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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimization of material removal rate and tool wear rate of Cu electrode in die-sinking EDM of tool steel
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Optimization of material removal rate and tool wear rate of Cu electrode in die-sinking EDM of tool steel

机译:刀钢模压铸造EDM中Cu电极材料去除率和刀具磨损的优化

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摘要

The principle of electrical discharge machining is based on electrical discharge which occurs between two electrodes (a cathode and an anode). The cathode is generally represented by workpiece and the anode by electrode tool. An electric discharge between the cathode and the anode occurs always upon fulfillment of basic conditions. A decisive influence has a kind of workpiece and tool electrode materials; spacing between the electrodes, called also gap; properties of dielectric fluid; and the main technological parameter setting. The combination of these parameters generates crater of specific shape on the workpiece and also on the tool electrode. The shape and size of the crater, formed during one electric discharge in die-sinking EDM, have a significant impact on material removal rate and on electrode wear. The aim of the paper is based on experimental measurement to identify the impact of selected process parameters on material removal rate and electrode wear in die-sinking EDM of tool steels EN X210Cr12 with Cu electrode EN CW004A, based on acquired dependencies to perform optimization of these parameters with a view of maximization of material removal rate and minimization of tool wear rate.
机译:放电加工原理基于电极(阴极和阳极)之间发生的放电。阴极通常由工件和阳极通过电极工具表示。在满足基本条件时,阴极和阳极之间的放电。决定性的影响有一种工件和工具电极材料;电极之间的间隔,也称为间隙;介电流体的性质;和主要的技术参数设置。这些参数的组合在工件上产生特定形状的火山口,并且还在刀具电极上产生特定形状的火山口。在模具沉没的EDM中的一个放电期间形成的火山口的形状和尺寸对材料去除率和电极磨损具有显着影响。本文的目的是基于实验测量,以确定采用Cu电极EN CW004A对刀具钢EN X210CR12的模芯EDM的材料去除速率和电极磨损的影响,基于所获得的依赖性来执行这些依赖性具有最大化材料去除率和刀具磨损率最小化的参数。

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