Researches of action of pre-stressing caused by external and internal forces on devices based on magnetostrictive bilayer plates

P. Grakhov, A. Fedin, V. Yasoveev, S. Potapov, Ruslan R. Mullayanov
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引用次数: 1

Abstract

This article presents the results of researches of the static characteristics of displacement devices (through the example of angular displacements) based on magnetostrictive bilayer plates under the action of elastic pre-stressing. We have determined significant influence on the characteristics of preliminary moments caused by both internal and external forces (these having both signs) which are comparable to the moment of the saturation magnetostrictive forces and are even less than the said moment. Significant refinements have been achieved concerning the dependences of the angular displacement of an inertial object on the control current during the action of the preliminary moments of forces. We have determined opportunities for production of actuators based on magnetostrictive plates with an active layer made of permendur, with a significantly higher efficiency (the current consumption is two times less) and linearity of the characteristics under the action of pre-stresses caused by internal or external moments of forces having a certain sign. We have obtained the results of the research of the characteristics during simultaneous action of the moments of internal and external forces at various ratios of the values and signs of the moments. We have also assessed the prospects of this approach for enhancement of the performance of actuators.
基于磁致伸缩双层板的装置在内外力作用下的预应力研究
本文介绍了基于磁致伸缩双层板的位移装置在弹性预应力作用下的静态特性研究结果(以角位移为例)。我们已经确定了由内力和外力(具有两个符号)引起的初步力矩的特性的显著影响,这些力矩与饱和磁致伸缩力的力矩相当,甚至比上述力矩更小。在力的初始力矩作用期间,关于惯性物体的角位移对控制电流的依赖关系,已经取得了重大的改进。我们已经确定了基于磁致伸缩板的致动器的生产机会,该致动器具有由永动机制成的有源层,具有显着更高的效率(电流消耗减少两倍),并且在具有一定标志的内部或外部力力矩引起的预应力作用下的特性线性。我们得到了内力和外力矩在不同的矩值和符号比下同时作用时的特性的研究结果。我们还评估了这种方法的前景,以提高执行器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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