分别建立了Terfenol-D / PZT和Ni / PZT叠层结构的非线性磁-机-热-电耦合有限元模型。分别计算考虑了耦合应力或不考虑耦合应力的两个层压板的磁电系数。结果表明,在不同温度下,两种材料结构在低磁场,中磁场和高磁场下,我们模型的ME系数预测值与实验数据吻合很好(以前的大多数理论模型只是给出了中低井的井比较)。偶联应力对Terfenol-D / PZT层压板的ME系数有显着影响,而对Ni / PZT层压板则几乎没有影响。考虑耦合应力的ME系数小于不考虑耦合应力的ME系数。此外,还详细研究了ME层压板在不同温度和预应力下的磁通密度,位移和电压分布特性。已经显示出值得注意的现象,可以分别通过预应力和/或温度来调节ME对温度和/或预应力的敏感性。调整预应力可以降低ME对温度的敏感性,从而可以提高在复杂环境中运行的ME设备的稳定性。

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