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Application of change in permeability of magnetic shape memory (MSM) alloys for optimization of magnetic circuit in actuators

机译:磁形状记忆(MSM)合金磁导率变化在优化执行器磁路中的应用

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Magnetic shape memory alloys, especially Ni-Mn-Ga alloys have been shown to have enormous potential to be used in electromagnetic (EM) actuators and sensors due to very long lifetime, fast response time, and large magnetic strain. They change their shape when subjected to external magnetic field. A number of physical phenomena accompanying the shape change also open up prospects for self-sensing or energy-harvesting applications. This paper concerns the use of changes in permeability of MSM alloys with strain to optimise actuator design. This is shown for a basic MSM actuator with very small air gap. Comparison of designs with and without “pre-strained” MSM element is presented based on field modelling results.
机译:磁性形状记忆合金,特别是Ni-Mn-Ga合金,由于使用寿命长,响应时间快,磁应变大,已显示出在电磁(EM)致动器和传感器中具有巨大的潜力。它们在受到外部磁场作用时会改变形状。伴随形状变化的许多物理现象也为自感应或能量收集应用打开了前景。本文涉及利用MSM合金的磁导率变化和应变来优化执行器设计。对于具有很小气隙的基本MSM执行器来说,这是显示的。根据现场建模结果,比较了带有和不带有“预应变” MSM元素的设计。

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