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Modeling of Flat Inductor - Workpiece Heating Systems for Design of Induction Heaters

机译:平面感应器-感应加热器设计的工件加热系统的建模。

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摘要

Induction heating systems of geometry similar to Archimedes' spiral are frequently used for heating of flat surface workpieces. Such solutions are characterized by substantial variability of parameters, especially resistance and reactance of wokpiece and inductor. The parameters are function of air gap thickness that determines the electromagnetic field distribution on external surface of heated bodies. Basic task of the article was to show important issues of numerical modeling of such induction heaters, especially connected with proper selection of power sources. The influence of some significant factors on surface distribution of thermal sources was described for a volumetric heating technique. Performed numerical calculations were used to select inductor type and its dimensions to meet a special requirements for heating process. Numerical analysis were extended by circuit calculations of inductor - workpiece system. Basing on field and circuit modeling, a real operating characteristics of heating system powered by voltage and current sources were determined. Results can be very helpful in design process of similar induction heaters.
机译:几何形状类似于阿基米德螺旋形的感应加热系统通常用于加热平面工件。这种解决方案的特征在于参数的显着可变性,尤其是锅体和电感器的电阻和电抗。这些参数是气隙厚度的函数,气隙厚度决定了加热体外表面上的电磁场分布。本文的基本任务是展示此类感应加热器的数值建模的重要问题,尤其是与正确选择电源有关的问题。对于体积加热技术,描述了一些重要因素对热源表面分布的影响。执行的数值计算用于选择电感器类型及其尺寸,以满足加热过程的特殊要求。通过电感器-工件系统的电路计算扩展了数值分析。基于现场和电路建模,确定了由电压和电流源供电的加热系统的实际运行特性。结果对于类似感应加热器的设计过程可能非常有帮助。

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