论开发的软件在磁致伸缩位移换能器声路研究教学过程中的应用问题

Artem Alekseevich Ivzanov
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引用次数: 0

摘要

本文研究了磁致伸缩线性和角位移换能器声路中信息信号的形成、转换和读取过程。给出了计算环形永磁体磁场和电流脉冲在波导介质中流动时磁场的数学模型。为了计算波导的磁化强度,开发了一种数值方法,该方法允许考虑先前波导材料的磁化强度。给出了计算电磁阀磁通参数和输出信号的数学模型。在开发的教学软件中实现了永磁体磁场计算的数学模型、所开发的数值方法以及磁通量形成和输出信号的数学模型。研究结果以及改进和发展的磁场计算方法和数值方法可用于研究磁致伸缩器件的设计和运行阶段,从而降低其最终成本。还应注意的是,本文没有解决与输出信号处理相关的问题,这为进一步研究和进一步修改软件提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Issue of Using the Developed Software in the Educational Process for the Study of Acoustic Paths of Magnetostrictive Displacement Transducers
The article is devoted to the research of the processes arising during the formation, translation and reading of information signals in the acoustic paths of magnetostrictive linear and angular displacement transducers. Mathematical models are given that make it possible to calculate the magnetic fields of annular permanent magnets and those formed by current pulses when they flow in a waveguide medium. To calculate the magnetization of the waveguide, a numerical method was developed that allows taking into account the magnetization of the waveguide material at a previous time. Mathematical models are also given to calculate the parameters of the magnetic flux of the solenoid and the output signal. Mathematical models for calculating permanent magnet magnetic fields, the developed numerical method and mathematical models for the formation of magnetic flux and output signal were implemented in the developed software used in the educational process. The research results, as well as refined and developed methods for calculating magnetic fields and the numerical method can be used to study magnetostrictive devices both at the stage of their design and operation, which reduces their final cost. It should also be noted that the article does not address issues related to the processing of the output signal, which provides opportunities for further research and further modification of the software.
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