AISI 4340齿轮热处理磁感应线圈的数值模拟

Ö. Sönmez, D. Kaya, владимир Буканин, A. Ivanov
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引用次数: 0

摘要

在制造业中,热处理是提高易制成品材料质量的基本要求。感应加热技术具有可重复性和易于控制的优点,具有电子控制单元。目前,数值方法已成为感应加热工业的重要参考。实验方法是昂贵和费时的程序。然而,利用有限元方法软件,可以在较短的时间内相对经济有效地进行钢齿轮的感应加热模拟。本文利用有限元分析软件对AISI 4340钢齿轮进行了感应加热仿真。研究了感应频率和齿轮工件-感应线圈距离的变化对齿轮表面硬化深度的影响。得到了工件的温度分布。从钢齿轮工件上的温度分布,观察到齿轮的奥氏体化温度(Ac3) -负责马氏体相形成的区域。从数值结果解释了齿轮的淬火轮廓和淬火深度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of a magnetic induction coil for heat treatment of an AISI 4340 gear
In manufacturing industry, heat treatment is a fundamental requirement for improving the material quality of readily manufactured products. Induction heating technology is repeatable and easily controlled by the advantage of having an electronical control unit. Nowadays, numerical methods have gained so much importance that it become as a reference for the induction heating industry. Experimental methods are costly and time demanding procedures. However, making use of finite element method software, induction heating simulations of a steel gear can be performed relatively cost effective and in a short time. In this paper, induction heating simulation of an AISI 4340 steel gear using FEA software is performed. The effect of variation of inductor frequency and gear workpiece-inductor coil distance on the hardening depth of the gear surface is investigated. The temperature profile of the workpiece is obtained. From the temperature distribution on the steel gear workpiece, the regions of the gear at which the austenitizing temperature (Ac3) - responsible for martensite phase formation- are observed. From the numerical results, hardening profile and hardening depth of the gear is interpreted.
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