首页> 外文期刊>Acta Technica CSAV >3D ANALYSIS OF COUPLED ELECTROMAGNETIC AND TEMPERATURE FIELDS IN TRANSVERSE FLUX INDUCTION HEATING SYSTEM SUPPLIED BY CURRENT OF MAINS FREQUENCY
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3D ANALYSIS OF COUPLED ELECTROMAGNETIC AND TEMPERATURE FIELDS IN TRANSVERSE FLUX INDUCTION HEATING SYSTEM SUPPLIED BY CURRENT OF MAINS FREQUENCY

机译:主电源电流提供的横向磁通量感应加热系统中电磁场和温度场的3D耦合分析

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Induction heating of metal work-pieces in transverse flux magnetic field (TFIHS) belongs to modern industrial technologies. Such kind of rapid heating is especially effective in case of thin, flat strips with a thickness of the same range as the depth of electromagnetic field penetration S. The arrangement makes it possible to achieve required parameters of the technological process at low frequency of current within the inductor, for some purposes even simply at mains frequency 50Hz. The paper presents a mathematical model of induction heating of thin brass strips. Three-dimensional model analysis of weakly-coupled electromagnetic and temperature fields is taken into consideration. Particular example of TFIHS supplied directly from the 50 Hz network is analysed. Computations are supplemented with experimental results obtained on a laboratory stand. The differences between calculation results and measurements are quite small, but, unfortunately, distribution of temperature is non-uniform. In order to obtain more uniform shape of the temperature curve, higher frequencies of the field current should be applied.
机译:在横向磁通磁场(TFIHS)中感应加热金属工件属于现代工业技术。这种快速加热在薄而扁平的条带的厚度与电磁场穿透深度S的范围相同的情况下尤其有效。这种布置使得在低频电流范围内以较低的电流达到工艺过程所需的参数成为可能。电感,出于某些目的,甚至只是在主电源频率为50Hz时。本文提出了感应加热薄黄铜带的数学模型。考虑了弱耦合电磁场和温度场的三维模型分析。分析了直接从50 Hz网络提供的TFIHS的特定示例。计算是在实验室的架子上获得的实验结果的补充。计算结果和测量值之间的差异很小,但是不幸的是,温度分布不均匀。为了获得更均匀的温度曲线形状,应使用更高频率的励磁电流。

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