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首页> 外文期刊>Archives of Civil and Mechanical Engineering >Investigation of the effect of thermal diffusivity coefficient of tool material on electrode-tool wear in the EDM process
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Investigation of the effect of thermal diffusivity coefficient of tool material on electrode-tool wear in the EDM process

机译:研究电火花加工过程中工具材料的热扩散系数对电极工具磨损的影响

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摘要

Tool wear occurrence causes a variety of difficulties including expensive and inaccurate cutting processes. Therefore, it is imperative to determine which parameter has the most influence on tool erosion rate. Since EDM is basically a thermal process, it is mostly affected by thermo physical properties of tool material. This becomes more important in numerically modeling of EDM process which contributes a better understanding of the wear mechanism. This study aimed to examine the effect of thermal diffusivity on tool erosion rate which has not yet been investigated in detail. Therefore, the experiments were conducted using copper alloy, copper-iron alloy, aluminum alloy and graphite as tools and AISI H13 as workpiece. Additionally, numerical simulation of tool wear was performed using Levenberg-Marquardt technique to gain better understanding of tool wear phenomenon. Results revealed that, increase of thermal diffusivity of tool material decreases tool wear rate. It is observed that in the experiments, performed using tool electrodes with low thermal diffusivity coefficient, the increase of wear rate is significantly intensified with increase of current and pulse on-time. Comparative analysis of the experimental and numerical results indicates that the introduced numerical simulation is capable of estimating tool wear rate with 5% average error, approximately. (C) 2015 Politechnika Wroclawska. Published by Elsevier Sp. z o.o. All rights reserved.
机译:发生工具磨损会导致各种困难,包括昂贵且不准确的切削过程。因此,必须确定哪个参数对刀具腐蚀速率的影响最大。由于EDM基本上是一个热处理过程,因此它主要受工具材料的热物理特性影响。这在EDM过程的数值建模中变得尤为重要,这有助于更好地了解磨损机理。这项研究旨在检查热扩散率对工具腐蚀速率的影响,目前尚未进行详细研究。因此,以铜合金,铜铁合金,铝合金和石墨为工具,以AISI H13为工件进行了实验。此外,使用Levenberg-Marquardt技术进行了工具磨损的数值模拟,以更好地了解工具磨损现象。结果表明,增加工具材料的热扩散率会降低工具的磨损率。可以观察到,在实验中,使用具有低热扩散系数的工具电极进行的实验,随着电流和脉冲导通时间的增加,磨损率的增加显着增强。实验结果与数值结果的对比分析表明,引入的数值模拟能够以大约5%的平均误差估算刀具磨损率。 (C)2015 Politechnika弗罗茨瓦夫。由Elsevier Sp。发行。动物园。版权所有。

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