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Conceptual design of self-sensing actuator based on giant magnetostrictive material

机译:基于巨型磁致伸缩材料的自感应执行器的概念设计

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This Paper presents the conceptual design of a self-sensing actuator (SSA) based on giant magnetostrictive material, which consists of variable-air-gap with a displacement amplification mechanism. A driving solenoid coil, surrounds the GMM rod, used to sense changes of magnetic induction in GMM. Modeling and simulation are used to validate the concept. Sensing relation is derived, uniformity and intensity of magnetic field in GMM is analyzed, magnetic circuit configuration is optimized. Then, the key structure factors influence intensity and uniformity of magnetic field in SSA is calculated. At last, Sensing application of actuator in actuation with magnetic field and compressive stress are analyzed, verify feasibility of conceptual design.
机译:本文介绍了基于巨型磁致伸缩材料的自感应执行器(SSA)的概念设计,其包括具有位移放大机制的可变空气间隙。 驱动电磁线圈,围绕GMM棒,用于检测GMM中磁感应的变化。 建模和仿真用于验证概念。 导出感测关系,分析了GMM中磁场的均匀性和强度,优化了磁路配置。 然后,计算了SSA中磁场的强度和均匀性的关键结构因素。 最后,分析了致动器在磁场驱动中的感测应用,验证了概念设计的可行性。

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