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基於超磁致伸縮材料的驅動器設計及磁場仿真

Design of Actuator and Simulation on Magnetic Field Based on Giant Magnetostrictive Materials

  • 摘要: 基於超磁致伸縮材料的工作原理,設計了具有微位移可控特性的驅動器🦹🏻。為了探究驅動器內部磁場設計的合理性以及超磁致伸縮驅動器的磁感應強度與激勵電流之間的關系👱‍♀️,應用ANSYS有限元分析軟件對超磁致伸縮驅動器的內部磁場進行仿真。研究結果表明,超磁致伸縮驅動器磁場設計合理;隨著電流的增大,超磁致伸縮材料中的磁感應強度也隨之增加並且磁感應強度逐漸趨於飽和🍉。

     

    Abstract: Based on the principle of giant magnetostrictive materials (GMM), the internal magnetic field of actuator was designed. In order to explore the rationality of magnetic field design and the relationship between magnetic induction intensity and excitation current of giant magnetostrictive actuator, the internal magnetic field of giant magnetostrictive actuator was simulated by ANSYS finite element analysis software. The results showed that the magnetic field design of the giant magnetostrictive actuator was reasonable, and the magnetic induction intensity in the giant magnetostrictive material increased with the increase of the current, and the magnetic induction intensity of the giant magnetostrictive material tended to saturation gradually.

     

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