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Numerical Dynamic Strong Coupled Model of Linear Magnetostrictive Actuators

机译:线性磁致伸缩致动器的数控强耦合模型

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A numerical dynamic and magnetomechanical strong coupled model of magnetostrictive actuators was founded. The model includes the magneto-mechanical coupling term, which reflects the strong coupling characteristic of magnetostrictive actuators. With this model, the dynamic magnetic and the mechanical problems can be solved simultaneously. According to the proposed model and the measured magnetic characteristic of magnetostrictive material, the relation between the magnet field and the output displacement of the actuator was calculated based on the finite element method. A comparison between the calculating results and the experimental ones for a actuator was carried out and it was found that they were in agreement well. This indicates that the numerical dynamic magnetomechanical strong coupled model can be used to the design and control of magnetostrictive actuators.
机译:磁致伸缩致动器的数值动态和磁机械强耦合模型。该模型包括磁机械耦合术语,其反映了磁致伸缩致动器的强耦合特性。通过该模型,可以同时解决动态磁性和机械问题。根据所提出的模型和磁致伸缩材料的测量磁特性,基于有限元方法计算磁场与致动器的输出位移之间的关系。进行了计算结果与执行器的实验结果之间的比较,发现它们符合良好。这表明数值动态磁机械强耦合模型可用于磁致伸缩致动器的设计和控制。

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