磁软微带的强制侧向振动:部分解决方案的构建

Andrii Sizhuk, Zhenjie Zhao, Xiaohong Chen, Zhuo Sun, Guangjiong Dong, Oleksandr Prokopenko, Alina Tretyak
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引用次数: 0

摘要

摘要 本文提出了对一端固定的磁软精密微带 Fe73.5Cu1Nb3Si13.5B9 低频振动的数学描述。在给定的 15-80 Hz 频率范围内,找到了交变磁场下微带诱导机械振动的共振频率。通过测量退火样品的机械自振,得出了衰减系数。通过激光测量得出的这一系数远小于上述受迫振动幅频特性(频率响应)的相应半宽。所创建的部分解特性之一是相对较宽的共振曲线,这一点已在实验中得到证实。给出的部分解实例证实了在指定激励频率和系统参数下最大频率以下频率响应形状的假设。弯曲变形时力矩的机械参数与外加磁场强度的关系决定了软磁晶体材料的机械特性。
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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Forced Lateral Vibrations of Magnetically Soft Microribbon: Construction of Partial Solutions

Abstract

The mathematical description of low-frequency vibrations of the magnetically soft precision microribbon Fe73.5Cu1Nb3Si13.5B9 with the fixed one end is proposed in the paper. Resonant frequencies of induced mechanical vibrations of microribbons are found in the given frequency range of 15–80 Hz, for an alternating magnetic field. The attenuation coefficient, measured for the mechanical self-vibration of the annealed sample, is derived. This coefficient measured by laser turns out to be much smaller than the corresponding half-width of the amplitude-frequency characteristic (frequency response) of the described above forced vibrations The theoretical model of forced and free microribbon vibrations with finite thickness and width is proposed. One of the created partial solutions properties is a relatively wide resonance curve, which is confirmed experimentally. The given examples of partial solutions confirm the assumption about the frequency response shape below the maximum frequency at the specified excitation frequency and system parameters. The dependence of the mechanical parameter characterizing the force moment during bending deformation on the applied magnetic field intensity determines the mechanical properties of soft magnetic crystalline materials.

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来源期刊
Radioelectronics and Communications Systems
Radioelectronics and Communications Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.10
自引率
0.00%
发文量
9
期刊介绍: Radioelectronics and Communications Systems  covers urgent theoretical problems of radio-engineering; results of research efforts, leading experience, which determines directions and development of scientific research in radio engineering and radio electronics; publishes materials of scientific conferences and meetings; information on scientific work in higher educational institutions; newsreel and bibliographic materials. Journal publishes articles in the following sections:Antenna-feeding and microwave devices;Vacuum and gas-discharge devices;Solid-state electronics and integral circuit engineering;Optical radar, communication and information processing systems;Use of computers for research and design of radio-electronic devices and systems;Quantum electronic devices;Design of radio-electronic devices;Radar and radio navigation;Radio engineering devices and systems;Radio engineering theory;Medical radioelectronics.
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