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Pulsedmode operation and performance of a ferromagnetic shape memory alloy actuator

机译:铁磁形状记忆合金致动器的脉冲模式操作和性能

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摘要

The actuation capabilities and positioning performance of a single crystal ferromagnetic shape memory alloy (FSMA) operated in pulsed mode are evaluated in a prototype device. It consists of two orthogonal coil pairs that produce the magnetic fields necessary for the non-contact deformation of the material. The position of the top of the crystal after actuation is measured by a capacitive sensor. A specifically designed power module drives the discharge of a set of capacitors through the coils, producing fast current pulses of large amplitudes (about 250 A), the coil pairs are driven independently to control the direction of actuation. Open-loop experiments demonstrate that successive pulses of increasing magnitude successfully produced the desired expansion and contraction of the crystal, depending on the pair of coils that is activated. The deformation achieved is maintained after the pulses, highlighting the advantageous set-and-forget operation of the device. Closed-loop experiments are performed using a double proportional-integral-derivative controller, designed to take advantage of the energy-saving quality of the set-and-forget operation. Despite the nonlinear response and hysteric response of FSMA materials, a reference position can be reached and maintained with a maximum error of 0.5 μm.
机译:在原型设备中评估了以脉冲模式运行的单晶铁磁形状记忆合金(FSMA)的驱动能力和定位性能。它由两个正交的线圈对组成,这两个线圈对产生材料非接触变形所需的磁场。驱动后晶体顶部的位置由电容传感器测量。专门设计的电源模块通过线圈驱动一组电容器放电,产生大振幅(约250 A)的快速电流脉冲,独立驱动线圈对以控制致动方向。开环实验表明,取决于激活的一对线圈,连续增加幅度的脉冲成功地产生了所需的晶体膨胀和收缩。在脉冲之后保持所获得的变形,突出了装置的有利的设置和忘记操作。使用双比例积分微分控制器进行闭环实验,该控制器设计用于利用“设置即忘”操作的节能质量。尽管FSMA材料具有非线性响应和磁滞响应,但仍可以达到并保持参考位置,最大误差为0.5μm。

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