技术电感器在工作过程中控制磁场工作室内铁磁元素浓度的电流方法

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Engineering & Electromechanics Pub Date : 2020-10-26 DOI:10.20998/2074-272x.2020.5.02
V. Milykh, L. Shilkova
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引用次数: 2

摘要

介绍设计了一种旋转磁场三相电感,用于各种物质的工艺处理。该加工是由铁磁性元件以随着磁场移动的铁片的形式进行的。问题解决了电感工作室中铁磁元件浓度的控制问题。这是必要的,以便用磨损但不中断处理的元件及时补充腔室。方法论所提出的控制方法包括观察电感器定子绕组的电流,这是在其运行过程中进行的,不需要干预工艺过程。后果文中给出了该方法的理论依据,并以一个具体的电感为例对其适用性进行了实际计算评价。该方法的理论和实践是基于对电感的磁场、电磁参数和角度特性的数值计算。实用价值。该方法的实际用途是自动确定用在电感器操作期间磨损的铁磁元件重新加载腔室的时间。这提高了电感器的性能并消除了其停机时间。参考文献10,图8。
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CONTROL CURRENT METHOD OF THE CONCENTRATION OF FERROMAGNETIC ELEMENTS IN THE WORKING CHAMBER OF THE TECHNOLOGICAL INDUCTOR OF MAGNETIC FIELD DURING ITS OPERATION
Introduction. A rotating magnetic field three-phase inductor designed for the technological processing of various substances is considered. The processing is carried out by ferromagnetic elements in the form of pieces of iron wire moving with a magnetic field. Problem. The control problem of the concentration of ferromagnetic elements in the working chamber of the inductor is solved. This is necessary in order to replenish the chamber in time with elements that wear out but without interrupting the processing. Methodology. The proposed control method consists in observing the current of the inductor stator winding, which is carried out during its operation and does not require intervention in the technological process of processing. Results. The theoretical substantiation of the method is given and a practical calculation evaluation of its adequacy is made on the example of a specific inductor. The theory and practice of the method are based on numerical calculations of the magnetic field, electromagnetic parameters and the angular characteristics of the inductor. Practical value. The practical use of the method is to automatically determine the time of reloading the chamber with ferromagnetic elements that are worn out during the inductor operation. This increases the performance of the inductor and eliminates its downtime. References 10, figures 8.
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
期刊最新文献
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