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Structural magnetic strain model for magnetostrictive transducers

机译:磁致伸缩换能器的结构磁应变模型

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This paper addresses the modeling of strains generated by magnetostrictive transducers in response to applied magnetic fields. The measured strains depend on both the rotation of moments within the material in response to the field and the elastic properties of the material. The magnetic behavior is characterized by considering the Jiles-Atherton mean field theory for ferromagnetic hysteresis in combination with a quadratic moment rotation model for magnetostriction. Elastic properties must be incorporated to account for the dynamics of the material as it vibrates. This is modeled by force balancing, which yields a wave equation with magnetostrictive inputs. The validity of the resulting transducer model is illustrated by comparison with experimental data.
机译:本文介绍了响应于施加的磁场,磁致伸缩换能器产生的应变的建模。测得的应变既取决于材料中响应于磁场的矩的旋转,又取决于材料的弹性。磁性能的特征是考虑了铁磁滞的吉尔-阿瑟顿平均场理论和磁致伸缩的二次矩旋转模型。必须考虑弹性特性,以解决材料振动时的动力学问题。这是通过力平衡建模的,力平衡产生了具有磁致伸缩输入的波动方程。通过与实验数据的比较说明了所得换能器模型的有效性。

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