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An Efficient Vector Hysteresis Model for Unidirectional Magneto-Elastic Interactions

机译:单向磁弹性相互作用的有效矢量滞后模型

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Utilization of magneto-elastic materials has been recently on the rise especially in applications involving linear actuators, sensors, and energy harvesting. There is no doubt, though, that precise magneto-elastic models capable of correlating the coupled nonlinear and history dependent mechanical and magnetic components are crucial for the design and construction of devices related to the aforementioned applications. In the past, several efforts have been carried out toward the enhancement of accuracy and computational efficiency of relevant magnetostriction models. In this article, a novel approach to the modeling of unidirectional magneto-elastic interactions is presented. This approach capitalizes on the physical fact that an applied mechanical stress along a magnetized rod axial direction results in off-axis domain rotation. The approach employs a superposition of vector magnetic hysteresis models where $x$ - and $y$ -axes inputs are correlated with the applied magnetic field and a mapping of the mechanical stress. The corresponding $x$ - and $y$ -axes outputs represent the magnetic flux density and mechanical strain, simultaneously. To check the validity of the proposed approach, model identification was carried out for a Terfenol rod material. Simulations were performed and compared with experimental measurements involving different field-stress variations. Experimental validation results demonstrate the good qualitative and quantitative agreement of the model output with experimental measurements. Theoretical and computational details of the proposed model, its identification, and comparisons with experimentally measured data are given in this article.
机译:最近在磁力弹性材料的利用上升,特别是在涉及线性执行器,传感器和能量收集的应用中。然而,毫无疑问,能够将耦合非线性和历史相关机械和磁性部件相关的精确的磁力弹性模型对于与上述应用相关的装置的设计和构造至关重要。过去,已经努力提高了相关磁致索模型的准确性和计算效率的努力。在本文中,介绍了一种新的对单向磁弹性相互作用建模的新方法。该方法利用沿着磁化杆轴向施加的机械应力导致轴外域旋转的物理事实。该方法采用叠加的矢量磁滞模型,其中<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org / 1999 / xlink“> $ x $ - 和<内联惯例xmlns:mml =”http://www.w3。 ORG / 1998 / MATH / MATHML“XMLNS:XLink =”http://www.w3.org/1999/xlink“> $ y $ -axes输入与所施加的磁场和机械应力的映射相关。相应的<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ x $ - 和 $ y $ -axes输出代表磁助焊剂密度和机械应变同时。为了检查所提出的方法的有效性,针对三氟酚棒材进行模型鉴定。与涉及不同场胁迫变化的实验测量进行进行并进行仿真。实验验证结果证明了模型输出与实验测量的良好定性和定量吻合。本文给出了所提出的模型的理论和计算细节,其识别和通过实验测量数据的比较。

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