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Designing of Suitable Construction of High-Frequency Induction Heating Coil by Using Finite-Element Method

机译:有限元法设计高频感应加热线圈的合适结构

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This paper describes the three-dimensional (3-D) modeling of an induction heating system. To realize the suitable construction of a high-frequency induction heating coil, numerical computations of eddy currents and heat conduction have been carried out by using the finite-element method (FEM) and also taking into account the dependence of material properties on temperature. For a high-frequency induction heating coil, which is normally applicable for heat treatment, the tubular solenoid design is the most appropriate due to its high coil efficiency. Coil efficiency is that part of energy delivered to the coil, which is transferred to the workpiece. Besides coil efficiency, the heating pattern and the production rate are also important. As the heating pattern reflects the coil geometry, optimal coil design is a prerequisite to attain the desired heating. Several modifications, such as spacing in between coil turns, the motion of the workpiece relative to the coil, and dimensional parameters, were carried out until optimal design was achieved.
机译:本文介绍了感应加热系统的三维(3-D)建模。为了实现高频感应加热线圈的合适结构,已经通过使用有限元方法(FEM)并考虑了材料特性对温度的依赖性,对涡电流和热传导进行了数值计算。对于通常适用于热处理的高频感应加热线圈,由于其高线圈效率,管状螺线管设计是最合适的。线圈效率是指传递到线圈的能量的一部分,该能量被传递到工件。除了线圈效率外,加热方式和生产率也很重要。由于加热模式反映了线圈的几何形状,因此最佳的线圈设计是获得所需加热的先决条件。进行了一些修改,例如线圈匝之间的间距,工件相对于线圈的运动以及尺寸参数,直到获得最佳设计为止。

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