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Actuator tests for a large deformable membrane mirror

机译:大型可变形膜镜的执行器测试

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In the design of a large adaptive deformable membrane mirror, variable reluctance actuators are used. These consist of a closed magnetic circuit in which a strong permanent magnet provides a static magnetic force on a ferromagnetic core which is suspended in a membrane. By applying a current through the coil which is situated around the magnet, this force is influenced, providing movement of the ferromagnetic core. This movement is transferred via a rod imposing the out-of-plane displacements in the reflective deformable membrane. In the actuator design a match is made between the negative stiffness of the magnet and the positive stiffness of the membrane suspension. If the locality of the influence functions, mirror modes as well as force and power dissipation are taken into account, a resonance frequency of 1500 Hz and an overall stiffness of 1000 N/m for the actuators is needed. The actuators are fabricated and the dynamic response tested in a dedicated setup. The Bode diagram shows a first eigenfrequency of 950 Hz. This is due to a lower magnetic force than expected. A Helmholtz coil setup was designed to measure the differences in a large set of permanent magnets. With the same setup the 2nd quadrant of the B-H curve is reconstructed by stacking of the magnets and using the demagnetization factor. It is shown that the values for H_c and B_r of the magnets are indeed lower than the values used for the initial design. New actuators, with increased magnet thickness, are designed and currently fabricated.
机译:在大型自适应可变形膜镜的设计中,使用了可变磁阻致动器。它们由一个闭合的磁路组成,其中一个强大的永磁体在悬浮在膜中的铁磁芯上提供静磁力。通过施加电流通过位于磁体周围的线圈,该力受到影响,从而提供铁磁芯的运动。该运动通过在反射型可变形膜中施加平面外位移的杆进行传递。在执行器设计中,在磁铁的负刚度和膜片悬架的正刚度之间进行匹配。如果考虑到影响功能的局部性,镜面模式以及力和功率耗散,则对于执行器,需要1500 Hz的共振频率和1000 N / m的整体刚度。在专用的装置中制造了执行器并测试了动态响应。波特图显示了950 Hz的第一本征频率。这是由于磁力低于预期。亥姆霍兹线圈设置旨在测量大量永磁体中的差异。在相同的设置下,B-H曲线的第二象限通过堆叠磁体并使用退磁系数来重建。结果表明,磁体的H_c和B_r值确实低于初始设计所使用的值。设计并目前正在制造具有增加的磁体厚度的新型致动器。

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